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The Potential Role of Sexual Conflict and Sexual Selection in Shaping the Genomic Distribution of Mito-nuclear Genes

机译:性冲突和性选择在塑造线粒体核基因的基因组分布中的潜在作用

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摘要

Mitochondrial interactions with the nuclear genome represent one of life’s most important co-evolved mutualisms. In many organisms, mitochondria are maternally inherited, and in these cases, co-transmission between the mitochondrial and nuclear genes differs across different parts of the nuclear genome, with genes on the X chromosome having two-third probability of co-transmission, compared with one-half for genes on autosomes. These asymmetrical inheritance patterns of mitochondria and different parts of the nuclear genome have the potential to put certain gene combinations in inter-genomic co-adaptation or conflict. Previous work in mammals found strong evidence that the X chromosome has a dearth of genes that interact with the mitochondria (mito-nuclear genes), suggesting that inter-genomic conflict might drive genes off the X onto the autosomes for their male-beneficial effects. Here, we developed this idea to test coadaptation and conflict between mito-nuclear gene combinations across phylogenetically independent sex chromosomes on a far broader scale. We found that, in addition to therian mammals, only Caenorhabditis elegans showed an under-representation of mito-nuclear genes on the sex chromosomes. The remaining species studied showed no overall bias in their distribution of mito-nuclear genes. We discuss possible factors other than inter-genomic conflict that might drive the genomic distribution of mito-nuclear genes.
机译:线粒体与核基因组的相互作用代表了生命中最重要的共同进化的共生之一。在许多生物中,线粒体是母系遗传的,在这种情况下,线粒体和核基因之间的共传递在核基因组的不同部分上是不同的,与之相比,X染色体上的基因具有三分之二的共传递概率。常染色体上基因的一半。线粒体和核基因组不同部分的这些不对称遗传模式有可能将某些基因组合置于基因组间的共同适应或冲突中。先前在哺乳动物中的研究发现,有力的证据表明X染色体缺乏与线粒体(线粒体核基因)相互作用的基因,这表明基因组间的冲突可能会将X基因移出常染色体,以发挥其男性有益作用。在这里,我们提出了这个想法,以更广泛的规模测试跨系统发育独立性染色体的线粒体-核基因组合之间的共适应和冲突。我们发现,除了哺乳动物以外,仅秀丽隐杆线虫在性染色体上显示出线粒体核基因的不足。研究的其余物种在线粒体-核基因的分布中没有显示出总体偏见。我们讨论了基因组间冲突以外的其他可能驱动线粒体核基因基因组分布的因素。

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