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首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Molecular mapping of major QTL conferring resistance to orange wheat blossom midge (Sitodiplosis mosellana) in Chinese wheat varieties with selective populations
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Molecular mapping of major QTL conferring resistance to orange wheat blossom midge (Sitodiplosis mosellana) in Chinese wheat varieties with selective populations

机译:具有选择性群体的中国小麦品种赋予橙色小麦开花Midge(Siteodiplosis Mosellana)的主要QTL的分子映射

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Key message Two novel midge resistance QTL were mapped to a 4.9-Mb interval on chromosome arm 4AL based on the genetic maps constructed with SNP markers. Orange wheat blossom midge (OWBM) is a devastating insect pest affecting wheat production. In order to detect OWBM resistance genes and quantitative trait loci (QTL) for wheat breeding, two recombinant inbred line (RIL) populations were established and used for molecular mapping. A total of seven QTL were detected on chromosomes 2D, 4A, 4D and 7D, respectively, of which positive alleles were all from the resistant parents except for the QTL on 7D. Two stable QTL (QSm.hbau-4A.2-1 and QSm.hbau-4A.2-2) were detected in both populations with the LOD scores ranging from 5.58 to 29.22 under all three environments, and they explained a combined phenotypic variation of 24.4-44.8%. These two novel QTL were mapped to a 4.9-Mb physical interval. The single-nucleotide polymorphism (SNP) markers AX-109543456, AX-108942696 and AX-110928325 were closely linked to the QTL and could be used for marker-assisted selection (MAS) for OWBM resistance in wheat breeding programs.
机译:关键消息基于用SNP标记构建的遗传图谱映射到染色体臂4的4.9mb间隔。橙色小麦开花Midge(Owbm)是一种影响小麦生产的毁灭性害虫。为了检测小麦育种的OWBM抗性基因和定量性状基因座(QTL),建立了两种重组近交系(RIL)群体并用于分子测绘。在染色体2D,4A,4D和7D上检测到总共七个QTL,其中阳性等位基因除7D上除QTL外,均来自耐药父母。两个稳定的QTL(QSM.HBAU-4A.2-1和QSM.HBAU-4A.2-2)在两个群体中检测到所有三种环境下的LOD分数的群体,并且他们解释了组合的表型变异24.4-44.8%。这两种新型QTL被映射到4.9-MB的物理间隔。单核苷酸多态性(SNP)标记AX-109543456,AX-108942696和AX-110928325与QTL紧密相连,可用于小麦育种程序中的OWBM抗性的标记辅助选择(MAS)。

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