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首页> 外文期刊>Environmental microbiology >Controlled synthesis of the DSF cell-cell signal is required for biofilm formation and virulence in Xanthomonas campestris
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Controlled synthesis of the DSF cell-cell signal is required for biofilm formation and virulence in Xanthomonas campestris

机译:DSF细胞信号的受控合成对于喜树油单胞菌的生物膜形成和致病力是必需的

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Virulence of the black rot pathogen Xanthomonas campestris pv. campestris (Xcc) is regulated by cell-cell signalling involving the diffusible signal factor DSF. Synthesis and perception of DSF require products of genes within the rpf cluster (for regulation of pathogenicity factors). RpfF directs DSF synthesis whereas RpfC and RpfG are involved in DSF perception. Here we have examined the role of the rpf/DSF system in biofilm formation in minimal medium using confocal laser-scanning microscopy of GFP-labelled bacteria. Wild-type Xcc formed microcolonies that developed into a structured biofilm. In contrast, an rpfF mutant (DSF-minus) and an rpfC mutant (DSF overproducer) formed only unstructured arrangements of bacteria. A gumB mutant, defective in xanthan biosynthesis, was also unable to develop the typical wild-type biofilm. Mixed cultures of gumB and rpfF mutants formed a typical biofilm in vitro. In contrast, in mixed cultures the rpfC mutant prevented the formation of the structured biofilm by the wildtype and did not restore wild-type biofilm phenotypes to gumB or rpfF mutants. These effects on structured biofilm formation were correlated with growth and disease development by Xcc strains in Nicotiana benthamiana leaves. These findings suggest that DSF signalling is finely balanced during both biofilm formation and virulence.
机译:黑腐病菌黄单胞菌PV的毒力。樟脑(Xcc)由涉及可扩散信号因子DSF的细胞间信号传导调节。 DSF的合成和感知需要rpf簇内的基因产物(用于调节致病性因子)。 RpfF指导DSF合成,而RpfC和RpfG参与DSF感知。在这里,我们使用共聚焦激光扫描显微镜检查GFP标记细菌,研究了rpf / DSF系统在基本培养基中生物膜形成中的作用。野生型Xcc形成了形成有机生物膜的微菌落。相反,rpfF突变体(DSF减)和rpfC突变体(DSF过量生产者)仅形成细菌的非结构化排列。黄原生物合成有缺陷的gumB突变体也无法形成典型的野生型生物膜。 gumB和rpfF突变体的混合培养在体外形成了典型的生物膜。相反,在混合培养物中,rpfC突变体阻止了野生型形成结构化生物膜,并且没有将野生型生物膜表型恢复为gumB或rpfF突变体。这些对结构化生物膜形成的影响与本生烟草叶片中的Xcc菌株的生长和疾病发展相关。这些发现表明,DSF信号传导在生物膜形成和毒力过程中均达到了良好的平衡。

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