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Resistance to Cephus cinctus Norton, the wheat stem sawfly, in a recombinant inbred line population of wheat derived from two resistance sources

机译:源自两个抗性来源的重组小麦自交系种群对小麦茎锯条的Cephus cinctus Norton的抗性

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Several species of wheat stem sawflies (WSS) arc pests of wheat, including Cephus cinctus Norton in North America. Larvae feed inside the stems and cut the stem near plant maturity. The primary means of control is resistance Clue to solid stems, largely controlled by a locus on chromosome 3B (Qss.msub-3BL). Cultivars that differed for WSS resistance, but with similar stem solidness, were crossed to determine the genetic basis for the differences. The cultivar 'Scholar' is susceptible, while 'Conan' shows resistance. Scholar and Conan possessed different alleles at Qss.msub-3BL. Both alleles conferred solidness, yet the Conan allele conferred higher WSS resistance. An allele from Conan on chromosome 4A also decreased infestation and stern cutting. The 3B and 4A alleles from Conan acted in an additive fashion to provide increased WSS resistance without increasing stem solidness. Stem solidness has long been used by breeders as a proxy for WSS resistance because of its simplicity. Our results suggest that other resistance mechanisms may complement solid stems
机译:几种小麦茎锯齿(WSS)是小麦的害虫,包括北美的Cephus cinctus Norton。幼虫在茎内部进食,并在植物成熟时将茎切开。控制的主要手段是对实体茎的抗性线索,该线索主要受3B号染色体(Qss.msub-3BL)上一个基因座的控制。杂交对WSS抗性不同但茎坚实度相似的品种,以确定差异的遗传基础。品种“学者”很容易受到伤害,而“柯南”则表现出抵抗力。 Scholar和Conan在Qss.msub-3BL中拥有不同的等位基因。这两个等位基因均赋予了坚固性,而柯南等位基因则赋予了更高的WSS抗性。来自柯南的第4A号染色体上的等位基因也减少了侵扰和尾部切割。来自柯南的3B和4A等位基因以加性方式起作用,以提供增加的WSS抗性,而不增加茎的坚固性。由于其简单性,茎的坚固性一直被育种者用作抗WSS的代名词。我们的结果表明,其他抗性机制可能会补充实体茎

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