首页> 外文期刊>BioEssays : >A 400,000-year-old mitochondrial genome questions phylogenetic relationships amongst archaic hominins Using the latest advances in ancient genomics, the mitochondrial genome sequence of a 400,000-year-old hominin has been deciphered
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A 400,000-year-old mitochondrial genome questions phylogenetic relationships amongst archaic hominins Using the latest advances in ancient genomics, the mitochondrial genome sequence of a 400,000-year-old hominin has been deciphered

机译:一个具有40万年历史的线粒体基因组质疑古人类基因组之间的亲缘关系利用古代基因组学的最新进展,已经破译了一个具有40万年历史的人粒体基因组的线粒体基因组序列

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摘要

By combining state-of-the-art approaches in ancient genomics, Meyer and co-workers have reconstructed the mitochondrial sequence of an archaic hominin that lived at Sierra de Atapuerca, Spain about 400,000 years ago. This achievement follows recent advances in molecular anthropology that delivered the genome sequence of younger archaic hominins, such as Neanderthals and Denisovans. Molecular phylogenetic reconstructions placed the Atapuercan as a sister group to Denisovans, although its morphology suggested closer affinities with Neanderthals. In addition to possibly challenging our interpretation of the fossil record, this study confirms that genomic information can be recovered from extremely damaged DNA molecules, even in the presence of significant levels of human contamination. Together with the recent characterization of a 700,000-year-old horse genome, this study opens the Middle Pleistocene to genomics, thereby extending the scope of ancient DNA to the last million years.
机译:通过结合古代基因组学的最新方法,Meyer和他的同事重建了大约40万年前生活在西班牙Sierra de Atapuerca的古人类的线粒体序列。这项成就是在分子人类学领域的最新进展之后完成的,该领域提供了年轻的古人类(如尼安德特人和丹尼索瓦人)的基因组序列。分子系统发育重建使Atapuercan成为Denisovans的姊妹群体,尽管它的形态表明与尼安德特人更亲密。除了可能挑战我们对化石记录的解释之外,这项研究还证实,即使存在大量人类污染,也可以从极度受损的DNA分子中恢复基因组信息。连同最近对一个具有700万年历史的马基因组的表征,这项研究使中更新世向基因组学开放,从而将古代DNA的范围扩展到了最后一百万年。

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