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采用小扩增子对 17 个常用法医常染色体 STR 和 amelogenin 进行大规模平行测序。

Massively parallel sequencing of 17 commonly used forensic autosomal STRs and amelogenin with small amplicons.

机构信息

Brain Korea 21 PLUS Project for Medical Science, Yonsei University, 50-1 Yonsei-ro, Seodaemun-gu, Seoul 120-752, South Korea; Department of Forensic Medicine, Yonsei University College of Medicine, 50-1 Yonsei-ro, Seodaemun-gu, Seoul 120-752, South Korea.

Department of Forensic Medicine, Yonsei University College of Medicine, 50-1 Yonsei-ro, Seodaemun-gu, Seoul 120-752, South Korea.

出版信息

Forensic Sci Int Genet. 2016 May;22:1-7. doi: 10.1016/j.fsigen.2016.01.001. Epub 2016 Jan 8.

Abstract

The next-generation sequencing (NGS) method has been utilized to analyze short tandem repeat (STR) markers, which are routinely used for human identification purposes in the forensic field. Some researchers have demonstrated the successful application of the NGS system to STR typing, suggesting that NGS technology may be an alternative or additional method to overcome limitations of capillary electrophoresis (CE)-based STR profiling. However, there has been no available multiplex PCR system that is optimized for NGS analysis of forensic STR markers. Thus, we constructed a multiplex PCR system for the NGS analysis of 18 markers (13CODIS STRs, D2S1338, D19S433, Penta D, Penta E and amelogenin) by designing amplicons in the size range of 77-210 base pairs. Then, PCR products were generated from two single-sources, mixed samples and artificially degraded DNA samples using a multiplex PCR system, and were prepared for sequencing on the MiSeq system through construction of a subsequent barcoded library. By performing NGS and analyzing the data, we confirmed that the resultant STR genotypes were consistent with those of CE-based typing. Moreover, sequence variations were detected in targeted STR regions. Through the use of small-sized amplicons, the developed multiplex PCR system enables researchers to obtain successful STR profiles even from artificially degraded DNA as well as STR loci which are analyzed with large-sized amplicons in the CE-based commercial kits. In addition, successful profiles can be obtained from mixtures up to a 1:19 ratio. Consequently, the developed multiplex PCR system, which produces small size amplicons, can be successfully applied to STR NGS analysis of forensic casework samples such as mixtures and degraded DNA samples.

摘要

下一代测序(NGS)方法已被用于分析短串联重复序列(STR)标记物,这些标记物通常用于法医领域的人类识别。一些研究人员已经证明了 NGS 系统在 STR 分型中的成功应用,表明 NGS 技术可能是克服毛细管电泳(CE)STR 分析局限性的替代或附加方法。然而,目前还没有经过优化适用于法医 STR 标记物 NGS 分析的多重 PCR 系统。因此,我们构建了一种用于 NGS 分析的多重 PCR 系统,该系统可对 18 个标记物(13CODIS STR、D2S1338、D19S433、Penta D、Penta E 和 amelogenin)进行分析,所设计的扩增子大小范围为 77-210 个碱基对。然后,使用多重 PCR 系统从两个单源、混合样本和人工降解的 DNA 样本中生成 PCR 产物,并通过构建后续带有条形码的文库,在 MiSeq 系统上进行测序准备。通过进行 NGS 并分析数据,我们确认所得 STR 基因型与基于 CE 的分型一致。此外,还在靶向 STR 区域检测到序列变异。通过使用小尺寸的扩增子,开发的多重 PCR 系统使得研究人员能够从人工降解的 DNA 以及 CE 商业试剂盒中分析的大尺寸扩增子的 STR 基因座获得成功的 STR 图谱。此外,还可以从比例高达 1:19 的混合物中获得成功的图谱。因此,该方法产生的小尺寸扩增子可以成功应用于混合和降解 DNA 样本等法医案例样本的 STR NGS 分析。

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