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HIrisPlex-S 系统可通过 DNA 预测眼睛、头发和皮肤颜色:介绍和法医学开发验证。

The HIrisPlex-S system for eye, hair and skin colour prediction from DNA: Introduction and forensic developmental validation.

机构信息

Department of Genetic Identification, Erasmus MC University Medical Centre Rotterdam, Rotterdam, The Netherlands.

Department of Biology, Indiana University Purdue University Indianapolis (IUPUI), IN, USA.

出版信息

Forensic Sci Int Genet. 2018 Jul;35:123-135. doi: 10.1016/j.fsigen.2018.04.004. Epub 2018 Apr 12.

Abstract

Forensic DNA Phenotyping (FDP), i.e. the prediction of human externally visible traits from DNA, has become a fast growing subfield within forensic genetics due to the intelligence information it can provide from DNA traces. FDP outcomes can help focus police investigations in search of unknown perpetrators, who are generally unidentifiable with standard DNA profiling. Therefore, we previously developed and forensically validated the IrisPlex DNA test system for eye colour prediction and the HIrisPlex system for combined eye and hair colour prediction from DNA traces. Here we introduce and forensically validate the HIrisPlex-S DNA test system (S for skin) for the simultaneous prediction of eye, hair, and skin colour from trace DNA. This FDP system consists of two SNaPshot-based multiplex assays targeting a total of 41 SNPs via a novel multiplex assay for 17 skin colour predictive SNPs and the previous HIrisPlex assay for 24 eye and hair colour predictive SNPs, 19 of which also contribute to skin colour prediction. The HIrisPlex-S system further comprises three statistical prediction models, the previously developed IrisPlex model for eye colour prediction based on 6 SNPs, the previous HIrisPlex model for hair colour prediction based on 22 SNPs, and the recently introduced HIrisPlex-S model for skin colour prediction based on 36 SNPs. In the forensic developmental validation testing, the novel 17-plex assay performed in full agreement with the Scientific Working Group on DNA Analysis Methods (SWGDAM) guidelines, as previously shown for the 24-plex assay. Sensitivity testing of the 17-plex assay revealed complete SNP profiles from as little as 63 pg of input DNA, equalling the previously demonstrated sensitivity threshold of the 24-plex HIrisPlex assay. Testing of simulated forensic casework samples such as blood, semen, saliva stains, of inhibited DNA samples, of low quantity touch (trace) DNA samples, and of artificially degraded DNA samples as well as concordance testing, demonstrated the robustness, efficiency, and forensic suitability of the new 17-plex assay, as previously shown for the 24-plex assay. Finally, we provide an update to the publically available HIrisPlex website https://hirisplex.erasmusmc.nl/, now allowing the estimation of individual probabilities for 3 eye, 4 hair, and 5 skin colour categories from HIrisPlex-S input genotypes. The HIrisPlex-S DNA test represents the first forensically validated tool for skin colour prediction, and reflects the first forensically validated tool for simultaneous eye, hair and skin colour prediction from DNA.

摘要

法医 DNA 表型预测(FDP),即通过 DNA 预测人类外部可见特征,由于它可以从 DNA 痕迹中提供情报信息,已成为法医学中一个快速发展的分支领域。FDP 的结果可以帮助警方集中调查寻找不明身份的犯罪者,而这些犯罪者通常无法通过标准的 DNA 分析来识别。因此,我们之前开发并验证了用于预测眼睛颜色的 IrisPlex DNA 测试系统和用于从 DNA 痕迹中预测眼睛和头发颜色的 HIrisPlex 系统。在这里,我们介绍并验证了 HIrisPlex-S DNA 测试系统(S 代表皮肤),用于从痕量 DNA 中同时预测眼睛、头发和皮肤颜色。这个 FDP 系统由两个基于 SNaPshot 的多重分析组成,总共针对 41 个 SNP,其中一个是用于 17 个皮肤颜色预测 SNP 的新型多重分析,另一个是之前的 HIrisPlex 分析用于 24 个眼睛和头发颜色预测 SNP,其中 19 个 SNP 也有助于皮肤颜色预测。HIrisPlex-S 系统还包括三个统计预测模型,之前开发的基于 6 个 SNP 的 IrisPlex 模型用于眼睛颜色预测,之前开发的基于 22 个 SNP 的 HIrisPlex 模型用于头发颜色预测,以及最近引入的基于 36 个 SNP 的 HIrisPlex-S 模型用于皮肤颜色预测。在法医开发验证测试中,新的 17 重分析与科学工作组成分分析方法(SWGDAM)指南完全一致,与之前 24 重分析一致。对 17 重分析的敏感性测试显示,从输入 DNA 中仅 63pg 即可获得完整的 SNP 图谱,与之前展示的 24 重 HIrisPlex 分析的灵敏度阈值一致。对模拟法医案例工作样本(如血液、精液、唾液斑、抑制 DNA 样本、低数量的触摸(痕迹)DNA 样本以及人工降解 DNA 样本)的测试以及一致性测试,证明了新的 17 重分析的稳健性、效率和法医适用性,与之前展示的 24 重分析一致。最后,我们更新了公共的 HIrisPlex 网站 https://hirisplex.erasmusmc.nl/,现在允许根据 HIrisPlex-S 输入基因型估计 3 个眼睛、4 个头发和 5 个皮肤颜色类别的个体概率。HIrisPlex-S DNA 测试是第一个经过法医验证的皮肤颜色预测工具,也是第一个经过法医验证的同时从 DNA 预测眼睛、头发和皮肤颜色的工具。

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