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Rapid evolution of the intersexual genetic correlation for fitness in Drosophila melanogaster

机译:果蝇果蝇适应性遗传相关性的快速发展

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Sexual antagonism (SA) arises when male and female phenotypes are under opposing selection, yet genetically correlated. Until resolved, antagonism limits evolution toward optimal sex-specific phenotypes. Despite its importance for sex-specific adaptation and existing theory, the dynamics of SA resolution are not well understood empirically. Here, we present data from Drosophila melanogaster, compatible with a resolution of SA. We compared two independent replicates of the LHM population in which SA had previously been described. Both had been maintained under identical, controlled conditions, and separated for around 200 generations. Although heritabilities of male and female fitness were similar, the intersexual genetic correlation differed significantly, being negative in one replicate (indicating SA) but close to zero in the other. Using population sequencing, we show that phenotypic differences were associated with population divergence in allele frequencies at nonrandom loci across the genome. Large frequency changes were more prevalent in the population without SA and were enriched at loci mapping to genes previously shown to have sexually antagonistic relationships between expression and fitness. Our data suggest that rapid evolution toward SA resolution has occurred in one of the populations and open avenues toward studying the genetics of SA and its resolution.
机译:当男性和女性的表型处于相反的选择之下但与遗传相关时,就会产生性拮抗作用。在解决之前,拮抗作用限制了向最佳性别特异性表型的进化。尽管它对于针对性别的适应和现有理论很重要,但从经验上对SA分辨的动力学还知之甚少。在这里,我们提出了与果蝇的分辨率兼容的果蝇果蝇的数据。我们比较了先前描述过SA的LHM群体的两个独立重复。两者都保持在相同的受控条件下,并且分开了大约200代。尽管男性和女性健康的遗传力相似,但两性之间的遗传相关性却显着不同,其中一个重复为负(表明SA),而另一个则接近于零。使用群体测序,我们表明表型差异与基因组中非随机基因座的等位基因频率中的群体差异有关。在没有SA的人群中,较大的频率变化更为普遍,并且在基因座定位时富集到先前显示出在表达和适应性之间具有性拮抗关系的基因。我们的数据表明,其中一种种群已朝SA分解快速发展,并为研究SA的遗传学及其分解开辟了道路。

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