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Genetic architecture and evolutionary constraint when the environment contains genes.

机译:当环境包含基因时,遗传结构和进化限制。

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The environment provided by conspecifics is often the most important component of the environment experienced by individuals, frequently having profound effects on fitness and trait expression. Although these social effects on fitness and trait expression may appear to be purely environmental, they differ from other sorts of environmental influences, because they can have a genetic basis and thus can contribute to evolution. Theory has shown that these effects modify the definition of genetic architecture by making the phenotype the property of the genotypes of multiple individuals and alter evolutionary dynamics by introducing additional heritable components contributing to trait evolution. These effects suggest that genetic and evolutionary analyses of traits influenced by social environments must incorporate the genetic components of variation contributed by these environments. However, empirical studies incorporating these effects are generally lacking. In this paper, I quantify the contribution ofgenetically based environmental effects arising from social interactions during group rearing to the quantitative genetics of body size in Drosophila melanogaster. The results demonstrate that the genetic architecture of body size contains an important component of variation contributed by the social environment, which is hidden to ordinary genetic analyses and opposes the direct effects of genes on body-size development within a population. Using a model of trait evolution, I show that these effects significantly alter evolutionary predictions by providing hidden constraints on phenotypic evolution. The importance of relatedness of interactants and the potential impact of kin selection on the evolution of body size are also examined.
机译:特定物种提供的环境通常是个人所经历的环境中最重要的组成部分,经常对适应性和特质表达产生深远影响。尽管这些对适应性和特质表达的社会影响似乎纯粹是环境影响,但它们与其他类型的环境影响有所不同,因为它们可以具有遗传基础,从而可以促进进化。理论表明,这些效应通过使表型成为多个个体基因型的特性来修改遗传结构的定义,并通过引入有助于性状进化的其他可遗传成分来改变进化动力学。这些影响表明,受社会环境影响的性状的遗传和进化分析必须纳入这些环境所致变异的遗传成分。但是,通常缺乏结合这些影响的实证研究。在本文中,我量化了群体饲养过程中社交互动产生的基于遗传的环境效应对黑腹果蝇体型大小定量遗传学的贡献。结果表明,人体大小的遗传结构包含社会环境造成的变异的重要组成部分,这是普通遗传分析所隐藏的,并且反对基因对人群体内个体大小发展的直接影响。通过使用性状进化模型,我证明了这些效应通过对表型进化提供隐藏的约束,从而极大地改变了进化预测。还研究了相互关系的重要性以及亲属选择对体型演变的潜在影响。

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