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Genetic relationships of soybean cyst nematode resistance originated in Gedenshirazu and PI84751 on Rhg1 and Rhg4 loci

机译:大豆孢囊线虫抗性起源于Regg1和Rhg4基因座的Gedenshirazu和PI84751的遗传关系

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摘要

Soybean cyst nematode (SCN) (Heterodera glycines Ichinohe) is one of the most damaging pests of soybean (Glycine max (L.) Merr). Host plant resistance has been the most effective control method. Because of the spread of multiple SCN races in Hokkaido, the Tokachi Agricultural Experiment Station has bred soybeans for SCN resistance since 1953 by using 2 main resistance resources PI84751 (resistant to races 1 and 3) and Gedenshirazu (resistant to race 3). In this study, we investigated the genetic relationships of SCN resistance originating from major SCN resistance genes in Gedenshirazu and PI84751 by using SSR markers. We confirmed that race 1 resistance in PI84751 was independently controlled by 4 genes, 2 of which were rhg1 and Rhg4. We classified the PI84751-type allele of Rhg1 as rhg1-s and the Gedenshirazu-type allele of Rhg1 as rhg1-g. In the cross of the Gedenshirazu-derived race 3-resistant lines and the PI84751-derived races 1- and 3-resistant lines, the presence of rhg1-s and Rhg4 was responsible for race 1-resistance. These results indicated that it was possible to select race 1 resistant plants by using marker-assisted selection for the rhg1-s and Rhg4 alleles through a PI84751 origin x Gedenshirazu origin cross.
机译:大豆孢囊线虫(SCN)(Heterodera glycines Ichinohe)是大豆(Glycine max(L.)Merr)最具破坏性的害虫之一。寄主植物抗性一直是最有效的控制方法。由于北海道多个SCN种族的传播,十胜农业实验站自1953年以来就通过使用2种主要抗性资源PI84751(对1和3种族具有抗性)和Gedenshirazu(对3种族具有抗性)来育种对SCN抗性的大豆。在这项研究中,我们使用SSR标记研究了Gedenshirazu和PI84751中主要SCN抗性基因引起的SCN抗性的遗传关系。我们确认PI84751中的第1种抗性由4个基因独立控制,其中2个是rhg1和Rhg4。我们将Rhg1的PI84751型等位基因分类为rhg1-s,Rhg1的Gedenshirazu型等位基因分类为rhg1-g。在Gedenshirazu衍生的第3种族抗性品系和PI84751衍生的第1和3种族抗性品系的杂交中,rhg1-s和Rhg4的存在导致了第1种族抗性。这些结果表明,可以通过PI84751起源x Gedenshirazu起源杂交对rhg1-s和Rhg4等位基因进行标记辅助选择来选择1号抗性植物。

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