Fujinami Shun, Terahara Naoya, Lee Sunmi, Ito Masahiro
Graduate School of Life Sciences, Toyo University, 1-1-1 Izumino, Itakura-machi, Oura-gun, Gunma 374-0193, Japan.
Arch Microbiol. 2007 Mar;187(3):239-47. doi: 10.1007/s00203-006-0192-7. Epub 2006 Dec 13.
Flagella-based motility of extremely alkaliphilic Bacillus species is completely dependent upon Na(+). Little motility is observed at pH values < approximately 8.0. Here we examine the number of flagella/cell as a function of growth pH in the facultative alkaliphile Bacillus pseudofirmus OF4 and a derivative selected for increased motility on soft agar plates. Flagella were produced by both strains during growth in a pH range from 7.5 to 10.3. The number of flagella/cell and flagellin levels of cells were not strongly dependent on growth pH over this range in either strain although both of these parameters were higher in the up-motile strain. Assays of the swimming speed indicated no motility at pH < 8 with 10 mM Na(+), but significant motility at pH 7 at much higher Na(+) concentrations. At pH 8-10, the swimming speed increased with the increase of Na(+) concentration up to 230 mM, with fastest swimming at pH 10. Motility of the up-motile strain was greatly increased relative to wild-type on soft agar at alkaline pH but not in liquid except when polyvinylpyrrolidone was added to increase viscosity. The up-motile phenotype, with increased flagella/cell may support bundle formation that particularly enhances motility under a subset of conditions with specific challenges.
极端嗜碱芽孢杆菌基于鞭毛的运动性完全依赖于Na⁺。在pH值<约8.0时观察到的运动性很低。在这里,我们研究了兼性嗜碱芽孢杆菌OF4及其在软琼脂平板上选择的用于增强运动性的衍生物中,每细胞鞭毛数量与生长pH值的关系。在pH范围为7.5至10.3的生长过程中,两种菌株均产生鞭毛。在此范围内,两种菌株中每细胞的鞭毛数量和细胞的鞭毛蛋白水平均不强烈依赖于生长pH值,尽管这两个参数在向上运动的菌株中更高。游泳速度测定表明,在pH<8且Na⁺浓度为10 mM时没有运动性,但在更高的Na⁺浓度下,pH为7时有明显的运动性。在pH 8 - 10时,游泳速度随着Na⁺浓度增加至230 mM而增加,在pH 10时游泳速度最快。在碱性pH条件下,向上运动菌株在软琼脂上的运动性相对于野生型大大增加,但在液体中没有增加,除非添加聚乙烯吡咯烷酮以增加粘度。每细胞鞭毛增加的向上运动表型可能支持束状形成,这在特定挑战的条件子集中特别增强运动性。