Department of Ecology and Evolutionary Biology, Brown University, Providence, Rhode Island 02912, USA.
Evolution. 2010 Dec;64(12):3364-79. doi: 10.1111/j.1558-5646.2010.01077.x.
Efficient mitochondrial function requires physical interactions between the proteins encoded by the mitochondrial and nuclear genomes. Coevolution between these genomes may result in the accumulation of incompatibilities between divergent lineages. We test whether mitochondrial-nuclear incompatibilities have accumulated within the Drosophila melanogaster species subgroup by combining divergent mitochondrial and nuclear lineages and quantifying the effects on relative fitness. Precise placement of nine mtDNAs from D. melanogaster, D. simulans, and D. mauritiana into two D. melanogaster nuclear genetic backgrounds reveals significant mitochondrial-nuclear epistasis affecting fitness in females. Combining the mitochondrial genomes with three different D. melanogaster X chromosomes reveals significant epistasis for male fitness between X-linked and mitochondrial variation. However, we find no evidence that the more than 500 fixed differences between the mitochondrial genomes of D. melanogaster and the D. simulans species complex are incompatible with the D. melanogaster nuclear genome. Rather, the interactions of largest effect occur between mitochondrial and nuclear polymorphisms that segregate within species of the D. melanogaster species subgroup. We propose that a low mitochondrial substitution rate, resulting from a low mutation rate and/or efficient purifying selection, precludes the accumulation of mitochondrial-nuclear incompatibilities among these Drosophila species.
高效的线粒体功能需要线粒体和核基因组编码的蛋白质之间的物理相互作用。这些基因组之间的共同进化可能导致分歧谱系之间的不兼容性积累。我们通过组合不同的线粒体和核谱系,量化对相对适合度的影响,来检验线粒体-核不兼容性是否在黑腹果蝇种系亚群内积累。将来自黑腹果蝇、拟暗果蝇和毛里求斯果蝇的 9 个 mtDNA 精确放置到两个黑腹果蝇核遗传背景中,揭示了影响雌性适合度的显著线粒体-核上位性。将线粒体基因组与三个不同的黑腹果蝇 X 染色体相结合,揭示了 X 连锁和线粒体变异之间对雄性适合度的显著上位性。然而,我们没有发现证据表明,黑腹果蝇和拟暗果蝇种系复合体的线粒体基因组之间的 500 多个固定差异与黑腹果蝇核基因组不兼容。相反,相互作用最大的影响发生在种内分离的线粒体和核多态性之间。我们提出,由于突变率低和/或有效的纯化选择,导致线粒体的替代率低,从而排除了这些果蝇种之间线粒体-核不兼容性的积累。