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A novel antimicrobial protein for plant protection consisting of a Xanthomonas oryzae harpin and active domains of cecropin A and melittin

机译:一种由植物黄单胞菌harpin以及天蚕素A和蜂毒肽的活性域组成的新型植物保护抗菌蛋白

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摘要

Discoveries about antimicrobial peptides and plant defence activators have made possible the de novo and rational design of novel peptides for use in crop protection. Here we report a novel chimeric protein, Hcm1, which was made by linking the active domains of cecropin A and melittin to the hypersensitive response (HR)-elicitor Hpa1 of Xanthomonas oryzae pv. oryzicola, the causal agent of rice bacterial leaf streak. The resulting chimeric protein maintained not only the HR-inducing property of the harpin, but also the antimicrobial activity of the cecropin A-melittin hybrid. Hcm1 was purified from engineered Escherichia coli and evaluated in terms of the minimal inhibitory concentration (MIC) and the 50% effective dose (ED50) against important plant pathogenic bacteria and fungi. Importantly, the protein acted as a potential pesticide by inducing disease resistance for viral, bacterial and fungal pathogens. This designed drug can be considered as a lead compound for use in plant protection, either for the development of new broad-spectrum pesticides or for expression in transgenic plants.
机译:有关抗菌肽和植物防御激活剂的发现,使得从头开始并合理设计用于农作物保护的新型肽成为可能。在这里,我们报告了一种新型的嵌合蛋白Hcm1,该蛋白是通过将天蚕素A和蜂毒肽的活性域与米黄单胞菌(Xanthomonas oryzae pv)的超敏反应(HR)激发子Hpa1连接而制成的。 Oryzicola,水稻细菌叶条纹的病因。所得的嵌合蛋白不仅保持了harpin的HR诱导特性,而且还保持了天蚕素A-蜂毒蛋白杂种的抗菌活性。从工程化大肠杆菌中纯化Hcm1,并根据对重要植物病原细菌和真菌的最低抑制浓度(MIC)和50%有效剂量(ED50)进行评估。重要的是,该蛋白通过诱导病毒,细菌和真菌病原体的抗病性而充当潜在的农药。这种设计好的药物可以被认为是用于植物保护的先导化合物,用于开发新的广谱农药或在转基因植物中表达。

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