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扩展发酵产黄蓝状菌中三孢布拉霉的生产和衍生物组成。

Production and derivate composition of trisporoids in extended fermentation of Blakeslea trispora.

机构信息

Department of Bioorganic Chemistry, Max Planck Institute for Chemical Ecology, Hans-Knöll-Str. 8, 07745, Jena, Germany.

出版信息

Appl Microbiol Biotechnol. 2010 Sep;88(1):241-9. doi: 10.1007/s00253-010-2720-2. Epub 2010 Jul 2.

Abstract

Trisporic acid, its precursors and derivatives are used within zygomycete fungi as communication signals and sexual regulators, and also influence the production rate of the parent compound, beta-carotene. Cultivation parameters during growth and the trisporoid production phase of Blakeslea trispora were studied in two-step shake flask cultures and up-scaled fermentations. Comparison of various fermentation protocols allowed the definition of parameters governing trisporoid production. Highest yields were obtained when the initial growth phase allowed for both rapid growth and fast exhaustion of nitrogen and phosporous sources. Onset of trisporoid production is accompanied by a pH drop in the medium and triggered by nutrient limitation, nitrogen depletion being the most important factor. Supplementation of cultures with carbon at low concentration after onset of trisporoid production led to prolonged growth and higher final product accumulation. B. trispora produces trisporoids in two major series, B and C. During a first peak in trisporic acid accumulation, production of trisporic acid B exceeds that of trisporic acid C, which later accumulates at the expense of the trisporic acid B, indicating a variable regulation of the ratio between these metabolites. These data are valuable for tailoring production systems for enrichment of specific intermediates of this complex signal family.

摘要

三束酸、其前体和衍生物在毛霉真菌中用作通信信号和性调节剂,还影响母体化合物β-胡萝卜素的产率。在两步摇瓶培养和放大发酵中研究了 Blakeslea trispora 的生长和三束菌素生产阶段的培养参数。对各种发酵方案的比较允许定义控制三束菌素生产的参数。当初始生长阶段允许快速生长和快速耗尽氮和磷源时,可获得最高产量。三束菌素生产的开始伴随着培养基中 pH 值下降,并由营养限制触发,氮耗尽是最重要的因素。在三束菌素生产开始后,用低浓度的碳补充培养物会导致生长延长和最终产物积累增加。B. trispora 以两个主要系列 B 和 C 产生三束菌素。在三束酸积累的第一个高峰期间,三束酸 B 的产量超过三束酸 C,后者后来以牺牲三束酸 B 为代价积累,表明这些代谢物之间的比例受到可变调节。这些数据对于定制生产系统以富集这种复杂信号家族的特定中间体非常有价值。

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