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基于PCR的短扩增子全线粒体基因组panel的MPS工作流程的发育验证

Developmental Validation of a MPS Workflow with a PCR-Based Short Amplicon Whole Mitochondrial Genome Panel.

作者信息

Cihlar Jennifer Churchill, Amory Christina, Lagacé Robert, Roth Chantal, Parson Walther, Budowle Bruce

机构信息

Center for Human Identification, University of North Texas Health Science Center, 3500 Camp Bowie Boulevard, Fort Worth, TX 76107, USA.

Department of Microbiology, Immunology and Genetics, University of North Texas Health Science Center, 3500 Camp Bowie Boulevard, Fort Worth, TX 76107, USA.

出版信息

Genes (Basel). 2020 Nov 13;11(11):1345. doi: 10.3390/genes11111345.

Abstract

For the adoption of massively parallel sequencing (MPS) systems by forensic laboratories, validation studies on specific workflows are needed to support the feasibility of implementation and the reliability of the data they produce. As such, the whole mitochondrial genome sequencing methodology-Precision ID mtDNA Whole Genome Panel, Ion Chef, Ion S5, and Converge-has been subjected to a variety of developmental validation studies. These validation studies were completed in accordance with the Scientific Working Group on DNA Analysis Methods (SWGDAM) validation guidelines and assessed reproducibility, repeatability, accuracy, sensitivity, specificity to human DNA, and ability to analyze challenging (e.g., mixed, degraded, or low quantity) samples. Intra- and inter-run replicates produced an average maximum pairwise difference in variant frequency of 1.2%. Concordance with data generated with traditional Sanger sequencing and an orthogonal MPS platform methodology was used to assess accuracy, and generation of complete and concordant haplotypes at DNA input levels as low as 37.5 pg of nuclear DNA or 187.5 mitochondrial genome copies illustrated the sensitivity of the system. Overall, data presented herein demonstrate that highly accurate and reproducible results were generated for a variety of sample qualities and quantities, supporting the reliability of this specific whole genome mitochondrial DNA MPS system for analysis of forensic biological evidence.

摘要

为了让法医实验室采用大规模平行测序(MPS)系统,需要针对特定工作流程开展验证研究,以支持实施的可行性及其所产生数据的可靠性。因此,全线粒体基因组测序方法——Precision ID mtDNA全基因组分析试剂盒、Ion Chef、Ion S5和Converge——已经经历了各种开发验证研究。这些验证研究是根据DNA分析方法科学工作组(SWGDAM)的验证指南完成的,评估了可重复性、重复性、准确性、灵敏度、对人类DNA的特异性以及分析具有挑战性的(如混合、降解或低量)样本的能力。批内和批间重复样本在变异频率上的平均最大成对差异为1.2%。通过与传统桑格测序法和正交MPS平台方法生成的数据进行比对来评估准确性,并且在低至37.5 pg核DNA或187.5个线粒体基因组拷贝的DNA输入水平下生成完整且一致的单倍型,证明了该系统的灵敏度。总体而言,本文提供的数据表明,对于各种质量和数量的样本,均能产生高度准确且可重复的结果,支持了这种特定的全基因组线粒体DNA MPS系统用于法医生物学证据分析的可靠性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a983/7709034/ea7fd59cebf8/genes-11-01345-g001.jpg

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