首页> 外文期刊>Journal of Cereal Science >Molecular characterization of the Puroindoline a-D1b allele and development of an STS marker in wheat (Triticum aestivum L.).
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Molecular characterization of the Puroindoline a-D1b allele and development of an STS marker in wheat (Triticum aestivum L.).

机译:小麦中小麦Puroindoline a-D1b等位基因的分子表征和STS标记的发育。

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摘要

Kernel hardness is mainly controlled by one major genetic locus on the short arm of chromosome 5D in bread wheat. Twelve Chinese and CIMMYT wheat cultivars were characterized for the deletion region of Pina-D1b genotype and developing a novel STS marker for this allele. PCR and SDS-PAGE were used to confirm the Pina-D1b genotype, and then 20 pairs of primers were designed to amplify the fragment including deletion region in Pina-D1b genotype by primer walking strategy. An STS marker Pina-N spanning deletion region in Pina-D1b was developed and sequencing results showed that all of 10 Pina-D1b genotypes uniformly possessed a 15,380 bp deletion in comparison with that of Chinese Spring with wild type. This study provided an alternative method to exam Pina-D1b by molecular marker and will accelerate identification of puroindoline alleles in bread wheat. All rights reserved, Elsevier.
机译:籽粒硬度主要受位于小麦5D染色体短臂上的一个主要遗传基因座的控制。对12个中国和CIMMYT小麦品种的Pina-D1b基因型缺失区域进行了表征,并为该等位基因开发了新的STS标记。用PCR和SDS-PAGE确定Pina-D1b基因型,然后设计20对引物,通过引物步移策略扩增Pina-D1b基因型中包括缺失区的片段。建立了Pina-D1b中一个STS标记Pina-N跨越缺失区,测序结果表明,与野生型中国春相比,这10个Pina-D1b基因型均具有15,380 bp的缺失。这项研究提供了一种通过分子标记检查Pina-D1b的替代方法,并将加速面包小麦中嘌呤二氢吲哚等位基因的鉴定。保留所有权利,Elsevier。

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