Nishihara T, Freese E
J Bacteriol. 1975 Jul;123(1):366-71. doi: 10.1128/jb.123.1.366-371.1975.
The change of motility and the presence of flagella were followed throughout growth and sporulation in a standard sporulating strain and in 19 cacogenic sporulation mutants of Bacillus subtilis. For the standard strain, the fraction of motile cells decreased during the developmental period to less than 10% at T4. Motility was lost well before the cells lose their flagella. Conditions reducing the decrease of motility also reduced sporulation: motile cells never contained spores. The decrease of motility was not coupled with a decrease in the cellular concentration of adenosine 5'-triphosphate or a decline in oxygen consumption, but an uncoupling agent immediately destroyed motility at any time. Apparently, motility decreased during development because it became increasingly uncoupled from the energy generating systems of the cell. The motility of sporulation mutants decreased after the end of growth at the same time as or earlier than the motility of the standard strain; the early decrease of motility in an aconitase mutant, but not that in an alpha-ketoglurate dehydrogenase mutant, could be avoided by addition of L-glutamate. Sporulation or related events such as extracellular antibiotic or protease production were not needed for the motility decline.
在枯草芽孢杆菌的一个标准产孢菌株以及19个致癌产孢突变体的整个生长和产孢过程中,对其运动性变化和鞭毛的存在情况进行了跟踪研究。对于标准菌株,在发育期间,运动性细胞的比例下降,到T4时降至10%以下。运动性在细胞失去鞭毛之前就已丧失。降低运动性下降的条件也会减少产孢:运动性细胞从不含有孢子。运动性的下降与细胞内5'-三磷酸腺苷浓度的降低或耗氧量的下降无关,但一种解偶联剂可在任何时候立即破坏运动性。显然,发育过程中运动性下降是因为它与细胞的能量产生系统越来越解偶联。产孢突变体的运动性在生长结束后下降,与标准菌株的运动性下降时间相同或更早;通过添加L-谷氨酸可以避免乌头酸酶突变体中运动性的早期下降,但α-酮戊二酸脱氢酶突变体中则不能。运动性下降不需要产孢或相关事件,如细胞外抗生素或蛋白酶的产生。