TY - JOUR A1 - Eccard, Jana A1 - Reil, Daniela A1 - Folkertsma, Remco A1 - Schirmer, Annika T1 - The scent of infanticide risk? BT - Behavioural allocation to current and future reproduction in response to mating opportunity and familiarity with intruder JF - Behavioral ecology and sociobiology N2 - The killing of young by unrelated males is widespread in the animal kingdom. In short-lived small rodents, females can mate immediately after delivery (post-partum oestrus) and invest in future reproduction, but infanticide may put the nestlings, their current reproductive investment, at risk. Here, we investigated the behavioural trade-offs between mating interest and nest protection in an arena experiment with bank voles (Myodes glareolus). Non-gravid females (n=33) were housed at one end of a large structured arena with their nestlings. Different scents (cage bedding) were presented to each female in a replicated design. Three combinations of mating opportunities and male-female familiarity were simulated using different scent donors: mating opportunity with the sire of the nestlings with whom the female was familiar; mating opportunity with a male unrelated to the offspring and unfamiliar to the female, thus posing a higher risk to the offspring; and neither risk nor mating opportunity (clean control). Most females investigated male scents, regardless of familiarity, leaving their litter unprotected. During control treatment, females with larger litters spent less time at the scent area, indicating increasing nursing demands or better protection. Females with older litters visited scents more often, suggesting an increased interest in reproduction while they are non-gravid alongside the decreased risk of infanticide for older young. In the presence of unfamiliar scents, females spent more time protecting their nests, supporting the perceived association of unfamiliarity with infanticide risk. Thus, rodent females flexibly allocate time spent between searching for a mate and protecting their nest, which is modulated by their familiarity with a potential intruder.Significance statementInfanticide by conspecific males is an extreme form of sexual conflict and has large costs on females, abolishing their investment into current offspring. In an experimental approach, we exposed lactating female bank voles to different combinations of mating opportunity and familiarity to a (simulated) intruder: (1) the sire of the nestlings with whom the female was familiar and, therefore, potentially less risky in terms of infanticide; (2) a male which was unrelated and unfamiliar to the female and thus posed a higher risk to the offspring; or (3) as a control, cage bedding, which posed neither risk of infanticide nor a mating opportunity. We show that females flexibly allocated pup protection and mating interest based on their familiarity with the male, indicating that the unfamiliar males pose a threat to offspring, which is perceived by the females. Females further adjusted their behaviour to the size and/or age of their current litter, investing more time in male scents when offspring were older, thus balancing future and current investments into reproduction. KW - Reproductive strategy KW - Infanticide risk KW - Odour recognition KW - Familiarity KW - Counterstrategy KW - Sexual conflict Y1 - 2018 U6 - https://doi.org/10.1007/s00265-018-2585-4 SN - 0340-5443 SN - 1432-0762 VL - 72 IS - 175 PB - Springer Nature Switzerland AG CY - New York ER - TY - GEN A1 - Dammhahn, Melanie A1 - Mazza, Valeria A1 - Schirmer, Annika A1 - Göttsche, Claudia A1 - Eccard, Jana T1 - Of city and village mice BT - behavioural adjustments of striped field mice to urban environments T2 - Postprints der Universität Potsdam : Mathematisch-Naturwissenschaftliche Reihe N2 - A fundamental question of current ecological research concerns the drives and limits of species responses to human-induced rapid environmental change (HIREC). Behavioural responses to HIREC are a key component because behaviour links individual responses to population and community changes. Ongoing fast urbanization provides an ideal setting to test the functional role of behaviour for responses to HIREC. Consistent behavioural differences between conspecifics (animal personality) may be important determinants or constraints of animals’ adaptation to urban habitats. We tested whether urban and rural populations of small mammals differ in mean trait expression, flexibility and repeatability of behaviours associated to risk-taking and exploratory tendencies. Using a standardized behavioural test in the field, we quantified spatial exploration and boldness of striped field mice (Apodemus agrarius, n = 96) from nine sub-populations, presenting different levels of urbanisation and anthropogenic disturbance. The level of urbanisation positively correlated with boldness, spatial exploration and behavioural flexibility, with urban dwellers being bolder, more explorative and more flexible in some traits than rural conspecifics. Thus, individuals seem to distribute in a non-random way in response to human disturbance based on their behavioural characteristics. Animal personality might therefore play a key role in successful coping with the challenges of HIREC. T3 - Zweitveröffentlichungen der Universität Potsdam : Mathematisch-Naturwissenschaftliche Reihe - 1007 KW - personality-traits KW - apodemus-agrarius KW - exploratory-behavior KW - fitness consequences KW - individual variation KW - avian personalities KW - animal personality KW - rural populations KW - natural-selection KW - natal dispersal Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus4-480063 SN - 1866-8372 IS - 1007 ER - TY - JOUR A1 - Dammhahn, Melanie A1 - Mazza, Valeria A1 - Schirmer, Annika A1 - Göttsche, Claudia A1 - Eccard, Jana T1 - Of city and village mice BT - behavioural adjustments of striped field mice to urban environments JF - Scientific Reports N2 - A fundamental question of current ecological research concerns the drives and limits of species responses to human-induced rapid environmental change (HIREC). Behavioural responses to HIREC are a key component because behaviour links individual responses to population and community changes. Ongoing fast urbanization provides an ideal setting to test the functional role of behaviour for responses to HIREC. Consistent behavioural differences between conspecifics (animal personality) may be important determinants or constraints of animals’ adaptation to urban habitats. We tested whether urban and rural populations of small mammals differ in mean trait expression, flexibility and repeatability of behaviours associated to risk-taking and exploratory tendencies. Using a standardized behavioural test in the field, we quantified spatial exploration and boldness of striped field mice (Apodemus agrarius, n = 96) from nine sub-populations, presenting different levels of urbanisation and anthropogenic disturbance. The level of urbanisation positively correlated with boldness, spatial exploration and behavioural flexibility, with urban dwellers being bolder, more explorative and more flexible in some traits than rural conspecifics. Thus, individuals seem to distribute in a non-random way in response to human disturbance based on their behavioural characteristics. Animal personality might therefore play a key role in successful coping with the challenges of HIREC. KW - personality-traits KW - apodemus-agrarius KW - exploratory-behavior KW - fitness consequences KW - individual variation KW - avian personalities KW - animal personality KW - rural populations KW - natural-selection KW - natal dispersal Y1 - 2020 U6 - https://doi.org/10.1038/s41598-020-69998-6 SN - 2045-2322 VL - 10 PB - Macmillan Publishers Limited CY - London ER - TY - JOUR A1 - Schirmer, Annika A1 - Hoffmann, Julia A1 - Eccard, Jana A1 - Dammhahn, Melanie T1 - My niche BT - individual spatial niche specialization affects within- and between-species interactions JF - Proceedings of the Royal Society of London : B, Biological sciences N2 - Intraspecific trait variation is an important determinant of fundamental ecological interactions. Many of these interactions are mediated by behaviour. Therefore, interindividual differences in behaviour should contribute to individual niche specialization. Comparable with variation in morphological traits, behavioural differentiation between individuals should limit similarity among competitors and thus act as a mechanism maintaining within-species variation in ecological niches and facilitating species coexistence. Here, we aimed to test whether interindividual differences in boldness covary with spatial interactions within and between two ecologically similar, co-occurring rodent species (Myodes glareolus, Apodemus agrarius). In five subpopulations in northeast Germany, we quantified individual differences in boldness via repeated standardized tests and spatial interaction patterns via capture-mark- recapture (n = 126) and automated VHF telemetry (n = 36). We found that boldness varied with space use in both species. Individuals of the same population occupied different spatial niches, which resulted in non-random patterns of within- and between-species spatial interactions. Behavioural types mainly differed in the relative importance of intra- versus interspecific competition. Within-species variation along this competition gradient could contribute to maintaining individual niche specialization. Moreover, behavioural differentiation between individuals limits similarity among competitors, which might facilitate the coexistence of functionally equivalent species and, thus, affect community dynamics and local biodiversity. KW - animal personality KW - competition KW - individual niche specialization KW - movement ecology KW - coexistence KW - small mammals Y1 - 2020 U6 - https://doi.org/10.1098/rspb.2019.2211 SN - 0962-8452 SN - 1471-2954 VL - 287 IS - 1918 PB - Royal Society CY - London ER - TY - JOUR A1 - Hoffmann, Julia A1 - Schirmer, Annika A1 - Eccard, Jana T1 - Light pollution affects space use and interaction of two small mammal species irrespective of personality JF - BMC Ecology N2 - Background: Artificial light at night (ALAN) is one form of human-induced rapid environmental changes (HIREC) and is strongly interfering with natural dark–light cycles. Some personality types within a species might be better suited to cope with environmental change and therefore might be selected upon under ongoing urbanization. Results: We used LED street lamps in a large outdoor enclosure to experimentally investigate the effects of ALAN on activity patterns, movement and interaction of individuals of two species, the bank vole (Myodes glareolus) and the striped field mouse (Apodemus agrarius). We analyzed effects combined with individual boldness score. Both species reduced their activity budget during daylight hours. While under natural light conditions home ranges were larger during daylight than during nighttime, this difference vanished under ALAN. Conspecifics showed reduced home range overlap, proximity and activity synchrony when subjected to nighttime illumination. Changes in movement patterns in reaction to ALAN were not associated with differences in boldness score of individuals. Conclusions: Our results suggest that light pollution can lead to changes in movement patterns and individual interactions in small mammals. This could lead to fitness consequences on the population level. KW - Nighttime illumination KW - Rodents KW - Outdoor enclosure KW - Animal personality KW - Interspecific interactions KW - HIREC Y1 - 2019 U6 - https://doi.org/10.1186/s12898-019-0241-0 SN - 1472-6785 VL - 19 PB - BioMed Central CY - London ER - TY - GEN A1 - Hoffmann, Julia A1 - Schirmer, Annika A1 - Eccard, Jana T1 - Light pollution affects space use and interaction of two small mammal species irrespective of personality T2 - Postprints der Universität Potsdam Mathematisch-Naturwissenschaftliche Reihe N2 - Background: Artificial light at night (ALAN) is one form of human-induced rapid environmental changes (HIREC) and is strongly interfering with natural dark–light cycles. Some personality types within a species might be better suited to cope with environmental change and therefore might be selected upon under ongoing urbanization. Results: We used LED street lamps in a large outdoor enclosure to experimentally investigate the effects of ALAN on activity patterns, movement and interaction of individuals of two species, the bank vole (Myodes glareolus) and the striped field mouse (Apodemus agrarius). We analyzed effects combined with individual boldness score. Both species reduced their activity budget during daylight hours. While under natural light conditions home ranges were larger during daylight than during nighttime, this difference vanished under ALAN. Conspecifics showed reduced home range overlap, proximity and activity synchrony when subjected to nighttime illumination. Changes in movement patterns in reaction to ALAN were not associated with differences in boldness score of individuals. Conclusions: Our results suggest that light pollution can lead to changes in movement patterns and individual interactions in small mammals. This could lead to fitness consequences on the population level. T3 - Zweitveröffentlichungen der Universität Potsdam : Mathematisch-Naturwissenschaftliche Reihe - 749 KW - Nighttime illumination KW - Rodents KW - Outdoor enclosure KW - Animal personality KW - Interspecific interactions KW - HIREC Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus4-436307 SN - 1866-8372 IS - 749 ER - TY - JOUR A1 - Schirmer, Annika A1 - Herde, Antje A1 - Eccard, Jana A1 - Dammhahn, Melanie T1 - Individuals in space: personality-dependent space use, movement and microhabitat use facilitate individual spatial niche specialization JF - Oecologia N2 - Personality-dependent space use and movement might be crucially influencing ecological interactions, giving way to individual niche specialization. This new approach challenges classical niche theory with potentially great ecological consequences, but so far has only scarce empirical support. Here, we investigated if and how consistent inter-individual differences in behavior predict space use and movement patterns in free-ranging bank voles (Myodes glareolus) and thereby contribute to individual niche specialization. Individuals were captured and marked from three different subpopulations in North-East Germany. Inter-individual differences in boldness and exploration were quantified via repeated standardized tests directly in the field after capture. Subsequently, space use and movement patterns of a representative sample of the behavioral variation (n=21 individuals) were monitored via automated VHF telemetry for a period of four days, yielding on average 384 locations per individual. Bolder individuals occupied larger home ranges and core areas (estimated via kernel density analyses), moved longer distances, spatially overlapped with fewer conspecifics and preferred different microhabitats based on vegetation cover compared to shyer individuals. We found evidence for personality-dependent space use, movement, and occupation of individual spatial niches in bank voles. Thus, besides dietary niche specialization also spatial dimensions of ecological niches vary among individuals within populations, which may have important consequences for ecological interactions within- and between species. KW - Ecological niche KW - Inter-individual differences KW - Intraspecific competition KW - Movement ecology KW - Small mammal Y1 - 2019 U6 - https://doi.org/10.1007/s00442-019-04365-5 SN - 0029-8549 SN - 1432-1939 VL - 189 IS - 3 SP - 647 EP - 660 PB - Springer CY - New York ER - TY - THES A1 - Schirmer, Annika T1 - Consistent individual differences in movement-related behaviour as equalising and/or stabilising mechanisms for species coexistence T1 - Konstante individuelle Unterschiede in Bewegungs-relevanten Verhaltensweisen als stabilisierende und/oder angleichende Mechanismen für die Koexistenz von Arten N2 - The facilitation of species coexistence has been a central theme in ecological research for years, highlighting two key aspects: ecological niches and competition between species. According to the competitive exclusion principle, the overlap of species niches predicts the amount of shared resources and therefore competition between species, determining their ability to coexist. Only if niches of two species are sufficiently different, thus niche overlap is low, competition within species is higher than competition between species and stable coexistence is possible. Thereby, differences in species mean traits are focused on and conspecific individuals are assumed to be interchangeable. This approach might be outdated since behaviour, as a key aspect mediating niche differentiation between species, is individual based. Individuals from one species consistently differ across time and situations in their behavioural traits. Causes and consequences of consistent behavioural differences have been thoroughly investigated stimulating their recent incorporation into ecological interactions and niche theory. Spatial components have so far been largely overlooked, although animal movement is strongly connected to several aspects of ecological niches and interactions between individuals. Furthermore, numerous movement aspects haven been proven to be crucially influenced by consistent individual differences. Considering spatial parameters could therefore crucially broaden our understanding of how individual niches are formed and ecological interactions are shaped. Furthermore, extending established concepts on species interactions by an individual component could provide new insights into how species coexistence is facilitated and local biodiversity is maintained. The main aim of this thesis was to test whether consistent inter-individual differences can facilitate the coexistence of ecological similar species. Therefore, the effects of consistent inter-individual differences on the spatial behaviour of two rodent species, the bank vole (Myodes glareolus) and the striped field mouse (Apodemus agrarius), were investigated and put in the context of: (i) individual spatial niches, (ii) interactions between species, and (iii) the importance of different levels of behavioural variation within species for their interactions. Consistent differences of study animals in boldness and exploration were quantified with the same tests in all presented studies and always combined with observations of movement and space use via automated VHF radio telemetry. Consequently, results are comparable throughout the thesis and the methods provide a common denominator for all chapters. The first two chapters are based on observations of free-ranging rodents in natural populations, while chapter III represents an experimental approach under semi-natural conditions. Chapter I focusses on the effect of consistent differences in boldness and exploration on movement and space use of bank voles and their contribution to individual spatial niche separation. Results show boldness to be the dominating predictor for spatial parameters in bank voles. Irrespective of sex, bolder individuals had larger home ranges, moved longer distances, had less spatial interactions with conspecifics and occupied different microhabitats compared to shy individuals. The same boldness-dependent spatial patterns could be observed in striped field mice which is reported in chapter II. Therefore, both study species showed individual spatial niche occupation. Chapter II builds on findings from the first chapter, investigating the effect of boldness driven individual spatial niche occupation on the interactions between species. Irrespective of species and sex, bolder individuals had more interspecific spatial interactions, but less intraspecific interactions, compared to shy individuals. Due to individual niches occupation the competitive environment individuals experience is not random. Interactions are restricted to individuals of similar behavioural type with presumably similar competitive ability, which could balance differences on the species level and support coexistence. In chapter III the experimental populations were either comprised of only shy or only bold bank voles, while striped field mice varied, creating either a shy- or bold-biased competitive community. Irrespective of behavioural type, striped field mice had more intraspecific interactions in bold-biased competitive communities. Only in a shy-biased competitive community, bolder striped field mice had less interspecific interactions compared to shy individuals. Bank voles showed no difference in intra- or interspecific interactions between populations. Chapter III highlights, that not only consistent inter-individual differences per se are important for interactions within and between species, but also the amount of behavioural variation within coexisting species. Overall, this thesis highlights the importance of considering consistent inter-individual differences in a spatial context and their connection to individual spatial niche occupation, as well as the resulting effects on interactions within and between species. Individual differences are discussed in the context of similarity of individuals, individual and species niche width, and individual and species niche overlap. Thereby, this thesis makes one step further from the existing research on individual niches towards integrating consistent inter-individual differences into the larger framework of species coexistence. N2 - Ein zentrales Thema in der Ökologie ist die Koexistenz von Arten. Zwei Aspekte sind dabei von großer Bedeutung: ökologische Nischen und zwischenartliche Konkurrenz. Das Konkurrenz-Ausschlussprinzip besagt, dass der Überlappungsgrad der Nischen zweier Arten bestimmt, wie viele Ressourcen sie teilen und damit wie stark die Konkurrenz zwischen ihnen ist. Eine stabile Koexistenz zweier Arten ist nur dann möglich, wenn ihre Nischen unterschiedlich genug sind und eine geringe Überlappung vorliegt. In diesem Fall ist die innerartliche Konkurrenz größer als die zwischenartliche, und die Bedingungen für eine langfristig stabile Koexistenz sind gegeben. Traditionell werden hierbei nur mittlere Unterschiede zwischen den Fokusarten verglichen und der Einfluss von Unterschieden zwischen Individuen nicht beachtet. Ein wesentlicher Aspekt, der die Nischendifferenzierung zwischen Tierarten beeinflusst ist deren Verhalten. Dieses ist jedoch nachweislich individuell geprägt, folglich könnte der oben erwähnte Ansatz zur Koexistenz von Arten eventuell veraltet sein. Zwischen Individuen einer Art gibt es konstante Verhaltensunterschiede, die stabil bleiben über die Zeit und zwischen verschiedenen Situationen. Ursachen und Effekte dieser Unterschiede wurden bereits in zahlreichen Tierarten untersucht, wodurch ebenfalls die Integration von individuellen Verhaltensunterschieden in das Konzept der ökologischen Nische angestoßen wurde. Aspekte der Raumnutzung von Tieren fanden hierbei bislang kaum Beachtung, obwohl sie für eine Vielzahl von Parametern, die mit Nischen in Verbindung stehen, essentiell sind. Räumliches Verhalten von Tieren wird stark durch individuelle Verhaltensunterschiede beeinflusst, weswegen es eine wichtige Rolle im Zusammenhang mit individuellen Nischen spielen sollte. Hinsichtlich der Formation individueller Nischen und ökologischer Interaktionen hat die Einbeziehung von räumlichen Aspekten das Potential entscheidende Impulse zu erbringen. Die Erweiterung bestehender Theorien zu Artinteraktionen, um eine individuelle Komponente, kann neue Einblicke schaffen wie Koexistenz zwischen Arten vermittelt und örtliche Biodiversität erhalten wird. Die hier vorliegende Arbeit befasst sich mit den Einflüssen von stabilen, individuellen Verhaltensunterschieden auf die Raumnutzung von Individuen. Dies wurde exemplarisch an zwei Nagerarten untersucht, der Rötelmaus (Myodes glareolus) und der Brandmaus (Apodemus agrarius). Dabei wird der Fokus auf die folgenden Aspekte gelegt: (i) individuelle Nischen, (ii) Interaktionen zwischen Arten, und (iii) Auswirkungen verschiedener Variationsgrade stabiler Verhaltensunterschiede auf die Interaktionen innerhalb und zwischen Arten. Alle Kapitel basieren auf der gleichen Methodik in der Datenaufnahme, da individuelle Verhaltensunterschiede stets mit dem gleichen Test quantifiziert und mit räumlichen Mustern in Zusammenhang gebracht wurden, die mit Hilfe automatischer VHF Radiotelemetrie aufgezeichnet wurden. Ergebnisse sind somit auch kapitelübergreifend vergleichbar. Kapitel eins und zwei umfassen Studien an freilebenden Nagetieren aus natürlichen Populationen, während das dritte Kapitel eine experimentelle Studie unter naturnahen Bedingungen darstellt. Das erste Kapitel handelt von den Effekten stabiler Verhaltensunterschiede in der Risikobereitschaft und dem Explorationsverhalten von Rötelmäusen auf deren Bewegungsmuster. Letztere wurden nur durch die Risikobereitschaft der Individuen beeinflusst, aber nicht durch deren Explorationsverhalten. Risikofreudigere Individuen hatten größere Streifgebiete, legten längere Strecken zurück, hatten weniger innerartliche Interaktionen und bewohnten andere Mikrohabitate als risikoscheue Individuen. Gleiche Muster konnten für die Brandmäuse gefunden werden, werden jedoch erst im zweiten Kapitel dargestellt. Beide Arten besetzen somit individuelle räumliche Nischen. Kapitel zwei baut auf dem Resultat des ersten Kapitels auf und beschäftigt sich mit den Auswirkungen von individuellen räumlichen Nischen auf die Interaktionen zwischen zwei Arten. Hierbei konnte gezeigt werden, dass unabhängig von Art und Geschlecht, risikofreudigere Individuen weniger innerartliche Interaktionen haben, dafür aber mehr zwischenartliche im Vergleich zu risikoscheuen Individuen. Die Besetzung individueller Nischen hat somit zur Folge, dass das Konkurrenz-Umfeld der Individuen abhängig von ihrem Verhaltenstyp ist. Daraus folgt, dass die Interaktionen zwischen Individuen zweier Arten beschränkt sind auf solche Individuen, die sich in ihrem Verhaltenstyp, und damit ihrer Konkurrenzkraft, ähneln. Etwaige Artunterschiede in der Konkurrenzkraft könnten dadurch ausgeglichen werden und die Koexistenz der Arten vermitteln. Im letzten Kapitel wurden experimentelle Populationen aus beiden Versuchsarten zusammengestellt. Diese unterschieden sich darin, dass die Rötelmäuse entweder ausschließlich risikoscheu oder risikobereit waren, während die Brandmäuse in ihrem Verhaltenstyp variierten. Dadurch wurden Artgemeinschaften erstellt, die entweder ein vorwiegend risikoscheues oder risikobereites Konkurrenz-Umfeld hatten. Eine reduzierte Variationsbreite der individuellen Verhaltensunterschiede in einer von zwei koexistierenden Arten führt dazu, dass sich die Interaktionsmuster innerhalb und zwischen den Arten, im Vergleich zu denen aus natürlichen Populationen verändern. Brandmäuse in einem risikobereiten Konkurrenz-Umfeld hatten mehr innerartliche Interaktionen als solche in einem risikoscheuen Konkurrenz-Umfeld, unabhängig davon ob die Brandmäuse selber risikoscheu oder risikofreudig waren. Die zwischenartlichen Interaktionen dagegen wurden nur in einem risikoscheuen Konkurrenz-Umfeld von risikobereiten Brandmäusen reduziert im Gegensatz zu risikoscheuen Individuen. Währenddessen zeigen Rötelmäuse weder in den inner- noch in den zwischenartlichen Interaktionen einen Unterschied aufgrund ihres Konkurrenz-Umfeldes. Das dritte Kapitel zeigt damit deutlich, dass nicht nur stabile individuelle Unterschiede für inner- und zwischenartliche Interaktionen von Bedeutung sind, sondern dass auch die Variationsbreite der Verhaltensunterschiede innerhalb der Arten eine entscheidende Rolle spielt. Zusammenfassend verdeutlicht die vorliegende Arbeit wie wichtig die Berücksichtigung von stabilen individuellen Verhaltensunterschieden im Hinblick auf räumliche Parameter ist. Darüber hinaus zeigen die vorliegenden Ergebnisse, dass individuelle Verhaltensunterschiede für die Besetzung individueller Nischen und damit für inner- und zwischenartlichen Interaktionen von großer Bedeutung sind. Innerhalb dieser Arbeit werden individuelle Verhaltensunterschiede in Zusammenhang mit der Ähnlichkeit von Arten, der Breite von individuellen Nischen und Artnischen, sowie deren Überlappung gebracht. Diese Arbeit stellt somit eine Erweiterung des bisherigen Forschungstandes hinsichtlich der Einbeziehung von individuellen Verhaltensunterschieden in die Theorie der Koexistenz von Arten dar. KW - ecological interactions KW - inter-individual differences KW - animal personality KW - movement ecology KW - space use Y1 - 2019 ER -