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实验进化支持基因组分化中性选择的特征。

Experimental evolution supports signatures of sexual selection in genomic divergence.

作者信息

Wiberg R Axel W, Veltsos Paris, Snook Rhonda R, Ritchie Michael G

机构信息

Centre for Biological Diversity University of St Andrews St Andrews KY16 9TH United Kingdom.

Current Address: Department of Environmental Sciences Zoological Institute University of Basel Basel CH-4051 Switzerland.

出版信息

Evol Lett. 2021 Mar 22;5(3):214-229. doi: 10.1002/evl3.220. eCollection 2021 Jun.

Abstract

Comparative genomics has contributed to the growing evidence that sexual selection is an important component of evolutionary divergence and speciation. Divergence by sexual selection is implicated in faster rates of divergence of the X chromosome and of genes thought to underlie sexually selected traits, including genes that are sex biased in expression. However, accurately inferring the relative importance of complex and interacting forms of natural selection, demography, and neutral processes that occurred in the evolutionary past is challenging. Experimental evolution provides an opportunity to apply controlled treatments for multiple generations and examine the consequent genomic divergence. Here, we altered sexual selection intensity, elevating sexual selection in polyandrous lines and eliminating it in monogamous lines, and examined patterns of allele frequency divergence in the genome of after more than 160 generations of experimental evolution. Divergence is not uniform across the genome but concentrated in "islands," many of which contain candidate genes implicated in mating behaviors and other sexually selected phenotypes. These are more often seen on the X chromosome, which also shows greater divergence in than neutral expectations. There are characteristic signatures of selection seen in these regions, with lower diversity on the X chromosome than the autosomes, and differences in diversity on the autosomes between selection regimes. Reduced Tajima's within some of the divergent regions may imply that selective sweeps have occurred, despite considerable recombination. These changes are associated with both differential gene expression between the lines and sex-biased gene expression within the lines. Our results are very similar to those thought to implicate sexual selection in divergence between species and natural populations, and hence provide experimental support for the likely role of sexual selection in driving such types of genetic divergence, but also illustrate how variable outcomes can be for different genomic regions.

摘要

比较基因组学为越来越多的证据做出了贡献,这些证据表明性选择是进化分化和物种形成的重要组成部分。性选择导致的分化与X染色体以及被认为是性选择性状基础的基因的更快分化速度有关,包括那些在表达上具有性别偏向的基因。然而,准确推断在进化历史中发生的自然选择、种群统计学和中性过程的复杂且相互作用形式的相对重要性具有挑战性。实验进化提供了一个机会,可以对多代进行可控处理,并检查随之而来的基因组分化。在这里,我们改变了性选择强度,在多雄多雌系中提高性选择,在单配偶系中消除性选择,并在经过160多代实验进化后检查了[具体物种名称未给出]基因组中的等位基因频率分化模式。基因组中的分化并不均匀,而是集中在“岛”上,其中许多包含与交配行为和其他性选择表型相关的候选基因。这些在X染色体上更常见,X染色体在[具体物种名称未给出]中也显示出比中性预期更大的分化。在这些区域可以看到选择的特征性信号,X染色体上的多样性低于常染色体,并且在不同选择机制下常染色体上的多样性也存在差异。尽管有相当程度的重组,但在一些分化区域内Tajima's D值降低可能意味着发生了选择性清除。这些变化与品系间的差异基因表达以及品系内的性别偏向基因表达都有关。我们的结果与那些认为性选择在物种和自然种群之间的分化中起作用的结果非常相似,因此为性选择在驱动这类遗传分化中可能发挥的作用提供了实验支持,但也说明了不同基因组区域的结果可能有多大的变异性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fe67/8190450/969329b84960/EVL3-5-214-g003.jpg

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