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Selection in a fluctuating environment and the evolution of sexual dimorphism in the seed beetle Callosobruchus maculatus

机译:波动环境中的选择和种子甲虫Callosobruchus maculatus性二态性的演变

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Temperature changes in the environment, which realistically include environmental fluctuations, can create both plastic and evolutionary responses of traits. Sexes might differ in either or both of these responses for homologous traits, which in turn has consequences for sexual dimorphism and its evolution. Here, we investigate both immediate changes in and the evolution of sexual dimorphism in response to a changing environment (with and without fluctuations) using the seed beetle Callosobruchus maculatus. We investigate sex differences in plasticity and also the genetic architecture of body mass and developmental time dimorphism to test two existing hypotheses on sex differences in plasticity (adaptive canalization hypothesis and condition dependence hypothesis). We found a decreased sexual size dimorphism in higher temperature and that females responded more plastically than males, supporting the condition dependence hypothesis. However, selection in a fluctuating environment altered sex-specific patterns of genetic and environmental variation, indicating support for the adaptive canalization hypothesis. Genetic correlations between sexes (r _(MF)) were affected by fluctuating selection, suggesting facilitated independent evolution of the sexes. Thus, the selective past of a population is highly important for the understanding of the evolutionary dynamics of sexual dimorphism.
机译:环境中的温度变化(实际上包括环境波动)会产生性状的可塑性和进化响应。对于同源性状,性别在这两个响应中的一个或两个中可能不同,这反过来又对性二态性及其演变产生影响。在这里,我们调查使用种子甲虫Callosobruchus maculatus应对环境变化(有无波动)的即时变化和性二态性的演变。我们研究可塑性中的性别差异,以及体重和发育时间二态性的遗传结构,以检验关于可塑性性别差异的两个现有假设(自适应渠化假设和条件依赖假设)。我们发现,在较高的温度下,性大小的双态性降低,女性的反应比男性更具塑性,从而支持了条件依赖性假说。但是,在动荡的环境中进行选择会改变遗传和环境变异的性别特定模式,这表明对自适应渠化假说的支持。性别之间的遗传相关性(r _(MF))受选择波动的影响,表明性别的独立自主进化容易。因此,种群的选择性过去对于理解性二态性的进化动力学非常重要。

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