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Validating molecular markers for barley leaf rust resistance genes Rph5 and Rph7.

机译:验证大麦叶片防锈基因Rph5和Rph7的分子标记。

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摘要

Leaf rust, caused by Puccinia hordei, is a serious threat to barley (Hordeum vulgare L.) production. Genes Rph5 and Rph7 confer resistance to many of the most prevalent races of P. hordei in the United States and Europe, respectively. The reliability and diagnostic capabilities of several molecular markers for these two genes were evaluated and validated for use in gene postulation, marker-assisted selection (MAS) and eventual pyramiding of genes Rph5 and Rph7 with other effective resistance genes. Fifty-eight winter barley experimental lines developed at Virginia Polytechnic Institute and State University, as well as seven barley cultivars were phenotyped for reaction to three diverse isolates of P. hordei and genotyped with molecular makers closely linked to genes Rph5 and Rph7. Sequence tagged site markers TC2863-12.4 and ABG70 as well as simple sequence repeat marker AY642926-CA11 were reliable and diagnostic in gene postulation and have potential for use in MAS and pyramiding of genes Rph5 and Rph7. Comparison of phenotypic and genotypic data revealed that one barley line VA04H-95 has genes Rph5 and Rph7 and at least one unknown gene.
机译:由大叶楠(Puccinia hordei)引起的叶锈病对大麦(Hordeum vulgare L.)的生产构成严重威胁。 Rph5和Rph7基因分别对美国和欧洲的许多最普遍的P. hordei种族具有抗性。对这两个基因的几种分子标记的可靠性和诊断能力进行了评估,并验证了其在基因假定,标记辅助选择(MAS)以及最终将Rph5和Rph7与其他有效抗性基因金字塔化中的用途。对弗吉尼亚理工学院和州立大学开发的58个冬季大麦实验品系以及7个大麦品种进行了表型分析,以对hordei的三种不同分离株进行反应,并利用与Rph5和Rph7基因密切相关的分子标记对它们进行了基因分型。序列标记的位点标记TC2863-12.4和ABG70以及简单的序列重复标记AY642926-CA11在基因推测中是可靠的和可诊断的,并且有潜力用于MAS和Rph5和Rph7基因的金字塔化。表型和基因型数据的比较显示,一种大麦系VA04H-95具有Rph5和Rph7基因以及至少一个未知基因。

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