Bao Meiyan, Shi Ying, Gong Xiaoyi, Guo Yutong, Wang Jing, Chen Xiaofei, Liu Ling
State Key Laboratory of Microbial Diversity and Innovative Utilization, Institute of Microbiology, Chinese Academy of Sciences, Beijing, China.
College of Life Sciences, University of Chinese Academy of Sciences, Beijing, China.
Mycology. 2025 Jul 11;16(3):961-987. doi: 10.1080/21501203.2025.2526772. eCollection 2025.
Fungi have been recognised as a prolific source of structurally unique secondary metabolites with promising pharmacological properties. This review comprehensively summarises the chemical architectures, bioactivities, and research strategies for new fungal-derived natural products, focusing on representative studies published in 2024. A total of 907 novel fungal-derived compounds are systematically cataloged (isomers are also contained in the total count), including 284 polyketides, 362 terpenoids, 28 steroids, 108 alkaloids, 75 peptides, and 50 glycosides, while highlighting cutting-edge methodologies such as metabolomics-guided discovery platforms and biosynthetic pathway engineering. By establishing connections between chemical novelty and therapeutic value, this review not only provides strategic guidance for fungal chemical diversity exploration but also illuminates their transformative potential in overcoming drug discovery bottlenecks.
真菌已被公认为是结构独特的次生代谢产物的丰富来源,具有良好的药理特性。本综述全面总结了新型真菌来源天然产物的化学结构、生物活性和研究策略,重点关注2024年发表的代表性研究。共系统编目了907种新型真菌来源化合物(总数中也包含异构体),包括284种聚酮化合物、362种萜类化合物、28种甾体、108种生物碱、75种肽和50种糖苷,同时突出了代谢组学引导的发现平台和生物合成途径工程等前沿方法。通过建立化学新颖性与治疗价值之间的联系,本综述不仅为真菌化学多样性探索提供了战略指导,还阐明了它们在克服药物发现瓶颈方面的变革潜力。