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一种用于同时分析13个快速突变的Y染色体短串联重复序列的新型多重检测方法。

A novel multiplex assay for simultaneously analysing 13 rapidly mutating Y-STRs.

作者信息

Alghafri Rashed, Goodwin Will, Ralf Arwin, Kayser Manfred, Hadi Sibte

机构信息

University of Central Lancashire, School of Forensic and Investigative Sciences, Preston, UK; General Department of Forensic Sciences and Criminology, Dubai Police General Head Quarters, Dubai, United Arab Emirates.

University of Central Lancashire, School of Forensic and Investigative Sciences, Preston, UK.

出版信息

Forensic Sci Int Genet. 2015 Jul;17:91-98. doi: 10.1016/j.fsigen.2015.04.004. Epub 2015 Apr 9.

Abstract

A multiplex polymerase chain reaction (PCR) assay (RM-Yplex) was developed which is capable of simultaneously amplifying 13 recently introduced rapidly mutating Y-STR markers (RM Y-STRs). This multiplex assay is expected to aid human identity testing in forensic and other applications to improve differentiating unrelated males and allow separating related males. The 13 RM Y-STR markers included in the multiplex are: DYF387S1, DYF399S1, DYF403S1ab, DYF404S1, DYS449, DYS518, DYS526ab, DYS547, DYS570, DYS576, DYS612, DYS626 and DYS627. This study reflects the proof of concept to analyse all currently known RM Y-STRs simultaneously and describes the optimization of the multiplex assay. The RM-Yplex assay generated complete RM Y-STR profiles down to 62.5pg of male template DNA, and from male-female DNA mixtures at all ratios tested. We herewith introduce and make available for widespread use in forensic and anthropological studies, an effective and sensitive single multiplex assay for simultaneous genotyping of 13 RM Y-STRs.

摘要

开发了一种多重聚合酶链反应(PCR)检测方法(RM-Yplex),它能够同时扩增13个最近引入的快速突变Y染色体短串联重复序列(RM Y-STR)标记。预计这种多重检测方法将有助于法医及其他领域的人类身份鉴定,以更好地区分无关男性,并分离相关男性。该多重检测方法中包含的13个RM Y-STR标记为:DYF387S1、DYF399S1、DYF403S1ab、DYF404S1、DYS449、DYS518、DYS526ab、DYS547、DYS570、DYS576、DYS612、DYS626和DYS627。本研究展示了同时分析所有当前已知RM Y-STR的概念验证,并描述了该多重检测方法的优化。RM-Yplex检测方法能够从低至62.5pg的男性模板DNA以及所有测试比例的男性-女性DNA混合物中生成完整的RM Y-STR图谱。我们在此介绍一种用于同时对13个RM Y-STR进行基因分型的有效且灵敏的单一多重检测方法,并使其可广泛应用于法医和人类学研究。

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