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三烯酮合酶基因 tri5 的过表达增加了短小木霉中曲酸霉素的产生和抗菌活性。

Overexpression of the trichodiene synthase gene tri5 increases trichodermin production and antimicrobial activity in Trichoderma brevicompactum.

机构信息

Spanish-Portuguese Centre for Agricultural Research, Department of Microbiology and Genetics, University of Salamanca, Campus of Villamayor, Río Duero 12, Salamanca, Spain.

出版信息

Fungal Genet Biol. 2011 Mar;48(3):285-96. doi: 10.1016/j.fgb.2010.11.012. Epub 2010 Dec 7.

Abstract

Trichoderma brevicompactum produces trichodermin, a simple trichothecene-type toxin that shares the first steps of the sesquiterpene biosynthetic pathway with other phytotoxic trichothecenes from Fusarium spp. Trichodiene synthase catalyses the conversion of farnesyl pyrophosphate to trichodiene and it is encoded by the tri5 gene that was cloned and analysed functionally by homologous overexpression in T. brevicompactum. tri5 expression was up-regulated in media with glucose, H(2)O(2) or glycerol. tri5 repression was observed in cultures supplemented with the antioxidants ferulic acid and tyrosol. Acetone extracts of tri5-overexpressing transformants displayed higher antifungal activity than those from the wild-type. Chromatographic and spectroscopic analyses revealed that tri5 overexpression led to an increased production of trichodermin and tyrosol. Agar diffusion assays with these two purified metabolites from the tri5-overexpressing transformant T. brevicompactum Tb41tri5 showed that only trichodermin had antifungal activity against Saccharomyces cerevisiae, Kluyveromyces marxianus, Candida albicans, Candida glabrata, Candida tropicalis and Aspergillus fumigatus, in most cases such activity being higher than that observed for amphotericin B and hygromycin. Our results point to the significant role of tri5 in the production of trichodermin and in the antifungal activity of T. brevicompactum.

摘要

短小木霉产生的棘白菌素是一种简单的三萜烯型毒素,与镰孢菌属的其他具有植物毒性的三萜烯类化合物共享倍半萜生物合成途径的第一步。曲二烯合酶催化法呢基焦磷酸转化为曲二烯,它由 tri5 基因编码,该基因通过在短小木霉中的同源过表达进行克隆和功能分析。tri5 的表达在含有葡萄糖、H₂O₂或甘油的培养基中上调。在添加抗氧化剂阿魏酸和酪醇的培养基中观察到 tri5 的抑制。与野生型相比,过表达 tri5 的转化体的丙酮提取物显示出更高的抗真菌活性。色谱和光谱分析表明,tri5 的过表达导致棘白菌素和酪醇的产量增加。用来自过表达 tri5 的转化体 T. brevicompactum Tb41tri5 的这两种纯代谢物进行琼脂扩散测定表明,只有棘白菌素对酿酒酵母、马克斯克鲁维酵母、白色念珠菌、光滑念珠菌、热带念珠菌和烟曲霉具有抗真菌活性,在大多数情况下,其活性高于两性霉素 B 和 Hygromycin。我们的结果表明 tri5 在棘白菌素的产生和短小木霉的抗真菌活性中起着重要作用。

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