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The RpfCG two-component system negatively regulates the colonization of sugar cane stalks by #Xanthomonas albilineans#

机译:RpfCG两组分系统对#Xanthomonas albilineans#的甘蔗茎定殖产生负调控。

摘要

The genome of Xanthomonas albilineans, the causal agent of sugar cane leaf scald, carries a gene cluster encoding a predicted quorum sensing system that is highly related to the diffusible signalling factor (DSF) systems of the plant pathogens Xylella fastidiosa and Xanthomonas campestris. In these latter pathogens, a cluster of regulation of pathogenicity factors (rpf) genes encodes the DSF system and is involved in control of various cellular processes. Mutation of Xanthomonas albilineans rpfF, encoding a predicted DSF synthase, in Florida strain XaFL07-1 resulted in a small reduction of disease severity (DS). Single-knockout mutations of rpfC and rpfG (encoding a predicted DSF sensor and regulator, respectively) had no effect on DS or swimming motility of the pathogen. However, capacity of the pathogen to cause disease was slightly reduced and swimming motility was severely affected when rpfG and rpfC were both deleted. Similar results were obtained when the entire rpfGCF region was deleted. Surprisingly, when the pathogen was mutated in rpfG or rpfC (single or double mutations) it was able to colonize sugar cane spatially more efficiently than the wild-type. Mutation in rpfF alone did not affect the degree of spatial invasion. We conclude that the DSF signal contributes to symptom expression but not to invasion of sugar cane stalks by Xanthomonas albilineans strain XaFL07-1, which is mainly controlled by the RpfCG two-component system. (Résumé d'auteur)
机译:甘蔗叶鳞病的病原体白单胞菌(Xanthomonas albilineans)的基因组携带一个编码预测的群体感应系统的基因簇,该感应群体与植物病原体Xylella fastidiosa和Xanthomonas campestris的扩散信号因子(DSF)系统高度相关。在这些后一种病原体中,一组致病因子(rpf)基因的调控编码DSF系统,并参与各种细胞过程的控制。佛罗里达株XaFL07-1中编码预测的DSF合酶的黄单胞菌黄原体rpfF的突变导致疾病严重程度(DS)的轻微降低。 rpfC和rpfG的单敲除突变(分别编码预测的DSF传感器和调节剂)对DS或病原体的游泳运动没有影响。然而,当rpfG和rpfC均被删除时,病原体引起疾病的能力略有降低,游泳运动受到严重影响。当删除整个rpfGCF区域时,可以获得类似的结果。出人意料的是,当病原体在rpfG或rpfC中突变(单突变或双突变)时,它在空间上比野生型更有效地定居在甘蔗上。单独的rpfF突变不会影响空间入侵的程度。我们得出的结论是,DSF信号有助于症状表达,但不影响由Xanthomonas albilineans菌株XaFL07-1入侵甘蔗茎,该菌株主要受RpfCG两组分系统控制。 (Résuméd'auteur)

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