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The role of phenotypic plasticity on population differentiation

机译:表型可塑性在人口分化中的作用

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摘要

Several evolutionary processes shape the genetic and phenotypic differentiation of populations. Among them, the joint effects of gene flow, selection and phenotypic plasticity are poorly known, especially when trying to understand how maladaptive plasticity affects population divergence. We extended a quantitative genetic model of Hendry et al. (2001) to describe these joint effects on phenotypic and additive genetic divergence between two populations, and their phenotypic and genetic differentiation (PST and QST). With individual-based simulations, we tested our model predictions and further modeled allelic differentiation at neutral (FST) and adaptive (FSTQ) loci. While adaptive phenotypic plasticity allows for large phenotypic divergence and differentiation despite high gene flow, maladaptive plasticity promotes genetic divergence and generates countergradient variation, under extensive migration with phenotypic differences sometimes opposed to genetic differences. Maladaptive plasticity can also promote adaptive phenotypic divergence by reducing the effective gene flow. Overall, plasticity decouples genetic from phenotypic differences between populations, and blurs the correlation between phenotypic divergence and local adaptation. By deriving models of population differentiation for three different life cycles, we further describe the effect of a species’ ecology on evolution in structured populations.
机译:几个进化过程决定了种群的遗传和表型分化。其中,对基因流动,选择和表型可塑性的联合效应知之甚少,尤其是在试图了解适应不良的可塑性如何影响种群差异时。我们扩展了亨德利等人的定量遗传模型。 (2001年)描述这些共同作用对两个种群之间的表型和加性遗传差异,以及它们的表型和遗传分化(PST和QST)。通过基于个体的模拟,我们测试了模型预测,并进一步对中性(FST)和适应性(FSTQ)基因座的等位基因分化建模。尽管尽管基因流量很高,但适应性表型可塑性仍允许较大的表型差异和分化,而适应不良的可塑性可促进遗传差异并产生反梯度变异,而这种迁移在表型差异有时会与遗传差异相对的情况下发生。适应不良的可塑性还可以通过减少有效的基因流量来促进适应性表型的分化。总体而言,可塑性使群体之间的遗传差异与表型差异脱钩,并模糊了表型差异与局部适应之间的相关性。通过推导三种不同生命周期的种群分化模型,我们进一步描述了物种生态学对结构化种群进化的影响。

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