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一种用于单核苷酸多态性基因分型的新型三轮多重聚合酶链式反应与新一代测序技术

A novel three-round multiplex PCR for SNP genotyping with next generation sequencing.

作者信息

Chen Ke, Zhou Yu-Xun, Li Kai, Qi Li-Xin, Zhang Qi-Fei, Wang Mao-Chun, Xiao Jun-Hua

机构信息

College of Environmental Science and Engineering, Donghua University, Shanghai, 05003365, China.

Institute of Biological Sciences and Biotechnology, Donghua University, Shanghai, 05003365, China.

出版信息

Anal Bioanal Chem. 2016 Jun;408(16):4371-7. doi: 10.1007/s00216-016-9536-6. Epub 2016 Apr 25.

Abstract

Owing to the high throughput and low cost, next generation sequencing has attracted much attention for SNP genotyping application for researchers. Here, we introduce a new method based on three-round multiplex PCR to precisely genotype SNPs with next generation sequencing. This method can as much as possible consume the equivalent amount of each pair of specific primers to largely eliminate the amplification discrepancy between different loci. After the PCR amplification, the products can be directly subjected to next generation sequencing platform. We simultaneously amplified 37 SNP loci of 757 samples and sequenced all amplicons on ion torrent PGM platform; 90.5 % of the target SNP loci were accurately genotyped (at least 15×) and 90.4 % amplicons had uniform coverage with a variation less than 50-fold. Ligase detection reaction (LDR) was performed to genotype the 19 SNP loci (as part of the 37 SNP loci) with 91 samples randomly selected from the 757 samples, and 99.5 % genotyping data were consistent with the next generation sequencing results. Our results demonstrate that three-round PCR coupled with next generation sequencing is an efficient and economical genotyping approach. Graphical Abstract The schematic diagram of three-round PCR.

摘要

由于高通量和低成本,新一代测序技术在研究人员的单核苷酸多态性(SNP)基因分型应用中备受关注。在此,我们介绍一种基于三轮多重PCR的新方法,用于通过新一代测序对SNP进行精确基因分型。该方法能够尽可能消耗等量的每对特异性引物,从而在很大程度上消除不同位点之间的扩增差异。PCR扩增后,产物可直接用于新一代测序平台。我们同时对757个样本的37个SNP位点进行了扩增,并在离子激流PGM平台上对所有扩增子进行了测序;90.5%的目标SNP位点被准确基因分型(至少15倍覆盖),90.4%的扩增子具有均匀覆盖,变异小于50倍。对从757个样本中随机选取的91个样本,进行连接酶检测反应(LDR)对19个SNP位点(作为37个SNP位点的一部分)进行基因分型,99.5%的基因分型数据与新一代测序结果一致。我们的结果表明,三轮PCR结合新一代测序是一种高效且经济的基因分型方法。图形摘要三轮PCR示意图。

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