Howard D H, Zeuthen M L, Dabrowa N
J Gen Microbiol. 1986 Aug;132(8):2359-66. doi: 10.1099/00221287-132-8-2359.
Some of the phenotypic characteristics of a slow-growing, nongerminating variant of a commonly studied strain of Candida albicans are described. The variant arose as a chance isolate. The rate of occurrence was about 0 X 1% and the reversion rate was about 1 per 10(6) cells. The colony size was typically smaller than that of the parent and the yeast cells tended not to separate from one another so that catenulate strands of cells (pseudohyphae) were formed. Under standard conditions the generation time of the small-colony variant in liquid shake cultures was about twice that of the parental strain. Growth of the variant was suppressed by antimycin A, indicating that the small colony form was not the consequence of a defect in the cytochrome system. The colony size of the variant was not influenced by chlorobenzotriazole, which suggested that adenine metabolism was not involved in the small-colony phenotype. The pseudohyphal growth pattern was not relieved by high concentrations of utilizable carbohydrates, which means the catenulate microscopic appearance of the yeast cells was not simply an exaggeration of the normal growth pattern of isolates of C. albicans but more probably represented the growth of a cell-cycle mutant defective at the cell separation step. The cytoplasmic proteins of the variant and the parent were very similar though some unique peptides were displayed by each.
本文描述了白色念珠菌一种常见研究菌株的缓慢生长、不发芽变体的一些表型特征。该变体是偶然分离得到的。其出现率约为0×1%,回复率约为每10(6)个细胞中有1个。其菌落大小通常比亲本小,酵母细胞往往不相互分离,从而形成链状细胞(假菌丝)。在标准条件下,液体振荡培养中小菌落变体的世代时间约为亲本菌株的两倍。抗霉素A可抑制变体的生长,这表明小菌落形态并非细胞色素系统缺陷的结果。变体的菌落大小不受氯苯三唑的影响,这表明腺嘌呤代谢与小菌落表型无关。高浓度的可利用碳水化合物并不能缓解假菌丝生长模式,这意味着酵母细胞的链状微观形态并非简单地是白色念珠菌分离株正常生长模式的夸大,而更可能代表了在细胞分离步骤存在缺陷的细胞周期突变体的生长。变体和亲本的细胞质蛋白非常相似,尽管各自都显示出一些独特的肽段。