Key Laboratory of Tropical Marine Bio-resources and Ecology, RNAM Center for Marine Microbiology, Guangdong Key Laboratory of Marine Material Medical, South China Sea Institute of Oceanology, Chinese Academy of Sciences, 164 West Xingang Road, Guangzhou, 510301, China.
J Ind Microbiol Biotechnol. 2014 Apr;41(4):741-8. doi: 10.1007/s10295-014-1412-9. Epub 2014 Feb 15.
Marine-derived microbial secondary metabolites are promising potential sources of nontoxic antifouling agents. The search for environmentally friendly and low-toxic antifouling components guided us to investigate the antifouling potentials of eight novel fungal isolates from deep-sea sediments of the South China Sea. Sixteen crude ethyl acetate extracts of the eight fungal isolates showed distinct antibacterial activity against three marine bacteria (Loktanella hongkongensis UST950701-009, Micrococcus luteus UST950701-006 and Pseudoalteromonas piscida UST010620-005), or significant antilarval activity against larval settlement of bryozoan Bugula neritina. Furthermore, the extract of Aspergillus westerdijkiae DFFSCS013 displayed strong antifouling activity in a field trial lasting 4 months. By further bioassay-guided isolation, five antifouling alkaloids including brevianamide F, circumdatin F and L, notoamide C, and 5-chlorosclerotiamide were isolated from the extract of A. westerdijkiae DFFSCS013. This is the first report about the antifouling potentials of metabolites of the deep-sea-derived fungi from the South China Sea, and the first stage towards the development of non- or low-toxic antifouling agents from deep-sea-derived fungi.
海洋来源的微生物次生代谢产物是有前途的无毒防污剂的潜在来源。为了寻找环保且低毒的防污成分,我们研究了南海深海沉积物中分离得到的 8 株新型真菌的防污潜力。这 8 株真菌的 16 种粗乙酸乙酯提取物对 3 种海洋细菌(Loktanella hongkongensis UST950701-009、Micrococcus luteus UST950701-006 和 Pseudoalteromonas piscida UST010620-005)具有明显的抗菌活性,或对藤壶幼虫附着具有显著的抑制作用。此外,aspergillus westerdijkiae DFFSCS013 的提取物在为期 4 个月的野外试验中表现出很强的防污活性。通过进一步的生物活性指导分离,从 A. westerdijkiae DFFSCS013 的提取物中分离到了 5 种具有防污活性的生物碱,包括 brevianamide F、circumdatin F 和 L、notoamide C 和 5-氯鞘氨醇酰胺。这是南海深海来源真菌代谢产物具有防污潜力的首次报道,也是从深海来源真菌中开发非毒性或低毒性防污剂的第一阶段。