Secondary Metabolite Production Potential of Mangrove-Derived Streptomyces olivaceus

放线菌门 次生代谢物 链霉菌 红树林 生物 代谢物 次生代谢 拉伤 微生物学 细菌 食品科学 基因 生物化学 16S核糖体RNA 遗传学 生态学 生物合成 解剖
作者
Dini Hu,Simon Ming‐Yuen Lee,Kai Li,Kai Meng Mok
出处
期刊:Marine Drugs [Multidisciplinary Digital Publishing Institute]
卷期号:19 (6): 332-332 被引量:7
标识
DOI:10.3390/md19060332
摘要

Mangroves are intertidal extreme environments with rich microbial communities. Actinobacteria are well known for producing antibiotics. The search for biosynthetic potential of Actinobacteria from mangrove environments could provide more possibilities for useful secondary metabolites. In this study, whole genome sequencing and MS/MS analysis were used to explore the secondary metabolite production potential of one actinobacterial strain of Streptomyces olivaceus sp., isolated from a mangrove in Macau, China. The results showed that a total of 105 gene clusters were found in the genome of S. olivaceus sp., and 53 known secondary metabolites, including bioactive compounds, peptides, and other products, were predicted by genome mining. There were 28 secondary metabolites classified as antibiotics, which were not previously known from S. olivaceus. ISP medium 2 was then used to ferment the S. olivaceus sp. to determine which predicted secondary metabolite could be truly produced. The chemical analysis revealed that ectoine, melanin, and the antibiotic of validamycin A could be observed in the fermentation broth. This was the first observation that these three compounds can be produced by a strain of S. olivaceus. Therefore, it can be concluded that Actinobacteria isolated from the mangrove environment have unknown potential to produce bioactive secondary metabolites.

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