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用于高通量临床诊断的正交下一代测序技术

Orthogonal NGS for High Throughput Clinical Diagnostics.

作者信息

Chennagiri Niru, White Eric J, Frieden Alexander, Lopez Edgardo, Lieber Daniel S, Nikiforov Anastasia, Ross Tristen, Batorsky Rebecca, Hansen Sherry, Lip Va, Luquette Lovelace J, Mauceli Evan, Margulies David, Milos Patrice M, Napolitano Nichole, Nizzari Marcia M, Yu Timothy, Thompson John F

机构信息

Claritas Genomics, Cambridge MA, USA.

Harvard Medical School, Boston MA, USA.

出版信息

Sci Rep. 2016 Apr 19;6:24650. doi: 10.1038/srep24650.

Abstract

Next generation sequencing is a transformative technology for discovering and diagnosing genetic disorders. However, high-throughput sequencing remains error-prone, necessitating variant confirmation in order to meet the exacting demands of clinical diagnostic sequencing. To address this, we devised an orthogonal, dual platform approach employing complementary target capture and sequencing chemistries to improve speed and accuracy of variant calls at a genomic scale. We combined DNA selection by bait-based hybridization followed by Illumina NextSeq reversible terminator sequencing with DNA selection by amplification followed by Ion Proton semiconductor sequencing. This approach yields genomic scale orthogonal confirmation of ~95% of exome variants. Overall variant sensitivity improves as each method covers thousands of coding exons missed by the other. We conclude that orthogonal NGS offers improvements in variant calling sensitivity when two platforms are used, better specificity for variants identified on both platforms, and greatly reduces the time and expense of Sanger follow-up, thus enabling physicians to act on genomic results more quickly.

摘要

下一代测序技术是用于发现和诊断遗传疾病的变革性技术。然而,高通量测序仍然容易出错,为了满足临床诊断测序的严格要求,需要对变异进行确认。为了解决这个问题,我们设计了一种正交双平台方法,采用互补的目标捕获和测序化学方法,以提高基因组规模变异检测的速度和准确性。我们将基于诱饵杂交的DNA选择,随后进行Illumina NextSeq可逆终止子测序,与通过扩增进行DNA选择,随后进行Ion Proton半导体测序相结合。这种方法可对约95%的外显子组变异进行基因组规模的正交确认。由于每种方法都覆盖了另一种方法遗漏的数千个编码外显子,总体变异敏感性得到提高。我们得出结论,当使用两个平台时,正交NGS可提高变异检测的敏感性,对两个平台上鉴定出的变异具有更好的特异性,并大大减少了桑格测序后续工作的时间和费用,从而使医生能够更快地根据基因组结果采取行动。

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