Perry D
J Bacteriol. 1968 Jan;95(1):132-8. doi: 10.1128/jb.95.1.132-138.1968.
Several resistant mutants of a transformable group H streptococcus, strain Challis, were isolated from media containing high concentrations of streptomycin. Mutants SR5a and SR5 exhibited high and low transformability, respectively, when exposed to deoxyribonucleic acid (DNA) from a novobiocin-resistant Challis strain. With similar exposure, mutant SR30 exhibited loss of transformability. The mutants further differed from the parent strain in time of appearance of optimal competence, and, in the case of SR5 and SR30, total growth was somewhat less than that of the parent. The rapidity with which transformants appeared upon initial exposure to DNA was approximately the same in the mutants and the parent strain. The decrease or loss of transformability of mutants SR5 and SR30 was found to be due to an alteration in capacity to take up DNA. Mutant SR5a (highly transformable) was further differentiated from mutants SR5 and SR30 in that it was somewhat more sensitive to high concentrations of streptomycin. Transformants obtained by treating strain Challis with the three types of mutant DNA, on the other hand, exhibited similar degrees of resistance to increasing concentrations of streptomycin. The additional decrease in transforming ability of mutant SR5a and the loss of transforming ability of mutant SR5 after a second exposure to streptomycin may indicate a stepwise process in the change from transformability to nontransformability. Although streptomycin resistance may not be directly related to inability to transform, results indicate that streptomycin greatly increases the chances of selecting these mutants and also can be of value in serving as a marker in studies of this nature.
从含有高浓度链霉素的培养基中分离出了可转化的B群链球菌Challis菌株的几种抗性突变体。当暴露于来自新霉素抗性Challis菌株的脱氧核糖核酸(DNA)时,突变体SR5a和SR5分别表现出高和低的转化能力。在类似的暴露条件下,突变体SR30表现出转化能力的丧失。这些突变体在最佳感受态出现的时间上也与亲本菌株不同,并且就SR5和SR30而言,其总生长量略低于亲本。在最初暴露于DNA后转化体出现的速度在突变体和亲本菌株中大致相同。发现突变体SR5和SR30转化能力的降低或丧失是由于摄取DNA的能力发生了改变。突变体SR5a(高度可转化)与突变体SR5和SR30的进一步区别在于它对高浓度链霉素更敏感。另一方面,用三种类型的突变体DNA处理Challis菌株获得的转化体对增加浓度的链霉素表现出相似程度的抗性。突变体SR5a转化能力的进一步降低以及突变体SR5在第二次暴露于链霉素后转化能力的丧失可能表明从可转化性到不可转化性的变化是一个逐步的过程。虽然链霉素抗性可能与无法转化没有直接关系,但结果表明链霉素大大增加了选择这些突变体的机会,并且在这类研究中作为标记也可能有价值。