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威尼克枝孢菌双态性的特征描述。

Characterization of dimorphism in Cladosporium werneckii.

作者信息

Hardcastle R V, Szaniszlo P J

出版信息

J Bacteriol. 1974 Jul;119(1):294-302. doi: 10.1128/jb.119.1.294-302.1974.

Abstract

Yeast forms of the dimorphic fungus Cladosporium werneckii grow by polar budding and yield a homogeneous yeast phase when cultured at 21 C in an agitated sucrose-salts medium (Czapek-Dox broth). Yeast extract enrichment of such a yeast phase consisting of 10(4) yeasts per ml induces a quantitative conversion of the yeasts to true hyphae. This conversion is not mediated by a transition cell and is often attended by capsule formation. When 10(5) or 10(6) yeasts per ml receive enrichment, a nonquantitative conversion to moniliform hyphae is effected and no capsule formation is observed. Rapid agitation compared to slow agitation or stationary incubation of the nutritionally mediated conversion cultures greatly accelerates the production of lateral hyphal buds or their yeast progenies. These cells appear incapable of undergoing nutritional conversion to hyphae, but instead must grow for several generations in the unenriched sucrose-salts medium to restore conversion competence. Temperature shifts affect directly the morphology and morphogenesis of the yeast in unenriched medium; at 17 C yeasts are smaller and more ovoid than at 21 C, and at 30 C marked conversion of yeasts to moniliform hyphae occurs. A methodology employing the Coulter counter and Coulter channelizer provides evidence that direct correlations do not always exist between the optimum conditions for the growth of C. werneckii and the optimum conditions for its yeast-to-mold conversion.

摘要

双态真菌威尼克枝孢菌的酵母形态通过极性出芽生长,当在21℃的搅拌蔗糖盐培养基(察氏肉汤)中培养时会产生均匀的酵母阶段。每毫升含有10⁴个酵母的这种酵母阶段用酵母提取物富集后会诱导酵母定量转化为真正的菌丝。这种转化不是由过渡细胞介导的,并且常常伴随着荚膜形成。当每毫升10⁵或10⁶个酵母接受富集时,会发生非定量转化为念珠状菌丝,且未观察到荚膜形成。与营养介导转化培养物的缓慢搅拌或静止培养相比,快速搅拌极大地加速了侧生菌丝芽或其酵母后代的产生。这些细胞似乎无法进行营养转化为菌丝,而是必须在未富集的蔗糖盐培养基中生长几代才能恢复转化能力。温度变化直接影响未富集培养基中酵母的形态和形态发生;在17℃时酵母比在21℃时更小且更呈卵形,在30℃时酵母会明显转化为念珠状菌丝。一种使用库尔特计数器和库尔特通道分析仪方法提供的证据表明,威尼克枝孢菌生长的最佳条件与其酵母到霉菌转化的最佳条件之间并不总是存在直接相关性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c93e/245601/bc2cf68cc8c8/jbacter00337-0306-a.jpg

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