Collins A L, Stocker B A
J Bacteriol. 1976 Dec;128(3):754-65. doi: 10.1128/jb.128.3.754-765.1976.
The mutations of eight chemotaxis-deficient strains of Salmonella typhimurium, including five new mutants in strain LT2, were mapped by P22 transduction in relation to various fla mot deletions in S. abortus-equi. Seven recessive che mutations mapped between motB and flaC: three, all nontumbling, the che region I, adjacent to motB, and four, including one ever-tumbling, in che region II, adjacent to flaC. Mutant che-107, never-tumbling and dominant to wild type, mapped at flaAII, other mutations of which cause either absence of flagella or lack of locomotor function. We surmise that gene flaAII specifies a protein that polymerizes to form an essential component of the basal apparatus (so that absence of gene product prevents formation of flagela); that a component built up from certain mutationally altered proteins cannot transmit (or generate) active rotation of the hook and flagellum, and so causes the Mot (paralysis) phenyotype; and that a component built up from protein with the che-107 alteration permits only counterclockwise rotation, so that the tumble, normally produced by transient clockwise rotation, cannot be effected.
鼠伤寒沙门氏菌8个趋化缺陷菌株的突变,包括LT2菌株中的5个新突变体,通过P22转导相对于马流产沙门氏菌中的各种鞭毛缺失进行了定位。7个隐性che突变位于motB和flaC之间:3个,均为不翻滚型,位于与motB相邻的che区域I,4个,包括1个持续翻滚型,位于与flaC相邻的che区域II。突变体che-107从不翻滚且对野生型呈显性,定位于flaAII,flaAII的其他突变会导致鞭毛缺失或运动功能丧失。我们推测基因flaAII指定一种聚合形成基部装置必需成分的蛋白质(因此基因产物的缺失会阻止鞭毛的形成);由某些突变改变的蛋白质组成的成分不能传递(或产生)钩和鞭毛的主动旋转,从而导致Mot(麻痹)表型;由具有che-107改变的蛋白质组成的成分仅允许逆时针旋转,因此通常由短暂顺时针旋转产生的翻滚无法实现。