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Thomas?KlefothEmail author Christian?Skov Jens?Krause Robert?Arlinghaus 《Behavioral ecology and sociobiology》2012,66(4):547-559
To showcase the importance of genotype × environment interactions and the presence of predation risk in the experimental assessment
of boldness in fish, we investigated boldness in terms of feeding behavior and refuge use in two genetically different populations
of juvenile carp (Cyprinus carpio) in two replicated experimental conditions in ponds and laboratory tanks. The populations were expected to exhibit genetic
differences in boldness due to differential evolutionary adaptation to low-predation-risk pond aquaculture conditions. Boldness
was measured in variants of open-field trials with and without implementation of additional predation risk-stimuli by angling
on feeding spots. Without explicit implementation of risk, genotypes adapted to low-risk environments, i.e., domesticated
mirror carp behaved consistently bolder than their less domesticated scaled conspecifics in the pond environment, but not
in the laboratory environment. When we implemented artificial risk-stimuli by angling on previously safe feeding spots, boldness
differences among genotypes also emerged in the laboratory environment, indicating strong genotype × environment effects on
boldness behavior of carp. The expected genetic basis of boldness differences among genotypes was clearly supported in the
pond environment, while the laboratory study revealed these patterns only under inclusion of explicit risk-stimuli. Our study
thus underscores that boldness may involve both a basal component that is expressed independently of obvious predation risk
(e.g., in open fields) and a component revealed in relation to explicit predation risk, and both dimensions may respond differently
in behavioral tests. 相似文献
24.
Network analysis has a long history in the mathematical and social sciences and the aim of this introduction is to provide
a brief overview of the potential that it holds for the study of animal behaviour. One of the most attractive features of
the network paradigm is that it provides a single conceptual framework with which we can study the social organisation of
animals at all levels (individual, dyad, group, population) and for all types of interaction (aggressive, cooperative, sexual
etc.). Graphical tools allow a visual inspection of networks which often helps inspire ideas for testable hypotheses. Network
analysis itself provides a multitude of novel statistical tools that can be used to characterise social patterns in animal
populations. Among the important insights that networks have facilitated is that indirect social connections matter. Interactions
between individuals generate a social environment at the population level which in turn selects for behavioural strategies
at the individual level. A social network is often a perfect means by which to represent heterogeneous relationships in a
population. Probing the biological drivers for these heterogeneities, often as a function of time, forms the basis of many
of the current uses of network analysis in the behavioural sciences. This special issue on social networks brings together
a diverse group of practitioners whose study systems range from social insects over reptiles to birds, cetaceans, ungulates
and primates in order to illustrate the wide-ranging applications of network analysis.
This contribution is part of the special issue “Social Networks: new perspectives” (Guest Editors: J. Krause, D. Lusseau and
R. James). 相似文献
25.
The human-driven loss of biodiversity has numerous ecological, social, and economic impacts at the local and global levels, threatening important ecological functions and jeopardizing human well-being. In this perspective, we present an overview of how tropical defaunation—defined as the disappearance of fauna as a result of anthropogenic drivers such as hunting and habitat alteration in tropical forest ecosystems—is interlinked with four selected Sustainable Development Goals (SDGs). We discuss tropical defaunation related to nutrition and zero hunger (SDG 2), good health and well-being (SDG 3), climate action (SDG 13), and life on land (SDG 15). We propose a range of options on how to study defaunation in future research and how to address the ongoing tropical defaunation crisis, including but not limited to recent insights from policy, conservation management, and development practice. 相似文献
26.
Summary Position preferences of well-fed and food-deprived juvenile roach were investigated in schools of 2 and 4 fish in the laboratory. Food-deprived fish appeared significantly more often in the front position than their well-fed conspecifics. For fish at the same hunger level, individuals at the front of the school had the highest feeding rate. These results represent the first evidence for a relationship between the nutritional state of individual fish and their positions in a school and suggest a functional advantage of the preference.
Offprint requests to: J. Krause at the present address 相似文献
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Stefan Krause Lutz Mattner Richard James Tristan Guttridge Mark J. Corcoran Samuel H. Gruber Jens Krause 《Behavioral ecology and sociobiology》2009,63(7):1089-1096
Analyses of animal social networks derived from group-based associations often rely on randomisation methods developed in
ecology (Manly, Ecology 76:1109–1115, 1995) and made available to the animal behaviour community through implementation of a pair-wise swapping algorithm by Bejder
et al. (Anim Behav 56:719–725, 1998). We report a correctable flaw in this method and point the reader to a wider literature on the subject of null models in
the ecology literature. We illustrate the importance of correcting the method using a toy network and use it to make a preliminary
analysis of a network of associations among eagle rays.
相似文献
Stefan KrauseEmail: |
30.
Of the recent sauropsid skin appendage types, only feathers develop from a cylindrical epidermal invagination, the follicle, and show hierarchical branching. Fossilized integuments of Mesozoic diapsids have been interpreted as follicular and potential feather homologues, an idea particularly controversially discussed for the elongate dorsal skin projections of the small diapsid Longisquama insignis from the Triassic of Kyrgyzstan. Based on new finds and their comparison with the type material, we show that Longisquama's appendages consist of a single-branched internal frame enclosed by a flexible outer membrane. Not supporting a categorization either as feathers or as scales, our analysis demonstrates that the Longisquama appendages formed in a two-stage, feather-like developmental process, representing an unusual early example for the evolutionary plasticity of sauropsid integument. 相似文献