首页> 外文期刊>Molecular Plant-Microbe Interactions >Role of Type IV Pili in Virulence of Pseudomonas syringae pv. tabaci 6605: Correlation of Motility, Multidrug Resistance, and HR-Inducing Activity on a Nonhost Plant
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Role of Type IV Pili in Virulence of Pseudomonas syringae pv. tabaci 6605: Correlation of Motility, Multidrug Resistance, and HR-Inducing Activity on a Nonhost Plant

机译:Ⅳ型菌毛在丁香假单胞菌毒力中的作用。 tabaci 6605:非寄主植物的运动性,多药耐药性和HR诱导活性的相关性

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To investigate the role of type IV pili in the virulence of phytopathogenic bacteria, four mutant strains for pilus biogenesis-related genes were generated in Pseudomonas syringae pv. tabaci 6605. PilA encodes the pilin protein as a major subunit of type IV pili, and the pilO product is reported to be required for pilus assembly. The fimU and fimT genes are predicted to produce minor pilins. Western blot analysis revealed that pilA, pilO, and fimU mutants but not the fimT mutant failed to construct type IV pili. Although the swimming motility of all mutant strains was not impaired in liquid medium, they showed remarkably reduced motilities on semisolid agar medium, suggesting that type IV pili are required for surface motilities. Virulence toward host tobacco plants and hypersensitive response-inducing ability in nonhost Arabidopsis leaves of pilA, pilO, and fimU mutant strains were reduced. These results might be a consequence of reduced expression of type III secretion system-related genes in the mutant strains. Further, all mutant strains showed enhanced expression of resistance-nodulation-division family members mexA, mexB, and oprM, and higher tolerance to antimicrobial compounds. These results indicate that type IV pili are an important virulence factor of this pathogen.
机译:为了研究IV型菌毛在植物致病菌毒性中的作用,在丁香假单胞菌pv中产生了四个菌毛生物发生相关基因突变株。 tabaci 6605. PilA编码的菌毛蛋白是IV型菌毛的主要亚基,据报道菌毛产物是菌毛组装所必需的。预测fimU和fimT基因会产生较小的菌毛。蛋白质印迹分析显示pilA,pilO和fimU突变体,但不是fimT突变体不能构建IV型菌毛。尽管在液体培养基中所有突变菌株的游泳运动能力均未受到损害,但它们在半固体琼脂培养基上显示出显着降低的运动能力,表明表面运动需要IV型菌毛。减少了对寄主烟草植物的毒力和非寄主拟南芥叶中pilA,pilO和fimU突变株的超敏反应诱导能力。这些结果可能是突变菌株中III型分泌系统相关基因表达减少的结果。此外,所有突变菌株均显示出耐药性结节科家族成员mexA,mexB和oprM的表达增强,并且对抗菌化合物的耐受性更高。这些结果表明IV型菌毛是该病原体的重要毒力因子。

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