Flannagan Ronald S, Valvano Miguel A, Koval Susan F
Department of Microbiology and Immunology, University of Western Ontario, London, Ontario, Canada N6A 5C1.
Microbiology (Reading). 2004 Mar;150(Pt 3):649-656. doi: 10.1099/mic.0.26761-0.
Bdellovibrio bacteriovorus is a Gram-negative bacterium that preys on other Gram-negative bacteria. The lifecycle of B. bacteriovorus alternates between an extracellular flagellated and highly motile non-replicative attack-phase cell and a periplasmic non-flagellated growth-phase cell. The prey bacterium containing periplasmic bdellovibrios becomes spherical but osmotically stable, forming a structure known as the bdelloplast. After completing the growth phase, newly formed bdellovibrios regain their flagellum and escape the bdelloplast into the environment, where they encounter more prey bacteria. The obligate predatory nature of B. bacteriovorus imposes a major difficulty to introducing mutations in genes directly involved in predation, since these mutants could be non-viable. This work reports the cloning of the B. bacteriovorus 109J motAB operon, encoding proteins from the flagellar motor complex, and a genetic approach based on the expression of a motA antisense RNA fragment to downregulate motility. Periplasmic bdellovibrios carrying the plasmid expressing antisense RNA displayed a marked delay in escaping from bdelloplasts, while the released attack-phase cells showed altered motility. These observations suggest that a functionally intact flagellar motor is required for the predatory lifecycle of B. bacteriovorus. Also, the use of antisense RNA expression may be a useful genetic tool to study the Bdellovibrio developmental cycle.
食菌蛭弧菌是一种革兰氏阴性细菌,以其他革兰氏阴性细菌为食。食菌蛭弧菌的生命周期在细胞外具鞭毛且高度游动的非复制攻击期细胞和周质无鞭毛的生长期细胞之间交替。含有周质蛭弧菌的猎物细菌会变成球形但渗透压稳定,形成一种称为蛭质体的结构。在完成生长阶段后,新形成的蛭弧菌重新获得鞭毛并从蛭质体中逸出到环境中,在那里它们会遇到更多的猎物细菌。食菌蛭弧菌的专性捕食特性给直接参与捕食的基因突变引入带来了重大困难,因为这些突变体可能无法存活。这项工作报道了食菌蛭弧菌109J的motAB操纵子的克隆,该操纵子编码鞭毛运动复合体的蛋白质,以及一种基于motA反义RNA片段表达来下调运动性的遗传方法。携带表达反义RNA质粒的周质蛭弧菌从蛭质体中逸出明显延迟,而释放出的攻击期细胞运动性发生改变。这些观察结果表明,功能完整的鞭毛运动复合体对于食菌蛭弧菌的捕食生命周期是必需的。此外,反义RNA表达的应用可能是研究蛭弧菌发育周期的一种有用的遗传工具。