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Applications of Probe Capture Enrichment Next Generation Sequencing for Whole Mitochondrial Genome and 426 Nuclear SNPs for Forensically Challenging Samples

机译:探针捕获富集的应用全部线粒体基因组和426例核SNP的富集测序对本挑战性样品

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摘要

The application of next generation sequencing (NGS) for the analysis of mitochondrial (mt) DNA, short tandem repeats (STRs), and single nucleotide polymorphism (SNPs) has demonstrated great promise for challenging forensic specimens, such as degraded, limited, and mixed samples. Target enrichment using probe capture rather than PCR amplification offers advantages for analysis of degraded DNA since two intact PCR primer sites in the template DNA molecule are not required. Furthermore, NGS software programs can help remove PCR duplicates to determine initial template copy numbers of a shotgun library. Moreover, the same shotgun library prepared from a limited DNA source can be enriched for mtDNA as well as nuclear markers by hybrid capture with the relevant probe panels. Here, we demonstrate the use of this strategy in the analysis of limited and mock degraded samples using our custom probe capture panels for massively parallel sequencing of the whole mtgenome and 426 SNP markers. We also applied the mtgenome capture panel in a mixed sample and analyzed using both phylogenetic and variant frequency based bioinformatics tools to resolve the minor and major contributors. Finally, the results obtained on individual telogen hairs demonstrate the potential of probe capture NGS analysis for both mtDNA and nuclear SNPs for challenging forensic specimens.
机译:用于分析线粒体(MT)DNA,短串联重复(STR)和单核苷酸多态性(SNPS)的应用对挑战性,有限,有限和混合的挑战性,施用下一代测序(NGS)和单核苷酸多态性(SNP)的应用。样品。使用探针捕获而不是PCR扩增的靶向富集具有分析降解DNA的优点,因为不需要模板DNA分子中的两个完整的PCR引物位点。此外,NGS软件程序可以帮助删除PCR复制,以确定霰弹枪库的初始模板拷贝数。此外,通过用相关探针板的杂化捕获,可以富集由有限DNA源制备的相同的霰弹枪库,并通过杂化捕获来富集和核标志物。在这里,我们证明了使用我们的自定义探针捕获面板对有限的有限和模拟降解样品的策略的使用,用于全部Mtgenome和426个SNP标记的大规模平行测序。我们还将Mtgenome捕获面板施加在混合样品中并使用系统发育和变体频率的生物信息学工具进行分析,以解决次要的贡献者和主要贡献者。最后,在单个跨子毛上获得的结果证明了用于挑战法医标本的MTDNA和核SNP的探针捕获NGS分析。

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