首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Paternity testing using massively parallel sequencing massively parallel sequencing and the PowerSeq? AUTO/Y system for short tandem repeat sequencing
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Paternity testing using massively parallel sequencing massively parallel sequencing and the PowerSeq? AUTO/Y system for short tandem repeat sequencing

机译:父级测试使用大规模平行测序大规模平行测序和Powersq? 自动/ y系统短串联重复排序

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摘要

Abstract Massively parallel sequencing (MPS) is gaining attention as a new technology for routine forensic casework, including paternity testing. Recently released MPS multiplex panels provide many more loci compared to CE methods, plus provide sequence‐based alleles that together improve the statistical power of the genetic testing. Here, an MPS system (PowerSeq? AUTO/Y) was applied for STR sequencing in the study of first‐degree STR sequence allele inheritance from families in Southern Brazil. In 29 trios (mother‐child‐father) analyzed, the paternity index values generally increased when data from sequence‐based analysis were used in comparison to length‐based data. Further, allele inconsistencies (e.g., single repeat mutation events) between child and parents could be resolved with MPS by assessing the core repeat and flanking region sequences. Lastly, the sequence information allowed for identification of isoalleles (alleles of the same size, but different sequence) to determine specific paternal and maternal inheritances. The results from this study showed advantages of implementing sequence‐based analysis, MPS, in paternity testing with improved statistical calculations and a greater resolution for the trios/families tested.
机译:摘要大规模平行测序(MPS)是作为常规法医案例作业的新技术的关注,包括亲子鉴定。与CE方法相比,最近释放的MPS多路复用面板提供了更多的基因座,并提供基于序列的等位基因,共同提高遗传测试的统计功率。这里,在巴西南部南部家族的第一度STR序列等位基因遗传研究中申请了MPS系统(Powerseq?Auto / Y)。分析了29种TRIOS(母亲父亲),当与基于长度的数据相比,当基于序列的分析的数据使用数据时,父级指数值通常增加。此外,通过评估核心重复和侧翼区域序列,可以使用MPS和父母之间的等位基因不一致(例如,单一重复突变事件)。最后,允许识别异己的序列信息(相同尺寸的等位基因,但不同的序列)以确定特定的父母和母体继承。本研究的结果表明,实现基于序列的分析,MPS,在亲属测试中,具有改进的统计计算和测试的TRIOS /家族的更大分辨率。

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