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相互作用的表型与进化过程。II. 社会相互作用导致的选择

Interacting Phenotypes and the Evolutionary Process. II. Selection Resulting from Social Interactions.

作者信息

Wolf Jason B, Brodie Iii Edmund D, Moore Allen J

出版信息

Am Nat. 1999 Mar;153(3):254-266. doi: 10.1086/303168.

Abstract

Social interactions often affect the fitness of interactants. Because of this, social selection has been described as a process distinct from other forms of natural selection. Social selection has been predicted to result in different evolutionary dynamics for interacting phenotypes, including rapid or extreme evolution and evolution of altruism. Despite the critical role that social selection plays in theories of social evolution, few studies have measured the force of social selection or the conditions under which this force changes. Here we present a model of social selection acting on interacting phenotypes that can be evaluated independently from the genetics of interacting phenotypes. Our model of social selection is analogous to covariance models of other forms of selection. We observe that an opportunity for social selection exists whenever individual fitness varies as a result of interactions with conspecifics. Social selection occurs, therefore, when variation in fitness due to interactions covaries with traits, resulting in a net force of selection acting on the interacting phenotypes. Thus, there must be a covariance between the phenotypes of the interactants for social selection to exist. This interacting phenotype covariance is important because it measures the degree to which a particular trait covaries with the selective environment provided by conspecifics. A variety of factors, including nonrandom interactions, behavioral modification during interactions, relatedness, and indirect genetic effects may contribute to the covariance of interacting phenotypes, which promotes social selection. The independent force of social selection (measured as a social selection gradient) can be partitioned empirically from the force of natural selection (measured by the natural selection gradient) using partial regression. This measure can be combined with genetic models of interacting phenotypes to provide insights into social evolution.

摘要

社会互动常常影响互动者的适应性。正因如此,社会选择被描述为一种有别于其他自然选择形式的过程。据预测,社会选择会导致相互作用的表型产生不同的进化动态,包括快速或极端进化以及利他主义的进化。尽管社会选择在社会进化理论中起着关键作用,但很少有研究测量过社会选择的力量或这种力量发生变化的条件。在此,我们提出了一个作用于相互作用表型的社会选择模型,该模型可以独立于相互作用表型的遗传学进行评估。我们的社会选择模型类似于其他形式选择的协方差模型。我们观察到,只要个体适应性因与同种个体的相互作用而发生变化,社会选择的机会就存在。因此,当由于相互作用导致的适应性变化与性状协变时,就会发生社会选择,从而产生作用于相互作用表型的净选择力。所以,为了使社会选择存在,相互作用者的表型之间必须存在协方差。这种相互作用表型协方差很重要,因为它衡量了特定性状与同种个体提供的选择环境协变的程度。包括非随机相互作用、相互作用过程中的行为改变、亲缘关系以及间接遗传效应在内的多种因素,可能会导致相互作用表型的协方差,进而促进社会选择。社会选择的独立力量(以社会选择梯度来衡量)可以通过偏回归从自然选择的力量(以自然选择梯度来衡量)中通过实证方法进行区分。这个度量可以与相互作用表型的遗传模型相结合,以深入了解社会进化。

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