Fukuda A, Iba H, Okada Y
J Bacteriol. 1977 Jul;131(1):280-7. doi: 10.1128/jb.131.1.280-287.1977.
A stalk, a single falgellum, several pili, and deoxyribonucleic acid (DNA) phage receptors are polar surface structures expressed at a defined time in the Caulobacter crescentus cell cycle. When mutants were isolated as DNA phage phiCbK-resistant or ribonucleic acid (RNA) phage phiCp2-resistant, as well as nonmotile, strains, 5 out of 30 such mutant isolates were found not to possess stalks, but did possess inactive flagella. These stalkless mutants were resistant simultaneously to both DNA and RNA phages and did not possess pili and DNA pendent stalkless mutants. All motile revertants simultaneously regained the capacity to form stalks and susceptibility to DNA and RNA phages. It is suggested that a single mutation pleiotropically affects stalk formation, flagella motility, and coordinate polar morphogenesis of pili and DNA phage receptors. The stalkless mutants grew at a generation time similar to that of the wild-type strain at 30 degrees C. Cell size and morphology of a stalkless mutant, C. crescentus CB13 pdr-819, were also similar to those of the wild-type strain, except for the absence of a stalk. In addition, the CB13 pdr-819 predivisional cells were partitioned into smaller and larger portions, indicating asymmetrical cell division, as in the wild-type strain. From these results, it is suggested that swarmer cells undergo transition to cells of a stalked-cell nature without stalk formation and that the cell cycle of the stalkless mutant proceeds in an ordered sequence similar to that defining the wild-type cell cycle.
柄、单根鞭毛、几根菌毛以及脱氧核糖核酸(DNA)噬菌体受体是新月柄杆菌细胞周期中在特定时间表达的极性表面结构。当分离出对DNA噬菌体phiCbK或核糖核酸(RNA)噬菌体phiCp2具有抗性以及无运动能力的突变菌株时,在30个此类突变分离株中有5个被发现没有柄,但确实有不活动的鞭毛。这些无柄突变体同时对DNA和RNA噬菌体具有抗性,并且不具有菌毛和DNA悬垂的无柄突变体。所有运动回复体同时恢复了形成柄的能力以及对DNA和RNA噬菌体的敏感性。有人提出,单个突变多效性地影响柄的形成、鞭毛运动以及菌毛和DNA噬菌体受体的协调极性形态发生。无柄突变体在30℃下的代时与野生型菌株相似。无柄突变体新月柄杆菌CB13 pdr - 819的细胞大小和形态也与野生型菌株相似,只是没有柄。此外,CB13 pdr - 819的前分裂细胞被分成较小和较大的部分,表明存在不对称细胞分裂,这与野生型菌株一样。从这些结果表明,游动细胞在不形成柄的情况下转变为有柄细胞性质的细胞,并且无柄突变体的细胞周期以类似于定义野生型细胞周期的有序序列进行。