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Mitochondrial genome variation and the origin of modern humans.

机译:线粒体基因组变异与现代人类的起源。

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The analysis of mitochondrial DNA (mtDNA) has been a potent tool in our understanding of human evolution, owing to characteristics such as high copy number, apparent lack of recombination, high substitution rate and maternal mode of inheritance. However, almost all studies of human evolution based on mtDNA sequencing have been confined to the control region, which constitutes less than 7% of the mitochondrial genome. These studies are complicated by the extreme variation in substitution rate between sites, and the consequence of parallel mutations causing difficulties in the estimation of genetic distance and making phylogenetic inferences questionable. Most comprehensive studies of the human mitochondrial molecule have been carried out through restriction-fragment length polymorphism analysis, providing data that are ill suited to estimations of mutation rate and therefore the timing of evolutionary events. Here, to improve the information obtained from the mitochondrial molecule for studies of human evolution, we describe the global mtDNA diversity in humans based on analyses of the complete mtDNA sequence of 53 humans of diverse origins. Our mtDNA data, in comparison with those of a parallel study of the Xq13.3 region in the same individuals, provide a concurrent view on human evolution with respect to the age of modern humans.
机译:线粒体DNA(mtDNA)的分析由于其具有高拷贝数,明显缺乏重组,高取代率和母体遗传等特征,已成为我们了解人类进化的有效工具。但是,几乎所有基于mtDNA测序的人类进化研究都局限于控制区域,该区域不到线粒体基因组的7%。这些研究由于位点之间取代率的极端变化以及平行突变的结果而变得复杂,这些平行突变导致难以估计遗传距离并导致系统发生论据产生疑问。人类线粒体分子的最全面研究是通过限制性片段长度多态性分析进行的,所提供的数据不适用于突变率的估计,因此不适用于进化事件的发生时间。在这里,为了改善从线粒体分子获得的人类进化研究信息,我们基于对53个不同起源的人类的完整mtDNA序列的分析,描述了人类的全球mtDNA多样性。与对同一个体中Xq13.3区域的平行研究相比,我们的mtDNA数据提供了关于现代人类年龄的人类进化的并发观点。

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