Zelazna-Kowalska I
J Bacteriol. 1977 Oct;132(1):8-12. doi: 10.1128/jb.132.1.8-12.1977.
Rhizobium trifolii B1, a symbiotic nitrogen fixer, is sensitive to streptomycin (10 microgram/ml) and spontaneously produces spheroplast-like forms during cultivation. Streptomycin-resistant mutants selected with high doses of antibiotic (1,000 microgram/ml) showed pleiotropic changes, including loss of spheroplast formation and infectivity to plants, whereas mutants selected with low doses of streptomycin (10 to 100 microgram/ml) retained properties of parent strain B1 (I. Zelazna-Kowalska, Acta Microbiol. Pol., in press). The present studies revealed that strain B1 and its mutant with a high level of streptomycin resistance, B1 strH, accumulated the antibiotic at similar rates. Mutant B1 strL, with a low level of streptomycin resistance (up to 100 microgram/ml), accumulated the antibiotic at a lower rate. Ribosomes isolated from strains B1 and B2 strL bound [3H]dihydrostreptomycin, whereas those from strain B1 strH did not. These observations indicate that, in R. trifolii B1, mutation to a high level of streptomycin resistance affects ribosomal structure, whereas low-level resistance involves a change in membrane permeability.
三叶草根瘤菌B1是一种共生固氮菌,对链霉素敏感(10微克/毫升),在培养过程中会自发产生类原生质体形态。用高剂量抗生素(1000微克/毫升)筛选出的链霉素抗性突变体表现出多效性变化,包括失去原生质体形成能力和对植物的感染性,而用低剂量链霉素(10至100微克/毫升)筛选出的突变体保留了亲本菌株B1的特性(I. 泽拉兹娜 - 科瓦尔斯卡,《波兰微生物学报》,即将发表)。目前的研究表明,菌株B1及其具有高水平链霉素抗性的突变体B1 strH以相似的速率积累抗生素。具有低水平链霉素抗性(高达100微克/毫升)的突变体B1 strL积累抗生素的速率较低。从菌株B1和B1 strL分离出的核糖体结合了[3H]双氢链霉素,而从菌株B1 strH分离出的核糖体则没有。这些观察结果表明,在三叶草根瘤菌B1中,向高水平链霉素抗性的突变会影响核糖体结构,而低水平抗性则涉及膜通透性的变化。