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早晚期三孢布拉霉属真菌(Blakeslea trispora)和毛霉(Mucor mucedo)中β-胡萝卜素的产生和基因转录水平受其差异调控。

Early and late trisporoids differentially regulate β-carotene production and gene transcript Levels in the mucoralean fungi Blakeslea trispora and Mucor mucedo.

机构信息

Department of Bioorganic Chemistry, Max Planck Institute for Chemical Ecology, Jena, Germany.

出版信息

Appl Environ Microbiol. 2013 Dec;79(23):7466-75. doi: 10.1128/AEM.02096-13. Epub 2013 Sep 20.

Abstract

The multistep cleavage of carotenoids in Mucorales during the sexual phase results in a cocktail of trisporic acid (C18) sex pheromones. We hypothesized that the C18 trisporoid intermediates have a specific regulatory function for sex pheromone production and carotenogenesis that varies with genus/species and vegetative and sexual phases of their life cycles. Real-time quantitative PCR kinetics determined for Blakeslea trispora displayed a very high transcript turnover in the gene for carotenoid cleavage dioxygenase, tsp3, during the sexual phase. An in vivo enzyme assay and chromatographic analysis led to the identification of β-apo-12'-carotenal as the first apocarotenoid involved in trisporic acid biosynthesis in B. trispora. Supplementation of C18 trisporoids, namely D'orenone, methyl trisporate C, and trisporin C, increased tsp3 transcripts in the plus compared to minus partners. Interestingly, the tsp1 gene, which is involved in trisporic acid biosynthesis, was downregulated compared to tsp3 irrespective of asexual or sexual phase. Only the minus partners of both B. trispora and Mucor mucedo had enhanced β-carotene production after treatment with C20 apocarotenoids, 15 different trisporoids, and their analogues. We conclude that the apocarotenoids and trisporoids influence gene transcription and metabolite production, depending upon the fungal strain, corresponding genus, and developmental phase, representing a "chemical dialect" during sexual communication.

摘要

在有性生殖阶段,毛霉目真菌中的类胡萝卜素经历多步裂解,产生三孢布拉霉酸(C18)性信息素混合物。我们假设 C18 三孢烯中间产物在性信息素产生和类胡萝卜素生物合成方面具有特定的调控功能,这种功能因属/种以及其生命周期的营养和有性阶段而异。实时定量 PCR 动力学研究显示,在有性生殖阶段,裂殖壶菌中的类胡萝卜素裂解双加氧酶基因 tsp3 的转录本周转率非常高。体内酶测定和色谱分析鉴定出β-apo-12'-胡萝卜醛是裂殖壶菌中三孢烯酸生物合成中涉及的第一个脱辅基类胡萝卜素。C18 三孢烯酸,即 D'orenone、甲基三孢原酸 C 和三孢菌素 C 的添加增加了有性生殖相与无性生殖相相比下的 tsp3 转录本。有趣的是,参与三孢烯酸生物合成的 tsp1 基因的表达水平与 tsp3 相比被下调,而与营养或有性阶段无关。只有裂殖壶菌和粘帚霉的无性相和有性相的负相伙伴在用 C20 脱辅基类胡萝卜素、15 种不同的三孢烯酸及其类似物处理后,β-胡萝卜素的产量增加。我们得出的结论是,脱辅基类胡萝卜素和三孢烯酸会影响基因转录和代谢产物的产生,这取决于真菌菌株、相应的属和发育阶段,代表了性交流中的“化学方言”。

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