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具有交叉率染色体尺度异质性的适应性分化基因组学。

Genomics of adaptive divergence with chromosome-scale heterogeneity in crossover rate.

作者信息

Berner Daniel, Roesti Marius

机构信息

Zoological Institute, University of Basel, Basel, Switzerland.

Department of Zoology, University of British Columbia, Vancouver, BC, Canada.

出版信息

Mol Ecol. 2017 Nov;26(22):6351-6369. doi: 10.1111/mec.14373. Epub 2017 Nov 24.

Abstract

Genetic differentiation between divergent populations is often greater in chromosome centres than peripheries. Commonly overlooked, this broadscale differentiation pattern is sometimes ascribed to heterogeneity in crossover rate and hence linked selection within chromosomes, but the underlying mechanisms remain incompletely understood. A literature survey across 46 organisms reveals that most eukaryotes indeed exhibit a reduced crossover rate in chromosome centres relative to the peripheries. Using simulations of populations diverging into ecologically different habitats through sorting of standing genetic variation, we demonstrate that such chromosome-scale heterogeneity in crossover rate, combined with polygenic divergent selection, causes stronger hitchhiking and especially barriers to gene flow across chromosome centres. Without requiring selection on new mutations, this rapidly leads to elevated population differentiation in the low-crossover centres relative to the high-crossover peripheries of chromosomes ("Chromosome Centre-Biased Differentiation", CCBD). Using simulated and empirical data, we then show that strong CCBD between populations can provide evidence of polygenic adaptive divergence with a phase of gene flow. We further demonstrate that chromosome-scale heterogeneity in crossover rate impacts analyses beyond that of population differentiation, including the inference of phylogenies and parallel adaptive evolution among populations, the detection of genetic loci under selection, and the interpretation of the strength of selection on genomic regions. Overall, our results call for a greater appreciation of chromosome-scale heterogeneity in crossover rate in evolutionary genomics.

摘要

在不同种群之间,染色体中心区域的遗传分化通常比周边区域更大。这种广泛存在的分化模式常被忽视,有时被归因于交叉率的异质性,进而与染色体内的连锁选择相关联,但其潜在机制仍未完全明晰。一项针对46种生物的文献调查显示,大多数真核生物在染色体中心区域的交叉率确实相对于周边区域有所降低。通过对通过现存遗传变异的分选而分化进入生态不同栖息地的种群进行模拟,我们证明,这种染色体尺度上交叉率的异质性,与多基因分歧选择相结合,会导致更强的搭便车效应,尤其是在跨越染色体中心区域时对基因流形成障碍。在不依赖对新突变进行选择的情况下,这会迅速导致染色体低交叉率中心区域相对于高交叉率周边区域的种群分化加剧(“染色体中心偏向性分化”,CCBD)。利用模拟数据和实证数据,我们随后表明,种群之间强烈的CCBD能够为具有基因流阶段的多基因适应性分化提供证据。我们进一步证明,染色体尺度上交叉率的异质性对分析的影响超出了种群分化的范畴,包括系统发育推断以及种群间的平行适应性进化、选择下遗传位点的检测,以及对基因组区域选择强度的解读。总体而言,我们的研究结果呼吁在进化基因组学中更加重视染色体尺度上交叉率的异质性。

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