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Multiplex PCR Targeted Amplicon Sequencing (MTA-Seq): Simple Flexible and Versatile SNP Genotyping by Highly Multiplexed PCR Amplicon Sequencing

机译:多重PCR靶向扩增子测序(MTA-Seq):通过高度多重PCR扩增子测序进行简单灵活和通用的SNP基因分型

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摘要

Next-generation sequencing (NGS) technologies have enabled genome re-sequencing for exploring genome-wide polymorphisms among individuals, as well as targeted re-sequencing for the rapid and simultaneous detection of polymorphisms in genes associated with various biological functions. Therefore, a simple and robust method for targeted re-sequencing should facilitate genotyping in a wide range of biological fields. In this study, we developed a simple, custom, targeted re-sequencing method, designated “multiplex PCR targeted amplicon sequencing (MTA-seq),” and applied it to the genotyping of the model grass Brachypodium distachyon. To assess the practical usability of MTA-seq, we applied it to the genotyping of genome-wide single-nucleotide polymorphisms (SNPs) identified in natural accessions (Bd1-1, Bd3-1, Bd21-3, Bd30-1, Koz-1, Koz-3, and Koz-4) by comparing the re-sequencing data with that of reference accession Bd21. Examination of SNP-genotyping accuracy in 443 amplicons from eight parental accessions and an F1 progeny derived by crossing of Bd21 and Bd3-1 revealed that ~95% of the SNPs were correctly called. The assessment suggested that the method provided an efficient framework for accurate and robust SNP genotyping. The method described here enables easy design of custom target SNP-marker panels in various organisms, facilitating a wide range of high-throughput genetic applications, such as genetic mapping, population analysis, molecular breeding, and genomic diagnostics.
机译:下一代测序(NGS)技术使基因组重测序能够探索个体之间的全基因组多态性,并能够针对性地进行重测序,以快速,同时检测与各种生物学功能相关的基因中的多态性。因此,一种简单而健壮的靶向重测序方法应有助于在广泛的生物学领域进行基因分型。在这项研究中,我们开发了一种简单的,定制的,有针对性的重测序方法,称为“多重PCR靶向扩增子测序(MTA-seq)”,并将其应用于模型草Brachypodium distachyon的基因分型。为了评估MTA-seq的实用性,我们将其应用于在自然登录号(Bd1-1,Bd3-1,Bd21-3,Bd30-1,Koz--)中鉴定的全基因组单核苷酸多态性(SNP)的基因分型1,Koz-3和Koz-4),将重测序数据与参考登录号Bd21进行比较。从八个亲本和通过Bd21和Bd3-1杂交获得的F1后代中的443个扩增子中,对SNP基因分型的准确性进行了检查,结果表明正确调用了约95%的SNP。评估表明,该方法为准确,可靠的SNP基因分型提供了有效的框架。此处描述的方法可以轻松设计各种生物中的自定义目标SNP标记面板,从而促进了广泛的高通量遗传应用,例如遗传作图,种群分析,分子育种和基因组诊断。

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