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运用赛默飞世尔科技 Precision ID mtDNA 全基因组分析试剂盒对失踪人口 DNA 案件进行线粒体测序。

Mitochondrial Sequencing of Missing Persons DNA Casework by Implementing Thermo Fisher's Precision ID mtDNA Whole Genome Assay.

机构信息

California Department of Justice, Jan Bashinski DNA Laboratory, Richmond, CA 94804, USA.

出版信息

Genes (Basel). 2020 Nov 4;11(11):1303. doi: 10.3390/genes11111303.

Abstract

The advent of massively parallel sequencing (MPS) in the past decade has opened the doors to mitochondrial whole-genome sequencing. Mitochondrial (mt) DNA is used in forensics due to its high copy number per cell and maternal mode of inheritance. Consequently, we have implemented the Thermo Fisher Precision ID mtDNA Whole Genome panel coupled with the Ion Chef™ and Ion S5™ for MPS analysis in the California Department of Justice, Missing Persons DNA Program. Thirty-one mostly challenging samples (degraded, inhibited, low template, or mixed) were evaluated for this study. The majority of these samples generated single source full or partial genome sequences with MPS, providing information in cases where previously there was none. The quantitative and sensitive nature of MPS analysis was beneficial, but also led to detection of low-level contaminants. In addition, we found Precision ID to be more susceptible to inhibition than our legacy Sanger assay. Overall, the success rate (full single source hypervariable regions I and II (HVI/HVII) for Sanger and control region for MPS result) for these challenging samples increased from 32.3% with Sanger sequencing to 74.2% with the Precision ID assay. Considering the increase in success rate, the simple workflow and the higher discriminating potential of whole genome data, the Precision ID platform is a significant improvement for the CA Department of Justice Missing Persons DNA Program.

摘要

在过去的十年中,大规模平行测序(MPS)的出现为线粒体全基因组测序开辟了道路。由于线粒体(mt)DNA 每个细胞的拷贝数高且呈母系遗传,因此在法医学中使用 mtDNA。因此,我们在加利福尼亚州司法部失踪人员 DNA 项目中实施了 Thermo Fisher Precision ID mtDNA 全基因组面板与 Ion Chef™ 和 Ion S5™ 相结合的 MPS 分析。本研究评估了 31 个主要的具有挑战性的样本(降解、抑制、低模板或混合)。这些样本中的大多数都通过 MPS 生成了单一来源的完整或部分基因组序列,为之前没有信息的案例提供了信息。MPS 分析的定量和敏感性质是有益的,但也导致了低水平污染物的检测。此外,我们发现 Precision ID 比我们的传统 Sanger 测定法更容易受到抑制。总体而言,这些具有挑战性的样本的成功率(Sanger 测序的单源超可变区 I 和 II(HVI/HVII)和 MPS 结果的控制区)从 Sanger 测序的 32.3%增加到 Precision ID 测定法的 74.2%。考虑到成功率的提高、简单的工作流程以及全基因组数据更高的鉴别潜力,Precision ID 平台是加利福尼亚州司法部失踪人员 DNA 项目的重大改进。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/119f/7692767/90b9371a2dab/genes-11-01303-g001.jpg

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