Gross D C, Vidaver A K
Appl Environ Microbiol. 1978 Dec;36(6):936-43. doi: 10.1128/aem.36.6.936-943.1978.
Bacteriocin-like substances were commonly produced by slow-growing Rhizobium japonicum and cowpea rhizobia on an L-arabinose medium. Antagonism between strains of R. japonicum was not detected in vitro; however, such strains were often sensitive to some bacteriocins produced by cowpea rhizobia. Inhibitory zones (2 to 8 mm from colony margins), produced by 58 of 66 R. japonicum test strains, were reproducibly detected with Corynebacterium nebraskense as an indicator. Quantitative production was not related to symbiotic properties of effective strains, since nine noninfective strains and one ineffective strain produced bacteriocin. Eight R. japonicum strains that did not produce bacteriocin nevertheless formed effective nodules on soybeans. R. japonicum strains that produced bacteriocin in vitro had no antagonistic effect on nonproducer strains during soybean nodulation. Under controlled conditions, a nonproducer (3I1b135) predominated over a bacteriocin producer (3I1b6) when inoculated at 1:1 and 1:9 ratios. Depending on the particular ratio, up to 38% of the total nodules formed were infected with mixed combinations. The bacteriocin(s) had a restricted host range and antibiotic-like properties which included the ability to be dialyzed and resistance to heat (75 to 80 degrees C, 30 min), Pronase, proteinase K, trypsin, ribonuclease, and deoxyribonuclease. R. japonicum strains representing genetic, serological, cultural, and geographic diversity were differentiated into three groups on the basis of bacteriocin production.
类细菌素物质通常由生长缓慢的日本根瘤菌和豇豆根瘤菌在L-阿拉伯糖培养基上产生。在体外未检测到日本根瘤菌菌株之间的拮抗作用;然而,这些菌株通常对豇豆根瘤菌产生的一些细菌素敏感。以内布拉斯加棒状杆菌为指示菌,可重复检测到66株日本根瘤菌测试菌株中的58株产生的抑菌圈(菌落边缘2至8毫米)。定量产生与有效菌株的共生特性无关,因为9株非感染性菌株和1株无效菌株产生了细菌素。8株不产生细菌素的日本根瘤菌菌株在大豆上仍能形成有效的根瘤。在大豆结瘤过程中,体外产生细菌素的日本根瘤菌菌株对不产生细菌素的菌株没有拮抗作用。在受控条件下,当以1:1和1:9的比例接种时,非产生菌(3I1b135)比产生细菌素的菌株(3I1b6)占优势。根据特定比例,多达38%的总根瘤被混合组合感染。该细菌素具有有限的宿主范围和类似抗生素的特性,包括可透析性以及对热(75至80摄氏度,30分钟)、链霉蛋白酶、蛋白酶K、胰蛋白酶、核糖核酸酶和脱氧核糖核酸酶的抗性。根据细菌素的产生情况,代表遗传、血清学、培养和地理多样性的日本根瘤菌菌株被分为三组。