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首页> 外文期刊>Acta Horticulturae >The GrrSA-Csr Global Regulatory System Plays a Critical Role in Erwinia amylovora Virulence
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The GrrSA-Csr Global Regulatory System Plays a Critical Role in Erwinia amylovora Virulence

机译:GrrSA-Csr全球监管体系在解淀粉欧文氏菌毒力中起关键作用

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The fire blight pathogen Erwinia amylovora requires a functional type III secretion system (T3SS) and the production of the exopolysaccharide amylovoran to cause disease. The GacS/GacA two-component system is widely conserved among gammaproteobacteriaand is a global regulator of virulence factors. This system positively regulates non-coding small regulatory RNA csrB, which in turn binds to CsrA, a translational regulator. In this study, we characterized the grrA, csrB and csrA mutants. Results showed that the grrA and csrB mutants had similar phenotypes: both were hypermotile, produced a higher amount of amylovoran, and had increased expression of T3SS genes in vivo. In contrast, the csrA mutant exhibited the opposite phenotypes, including non-motility, no amylovoran production and no expression of T3SS genes. Furthermore, the csrA mutant did not induce hypersensitive response on non-host tobacco plants neither caused disease on immature pear fruit and apple shoots, indicating that CsrA is a positive regulator of virulence factors. These findings suggest that negative regulation of virulence by GrrS/GrrA acts through csrB, which likely binds to CsrA, antagonizing its positive effect on T3SS gene expression, flagellar formation and amylovoran production.
机译:枯萎病病原体解淀粉欧文氏菌需要功能性III型分泌系统(T3SS),并需要生产胞外多糖amylovoran才能引起疾病。 GacS / GacA两组分系统在γ-变形杆菌中被广泛保存,并且是毒力因子的全球调节者。该系统正调控非编码小调控RNA csrB,后者反过来与翻译调控子CsrA结合。在这项研究中,我们表征了grrA,csrB和csrA突变体。结果表明,grrA和csrB突变体具有相似的表型:都具有运动能力,产生更高的阿米洛芬,并且体内T3SS基因的表达增加。相比之下,csrA突变体表现出相反的表型,包括非运动性,无戊基戊酸生成且无T3SS基因表达。此外,csrA突变体未在非寄主烟草植物上诱导超敏反应,也未在未成熟的梨果实和苹果芽上引起病害,表明CsrA是毒力因子的正调节剂。这些发现表明,GrrS / GrrA对毒力的负调控是通过csrB起作用的,而csrB可能与CsrA结合,拮抗其对T3SS基因表达,鞭毛形成和戊基戊酸生产的积极作用。

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