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Modulation of Inter-kingdom Communication by PhcBSR Quorum Sensing System in Ralstonia solanacearum Phylotype I Strain GMI1000

机译:PhcBSR群体感应系统对I型菌株GMI1000的番茄斜纹单胞菌的表达进行调控。

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Ralstonia solanacearum is a ubiquitous soil-borne plant pathogenic bacterium, which frequently encounters and interacts with other soil cohabitants in competition for environmental niches. Ralsolamycin, which is encoded by the rmy genes, has been characterized as a novel inter-kingdom interaction signal that induces chlamydospore development in fungi. In this study, we provide the first genetic evidence that the rmy gene expression is controlled by the PhcBSR quorum sensing (QS) system in strain GMI1000. Mutation of phcB could lead to significant reduction of the expression levels of the genes involved in ralsolamycin biosynthesis. In addition, both the phcB and rmy mutants were attenuated in induction of chlamydospore formation in Fusarium oxysporum f. cubense and diminished in the ability to compete with the sugarcane pathogen Sporisorium scitamineum . Agreeable with the pattern of QS regulation, transcriptional expression analysis showed that the transcripts of the rmy genes were increased along with the increment of the bacterial population density. Taken together, the above findings provide new insights into the regulatory mechanisms that the QS system involves in governing the ralsolamycin inter-kingdom signaling system.
机译:青枯雷尔氏菌是一种普遍存在的土壤传播的植物病原细菌,在竞争环境生态位时经常与其他土壤同伴相遇并相互作用。由rmy基因编码的Ralsolamycin已被表征为诱导真菌中的衣原体孢子发育的新的王国间相互作用信号。在这项研究中,我们提供了第一个遗传证据,证明菌株GMI1000中rmy基因的表达受PhcBSR群体感应(QS)系统控制。 phcB突变可能导致雷洛霉素生物合成中涉及的基因表达水平显着降低。此外,phcB和rmy突变体在尖孢镰刀菌f中诱导衣原体孢子形成时均被减弱。立方体和与甘蔗病原体鞘质芽孢杆菌竞争的能力减弱。与QS调控模式相符,转录表达分析表明rmy基因的转录本随着细菌种群密度的增加而增加。综上所述,以上发现为QS系统参与控制雷索霉素星际信号系统所涉及的调节机制提供了新见解。

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