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Mitochondrial–Nuclear Epistasis Impacts Fitness and Mitochondrial Physiology of Interpopulation Caenorhabditis briggsae Hybrids

机译:线粒体-核上皮的影响影响种群间Caenorhabditis briggsae杂种的适应性和线粒体生理。

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摘要

In order to identify the earliest genetic changes that precipitate species formation, it is useful to study genetic incompatibilities that cause only mild dysfunction when incompatible alleles are combined in an interpopulation hybrid. Such hybridization within the nematode species Caenorhabditis briggsae has been suggested to result in selection against certain combinations of nuclear and mitochondrial alleles, raising the possibility that mitochondrial–nuclear (mitonuclear) epistasis reduces hybrid fitness. To test this hypothesis, cytoplasmic–nuclear hybrids (cybrids) were created to purposefully disrupt any epistatic interactions. Experimental analysis of the cybrids suggests that mitonuclear discord can result in decreased fecundity, increased lipid content, and increased mitochondrial reactive oxygen species levels. Many of these effects were asymmetric with respect to cross direction, as expected if cytoplasmic–nuclear Dobzhansky-Muller incompatibilities exist. One such effect is consistent with the interpretation that disrupting coevolved mitochondrial and nuclear loci impacts mitochondrial function and organismal fitness. These findings enhance efforts to study the genesis, identity, and maintenance of genetic incompatibilities that precipitate the speciation process.
机译:为了识别导致物种形成的最早的遗传变化,研究遗传不相容性是很有用的,当不相容的等位基因在群体间杂种中结合时,遗传不相容性仅导致轻度的功能障碍。有人建议在线虫Caenorhabditis briggsae中进行这种杂交,以针对某些核和线粒体等位基因组合进行选择,从而增加了线粒体-核(线粒体)上位性降低杂种适应性的可能性。为了检验这一假设,创建了细胞质-核杂交体(杂种)以有意破坏任何上位性相互作用。赛义德族的实验分析表明,单核不和谐会导致繁殖力下降,脂质含量增加和线粒体活性氧水平升高。如果存在细胞质-核Dobzhansky-Muller不相容性,则预期这些效应中的许多在横向上是不对称的。这种作用之一与以下解释一致:破坏共同进化的线粒体和核基因座会影响线粒体功能和机体适应性。这些发现增加了研究导致物种形成过程的遗传不相容性的起源,特性和维持的努力。

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