Institute of Marine Drugs, Guangxi Key Laboratory of Marine Drugs, Guangxi University of Chinese Medicine, Nanning 530200, China.
J Zhejiang Univ Sci B. 2023 Mar 15;24(3):275-280. doi: 10.1631/jzus.B2200622.
Marine microorganisms, especially marine fungi, have historically proven their value as a prolific source for structurally novel and pharmacologically active secondary metabolites (Deshmukh et al., 2018; Carroll et al., 2022). The corals constitute a dominant part of reefs with the highest biodiversity, and harbor highly diverse and abundant microbial symbionts in their tissue, skeleton, and mucus layer, with species-specific core members that are spatially partitioned across coral microhabitats (Wang WQ et al., 2022). The coral-associated fungi were very recently found to be vital producers of structurally diverse compounds, terpenes, alkaloids, peptides, aromatics, lactones, and steroids. They demonstrate a wide range of bioactivity such as anticancer, antimicrobial, and antifouling activity (Chen et al., 2022). The genetically powerful genus Emericella (Ascomycota), which has marine and terrestrial sources, includes over 30 species and is distributed worldwide. It is considered a rich source of diverse secondary metabolites with antimicrobial activity or cytotoxicity (Alburae et al., 2020). Notably, Emericella nidulans, the sexual state of a classic biosynthetic strain Aspergillus nidulans, was recently reported as an important source of highly methylated polyketides (Li et al., 2019) and isoindolone-containing meroterpenoids (Zhou et al., 2016) with unusual skeletons.
海洋微生物,尤其是海洋真菌,历史上已被证明是结构新颖且具有药理活性的次生代谢产物的丰富来源(Deshmukh 等人,2018 年;Carroll 等人,2022 年)。珊瑚构成了生物多样性最高的珊瑚礁的主要部分,并在其组织、骨骼和粘液层中拥有高度多样和丰富的微生物共生体,具有特定物种的核心成员,这些成员在珊瑚微生境中具有空间分隔(Wang WQ 等人,2022 年)。最近发现,与珊瑚相关的真菌是结构多样的化合物、萜类化合物、生物碱、肽、芳烃、内酯和甾体的重要生产者。它们表现出广泛的生物活性,如抗癌、抗菌和抗污活性(Chen 等人,2022 年)。具有海洋和陆地来源的遗传强大属节菱孢属(子囊菌门),包含超过 30 个物种,分布于全球各地。它被认为是具有抗菌活性或细胞毒性的多种次生代谢产物的丰富来源(Alburae 等人,2020 年)。值得注意的是,节菱孢属的有性状态,即经典生物合成菌株 Aspergillus nidulans 的性状态,最近被报道为高度甲基化聚酮(Li 等人,2019 年)和含有异吲哚酮的混合单萜类化合物(Zhou 等人,2016 年)的重要来源,这些化合物具有不寻常的骨架。