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用于 Illumina 测序的 Precision ID Ancestry 和 Identity 面板文库的替代工作流程。

An alternate workflow for preparing Precision ID Ancestry and Identity Panel libraries for Illumina sequencing.

机构信息

College of Veterinary Medicine, Population Health and Pathobiology, North Carolina State University, 1060 William Moore Drive, Raleigh, NC, USA.

出版信息

Int J Legal Med. 2021 Sep;135(5):1717-1726. doi: 10.1007/s00414-021-02549-4. Epub 2021 Mar 4.

Abstract

Single nucleotide polymorphisms (SNPs) are well-established for forensic applications. Although they are not compatible with existing criminal databases, they offer some advantages over short tandem repeat (STR) markers including smaller amplicons, no stutter artifacts, and biogeographic ancestry and phenotype predictions. The Precision ID NGS System, a commercial workflow by Thermo Fisher Scientific, offers a streamlined solution for genotyping forensically relevant SNPs using next-generation sequencing. The Precision ID Ancestry and Identity Panels combined target 289 SNPs, and their sensitivity, reproducibility, and accuracy have been evaluated by the forensic community. The aim of this study was to develop an alternative workflow to genotype these SNP panels using Illumina chemistry. Commercial genomic DNAs (gDNAs) (n, 3) were amplified using three uracil-tolerant polymerase master mixes. Resulting amplicons were prepared into libraries using the KAPA Hyper Prep Kit (KAPA Biosystems) and sequenced via Illumina's MiniSeq. Reads were analyzed using a published analysis pipeline to compile final genotypes with read depth information. Phusion U Multiplex PCR Master Mix (Thermo Fisher Scientific) statistically outperformed the other master mixes tested (P <0.0001), with respect to the number of SNPs genotyped. To ensure a workflow using Phusion U would be compatible across diverse samples, we optimized PCR cycle number using the same commercial gDNAs (n, 3), reference buccal swabs (n, 3), and environmental (household dust) samples (n, 6). Using the developed workflow, 93.9% of all SNPs were successfully genotyped across sample types. Implementation of the developed workflow should be straightforward for forensic laboratories and suitable for processing reference and casework samples.

摘要

单核苷酸多态性(SNP)在法医学应用中已得到广泛证实。虽然它们与现有的犯罪数据库不兼容,但与短串联重复(STR)标记物相比,SNP 具有一些优势,包括更小的扩增子、无停顿伪影,以及生物地理起源和表型预测。Thermo Fisher Scientific 公司的 Precision ID NGS 系统是一种商业化的工作流程,为使用下一代测序技术对法医学相关 SNP 进行基因分型提供了一种简化的解决方案。Precision ID 祖先和身份面板结合靶向 289 个 SNP,其灵敏度、重现性和准确性已被法医学界评估。本研究旨在开发一种替代工作流程,使用 Illumina 化学方法对这些 SNP 面板进行基因分型。使用三种耐受尿嘧啶的聚合酶主混合物扩增商业基因组 DNA(gDNA)(n,3)。使用 KAPA Hyper Prep 试剂盒(KAPA Biosystems)将所得扩增子制备成文库,并通过 Illumina 的 MiniSeq 进行测序。使用已发表的分析管道分析读取结果,以编译具有读取深度信息的最终基因型。与测试的其他主混合物相比,Phusion U Multiplex PCR Master Mix(Thermo Fisher Scientific)在基因分型的 SNP 数量方面表现出统计学上的优势(P<0.0001)。为了确保使用 Phusion U 的工作流程在各种样本中兼容,我们使用相同的商业 gDNA(n,3)、参考口腔拭子(n,3)和环境(家庭灰尘)样本(n,6)优化了 PCR 循环数。使用开发的工作流程,在所有样本类型中,93.9%的 SNP 都成功进行了基因分型。开发的工作流程的实施对于法医实验室来说应该是简单直接的,并且适合处理参考和案例样本。

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