Magariyama Y, Sugiyama S, Kudo S
National Food REsearch Institute, Tsukuba, Japan.
FEMS Microbiol Lett. 2001 May 15;199(1):125-9. doi: 10.1111/j.1574-6968.2001.tb10662.x.
Swimming speed (v) and flagellar-bundle rotation rate (f) of Salmonella typhimurium, which has peritrichous flagella, were simultaneously measured by laser dark-field microscopy (LDM). Clear periodic changes in the LDM signals from a rotating bundle indicated in-phase rotation of the flagella in the bundle. A roughly linear relation between v and f was observed, though the data points were widely distributed. The ratio of v to f (v-f ratio), which indicates the propulsive distance during one flagellar rotation, was 0.27 microm (11% of the flagellar pitch) on average. The experimental v-f ratio was twice as large as the calculated one on the assumption that a cell had a single flagellum. A flagellar bundle was considered to propel a cell more efficiently than a single flagellum.
通过激光暗场显微镜(LDM)同时测量了具有周生鞭毛的鼠伤寒沙门氏菌的游泳速度(v)和鞭毛束旋转速率(f)。来自旋转鞭毛束的LDM信号呈现出明显的周期性变化,表明鞭毛束中的鞭毛同步旋转。尽管数据点分布广泛,但观察到v与f之间大致呈线性关系。v与f的比值(v-f比值),即一次鞭毛旋转期间的推进距离,平均为0.27微米(鞭毛螺距的11%)。实验得到的v-f比值是假设细胞只有一根鞭毛时计算值的两倍。人们认为鞭毛束比单根鞭毛能更有效地推动细胞。