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QTL mapping of antixenosis resistance to common cutworm (Spodoptera litura Fabricius) in wild soybean (Glycine soja)

机译:野生大豆(大豆大豆)对普通角虫(Spodoptera litura Fabricius)的抗异种抗性的QTL作图

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摘要

The common cutworm (CCW; Spodoptera litura Fabricius) is a serious herbivorous insect pest of soybean (Glycine max) in Asia and Oceania. Previously, we identified quantitative trait loci (QTLs) for CCW-antibiosis-resistance, CCW-1 and CCW-2, and antixenosis-resistance, qRslx1 and qRslx2, in the cultivar ‘Himeshirazu’. The effects of these QTLs are useful in the breeding of CCW-resistant cultivars. In this study, we conducted an antixenosis bioassay on CCW using recombinant inbred lines derived from a cross between a wild soybean (Glycine soja) and the leading cultivar ‘Fukuyutaka’ to identify CCW-resistance genes in G. soja. The QTL analysis revealed six and four novel antixenosis-resistance QTLs in 2012 and 2013, respectively. Among them, the QTLs on chromosomes 2 and 7, designated qRslx4 and qRslx3, respectively, were stably detected in both years. qRslx3 exhibited the largest effect in both years, suggesting that qRslx3 can be exploited in the breeding of CCW-resistant soybean. Furthermore, qRslx3 and qRslx4 can be used, along with previously reported QTLs from ‘Himeshirazu’, to enhance the CCW-resistance of soybean cultivars because their chromosomal positions are unique. These new CCW-resistance QTLs from G. soja should play important roles in the breeding of CCW-resistant soybean cultivars.
机译:在亚洲和大洋洲,常见的地老虎(CCW;斜纹夜蛾Spodoptera litura Fabricius)是大豆(Glycine max)的一种严重的草食性害虫。以前,我们在'Himeshirazu'品种中确定了CCW抗微生物性CCW-1和CCW-2定量抗性基因位点(QTL),以及抗XX抗性qRslx1和qRslx2的定量性状基因座。这些QTL的作用可用于耐CCW品种的育种。在这项研究中,我们使用来自野生大豆(大豆大豆)和主要栽培品种“ Fukuyutaka”之间杂交的重组自交系,对CCW进行了抗异种生物测定,以鉴定大豆中CCW抗性基因。 QTL分析显示,在2012年和2013年分别有6个和4个新的抗抗Xenosis的QTL。其中,在两年中均稳定检测到2号和7号染色体上的QTL,分别称为qRslx4和qRslx3。 qRslx3表现出两年来最大的影响,这表明qRslx3可以用于耐CCW大豆的育种。此外,qRslx3和qRslx4以及先前从“ Himeshirazu”报道的QTL可用于增强大豆品种的CCW抗性,因为它们的染色体位置独特。这些来自大豆(G. soja )的新型抗逆时针QTL在抗逆时针大豆品种的育种中应发挥重要作用。

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