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量化 X 染色体、常染色体和线粒体基因组对局部适应的相对贡献。

Quantifying the relative contributions of the X chromosome, autosomes, and mitochondrial genome to local adaptation.

机构信息

School of Biological Sciences, Monash University, Clayton, Victoria, 3800, Australia.

出版信息

Evolution. 2019 Feb;73(2):262-277. doi: 10.1111/evo.13647. Epub 2018 Nov 26.

Abstract

During local adaptation with gene flow, some regions of the genome are inherently more responsive to selection than others. Recent theory predicts that X-linked genes should disproportionately contribute to local adaptation relative to other genomic regions, yet this prediction remains to be tested. We carried out a multigeneration crossing scheme, using two cline-end populations of Drosophila melanogaster, to estimate the relative contributions of the X chromosome, autosomes, and mitochondrial genome to divergence in four traits involved in local adaptation (wing size, resistance to heat, desiccation, and starvation stresses). We found that the mitochondrial genome and autosomes contributed significantly to clinal divergence in three of the four traits. In contrast, the X made no significant contribution to divergence in these traits. Given the small size of the mitochondrial genome, our results indicate that it plays a surprisingly large role in clinal adaptation. In contrast, the X, which represents roughly 20% of the Drosophila genome, contributes negligibly-a pattern that conflicts with theoretical predictions. These patterns reinforce recent work implying a central role of mitochondria in climatic adaptation, and suggest that different genomic regions may play fundamentally different roles in processes of divergence with gene flow.

摘要

在基因流的局部适应过程中,基因组的某些区域比其他区域更容易受到选择的影响。最近的理论预测,与其他基因组区域相比,X 连锁基因应该不成比例地为局部适应做出贡献,但这一预测仍有待检验。我们通过使用黑腹果蝇的两个渐变末端种群进行了多代杂交方案,以估计 X 染色体、常染色体和线粒体基因组对四个涉及局部适应的性状(翅膀大小、耐热性、抗干燥和抗饥饿应激)的分歧的相对贡献。我们发现,线粒体基因组和常染色体对四个性状中的三个性状的渐变分歧有显著贡献。相比之下,X 染色体对这些性状的分歧没有显著贡献。考虑到线粒体基因组的小尺寸,我们的结果表明它在渐变适应中起着惊人的大作用。相比之下,代表大约 20%的果蝇基因组的 X 染色体的贡献可以忽略不计,这与理论预测相冲突。这些模式强化了最近的研究,表明线粒体在气候适应中起着核心作用,并表明不同的基因组区域可能在具有基因流的分歧过程中发挥根本不同的作用。

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