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Constitutive expression of a novel antimicrobial protein, Hcm1, confers resistance to both Verticillium and Fusarium wilts in cotton

机译:新型抗菌蛋白Hcm1的组成型表达赋予棉花黄萎病和镰刀菌枯萎病抗性

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Fusarium and Verticillium wilts, two of the most important diseases in cotton, pose serious threats to cotton production. Here we introduced a novel antimicrobial protein Hcm1, which comprised harpin protein from Xanthomonas oryzae pv. oryzicola (Xoc), and the chimeric protein, cecropin A-melittin, into cotton. The transgenic cotton lines with stable Hcm1 expression showed a higher resistance to Verticillium and Fusarium wilts both in greenhouse and field trials compared to controls. Hcm1 enabled the transgenic cotton to produced a microscopic hypersensitive response (micro-HR), reactive oxygen species (ROS) burst, and caused the activation of pathogenesis-related (PR) genes in response to biotic stress, indicating that the transgenic cotton was in a primed state and ready to protect the host from pathogenic infection. Simultaneously, Hcm1 protein inhibited the growth of Verticillium dahliae (V. dahliae) and Fusarium oxysporum (F. oxysporum) in vitro. The spread of fungal biomass was also inhibited in vivo since the V. dahliae biomass was decreased dramatically in transgenic cotton plants after inoculation with V. dahliae. Together, these results demonstrate that Hcm1 could activate innate immunity and inhibit the growth of V. dahliae and F. oxysporum to protect cotton against Verticillium and Fusarium wilts.
机译:棉花枯萎病和黄萎病是棉花最重要的两种疾病,对棉花生产构成了严重威胁。在这里,我们介绍了一种新型的抗菌蛋白Hcm1,该蛋白包含来自米氏黄单胞菌pv的harpin蛋白。 Oryzicola(Xoc)和嵌合蛋白cecropin A-melittin进入棉花。与对照相比,在温室和田间试验中,具有稳定Hcm1表达的转基因棉花品系对黄萎病和镰刀菌枯萎病的抵抗力更高。 Hcm1使转基因棉花产生微观的超敏反应(micro-HR),活性氧(ROS)爆发,并响应生物胁迫而引起致病相关(PR)基因的激活,表明转基因棉花处于处于启动状态并准备保护宿主免受病原体感染。同时,Hcm1蛋白在体外抑制黄萎病菌(V. dahliae)和尖孢镰刀菌(F. oxysporum)的生长。接种大黄弧菌后,转基因棉花植株的大黄弧菌生物量显着降低,因此真菌生物质的扩散在体内也受到抑制。在一起,这些结果表明Hcm1可以激活先天免疫力并抑制大丽花和oxysporum的生长,从而保护棉花免受黄萎病和镰刀菌的侵害。

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