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海洋真菌 sp. 与植物病原菌共培养诱导异chromanones 的产生

Induction of Isochromanones by Co-Cultivation of the Marine Fungus sp. and the Phytopathogen  .

机构信息

GEOMAR Centre for Marine Biotechnology (GEOMAR-Biotech), Research Unit Marine Natural Product Chemistry, GEOMAR Helmholtz Centre for Ocean Research Kiel, Am Kiel-Kanal 44, 24106 Kiel, Germany.

Dipartimento di Farmacia, Università degli Studi di Napoli Federico II, via Domenico Montesano 49, 80131 Napoli, Italy.

出版信息

Int J Mol Sci. 2022 Jan 11;23(2):782. doi: 10.3390/ijms23020782.

Abstract

Microbial co-cultivation is a promising approach for the activation of biosynthetic gene clusters (BGCs) that remain transcriptionally silent under artificial culture conditions. As part of our project aiming at the discovery of marine-derived fungal agrochemicals, we previously used four phytopathogens as model competitors in the co-cultivation of 21 marine fungal strains. Based on comparative untargeted metabolomics analyses and anti-phytopathogenic activities of the co-cultures, we selected the co-culture of marine sp. with the phytopathogen for in-depth chemical studies. UPLC-MS/MS-based molecular networking (MN) of the co-culture extract revealed an enhanced diversity of compounds in several molecular families, including isochromanones, specifically induced in the co-culture. Large scale co-cultivation of sp. and   resulted in the isolation of five isochromanones from the whole co-culture extract, namely the known soudanones A, E, D (-) and their two new derivatives, soudanones H-I (-), the known isochromans, pseudoanguillosporins A and B (, ), naphtho--pyrones, cephalochromin and ustilaginoidin G (, ), and ergosterol (). Their structures were established by NMR, HR-ESIMS, FT-IR, electronic circular dichroism (ECD) spectroscopy, polarimetry ([α]), and Mosher's ester reaction. Bioactivity assays revealed antimicrobial activity of compounds and against the phytopathogens and , while pseudoanguillosporin A () showed the broadest and strongest anti-phytopathogenic activity against , , and . This is the first study assessing the anti-phytopathogenic activities of soudanones.

摘要

微生物共培养是一种很有前途的方法,可以激活在人工培养条件下转录沉默的生物合成基因簇(BGCs)。作为我们旨在发现海洋来源真菌农用化学品项目的一部分,我们以前使用了四种植物病原菌作为 21 株海洋真菌菌株共培养的模型竞争者。基于比较非靶向代谢组学分析和共培养物的抗植物病原菌活性,我们选择了海洋 sp.与植物病原菌的共培养物进行深入的化学研究。共培养物提取物的基于 UPLC-MS/MS 的分子网络(MN)分析显示,在包括异苯并呋喃酮在内的几个分子家族中,化合物的多样性增强,特别是在共培养物中诱导产生。海洋 sp.和  的大规模共培养从整个共培养物提取物中分离出五种异苯并呋喃酮,即已知的苏丹酮 A、E、D(-)及其两个新衍生物,苏丹酮 H-I(-),已知的异苯并呋喃,假anguillosporins A 和 B(,),萘并吡喃酮,cephalochromin 和 ustilaginoidin G(,)和麦角固醇()。它们的结构通过 NMR、HR-ESIMS、FT-IR、电子圆二色性(ECD)光谱、旋光度([α])和 Mosher 酯反应确定。生物活性测定显示化合物 和 对植物病原菌 和 具有抗菌活性,而 pseudoanguillosporin A () 对 、 、 和 显示出最广泛和最强的抗植物病原菌活性。这是首次评估苏丹酮的抗植物病原菌活性的研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/74eb/8775470/7dff566e34f4/ijms-23-00782-g001.jpg

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