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Author Pérez-Barbería, F.J.; Shultz, S.; Dunbar, R.I.M.; Janis, C.
Title 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 Barton, R.A.
Title Neocortex size and behavioural ecology in primates Type Journal Article
Year 1996 Publication Proceedings of the Royal Society B Abbreviated Journal Proc. R. Soc. Lond. B
Volume 263 Issue 1367 Pages 173-177
Keywords Animals; *Behavior, Animal; Brain/*anatomy & histology; Cerebral Cortex/*anatomy & histology/*physiology; *Ecology; Evolution; Primates/anatomy & histology/*physiology/psychology; Regression Analysis; Species Specificity
Abstract The neocortex is widely held to have been the focus of mammalian brain evolution, but what selection pressures explain the observed diversity in its size and structure? Among primates, comparative studies suggest that neocortical evolution is related to the cognitive demands of sociality, and here I confirm that neocortex size and social group size are positively correlated once phylogenetic associations and overall brain size are taken into account. This association holds within haplorhine but not strepsirhine primates. In addition, the neocortex is larger in diurnal than in nocturnal primates, and among diurnal haplorhines its size is positively correlated with the degree of frugivory. These ecological correlates reflect the diverse sensory-cognitive functions of the neocortex.
Address Department of Anthropology, University of Durham
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Language English Summary Language Original Title (up)
Series Editor Series Title Abbreviated Series Title
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ISSN 0962-8452 ISBN Medium
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Notes PMID:8728982 Approved no
Call Number Equine Behaviour @ team @ Serial 4783
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Author Connor, R.C.; Mann, J.; Tyack, P.L.; Whitehead, H.
Title Social evolution in toothed whales Type Journal Article
Year 1998 Publication Trends in Ecology & Evolution Abbreviated Journal Trends. Ecol. Evol
Volume 13 Issue 6 Pages 228-232
Keywords odontocetes; toothed whales; social evolution; communication; bottlenose dolphins; sperm whales; long-term studies; foraging
Abstract Two contrasting results emerge from comparisons of the social systems of several odontocetes with terrestrial mammals. Researchers have identified remarkable convergence in prominent features of the social systems of odontocetes such as the sperm whale and bottlenose dolphin with a few well-known terrestrial mammals such as the elephant and chimpanzee. In contrast, studies on killer whales and Baird's beaked whale reveal novel social solutions to aquatic living. The combination of convergent and novel features in odontocete social systems promise a more general understanding of the ecological determinants of social systems in both terrestrial and aquatic habitats, as well as the relationship between relative brain size and social evolution.
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ISSN 0169-5347 ISBN Medium
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Notes Approved no
Call Number Equine Behaviour @ team @ Serial 4789
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Author Herbert Gintis; Samuel Bowles; Robert Boyd; Ernst Fehr
Title 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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Series Editor Series Title Abbreviated Series Title
Series Volume Series Issue Edition
ISSN 1090-5138 ISBN Medium
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Notes Approved no
Call Number Equine Behaviour @ team @ S1090-5138(02)00157-5 Serial 4943
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Author Ishida, N.; Oyunsuren, T.; Mashima, S.; Mukoyama, H.; Saitou, N.
Title Mitochondrial DNA sequences of various species of the genus Equus with special reference to the phylogenetic relationship between Przewalskii's wild horse and domestic horse Type Journal Article
Year 1995 Publication Journal of Molecular Evolution Abbreviated Journal J Mol Evol
Volume 41 Issue 2 Pages 180-188
Keywords Animals; Base Sequence; Chromosomes; Conserved Sequence/genetics; DNA, Mitochondrial/*genetics; Evolution; Genetic Variation/*genetics; Horses/*genetics; Molecular Sequence Data; *Phylogeny; RNA, Transfer, Pro/genetics; Sequence Alignment; Sequence Analysis, DNA
Abstract The noncoding region between tRNAPro and the large conserved sequence block is the most variable region in the mammalian mitochondrial DNA D-loop region. This variable region (ca. 270 bp) of four species of Equus, including Mongolian and Japanese native domestic horses as well as Przewalskii's (or Mongolian) wild horse, were sequenced. These data were compared with our recently published Thoroughbred horse mitochondrial DNA sequences. The evolutionary rate of this region among the four species of Equus was estimated to be 2-4 x 10(-8) per site per year. Phylogenetic trees of Equus species demonstrate that Przewalskii's wild horse is within the genetic variation among the domestic horse. This suggests that the chromosome number change (probably increase) of the Przewalskii's wild horse occurred rather recently.
Address Laboratory of Molecular and Cellular Biology, Japan Racing Association, Tokyo
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Language English Summary Language Original Title (up)
Series Editor Series Title Abbreviated Series Title
Series Volume Series Issue Edition
ISSN 0022-2844 ISBN Medium
Area Expedition Conference
Notes PMID:7666447 Approved no
Call Number Equine Behaviour @ team @ Serial 5042
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Author Matsumura, S.; Kobayashi, T.
Title A game model for dominance relations among group-living animals Type Journal Article
Year 1998 Publication Behavioral Ecology and Sociobiology Abbreviated Journal Behav. Ecol. Sociobiol.
Volume 42 Issue 2 Pages 77-84
Keywords Dominance – Hawk-dove games – Resource-holding potential – Asymmetry – Evolutionarily stable strategy
Abstract Abstract   We present here an attempt to understand behaviors of dominant individuals and of subordinate individuals as behavior strategies in an asymmetric “hawk-dove” game. We assume that contestants have perfect information about relative fighting ability and the value of the resource. Any type of asymmetry, both relevant to and irrelevant to the fighting ability, can be considered. It is concluded that evolutionarily stable strategies (ESSs) depend on the resource value (V), the cost of injury (D), and the probability that the individual in one role will win (x). Different ESSs can exist even when values of V, D, and x are the same. The characteristics of dominance relations detected by observers may result from the ESSs that the individuals are adopting. The model explains some characteristics of dominance relations, for example, the consistent outcome of contests, the rare occurrence of escalated fights, and the discrepancy between resource holding potential (RHP) and dominance relations, from the viewpoint of individual selection.
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Notes Approved no
Call Number Equine Behaviour @ team @ Serial 5102
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Author Weissing, F.J.
Title Animal behaviour: Born leaders Type Journal Article
Year 2011 Publication Abbreviated Journal Nature
Volume 474 Issue 7351 Pages 288-289
Keywords * Animal behaviour * Evolution * Psychology
Abstract Social animals face a dilemma. To reap the benefits of group living, they have to stay together. However, individuals differ in their preferences as to where to go and what to do next. If all individuals follow their own preferences, group coherence is undermined, resulting in an outcome that is unfavourable for everyone. Neglecting one's own preferences and following a leader is one way to resolve this coordination problem. But what attributes make an individual a 'leader'? A modelling study by Johnstone and Manica1 illuminates this question.
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Publisher Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved. Place of Publication Editor
Language Summary Language Original Title (up)
Series Editor Series Title Abbreviated Series Title
Series Volume Series Issue Edition
ISSN 0028-0836 ISBN Medium
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Notes 10.1038/474288a Approved no
Call Number Equine Behaviour @ team @ Serial 5396
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Author Garamszegi, L.Z.; Møller, A.P.; Erritzøe, J.
Title Coevolving avian eye size and brain size in relation to prey capture and nocturnality Type Journal Article
Year 2002 Publication Proceedings of the Royal Society of London. Series B: Biological Sciences Abbreviated Journal Proc Roy Soc Lond B Biol Sci
Volume 269 Issue 1494 Pages 961-967
Keywords adaptation; behaviour; brain size; coevolution; eye size; vision
Abstract Behavioural adaptation to ecological conditions can lead to brain size evolution. Structures involved in behavioural visual information processing are expected to coevolve with enlargement of the brain. Because birds are mainly vision–oriented animals, we tested the predictions that adaptation to different foraging constraints can result in eye size evolution, and that species with large eyes have evolved large brains to cope with the increased amount of visual input. Using a comparative approach, we investigated the relationship between eye size and brain size, and the effect of prey capture technique and nocturnality on these traits. After controlling for allometric effects, there was a significant, positive correlation between relative brain size and relative eye size. Variation in relative eye and brain size were significantly and positively related to prey capture technique and nocturnality when a potentially confounding variable, aquatic feeding, was controlled statistically in multiple regression of independent linear contrasts. Applying a less robust, brunching approach, these patterns also emerged, with the exception that relative brain size did not vary with prey capture technique. Our findings suggest that relative eye size and brain size have coevolved in birds in response to nocturnal activity and, at least partly, to capture of mobile prey.
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Notes 10.1098/rspb.2002.1967 Approved no
Call Number Equine Behaviour @ team @ Serial 5452
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Author Potts, R.
Title Variability selection in hominid evolution Type Journal Article
Year 1998 Publication Evolutionary Anthropology: Issues, News, and Reviews Abbreviated Journal Evol. Anthropol.
Volume 7 Issue 3 Pages 81-96
Keywords variability selection; hominids; environment; adaptation; natural selection; evolution
Abstract Variability selection (abbreviated as VS) is a process considered to link adaptive change to large degrees of environment variability. Its application to hominid evolution is based, in part, on the pronounced rise in environmental remodeling that took place over the past several million years. The VS hypothesis differs from prior views of hominid evolution, which stress the consistent selective effects associated with specific habitats or directional trends (e.g., woodland, savanna expansion, cooling). According to the VS hypothesis, wide fluctuations over time created a growing disparity in adaptive conditions. Inconsistency in selection eventually caused habitat-specific adaptations to be replaced by structures and behaviors responsive to complex environmental change. Key hominid adaptations, in fact, emerged during times of heightened variability. Early bipedality, encephalized brains, and complex human sociality appear to signify a sequence of VS adaptations—i.e., a ratcheting up of versatility and responsiveness to novel environments experienced over the past 6 million years. The adaptive results of VS cannot be extrapolated from selection within a single environmental shift or relatively stable habitat. If some complex traits indeed require disparities in adaptive setting (and relative fitness) in order to evolve, the VS idea counters the prevailing view that adaptive change necessitates long-term, directional consistency in selection. © 1998 Wiley-Liss, Inc.
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Publisher John Wiley & Sons, Inc. Place of Publication Editor
Language Summary Language Original Title (up)
Series Editor Series Title Abbreviated Series Title
Series Volume Series Issue Edition
ISSN 1520-6505 ISBN Medium
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Notes Approved no
Call Number Equine Behaviour @ team @ Serial 5461
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Author Vrba, Elisabeth S.
Title Environment and evolution: alternative causes of the temporal distribution of evolutionary events Type Journal Article
Year 1985 Publication South African Journal of Science Abbreviated Journal S Afr J Anim Sci
Volume 81 Issue Pages 229-236
Keywords evolution, paleontology, turnover pulse
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Notes Approved no
Call Number Equine Behaviour @ team @ Serial 5463
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