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Background: While the evolution of reciprocal cooperation has attracted an enormous attention, the proximate mechanisms underlying the ability of animals to cooperate reciprocally are comparatively neglected. Symmetry-based reciprocity is a hypothetical proximate mechanism that has been suggested to be widespread

Background: While the evolution of reciprocal cooperation has attracted an enormous attention, the proximate mechanisms underlying the ability of animals to cooperate reciprocally are comparatively neglected. Symmetry-based reciprocity is a hypothetical proximate mechanism that has been suggested to be widespread among cognitively unsophisticated animals.

Methods: We developed two agent-based models of symmetry-based reciprocity (one relying on an arbitrary tag and the other on interindividual proximity) and tested their ability both to reproduce significant emergent features of cooperation in group living animals and to promote the evolution of cooperation.
Results. Populations formed by agents adopting symmetry-based reciprocity showed differentiated “social relationships” and a positive correlation between cooperation given and received: two common aspects of animal cooperation. However, when reproduction and selection across multiple generations were added to the models, agents adopting symmetry-based reciprocity were outcompeted by selfish agents that never cooperated.

Discussion: In order to evolve, hypothetical proximate mechanisms must be able to stand competition from alternative strategies. While the results of our simulations require confirmation using analytical methods, we provisionally suggest symmetry-based reciprocity is to be abandoned as a possible proximate mechanism underlying the ability of animals to reciprocate cooperative interactions.

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    Title
    • Symmetry-Based Reciprocity: Evolutionary Constraints on a Proximate Mechanism
    Contributors
    Date Created
    2016-03-15
    Resource Type
  • Text
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    Identifier
    • Digital object identifier: 10.7717/peerj.1812
    • Identifier Type
      International standard serial number
      Identifier Value
      2167-8359
    Note
    • The final version of this article, as published in PeerJ, can be viewed online at: https://peerj.com/articles/1812/

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    Campennì, M., & Schino, G. (2016). Symmetry-based reciprocity: evolutionary constraints on a proximate mechanism. PeerJ, 4. doi:10.7717/peerj.1812

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