Departamento Microbiología, Facultad de Biología, Universidad de Barcelona, Diagonal 645, 08071 Barcelona, Spain.
J Bacteriol. 2011 Oct;193(19):5179-90. doi: 10.1128/JB.05355-11. Epub 2011 Jul 22.
Aeromonas hydrophila polar-flagellum class I gene transcription is σ70 dependent, which is consistent with the fact that the A. hydrophila polar flagellum is constitutively expressed. In contrast to other bacteria with dual flagellar systems such as Vibrio parahaemolyticus, the A. hydrophila LafK protein does not compensate for the lack of the polar-flagellum regulator FlrA (V. parahaemolyticus FlaK homologue). This is consistent with the fact that the A. hydrophila FlrA mutation abolishes polar-flagellum formation in liquid and on solid surfaces but does not affect inducible lateral-flagellum formation. The results highlight that the polar- and lateral-flagellum interconnections and control networks are specific and that there are differences between the dual flagellar systems in A. hydrophila and V. parahaemolyticus. Furthermore, our results indicate that the A. hydrophila polar-flagellum transcriptional hierarchy (also in class II, III, and IV genes) shares some similarities with but has many important differences from the transcriptional hierarchies of Vibrio cholerae and Pseudomonas aeruginosa. The A. hydrophila flhF and flhG genes are essential for the assembly of a functional polar flagellum because in-frame mutants fail to swim in liquid medium and lack the polar flagellum. In Vibrio and Pseudomonas flhG disruption increases the number of polar flagella per cell, and Pseudomonas flhF disruption gives an aberrant placement of flagellum. Here, we propose the gene transcriptional hierarchy for the A. hydrophila polar flagellum.
嗜水气单胞菌极生鞭毛Ⅰ类基因的转录依赖于σ70,这与极生鞭毛的组成型表达的事实是一致的。与其他具有双鞭毛系统的细菌(如副溶血弧菌)不同,嗜水气单胞菌 LafK 蛋白不能弥补极生鞭毛调节因子 FlrA(副溶血弧菌 FlaK 同源物)的缺失。这与嗜水气单胞菌 FlrA 突变体在液体和固体表面上完全不能形成极生鞭毛但不影响诱导性侧生鞭毛形成的事实是一致的。结果表明,极生鞭毛和侧生鞭毛的连接和控制网络是特定的,并且嗜水气单胞菌和副溶血弧菌的双鞭毛系统之间存在差异。此外,我们的结果表明,嗜水气单胞菌极生鞭毛的转录层次(也包括Ⅱ类、Ⅲ类和Ⅳ类基因)与霍乱弧菌和铜绿假单胞菌的转录层次有一些相似之处,但也有许多重要的区别。嗜水气单胞菌 flhF 和 flhG 基因是组装功能性极生鞭毛所必需的,因为框内突变体在液体培养基中不能游动,并且缺乏极生鞭毛。在弧菌和假单胞菌中,flhG 的缺失会增加每个细胞中的极生鞭毛数量,而假单胞菌 flhF 的缺失会导致鞭毛的异常定位。在这里,我们提出了嗜水气单胞菌极生鞭毛的基因转录层次。