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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Mitonuclear interactions: evolutionary consequences over multiple biological scales
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Mitonuclear interactions: evolutionary consequences over multiple biological scales

机译:微核相互作用:多种生物学规模的进化结果。

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Fundamental biological processes hinge on coordinated interactions between genes spanning two obligate genomes--mitochondrial and nuclear. These interactions are key to complex life, and allelic variation that accumulates and persists at the loci embroiled in such intergenomic interactions should therefore be subjected to intense selection to maintain integrity of the mitochondrial electron transport system. Here, we compile evidence that suggests that mitochond rial-nuclear (mitonuclear) allelic interactions are evolutionarily significant modulators of the expression of key health-related and life-history phenotypes, across several biological scales--within species (intra-and interpopulational) and between species. We then introduce a new frontier for the study of mitonuclear interactions--those that occur within individuals, and are fuelled by the mtDNA heteroplasmy and the existence of nuclear-encoded mitochondrial gene duplicates and isoforms. Empirical evidence supports the idea of high-resolution tissue- and environment-specific modulation of intraindividual mitonuclear interactions. Predicting the penetrance, severity and expression patterns of mtDNA-induced mitochondrial diseases remains a conundrum. We contend that a deeper understanding of the dynamics and ramifications of mitonuclear interactions, across all biological levels, will provide key insights that tangibly advance our understanding, not only of core evolutionary processes, but also of the complex genetics underlying human mitochondrial disease.
机译:基本生物学过程取决于跨越两个专性基因组(线粒体和核基因)的基因之间的协调相互作用。这些相互作用是复杂生活的关键,因此,积累并持续存在于这种基因组相互作用中的基因座处的等位基因变异应经过严格的选择,以保持线粒体电子传输系统的完整性。在这里,我们收集了证据,表明线粒体-核(线粒体)等位基因相互作用是关键的健康相关表型和生活史表型在几种生物学规模内(物种内和种群内和种群之间)的进化显着调节剂。物种之间。然后,我们介绍了研究线粒体相互作用的新领域-发生在个体内部的,由mtDNA异质性以及核编码的线粒体基因重复和同工型的存在推动的那些领域。经验证据支持高分辨率的特定于组织和环境的单细胞单核相互作用的调节。预测mtDNA诱导的线粒体疾病的渗透性,严重性和表达方式仍然是一个难题。我们认为,对所有生物学水平的线粒体相互作用的动力学和后果的更深入了解,将提供重要的见识,切实促进我们的理解,不仅是对核心进化过程的理解,而且也是对人类线粒体疾病基础的复杂遗传学的理解。

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