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Author Dong, D.; Jones, G.; Zhang, S.
Title (up) Dynamic evolution of bitter taste receptor genes in vertebrates Type Journal Article
Year 2009 Publication BMC Evolutionary Biology Abbreviated Journal
Volume 9 Issue 1 Pages 12
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Abstract Sensing bitter tastes is crucial for many animals because it can prevent them from ingesting harmful foods. This process is mainly mediated by the bitter taste receptors (T2R), which are largely expressed in the taste buds. Previous studies have identified some T2R gene repertoires, and marked variation in repertoire size has been noted among species. However, the mechanisms underlying the evolution of vertebrate T2R genes remain poorly understood.
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ISSN 1471-2148 ISBN Medium
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Call Number Equine Behaviour @ team @ Dong2009 Serial 6637
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Author Podos, J.
Title (up) Early perspectives on the evolution of behavior: Charles Otis Whitman and Oskar Heinroth Type Journal Article
Year 1964 Publication Ethology Ecology & Evolution (EEE) Abbreviated Journal Ethol Ecol Evol
Volume 6 Issue 4 Pages 467-480
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Call Number Equine Behaviour @ team @ Serial 2293
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Author Rubenstein, D. I.,
Title (up) Ecology and sociality in horses and zebras Type Book Chapter
Year 1986 Publication Ecological Aspects of Social Evolution Abbreviated Journal Ecological Aspects of Social Evolution
Volume Issue Pages 282-302
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Publisher Princeton University Press Place of Publication Princeton, NJ. Editor Rubenstein, D. I. ; Wrangham, R. W.
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Notes from Professor Hans Klingels Equine Reference List Approved no
Call Number Serial 1526
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Author Pérez-Barbería, F.J.; Shultz, S.; Dunbar, R.I.M.; Janis, C.
Title (up) Evidence For Coevolution Of Sociality And Relative Brain Size In Three Orders Of Mammals Type Journal Article
Year 2007 Publication Evolution Abbreviated Journal
Volume 61 Issue 12 Pages 2811-2821
Keywords Brain size, carnivores, coevolution, primates, sociality, ungulates
Abstract Abstract

As the brain is responsible for managing an individual's behavioral response to its environment, we should expect that large relative brain size is an evolutionary response to cognitively challenging behaviors. The “social brain hypothesis†argues that maintaining group cohesion is cognitively demanding as individuals living in groups need to be able to resolve conflicts that impact on their ability to meet resource requirements. If sociality does impose cognitive demands, we expect changes in relative brain size and sociality to be coupled over evolutionary time. In this study, we analyze data on sociality and relative brain size for 206 species of ungulates, carnivores, and primates and provide, for the first time, evidence that changes in sociality and relative brain size are closely correlated over evolutionary time for all three mammalian orders. This suggests a process of coevolution and provides support for the social brain theory. However, differences between taxonomic orders in the stability of the transition between small-brained/nonsocial and large-brained/social imply that, although sociality is cognitively demanding, sociality and relative brain size can become decoupled in some cases. Carnivores seem to have been especially prone to this.
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Notes doi: 10.1111/j.1558-5646.2007.00229.x Approved no
Call Number Equine Behaviour @ team @ Serial 4781
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Author Pérez-Barbería, F.J.; Shultz, S.; Dunbar, R.I.
Title (up) Evidence for coevolution of sociality and relative brain size in three orders of mammals Type Journal Article
Year 2007 Publication Evolution Abbreviated Journal
Volume 61 Issue Pages
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Call Number Equine Behaviour @ team @ Pérez-Barbería2007 Serial 6221
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Author Lusseau, D.
Title (up) Evidence for social role in a dolphin social network Type Journal Article
Year 2007 Publication Evolutionary Ecology Abbreviated Journal Evol. Ecol.
Volume 21 Issue 3 Pages 357-366
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Abstract Abstract  Social animals have to take into consideration the behaviour of conspecifics when making decisions to go by their daily lives. These decisions affect their fitness and there is therefore an evolutionary pressure to try making the right choices. In many instances individuals will make their own choices and the behaviour of the group will be a democratic integration of everyone’s decision. However, in some instances it can be advantageous to follow the choice of a few individuals in the group if they have more information regarding the situation that has arisen. Here I provide early evidence that decisions about shifts in activity states in a population of bottlenose dolphin follow such a decision-making process. This unshared consensus is mediated by a non-vocal signal, which can be communicated globally within the dolphin school. These signals are emitted by individuals that tend to have more information about the behaviour of potential competitors because of their position in the social network. I hypothesise that this decision-making process emerged from the social structure of the population and the need to maintain mixed-sex schools.
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Call Number Equine Behaviour @ team @ Serial 5154
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Author Dukas, R.
Title (up) Evolutionary Biology Of Animal Cognition Type Journal Article
Year 2004 Publication Annual Review of Ecology, Evolution, and Systematics Abbreviated Journal
Volume 35 Issue 1 Pages 347-374
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Abstract This review focuses on five key evolutionary issues pertaining to animal cognition, defined as the neuronal processes concerned with the acquisition, retention, and use of information. Whereas the use of information, or decision making, has been relatively well examined by students of behavior, evolutionary aspects of other cognitive traits that affect behavior, including perception, learning, memory, and attention, are less well understood. First, there is ample evidence for genetically based individual variation in cognitive traits, although much of the information for some traits comes from humans. Second, several studies documented positive association between cognitive abilities and performance measures linked to fitness. Third, information on the evolution of cognitive traits is available primarily for color vision and decision making. Fourth, much of the data on plasticity of cognitive traits appears to reflect nonadaptive phenotypic plasticity, perhaps because few evolutionary analyses of cognitive plasticity have been carried out. Nonetheless, several studies suggest that cognitive traits show adaptive plasticity, and at least one study documented genetically based individual variation in plasticity. Fifth, whereas assertions that cognition has played a central role in animal evolution are not supported by currently available data, theoretical considerations indicate that cognition may either increase or decrease the rate of evolutionary change.
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Call Number Equine Behaviour @ team @ Serial 2970
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Author Dellert, B.; Ganslosser, U.
Title (up) Experimental alterations of food distribution in two species of captive equids (Equus burchelli and E. hemionus kulan) Type Journal Article
Year 1997 Publication Ethology Ecology & Evolution (EEE) Abbreviated Journal Ethol Ecol Evol
Volume 9 Issue 1 Pages 1-17
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Abstract n one group each of Plains zebra (six mares, one foal, one subadult) and Asiatic wild asses (seven mares, two foals) at Nuremberg Zoo, food distribution was experimentally changed from clumped (all food in one standard hay rack) to dispersed (one heap per animal). Both groups were characterized by different social structures, which basically remained during the experiment. Plains zebras had an individually structured system of social relationships in a dominance order, wild asses a more egalitarian system without clear-cut rank differences and low frequencies of agonistic interactions. Access to food accordingly was individually (but consistently) different for zebra mares, almost equal for wild ass mares. During the dispersed feeding situation frequencies of agonistic interactions in both species decreased (however non-significantly), individual distances increased but mares also frequently ''visited'' each others' heaps. Feeding time increased for all wild ass mares. Some individuals (in both groups) behaved ''against the trend'' in agonistic behaviour. The results are discussed with regard to food distribution for ungulates in general, and equid social systems.
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Call Number Equine Behaviour @ team @ Serial 2292
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Author Herbert Gintis; Samuel Bowles; Robert Boyd; Ernst Fehr
Title (up) Explaining altruistic behavior in humans Type Journal Article
Year 2003 Publication Evolution and Human Behaviour Abbreviated Journal
Volume 24 Issue 3 Pages 153-172
Keywords Altruism; Reciprocity; Experimental games; Evolution of cooperation
Abstract Recent experimental research has revealed forms of human behavior involving interaction among unrelated individuals that have proven difficult to explain in terms of kin or reciprocal altruism. One such trait, strong reciprocity is a predisposition to cooperate with others and to punish those who violate the norms of cooperation, at personal cost, even when it is implausible to expect that these costs will be repaid. We present evidence supporting strong reciprocity as a schema for predicting and understanding altruism in humans. We show that under conditions plausibly characteristic of the early stages of human evolution, a small number of strong reciprocators could invade a population of self-regarding types, and strong reciprocity is an evolutionary stable strategy. Although most of the evidence we report is based on behavioral experiments, the same behaviors are regularly described in everyday life, for example, in wage setting by firms, tax compliance, and cooperation in the protection of local environmental public goods.
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ISSN 1090-5138 ISBN Medium
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Call Number Equine Behaviour @ team @ S1090-5138(02)00157-5 Serial 4943
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Author Houston, A.I.; McNamara, J.M.
Title (up) Fighting for food: a dynamic version of the Hawk-Dove game Type Journal Article
Year 1988 Publication Evolutionary Ecology Abbreviated Journal Evol. Ecol.
Volume 2 Issue 1 Pages 51-64
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Call Number refbase @ user @ Serial 750
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