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在……萌发过程中产生的次生代谢产物 。(原文不完整,翻译可能不太准确,需结合完整内容进一步完善)

Secondary Metabolites Produced during the Germination of .

作者信息

Čihák Matouš, Kameník Zdeněk, Šmídová Klára, Bergman Natalie, Benada Oldřich, Kofroňová Olga, Petříčková Kateřina, Bobek Jan

机构信息

First Faculty of Medicine, Institute of Immunology and Microbiology, Charles University, Prague, Czechia.

Institute of Microbiology, The Czech Academy of Sciences, Prague, Czechia.

出版信息

Front Microbiol. 2017 Dec 13;8:2495. doi: 10.3389/fmicb.2017.02495. eCollection 2017.

Abstract

Spore awakening is a series of actions that starts with purely physical processes and continues via the launching of gene expression and metabolic activities, eventually achieving a vegetative phase of growth. In spore-forming microorganisms, the germination process is controlled by intra- and inter-species communication. However, in the clade, which is capable of developing a plethora of valuable compounds, the chemical signals produced during germination have not been systematically studied before. Our previously published data revealed that several secondary metabolite biosynthetic genes are expressed during germination. Therefore, we focus here on the secondary metabolite production during this developmental stage. Using high-performance liquid chromatography-mass spectrometry, we found that the sesquiterpenoid antibiotic albaflavenone, the polyketide germicidin A, and chalcone are produced during germination of the model streptomycete, . Interestingly, the last two compounds revealed an inhibitory effect on the germination process. The secondary metabolites originating from the early stage of microbial growth may coordinate the development of the producer () and/or play a role in competitive microflora repression () in their nature environments.

摘要

孢子萌发是一系列始于纯粹物理过程并通过启动基因表达和代谢活动持续进行,最终进入营养生长阶段的行为。在形成孢子的微生物中,萌发过程受种内和种间通讯控制。然而,在能够产生大量有价值化合物的进化枝中,此前尚未对萌发过程中产生的化学信号进行系统研究。我们之前发表的数据表明,几个次生代谢物生物合成基因在萌发过程中表达。因此,我们在此聚焦于这一发育阶段的次生代谢物产生情况。通过高效液相色谱 - 质谱联用,我们发现倍半萜抗生素白黄链菌素、聚酮化合物杀菌素A和查耳酮在模式链霉菌的萌发过程中产生。有趣的是,后两种化合物对萌发过程显示出抑制作用。源自微生物生长早期的次生代谢物可能会协调生产者的发育,和/或在其自然环境中对竞争性微生物群落的抑制中发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9ca3/5733532/2ac706107022/fmicb-08-02495-g0001.jpg

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