Division of Biological Science, Graduate School of Science, Nagoya University, Nagoya, Japan.
J Bacteriol. 2013 Feb;195(4):816-22. doi: 10.1128/JB.01850-12. Epub 2012 Dec 7.
The marine bacterium Vibrio alginolyticus has a single polar flagellum. Formation of that flagellum is regulated positively and negatively by FlhF and by FlhG, respectively. The ΔflhF mutant makes no flagellum, whereas the ΔflhFG double-deletion mutant usually lacks a flagellum. However, the ΔflhFG mutant occasionally reverts to become motile by forming peritrichous flagella. We have isolated a suppressor pseudorevertant from the ΔflhFG strain (ΔflhFG-sup). The suppressor strain forms peritrichous flagella in the majority of cells. We identified candidate suppressor mutations by comparing the genome sequence of the parental strain, VIO5, with the genome sequences of the suppressor strains. Two mutations were mapped to a gene, named sflA (suppressor of ΔflhFG), at the VEA003730 locus of the Vibrio sp. strain EX25 genome. This gene is specific for Vibrio species and is predicted to encode a transmembrane protein with a DnaJ domain. When the wild-type gene was introduced into the suppressor strain, motility was impaired. Introducing a mutant version of the sflA gene into the ΔflhFG strain conferred the suppressor phenotype. Thus, we conclude that loss of the sflA gene is responsible for the suppressor phenotype and that the wild-type SflA protein plays a role in preventing polar-type flagella from forming on the lateral cell wall.
海洋细菌弧菌(Vibrio alginolyticus)有一个单一的极鞭毛。鞭毛的形成分别受到 FlhF 和 FlhG 的正向和负向调节。ΔflhF 突变体不产生鞭毛,而 ΔflhFG 双缺失突变体通常缺乏鞭毛。然而,ΔflhFG 突变体偶尔会通过形成周生鞭毛而复归为运动型。我们从 ΔflhFG 菌株(ΔflhFG-sup)中分离出一个抑制性假回复突变体。抑制性菌株在大多数细胞中形成周生鞭毛。我们通过比较亲本菌株 VIO5 的基因组序列与抑制性菌株的基因组序列,确定了候选抑制性突变。两个突变被定位到一个名为 sflA(ΔflhFG 的抑制子)的基因,该基因位于 Vibrio sp. strain EX25 基因组的 VEA003730 基因座。该基因是特定于弧菌属的,预测编码具有 DnaJ 结构域的跨膜蛋白。当野生型基因被引入抑制性菌株时,运动性受损。将 sflA 基因的突变版本引入 ΔflhFG 菌株赋予了抑制表型。因此,我们得出结论,sflA 基因的缺失是抑制表型的原因,而野生型 SflA 蛋白在防止极性鞭毛在侧细胞壁上形成方面发挥作用。