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首页|pH响应转录因子PacC调控灵芝菌丝生长、子实体发育和灵芝酸生物合成

pH响应转录因子PacC调控灵芝菌丝生长、子实体发育和灵芝酸生物合成

he pH-responsive transcription factor PacC regulates mycelial growth, fruiting body development and ganoderic acid biosynthesis in Ganoderma lucidum

中文摘要英文摘要

灵芝(Ganoderma lucidum)作为我国传统的名贵中药材,其重要化学成分灵芝酸因具有重要的生理活性,但是,目前灵芝中灵芝酸含量较低,极大的限制了它在药物开发方面的应用。本研究通过克隆响应环境变化的PacC基因,发现该基因具有3个典型的C2H2锌指结构域,2个PEST结构域,能够响应环境pH等条件的变化,在中性和碱性条件下具有较高的表达水平。在此基础上,通过应用基因表达调控技术,发现该基因对灵芝酸生物合成途径中的关键酶基因转录水平,中间代谢产物,灵芝酸含量均具有重要的调控作用;同时,发现该基因表达水平的下调,显著影响了灵芝子实体的形成。这些结果说明该基因对灵芝菌丝生长,次级代谢产物的生物合成,子实体形成等方面具有重要的调控作用。本研究进一步加深了人们对灵芝生长发育和灵芝酸生物合成分子机制的认识。

Ganoderma lucidum is a medicinal macrofungus that is widely used in traditional Chinese medicine. Nonetheless, the scarcity of basic biological studies of this organism has hindered the further development of its commercial value. The pH-responsive transcription factor PacC/Rim101 governs the adaptation to environmental pH, the development and the secondary metabolism of many fungi. In this study, a homologue of PacC/Rim101 that encodes GlPacC was identified in the higher basidiomycete G. lucidum. GlPacC is composed of 807 amino acids and contains three typical C2H2 zinc-finger domains, two potential PEST domains, a putative PKA phosphorylation site and a putative nuclear localization signal (NLS). GlPacC was transcribed at a high level when the fungus was under neutral and alkaline conditions, and silencing of GlPacC impaired the fungal response to ambient pH. The distance between the hyphal branches (of vegetative hyphae and aerial hyphae) was significantly increased in the GlPacC-silenced strains. The GlPacC-silenced strains grew abnormally or became sickly on solid culture medium and were unable to form primordia and fruiting bodies. The ganoderic acid content, levels of the sqs and ls transcripts, and contents of the metabolic intermediates squalene and lanosterol were all up-regulated in the GlPacC-silenced strains. Our results indicate that GlPacC is functional and plays complex roles in mycelial growth, fruiting body development and ganoderic acid biosynthesis in G. lucidum.

吴凤礼、赵明文、师亮

基础医学生物化学分子生物学

微生物学RNA干扰菌丝分叉次级代谢有性发育灵芝酸

hyphal branching macrofungi RNA interference secondary metabolism sexual development ganoderic acid

吴凤礼,赵明文,师亮.pH响应转录因子PacC调控灵芝菌丝生长、子实体发育和灵芝酸生物合成[EB/OL].(2016-10-20)[2025-08-02].http://www.paper.edu.cn/releasepaper/content/201610-126.点此复制

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