Molecular and cellular events during the yeast to mycelium transition in Sporothrix schenckii.

S Betancourt, L J Torres-Bauzá, N Rodríguez-Del Valle
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引用次数: 23

Abstract

Unbudded singlets from exponentially growing yeast cells of Sporothrix schenckii were harvested, selected by filtration and allowed to form germ tubes in a basal medium with glucose at pH 4.0 and 25 degrees C. These conditions supported only the development of the mycelial form of S. schenckii in a reproducible manner which allowed further analysis of the early cellular events occurring during the yeast-to-mycelium transition. The relationship between macromolecular synthesis (DNA and RNA synthesis) and nuclear division, hyphal growth and septum formation were investigated during germ tube formation. RNA synthesis started 0 to 3 h after the induction of germ tube formation, followed by DNA synthesis and the first nuclear division, which took place between 3 and 6 h. Germ tube formation followed nuclear division and was first evidenced 6 h after the induction of germ tube formation, but was not completed until 12 h after inoculation. Septation was first observed in these germ tubes at the mother cell-germ tube junction 6 h after induction. Addition of hydroxyurea, an inhibitor of DNA synthesis, to the medium, also inhibited nuclear division and germ tube growth, suggesting that these processes in S. schenckii are dependent upon DNA synthesis.

申氏孢子丝菌酵母向菌丝转化过程中的分子和细胞事件。
从指数生长的申氏孢子丝菌酵母细胞中收获未出芽的单株,通过过滤筛选,并在pH 4.0和25℃的葡萄糖基础培养基中形成芽管。这些条件仅支持申氏孢子丝菌丝形式的可复制发展,从而可以进一步分析酵母到菌丝转变过程中发生的早期细胞事件。研究了胚管形成过程中大分子合成(DNA和RNA合成)与核分裂、菌丝生长和隔膜形成的关系。胚管形成诱导后0 ~ 3 h开始RNA合成,3 ~ 6 h开始DNA合成和第一次核分裂。胚管形成发生在核分裂之后,在胚管形成诱导后6 h开始形成,直到接种后12 h才完成。诱导后6小时,在母细胞-胚管交界处首次观察到分离。在培养基中加入脱氧核糖核酸合成抑制剂羟基脲,也抑制了申氏菌的核分裂和胚管生长,表明这些过程依赖于脱氧核糖核酸合成。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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