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单细胞分析的 Y-STR 混合物解析。

Y-STR mixture deconvolution by single-cell analysis.

机构信息

Graduate Program in Chemistry, Department of Chemistry, University of Central Florida, Orlando, Florida, USA.

National Center for Forensic Science, Orlando, Florida, USA.

出版信息

J Forensic Sci. 2023 Jan;68(1):275-288. doi: 10.1111/1556-4029.15150. Epub 2022 Oct 1.

Abstract

Since Y-STR typing only amplifies male Y chromosomal DNA, it can simplify the interpretation of some DNA mixtures that contain female DNA. However, if there are multiple male contributors, mixed Y-STR DNA profiles will often be obtained. Y-STR mixture analysis cases are particularly challenging though as, currently, there are no validated probabilistic genotyping (PG) software solutions commercially available to aid in their interpretation. One approach to fully deconvoluting these challenging mixtures into their individual donors is to conduct single-cell genotyping by isolating individual cells from a mixture prior to conducting DNA typing. In this work, a physical micromanipulation technique involving a tungsten needle and direct PCR with decreased reaction volume and increased cycle number was applied to equimolar 2- and 3-person buccal cell male DNA mixtures and a mock touch DNA case scenario involving the consecutive firing of a handgun by two males. A consensus DNA profiling approach was then utilized to obtain YFiler™ Plus Y-STR haplotypes. Buccal cells were used to optimize and test the direct single-cell subsampling approach, and 2-3 person male buccal cell mixtures were fully deconvoluted into their individual donor Y-STR haplotypes. Single-cell (or agglomerated cell clump) subsampling from the gun's trigger recovered single-source Y-STR profiles from both individuals who fired the gun, the owner, and the other unrelated male. Only the non-owner's DNA was found in the cells recovered from the handle. In summary, direct single-cell subsampling as described represents a potential simple way to analyze and interpret Y-STR mixtures.

摘要

由于 Y-STR 分型仅扩增男性 Y 染色体 DNA,因此可以简化包含女性 DNA 的一些 DNA 混合物的解释。然而,如果存在多个男性供体,则通常会获得混合的 Y-STR DNA 图谱。不过,Y-STR 混合分析案例特别具有挑战性,因为目前还没有经过验证的概率基因分型 (PG) 软件解决方案可用于辅助解释。完全将这些具有挑战性的混合物分解为其各自的供体的一种方法是在进行 DNA 分型之前,通过从混合物中分离单个细胞来进行单细胞基因分型。在这项工作中,应用了一种涉及钨针的物理微操作技术和直接 PCR,减少了反应体积并增加了循环次数,用于等摩尔的 2 人和 3 人颊细胞男性 DNA 混合物以及涉及连续射击的模拟接触 DNA 案例模拟两个男性使用手枪。然后,使用共识 DNA 分析方法获得 YFiler™ Plus Y-STR 单倍型。使用颊细胞优化和测试直接单细胞亚采样方法,并且将 2-3 人男性颊细胞混合物完全分解为其各自的供体 Y-STR 单倍型。从枪的扳机采集单细胞(或聚集的细胞团)亚采样,从开枪的两个人、所有者和另一个无关男性中恢复了单个来源的 Y-STR 谱。仅在从手柄中回收的细胞中发现了非所有者的 DNA。总之,如前所述的直接单细胞亚采样代表了一种分析和解释 Y-STR 混合物的潜在简单方法。

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