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Forensic assessment of 16 single nucleotide polymorphisms analyzed by hybridization probe assay.

机译:通过杂交探针分析法对16个单核苷酸多态性进行法医评估。

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摘要

Of a number of DNA marker typing techniques for personal identification in the field of forensic medicine, polymorphic short tandem repeat (STR) typing is currently the most frequently used technique. However, the multiplex STR method is time consuming. In contrast, single nucleotide polymorphism (SNP) detection methods are relatively rapid and amenable to high throughput. The discrimination power of each SNP is inferior to that of an STR, but a combination of many SNPs could realize a high discriminating power. In this regard, 16 highly informative SNP markers were selected in the introns of genes whose alleles had a proportion of 0.4-0.6 in the Japanese SNP database. The 16 SNPs were sequentially detected within 40 min using the hybridization probe assay on the LightCycler system. The allele and genotype frequencies of these SNPs were determined in a group comprising 64 unrelated Japanese subjects. Based on the frequency data of this group, the combined matching probability, defined as the estimated probability that two unrelated individuals selected at random would possess identical multilocus genotypes, was calculated with the 16 SNPs in the Japanese population and was found to be 2.025x10(-7). This system is an effective tool in the forensic medicine to obtain information on personal identification.
机译:在法医学领域用于个人识别的许多DNA标记分型技术中,多态短串联重复序列(STR)分型是当前最常用的技术。然而,多路复用STR方法是费时的。相比之下,单核苷酸多态性(SNP)检测方法相对较快,并且适合高通量。每个SNP的辨别力均低于STR,但结合多个SNP可以实现较高的辨别力。在这方面,在日本SNP数据库中,等位基因占0.4-0.6比例的基因的内含子中选择了16种高信息量SNP标记。使用LightCycler系统上的杂交探针测定法在40分钟内顺序检测到16个SNP。这些SNP的等位基因和基因型频率是在包括64个无关日本受试者的组中确定的。根据该组的频率数据,用日本人口中的16个SNP计算出组合的匹配概率,定义为随机选择的两个无关亲戚具有相同的多位点基因型的估计概率,发现为2.025x10( -7)。该系统是法医学中获取个人身份信息的有效工具。

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