Mating systems and recombination landscape strongly shape genetic diversity and selection in wheat relatives.

IF 3.4 1区 生物学 Q2 EVOLUTIONARY BIOLOGY
Evolution Letters Pub Date : 2024-08-12 eCollection Date: 2024-12-01 DOI:10.1093/evlett/qrae039
Concetta Burgarella, Marie-Fleur Brémaud, Gesa Von Hirschheydt, Veronique Viader, Morgane Ardisson, Sylvain Santoni, Vincent Ranwez, Miguel de Navascués, Jacques David, Sylvain Glémin
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引用次数: 0

Abstract

How and why genetic diversity varies among species is a long-standing question in evolutionary biology. Life history traits have been shown to explain a large part of observed diversity. Among them, mating systems have one of the strongest impacts on genetic diversity, with selfing species usually exhibiting much lower diversity than outcrossing relatives. Theory predicts that a high rate of selfing amplifies selection at linked sites, reducing genetic diversity genome-wide, but frequent bottlenecks and rapid population turn-over could also explain low genetic diversity in selfers. However, how linked selection varies with mating systems and whether it is sufficient to explain the observed difference between selfers and outcrossers has never been tested. Here, we used the Aegilops/Triticum grass species, a group characterized by contrasted mating systems (from obligate outcrossing to high selfing) and marked recombination rate variation across the genome, to quantify the effects of mating system and linked selection on patterns of neutral and selected polymorphism. By analyzing phenotypic and transcriptomic data of 13 species, we show that selfing strongly affects genetic diversity and the efficacy of selection by amplifying the intensity of linked selection genome-wide. In particular, signatures of adaptation were only found in the highly recombining regions in outcrossing species. These results bear implications for the evolution of mating systems and, more generally, for our understanding of the fundamental drivers of genetic diversity.

交配系统和重组景观在很大程度上决定了小麦近缘种的遗传多样性和选择。
物种间的遗传多样性如何变化以及为什么会变化,是进化生物学中一个长期存在的问题。生活史特征已被证明可以解释大部分观察到的多样性。其中,交配系统对遗传多样性的影响最大,自交物种的多样性通常远低于外交亲缘物种。理论预测,自交率高会放大连接位点的选择,从而降低整个基因组的遗传多样性,但频繁的瓶颈和快速的种群更替也可以解释自交系遗传多样性低的原因。然而,链接选择如何随交配系统的不同而变化,以及它是否足以解释所观察到的自交和外交之间的差异,这些问题还从未被检验过。在这里,我们利用Aegilops/Triticum禾本科物种--一个具有不同交配系统(从强制性外交到高度自交)和整个基因组显著重组率差异的群体--来量化交配系统和关联选择对中性多态性和选择多态性模式的影响。通过分析 13 个物种的表型和转录组数据,我们发现自交通过在全基因组范围内放大关联选择的强度,强烈影响了遗传多样性和选择的有效性。特别是,只有在外交物种的高重组区域才会发现适应的特征。这些结果对交配系统的进化,更广泛地说,对我们理解遗传多样性的基本驱动因素具有重要意义。
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来源期刊
Evolution Letters
Evolution Letters EVOLUTIONARY BIOLOGY-
CiteScore
13.00
自引率
2.00%
发文量
35
审稿时长
10 weeks
期刊介绍: Evolution Letters publishes cutting-edge new research in all areas of Evolutionary Biology. Available exclusively online, and entirely open access, Evolution Letters consists of Letters - original pieces of research which form the bulk of papers - and Comments and Opinion - a forum for highlighting timely new research ideas for the evolutionary community.
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