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The future of ancient DNA: Technical advances and conceptual shifts

机译:古代DNA的未来:技术进步和概念转变

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Technological innovations such as next generation sequencing and DNA hybridisation enrichment have resulted in multi-fold increases in both the quantity of ancient DNA sequence data and the time depth for DNA retrieval. To date, over 30 ancient genomes have been sequenced, moving from 0.7x coverage (mammoth) in 2008 to more than 50x coverage (Neanderthal) in 2014. Studies of rapid evolutionary changes, such as the evolution and spread of pathogens and the genetic responses of hosts, or the genetics of domestication and climatic adaptation, are developing swiftly and the importance of palaeogenomics for investigating evolutionary processes during the last million years is likely to increase considerably. However, these new datasets require new methods of data processing and analysis, as well as conceptual changes in interpreting the results. In this review we highlight important areas of future technical and conceptual progress and discuss research topics in the rapidly growing field of palaeogenomics.
机译:诸如下一代测序和DNA杂交富集等技术创新已使古代DNA序列数据的数量和DNA检索的时间深度都成倍增加。迄今为止,已经测序了30多个古代基因组,从2008年的0.7倍覆盖率(猛mm)到2014年的50倍覆盖率(尼安德特人)。快速进化变化的研究,例如病原体的进化和传播以及遗传反应。宿主,或驯化和气候适应的遗传学,正在迅速发展,在过去的一百万年中,古基因组学在研究进化过程中的重要性可能会大大提高。但是,这些新的数据集需要新的数据处理和分析方法,以及解释结果的概念上的变化。在这篇综述中,我们重点介绍了未来技术和概念进展的重要领域,并讨论了快速发展的古基因组学领域的研究主题。

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