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Evolutionary dynamics of cytoplasmic segregation and fusion: Mitochondrial mixing facilitated the evolution of sex at the origin of eukaryotes

机译:细胞质分离和融合的进化动力学:线粒体混合促进了真核生物起源性的进化

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Sexual reproduction is a trait shared by all complex life, but the complete account of its origin is missing. Virtually all theoretical work on the evolution of sex has been centered around the benefits of reciprocal recombination among nuclear genes, paying little attention to the evolutionary dynamics of multi-copy mitochondrial genomes. Here I develop a mathematical model to study the evolution of nuclear alleles inducing cell fusion in an ancestral population of clonal proto-eukaryotes. Segregational drift maintains high mitochondrial variance between clonally reproducing hosts, but the effect of segregation is opposed by cytoplasmic mixing which tends to reduce variation between cells in favor of higher heterogeneity within the cell. Despite the reduced long-term population fitness, alleles responsible for sexual cell fusion can spread to fixation. The evolution of sex requires negative epistatic interactions between mitochondrial mutations under strong purifying selection, low mutation load and weak mitochondrial-nuclear associations. I argue that similar conditions could have been maintained during the late stages of eukaryogenesis, facilitating the evolution of sexual cell fusion and meiotic recombination without compromising the stability of the emerging complex cell. (C) 2016 The Authors. Published by Elsevier Ltd. This is an open access article under the CC BY license.
机译:有性生殖是所有复杂生活共有的一个特征,但其起源的完整描述却缺失了。几乎所有有关性进化的理论研究都集中在核基因相互交换的好处上,很少关注多拷贝线粒体基因组的进化动力学。在这里,我建立了一个数学模型来研究在祖先的克隆原核生物群体中核等位基因诱导细胞融合的演变。分离漂移在克隆繁殖宿主之间维持高的线粒体变异性,但是分离的作用与细胞质混合相反,其倾向于减少细胞之间的变异,有利于细胞内更高的异质性。尽管长期人群适应性降低,但负责性细胞融合的等位基因仍会扩散到固定部位。性别的进化要求线粒体突变在强纯化选择,低突变负荷和弱线粒体-核缔合下负上位相互作用。我认为在真核生物的晚期阶段可以维持相似的条件,从而促进性细胞融合和减数分裂重组的进化,而不会损害新出现的复杂细胞的稳定性。 (C)2016作者。由Elsevier Ltd.发行。这是CC BY许可下的开放访问文章。

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