Multiplexing with three-primer PCR for rapid and economical microsatellite validation

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Salla Vartia, Patrick C. Collins, Thomas F. Cross, Richard D. Fitzgerald, David T. Gauthier, Philip McGinnity, Luca Mirimin, Jens Carlsson
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引用次数: 18

Abstract

The next generation sequencing revolution has enabled rapid discovery of genetic markers, however, development of fully functioning new markers still requires a long and costly process of marker validation. This study reports a rapid and economical approach for the validation and deployment of polymorphic microsatellite markers obtained from a 454 pyrosequencing library of Atlantic cod, Gadus morhua, Linnaeus 1758. Primers were designed from raw reads to amplify specific amplicon size ranges, allowing effective PCR multiplexing. Multiplexing was combined with a three-primer PCR approach using four universal tails to label amplicons with separate fluorochromes. A total of 192 primer pairs were tested, resulting in 73 polymorphic markers. Of these, 55 loci were combined in six multiplex panels each containing between six and eleven markers. Variability of the loci was assessed on G. morhua from the Celtic Sea (n = 46) and the Scotian Shelf (n = 46), two locations that have shown genetic differentiation in previous studies. Multilocus FST between the two samples was estimated at 0.067 (P = 0.001). After three loci potentially under selection were excluded, the global FST was estimated at 0.043 (P = 0.001). Our technique combines three-primer and multiplex PCR techniques, allowing simultaneous screening and validation of relatively large numbers of microsatellite loci.

Abstract Image

用三引物PCR进行多路复用,快速和经济的微卫星验证
下一代测序革命使遗传标记的快速发现成为可能,然而,开发功能齐全的新标记仍然需要一个漫长而昂贵的标记验证过程。本研究报告了一种快速经济的方法,用于验证和部署从大西洋鳕鱼,Gadus morhua, Linnaeus 1758的454 pyrosequencing文库中获得的多态性微卫星标记。从原始读数设计引物来扩增特定的扩增子大小范围,允许有效的PCR多路复用。多路复用结合三引物PCR方法,使用四个通用尾标记扩增子与单独的荧光染料。共检测192对引物,得到73个多态性标记。其中,55个基因座被组合在6个多重面板中,每个面板包含6到11个标记。我们对来自凯尔特海(n = 46)和苏格兰陆架(n = 46)的morhua进行了基因座变异评估,这两个地点在之前的研究中已经显示出遗传分化。两个样本之间的多位点FST估计为0.067 (P = 0.001)。在排除了可能被选择的三个位点后,全球FST估计为0.043 (P = 0.001)。我们的技术结合了三引物和多重PCR技术,允许同时筛选和验证相对大量的微卫星位点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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