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使用Ion PGM™通过大规模平行测序对基于单核苷酸多态性(SNP)的法医鉴定进行实验室间评估。

Inter-laboratory evaluation of SNP-based forensic identification by massively parallel sequencing using the Ion PGM™.

作者信息

Eduardoff M, Santos C, de la Puente M, Gross T E, Fondevila M, Strobl C, Sobrino B, Ballard D, Schneider P M, Carracedo Á, Lareu M V, Parson W, Phillips C

机构信息

Institute of Legal Medicine, Innsbruck Medical University, Innsbruck, Austria.

Forensic Genetics Unit, Institute of Forensic Sciences, University of Santiago de Compostela, Santiago de Compostela, Spain.

出版信息

Forensic Sci Int Genet. 2015 Jul;17:110-121. doi: 10.1016/j.fsigen.2015.04.007. Epub 2015 Apr 15.

Abstract

Next generation sequencing (NGS) offers the opportunity to analyse forensic DNA samples and obtain massively parallel coverage of targeted short sequences with the variants they carry. We evaluated the levels of sequence coverage, genotyping precision, sensitivity and mixed DNA patterns of a prototype version of the first commercial forensic NGS kit: the HID-Ion AmpliSeq™ Identity Panel with 169-markers designed for the Ion PGM™ system. Evaluations were made between three laboratories following closely matched Ion PGM™ protocols and a simple validation framework of shared DNA controls. The sequence coverage obtained was extensive for the bulk of SNPs targeted by the HID-Ion AmpliSeq™ Identity Panel. Sensitivity studies showed 90-95% of SNP genotypes could be obtained from 25 to 100pg of input DNA. Genotyping concordance tests included Coriell cell-line control DNA analyses checked against whole-genome sequencing data from 1000 Genomes and Complete Genomics, indicating a very high concordance rate of 99.8%. Discordant genotypes detected in rs1979255, rs1004357, rs938283, rs2032597 and rs2399332 indicate these loci should be excluded from the panel. Therefore, the HID-Ion AmpliSeq™ Identity Panel and Ion PGM™ system provide a sensitive and accurate forensic SNP genotyping assay. However, low-level DNA produced much more varied sequence coverage and in forensic use the Ion PGM™ system will require careful calibration of the total samples loaded per chip to preserve the genotyping reliability seen in routine forensic DNA. Furthermore, assessments of mixed DNA indicate the user's control of sequence analysis parameter settings is necessary to ensure mixtures are detected robustly. Given the sensitivity of Ion PGM™, this aspect of forensic genotyping requires further optimisation before massively parallel sequencing is applied to routine casework.

摘要

下一代测序(NGS)为分析法医DNA样本并对其携带的变异所对应的靶向短序列进行大规模平行覆盖提供了机会。我们评估了首款商用法医NGS试剂盒的原型版本:专为Ion PGM™系统设计的具有169个标记的HID-Ion AmpliSeq™身份鉴定试剂盒的序列覆盖水平、基因分型精度、灵敏度和混合DNA模式。在三个实验室之间按照紧密匹配的Ion PGM™方案以及共享DNA对照的简单验证框架进行了评估。对于HID-Ion AmpliSeq™身份鉴定试剂盒所靶向的大部分单核苷酸多态性(SNP),获得了广泛的序列覆盖。灵敏度研究表明,从25至100皮克的输入DNA中可以获得90%至95%的SNP基因型。基因分型一致性测试包括针对来自千人基因组计划和Complete Genomics的全基因组测序数据对科里尔细胞系对照DNA进行分析,结果表明一致性率非常高,达到99.8%。在rs1979255、rs1004357、rs938283、rs2032597和rs2399332中检测到的不一致基因型表明这些位点应从该试剂盒中排除。因此,HID-Ion AmpliSeq™身份鉴定试剂盒和Ion PGM™系统提供了一种灵敏且准确的法医SNP基因分型检测方法。然而,低水平DNA产生的序列覆盖差异更大,在法医应用中,Ion PGM™系统需要仔细校准每个芯片加载的总样本量,以保持常规法医DNA中所见的基因分型可靠性。此外,对混合DNA的评估表明,用户必须控制序列分析参数设置,以确保能可靠地检测到混合物。鉴于Ion PGM™的灵敏度,在将大规模平行测序应用于常规案件工作之前,法医基因分型的这一方面需要进一步优化。

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