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首页> 外文期刊>Journal of Agricultural and Food Chemistry >Development of SNP assays for genotyping the puroindoline b gene for grain hardness in wheat using pyrosequencing.
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Development of SNP assays for genotyping the puroindoline b gene for grain hardness in wheat using pyrosequencing.

机译:利用焦磷酸测序技术开发用于对小麦籽粒硬度的puroindoline b基因进行基因分型的SNP分析方法。

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摘要

Grain hardness is one of the most important quality characteristics of cultivated bread wheat (Triticum aestivum L.) and has been reported to result from either a failure to express puroindoline a (Pina) or single-nucleotide mutations in puroindoline b (Pinb). Up to now, seven alleles from Pinb-D1a to Pinb-D1g were identified in bread wheat. Compared to the DNA coding region of Pinb-D1a (allele for softness), six single-nucleotide polymorphisms (SNPs) were detected in six alleles for Pinb-D1. In this study, we used pyrosequencing technology to develop two SNP assays for identification of the seven Pinb alleles and characterized SNP variations in the Pinb of 493 European wheat varieties. Of the three hardness alleles Pinb-D1b, Pinb-D1c, and Pinb-D1d detected in this study, Pinb-D1b was the most predominant hardness allele in European hard wheats. The hardness genotypes of partial German wheat varieties available confirmed the reliability and validation of the SNP assays developed for the Pinb locus. Therefore, pyrosequencing technology offers an efficient, precise, and reliable concept for high-throughout genotyping to assist selection of grain hardness genes in wheat quality breeding programs.
机译:籽粒硬度是栽培面包小麦(Triticum aestivum L.)最重要的品质特征之一,据报道是由于未能表达嘌呤二氢胆碱a(Pina)或嘌呤二氢胆碱b(Pinb)中的单核苷酸突变所致。到目前为止,在面包小麦中鉴定出从Pinb-D1a到Pinb-D1g的7个等位基因。与Pinb-D1a的DNA编码区(柔软性等位基因)相比,在Pinb-D1的六个等位基因中检测到六个单核苷酸多态性(SNP)。在这项研究中,我们使用焦磷酸测序技术开发了两个SNP分析方法,用于鉴定七个Pinb等位基因,并表征了493个欧洲小麦品种Pinb中的SNP变异。在这项研究中检测到的三个硬度等位基因Pinb-D1b,Pinb-D1c和Pinb-D1d中,Pinb-D1b是欧洲硬质小麦中最主要的硬度等位基因。现有的德国部分小麦品种的硬度基因型证实了针对Pinb基因座开发的SNP分析的可靠性和有效性。因此,焦磷酸测序技术为高通量基因分型提供了有效,精确和可靠的概念,以帮助选择小麦品质育种计划中的籽粒硬度基因。

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