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Role of the type VI secretion systems during disease interactions of Erwinia amylovora with its plant host

机译:VI型分泌系统在解淀粉欧文氏菌与其植物宿主疾病相互作用中的作用

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Background Type VI secretion systems (T6SS) are widespread among Gram-negative bacteria and have a potential role as essential virulence factors or to maintain symbiotic interactions. Three T6SS gene clusters were identified in the genome of E . amylovora CFBP 1430, of which T6SS-1 and T6SS-3 represent complete T6SS machineries, while T6SS-2 is reduced in its gene content. Results To assess the contribution of T6SSs to virulence and potential transcriptomic changes of E. amylovora CFBP 1430, single and double mutants in two structural genes were generated for T6SS-1 and T6SS-3. Plant assays showed that mutants in T6SS-3 were slightly more virulent in apple shoots while inducing less disease symptoms on apple flowers, indicating that T6SSs have only a minor effect on virulence of E . amylovora CFBP 1430. The mutations led under in vitro conditions to the differential expression of type III secretion systems, iron acquisition, chemotaxis, flagellar, and fimbrial genes. Comparison of the in planta and in vitro transcriptome data sets revealed a common differential expression of three processes and a set of chemotaxis and motility genes. Additional experiments proved that T6SS mutants are impaired in their motility. Conclusion These results suggest that the deletion of T6SSs alters metabolic and motility processes. Nevertheless, the difference in lesion development in apple shoots and flower necrosis of T6SS mutants was indicative that T6SSs influences the disease progression and the establishment of the pathogen on host plants.
机译:背景VI型分泌系统(T6SS)在革兰氏阴性细菌中广泛存在,并具有潜在的毒力因子或维持共生相互作用的潜在作用。在E基因组中鉴定出3个T6SS基因簇。支链淀粉淀粉CFBP 1430,其中T6SS-1和T6SS-3代表完整的T6SS机器,而T6SS-2的基因含量减少。结果为了评估T6SS对E.amylovora CFBP 1430的毒力和潜在转录组变化的贡献,在T6SS-1和T6SS-3的两个结构基因中产生了单突变和双突变。植物试验表明,T6SS-3中的突变体在苹果芽中的毒性稍强,而在苹果花上引起较少的疾病症状,表明T6SSs对E的毒力影响较小。 amylovora CFBP1430。这种突变在体外条件下导致了III型分泌系统,铁的获取,趋化性,鞭毛和纤维基因的差异表达。植物体内和体外转录组数据集的比较揭示了三个过程以及一组趋化性和运动性基因的共同差异表达。其他实验证明,T6SS突变体的运动能力受损。结论这些结果表明,T6SS的缺失改变了代谢和运动过程。然而,T6SS突变体在苹果芽和花坏死中病变发展的差异表明,T6SS会影响疾病进程和宿主植物病原体的建立。

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