Kristiana Rhesi, Cahyani Ni Kadek Dita, Jin Yang, Mudianta I Wayan, Putri Fadillaisyia Riandani, Halisah Kharisma Ayu Zeina, Wang Meng-Xue, Guo Yue-Wei, Li Xu-Wen, Radjasa Ocky Karna
MERO Foundation (Indonesian Marine Education and Research Organisation), Karangasem, Bali, Indonesia.
Biology Department, Faculty of Science and Mathematics, Diponegoro University, Semarang, Indonesia.
Curr Res Microb Sci. 2025 Jul 24;9:100448. doi: 10.1016/j.crmicr.2025.100448. eCollection 2025.
Marine-associated bacteria serve as a significant source of bioactive natural products for drug discovery efforts. The microbial symbionts of heterobranchs and their prey represent a promising source of bioactive compounds with potential applications as pharmaceutical agents. This study aimed to evaluate the diversity of associated microbes of heterobranchs and their prey that were obtained from one of marine biodiversity hotspots. The next step involved employing in vitro antibacterial screening of the organic extracts of the bacterial strains to determine the most potent ones. Microbiome study revealed that had the most diverse microbiome, with Proteobacteria and Firmicutes bacterial taxa predominating among six heterobranchia samples. A total of 46 bacterial strains and 243 actinobacterial strains have been isolated from six nudibranchs and their prey sources. Next, sp., a symbiont from the sponge prey, exhibited the most promising antibacterial. Subsequent chromatographic purification revealed the presence of three known cyclic dipeptides: cyclo(Leu-Pro) (), cyclo(Phe-Pro) (), and cyclo(phenylalanine-4‑hydroxy-proline) (), along with an indazole in the extract of sp. All the metabolites have never been reported from this symbiont bacteria associated to the organisms examined in this study.
与海洋相关的细菌是药物研发中生物活性天然产物的重要来源。异鳃类动物及其猎物的微生物共生体是具有潜在药用价值的生物活性化合物的一个有前景的来源。本研究旨在评估从一个海洋生物多样性热点地区获取的异鳃类动物及其猎物的相关微生物的多样性。下一步是对细菌菌株的有机提取物进行体外抗菌筛选,以确定最有效的菌株。微生物组研究表明,在六个异鳃类动物样本中, 具有最多样化的微生物组,其中变形菌门和厚壁菌门细菌类群占主导地位。已从六种裸鳃亚目动物及其猎物来源中分离出总共46株细菌菌株和243株放线菌菌株。接下来,来自海绵猎物的共生体 表现出最有前景的抗菌活性。随后的色谱纯化显示,在 提取物中存在三种已知的环二肽:环(亮氨酸-脯氨酸)( )、环(苯丙氨酸-脯氨酸)( )和环(苯丙氨酸-4-羟基-脯氨酸)( ),以及一种吲唑。所有这些代谢物从未在与本研究中所检测生物相关的这种共生细菌中被报道过。