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Klimawandel, Änderungen der Landnutzung und Habitatzerstörung sowie die Globalisierung tragen zu einer zunehmenden Ausbreitung von bekannten und noch unbekannten Viren bei, die eine Gefahr für Mensch und Tier darstellen können. Um potenziell gefährliche Viren frühzeitig zu entdecken, kann das in dieser Arbeit vorgestellte Protokoll für einen pan-viralen DNA-Microarray-gestützten (PVM) Virusnachweis verwendet werden, der optional mit einer Hochdurchsatzsequenzierung gekoppelt werden kann.
Für die Etablierung des PVM-Protokolls wurde die Leistungsfähigkeit von drei Probenbearbeitungs- und Datenauswertungsmethoden beim Nachweis von zwei Modellviren, einem DNA-Virus und einem RNA-Virus, verglichen. Für die Kopplung mit dem PVM wurden verschiedene Systeme für die Hochdurchsatzsequenzierung verwendet.
Das Ziel der Arbeit war die Etablierung eines optimierten PVM-Protokolls für einen robusten, breiten Virusnachweis, welcher einzeln oder in Kombination mit einer Hochdurchsatzsequenzierung als Teil einer mehrstufigen Analysepipeline verwendet werden kann.
Beim Nachweis beider Modellviren wies die Library-basierte Probenbearbeitungs- und Datenauswertungsmethode Limma die höchste Sensitivität auf. In der darauf folgenden Validierung konnten alle Viren, unabhängig von ihrer Genomorganisation und Komplexität der Probenmaterialien, korrekt identifiziert werden. In zwei publizierten Studien konnte der Nachweis der zum Zeitpunkt der Untersuchung noch unbekannten BBLV und SqAdV-1 gezeigt werden. Durch die Rückgewinnung von Virus-spezifischen Nukleinsäuren vom PVM und der anschließenden Sequenzierung
mittels Hochdurchsatzsequenzierung konnte das SqAdV-1 im Rahmen einer mehrstufigen Analysepipeline vollständig identifiziert, annotiert und taxonomisch eingeordnet werden. Durch die Kombination von PVM und Hochdurchsatzsequenzierung wurden für sechs Viren eine Virus-spezifische Anreicherung und ein damit verbundener Gewinn an Sequenzinformation erreicht. Die Library-basierte Probenbearbeitung mit Limma erlaubte einen robusten und sensitiven Virusnachweis; deshalb wurden beide Methoden für das PVM-Protokoll ausgewählt. Die Fähigkeit des hier etablierten PVM-Protokolls, Viren unabhängig von der Genomorganisation und in komplexen Probenmaterialien zu identifizieren, zeigt dessen Gleichwertigkeit mit bereits etablierten PVM-Systemen. Die Verwendung des PVM-Protokolls in einer mehrstufigen Analysepipeline erlaubt auch die Identifikation von bisher unbekannten Viren. Der durch die Kombination mit einer Hochdurchsatzsequenzierung erreichte Gewinn an Sequenzinformation ermöglicht eine Identifizierung und detailliertere Charakterisierung von Viren.
Der PVM stellt einzeln und in Verbindung mit einem Hochdurchsatzsequenzierungs- System ein wertvolles Werkzeug für die Virusdiagnostik dar, dessen Anwendung den Zeitaufwand für die Virusidentifizierung deutlich reduzieren kann.
In agricultural grasslands, management practice highly determines reproductive success for ground-nesting bird species. The most effective conservation measure is the delay of first mowing dates until broods fledge or bird friendly mowing. Late mowing often implies economical losses for farmers and may increase land use abandonment, which will, in turn, cause habitat deterioration. Thus, grassland bird conservation involves the challenge to protect broods against land use and to promote an appropriate management to sustain habitat quality at the same time. Because of their late and extended breeding season Corncrakes Crex crex are in particular vulnerable to frequent mowing which increases nest destruction, chick mortality and habitat loss.
This thesis aims to gain knowledge on favourable habitat characteristics and brood protection in relation with grassland management to derive implications for the conservation of Corncrake breeding sites in floodplain meadows. Study area is the Lower Oder Valley National Park in northeastern Germany that holds a Corncrake population of 50 to 250 calling males. The study covered two study periods, before (1998-2000) and after (2012-2015) the implementation of new Corncrake conservation measures allowing inferences on the effects of different timing and intensity of mowing for brood protection and habitat conservation.
Breeding was only confirmed on meadows with high forb cover, low sedge cover, low litter heights and a close location to ditches. Radio-tracked females preferred areas with high cover of forbs (> 30%) and a distinct relief heterogeneity, which was associated with increased vegetation diversity. Vegetation characteristics on sites with day calling activity of males showed more similarity with breeding sites than with sites only used for nocturnal calling, supporting the assumption that diurnal calling indicates the occurrence of females. Favoured vegetation structure was best provided by mowing in the preceding year. Low-intensity grazing was less effective in reducing litter and sedge cover, especially when conducted late in the season. In the absence of management, meadows rapidly overgrow and dense litter accumulates from dead plant material in eutrophic floodplains, which increases walking resistance for Corncrakes and may impede prey accessibility. Plant species richness and forb cover declined after land use cessation. Male Corncrakes abandoned calling sites on meadows unmanaged for longer periods.
Besides the availability of suitable nesting sites, food supply and nest predation risk are also related to vegetation structure and may indirectly influence the habitat quality. Faecal samples of Corncrakes consisted mainly of beetles and their larvae, followed by snails, spiders and earthworms. Invertebrate biomass, sampled with pitfall-traps, was twice as high, the numbers of large ground beetles even five times higher on previously unmanaged than on managed meadows. Invertebrate abundance was highest in the first and second years after land use abandonment, but strongly decreased afterwards to a similar level like under annual management. Therefore, unmown refuge strips for Corncrake protection and alternating mowing also enhance invertebrate prey resources in floodplain meadows.
Mammals caused the majority of all observed artificial ground nest predations. Nest predation risk was higher on previously unmanaged than on managed sites. Unmanaged meadows probably attract mammalian predators, because they provide a more favourable vegetation structure for foraging and harbour high numbers of small rodents, increasing also the risk of incidental nest predations. These findings suggest that an annual removal of vegetation, if conducted late in the season to protect grassland birds may reduce predation risk of ground nests in the subsequent year.
Whereas during 1998-2000 half of the study area was managed by the end of July, land use was delayed on meadows occupied by Corncrakes until at least 15 July or 15 August during 2012-2015. On meadows mown between 15 July and 15 August refuge strips were applied. The majority of Corncrake broods were started in the second half of May and mowing postponement until 15 August allows 80% of chicks to fledge without disturbance in the study area. In 65% of broods chicks reach independence (> 14 days old) until 15 July and can be protected by Corncrake friendly mowing because then they are large enough to successfully escape during mowing. Both adults and chicks survived in 10 m wide refuge strips. Because most birds tried to leave the unmown block for the first time when it was up to 30 m wide and only 15 to 30 m wide strips served as temporary habitat for unfledged chicks from mowing to departure, 10 m should be considered as the absolute minimum width for refuge strips.
The strong reduction of land use especially during July should have allowed more chicks to survive until fledging in 2012-2015 than 1998-2000. Besides the protection of nests and higher chick survival, the decline of mowing intensity increased the extent of habitat available for second breeding attempts. In 2012-2015, broods were initiated until late July in the study area. Male Corncrakes showed continuous arrival and departure during the breeding season. Similar departure rates were estimated by a multi-state occupancy model and for radio-tracked males in the same study area and periods, which both left their home ranges spontaneous and due to the impact of mowing. Compared to 1998-2000, total departure of males during June and July was reduced by 50% in 2012-2015, when more calling sites were protected from mowing. Although male Corncrakes show high intra-seasonal dispersal due to their sequential polygamous breeding system, postponed land use should have increased mating opportunities and re-nesting at first breeding sites.
Therefore, future directions of Corncrake conservation in eutrophic floodplains should address the increase of annual late mowing to protect broods and maintain favourable habitat conditions by creating a more flexible mowing regime adjusted to actual occurrence of Corncrakes. This requires expert advice to farmers based on an intense monitoring of calling Corncrakes. Repeated nocturnal surveys during May and June are highly recommended because low detection probability in combination with constant departure substantially underestimated the number of males present. Additionally, diurnal calling activity could improve the identification of breeding sites and timing could be used to estimate chick age in July to select sites for Corncrake friendly mowing. Because currently late mowing dates are unattractive for farmers conservation actions should along with financial compensations for mowing after 15 August promote the utilization of late-cut grass with poor nutrient quality for combustion. Energy production could provide an alternative income for farmers operating in conservation areas with delayed land use dates and will increase their acceptance of Corncrake protection measures.
Background
Haemosporidian parasites of the genus Polychromophilus infect bats worldwide. They are vectored by obligate ectoparasitic bat flies of the family Nycteribiidae. Despite their global distribution, only five Polychromophilus morphospecies have been described to date. The two predominant species, Polychromophilus melanipherus and Polychromophilus murinus, are broadly distributed and mainly infect miniopterid and vespertilionid bats, respectively. In areas where species from different bat families aggregate together, the infection dynamics and ability of either Polychromophilus species to infect other host families is poorly characterized.
Methods
We collected 215 bat flies from two bat species, Miniopterus schreibersii and Rhinolophus ferrumequinum, which sometimes form mixed clusters in Serbia. Miniopterus schreibersii is known to be frequently infected with P. melanipherus, whereas R. ferrumequinum has been observed to be incidentally infected with both Polychromophilus species. All flies were screened for Polychromophilus infections using a PCR targeting the haemosporidian cytb gene. Positive samples were subsequently sequenced for 579 bp of cytochrome b (cytb) and 945 bp of cytochrome oxidase subunit 1 (cox1).
Results
Polychromophilus melanipherus DNA was detected at six out of nine sampling locations and in all three examined bat fly species collected from M. schreibersii (Nycteribia schmidlii, n = 21; Penicillidia conspicua, n = 8; Penicillidia dufourii, n = 3). Four and five haplotypes were found for cytb and cox1, respectively. Evidence for multiple Polychromophilus haplotypes was found in 15 individual flies. These results point to a high diversity of P. melanipherus parasites in Miniopterus hosts and efficient transmission throughout the study area. A single Phthiridium biarticulatum bat fly collected from R. ferrumequinum screened positive for P. melanipherus, but only yielded a partial cox1 sequence fragment. Nevertheless, this result suggests that secondary hosts (both bat and fly species) are regularly confronted with this parasite.
Conclusions
The results of this study provide new insights into the prevalence and distribution of Polychromophilus parasites in European bats and their nycteribiid vectors. The use of bat flies for the non-invasive investigation of Polychromophilus infections in bat populations has proven to be efficient and thus represents an alternative for large-scale studies of infections in bat populations without the need to invasively collect blood from bats.
Urbanization, industrialization, and intensification of agriculture have led to considerable heavy metal pollution across the globe, harming our ecosystems. Concentrations of arsenic (As), cadmium (Cd), copper (Cu), and lead (Pb) have been analysed in 249 eggshells collected between 2006 and 2021 from 83 female Common Cranes (Grus grus) nesting within north-eastern Germany. Information on the presence of trace elements in cranes from Europe and their potential adverse effects on the reproduction are largely missing. Only Cu and Pb were found to be present in eggshell samples. Levels of both metals did not exceed concentrations considered potentially toxic in birds and unhatched eggs did not contain higher metal concentrations compared to eggshell residues from hatched eggs. Statistical analysis revealed that trace element concentrations decreased significantly over the course of the study period. The ban of leaded gasoline in the early twenty-first century and strict limitations of heavy metal-based biocontrol products are likely responsible for this decrease over the years. However, as Cu levels gradually increase with increasing proportions of agricultural areas within the cranes’ home ranges, we suggest that considerable amounts of Cu originating from agricultural practises are still being released into the environment. We found no increase in metal concentrations in eggshells with increasing female age, suggesting that heavy metals do not accumulate in the circulatory systems of the adults over time. This study is the first to assess heavy metal contamination in Common Cranes and indicates the suitability of crane’s eggshells as bioindicator for monitoring environmental pollution.
Das Gram-positive Bakterium Staphylococcus aureus besiedelt die menschliche Haut und die oberen Atemwege, z.B. die Nase. Aus noch unbekannten Gründen können die Bakterien gelegentlich einen pathogenen Charakter entwickeln und Krankheiten wie Furunkulose, Pneumonien oder Sepsis verursachen. Dieses pathogene Potenzial in Verbindung mit dem Auftreten von zahlreichen Antibiotika-Resistenzen in vielen klinisch relevanten S. aureus-Stämmen stellt ein Risiko für die menschliche Gesundheit dar. Deshalb ist es notwendig, potenzielle Effekte der bakteriellen Produkte, die die eukaryotischen Wirtszellen relevanter Organsysteme beeinflussen könnten, zu erforschen. Ziel dieser Arbeit war es deshalb, spezifische Elemente der frühen Signaltransduktion, der Genregulation und der physiologischen Antworten von humanen immortalisierten Atemwegsepithelzellen (S9) auf Kontakt mit Staphylococcus aureus-Zellkulturüberständen sowie rekombinant hergestellten individuellen Virulenzfaktoren (Hämolysin A (Hla, ein porenformendes Toxin) und Hämolysin B (Hlb, ein Enzym mit Sphingomyelinase-Aktivität)) zu untersuchen. Diese Ansätze dienen dazu, Hinweise auf die Identität sezernierter Stoffwechselprodukte von S. aureus zu erhalten, die in den eukaryotischen Wirtszellen zu direkten Abwehr- oder Vermeidungsreaktionen (angeborene Immunität) oder zu Bakterien-induziertem „Fehlverhalten“ führen, das möglicherweise (Mit-)Ursache der Pathogenität einiger Stämme des Bakteriums ist. Quantitative Western-Blot-Analysen mit löslichen Proteinextrakten von S9-Zellen offenbarten dabei eine Aktivierung der Erk-Typ-MAPK, der p38 MAPK und der Akt1/3, aber keine Aktivierung der c-Jun N-terminalen Kinase (JNK) oder Akt2 infolge der Behandlung mit steril-filtrierten S. aureus-Überständen aus der exponentiellen Wachstumsphase (OD540nm = 1), der stationären Wachstumsphase (OD540nm = 10) bzw. nach der Behandlung mit rekombinant hergestellten S. aureus Hämolysinen (rHla, rHlb). Analysen der Produkte sogenannter „früher Gene“ zeigten eine moderate Erhöhung der Expression von c-Jun und Egr-1, und eine stärkere Erhöhung der Expression von c-Fos nach der Behandlung der S9-Zellen mit den bakteriellen Überständen oder rekombinanten Toxinen (rHla, rHlb). Da Atemwegsepithelzellen bei Kontakt mit potenziell pathogenen Bakterien bzw. sekretorischen Faktoren dieser Bakterien Chemokine zur Rekrutierung von Neutrophilen sekretieren, (speziell IL-8), wurde ein Multiplex-Assay-System eingesetzt, mit dem es möglich war, 11 verschiedene Zytokine im Kulturüberstand der S9-Zellen nach Behandlung der Zellen mit den bakteriellen OD10-Überständen bzw. rekombinanten Hla oder Hlb zu analysieren. Die S9-Zellen reagierten dabei auf die Behandlung mit dem Überstand, Hla oder Hlb mit der Sekretion der pro-inflammatorischen Zytokine IL-8, IFN-γ und IL-6, und diese Zytokin-Expression wurde teilweise vermittelt über die Signalwege der Erk-Typ-MAPK und der p38 MAPK. Weiter konnte gezeigt werden, dass Atemwegsepithelzellen infolge der Behandlung mit bakteriellem Überstand bzw. Hla Zellformveränderungen unterliegen und ihre Integrität verlieren. Dieses könnte parazelluläre Wege im Epithel öffnen, und so den Bakterien ermöglichen, ins Innere des Wirtskörpers vorzudringen.
Die krankhafte Fettleibigkeit (Adipositas) wird in weiten Teilen der Welt zunehmend zum bestimmenden Gesundheitsproblem. Die Datenerhebungen der Weltgesundheits-organisation (WHO) sowie der Organisation zur wirtschaftlichen Zusammenarbeit und Entwicklung (OECD) zeigen einen deutlichen Anstieg der Adipositasprävalenz über die letzten Jahrzehnte. In vielen OECD Ländern gilt heute über die Hälfte der Bevölkerung als übergewichtig oder adipös (WHO: Website der WHO, zuletzt geprüft am 02.09.2017; OECD: Fettleibigkeit und Übergewicht nehmen in den OECD-Ländern weiter zu, zuletzt geprüft am 02.09.2017). Dies wird zur immer größeren Belastung für das Gesundheitssystem, da Adipositas mit vielen Sekundärkrankheiten wie Herz-Kreislauferkrankungen, Bluthochdruck und bestimmten Krebsarten assoziiert wird (Bray 2004; Després et al. 2001; Malnick und Knobler 2006). Für das Jahr 2003 wurde für das deutsche Gesundheitssystem dadurch ein finanzieller Aufwand in Höhe von 11 Milliarden Euro für die Behandlung von Adipositas oder durch Adipositas verursachte Komorbiditäten veranschlagt (Knoll 2010). Hinzu kommen „emotionale Kosten“ der Betroffenen, die unter sozialer Ausgrenzung und Stigmatisierung leiden (Latner und Stunkard 2003; Neumark-Sztainer et al. 1998; Sobal et al. 1995; Brewis et al. 2011; Brewis 2014).
Neben diesen klar Adipositas-assoziierten gesundheitlichen Beeinträchtigungen hat es immer wieder Untersuchungen zu einem möglichen Zusammenhang von Adipositas und Kognition gegeben. Dieser wurde in vielen Studien am Menschen untersucht und die bisherigen Ergebnisse sehr anschaulich von Anna Dahl und Linda Hassing 2013 beziehungsweise Christina Prickett und Kollegen 2015 analysiert (Dahl und Hassing 2013; Prickett et al. 2015). Diese Übersichtsarbeiten zeigen auf, dass es durchaus Belege für einen Zusammenhang von Adipositas und Kognition gibt, allerdings ist die Datenlage zu diesem Thema durchaus ambivalent.
In dieser Arbeit sollte deshalb der Einfluss von Adipositas auf die Kognition mithilfe eines etablierten Mausmodells für Adipositas untersucht werden. Zu diesem Zweck wurden adulte, vier bis sechs Monate alte, Leptin-defiziente Mäuse (ob) und deren Wildtypkontrollen (wt) vergleichend untersucht. Unsere Daten zeigen, dass Adipositas im Mausmodell nicht mit einer kognitiven Beeinträchtigung einher geht. Sowohl im Verhaltensexperiment (hippocampusabhängiges Lernen, Morris water maze) als auch auf zellulärer Ebene in der Verbindungsdichte der Nervenzellen untereinander (Dichte dendritischer Dornen) zeigten sich zwischen Leptin-defizienten und Wildtyptieren keine signifikanten Unterschiede.
Allerdings wiesen Leptin-defiziente Tiere ein kleineres Hirnvolumen als Wildtypkontrolltiere auf, ein Ergebnis, das mit anderen Publikationen übereinstimmt (Ahima et al. 1999; Steppan und Swick 1999). Detaillierte Analysen der Volumenverhältnisse im Gehirn von Leptin-defizienten und Wildtypmäusen in dieser Arbeit ergaben, dass sich die relativen Größenverhältnisse im Gehirn von ob‑Tieren zugunsten des Hippocampus verschieben. Diese Ergebnisse widersprechen damit Befunden in adipösen Menschen, die kleinere Hippocampusvolumina aufwiesen (Isaac et al. 2011).
Die adulte hippocampale Neurogenese selbst, also die Bildung neuer, funktionaler Neuronen im adulten Gehirn, war im Gyrus dentatus von Leptin-defizienten Mäusen signifikant vermindert. Zusammen mit den Analysen von Proliferation und Apoptose von Hirnzellen im Gyrus dentatus, konnte diese eingeschränkt Neurogenese auf eine geringere Proliferation neuronaler Vorläuferzellen zurückgeführt werden. Die Überlebens-wahrscheinlichkeit schien dabei nicht beeinflusst, da keine erhöhte Apoptose im Gyrus dentatus ermittelt werden konnte.
Die hier durchgeführten Experimente konnten keine direkte, negative Auswirkung von Adipositas auf Kognition im Mausmodell belegen. Wenngleich ein Einfluss auf Aspekte der neuronalen Plastizität durch eine verminderte adulte Neurogenese sowie das Gehirngesamtvolumen bestätigt werden konnte, waren Veränderungen des Verhaltens der ob‑Tiere unter Berücksichtigung ihrer motorischen Defizite nicht nachweisbar.
Background
Phylogenomic studies over the past two decades have consolidated the major branches of the arthropod tree of life. However, especially within the Chelicerata (spiders, scorpions, and kin), interrelationships of the constituent taxa remain controversial. While sea spiders (Pycnogonida) are firmly established as sister group of all other extant representatives (Euchelicerata), euchelicerate phylogeny itself is still contested. One key issue concerns the marine horseshoe crabs (Xiphosura), which recent studies recover either as sister group of terrestrial Arachnida or nested within the latter, with significant impact on postulated terrestrialization scenarios and long-standing paradigms of ancestral chelicerate traits. In potential support of a nested placement, previous neuroanatomical studies highlighted similarities in the visual pathway of xiphosurans and some arachnopulmonates (scorpions, whip scorpions, whip spiders). However, contradictory descriptions of the pycnogonid visual system hamper outgroup comparison and thus character polarization.
Results
To advance the understanding of the pycnogonid brain and its sense organs with the aim of elucidating chelicerate visual system evolution, a wide range of families were studied using a combination of micro-computed X-ray tomography, histology, dye tracing, and immunolabeling of tubulin, the neuropil marker synapsin, and several neuroactive substances (including histamine, serotonin, tyrosine hydroxylase, and orcokinin). Contrary to previous descriptions, the visual system displays a serial layout with only one first-order visual neuropil connected to a bilayered arcuate body by catecholaminergic interneurons. Fluorescent dye tracing reveals a previously reported second visual neuropil as the target of axons from the lateral sense organ instead of the eyes.
Conclusions
Ground pattern reconstruction reveals remarkable neuroanatomical stasis in the pycnogonid visual system since the Ordovician or even earlier. Its conserved layout exhibits similarities to the median eye pathway in euchelicerates, especially in xiphosurans, with which pycnogonids share two median eye pairs that differentiate consecutively during development and target one visual neuropil upstream of the arcuate body. Given multiple losses of median and/or lateral eyes in chelicerates, and the tightly linked reduction of visual processing centers, interconnections between median and lateral visual neuropils in xiphosurans and arachnopulmonates are critically discussed, representing a plausible ancestral condition of taxa that have retained both eye types.
Abstract
Two decades after the discovery of adult‐born neurons in the brains of decapod crustaceans, the deutocerebral proliferative system (DPS) producing these neural lineages has become a model of adult neurogenesis in invertebrates. Studies on crayfish have provided substantial insights into the anatomy, cellular dynamics, and regulation of the DPS. Contrary to traditional thinking, recent evidence suggests that the neurogenic niche in the crayfish DPS lacks self‐renewing stem cells, its cell pool being instead sustained via integration of hemocytes generated by the innate immune system. Here, we investigated the origin, division and migration patterns of the adult‐born neural progenitor (NP) lineages in detail. We show that the niche cell pool is not only replenished by hemocyte integration but also by limited numbers of symmetric cell divisions with some characteristics reminiscent of interkinetic nuclear migration. Once specified in the niche, first generation NPs act as transit‐amplifying intermediate NPs that eventually exit and produce multicellular clones as they move along migratory streams toward target brain areas. Different clones may migrate simultaneously in the streams but occupy separate tracks and show spatio‐temporally flexible division patterns. Based on this, we propose an extended DPS model that emphasizes structural similarities to pseudostratified neuroepithelia in other arthropods and vertebrates. This model includes hemocyte integration and intrinsic cell proliferation to synergistically counteract niche cell pool depletion during the animal's lifespan. Further, we discuss parallels to recent findings on mammalian adult neurogenesis, as both systems seem to exhibit a similar decoupling of proliferative replenishment divisions and consuming neurogenic divisions.
Abstract
Nervous system development has been intensely studied in insects (especially Drosophila melanogaster), providing detailed insights into the genetic regulatory network governing the formation and maintenance of the neural stem cells (neuroblasts) and the differentiation of their progeny. Despite notable advances over the last two decades, neurogenesis in other arthropod groups remains by comparison less well understood, hampering finer resolution of evolutionary cell type transformations and changes in the genetic regulatory network in some branches of the arthropod tree of life. Although the neurogenic cellular machinery in malacostracan crustaceans is well described morphologically, its genetic molecular characterization is pending. To address this, we established an in situ hybridization protocol for the crayfish Procambarus virginalis and studied embryonic expression patterns of a suite of key genes, encompassing three SoxB group transcription factors, two achaete–scute homologs, a Snail family member, the differentiation determinants Prospero and Brain tumor, and the neuron marker Elav. We document cell type expression patterns with notable similarities to insects and branchiopod crustaceans, lending further support to the homology of hexapod–crustacean neuroblasts and their cell lineages. Remarkably, in the crayfish head region, cell emigration from the neuroectoderm coupled with gene expression data points to a neuroblast‐independent initial phase of brain neurogenesis. Further, SoxB group expression patterns suggest an involvement of Dichaete in segmentation, in concordance with insects. Our target gene set is a promising starting point for further embryonic studies, as well as for the molecular genetic characterization of subregions and cell types in the neurogenic systems in the adult crayfish brain.
Animals face strong environmental variability even on short time scales particularly in shallow coastal habitats, forcing them to permanently adjust their metabolism. Respiration rates of aquatic ectotherms are directly influenced by water temperature, whereas ingestion rates might additionally be influenced by behavior. We aim to understand how respiration and ingestion rates of an aquatic invertebrate respond to changing temperature during a diurnal thermal fluctuation cycle and how both processes are related. We studied the benthopelagic mysid Neomysis integer as an important food web component of coastal ecosystems. Mysids were collected at the southern Baltic Sea coast and exposed in the laboratory to either constant temperature of 15°C or daily temperature fluctuation of 15 ± 5°C. Short-term (1–2 h) respiration and ingestion rates were measured at four equidistant time points within 24 h and did not differ among time points at constant temperature, but differed among time points in the fluctuating treatment. Respiration was highest at the thermal maximum and lowest at the thermal minimum. Ingestion rates showed the opposite pattern under fluctuation, likely due to differences in underlying thermal performance curves. When temperature transited the average, the direction of temperature change influenced the animals' response in respiration and ingestion rates differently. Our results suggest that respiration is not only instantaneously affected by temperature, but also influenced by the previously experienced direction of thermal change. Our experiment, using an important non-model organism, delivered new insights on the relationship between the crucial organismal processes ingestion and respiration under thermal variability.
Many of the world’s most biodiverse regions are found in the poorest and second most populous continent of Africa; a continent facing exceptional challenges. Africa is projected to quadruple its population by 2100 and experience increasingly severe climate change and environmental conflict—all of which will ravage biodiversity. Here we assess conservation threats facing Africa and consider how these threats will be affected by human population growth, economic expansion, and climate change. We then evaluate the current capacity and infrastructure available to conserve the continent’s biodiversity. We consider four key questions essential for the future of African conservation: (1) how to build societal support for conservation efforts within Africa; (2) how to build Africa’s education, research, and management capacity; (3) how to finance conservation efforts; and (4) is conservation through development the appropriate approach for Africa? While the challenges are great, ways forward are clear, and we present ideas on how progress can be made. Given Africa’s current modest capacity to address its biodiversity crisis, additional international funding is required, but estimates of the cost of conserving Africa’s biodiversity are within reach. The will to act must build on the sympathy for conservation that is evident in Africa, but this will require building the education capacity within the continent. Considering Africa’s rapidly growing population and the associated huge economic needs, options other than conservation through development need to be more effectively explored. Despite the gravity of the situation, we believe that concerted effort in the coming decades can successfully curb the loss of biodiversity in Africa.
Organisms often employ ecophysiological strategies to exploit environmental conditions and ensure bio-energetic success. However, the many complexities involved in the differential expression and flexibility of these strategies are rarely fully understood. Therefore, for the first time, using a three-part cross-disciplinary laboratory experimental analysis, we investigated the diversity and plasticity of photoresponsive traits employed by one family of environmentally contrasting, ecologically important phytoflagellates. The results demonstrated an extensive inter-species phenotypic diversity of behavioural, physiological, and compositional photoresponse across the Chlamydomonadaceae, and a multifaceted intra-species phenotypic plasticity, involving a broad range of beneficial photoacclimation strategies, often attributable to environmental predisposition and phylogenetic differentiation. Deceptively diverse and sophisticated strong (population and individual cell) behavioural photoresponses were observed, with divergence from a general preference for low light (and flexibility) dictated by intra-familial differences in typical habitat (salinity and trophy) and phylogeny. Notably, contrasting lower, narrow, and flexible compared with higher, broad, and stable preferences were observed in freshwater vs. brackish and marine species. Complex diversity and plasticity in physiological and compositional photoresponses were also discovered. Metabolic characteristics (such as growth rates, respiratory costs and photosynthetic capacity, efficiency, compensation and saturation points) varied elaborately with species, typical habitat (often varying more in eutrophic species, such as Chlamydomonas reinhardtii), and culture irradiance (adjusting to optimise energy acquisition and suggesting some propensity for low light). Considerable variations in intracellular pigment and biochemical composition were also recorded. Photosynthetic and accessory pigments (such as chlorophyll a, xanthophyll-cycle components, chlorophyll a:b and chlorophyll a:carotenoid ratios, fatty acid content and saturation ratios) varied with phylogeny and typical habitat (to attune photosystem ratios in different trophic conditions and to optimise shade adaptation, photoprotection, and thylakoid architecture, particularly in freshwater environments), and changed with irradiance (as reaction and harvesting centres adjusted to modulate absorption and quantum yield). The complex, concomitant nature of the results also advocated an integrative approach in future investigations. Overall, these nuanced, diverse, and flexible photoresponsive traits will greatly contribute to the functional ecology of these organisms, addressing environmental heterogeneity and potentially shaping individual fitness, spatial and temporal distribution, prevalence, and ecosystem dynamics.
Cryptochromes are evolutionary ancient blue-light photoreceptors that are part of the circadian clock in the nervous system of many organisms. Cryptochromes transfer information of the predominant light regime to the clock which results in the fast adjustment to photoperiod. Therefore, the clock is sensitive to light changes and can be affected by anthropogenic Artificial Light At Night (ALAN). This in turn has consequences for clock associated behavioral processes, e.g., diel vertical migration (DVM) of zooplankton. In freshwater ecosystems, the zooplankton genus Daphnia performs DVM in order to escape optically hunting predators and to avoid UV light. Concomitantly, Daphnia experience circadian changes in food-supply during DVM. Daphnia play the keystone role in the carbon-transfer to the next trophic level. Therefore, the whole ecosystem is affected during the occurrence of cyanobacteria blooms as cyanobacteria reduce food quality due to their production of digestive inhibitors (e.g., protease inhibitors). In other organisms, digestion is linked to the circadian clock. If this is also the case for Daphnia, the expression of protease genes should show a rhythmic expression following circadian expression of clock genes (e.g., cryptochrome 2). We tested this hypothesis and demonstrated that gene expression of the clock and of proteases was affected by ALAN. Contrary to our expectations, the activity of one type of proteases (chymotrypsins) was increased by ALAN. This indicates that higher protease activity might improve the diet utilization. Therefore, we treated D. magna with a chymotrypsin-inhibitor producing cyanobacterium and found that ALAN actually led to an increase in Daphnia’s growth rate in comparison to growth on the same cyanobacterium in control light conditions. We conclude that this increased tolerance to protease inhibitors putatively enables Daphnia populations to better control cyanobacterial blooms that produce chymotrypsin inhibitors in the Anthropocene, which is defined by light pollution and by an increase of cyanobacterial blooms due to eutrophication.
Background
Pholcidae represent one of the largest and most diverse spider families and have been subject to various studies regarding behavior and reproductive biology. In contrast to the solid knowledge on phylogeny and general reproductive morphology, the primary male reproductive system is strongly understudied, as it has been addressed only for few species. Those studies however suggested a high diversity of sperm and seminal secretions across the family. To address this disparity and reconstruct the evolution of sperm traits, we investigate the primary male reproductive system of pholcid spiders by means of light, X-ray, and transmission electron microscopy using a comprehensive taxon sampling with 46 species from 33 genera, representing all five subfamilies.
Results
Our data show a high disparity of sperm morphology and seminal secretions within pholcids. We document several sperm characters that are unique for pholcids, such as a helical band (Pholcinae) or a lamellate posterior centriolar adjunct material (Modisiminae). Character mapping revealed several putative synapomorphies for individual taxa. With regard to sperm transfer forms, we found that synspermia occur only in the subfamily Ninetinae, whereas the other subfamilies have cleistospermia. In several species with cleistospermia, we demonstrate that spermatids remain fused until late stages of spermiogenesis before ultimately separating shortly before the coiling process. Additionally, we explored the previously hypothesized correlation between sperm size and minimum diameter of the spermophor in the male palpal organ. We show that synspermia differ strongly in size whereas cleistospermia are rather uniform, but neither transfer form is positively correlated with the diameter of the spermophor.
Conclusions
Our data revealed a dynamic evolution of sperm characters, with convergences across all subfamilies and a high level of homoplasy. The present diversity can be related to subfamily level and allows for assignments of specific subtypes of spermatozoa. Our observations support the idea that Ninetinae are an ancestral clade within Pholcidae that have retained synspermia and that synspermia represent the ancestral sperm transfer form of Pholcidae.
Die Fähigkeit Temperaturstress zu wiederstehen gilt als äßerst wichtig für die Fitness eines Individuums oder das Überleben von Arten. Lebewesen müssen daher effektive Mechanismen entwickeln, um unter belastenden Temperaturbedingungen überleben zu können. Reaktionen auf sich ändernde Umweltbedingungen könnnen schnell durch phänotypische Plastizität oder langsame durch genetische Adaptation erfolgen. Neben Temperaturstress haben möglicherweise auch andere Umweltfaktoren einen Effekt auf die Temperaturstressresistenz. Wir erforschten zunächst phänotypische Anpassungen der Temperaturstressresistenz, ausgelöst durch unterschiedliche Manipulationen der Umwelt, bei dem Augenfalter Bicyclus anynana. Temperaturinduzierte Plastizität bewirkte eine schnelle und deutliche Änderung in der Temperaturstressresistenz, dieser Effekt ist reversibel. Kurzzeitige Abhärtung ergab komplexere Muster, so war die Kältestressresistenz beispielsweise am höchsten bei intermediären Temperaturen. Die Temperaturstressresistenz konnte auch durch Futtererhältlichkeit, Alter und Lichtzyklus beeinflußt werden. Des weiteren wurde der Einfluß der Photoperiode auf die Temperaturstressresistenz an der Fliege Protophormia terranovae erforscht. Variationen der Temperaturstressresistenz konnten durch Änderungen in der Photoperiode hervorgerufen werden, so bewirkten kürzere Tageslängen kälteresistentere und längere Tage hitzeresistentere Phänotypen. Wir schlagen vor, dass es sich hierbei um adaptive saisonale Plastizität handelt. Neben Temperaturstress hat möglicherweise auch Inzucht einen negativen Einfluss auf die Fähigkeit, mit sich ändernden Umweltbedingungen zurechtzukommen. Das könnte das Aussterberisiko kleiner Populationen erhöhen, insbesondere wenn Häufigkeit und Intensität extremer Wetterereignisse in Zukunft zunehmen sollen. Wir untersuchten den Einfluss von Inzucht auf den Schlupferfolg, die Entwicklung und die Temperaturstresstoleranz bei dem tropischen Augenfalter Bicyclus anynana indem wir drei verschiedene Inzuchtniveaus bildeten( Ausgekreuzt, nach 1 und nach 2 Geschwisterverpaarungen). Bereits diese vergleichsweise niedrigen Inzuchtniveaus hatten einen negativen Einfluss auf die Reproduktion und Entwicklung bei günstigen Umweltbedingungen. Inzucht reduzierte auch die Kältetoleranz bei adulten Schmetterlingen, während es keinen Einluss auf die Hitzetoleranz gab. Wir schließen daraus das Stresstoleranz nicht zwangsläufig durch Inzucht negativ beeinflusst wird. Verringerte genetische Diversität als Konsequenz von Inzucht oder Drift verringert möglicherweise auch das evolutionäre Potential einer Population. Wir erforschten die Auswirkungen von Inzucht auf das evolutionäre Potential (die Fähigkeit, Kältetoleranz zu erhöhen) mit Hilfe künstlicher Selektion beginnend von drei Inzuchtniveaus (ausgekreuzt, eine und zwei Geschwisterverpaarungen.) Obwohl ein negativer Einfluss genetischer Erosion (z.B. durch Inzucht) auf das evolutionäre Potential theoretisch vorhergesagt wird, sind empirische Nachweise bisher kaum vorhanden. Unsere Studie zeigt eine deutliche Raktion auf die Selektion, deren Effekt in den ingezüchteten Populationen kleiner war als in den ausgekreuzten Populationen. Korrelierte Reaktionen auf die Selektion untersucht in 10 verschiedenen Merkmalen der Lebensgeschichte konnten nicht gefunden werden. Eine Inzuchtdepression ließ sich in einigen untersuchten Merkmalen nach wie vor nachweisen. Merkmale, die bedeutender für die Fitness sind, zeigten dagegen eine deutliche Erholung von der Inzuchtdepression. Wir konnten mit diese Studie experimentell zeigen, das erhöhte Inzuchtniveaus das evolutionäre Potential reduzieren und damit auch die Fähigkeit, sich an ändernde Umweltbedingungen anzupassen. Zuletzt untersuchten wir, ob die durch Selektion erhöhte Kältetoleranz für alle Entwicklungsstadien gilt. Es gab eine positive signifikante Reaktion auf die Selektion bei Imagines, die ein Tag alt waren (das Alter, in dem die Selektion stattgefunden hatte). Ältere Individuen zeigten eine ähnliche, jedoch schwächere Reaktion. Die erhöhte Kälteresistenz ließ sich jedoch nicht bei Eiern, Raupen oder Puppen nachweisen und war sogar geringer in den Selektionslinien im Vergleich zu den Kontrollinien bei Eiern und jungen Raupen. Diese Ergebnisse deuten auf Kosten erhöhter Kältetoleranz im adulten Stadium hin, so dass vermutlich weniger Ressourcen für den Nachwuchs in frühen Stadien der Ontogenie bleiben. Diese Dissertation verdeutlicht, wie wichtig es ist, sowohl genetische als auch Umwelteffekt zusammen zu betrachten, da beide interaktiv die Fähigkeit eines Organismus herausfordern sich an ändernde Bedingungen anzupassen. In Zeiten von durch den Menschen verursachten Verlust und/oder der Verkleinerung von Habitaten, die die Populationsgrößen verkleinern und damit auch die genetische Diversität, sowie erhöhtem Temperaturstress aufgrund des Klimawandels, wird das langfristige Überleben von Arten von dieser Fähigkeit abhängen.
Abstract
Non‐native invasive species are threatening ecosystems and biodiversity worldwide. High genetic variation is thought to be a critical factor for invasion success. Accordingly, the global invasion of a few clonal lineages of the gastropod Potamopyrgus antipodarum is thus both puzzling and has the potential to help illuminate why some invasions succeed while others fail. Here, we used SNP markers and a geographically broad sampling scheme (N = 1617) including native New Zealand populations and invasive North American and European populations to provide the first widescale population genetic assessment of the relationships between and among native and invasive P. antipodarum. We used a combination of traditional and Bayesian molecular analyses to demonstrate that New Zealand populations harbour very high diversity relative to the invasive populations and are the source of the two main European genetic lineages. One of these two European lineages was in turn the source of at least one of the two main North American genetic clusters of invasive P. antipodarum, located in Lake Ontario. The other widespread North American group had a more complex origin that included the other European lineage and two New Zealand clusters. Altogether, our analyses suggest that just a small handful of clonal lineages of P. antipodarum were responsible for invasion across continents. Our findings provide critical information for prevention of additional invasions and control of existing invasive populations and are of broader relevance towards understanding the establishment and evolution of asexual populations and the forces driving biological invasion.
American and European foulbrood (AFB and EFB) are devastating bacterial brood diseases of honey bees (Apis mellifera), which cause colony and economic losses worldwide. The causative agent of AFB, Paenibacillus larvae, are grouped into different ERIC-genotypes (Enterobacterial repetitive intergenic consensus) the two most common of which are ERIC I and ERIC II. In the field, the differentiation between the symptoms of AFB and EFB (caused by Melissococcus plutonius) can be difficult. The differentiation between the ERIC-genotypes in the field based on the symptoms is not possible at all. The differentiation between the ERIC-genotypes of P. larvae during diagnosis can help to understand the spread of the AFB disease. Hence, a tool capable of detection and distinction between the bacterial brood diseases and the P. larvae-genotypes is needed. For the optimal prevention of disease spread, the diagnosis needs to be fast, cheap and reliable.
This study focuses on the development of a diagnostic sandwich ELISA and a lateral flow device (LFD) for the detection and distinction of EFB and AFB, including the differentiation of the two main occurring P. larvae genotypes. The therefore necessary specific monoclonal antibodies (mAbs) were obtained by immunizing mice with M. plutonius or P. larvae strains belonging to either ERC I or ERIC II. The generated mAbs were characterized for their specificity towards the target bacteria and for their cross reactivity towards other bee-associated bacteria. The screening for suitable mAbs resulted in two specific mAbs against M. plutonius, two against P. larvae in general and two against ERIC II. In combination with the anti-P. larvae mAbs, the anti-ERIC II mAbs were used for genotyping.
In order to evaluate the suitability of the mAbs, their antigens were identified. The target antigens of the produced mAbs turned out to be proteins that could be of further interest as they seem to be involved in the pathogenesis and host-pathogen-interaction. The mAbs with the same antigens were used in the sandwich ELISA for testing the cross reactivity and strain detection. Suitable mAb combinations were used for LFD production. The LFDs were then successfully tested against several field isolates of AFB and EFB causing agents and no cross reactivity with bee-associated bacteria was detected. The P. larvae strains used for mAb testing were genotyped to obtain information about the respective genetic variance. In the process atypical P. larvae strains were identified and further characterized using the generated mAbs. The ability of the mAbs to also recognise the atypical strains as well indicates that the mAbs bind to an antigen that is common among different P. larvae strains.
All in all, a fast tool for detection and differentiation of EFB, AFB and the two ERIC-genotypes was developed that has to be further tested for its reliability in the field.
Staphylococcus aureus, einer der häufigsten Erreger von Pneumonien, Endokardien und Sepsen (Frank et al. 2010), gehört bei nahezu einem Drittel der Bevölkerung zur normalen Nasenschleimhautflora (van Belkum et al. 2009) und kann unter bestimmten Risikobedingungen, vor allem in nosokomialer Umgebung, weiter in die unteren Atemwege vordringen und sich dort vermehren (van Belkum et al. 2009, Ahmed et al. 2015). Da das respiratorische Epithel von einer dicken, viskösen Mukusschicht bedeckt ist (Knowles & Boucher 2002), die Bakterien aufgrund ihrer Größe kaum durchdringen können, liegt die Hypothese nahe, dass es die sehr viel kleineren, löslichen Virulenzfaktoren der Bakterien sind, die den Mukus überqueren und einen ersten Pathogen-Wirt-Kontakt herstellen können. Das lösliche, porenbildende α-Hämolysin (Hämolysin a, Hla) ist einer der Haupt-Virulenzfaktor von S. aureus (Spaulding 2012). Studien hatten gezeigt, dass Hla auch in sublytischer Konzentration zu einer Auflösung der Zell-Zell- (Inoshima et al 2012) und Zell-Matrix-Kontakte (Hermann et al. 2015) humaner Atemwegsepithelzellen führte und so eine Lückenbildung im Zellverband induzierte. In vivo könnten solche Hla-vermittelten Prozesse dazu beitragen, dass eine erste Schädigung des Epithels erfolgt und die Überwindung der epithelialen Barriere für S. aures erleichtert wird. Die vorliegende Arbeit konnte in einem ersten Teil zeigen, dass diese Unfähigkeit von humanen Atemwegsepithelzellen (16HBE14o- und S9), nach Inkubation mit rHla den epithelialen Zusammenhalt aufrecht zu erhalten und entstandene parazelluläre Lücken durch aktive Migration zu schließen, auf eine rHla-induzierte Hyperphosphorylierung des fokalen Kontaktproteins Paxillin an Tyrosin 118 (und damit erhöhten Turnover der fokalen Kontakte) und Hypophosphorylierung des Actin-depolymerisierenden Faktors Cofilin an Serin 3 (und damit verstärkten Abbau von Stressfasern) zurückzuführen war. Der Hla-Effekt konnte so in fünf Prüfgrößen quantifizierbar erfasst werden: (1) Verlust des epithelialen Zusammenhalts, (2) Reorganisation des Actinzytoskeletts, (3) Auflösung fokaler Kontakte, (4) Hyperphosphorylierung von Paxillin und (5) Hypophosphorylierung von Cofilin. Im zweiten Teil der Arbeit wurden diese Prüfgrößen herangezogen, um den Mechanismus der Hla-Wirkung genauer aufzuklären. Durch Einsatz einer nichtporenbildenden Mutante rHla-H35L und dem Porenblocker IB201 konnte zunächst gezeigt werden, dass für die schädigenden Effekte auf den epithelialen Zusammenhalt der Zellen Ausbildung einer funktionellen Hla-Pore notwendig war und nicht Bindungsereignisse der Monomere, der Vorpore oder der Pore allein den Hla-Effekt auslösen konnten. Um die porenabhängigen Ereignisse zu untersuchen, wurden Ionenströme durch die Hla-Pore identifiziert und mit Ionomycin (erzeugt einen Calciumeinstrom) und Gramicidin (erzeugt einen Natriumeinstrom und Membrandepolarisierung) nachgebildet. Beide Ionenströme zusammen konnten den Hla-Effekt nahezu vollständig erzeugen. Die Ergebnisse wiesen darüber hinaus darauf hin, dass die Hla-erzeugten ionalen Veränderungen an der Membran unterschiedliche Signalveränderungen in der Zelle vermittelten: Calciumaktivierte Signalwege schienen vor allem für die beobachtete Paxillin-Phosphorylierung verantwortlich zu sein, während ein Natriumeinstrom zu einer Cofilin-Dephosphorylierung führte. Die genaue Signaltransduktion zwischen Einstrom der Ionen und (De-)Phosphorylierungsereignissen erfordert jedoch noch eine genauere Aufklärung. Des Weiteren konnte die Modellierung der Ionenströme den Hla-Effekt nicht komplett nachbilden, sodass wahrscheinlich zusätzliche porenabhängige Signalwege nach Hla-Behandlung (z.B. Verlust von ATP, Baaske & Richter et al. 2016) aktiviert werden.
Die Ergebnisse dieser Arbeit sollen dazu dienen, das Tragen eines Maulkorbs bei Diensthunden als möglichen Stressor zu analysieren und das Verhalten von Passanten auf Maulkorb tragende Hunde weiter zu erforschen.
123 Diensthunde wurden dafür in drei verschiedenen Situationen (Ablage (N=103), Stadtspaziergang (N=51) und Schutzdienst (N=35)) untersucht. Hierzu wurden das Ausdrucksverhalten und die Cortisolwerte videografiert und gemessen. Die Situatio-nen wurden jeweils einmal ohne und einmal mit Maulkorb durchgeführt, um gegebenenfalls eine Veränderung im Verhalten oder in den Cortisolwerten der Hunde durch den Maulkorb zu erkennen. Die Cortisolproben wurden vor der Situation im oder am Auto von den Diensthunden von den jeweiligen Hundeführern entnommen. 10-15 Minuten nach der Situation wurde die zweite Speichelprobe entnommen. Die Speichel-Cortisolwerte vorher und nachher dienten dem Vergleich und der Beurteilung, ob der Maulkorb einen Einfluss auf die Cortisolwerte hatte. Ausgewertet wurden die Proben mit Hilfe eines Enzymimmunoassays in Wien.
Während des Stadtspaziergangs wurde das Verhalten der Passanten auf die Hunde videografiert und ausgewertet. Auch hierbei wurde der Vergleich im Verhalten der Menschen auf die Diensthunde „ohne Maulkorb“ (N=1010) und „mit Maulkorb“ (N=1011) angestellt.
Die Fragestellungen dieser Arbeit waren:
• Zeigt der Diensthund in drei unterschiedlichen Übungssituationen durch das Tragen des Maulkorbes andere Verhaltensweisen als ohne Maulkorb?
• Steigt der Pegel des Stresshormons Cortisol beim Diensthund durch das Tragen des Maulkorbes in drei unterschiedlichen Übungssituationen im Vergleich zu den gleichen Situationen ohne Maulkorb an?
• Sind die Reaktionen von Passanten auf einen maulkorbtragenden Hund anders, als auf einen Hund ohne Maulkorb?
In dieser Studie konnte in keiner der drei Situationen ein Anstieg der Cortisolwerte bei den Hunden durch das Tragen des Maulkorbes festgestellt werden. Bei den Ver-haltensbeobachtungen konnten hingegen Unterschiede erkannt werden. Die Ohr- und Rutenhaltung wurden während des Stadtspaziergangs mit Maulkorb häufiger in einer defensiveren und submissiveren Stimmungslage getragen. Zusätzlich wurde ohne Maulkorb mehr gewedelt und geschnüffelt.
Der Einsatz des Maulkorbes bei der Polizei erzeugt nach dieser Studie bei Dienst-hunden keinen zusätzlichen Stress und stellt vielfach ein unersetzliches Hilfsmittel dar. Auch bei der Verwendung im Privathundebereich ist der Maulkorb deshalb mit hoher Wahrscheinlichkeit ein gutes Hilfsmittel, das der Hund, bei guter Gewöhnung und für einen begrenzten Zeitraum, ohne gesundheitliche Bedenken tragen kann.
Das Verhalten der Passanten auf die Hunde unterschied sich nur in dem Verhalten „keine Reaktion“. Auf Hunde ohne Maulkorb wurde häufiger nicht reagiert. Ein Anzeichen für erhöhte Furcht oder Wachsamkeit bei einem potentiell gefährlichen Hund mit Maulkorb, wie es in der Studie von Racca & Baudoin (2009) festgestellt wurde, konnte nicht beobachtet werden.
Der Vergleich von den in dieser Arbeit gewonnenen Erkenntnissen mit anderen Studien, ist fast nur in dem Bereich der Stressforschung beim Hund möglich. Arbeiten über die Auswirkungen des Maulkorbes auf das Verhalten von Hunden oder Passanten sind bisher kaum durchgeführt worden. Diese Arbeit bietet in diesem Bereich einen bisher einzigartigen Ansatz und konnte darüber hinaus mit einer großen Anzahl von Hunden durchgeführt werden.
Die vorgelegte Studie wurde auch im Hinblick auf Tierschutzaspekte durchgeführt und diskutiert. Es ist zu berücksichtigen, dass für die hier getesteten Situationen nur ein kurzes Tragen des Maulkorbes vom Hund notwendig war. Die Vielfältigkeit der unterschiedlichen Ausbildungsmethoden in den Polizeidienststellen und auch die vielfältigen Persönlichkeiten von Hunden und Hundeführern machen die Arbeit so anwendungsrelevant. Gerade auch die unterschiedliche Gewöhnung und Gewöhnungszeit an den Maulkorb, spiegelt die Realität im Umgang mit diesem Hilfsmittel wider und bietet, durch die große Zahl an teilgenommenen Hunden, trotzdem aussagekräftige Ergebnisse.
In einer parallel durchgeführten Studie von I. Spitzley werden das Verhalten und die Cortisolwerte von Haushunden während eines 45 minütigen Freilaufs, jeweils Hunde mit und ohne Maulkorb, ausgewertet und analysiert.
Emerging infectious diseases are among the greatest threats to human, animal and plant health as well as to global biodiversity. They often arise following the human-mediated transport of a pathogen beyond its natural geographic range, where host species are typically not well adapted due to a lack of co-evolutionary host-pathogen dynamics. One such pathogen is the fungus Pseudogymnoascus destructans (Pd), which causes White-Nose disease in hibernating bats. While Pd was first observed in North America where it has led to mass-mortalities in some bat species, the pathogen originates from Eurasia where infection is not associated with mortality. Most of the Pd research has focused on the invasive North American range, which likely underestimated the genetic structure of the pathogen and the role it might play in the disease dynamics.
In my work, I therefore evaluated the genetic structure of Pd in its native range with the aim of uncovering cryptic diversity and further use population genetic data to address some key ecological aspects of the disease dynamics. With an extensive reference collection of more than 5,000 isolates from 27 countries I first demonstrated strong differentiation between two monophyletic clades across several genetic measures (multi-locus genotypes, full genome long-read sequencing and Illumina NovaSeq on isolate pools). These findings are consistent with the presence of two cryptic species which are both causative agents of bat White-Nose disease (‘Pd-1’, which corresponds to P. destructans sensu stricto, and ‘Pd-2’). Both species exist in the same geographic range and co-occur in the same hibernacula (i.e., in sympatry), though with specialised host preferences. I further described the fine-scale population structure in Eurasia which revealed that most genotypes are unique to single hibernacula (more than 95% of genotypes). The associated differences in microsatellite allele frequencies among hibernacula allowed the use of assignment methods to assign the North American isolates (exclusively Pd-1) to regions in Eurasia. Hence, a region in Ukraine (Podilia) is the most likely origin of the North American introduction.
To gain further insights into the spatial and temporal dynamics of White-Nose disease on a localised scale, several hibernacula were sampled with high intensity (artificial hibernaculum in Germany and natural karst caves in Bulgaria). Low rates of Pd gene flow were observed even among closely situated hibernacula. This indicates that Pd does not remain viable on bats over summer or it would be frequently exchanged among bats (and hence hibernacula) resulting in a homogenous distribution of genotypes. Instead, bats need to become re-infected each hibernation season to explain the yearly re-occurrence of White-Nose disease. Given the distribution and richness of Pd genotypes on hibrnacula walls and infected bats of the same hibernacula, bats become infected from the hibernacula walls when they return after summer. This means that environmental reservoirs exist within hibernacula (i.e., the walls) on which Pd spores persist during bat absence and which drive the yearly re-occurrence of White-Nose disease. In an experimental setup, I confirmed the long-term viability of Pd spores on abiotic substrate for at least two years and furthermore discovered temporal variations in Pd spores’ ability to germinate. In fact, these variations followed a seasonal pattern consistent with the timing of bats absence (reduced germination) and presence (increased germination) and could indicate adaptations of Pd to the bats’ life-cycle. The infection of bats from environmental reservoirs hence seems to be a central aspect of White-Nose disease dynamics and Pd biology.
Pds ability to remain viable for extended periods outside the host increases its risk of being anthropogenically transported and might have played a role in the emergence of White-Nose disease in North America. The existence of a second species (Pd-2) poses a great additional danger to North American bats considering that its introduction there could lead to deaths and associated population declines in so-far unaffected species given what is known about differing host species preferences in Eurasian bats. Even within the native range of Pd, the movement of Pd between differentiated fungal populations could facilitate genetic exchanges (e.g., through sexual reproduction) between genetically distant genotypes. Such genetic exchanges could lead to phenotypic jumps in pathogenicity or host-species preferences and should hence be prevented.
The native range of a pathogen holds great potential to better understand the genetic and ecological basis of a (wildlife) disease. My work informs about the dangers associated with the accidental transport of Pd (and other pathogens) and highlights the need for ‘prezootic’ biosecurity-oriented strategies to prevent disease outbreaks globally. Once a pathogen has arrived in a new geographic range, and particularly if it has environmentally durable spores (as demonstrated for Pd), it will be difficult/impossible to eradicate. Furthermore, a pathogen’s ability to remain viable outside the host and infect them from environmental reservoirs has been associated with an increased risk of species extinctions and needs to be considered when designing management strategies to mitigate disease impact.
For decades, evolutionary biologists have sought to understand the evolution of individual behaviour, physiology and ecology allowing organisms to cope to environmental change. One of the main challenges of current climate change is the unprecedent rate of temperature increase, as well as the increased occurence of extreme heat events. Interindividual response variability opens a whole new area of opportunities to understand how individual phenotypic traits are linked to individual response differences. In colour polymorphic species, colour honestly reflects an individual’s life-history strategy, and each morph may, therefore, represent an alternative life-history strategy. As such, colour polymorphic species, such as the Gouldian finch (Erythrura gouldiae), may be good models to assess how different strategies between morphs are linked to their espective responses to environmental variations. However, polymorphic species have mainly been disregarded for that purpose. In this context, the main aim of this thesis was to understand how the two morphs of the Gouldian finch respond through phenotypic plasticity to simulated heatwaves reaching thermocritical temperatures, and whether such differential responses may help to identify a ‘winner’ and a ‘loser’ morph in the light of climate change. To address these issues, we used an integrative approach including measurements of behavioural (Study 1), physiological (Study 2), and reproductive (Study 3) parameters. The novelty of our approach was to assess the immediate behavioural and physiological response variation of individuals of the two morphs longitudinally across different thermal conditions, as well as the postponed effects of this thermocritical heatwave exposure on their reproductive performance. In this study, although the behavioural responses generally did not differ between morphs or according to temperature intensity, the physiological and reproductive parameters differed in response to morph and temperature intensity. Blackheaded females, in particular, seem highly sensitive to thermocritical heatwaves, as they exhibited decreased body mass and increased oxidative damage during the thermocritical heatwaves, and advanced breeding initiation after these conditions, whereas these variables remained mostly unaffected in black-headed males and red-headed individuals. However, despite some response differences between morphs, both invested similarly in reproduction following intense heatwaves, and the offspring of both morphs were similarly affected. Based on these results, no morph therefore seems to appear more disadvantaged than the other following an intense heatwave, and red- and black-headed Gouldian finches may both be considered as climate stress ‘losers’.
The impact of inbreeding under different environmental conditions and of artificial selection on cold tolerance was investigated in laboratory populations of the tropical butterfly Bicyclus anynana. The investigation focused on (1) the effects of inbreeding on several fitness-related traits and whether inbred individuals are more susceptible to stress, (2) interactions between inbreeding, genetic adaptation to cold stress and environmental conditions, (3) the effects of artificial selection and inbreeding in the adult stage in other developmental stages, and (4) the effect of inbreeding depression on the heat shock response. Environmental conditions are not constant over time; consequently organisms have to deal with environmental changes. Besides naturally fluctuating conditions, human-induced climate change may increase temperature changes as well as the severity of heat or cold waves. Temperature-stress resistance describes an organism’s ability to cope with stressful temperatures. Enhanced resistance to temperature stress can be reached by phenotypic plasticity or genetic adaptation. Plastic organisms are able to react fast to changing environmental conditions, whereas genetic adaptation is more important for long-term adaptation. Natural habitats may also be affected by human impact, causing habitat loss or fragmentation and changes in population structure. A decrease in the population size may result in inbreeding and inbreeding depression (ID). Consequences of inbreeding are well documented, and inbred individuals are predicted to be more sensitive to environmental stress than outbred individuals. The long term persistence of species and populations depends on their ability to adapt to novel conditions which in turn depends on genetic diversity. Therefore, studies of temperature resistance and its evolution in relation to inbreeding are very important. First a higher susceptibility of inbred individuals to environmental stress was determined in different populations of B. anynana. Inbreeding depression was revealed for several fitness-related traits, but not for immunity traits or heat tolerance. Temperature affected most traits, revealing the importance of temperature on ectotherms; just two hours of thermal stress affected important reproductive, life-history and immunity traits already. Importantly though, no evidence were found that inbred individuals are more susceptible to stressful temperatures than outbred individuals. Genetic adaptation and phenotypic plasticity can interact with one another, resulting in genotype-environmental interactions (G x E). The hypotheses tested here were that some genotypes are more plastic than others and that lines with increased cold stress resistance are less plastic with regard to cold resistance than control lines. To induce plastic responses the exposed lines differed in cold tolerance and inbreeding to different temperatures as well as different feeding regimes and measured fitness-related traits. Several interactions were detected in which a selection regime was involved, but these interactions did not show a clear overall pattern. In summary though, findings were that marginal impacts of directional selection and inbreeding on plastic responses and suggest that, at least for my study organism, the genetic architecture of fitness-related traits is not connected with the architecture of plastic responses. The next investigation concerned with the manifestation of genetic adaptation to produce one specific phenotype across development stages and possible trade-offs. The assumption tested was that there is a genetic link between different developmental stages to produce one definite phenotype by imposing selection in the adult stage only. Lines selected for increased cold resistance in the adult stage were used and increased cold resistance throughout all developmental stages was expected. However, higher cold resistance was found only in the adult stage and not in developmental stages. This could be either the result of a resource allocation trade-off between different stages or that there is no cold resistance phenotype. Thus, if selection takes place in the adult stage it does not affect the others. In the last experiment investigation was directed to determine whether there are negative inbreeding effects on the heat shock protein (HSP) response. Under stressful conditions, organisms produce the HSPs and they act as chaperons required for refolding and repairing of stress degraded proteins. Testing was oriented to find if inbreeding as a genetic stressor´ provokes a higher HSP expression and if there is evidence for higher temperature stress susceptibility on inbred individuals. Findings indeed showed a stronger HSP up-regulation in control compared to inbred lines with a negative inbreeding impact occurrence, which may causally underlie inbreeding depression.
Background
Pycnogonida (sea spiders) is the sister group of all other extant chelicerates (spiders, scorpions and relatives) and thus represents an important taxon to inform early chelicerate evolution. Notably, phylogenetic analyses have challenged traditional hypotheses on the relationships of the major pycnogonid lineages (families), indicating external morphological traits previously used to deduce inter-familial affinities to be highly homoplastic. This erodes some of the support for phylogenetic information content in external morphology and calls for the study of additional data classes to test and underpin in-group relationships advocated in molecular analyses. In this regard, pycnogonid internal anatomy remains largely unexplored and taxon coverage in the studies available is limited.
Results
Based on micro-computed X-ray tomography and 3D reconstruction, we created a comprehensive atlas of in-situ representations of the central nervous system and midgut layout in all pycnogonid families. Beyond that, immunolabeling for tubulin and synapsin was used to reveal selected details of ganglionic architecture. The ventral nerve cord consistently features an array of separate ganglia, but some lineages exhibit extended composite ganglia, due to neuromere fusion. Further, inter-ganglionic distances and ganglion positions relative to segment borders vary, with an anterior shift in several families. Intersegmental nerves target longitudinal muscles and are lacking if the latter are reduced. Across families, the midgut displays linear leg diverticula. In Pycnogonidae, however, complex multi-branching diverticula occur, which may be evolutionarily correlated with a reduction of the heart.
Conclusions
Several gross neuroanatomical features are linked to external morphology, including intersegmental nerve reduction in concert with trunk segment fusion, or antero-posterior ganglion shifts in partial correlation to trunk elongation/compaction. Mapping on a recent phylogenomic phylogeny shows disjunct distributions of these traits. Other characters show no such dependency and help to underpin closer affinities in sub-branches of the pycnogonid tree, as exemplified by the tripartite subesophageal ganglion of Pycnogonidae and Rhynchothoracidae. Building on this gross anatomical atlas, future studies should now aim to leverage the full potential of neuroanatomy for phylogenetic interrogation by deciphering pycnogonid nervous system architecture in more detail, given that pioneering work on neuron subsets revealed complex character sets with unequivocal homologies across some families.
The need for the diversification of utilised species has emerged in the present aquaculture
production environment. Shifts in consumer interest, climate change-induced temperature
increases, and major fish disease outbreaks have put a strain on this industry. In this context,
the pikeperch (Sander lucioperca) has become a new target species for aquaculture in Central
Europe. This new aquaculture focus species exhibits high numbers of offspring, fast growth,
and high consumer acceptance. It can also effectively deal with higher temperatures and turbid
water. However, the rate of successful rearing is still low, as various developmental
transformations and environmental effects commonly lead to high mortality rates during the
early ontogenetic stages. The aim of this doctoral project was thus to obtain insight into
embryonic to larval developmental changes during pikeperch ontogeny. Specifically, the times
of change that influence survival were of focus. Based on the available literature, particular
attention was paid to general growth patterns and the connected developmental changes, the
determination of myogenesis gene marker expression changes, and the support of animal
welfare efforts for pikeperch rearing procedures. To achieve the aims of the study, a methodical
setup consisting of morphometric and developmental observations was combined with
transcriptome gene marker analysis for the different ontogenetic stages.
Three developmental phases were differentiated during the embryo-larval transition. Each of
these possessed distinct growth patterns with different growth rates. The intermediate
threshold phase showed internal organ development that focused on digestive, neuronal, and
heart tissues. Three activity phases of myogenesis were determined: during early embryonic
development, before hatching, and after hatching during the larval stages. Therefore, muscle
development seemed to be regulated to balance energy expenditures. Additionally, two
coinciding skeletogenic phases were found. Furthermore, a cell line from whole embryos was
developed to support the replacement of animals in future experimental setups. A software
system for video analyses was developed to support rearing procedures in aquaculture
facilities. This prototype can be used to automate the counting of specimens and thus allows
for faster responses to increasing mortalities. Based on the results of this thesis project, further
insights into the early development of pikeperches were obtained. This will facilitate the design
and adaptation of raising and husbandry protocols, which can help to further establish
pikeperch as an aquaculture species and support its application in modern recirculatory
systems.
Abstract
Sander lucioperca is an organism of growing importance for the aquaculture industry. Nonetheless, the rearing of S. lucioperca larvae is proving to be a difficult task as it is facing a high mortality rate during hatching and the change to exogenous feeding. To gain insight into growth patterns during this period, the authors analysed pikeperch embryos and larvae from 9 days before hatching to 17 days after hatch. Hereby they were able to describe a natural development by using close to natural conditions based on using a direct flow‐through supply of lake fresh water on specimens from a local wild population. The results show that between the early embryonic stages a steady growth was visible. Nonetheless, in between hatching and the start of exogenous feeding, a phase of growth stagnation took place. In the following larval stages, an increased growth with large size variations between individual specimens appeared. Both factors are conspicuous as they can indicate a starting point for cannibalism. With this analysis, the authors can provide a fundament to support the upcoming research on S. lucioperca and aid to optimize size‐sorting procedures for a higher survival of pikeperch stock in aquaculture.
Abstract
Pikeperch (Sander lucioperca) has become a species of interest in aquaculture. It is a popular and economically valuable food fish and can produce high numbers of offspring. However, during early development, there are transition phases when high mortality rates concur with growth changes, vital organ transformations and a limited energy budget. Up to now, no study focused on the developmental adaption of muscle tissue in pikeperch, regardless of muscle tissue influencing essential traits such as locomotion and thus the competence to hunt prey and avoid predators. In the present study, therefore, the developmental myogenesis of pikeperch was analysed using specimens from early embryonic to larval development. Myogenic and developmental genes were utilized to gain insights into transcriptomic regulation during these stages by applying a nanofluidic qPCR approach. Result, three phases of myogenic gene expression, during somitogenesis, during the late embryonic development and during the larval development were detected. Increased myostatin expression showed an interim arrest of muscle formation between embryonic and larval myogenesis. Expression patterns of satellite cell gene markers indicated an accumulation of stem cells before myogenesis interruption. The here gained data will help to broaden the knowledge on percid myogenesis and can support pikeperch rearing in aquaculture.
Die „protein misfolding cyclic amplification“ (PMCA) ist eine Methode zur Amplifikation des pathologischen Prion-Proteins in vitro und ermöglicht so den hochsensitiven Nachweis von PrPSc-Molekülen. Ziel der vorliegenden Arbeit war es, diese neue Untersuchungsmethode zum Nachweis des BSE-Erregers zu adaptieren, verschiedene Erregerstämme zu charakterisieren und unterschiedliche Gewebeproben aus der Pathogenese-Studie des FLI (HOFFMANN et al. 2007) auf ihren Priongehalt zu testen. Durch Festlegung von Standardwerten für die Ultraschallbehandlungen im Hinblick auf Zyklenzahl, Schallstärke, Inkubationstemperatur und Zyklusdauer sowie Verwendung definierter negativer als auch positiver Kontrollen, konnte die PMCA erfolgreich angepasst werden. Verwendet wurde als Substrat Hirnhomogenat transgener Mäuse, die das bovine PrPC überexpremieren (Tgbov XV). Bei Untersuchungen von Gewebeproben von insgesamt 4 Rindern aus der Pathogenesestudie konnte PrPSc in folgenden Gewebetypen nachgewiesen werden: dem dorsalen Root-Ganglion, dem Ganglion coeliacum, dem Ganglion stellatum, dem Ganglion trigeminale, der caudalen Medulla, den jejunalen und ilealen Peyer´schen Platten, dem Kolon, dem ilealen und jejunalen mesenterialen Lymphknoten, dem Nervus opticus, den Nebennieren, dem Rectum und dem Rückenmark und erstmals auch im Labmagen, dem Oesophagus und dem Pansen. Die PMCA wurde ebenso für die Untersuchung zur Speziesbarriere eingesetzt. Dazu wurden verschiedene TSE-Stämme (klassische BSE, atypische BSE, klassische Scrapie, ovine und caprine BSE sowie CWD) in unterschiedlichen Substraten mit bovinem und ovinem PrPC amplifiziert. Die Ergebnisse zeigen, dass die Speziesbarriere eine verringerte Amplifikationseffizienz in vitro verursachte und teilweise die Amplifikation vollständig inhibierte. Zusätzlich wurde beobachtet, dass die Amplifikationseffizienz nicht nur von der Sequenzhomologie bestimmt wird, sondern auch von der Konformation der eingesetzten Isolate. Dies korreliert mit der erleichterten Infizierbarkeit von Individuen gleicher Art im Gegensatz zu der verringerten Übertragbarkeit zwischen artfremden Spezies (Speziesbarriere). Die mangelnde Umfaltungs-Effizienz ist eine Folge von Spezies-spezifischen Sequenzunterschieden im Prion-Protein und daraus resultierender Strukturunterschiede. Einen Hinweis auf ein verändertes Verhalten der Seeds in vivo und in vitro wurde bereits in der Literatur beschrieben. Intrazerebral infizierte Hamster, die mit einem in der PMCA amplifizierten Seed inokuliert wurden bewiesen, dass das neu gebildete PrPres infektiös war, da sich bei den Tieren nach etwa 165 Tagen, post infektionem, klinische Symptome für eine Scrapieerkrankung zeigten (CASTILLA et al. 2005). Wurden die Hamster aber direkt mit einem Hamster-Scrapie-Stamm der Variante 263K inokuliert, erkrankten diese schon nach 60 Tagen (KIMBERLIN et al. 1977), was auf eine Veränderung der PrPres-Fragmente während der PMCA-Reaktion hindeutet. Eine vergleichbare Studie zeigte, dass sich diese Ergebnisse bei intrazerebraler Inokulation in Mäusen reproduzieren lassen (WEBER et al. 2007). In der PMCA konnten also PrPres-Amplifikate mit veränderten biochemischen Eigenschaften generiert werden. Zukünftige Arbeiten müssen zeigen, inwieweit die PMCA andere diagnostische Nachweisverfahren (Mausbioassay, Immunhistochemie) für den BSE-Erreger ergänzen oder gar ersetzen kann. Um die PMCA als ein sicheres Diagnoseverfahren zu verwenden, sind jedoch weitere Untersuchungen insbesondere hinsichtlich der Spezifität der Methode nötig.
The goal of this thesis was to study the systematic relationships within the superfamily Sylvioidea (Aves: Passeriformes) in general and within the closely related families Acrocephalidae and Locustellidae in particular, by means of DNA sequences. Sylvioidea itself and families therein were the focus of many studies based as well on morphological characters as on DNA. Due to their morphological similarity and their presumably rapid radiation most studies failed to solve relationships between sylvioidean families and also demarcations of single families and relations within are still in progress. In this study, an enlargement of previous datasets, both taxa and number of DNA sequences, and more sophisticated analysis methods were used to improve the resolution in Sylvioidea, Acrocephalidae and Locustellidae. In addition, the applicability of barcoding in Acrocephalidae was tested. The monophyly of Sylvioidea could be supported and the families Paridae and Remizidae, which were sometimes still included, clustered among the outgroup taxa. Four families, Nicatoridae, Panuridae, Alaudidae, and Macrosphenidae constitute basal splits within Sylvioidea. The division of the former sylviid/timaliid clade in five families, Sylviidae, Leiothrichidae, Pellorneidae, Timaliidae, and Zosteropidae was supported. Scotocerca, Erythrocercus, and Hylia, previously supposed to be members of Cettiidae, were shown not to belong to this family. As the three genera are also morphologically and ecologically different, they were here proposed to be elevated to family rank, Scotocercidae, Erythrocercidae and Hyliidae, respectively. The family Acrocephalidae consisted of the four genera, Nesillas, Acrocephalus, Hippolais, and Chloropeta. In the analysis for this thesis, the latter three appeared to be non-monophyletic. One Acrocephalus species, A. aedon was sister to a clade containing four species of Hippolais as well as two out of three Chloropeta species. They were all merged in the genus Iduna, based on the DNA evidence and shared morphological and ecological characters. Iduna had priority over Hippolais or Chloropeta according to the International Code of Zoological Nomenclature. The one remaining Chloropeta species (C. gracilirostris) had to be renamed to Calamonastides as Chloropeta was no longer available for this taxon. Seven genera were included in the re-analysis of the family Locustellidae: Locustella, Bradypterus, Megalurus, Dromaeocercus, Schoenicola, Cincloramphus, and Eremiornis. Apart from the monotypic genera Dromaeocercus and Eremiornis and Schoenicola, of which only one species was included, the remaining genera were found to be non-monophyletic. One clade contained all Locustella species, Megalurus pryeri and all Asian/Oriental Bradypterus species. All species in this clade were synonymized with Locustella, as the type species of Locustella was included, whereas the type species of Bradypterus fell in a different clade. Therefore, the remaining African Bradypterus species retained their genus name, and Dromaeocercus was renamed to Bradypterus as it clustered within Bradypterus. Cincloramphus, intermingling with the remaining Megalurus species, was synonymized with the latter. Barcoding, growing in popularity for delimiting species, was tested in its applicability for Acrocephalidae. Fourteen taxa currently recognized as full species would fall under the 2% threshold of sequence divergence proposed for delimiting species using the mitochondrial cytochrome b gene. It was also shown that it is important to clarify which part of a DNA sequence is used, as different parts can give different results regarding the 2% threshold. In addition, the choice of “complete deletion” or “pairwise deletion” in calculating genetic distances is important, if incomplete are sequences used.
Abstract
Emperor penguins breed during the Antarctic winter and have to endure temperatures as low as −50 °C and wind speeds of up to 200 km h−1. To conserve energy, they form densely packed huddles with a triangular lattice structure. Video recordings from previous studies revealed coordinated movements in regular wave-like patterns within these huddles. It is thought that these waves are triggered by individual penguins that locally disturb the huddle structure, and that the traveling wave serves to remove the lattice defects and restore order. The mechanisms that govern wave propagation are currently unknown, however. Moreover, it is unknown if the waves are always triggered by the same penguin in a huddle. Here, we present a model in which the observed wave patterns emerge from simple rules involving only the interactions between directly neighboring individuals, similar to the interaction rules found in other jammed systems, e.g. between cars in a traffic jam. Our model predicts that a traveling wave can be triggered by a forward step of any individual penguin located within a densely packed huddle. This prediction is confirmed by optical flow velocimetry of the video recordings of emperor penguins in their natural habitat.
Flies are implicated in carrying and mechanically transmitting many primate pathogens. We investigated how fly associations vary across six monkey species (Cercopithecus ascanius, Cercopithecus mitis, Colobus guereza, Lophocebus albigena, Papio anubis, and Piliocolobus tephrosceles) and whether monkey group size impacts fly densities. Fly densities were generally higher inside groups than outside them, and considering data from these primate species together revealed that larger groups harbored more flies. Within species, this pattern was strongest for colobine monkeys, and we speculate this might be due to their smaller home ranges, suggesting that movement patterns may influence fly–primate associations. Fly associations increase with group sizes and may thus represent a cost to sociality.
Photosynthetic activity in both algae and cyanobacteria changes in response to cues of predation
(2022)
A plethora of adaptive responses to predation has been described in microscopic aquatic producers. Although the energetic costs of these responses are expected, with their consequences going far beyond an individual, their underlying molecular and metabolic mechanisms are not fully known. One, so far hardly considered, is if and how the photosynthetic efficiency of phytoplankton might change in response to the predation cues. Our main aim was to identify such responses in phytoplankton and to detect if they are taxon-specific. We exposed seven algae and seven cyanobacteria species to the chemical cues of an efficient consumer, Daphnia magna, which was fed either a green alga, Acutodesmus obliquus, or a cyanobacterium, Synechococcus elongatus (kairomone and alarm cues), or was not fed (kairomone alone). In most algal and cyanobacterial species studied, the quantum yield of photosystem II increased in response to predator fed cyanobacterium, whereas in most of these species the yield did not change in response to predator fed alga. Also, cyanobacteria tended not to respond to a non-feeding predator. The modal qualitative responses of the electron transport rate were similar to those of the quantum yield. To our best knowledge, the results presented here are the broadest scan of photosystem II responses in the predation context so far.
Niedermoore beherbergen eine einzigartige Flora und Fauna. Aber Niedermoore sie sind auch stark bedroht. So ist von der ursprünglichen Moorfläche Deutschlands nur noch ein Prozent erhalten. Es stellt sich also die Frage, wie sich diese Restflächen möglichst effektiv managen lassen, um diese einzigartige Biodiversität zu schützen. Zudem werden die verbliebenen Niedermoorflächen wahrscheinlich nicht ausreichen, um besonders stark gefährdete Arten auch langfristig zu erhalten. Es wird also nötig sein, degradierte Niedermoorstandorte zu renaturieren, um ausreichend Lebensraum für besonders stark gefährdete Niedermoorarten zu reetablieren. Aus diesem Grunde wurde in dieser Arbeit sowohl der Einfluss unterschiedlicher Nutzungsformen wie auch von Renaturierungsmaßnahmen auf die Biodiversität der Niedermoore untersucht. Die Untersuchungen wurden zwischen 2011 und 2012 im Unteren Peenetal in Mecklenburg-Vorpommern durchgeführt. Als Indikatorgruppen wurden die Vögel (Aves), Tagfalter (Lepidoptera), Heuschrecken (Ensifera und Caelifera) und Laufkäfer (Coleoptera: Carabidae) ausgewählt, um den Einfluss von fünf unterschiedlichen Nutzungstypen (Intensivgrünland, Feuchtgrünland, Sommermahd, Wintermahd, Brache) auf die Fauna der Niedermoore zu ermitteln. Die Effektivität von Renaturierungsmaßnahmen wurde anhand der Laufkäfer und Gefäßpflanzen untersucht, auf entwässerten (Intensivgrünland), wiedervernässten (einst stark entwässertes Intensivgrünland) und naturnahen (relativ naturbelassen) Niedermoorstandorten. Zusätzlich wurden bei allen Untersuchungen verschiedene Umweltparameter erfasst, wie z.B. Wasserstand, Vegetationsstruktur und Torfdegradation. Noch vor der eigentlichen Datenaufnahme, wurde ein naturschutzfachliches Bewertungssystem entwickelt, welches auf der Häufigkeit, der Gefährdung und der Verantwortlichkeit Deutschlands für den Schutz einer Art basiert. Durch dieses Bewertungssystem lassen sich jedem Standort, je nach Artengruppe, spezifische Naturschutzwerte zuweisen. Die untersuchten Nutzungstypen unterschieden sich signifikant in Wasserstand und Vegetationsstruktur, was entscheidenden Einfluss auf die Ausprägung der Artgemeinschaftsstrukturen hatte. Die untersuchten Taxa reagierten sehr unterschiedlich auf die verschiedenen Nutzungstypen. Die Sommermahdflächen, welche durch relativ hohe Wasserstände gekennzeichnet waren, hatten einen besonders hohen naturschutzfachlichen Wert für die Vögel, während sich das Intensivgrünland aufgrund der Frühjahrsmahd und niedriger Wasserstände als ungeeignet für die niedermoortypische Avifauna erwies. Hingegen wurden für die Tagfalter und Heuschrecken die höchsten Artzahlen und Naturschutzwerte im Feuchtgrünland nachgewiesen, welches durch mittlere Mahdfrequenzen und Wasserstände charakterisiert war. Die Wintermahdflächen zeigten zum einen die niedrigsten Artzahlen und Naturschutzwerte für die Tagfalter und Heuschrecken, zum anderen aber auch den höchsten Naturschutzwert für die Laufkäfer. Auf den Brachflächen konnten besonders viele Individuen der vom Aussterben bedrohten Laufkäferarten Carabus menetriesi und Limodromus krynickii nachgewiesen werden. Diese Ergebnisse zeigen deutlich, dass nur ein Mosaik unterschiedlicher Nutzungstypen mit ausreichend hohen Wasserständen, die gesamte Niedermoorfauna erhalten kann. Auch entwässerte, wiedervernässte und naturnahe Niedermoore zeigten deutliche Unterschiede bezüglich der Umweltparameter. In der Folge waren diese drei Niedermoortypen auch durch eigenständige Gefäßpflanzen- und Laufkäfergemeinschaften gekennzeichnet. Besonders der Wasserstand und der Zustand des Torfkörpers hatten einen Einfluss auf die Formierung der niedermoortypspezifischen Artgemeinschaftsstrukturen. Artzahl und Naturschutzwert der Gefäßpflanzen waren auf naturnahen Niedermooren am höchsten, während auf entwässerten sowie wiedervernässten Niedermooren nur sehr geringe Artzahlen und Naturschutzwerte für die Gefäßpflanzen ermittelt werden konnten. Hingegen waren für die Laufkäfer, die Artzahl und die Anzahl stenotoper Niedermoorarten auf den wiedervernässten Flächen am höchsten. Auch der Naturschutzwert der Laufkäfer war auf den wiedervernässten Niedermooren deutlich höher als auf entwässerten Standorten, erreichte aber nicht den besonders hohen Naturschutzwert naturnaher Niedermoore. Folglich können Wiedervernässungen zwar zu einer deutlichen naturschutzfachlichen Aufwertung entwässerter Niedermoore führen. Jedoch sind Wiedervernässungsmaßnahmen alleine nicht geeignet, um Artgemeinschaften naturnaher Niedermoore zu reetablieren. Entsprechend hoch ist die Bedeutung des Schutzes noch bestehender naturnaher Niedermoore. Zudem zeigen die sehr unterschiedlichen Reaktionen der einzelnen Taxa auf die jeweiligen Management- und Renaturierungsmaßnahmen, wie wichtig die Berücksichtigung mehrerer Artengruppen bei naturschutzfachlichen Bewertungen von Management- und Renaturierungsmaßnahmen ist.
Global climate change is omnipresent all over the world and is affecting and challenging organisms in various ways. Species either have to adapt to the changing environmental conditions or move to new habitats in order to avoid extinction.
Possible ways for an organism to react can be dispersal, phenotypic plasticity, genetic adaptation or a combination of these factors. Among the various consequences of climate change, especially changes in temperature affect plenty of species. In ectotherms, the body temperature and associated mechanisms are strongly dependent on environmental conditions.
The aim of this work was to investigate the mechanisms underlying adaptation to thermal variation and heat stress in the widespread butterfly species <i>Pieris napi<i>.
Focusing on indicators of individual condition, including morphology, physiology and life history traits, the purpose was to specify whether the species’ responses to temperature variation have a plastic or genetic basis. In the first experiment, phenotypic variation along a latitudinal and altitudinal cline was investigated. Yellow reflectance of wings was negatively correlated with wing melanisation, providing evidence for a trade-off between a sexually selected trait (yellow color) and thermoregulation (black color). Body size decreased with increasing latitude and led to the assumption that warmer conditions are more beneficial for <i>P. napi<i> than cooler ones. An increased flight performance at higher altitudes but not latitudes may
indicate stronger challenges for flight activity in high-altitude environments.
The second experiment focused on clinal variation and plasticity in morphology, physiology and life history in F1-generation individuals reared in captivity at different temperatures. It could be shown that individuals from cooler environments were less heat-tolerant, had a longer development but were nevertheless smaller, and had more melanised wings. These differences were genetically-based. Furthermore, it could be shown that a higher developmental temperature speeded up development, reduced body size, potential metabolic activity, and wing melanisation but increased heat tolerance, documenting plastic responses.
In a third experiment, we examined physiological responses to heat stress. A transcriptome analysis revealed an upregulation in molecular chaperones under hot conditions, whereas antioxidant responses and oxidative damage remained unaffected. The antioxidant glutathione (GSH) though was reduced under both cold and hot conditions. Interestingly, Swedish individuals were characterized by higher levels of GSH, lower early fecundity, and lower larval growth rates compared with German or Italian populations, suggesting a ‘pace-of-life’ syndrome. Thus, the individuals from warmer regions show the opposite pattern with a lower investment into maintenance but a faster lifestyle.
In summary, we found clinal variation in body size, growth rates and concomitant development time, wing aspect ratio, wing melanisation and heat tolerance. The effects of high developmental temperature very likely reflect adaptive phenotypic plasticity. When speeding up development; heat tolerance is increasing while body size, potential metabolic activity and wing melanisation are decreasing. Overall, body size of <i>P. napi<i> individuals decreased from south to north while the melanisation of the wings increased. Furthermore, we found a connection between increased wing melanisation and decreased yellow reflectance, most likely caused by a trade-off between the two. We could confirm that <i>P. napi<i> individuals from warmer environments were more heat-tolerant and larger than individuals from colder environments. Due to increasing temperatures and heat waves becoming more frequent in the future, being able to cope with such conditions will be advantageous. As warmer conditions had positive effects on individual development, <i>P. napi<i> may benefit from global warming, but its association with moist habitats suggests negative consequences of climate change. We could also reveal pronounced plastic and genetic responses in <i>P. napi<i>, which may indicate high adaptive capacities. Thus, increasing temperature may not be too problematic for the species, as it seems to be rather well equipped to deal with such challenges. However, as climate change entails changes in precipitation / humidity along with temperature changes, such issues need further investigation.
Abstract
Understanding how organisms adapt to complex environments is a central goal of evolutionary biology and ecology. This issue is of special interest in the current era of rapidly changing climatic conditions. Here, we investigate clinal variation and plastic responses in life history, morphology and physiology in the butterfly Pieris napi along a pan‐European gradient by exposing butterflies raised in captivity to different temperatures. We found clinal variation in body size, growth rates and concomitant development time, wing aspect ratio, wing melanization and heat tolerance. Individuals from warmer environments were more heat‐tolerant and had less melanised wings and a shorter development, but still they were larger than individuals from cooler environments. These findings suggest selection for rapid growth in the warmth and for wing melanization in the cold, and thus fine‐tuned genetic adaptation to local climates. Irrespective of the origin of butterflies, the effects of higher developmental temperature were largely as expected, speeding up development; reducing body size, potential metabolic activity and wing melanization; while increasing heat tolerance. At least in part, these patterns likely reflect adaptive phenotypic plasticity. In summary, our study revealed pronounced plastic and genetic responses, which may indicate high adaptive capacities in our study organism. Whether this may help such species, though, to deal with current climate change needs further investigation, as clinal patterns have typically evolved over long periods.
Lacewings (Neuroptera) have predatory larvae with highly specialised mouthparts. Larvae of many groups within Neuroptera are well represented as fossils preserved in ambers; however, larvae of some groups are less often reported in the literature. Here we report such a rare case, a larva of the group Hemerobiidae, an aphidlion, preserved in a piece of Eocene Baltic amber (about 40 million years old). It is preserved together with three possible prey items, wingless aphids, most likely representatives of Germaraphis (or at least closely related to this group). The aphidlion can be identified based on the morphology of the antennae, simple curved and toothless stylets, well developed labial palps, and the absence of other mouth-part structures such as a protruding labrum or maxillary palps. A long, club-shaped distal element of the labial palps identifies the specimen as a larva of Hemerobiidae. The aphids can be identified based on their very long, beak-like mouth parts. This find is, to our knowledge, the first example of a lacewing larva preserved together with its potential prey. We briefly discuss other cases in which fossils preserved in amber allow us to reconstruct aspects of behaviour and interactions of fossil lacewing larvae.
Insect migration redistributes enormous quantities of biomass, nutrients and species globally. A subset of insect migrants perform extreme long-distance journeys, requiring specialized morphological, physiological and behavioral adaptations. The migratory globe skimmer dragonfly (Pantala flavescens) is hypothesized to migrate from India across the Indian Ocean to East Africa in the autumn, with a subsequent generation thought to return to India from East Africa the following spring. Using an energetic flight model and wind trajectory analysis, we evaluate the dynamics of this proposed transoceanic migration, which is considered to be the longest regular non-stop migratory flight when accounting for body size. The energetic flight model suggests that a mixed strategy of gliding and active flapping would allow a globe skimmer to stay airborne for up to 230–286 h, assuming that the metabolic rate of gliding flight is close to that of resting. If engaged in continuous active flapping flight only, the flight time is severely reduced to ∼4 h. Relying only on self-powered flight (combining active flapping and gliding), a globe skimmer could cross the Indian Ocean, but the migration would have to occur where the ocean crossing is shortest, at an exceptionally fast gliding speed and with little headwind. Consequently, we deem this scenario unlikely and suggest that wind assistance is essential for the crossing. The wind trajectory analysis reveals intra- and inter-seasonal differences in availability of favorable tailwinds, with only 15.2% of simulated migration trajectories successfully reaching land in autumn but 40.9% in spring, taking on average 127 and 55 h respectively. Thus, there is a pronounced requirement on dragonflies to be able to select favorable winds, especially in autumn. In conclusion, a multi-generational, migratory circuit of the Indian Ocean by the globe skimmer is shown to be achievable, provided that advanced adaptations in physiological endurance, behavior and wind selection ability are present. Given that migration over the Indian Ocean would be heavily dependent on the assistance of favorable winds, occurring during a relatively narrow time window, the proposed flyway is potentially susceptible to disruption, if wind system patterns were to be affected by climatic change.
Abstract
Relatively little is known about how plant–soil feedbacks (PSFs) may affect plant growth in field conditions where factors such as herbivory may be important. Using a potted experiment in a grassland, we measured PSFs with and without aboveground insect herbivory for 20 plant species. We then compared PSF values to plant landscape abundance. Aboveground herbivory had a large negative effect on PSF values. For 15 of 20 species, PSFs were more negative with herbivory than without. This occurred because plant biomass on “home” soils was smaller with herbivory than without. PSF values with herbivory were correlated with plant landscape abundance, whereas PSF values without herbivory were not. Shoot nitrogen concentrations suggested that plants create soils that increase nitrogen uptake, but that greater shoot nitrogen values increase herbivory and that the net effect of positive PSF and greater aboveground herbivory is less aboveground biomass. Results provided clear evidence that PSFs alone have limited power in explaining species abundances and that herbivory has stronger effects on plant biomass and growth on the landscape. Our results provide a potential explanation for observed differences between greenhouse and field PSF experiments and suggest that PSF experiments need to consider important biotic interactions, like aboveground herbivory, particularly when the goal of PSF research is to understand plant growth in field conditions.
Deflected by the barrier function of topographical structures such as high mountain ranges, open water bodies or desert, migrating birds concentrate at certain points or corridors referred to as ‘bottlenecks’. An area like this was discovered at Mount Besh Barmag (Azerbaijan) in autumn 2007, but the data gathered during a four-week survey was insufficient to do more than hint at the existence of a major bird migration bottleneck. Therefore, a comprehensive bird migration study was conducted to analyse the magnitude of this potential bottleneck site. The study covers the periods from August to mid-November 2011 and from March to the end of May 2012 and includes daily counts at three observation points focusing on three different migrant types: passerine, waterbirds and soaring birds. In addition, a sound recorder with an omnidirectional microphone collected bird migration calls by both day and night. In total, 278 bird species were observed in an estimated passage of 1,239,369–1,514,267 diurnally migrating individuals in autumn 2011 and 646,733–817,183 individuals in spring 2012. Fifteen species passed through the study area in numbers exceeding 1% of their world populations and 34 species in more than 1% of their flyway populations in at least one of the observation periods. 84% of the observed migrating birds in autumn 2011 and 95% of them in spring 2012 passed through at heights below 50 m above ground exposing them imminently to the danger of collision with obstacles. In the analysis of nocturnal sound recordings, 119 bird species were identified of which 106 were expected to occur as migrants, and calculated estimates revealed the occurrence of 108,986 calls in autumn 2011 and 33,348 calls in spring 2012. The volume of diurnal bird migration emerging from the data with respect to species number and number of individuals is certainly a strong indication of the existence of a major bird migration bottleneck at Besh Barmag. On account of methodological constraints, the high number of night flight calls can only hint at a nocturnal bird migration bottleneck and confirmatory research aided by visual methods (radar, thermal imaging) is necessary to back up the acoustic results. The Besh Barmag bottleneck offers a great opportunity to establish a standardised long-term monitoring programme to investigate avian population dynamics in the vast and little known Eurasian landmass. Acoustic-based monitoring might be a cost-effective method, but it is limited to a few vocally prolific species only. The aim should rather be the establishment of a bird observatory as already successfully installed in a number of European bird migration bottlenecks.
In einem Zeitraum von neun Jahren (1993 bis 2001) wurden am Greifswalder Bodden drei Küstenüberflutungsmoore (Freesendorfer Wiesen, Kooser Wiesen und Karrendorfer Wiesen) und benachbarte überflutungsunbeeinflusste Grünländer in verschiedenem Umfang auf ihre epigäische Staphylinidenfauna hin untersucht. Dabei konnten insgesamt 14.430 Kurzflügler aus 220 Arten nachgewiesen werden. Es wurden die Besonderheiten und allgemeinen Charakteristika der untersuchten Kurzflüglerzönosen beschrieben. Neben der Betrachtung der Staphylinidenpopulationen als Ganzes wurden die aufgetretenen Arten und ihre vorgefundene Verteilung in den drei untersuchten Biotoptypen analysiert. Anhand der sich dabei herauskristallisierenden Verteilung sowie den aus der Literatur ermittelten regionalen Schwerpunkten im Auftreten wurden für die in der vorliegenden Arbeit relevantesten 90 epigäischen Kurzflüglerarten regionale Habitatpräferenzen herausgearbeitet. Die so abgeleiteten Habitatpräferenzgruppen wurden dann genutzt, um die Zusammensetzung der Staphylinidenfaunen unterschiedlicher Standorttypen zu charakterisieren. Zudem wurden die charakteristischen Staphylinidenarten für die untersuchten Biotoptypen im vorpommerschen Boddenküstenbereich bestimmt. Mit Hilfe der allgemeinen Charakteristika sowie der Zusammensetzung der Zönose anhand der Habitatpräferenzgruppen wurde zudem die Sukzession der Karrendorfer Wiesen bis 8 Jahre nach der Ausdeichung analysiert. Zuletzt wird eine generelle Eignung der epigäischen Staphyliniden für das Biomonitoring diskutiert.
Shallow aquatic environments are characterized by strong environmental variability. For ectotherms, temperature is the main driver of metabolic activity, thus also shaping performance. Ingestion rates in mysids are fast responses, influenced by metabolic and behavioral activity. We examined ingestion rates of the mysid Neomysis integer, collected in the Baltic Sea, after one-week exposure to different constant and fluctuating temperature regimes (5, 10, 15, 20°C and 9 ± 5, 14 ± 5°C, respectively). To investigate possible differences between sexes, thermal performance curves (TPCs) were established for female and male mysids based on ingestion rates measured at constant temperatures. TPCs of ingestion rates at constant temperatures differed between sexes, with female mysids showing a higher total ingestion rate as well as a higher thermal optimum compared to male mysids. Females showed reduced ingestion rates when exposed to fluctuating temperatures around their thermal optimum, whereas ingestion of male mysids was not reduced when exposed to fluctuating temperatures. The observed sex-specific differences might be related to potentially higher lipid and energy demands of the females. We suggest future studies should investigate males and females to improve our understanding about impacts of environmental variability on natural populations.
Bats spend half of their life at roosting sites. Hence, exploring for potential roosts is an essential task for their survival, especially for those species which switch roosts regularly, such as several temperate bat species. However, localizing new roosts is a difficult task due to bats’ sensory limitations (e.g., vision, echolocation range). To compensate such constrains, it has been hypothesized that bats rely on cognitive processes like associative learning, spatial memory, social information use and memory retention for an efficient roost localization. However, no previous study has assessed these cognitive skills under natural conditions.
The aim of my thesis was to assess how individually RFID-marked, free-ranging bats use different cognitive processes when localizing suitable day roosts. For this purpose, I used a pairwise roost-quality (suitable vs. unsuitable) choice experiment with automatic monitoring and assessed bats’ cognitive processes according to different cues available. Cues were echo-reflective (spectral signature of boxes), spatial (position of the box within the experimental pair) and social (presence of conspecific at roosts), each one linked to a different cognitive process.
I found that Bechstein’s bats (Myotis bechsteinii) used associative learning to discriminate between suitable and unsuitable newly placed boxes according to their echo-reflective cues. However, when individuals returned to known suitable roosts, they relied more on spatial memory to localize them. This was evidenced by the higher proportion of visits to the unsuitable boxes after swapping box positions within the same experimental pairs. When social cues were available, bats discovered a higher number of suitable roosts and re-localized previously occupied roosts more accurately. Taken together, Bechstein’s bats used multiple cognitive processes and prioritized one process over another depending on the relevance of the cues and search context.
Memory retention of the learned association was analyzed one year later, after the bats had returned to their breeding sites from their hibernacula. I found no evidence that individuals remembered the association between roosts’ suitability and their respective echo-reflective cue. The lack of memory retention could be attributed to hibernation or the duration of the period that the bats spent away from their summer habitat without the opportunity to reinforce the association contingencies. Nevertheless, bats quickly relearned the same association in a short period of time. This emphasizes the high behavioral flexibility of the bats.
Given the ability of Bechstein’s bats to quickly learn to discriminate roosts based on their external echo-reflective cue via associative learning, I investigated whether the use of echo-reflective cues improves box detectability and further occupancy. This was also assessed in free-ranging Natterer’s (Myotis nattereri) bats and the brown long-eared bats (Plecotus auritus). I found that the use of echo-reflective cues did not improve the detectability and occupancy of newly placed boxes despite the previous experience of the colonies with such cues. There were differences among species in the number of discovered boxes, visits and roosting days. These differences could be related to the species-specific explorative behavior and roost-switching behavior. Box supplementations programs aimed to conserve or relocate bat colonies should consider these behaviors to increase their likelihood of success even when bat colonies are used to roosting in artificial shelters.
My research underlined the importance of evaluating multiple cues under natural conditions to understand how natural selection has shaped the cognitive process used for localizing resources. Cognitive field studies are logistically challenging given the number of factors to control. However, automatic monitoring techniques like the one used in this study give the possibility to deepen the understanding of the cognitive ecology of animals. I finally discuss two venues of further research to understand the spread of information within colony members about novel roosts and the recruitment dynamic to novel roosts.
Das Gezeter des Seggenrohrsängers, die Alarmrufe der Uferschnepfe, das Gemecker der Bekassine, das Geschnarre des Wachtelkönigs und die Pfiffe des Tüpfelsumpfhuhns - kaum ein anderer Lebensraum weist so viele exklusive Vogelarten auf wie die Flusstalmoore. Dieser Moortyp dominiert die Grundmoränenlandschaft des südlichen Ostseeraumes. Jedoch wurde auch kein anderer Lebensraum vom Menschen so gründlich in seiner ökologischen Funktionstüchtigkeit gestört. Insbesondere die grossflächigen und tief gehenden Entwässerungen des 20. Jahrhunderts führten zum Verstummen zahlreicher Vogelarten. So ist etwa der Seggenrohrsänger heute vom globalen Aussterben bedroht. In Nordostdeutschland wurden in den letzten 15 Jahren grosse Anstrengungen unternommen, die Ökosystemleistungen der Flusstalmoore neu zu beleben. Dazu wurden über 20 000 Hektar Moorfläche wiedervernässt. Wie reagiert die Vogelwelt auf diese neuen Veränderungen? Bestehen Chancen für eine Wiederansiedlung verschollener Vogelarten? Wie können die Wiedervernässungsmassnahmen gestaltet werden, um gefährdete Vogelarten zu begünstigen? Lässt sich das Leitbild des Artenschutzes mit den Leitbildern des Moor- und Klimaschutzes und zukünftigen Bewirtschaftungsformen vereinen? Diesen Fragen ist der Autor in einer umfassenden Studie von Vogelwelt, Vegetation und Hydrologie am Beispiel des Peene- und Trebeltals in Mecklenburg-Vorpommern nachgegangen und stellt seine Ergebnisse hier vor.
Analysis of partial migration strategies of Central European raptors based on ring re-encounter data
(2018)
The phenomenon of partial migration in birds in
which some individuals of a population are migratory while others stay in the breeding area is of increasing scientific interest. The strategies of partial migratory raptors from Central Europe are, however, unclear for most species. We analysed ring re-encounter data of Common Kestrels Falco tinnunculus, Eurasian Sparrowhawks Accipter nisus and Common Buzzards Buteo buteo ringed in Germany in terms of distances and directions between ringing and re-encounter sites. We investigated possible differences between sexes and age classes, as well as effects of ringing region, seasonal weather (in the form of North Atlantic Oscillation indices) and long-term temporal changes (including climate change) on migratory strategies by means of generalized linear models. We found that migration is mostly conducted by juveniles, although migratory adults were also found. In general, males tend to migrate less than females and juveniles less than adults.
Kestrels showed differences between age classes and sexes and they responded to weather in summer and autumn. The migration activities of Kestrels decreased over years. Sparrowhawks from different regions showed no differences in migration activity and no responses to long-term temporal changes. They did not respond to seasonal weather either. Buzzards showed strong responses to winter weather (‘winter escapes’) predominantly in highland regions, and a reduction of migratory intensity probably due to global warming.
The explanatory power of ringing data, however, is limited by low re-encounter rates and temporal and spatial heterogeneity in re-encounter probability. Spatial heterogeneity mainly depends on the distribution of observers as well as on their willingness to report a re-encountered ring to the corresponding ringing scheme. We analyzed a data set of ringing and re-encounter data of Kestrels, Buzzards and Sparrowhawks provided by the EURING Data Bank. We calculated monthly re-encounter rates across Europe and, for different time periods, we predicted re-encounters for individuals of these species ringed in Germany, on the assumption that re-encounter probabilities are evenly distributed at the highest value observed within the respective home ranges. Subsequently, we tested for correlation between re-encounter rates and human population density. The number of predicted re-encounters exceed the observed by 50-300 %. We found differences between monthly re-encounter rates and between different prediction periods. Distances (between ringing and re-encounter sites) differ significantly between observations and predicted re-encounters, with higher distances in predictions. Correlation between re-encounter rates and human population density is significant, but correlation coefficients are low (ρ = 0.291-0.511). Correcting for observer heterogeneity can help to analyze ring re-encounter data e.g. in terms of dispersal and migration. However, a comprehensive data collection and a digitalization of possible prior data records by the respective ringing schemes may allow advances in this method even further.
Der phylogenetische Ursprung der Hexapoda (Insekten sensu lato) ist kontrovers diskutiert. Einige morphologische Merkmale suggerieren ein Schwestergruppenverhältnis zu den Myriapoda (Tausenfüßer; Tracheatahypothese), während molekulare Sequenzdaten und andere morphologische Merkmale eine nähere Verwandtschaft zu den Crustacea (Krebstiere; Tetraconatahypothese) suggerieren. Ein Organsystem hat in dieser Diskussion eine besonderen Stellenwert, das Nervensystem. Die Neurophylogenie befasst sich mit der Rekonstruktion von Verwandtschaftsbeziehungen basierend auf neuroanatomischen Daten. In der vorliegenden Dissertation wird der phylogenetische Ursprung der Hexapoda, unter besonderer Berücksichtigung basaler Taxa, nähre beleuchtet. Das Sensilleninventar zweier basaler Hexapoda [Eosentomon pinetorum (Protura: Eosentomidae) und Lepisma saccharina (Zygentoma: Lepismatidae)] wird basierend auf rasterelektronen-mikroskopischen Daten dargestellt. Neuroanatomische Daten wurden mit verschiedenen histologischen Techniken (Immunhistochemie, Seriendünnschnitte, Computertomografie, dreidimensionale Rekonstruktionen) gewonnen. In der vorliegenden Dissertation werden Befunde zur Neuroanatomie zweier basaler Hexapoda [E. pinetorum und Thermobia domestica (Zygentoma: Lepismatidae)] und eines Vertreters der Myriapoda [Scutigerella causeyae (Symphyla: Scutigerellidae)] beschrieben. Eigene Befunde werden mit Literaturangaben verglichen und Implikationen für die sensorische Ökologie primär flügelloser Hexapoda und die Neurophylogenie der Mandibulata werden diskutiert. Für die Hexapoda wird das Grundmuster sensorischer Strukturen und assoziierter Nervensystemkompartimente (Neuropile) rekonstruiert. Basierend auf den Befunden zum Grundmuster der Hexapoda werden Konsequenzen für die sensorische Ökologie in frühe Evolution der Hexapoda und eine nähere Verwandtschaft zu den Myriapoda oder Crustacea diskutiert. Abschließend wird eine computergestützte Analyse zur Merkmalsevolution verschiedener Neuropile in 83 rezenten Arthropoden dargestellt. Bis auf die Ultrastruktur der Ommatidien (einzelne Einheiten der Komplexaugen) legt die Morphologie sensorischer Strukturen eine nähere Verwandtschaft zu den Myriapoda vor. Bestimmte Sensillentypen (Sensillum basiconicum, S. trichobothrium) kommen nur bei den Hexapoda und Myriapoda, aber auch den Chelicerata (Chelicerenträger) vor. Neuroanatomische Befunde legen eine nahe Verwandtschaft zwischen Hexapoda und Crustacea nahe. Eine belastbare Hypothese zur Neurophylogenie in den Arthropoda ist aufgrund mangelnder Vergleichbarkeit von Literaturangaben und unsicherer Homologisierungen neuronaler Strukturen nicht möglich. Aus neurophylogenetischer Sicht ist ein Schwestergruppenverhältnis der Hexapoda zu den Crustacea oder einem subspezischem Crustaceataxon am besten begründet.
Heutige Vertreter der Insekten haben vielfältige Lebensweisen und Verhaltensstrategien entwickelt, wie beispielsweise zur Ernährung, zum Schutz gegen Fressfeinde, zu Reproduktionsstrategien und die Investition in Nachkommen. Um die Evolution dieser Strategien besser zu verstehen, kann die Einbeziehung von Fossilien wertvolle Hinweise liefern. So können fossile Überreste von Organismen oder Strukturen, welche von ihnen zu Lebzeiten verursacht wurden, für eine Rekonstruktion über das erstmalig zeitgeschichtliche Auftreten und der Entwicklung einer Strategie genutzt werden. Da jedoch die Untersuchung des Verhaltens von heute nicht mehr lebenden Organismen nicht möglich ist, können Hinweise dazu nur indirekt geschlussfolgert werden. Im Rahmen dieser Arbeit wurden daher folgende Aspekte näher beleuchtet und für Rekonstruktionen genutzt: (1) Die phylogenetische Position von fossilen Vertreten, (2) Spurenfossilien, (3) Gemeinsame Fossilisation mehrerer Individuen, (4) “Frozen Behaviour“, (5) Fossilisierte Eier und Ei-assoziierte Strukturen, sowie (6) Morphologische Anpassungen als Schwerpunkt der vorliegenden Arbeit. Die Anwendbarkeit und Limitationen der jeweiligen Ansätze wurden im Rahmen von Rekonstruktionen zu Aspekten von Raubverhalten und Reproduktionsstrategien (im Zusammenhang mit der Investition in die Nachkommen) von verschiedenen Vertretern der Arthropoden diskutiert.
Die Insektengruppe Dictyoptera, welche die Gruppen Mantodea und Blattodea umfasst, hat sich als besonders geeignet für die Rekonstruktion von Verhaltensaspekten unter den genannten Aspekten und Ansätzen gezeigt. Heutige Dictyopteren zeigen eine enorme Spannbreite von verschiedenen Lebensweisen, von räuberisch und solitär lebend bei Mantiden, über verschiedene Abstufungen von Sozialverhalten bei Schaben, bis hin zur Eusozialität der Termiten (als Innengruppe der Blattodea). Des Weiteren ist diese Gruppe durch eine bemerkenswerte Autapomorphie gekennzeichnet, die Ablage von Eiern in einer Art kompakten Paket (Oothek). Die Ootheken von Dictyopteren sind sehr robust und wurden, wenn auch selten, fossil gefunden. Die Rekonstruktion des Ursprungs der Fähigkeit,
Ootheken zu bilden, stellt ein Schlüsselmerkmal in der Rekonstruktion der evolutionären Entwicklung der gesamten Gruppe dar. Weitere Betrachtungen im Rahmen dieser Arbeit beleuchten die Entwicklung der Gruppe der Mantiden und deren Spezialisierung auf eine räuberische Lebensweise, wie sie bei heutigen Vertretern zu beobachten ist.
Costs of reproduction. A demographical approach to examine life-history trade-offs ─ Abstract. Resource-allocation trade-offs are fundamental constraints of life-history evolution. In particular the trade-offs between reproduction and longevity and between present and future reproduction are expected to form reproductive patterns. Unfortunately, exploring such trade-offs in natural populations is complicated and may not be possible. In face of several limitations, zoo data appear to be useful to better understand the reproductive biology of endangered, rare or cryptic species. In the first step, it was sought after with a data-mining, comparative multi-species approach for broad patterns of correlations between lifespan and variables in bird-eating spiders (Theraphosidae). The subfamily Eumenophoriinae on average lived longest, followed by the Theraphosinae, Ornithoctinae, Grammostolinae, Selenocosmiinae, Ischnocolinae and finally the Avicularinae. Species inhabiting tropical, more humid and/or low-altitude environments lived longer, suggesting that more predictable environments favour the evolution of longer lifespans. Furthermore, large range size, low abundance, sub-terrestrial life-style, and aggressive behaviour were all linked with longer lifespans. An argument for resource allocation trade-offs was found as larger spiderling and prosoma size were negatively related to longevity. In the second step, a demographical approach has been applied for two old-world deer species (Vietnamese sika deer Cervus nippon pseudaxis, Mesopotamian fallow deer Dama dama mesopotamica). In both species, births peaked right before the onset of the rainy season in natural environments. Females reached high reproductive output earlier in life and had (in one species only) higher survival rates than males. Offspring number covaried positively rather than negatively with longevity. In females, the length of the reproductive phase correlated positively with longevity, birth rate within the entire lifespan, and offspring number, while it was negatively correlated to the birth rate during the reproductive phase (in one species). The length of the post-reproductive phase was positively related to longevity and negatively to birth rate during the entire lifespan. In the third section, life-histories of Asiatic (Equus hemionus ssp.) and African wild asses (Equus africanus ssp.) have been anlaysed in a comparative way with another demographical long-term approach. All taxa showed even in captivity peak birth rates during the periods of highest food availability in their natural environments. Sex-specific survival rates with females living longer than males were evident in Kulan and Onager but not in Kiang and Somali wild ass, pointing towards different life-history strategies even among closely related taxa. Females achieved their highest reproductive output earlier than males, which is typical for polygynous mating systems. Offspring number and longevity were rather positively correlated than negatively. Taken together evidence for reproductive trade-offs was weak, though the length of the reproductive period was negatively related to birth rates within the reproductive period. Birth intervals increased with female age, probably reflecting detrimental effects of senescence.
The male genitalia of pholcid spiders, which is one of the most species-rich spider families, are characterized by a procursus, which is a morphologically diverse projection of the copulatory organ. It has been shown that the procursus interacts with the female genitalia during copulation. Here, we investigate the function of the procursus in Gertschiola neuquena, a species belonging to the early branched and understudied subfamily Ninetinae, using behavioural and morphological data. Although many aspects of the copulatory behaviour of G. neuquena follow the general pattern described for the family, males use only one pedipalp during each copulation. Based on our micro-CT analysis of cryofixed mating pairs using virgin females, we can show that the long and filiform procursus is inserted deeply into the unpaired convoluted female spermatheca, and the intromittent sclerite, the embolus, is rather short and stout only reaching the most distal part of the female sperm storage organ. Histological data revealed that sperm are present in the most proximal part of the spermatheca, suggesting that the procursus is used to allocate sperm deeply into the female sperm storage organ. This represents the first case of a replacement of the sperm allocation function of the intromittent sclerite in spiders.
Flies form high-density associations with human settlements and groups of nonhuman primates and are implicated in transmitting pathogens. We investigate the movement of nonhuman primate-associated flies across landscapes surrounding Kibale National Park, Uganda, using a mark–recapture experiment. Flies were marked in nine nonhuman primate groups at the forest edge (x̄ = 929 flies per group), and we then attempted to recapture them in more anthropized areas (50 m, 200 m and 500 m from where marked; 2–21 days after marking). Flies marked in nonhuman primate groups were recaptured in human areas (19/28,615 recaptured). Metabarcoding of the flies in nonhuman primate groups revealed the DNA of multiple eukaryotic primate parasites. Taken together, these results demonstrate the potential of flies to serve as vectors between nonhuman primates, livestock and humans at this biodiverse interface.
Metabarcoding of invertebrate-derived DNA (iDNA) is increasingly used to describe vertebrate diversity in terrestrial ecosystems. Fly iDNA has also shown potential as a tool for detecting pathogens. Combining these approaches makes fly iDNA a promising tool for understanding the ecology and distribution of novel pathogens or emerging infectious diseases. Here, we use fly iDNA to explore the geographic distribution of Bacillus cereus biovar anthracis (Bcbva) along a gradient from the forest within Taï National Park, Côte d'Ivoire, out to surrounding villages. We tested fly pools (N = 100 pools of 5 flies) collected in the forest (N = 25 pools), along the forest edge (N = 50 pools), and near surrounding villages (N = 25 pools) for Bcbva. Using the same iDNA, we sought to reconstruct fly and mammal communities with metabarcoding, with the aim of investigating potential links with Bcbva detection. We detected Bcbva in 5/100 fly pools and positivity varied significantly across the habitat types (forest = 4/25, edge = 1/50, village = 0/25). It was possible to culture Bcbva from all positive fly pools, confirming their positivity, while sequencing of their whole genomes revealed a considerable portion of known genomic diversity for this pathogen. iDNA generated data about the mammal and fly communities in these habitats, revealing the highest mammal diversity in the forest and considerable changes in fly community composition along the gradient. Bcbva host range estimates from fly iDNA were largely identical to the results of long-term carcass monitoring efforts in the region. We show that fly iDNA can generate data on the geographic distribution and host range of a pathogen at kilometer scales, as well as reveal the pathogen's phylogenetic diversity. Our results highlight the power of fly iDNA for mammal biomonitoring and pathogen surveillance.
Predation is a major evolutionary driver of animal adaptation. However, understanding of anti-predator evolution is biased toward vertebrate taxa. Cephalopoda, a class in the invertebrate phylum Mollusca, are known for their diverse anti-predator strategies, characterised by their behavioural flexibility. While ancestral cephalopods were protected by a hard outer shell, extant cephalopods have greatly reduced their reliance on physical defences. Instead, cephalopods have evolved highly developed senses to identify potential threats, cryptic skin patterns to avoid detection, startle responses to deter attack, and elaborate means of escape. While cephalopod anti-predator repertoires are relatively well described, their evolution, and the selective pressures that shaped them, have received much less attention. This is despite their potential relevance, in turn, to elucidate evolution of the remarkable cognitive abilities of cephalopods. Here, we review cephalopod anti-predator evolution, considering four key aspects: (i) shell reduction and loss; (ii) the skin patterning system; (iii) the ecological context accompanying the evolution of advanced cognit.ive abilities; (iv) why the evolutionary trajectory taken by cephalopods is so unique among invertebrates. In doing so, we consider the unique physiology of cephalopods and discuss how this may have constrained or aided the development of their anti-predator repertoire. In particular, cephalopods are poorly equipped to defend themselves physically and escape predation by fish, due to a lack of comparable weaponry or musculature. We argue that this may have selected for alternative forms of defence, driving an evolutionary trajectory favouring crypsis and complex behaviours, and the promotion of sensory and cognitive adaptations. Unravelling the complexities of cephalopod anti-predator evolution remains challenging. However, recent technological developments available for cephalopod field and laboratory studies, coupled with new genomic data and analysis approaches, offer great scope to generate novel insights.