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Identification of potential genetic components involved in the deviant quorum-sensing signaling pathways of Burkholderia glumae through a functional genomics approach

机译:通过功能基因组学方法鉴定伯克霍尔德氏菌偏离群体感应信号通路的潜在遗传成分

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摘要

Burkholderia glumae is the chief causal agent for bacterial panicle blight of rice. The acyl-homoserine lactone (AHL)-mediated quorum-sensing (QS) system dependent on a pair of luxI and luxR homologs, tofI and tofR, is the primary cell-to-cell signaling mechanism determining the virulence of this bacterium. Production of toxoflavin, a major virulence factor of B. glumae, is known to be dependent on the tofI/tofR QS system. In our previous study, however, it was observed that B. glumae mutants defective in tofI or tofR produced toxoflavin if they grew on the surface of a solid medium, suggesting that alternative signaling pathways independent of tofI or tofR are activated in that growth condition for the production of toxoflavin. In this study, potential genetic components involved in the tofI- and tofR-independent signaling pathways for toxoflavin production were sought through screening random mini-Tn5 mutants of B. glumae to better understand the intercellular signaling pathways of this pathogen. Fifteen and three genes were initially identified as the potential genetic elements of the tofI- and tofR-independent pathways, respectively. Especially, the ORF (bglu_2g06320) divergently transcribed from toxJ, which encodes an orphan LuxR protein and controls toxoflavin biosynthesis, was newly identified in this study as a gene required for the tofR-independent toxoflavin production and named as toxK. Among those genes, flhD, dgcB, and wzyB were further studied to validate their functions in the tofI-independent toxoflavin production, and similar studies were also conducted with qsmR and toxK for their functions in the tofR-independent toxoflavin production. This work provides a foundation for future comprehensive studies of the intercellular signaling systems of B. glumae and other related pathogenic bacteria.
机译:Burkholderia glumae是造成水稻细菌性穗病的主要病因。依赖一对luxI和luxR同源物tofI和tofR的酰基高丝氨酸内酯(AHL)介导的群体感应(QS)系统是决定这种细菌毒性的主要细胞间信号传导机制。已知黄曲霉的主要毒力因子毒素黄素的生产依赖于tofI / tofR QS系统。然而,在我们之前的研究中,观察到tofI或tofR缺陷的B. glumae突变体在固体培养基表面生长时会产生毒素,这表明与tofI或tofR无关的其他信号途径在该生长条件下被激活。产黄素。在这项研究中,通过筛选盲肠芽孢杆菌的微型mini-Tn5突变体来寻找与tofI和tofR独立的信号通路相关的潜在的遗传成分,以更好地了解该病原体的细胞间信号通路。最初确定了15个和3个基因分别是 tofI -和 tofR 独立途径的潜在遗传元件。尤其是,这项研究新鉴定了从 toxJ 转录的ORF(bglu_2g06320),其编码一个孤儿LuxR蛋白并控制了毒素的合成,这是 tofR-独立于毒素黄素的生产,并命名为 toxK 。在这些基因中,进一步研究了 flhD dgcB wzyB 以验证其在独立于 tofI-的功能毒素的生产,以及 qsmR toxK 在它们独立于 tofR-的毒素生产中的功能也进行了类似的研究。这项工作为将来的 B细胞间信号系统的全面研究提供了基础。 glumae 和其他相关的致病菌。

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