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Genetic Constraints and the Evolution of Display Trait Sexual Dimorphism by Natural and Sexual Selection

机译:遗传约束和自然选择和性选择对展示性两性分化的影响

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The evolution of sexual dimorphism involves an interaction between sex-specific selection and a breakdown of genetic constraints that arise because the two sexes share a genome. We examined genetic constraints and the effect of sex-specific selection on a suite of sexually dimorphic display traits in Drosophila serrata. Sexual dimorphism varied among nine natural populations covering a substantial portion of the species range. Quantitative genetic analyses showed that intersexual genetic correlations were high because of autosomal genetic variance but that the inclusion of X-linked effects reduced genetic correlations substantially, indicating that sex linkage may be an important mechanism by which intersexual genetic constraints are reduced in this species. We then explored the potential for both natural and sexual selection to influence these traits, using a 12-generation laboratory experiment in which we altered the opportunities for each process as flies adapted to a novel environment. Sexual dimorphism evolved, with natural selection reducing sexual dimorphism, whereas sexual selection tended to increase it overall. To this extent, our results are consistent with the hypothesis that sexual selection favors evolutionary divergence of the sexes. However, sex-specific responses to natural and sexual selection contrasted with the classic model because sexual selection affected females rather than males.
机译:性二态性的进化涉及特定性别的选择与由于两个性别共享基因组而引起的遗传限制的分解之间的相互作用。我们研究了果蝇锯齿形的遗传约束和性别选择对一系列性二形展示性状的影响。在覆盖大部分物种范围的九个自然种群中,性别二态性有所不同。定量遗传分析表明,由于常染色体遗传变异,两性之间的遗传相关性很高,但X连锁效应的加入大大降低了遗传相关性,表明性别联系可能是减少该物种两性遗传约束的重要机制。然后,我们使用12代实验室实验探索了自然选择和性选择影响这些性状的潜力,其中我们改变了果蝇适应新环境的每个过程的机会。性二态性进化,自然选择减少了性二态性,而性选择则总体上增加了性二态性。在这个程度上,我们的结果与这样的假设是一致的,即性别选择有利于性别的进化分歧。但是,针对性别和自然选择的特定性别反应与经典模型相反,因为性别选择影响女性而不是男性。

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