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An efficient pipeline for ancient DNA mapping and recovery of endogenous ancient DNA from whole‐genome sequencing data

机译:来自全基因组测序数据的古代DNA测绘和恢复内源性古代DNA的有效管道

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摘要

Ancient DNA research has developed rapidly over the past few decades due to improvements in PCR and next‐generation sequencing (NGS) technologies, but challenges still exist. One major challenge in relation to ancient DNA research is to recover genuine endogenous ancient DNA sequences from raw sequencing data. This is often difficult due to degradation of ancient DNA and high levels of contamination, especially homologous contamination that has extremely similar genetic background with that of the real ancient DNA. In this study, we collected whole‐genome sequencing (WGS) data from 6 ancient samples to compare different mapping algorithms. To further explore more effective methods to separate endogenous DNA from homologous contaminations, we attempted to recover reads based on ancient DNA specific characteristics of deamination, depurination, and DNA fragmentation with different parameters. We propose a quick and improved pipeline for separating endogenous ancient DNA while simultaneously decreasing homologous contaminations to very low proportions. Our goal in this research was to develop useful recommendations for ancient DNA mapping and for separation of endogenous DNA to facilitate future studies of ancient DNA.
机译:由于PCR和下一代测序(NGS)技术的改善,古代DNA研究在过去的几十年中迅速发展,但仍存在挑战。与古代DNA研究有关的一个主要挑战是从原始测序数据恢复真正内源性古代DNA序列。由于古代DNA的降解和高水平的污染,特别是同源污染,这通常是困难的,这具有极其类似的遗传背景,具有真正的古代DNA。在这项研究中,我们从6个古代样本中收集了全基因组测序(WGS)数据来比较不同的映射算法。为了进一步探索从同源污染中分离内源性DNA的更有效的方法,我们试图根据具有不同参数的古代DNA特异性的古代DNA特异性特征来恢复读数。我们提出了一种快速和改进的管道,用于分离内源性古代DNA,同时同时将同源污染降低到非常低的比例。我们在这项研究中的目标是为古代DNA定位制定有用的建议,并分离内源性DNA,以促进古代DNA的未来研究。

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