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Microbial communication leading to the activation of silent fungal secondary metabolite gene clusters

机译:微生物交流导致沉默的真菌次级代谢产物基因簇的激活

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摘要

Microorganisms form diverse multispecies communities in various ecosystems. The high abundance of fungal and bacterial species in these consortia results in specific communication between the microorganisms. A key role in this communication is played by secondary metabolites (SMs), which are also called natural products. Recently, it was shown that interspecies “talk” between microorganisms represents a physiological trigger to activate silent gene clusters leading to the formation of novel SMs by the involved species. This review focuses on mixed microbial cultivation, mainly between bacteria and fungi, with a special emphasis on the induced formation of fungal SMs in co-cultures. In addition, the role of chromatin remodeling in the induction is examined, and methodical perspectives for the analysis of natural products are presented. As an example for an intermicrobial interaction elucidated at the molecular level, we discuss the specific interaction between the filamentous fungi Aspergillus nidulans and Aspergillus fumigatus with the soil bacterium Streptomyces rapamycinicus, which provides an excellent model system to enlighten molecular concepts behind regulatory mechanisms and will pave the way to a novel avenue of drug discovery through targeted activation of silent SM gene clusters through co-cultivations of microorganisms.
机译:微生物在各种生态系统中形成了多样的多物种群落。这些联合体中真菌和细菌种类的丰富性导致了微生物之间的特异性通讯。在这种交流中的关键作用是次生代谢产物(SM),也称为天然产物。最近,研究表明,微生物之间的种间“对话”代表一种生理触发,以激活沉默的基因簇,从而导致所涉及物种形成新的SM。这篇综述着重于混合微生物的培养,主要是细菌和真菌之间的混合培养,特别着重于在共培养中诱导形成真菌SM。此外,检查了染色质重塑在诱导中的作用,并提出了分析天然产物的方法学观点。作为在分子水平上阐明的微生物间相互作用的一个例子,我们讨论了丝状真菌构巢曲霉和烟曲霉与土壤细菌雷帕霉素菌的特异性相互作用,这为启发调控机制背后的分子概念提供了一个极好的模型系统,并将为铺平道路。通过微生物的共培养靶向激活沉默的SM基因簇,开辟了一条新的药物发现途径。

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