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Ancient DNA

机译:安士丁

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摘要

In the past two decades, ancient DNA research has progressed from the retrieval of small fragments of mitochondrial DNA from a few late Holocene specimens, to large-scale studies of ancient populations, phenotypically important nuclear loci, and even whole mitochondrial genome sequences of extinct species. However, the field is still regularly marred by erroneous reports, which underestimate the extent of contamination within laboratories and samples themselves. An improved understanding of these processes and the effects of damage on ancient DNA templates has started to provide a more robust basis for research. Recent methodological advances have included the characterization of Pleistocene mammal populations and discoveries of DNA preserved in ancient sediments. Increasingly, ancient genetic information is providing a unique means to test assumptions used in evolutionary and population genetics studies to reconstruct the past. Initial results have revealed surprisingly complex population histories, and indicate that modem phylogeographic studies may give misleading impressions about even the recent evolutionary past. With the advent and uptake of appropriate methodologies, ancient DNA is now positioned to become a powerful tool in biological research and is also evolving new and unexpected uses, such as in the search for extinct or extant life in the deep biosphere and on other planets.
机译:在过去的二十年中,古代DNA的研究已经从从几个全新世晚期标本中提取线粒体DNA的小片段发展到了对古代种群,表型上重要的核基因座甚至灭绝物种的整个线粒体基因组序列的大规模研究。 。但是,该领域仍然经常受到错误报告的破坏,这些报告低估了实验室和样品本身的污染程度。对这些过程以及损伤对古代DNA模板的影响的加深了解已开始为研究提供更坚实的基础。最近的方法学进展包括更新世哺乳动物种群的表征和发现古代沉积物中保存的DNA的发现。古代的遗传信息越来越多地提供一种独特的手段来检验在进化和种群遗传学研究中用来重建过去的假设。初步结果揭示了令人惊讶的复杂人口历史,并表明现代系统地理学研究甚至可能对近期的进化历史产生误导性印象。随着适当方法的出现和采用,古老的DNA现在已定位成为生物学研究中的有力工具,并且也在发展新的和出乎意料的用途,例如在深层生物圈和其他星球上寻找灭绝或现存的生命。

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