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Identifying coevolving loci using interspecific genetic correlations

机译:使用种间遗传相关性鉴定共同进化的基因座

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Abstract Evaluating the importance of coevolution for a wide range of evolutionary questions, such as the role parasites play in the evolution of sexual reproduction, requires that we understand the genetic basis of coevolutionary interactions. Despite its importance, little progress has been made identifying the genetic basis of coevolution, largely because we lack tools designed specifically for this purpose. Instead, coevolutionary studies are often forced to re-purpose single species techniques. Here, we propose a novel approach for identifying the genes mediating locally adapted coevolutionary interactions that relies on spatial correlations between genetic marker frequencies in the interacting species. Using individual-based multi-locus simulations, we quantify the performance of our approach across a range of coevolutionary genetic models. Our results show that when one species is strongly locally adapted to the other and a sufficient number of populations can be sampled, our approach accurately identifies functionally coupled host and parasite genes. Although not a panacea, the approach we outline here could help to focus the search for coevolving genes in a wide variety of well-studied systems for which substantial local adaptation has been demonstrated.
机译:摘要评估协同进化对各种进化问题的重要性,例如寄生虫在有性生殖的进化中所起的作用,要求我们了解协同进化相互作用的遗传基础。尽管具有重要意义,但在确定协同进化的遗传基础方面进展甚微,主要是因为我们缺乏专门为此目的设计的工具。取而代之的是,共同进化研究常常被迫重新利用单一物种技术。在这里,我们提出了一种新颖的方法来鉴定介导局部适应的协同进化相互作用的基因,该相互作用依赖于相互作用物种中遗传标记频率之间的空间相关性。使用基于个体的多基因座模拟,我们在一系列协同进化遗传模型中量化了我们方法的性能。我们的结果表明,当一种物种在本地强烈适应另一种物种并且可以对足够数量的种群进行采样时,我们的方法可以准确地识别功能耦合的宿主和寄生虫基因。尽管不是灵丹妙药,但我们在此概述的方法可能有助于将搜索共同进化的基因集中在各种经过充分研究的系统中,这些系统已被证明具有充分的局部适应性。

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