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Wheat Mds-1 encodes a heat-shock protein and governs susceptibility towards the Hessian fly gall midge

机译:小麦Mds-1编码热休克蛋白,并控制着对黑森州苍蝇gall的敏感性

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摘要

Gall midges induce formation of host nutritive cells and alter plant metabolism to utilize host resources. Here we show that the gene Mayetiola destructor susceptibility-1 (Mds-1) on wheat chromosome 3AS encodes a small heat-shock protein and is a major susceptibility gene for infestation of wheat by the gall midge M. destructor, commonly known as the Hessian fly. Transcription of Mds-1 and its homoeologs increases upon insect infestation. Ectopic expression of Mds-1 or induction by heat shock suppresses resistance of wheat mediated by the resistance gene H13 to Hessian fly. Silencing of Mds-1 by RNA interference confers immunity to all Hessian fly biotypes on normally susceptible wheat genotypes. Mds-1-silenced plants also show reduced lesion formation due to infection by the powdery mildew fungus Blumeria graminis f. sp. tritici. Modification of susceptibility genes may provide broad and durable sources of resistance to Hessian fly, B. graminis f. sp. tritici, and other pests.
机译:胆mid诱导宿主营养细胞的形成并改变植物代谢以利用宿主资源。在这里,我们显示了小麦染色体3AS上的Mayetiola破坏者易感性基因1(Mds-1)编码一个小的热休克蛋白,并且是由M蚊M.破坏者(通常称为黑森州)侵染小麦的主要易感基因。飞。昆虫侵染后,Mds-1及其同源物的转录增加。 Mds-1的异位表达或热激诱导抑制了由抗性基因H13介导的小麦对黑森州果蝇的抗性。 RNA干扰使Mds-1沉默,使正常易感小麦基因型对所有黑森州苍蝇生物型具有免疫力。 Mds-1沉默的植物还显示出由于白粉病真菌Blumeria graminis f的感染而减少了病斑的形成。 sp。小麦。易感基因的修饰可提供广泛而持久的抗黑森州苍蝇B. graminis f。 sp。小麦等害虫。

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