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Pleiotropy cooperation and the social evolution of genetic architecture

机译:多效性合作与基因架构的社会演进

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摘要

Pleiotropy has been suggested as a novel mechanism for stabilising cooperation in bacteria and other microbes. The hypothesis is that linking cooperation with a trait that provides a personal (private) benefit can outweigh the cost of cooperation in situations when cooperation would not be favoured by mechanisms such as kin selection. We analysed the theoretical plausibility of this hypothesis, with analytical models and individual-based simulations. We found that (1) pleiotropy does not stabilise cooperation, unless the cooperative and private traits are linked via a genetic architecture that cannot evolve (mutational constraint); (2) if the genetic architecture is constrained in this way, then pleiotropy favours any type of trait and not especially cooperation; (3) if the genetic architecture can evolve, then pleiotropy does not favour cooperation; and (4) there are several alternative explanations for why traits may be linked, and causality can even be predicted in the opposite direction, with cooperation favouring pleiotropy. Our results suggest that pleiotropy could only explain cooperation under restrictive conditions and instead show how social evolution can shape the genetic architecture.
机译:已经建议多效性是稳定细菌和其他微生物中的合作的新机制。该假设是,在亲属选择等机制不赞成合作的情况下,将合作与提供个人(私人)利益的特征联系起来可能会超过合作的成本。我们通过分析模型和基于个体的模拟分析了该假设的理论合理性。我们发现:(1)多效性不能稳定合作,除非合作性和私人性状通过无法进化的遗传结构(突变约束)联系在一起; (2)如果遗传结构受到这种方式的约束,则多效性有利于任何类型的性状,而不是特别是合作性; (3)如果遗传结构可以进化,则多效性不利于合作; (4)对于性状为何可能被关联的几种替代解释,甚至可以在相反的方向上预测因果关系,而合作则有利于多效性。我们的研究结果表明,多效性只能解释限制性条件下的合作,而是表明社会进化如何影响遗传结构。

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