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用于灾难遇难者身份识别、失踪人员调查及历史时期人类骨骼遗骸的改进型Y染色体短串联重复序列分型技术

Improved Y-STR typing for disaster victim identification, missing persons investigations, and historical human skeletal remains.

作者信息

Ambers Angie, Votrubova Jitka, Vanek Daniel, Sajantila Antti, Budowle Bruce

机构信息

Center for Human Identification, University of North Texas Health Science Center, Fort Worth, TX, USA.

Forensic DNA Service, Prague, Czech Republic.

出版信息

Int J Legal Med. 2018 Nov;132(6):1545-1553. doi: 10.1007/s00414-018-1794-8. Epub 2018 Feb 23.

Abstract

Bones are a valuable source of DNA in forensic, anthropological, and archaeological investigations. There are a number of scenarios in which the only samples available for testing are highly degraded and/or skeletonized. Often it is necessary to perform more than one type of marker analysis on such samples in order to compile sufficient data for identification. Lineage markers, such as Y-STRs and mitochondrial DNA (mtDNA), represent important systems to complement autosomal DNA markers and anthropological metadata in making associations between unidentified remains and living relatives or for characterization of the remains for historical and archaeological studies. In this comparative study, Y-STR typing with both Yfiler™ and Yfiler™ Plus (Thermo Fisher Scientific, Waltham, MA, USA) was performed on a variety of human skeletal remains, including samples from the American Civil War (1861-1865), the late nineteenth century gold rush era in Deadwood, SD, USA (1874-1877), the Seven Years' War (1756-1763), a seventeenth-century archaeological site in Raspenava, Bohemia (Czech Republic), and World War II (1939-1945). The skeletal remains used for this study were recovered from a wide range of environmental conditions and were extracted using several common methods. Regardless of the DNA extraction method used and the age/condition of the remains, 22 out of 24 bone samples yielded a greater number of alleles using the Yfiler™ Plus kit compared to the Yfiler™ kit using the same quantity of input DNA. There was no discernable correlation with the degradation index values for these samples. Overall, the efficacy of the Yfiler™ Plus assay was demonstrated on degraded DNA from skeletal remains. Yfiler™ Plus increases the discriminatory power over the previous generation multiplex due to the larger set of Y-STR markers available for analysis and buffer modifications with the newer version kit. Increased haplotype resolution is provided to infer or refute putative genetic relationships.

摘要

在法医、人类学和考古学调查中,骨骼是DNA的重要来源。在许多情况下,可供检测的唯一样本已高度降解和/或只剩骨架。通常,有必要对这些样本进行不止一种类型的标记分析,以便收集足够的数据进行身份鉴定。谱系标记,如Y染色体短串联重复序列(Y-STR)和线粒体DNA(mtDNA),是重要的系统,可补充常染色体DNA标记和人类学元数据,用于在身份不明的遗骸与在世亲属之间建立关联,或用于历史和考古研究中遗骸的特征描述。在这项比较研究中,使用Yfiler™和Yfiler™ Plus(美国马萨诸塞州沃尔瑟姆市赛默飞世尔科技公司)对各种人类骨骼遗骸进行Y-STR分型,这些遗骸包括来自美国内战(1861 - 1865年)、美国南达科他州戴德伍德19世纪后期淘金热时期(1874 - 1877年)、七年战争(1756 - 1763年)、捷克共和国波希米亚拉斯佩纳瓦的一个17世纪考古遗址以及第二次世界大战(1939 - 1945年)的样本。本研究使用的骨骼遗骸是从广泛的环境条件中回收的,并采用了几种常见方法进行提取。无论使用何种DNA提取方法以及遗骸的年代/状况如何,在使用相同数量输入DNA的情况下,与Yfiler™试剂盒相比,24个骨样本中有22个使用Yfiler™ Plus试剂盒产生了更多的等位基因。这些样本的降解指数值之间没有明显的相关性。总体而言,Yfiler™ Plus检测方法在骨骼遗骸降解DNA上的有效性得到了证明。由于可供分析的Y-STR标记集更大以及新版试剂盒的缓冲液改良,Yfiler™ Plus比上一代复合扩增试剂盒具有更高的鉴别能力。它提供了更高的单倍型分辨率,以推断或反驳假定的遗传关系。

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