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Rapid Metabolome and Bioactivity Profiling of Fungi Associated with the Leaf and Rhizosphere of the Baltic Seagrass Zostera marina

机译:与波罗的海草Zostera滨海的叶片和根际相关的真菌的快速代谢和生物活性分析

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摘要

Zostera marina (eelgrass) is a marine foundation species with key ecological roles in coastal habitats. Its bacterial microbiota has been well studied, but very little is known about its mycobiome. In this study, we have isolated and identified 13 fungal strains, dominated by Penicillium species (10 strains), from the leaf and the root rhizosphere of Baltic Z. marina. The organic extracts of the fungi that were cultured by an OSMAC (One-Strain–Many-Compounds) regime using five liquid culture media under both static and shaking conditions were investigated for their chemical and bioactivity profiles. All extracts showed strong anti-quorum sensing activity, and the majority of the Penicillium extracts displayed antimicrobial or anti-biofilm activity against Gram-negative environmental marine and human pathogens. HPLC-DAD-MS-based rapid metabolome analyses of the extracts indicated the high influence of culture conditions on the secondary metabolite (SM) profiles. Among 69 compounds detected in all Penicillium sp. extracts, 46 were successfully dereplicated. Analysis of SM relatedness in culture conditions by Hierarchical Cluster Analysis (HCA) revealed generally low similarity and showed a strong effect of medium selection on chemical profiles of Penicillium sp. This is the first study assessing both the metabolite and bioactivity profile of the fungi associated with Baltic eelgrass Z. marina.
机译:Zostera marina(鳗草)是一种海洋基础物种,在沿海生境中具有重要的生态作用。已经对其细菌微生物群进行了充分的研究,但对其菌群的了解却很少。在这项研究中,我们从波罗的海滨海蓝藻的叶子和根际根中分离并鉴定出13种以青霉菌种为主的真菌菌株(10个菌株)。研究了在静态和摇动条件下使用五种液体培养基通过OSMAC(单株-多种化合物)方法培养的真菌的有机提取物的化学和生物活性。所有提取物均显示出强大的抗群体感应活性,大多数青霉提取物均显示出对革兰氏阴性环境海洋和人类病原体的抗菌或抗生物膜活性。基于HPLC-DAD-MS的提取物快速代谢组分析表明,培养条件对次生代谢物(SM)谱图的影响很大。在所有青霉菌中检测到的69种化合物中。提取物,成功地重复复制了46个。通过层次聚类分析(HCA)分析培养条件下的SM相关性通常显示出较低的相似性,并且显示了培养基选择对青霉菌化学特征的强烈影响。这是第一项评估与波罗的海鳗Z. marina相关的真菌的代谢物和生物活性特征的研究。

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