首页> 外文期刊>The Journal of molecular diagnostics: JMD >An Effective Strategy to Eliminate Inherent Cross-Contamination in mtDNA Next-Generation Sequencing of Multiple Samples
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An Effective Strategy to Eliminate Inherent Cross-Contamination in mtDNA Next-Generation Sequencing of Multiple Samples

机译:消除多个样品MTDNA下一代测序中固有交叉污染的有效策略

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摘要

Heteroplasmic mutations in mitochondrial DNA (mtDNA) play critical roles in mitochondria disease, aging, and cancer. Recently, next-generation sequencing (NGS) has been widely used to detect mtDNA mutations for diagnosis and monitoring of the above-mentioned diseases. However, little attention is paid on inherent cross-contamination generated during mtDNA capture and sequencing of mixed samples, which may seriously reduce the detection accuracy of mtDNA heteroplasmic mutations. In this study, a novel sequencing strategy based on a unique double-barcode design was established. The results showed that when single barcode-based analysis strategy was used, cross-contamination level of 20 DNA samples ranged from 0.27% to 11.90% on HiSeq 2500 and from 0.93% to 17.70% on HiSeq X ten, whereas double barcode-based strategy could effectively eliminate cross-contamination. Moreover, the data indicated that cross-contamination was mainly derived from capture process and was significantly affected by different NGS platforms. In addition, contamination level was negatively related to sequencing depth. Moreover, cross-contamination significantly increased the false-positive calling of mtDNA heteroplasmic mutations and remarkably affected the heteroplasmy level of mtDNA mutations. In contrast, cross-contamination had no notable effect on classification of mtDNA haplogroup. Taken together, our novel double barcode-based sequencing strategy is effective in eliminating cross-contamination, enhancing the detection accuracy of mtDNA NGS, and improving its application in diagnosis or monitoring of diseases associated with mtDNA mutations.
机译:线粒体DNA(MTDNA)的异质突变在线粒体疾病,老龄化和癌症中起重要作用。最近,下一代测序(NGS)已被广泛用于检测MTDNA突变以进行诊断和监测上述疾病。然而,在MTDNA捕获期间产生的固有交叉污染和混合样品测序的固有交叉污染的注意力很少,这可能会严重降低MTDNA异质突变的检测精度。在本研究中,建立了一种基于独特双条码设计的新型测序策略。结果表明,当使用基于单条形码的分析策略时,20个DNA样品的交叉污染水平为Hiseq 2500的0.27%至11.90%,在Hiseq x十的0.93%至17.70%,而基于双条码的策略可以有效地消除交叉污染。此外,数据表明,交叉污染主要来自捕获过程,受到不同NGS平台的显着影响。此外,污染水平与测序深度负相关。此外,交叉污染显着增加了MTDNA异质突变的假阳性呼出,并且显着影响了MTDNA突变的异质水平。相比之下,交叉污染对MTDNA HAPLOOG组的分类没有显着的影响。我们的小说基于双条形码的测序策略在一起是消除交叉污染,提高MTDNA NG的检测准确性,并改善其在诊断或监测与MTDNA突变相关的疾病中的应用。

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    Fourth Mil Med Univ State Key Lab Canc Biol Xian 710032 Shaanxi Peoples R China;

    Inner Mongolia Med Univ Basic Med Coll Dept Pathol Hohhot Peoples R China;

    Fourth Mil Med Univ State Key Lab Canc Biol Xian 710032 Shaanxi Peoples R China;

    Fourth Mil Med Univ State Key Lab Canc Biol Xian 710032 Shaanxi Peoples R China;

    Fourth Mil Med Univ State Key Lab Canc Biol Xian 710032 Shaanxi Peoples R China;

    Northwest Univ Sch Life Sci Inst Prevent Genom Med Xian Shaanxi Peoples R China;

    Fourth Mil Med Univ State Key Lab Canc Biol Xian 710032 Shaanxi Peoples R China;

    Xuzhou Med Univ Huaihai Hosp Dept Gen Surg Xuzhou Jiangsu Peoples R China;

    Inner Mongolia Med Univ Basic Med Coll Dept Pathol Hohhot Peoples R China;

    Thomas Jefferson Univ Kimmel Canc Ctr Dept Med Oncol Div Populat Sci Philadelphia PA 19107 USA;

    Fourth Mil Med Univ State Key Lab Canc Biol Xian 710032 Shaanxi Peoples R China;

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  • 正文语种 eng
  • 中图分类 临床医学;
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