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Deep Divergences of Human Gene Trees and Models of Human Origins

机译:人类基因树和人类起源模型的深层分歧

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Two competing hypotheses are at the forefront of the debate on modern human origins. In the first scenario, known as the recent Out-of-Africa hypothesis, modern humans arose in Africa about 100,000–200,000 years ago and spread throughout the world by replacing the local archaic human populations. By contrast, the second hypothesis posits substantial gene flow between archaic and emerging modern humans. In the last two decades, the young time estimates—between 100,000 and 200,000 years—of the most recent common ancestors for the mitochondrion and the Y chromosome provided evidence in favor of a recent African origin of modern humans. However, the presence of very old lineages for autosomal and X-linked genes has often been claimed to be incompatible with a simple, single origin of modern humans. Through the analysis of a public DNA sequence database, we find, similar to previous estimates, that the common ancestors of autosomal and X-linked genes are indeed very old, living, on average, respectively, 1,500,000 and 1,000,000 years ago. However, contrary to previous conclusions, we find that these deep gene genealogies are consistent with the Out-of-Africa scenario provided that the ancestral effective population size was approximately 14,000 individuals. We show that an ancient bottleneck in the Middle Pleistocene, possibly arising from an ancestral structured population, can reconcile the contradictory findings from the mitochondrion on the one hand, with the autosomes and the X chromosome on the other hand.
机译:在有关现代人类起源的辩论中,有两个相互对立的假设。在第一种情况下,被称为最近的非洲外假设,现代人类大约在100,000-200,000年前出现在非洲,并通过取代当地的古人类而散布到世界各地。相比之下,第二种假设则假定了古代人与新兴现代人之间的大量基因流动。在过去的二十年中,线粒体和Y染色体的最新共同祖先的年轻时间估计(介于100,000和200,000年之间)提供了支持现代人类起源于非洲的证据。但是,常染色体和X连锁基因非常古老的血统经常被认为与现代人类的简单,单一起源不相容。通过对公共DNA序列数据库的分析,我们发现,与以前的估计相似,常染色体和X连锁基因的共同祖先确实很老,平均寿命分别为1,500,000和1,000,000年前。但是,与先前的结论相反,我们发现,如果祖先的有效人口规模约为14,000个个体,则这些深层基因谱系与非洲以外的情况相符。我们表明中更新世的一个古老瓶颈,可能是由祖先的结构化种群引起的,一方面可以协调线粒体的矛盾发现,另一方面可以与常染色体和X染色体相协调。

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