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AQME:一种用于下一代测序数据的法医线粒体DNA分析工具。

AQME: A forensic mitochondrial DNA analysis tool for next-generation sequencing data.

作者信息

Sturk-Andreaggi Kimberly, Peck Michelle A, Boysen Cecilie, Dekker Patrick, McMahon Timothy P, Marshall Charla K

机构信息

Armed Forces DNA Identification Laboratory, A Division of the Armed Forces Medical Examiner System, 115 Purple Heart Drive, Dover AFB, DE 19902, United States; ARP Sciences, LLC, Contractor Supporting the Armed Forces Medical Examiner System, 9210 Corporate Boulevard, Suite 120, Rockville, MD 20850, United States.

Armed Forces DNA Identification Laboratory, A Division of the Armed Forces Medical Examiner System, 115 Purple Heart Drive, Dover AFB, DE 19902, United States; ARP Sciences, LLC, Contractor Supporting the Armed Forces Medical Examiner System, 9210 Corporate Boulevard, Suite 120, Rockville, MD 20850, United States.

出版信息

Forensic Sci Int Genet. 2017 Nov;31:189-197. doi: 10.1016/j.fsigen.2017.09.010. Epub 2017 Sep 19.

Abstract

The feasibility of generating mitochondrial DNA (mtDNA) data has expanded considerably with the advent of next-generation sequencing (NGS), specifically in the generation of entire mtDNA genome (mitogenome) sequences. However, the analysis of these data has emerged as the greatest challenge to implementation in forensics. To address this need, a custom toolkit for use in the CLC Genomics Workbench (QIAGEN, Hilden, Germany) was developed through a collaborative effort between the Armed Forces Medical Examiner System - Armed Forces DNA Identification Laboratory (AFMES-AFDIL) and QIAGEN Bioinformatics. The AFDIL-QIAGEN mtDNA Expert, or AQME, generates an editable mtDNA profile that employs forensic conventions and includes the interpretation range required for mtDNA data reporting. AQME also integrates an mtDNA haplogroup estimate into the analysis workflow, which provides the analyst with phylogenetic nomenclature guidance and a profile quality check without the use of an external tool. Supplemental AQME outputs such as nucleotide-per-position metrics, configurable export files, and an audit trail are produced to assist the analyst during review. AQME is applied to standard CLC outputs and thus can be incorporated into any mtDNA bioinformatics pipeline within CLC regardless of sample type, library preparation or NGS platform. An evaluation of AQME was performed to demonstrate its functionality and reliability for the analysis of mitogenome NGS data. The study analyzed Illumina mitogenome data from 21 samples (including associated controls) of varying quality and sample preparations with the AQME toolkit. A total of 211 tool edits were automatically applied to 130 of the 698 total variants reported in an effort to adhere to forensic nomenclature. Although additional manual edits were required for three samples, supplemental tools such as mtDNA haplogroup estimation assisted in identifying and guiding these necessary modifications to the AQME-generated profile. Along with profile generation, AQME reported accurate haplogroups for 18 of the 19 samples analyzed. The single errant haplogroup assignment, although phylogenetically close, identified a bug that only affects partial mitogenome data. Future adjustments to AQME's haplogrouping tool will address this bug as well as enhance the overall scoring strategy to better refine and automate haplogroup assignments. As NGS enables broader use of the mtDNA locus in forensics, the availability of AQME and other forensic-focused mtDNA analysis tools will ease the transition and further support mitogenome analysis within routine casework. Toward this end, the AFMES-AFDIL has utilized the AQME toolbox in conjunction with the CLC Genomics Workbench to successfully validate and implement two NGS mitogenome methods.

摘要

随着下一代测序(NGS)技术的出现,生成线粒体DNA(mtDNA)数据的可行性已大幅提高,特别是在生成完整的mtDNA基因组(线粒体基因组)序列方面。然而,这些数据的分析已成为法医应用中的最大挑战。为满足这一需求,武装部队法医系统-武装部队DNA鉴定实验室(AFMES-AFDIL)与QIAGEN生物信息学部门合作,开发了一个用于CLC基因组学工作台(QIAGEN,德国希尔德)的定制工具包。AFDIL-QIAGEN mtDNA专家工具(AQME)生成一个可编辑的mtDNA图谱,该图谱采用法医惯例,并包括mtDNA数据报告所需的解释范围。AQME还将mtDNA单倍群估计整合到分析工作流程中,为分析人员提供系统发育命名指导和图谱质量检查,而无需使用外部工具。还会生成补充性的AQME输出,如逐位置核苷酸指标、可配置的导出文件和审计跟踪,以协助分析人员进行审核。AQME应用于标准的CLC输出,因此可以纳入CLC内的任何mtDNA生物信息学流程,无论样本类型、文库制备或NGS平台如何。对AQME进行了评估,以证明其在分析线粒体基因组NGS数据方面的功能和可靠性。该研究使用AQME工具包分析了来自21个质量和样本制备各异的样本(包括相关对照)的Illumina线粒体基因组数据。为了遵循法医命名法,共对报告的698个总变异中的130个自动应用了211次工具编辑。尽管有三个样本需要额外的手动编辑,但诸如mtDNA单倍群估计等补充工具有助于识别并指导对AQME生成的图谱进行这些必要的修改。除了生成图谱外,AQME还为分析的19个样本中的18个报告了准确的单倍群。唯一错误的单倍群分配,尽管在系统发育上很接近,但发现了一个仅影响部分线粒体基因组数据的错误。未来对AQME单倍群工具的调整将解决此错误,并加强整体评分策略,以更好地完善和自动化单倍群分配。由于NGS使mtDNA位点在法医领域得到更广泛应用,AQME和其他专注于法医的mtDNA分析工具的可用性将简化这一转变,并进一步支持常规案件工作中的线粒体基因组分析。为此,AFMES-AFDIL已将AQME工具箱与CLC基因组学工作台结合使用,成功验证并实施了两种NGS线粒体基因组方法。

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