微单倍型位点的选择及法医用板的研制。

IF 1.8
Jing Zhou, Shuai Zhang, Yan Wang, Zhixi Lu, Zhangsen Shi, Huayan Zheng, Weizhong Gu, Enping Xu
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引用次数: 0

摘要

微单倍型由于其低突变率、无结巴产物、短片段长度和高多态性等优势,在法医遗传学研究中受到了极大的关注。这些特性使它们成为各种法医应用程序的有前途的工具。在这项研究中,使用Illumina NovaSeq 6000平台,为中国汉族人群开发了一个29倍微单倍型(MH)面板。该小组的法医效用在多个应用中进行了系统评估,包括亲子鉴定、个体鉴定、人口分析和混合物分析。在444个中国汉族个体的队列中,该面板表现出较强的性能,平均有效等位基因数(Ae)为3.2938,总歧视力(TDP)和累计排除力(CPE)分别达到0.999999999999999999999999926和0.999999998228,表明该面板具有较高的个体鉴定和亲子鉴定信息性。模拟配对分析显示,在亲子鉴定中,与传统STR系统的功效相当。除去1000个基因组中未包含的6个微单倍型,其余23个微单倍型可以有效区分5个群体,并可用于群体分析。观察到的等位基因覆盖率与人工混合测试的期望值非常接近,表明该面板可以在混合分析中发挥互补作用。在配对的正常/肿瘤样本中,一致性率为98.5%,表明辅助肿瘤起源鉴定的潜力。总之,开发的29倍微单倍型面板具有重要的法医应用价值,包括个体鉴定,亲子鉴定,群体分析,以及在混合/肿瘤样本分析中的补充作用。本研究为法医遗传学实践建立了一种新颖有效的工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Selection of microhaplotype loci and development of panel for forensic application.

Microhaplotypes have gained significant attention in forensic genetics research due to their advantageous characteristics, including low mutation rates, absence of stutter products, short fragment lengths, and high polymorphism. These features position them as promising tools for various forensic applications. In this study, using the Illumina NovaSeq 6000 platform, a 29-plex microhaplotype (MH) panel was developed for the Chinese Han population. The panel's forensic utility was systematically evaluated across multiple applications, including paternity testing, individual identification, population analysis, and mixture analysis. In a cohort of 444 Chinese Han individuals, the panel exhibited robust performance: the average effective number of alleles (Ae) was 3.2938, and the total discrimination power (TDP) and the cumulative power of exclusion (CPE) reached 0.9999999999999999999999926 and 0.9999998228, respectively, demonstrating its high informativeness for individual identification and paternity testing. Simulated pairing analysis showed comparable efficacy to traditional STR systems in paternity testing. Excluding six microhaplotypes not included in 1000 Genomes, the remaining 23 microhaplotypes can effectively distinguish the five populations and can be used for population analysis. The observed allele coverage ratios closely matched expected values in artificial mixtures tested, indicating that the panel could play a complementary role in mixture analysis. A consistency rate of 98.5% was observed in paired normal/tumor samples, indicating potential for assisting tumor origin identification. In conclusion, the developed 29-plex microhaplotype panel offers significant value for forensic applications, including individual identification, paternity testing, population analysis, and supplementary roles in mixture/tumor sample analysis. This study establishes a novel and effective tool for forensic genetic practice.

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