STR基因分型的短读高通量测序技术。

Daniel M. Bornman, Mark E. Hester, Jared M. Schuetter, Manjula D Kasoji, Angela T. Minard-Smith, Curt A Barden, Scott C Nelson, G. Godbold, Christine H. Baker, Boyu Yang, Jacquelyn Walther, I. Tornes, P. Yan, Benjamin Rodriguez, R. Bundschuh, M. Dickens, Brian Young, S. Faith
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引用次数: 87

摘要

基于dna的人类鉴定方法主要依赖于短串联重复序列(STR)位点的基因分型。基于电泳的变长str分类技术被广泛使用,但其局限性在于其通量相对较低且不能产生核苷酸序列信息。高通量测序技术可能为人类身份鉴定提供更强大的工具,但目前尚未在法医案件中得到验证。在这里,我们提出了一种系统的方法,使用短读(150 bp)大规模平行测序技术对CODIS STR位点进行高通量基因分型分析。开源参考比对工具进行了优化,使用定制的STR基因组参考来评估pcr扩增的STR位点。结果表明,该方法可以准确地从个体和混合样本中提取出13个CODIS STR位点和AMEL位点。敏感性分析显示,对CODIS基因座进行基因型分析,只需要18500个与计算机参考基因组相匹配的reads (bbb99 %置信度)。通过鉴定含有单核苷酸多态性(snp)的变异等位基因和用于解决混合样品的定量测量(reads)的发展,进一步证明了该技术的力量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Short-read, high-throughput sequencing technology for STR genotyping.
DNA-based methods for human identification principally rely upon genotyping of short tandem repeat (STR) loci. Electrophoretic-based techniques for variable-length classification of STRs are universally utilized, but are limited in that they have relatively low throughput and do not yield nucleotide sequence information. High-throughput sequencing technology may provide a more powerful instrument for human identification, but is not currently validated for forensic casework. Here, we present a systematic method to perform high-throughput genotyping analysis of the Combined DNA Index System (CODIS) STR loci using short-read (150 bp) massively parallel sequencing technology. Open source reference alignment tools were optimized to evaluate PCR-amplified STR loci using a custom designed STR genome reference. Evaluation of this approach demonstrated that the 13 CODIS STR loci and amelogenin (AMEL) locus could be accurately called from individual and mixture samples. Sensitivity analysis showed that as few as 18,500 reads, aligned to an in silico referenced genome, were required to genotype an individual (>99% confidence) for the CODIS loci. The power of this technology was further demonstrated by identification of variant alleles containing single nucleotide polymorphisms (SNPs) and the development of quantitative measurements (reads) for resolving mixed samples.
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