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线粒体DNA的选择性清除可推动单亲遗传的进化。

Selective sweeps of mitochondrial DNA can drive the evolution of uniparental inheritance.

作者信息

Christie Joshua R, Beekman Madeleine

机构信息

School of Life and Environmental Sciences, The University of Sydney, Sydney, NSW, 2006, Australia.

Department of Evolutionary Biology and Environmental Studies, University of Zurich, Zurich, 8057, Switzerland.

出版信息

Evolution. 2017 Aug;71(8):2090-2099. doi: 10.1111/evo.13291. Epub 2017 Aug 1.

DOI:10.1111/evo.13291
PMID:28640391
Abstract

Although the uniparental (or maternal) inheritance of mitochondrial DNA (mtDNA) is widespread, the reasons for its evolution remain unclear. Two main hypotheses have been proposed: selection against individuals containing different mtDNAs (heteroplasmy) and selection against "selfish" mtDNA mutations. Recently, uniparental inheritance was shown to promote adaptive evolution in mtDNA, potentially providing a third hypothesis for its evolution. Here, we explore this hypothesis theoretically and ask if the accumulation of beneficial mutations provides a sufficient fitness advantage for uniparental inheritance to invade a population in which mtDNA is inherited biparentally. In a deterministic model, uniparental inheritance increases in frequency but cannot replace biparental inheritance if only a single beneficial mtDNA mutation sweeps through the population. When we allow successive selective sweeps of mtDNA, however, uniparental inheritance can replace biparental inheritance. Using a stochastic model, we show that a combination of selection and drift facilitates the fixation of uniparental inheritance (compared to a neutral trait) when there is only a single selective mtDNA sweep. When we consider multiple mtDNA sweeps in a stochastic model, uniparental inheritance becomes even more likely to replace biparental inheritance. Our findings thus suggest that selective sweeps of beneficial mtDNA haplotypes can drive the evolution of uniparental inheritance.

摘要

尽管线粒体DNA(mtDNA)的单亲(或母系)遗传很普遍,但其进化的原因仍不清楚。已经提出了两种主要假说:对含有不同mtDNA的个体(异质性)进行选择,以及对“自私”的mtDNA突变进行选择。最近,单亲遗传被证明能促进mtDNA的适应性进化,这可能为其进化提供了第三种假说。在这里,我们从理论上探讨这一假说,并询问有益突变的积累是否为单亲遗传提供了足够的适应性优势,使其能够侵入一个mtDNA进行双亲遗传的种群。在一个确定性模型中,如果只有一个有益的mtDNA突变席卷整个种群,单亲遗传的频率会增加,但无法取代双亲遗传。然而,当我们允许mtDNA连续进行选择性清除时,单亲遗传可以取代双亲遗传。使用一个随机模型,我们表明,当只有一次选择性的mtDNA清除时,选择和漂变的结合有助于单亲遗传的固定(与中性性状相比)。当我们在随机模型中考虑多次mtDNA清除时,单亲遗传更有可能取代双亲遗传。因此,我们的研究结果表明,有益mtDNA单倍型的选择性清除可以推动单亲遗传的进化。

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