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Evolution of branched regulatory genetic pathways: directional selection on pleiotropic loci accelerates developmental system drift

机译:分支调节性遗传途径的进化:多效性基因座上的方向选择加速了发育系统的漂移

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摘要

Developmental systems are regulated by a web of interacting loci. One common and useful approach in studying the evolution of development is to focus on classes of interacting elements within these systems. Here, we use individual-based simulations to study the evolution of traits controlled by branched developmental pathways involving three loci, where one locus regulates two different traits. We examined the system under a variety of selective regimes. In the case where one branch was under stabilizing selection and the other under directional selection, we observed developmental system drift: the trait under stabilizing selection showed little phenotypic change even though the loci underlying that trait showed considerable evolutionary divergence. This occurs because the pleiotropic locus responds to directional selection and compensatory mutants are then favored in the pathway under stabilizing selection. Though developmental system drift may be caused by other mechanisms, it seems likely that it is accelerated by the same underlying genetic mechanism as that producing the Dobzhansky-Muller incompatibilities that lead to speciation in both linear and branched pathways. We also discuss predictions of our model for developmental system drift and how different selective regimes affect probabilities of speciation in the branched pathway system.
机译:发育系统由相互作用的基因座网络调节。研究发展演变的一种常见且有用的方法是关注这些系统中相互作用元素的类别。在这里,我们使用基于个体的模拟来研究由涉及三个基因座的分支发育途径控制的性状的进化,其中一个基因座调控两个不同的性状。我们在各种选择性机制下研究了该系统。在一个分支处于稳定选择状态而另一分支处于方向选择状态的情况下,我们观察到了发育系统的漂移:稳定选择状态下的性状几乎没有表型变化,即使该性状的潜在位点显示出相当大的进化差异。发生这种情况的原因是多效性基因座响应方向选择,然后在稳定选择下的路径中倾向于补偿性突变体。尽管发育系统的漂移可能是由其他机制引起的,但它似乎是由与产生Dobzhansky-Muller不相容性的潜在遗传机制相同的潜在遗传机制所加速的,从而导致线性和分支途径的形成。我们还讨论了我们的发展系统漂移模型的预测,以及不同的选择机制如何影响分支途径系统中物种形成的可能性。

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