Ramsey W S, Dworkin M
J Bacteriol. 1968 Jun;95(6):2249-57. doi: 10.1128/jb.95.6.2249-2257.1968.
Germination of glycerol-prepared microcysts of Myxococcus xanthus was studied. The sequence of morphological events during germination resembled that of germinating fruiting body-microcysts. The turbidity drop of a culture of germinating microcysts could be described by McCormick's formula derived for germinating Bacillus spores. The rate of uptake of labeled glycine and acetate did not change during germination. Temperature, aeration, and pH optima for germination were the same as for vegetative cell growth. Germination was induced by protein hydrolysates and the individual amino acids glycine, alanine, valine, aspartic acid, and glutamic acid. A number of organic compounds, including sugars, alcohols, aldehydes, ketones, organic acids, and chelating agents, did not induce germination. The inorganic ions HPO(4) (2-), Mg(++), Ca(++), and NH(4) (+) induced germination, although ionic strength was not a factor. Microcysts incubated in distilled water at concentrations greater than about 10(9) cells/ml germinated; supernatant fluid from such suspensions (germination factor) induced germination of less concentrated suspensions. The activity of germination factor was resistant to boiling, but was lost on charring and dialysis. Germination of microcysts and growth of vegetative cells was equally sensitive to a variety of metabolic inhibitors, including penicillin and chloramphenicol. Germination was more resistant than vegetative growth to inhibition by antibiotics of the streptomycin family and by actinomycin D.
对甘油制备的黄色粘球菌微囊肿的萌发进行了研究。萌发过程中形态学事件的顺序类似于萌发的子实体微囊肿。萌发微囊肿培养物的浊度下降可用麦考密克为芽孢杆菌孢子萌发推导的公式来描述。在萌发过程中,标记甘氨酸和乙酸盐的摄取速率没有变化。萌发的温度、通气和pH最适值与营养细胞生长的相同。蛋白质水解产物以及甘氨酸、丙氨酸、缬氨酸、天冬氨酸和谷氨酸等单个氨基酸可诱导萌发。包括糖、醇、醛、酮、有机酸和螯合剂在内的许多有机化合物不能诱导萌发。无机离子HPO(4) (2-)、Mg(++)、Ca(++)和NH(4) (+)可诱导萌发,尽管离子强度不是一个因素。在蒸馏水中以大于约10(9)个细胞/毫升的浓度孵育的微囊肿会萌发;这种悬浮液的上清液(萌发因子)可诱导浓度较低的悬浮液萌发。萌发因子的活性对煮沸有抗性,但在炭化和透析时会丧失。微囊肿的萌发和营养细胞的生长对包括青霉素和氯霉素在内的多种代谢抑制剂同样敏感。萌发比营养生长对链霉素家族抗生素和放线菌素D的抑制更具抗性。