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Genetic analysis of antixenosis resistance to the common cutworm (Spodoptera litura Fabricius) and its relationship with pubescence characteristics in soybean (Glycine max (L.) Merr.)

机译:大豆对普通角虫(Spodoptera litura Fabricius)的抗异种抗性的遗传分析及其与大豆青春期特性的关系(Glycine max(L.)Merr。)

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The common cutworm (CCW, Spodoptera litura Fabricius) is one of the most serious pests of soybean ( Glycine max (L.) Merr.). Previously, two quantitative trait loci (QTLs) for antibiosis resistance to CCW, CCW-1 and CCW-2 , were detected in the resistant cultivar Himeshirazu. In this study, we conducted an antixenosis bioassay using a recombinant inbred population derived from a cross between a susceptible cultivar Fukuyutaka and Himeshirazu to perform QTL analysis. Two QTLs for antixenosis resistance, qRslx1 and qRslx2 , were identified on Chrs 7 and 12, and the resistant alleles of qRslx1 and qRslx2 were derived from Himeshirazu and Fukuyutaka, respectively. The position of qRslx1 is similar to that of CCW-1 . We also analyzed pubescence characteristics because they have been reported to be associated with soybean insect resistance. Two QTLs for pubescence length (on Chrs 7 and 12) and two QTLs for pubescence density (on Chrs 1 and 12) were identified. The pubescence QTLs on Chrs 7 and 12 were located near qRslx1 and qRslx2 , respectively. These results suggest that the antixenosis resistance could be controlled genetically by the identified QTLs and that the pubescence characteristics might contribute to the soybean antixenosis resistance to CCW.
机译:常见的地老虎(CCW,斜纹夜蛾Spodoptera litura Fabricius)是大豆中最严重的害虫之一(Glycine max(L.)Merr。)。以前,在抗性品种Himeshirazu中检测到两个针对CCW的抗微生物性的数量性状基因座(QTL),即CCW-1和CCW-2。在这项研究中,我们使用重组近交种群进行了抗异种生物测定,该重组近交种群是由易感品种Fukuyutaka和Himeshirazu之间的杂交获得的,以进行QTL分析。在Chrs 7和12上鉴定了两个抗Xenx抗性QTL,qRslx1和qRslx2的抗性等位基因分别来自Himeshirazu和Fukuyutaka。 qRslx1的位置类似于CCW-1的位置。我们还分析了青春期特征,因为据报道它们与大豆抗虫性有关。确定了两个用于青春期长度的QTL(在Chrs 7和12上)和两个用于青春期密度的QTL(在Chrs 1和12上)。 Chrs 7和12上的青春期QTL分别位于qRslx1和qRslx2附近。这些结果表明,可以通过鉴定的QTL从遗传上控制抗异种抗性,并且青春期特性可能有助于大豆对CCW的抗异种性。

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