首页> 外文期刊>Journal of integrative plant biology >Characterization of Wheat Random Amplified Polymorphic DNA Markers Associated with the H11 Hessian Fly Resistance Gene
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Characterization of Wheat Random Amplified Polymorphic DNA Markers Associated with the H11 Hessian Fly Resistance Gene

机译:随机放大特性的小麦多态DNA标记与H11有关海赛飞耐药基因

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In Tunisia, the Hessian fly Mayetiola destructor Bay is a major pest of durum wheat (Triticum durum Desf.) and bread wheat (T. aestivum L.). Genetic resistance is the most efficient and economical method of control of this pest. To date, 31 resistancegenes, designated H1-H31, have been identified in wheat. These genes condition resistance to the insect genes responsible for virulence. Using wheat cultivars differing for the presence of an individual Hessian fly resistance gene and random amplified polymorphic DNA (RAPD) analysis, we have identified a polymorphic 386-bp DNA marker (Xgmib1-1A.1) associated with the H11 Hessian fly resistance gene. Blast analysis showed a high identity with a short region in the wild wheat (T. monococcum) genome, adjacent to the leaf rust resistance LrW gene. A genetic linkage was reported between this gene (Lr10) and Hessian fly response in wheat. These data were used for screening Hessian fly resistance in Tunisian wheat germplasm. Xgmid1-1A.1-like fragments were detected in four Tunisian durum and bread wheat varieties. Using these varieties in Hessian fly breeding programs in Tunisia would be of benefit in reducing the damage caused by this fly.
机译:在突尼斯,黑森飞Mayetiola析构函数湾是硬质小麦的主要害虫(小麦属植物硬质Desf)和面包小麦(t . aestivum l .)。遗传抗性是最有效的经济的控制害虫的方法。指定日期、31 resistancegenes H1-H31,被确认的小麦。抗虫基因负责毒性。个体的存在黑森飞抗性基因和随机扩增多态性DNA (RAPD)分析,我们已经确认了386 - bp DNA多态标记(Xgmib1-1A.1)与H11黑森飞行阻力基因。一个简短的地区野生小麦(t . monococcum)基因组,叶锈病抗性LrW相邻基因。基因(Lr10)和小麦黑森飞响应。这些数据被用于筛查黑森飞电阻在突尼斯小麦种质。Xgmid1-1A。突尼斯硬质和面包小麦品种。这些品种在黑森飞育种程序在突尼斯的好处将会减少这个飞行造成的损害。

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