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Contamination-controlled high-throughput whole genome sequencing for influenza A viruses using the MiSeq sequencer

机译:使用MiSeq测序仪对A型流感病毒进行污染控制的高通量全基因组测序

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摘要

Accurate full-length genomic sequences are important for viral phylogenetic studies. We developed a targeted high-throughput whole genome sequencing (HT-WGS) method for influenza A viruses, which utilized an enzymatic cleavage-based approach, the Nextera XT DNA library preparation kit, for library preparation. The entire library preparation workflow was adapted for the Sentosa SX101, a liquid handling platform, to automate this labor-intensive step. As the enzymatic cleavage-based approach generates low coverage reads at both ends of the cleaved products, we corrected this loss of sequencing coverage at the termini by introducing modified primers during the targeted amplification step to generate full-length influenza A sequences with even coverage across the whole genome. Another challenge of targeted HTS is the risk of specimen-to-specimen cross-contamination during the library preparation step that results in the calling of false-positive minority variants. We included an in-run, negative system control to capture contamination reads that may be generated during the liquid handling procedures. The upper limits of 99.99% prediction intervals of the contamination rate were adopted as cut-off values of contamination reads. Here, 148 influenza A/H3N2 samples were sequenced using the HTS protocol and were compared against a Sanger-based sequencing method. Our data showed that the rate of specimen-to-specimen cross-contamination was highly significant in HTS.
机译:准确的全长基因组序列对于病毒系统发育研究很重要。我们针对甲型流感病毒开发了针对性的高通量全基因组测序(HT-WGS)方法,该方法利用基于酶促裂解的方法Nextera XT DNA库制备试剂盒进行库制备。整个图书馆准备工作流程都适用于Sentosa SX101(液体处理平台),以使这一劳动密集型步骤自动化。由于基于酶促裂解的方法在裂解产物的两端均产生低覆盖率读数,因此我们通过在靶向扩增步骤中引入修饰引物以生成全长A型流感序列,从而覆盖了两端的均匀覆盖范围,从而纠正了末端在测序覆盖率方面的损失整个基因组。靶向HTS的另一个挑战是在文库制备步骤中标本对标本交叉污染的风险,这会导致假阳性少数派变体的出现。我们包括一个运行中的负系统控制,以捕获在液体处理过程中可能产生的污染读数。污染率预测间隔的上限99.99%被用作污染读数的临界值。在这里,使用HTS协议对148例A / H3N2流感样本进行了测序,并与基于Sanger的测序方法进行了比较。我们的数据表明,HTS中样品之间的交叉污染率非常高。

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