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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >An assessment of a massively parallel sequencing approach for the identification of individuals from mass graves of the Spanish Civil War (1936-1939)
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An assessment of a massively parallel sequencing approach for the identification of individuals from mass graves of the Spanish Civil War (1936-1939)

机译:对大规模平行测序方法的评估,该方法用于识别西班牙内战(1936-1939)万人冢中的个人

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摘要

Next-generation sequencing technologies have opened new opportunities in forensic genetics. Here, we assess the applicability and performance of the MiSeq FGx (TM) & ForenSeq (TM) DNA Signature Prep Kit (Illumina) for the identification of individuals from the mass graves of the Spanish Civil War (1936-1939). The main limitations for individual identification are the low number of possible first-degree living relatives and the high levels of DNA degradation reported in previous studies. Massively parallel sequencing technologies enabling the analysis of hundreds of regions and prioritizing short length amplicons constitute a promising tool for this kind of approaches. In this study, we first explore the power of this new technology to detect first-and second-degree kinship given different scenarios of DNA degradation. Second, we specifically assess its performance in a set of low DNA input samples previously analyzed with CE technologies. We conclude that this methodology will allow identification of up to second-degree relatives, even in situations with low sequencing performance and important levels of allele drop-out; it is thus a technology that resolves previous drawbacks and that will allow a successful approximation to the identification of remains.
机译:下一代测序技术为法医遗传学打开了新的机遇。在这里,我们评估了MiSeq FGx(TM)和ForenSeq(TM)DNA签名制备试剂盒(Illumina)在识别西班牙内战(1936-1939)万人冢中的个人时的适用性和性能。个体识别的主要限制是先前研究中报道的可能的一级直系亲属数量少和DNA降解水平高。大规模并行测序技术能够分析数百个区域并确定短长度扩增子的优先级,是此类方法的有前途的工具。在这项研究中,我们首先探讨了这种新技术在DNA降解的不同情况下检测一级和二级亲属关系的能力。其次,我们专门评估了先前使用CE技术分析过的一组低DNA输入样品的性能。我们得出的结论是,即使在测序性能低下和等位基因缺失的重要水平的情况下,这种方法仍可以鉴定出二级亲属。因此,该技术解决了先前的缺陷,并且可以成功地近似识别遗骸。

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