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基于基因组导向和质谱分析的研究,从中国深圳福田红树林生态系统中分离出的一株潜在新型放线菌产生的天然产物。

Genome-guided and mass spectrometry investigation of natural products produced by a potential new actinobacterial strain isolated from a mangrove ecosystem in Futian, Shenzhen, China.

机构信息

Faculty of Science and Technology, Department of Civil and Environmental Engineering, University of Macau, Macao, China.

State Key Laboratory of Quality Research in Chinese Medicine and institute of Chinese Medical Sciences, University of Macau, Macao, China.

出版信息

Sci Rep. 2019 Jan 29;9(1):823. doi: 10.1038/s41598-018-37475-w.

Abstract

Actinobacteria, a group of gram-positive bacteria, can produce plenty of valuable bioactive secondary metabolites, especially antibiotics. Hence, in order to search for new actinobacteria, actinobacterial isolates were obtained from rhizosphere soil collected from the Futian mangrove ecosystem in Shenzhen, China. According to 16S rRNA sequences, 14 actinobacterial strains of the genus Streptomyces, Rhodococcus, Microbacterium, Micromonospora, Actinoplanes and Mycobacterium were isolated and identified. Among these, strain Mycobacterium sp.13 was described as a potential new species belonging to the genus Mycobacterium within the class of actinobacteria according to the genomic analysis. The genome-based 16S rRNA sequences had 98.48% sequence similarity with Mycobacterium moriokaense DSM 44221. Meanwhile, the genome sequences of Mycobacterium sp.13 showed an average nucleotide identity (ANI) with the Mycobacterium mageritense DSM 44476, Mycobacterium smegmatis MKD8 and Mycobacterium goodii strain X7B of only 74.79%, 76.12% and 76.42%, respectively. Furthermore, genome-mining results showed that Mycobacterium sp.13 contained 105 gene clusters encoding to the secondary metabolite biosynthesis, where many kinds of terpene, bacteriocin, T1pks, Nrps, saccharide, fatty acid, butyrolactone, ectoine and resorcinol were included. Finally, through LC-MS and HR-MS, analyzing the small molecules from ethyl acetate extract of this strain, asukamycin C and apramycin were for the first time found present to be in Mycobacterium moriokaense strain. Our study provides evidence in support of the potential new Mycobacterium sp.13 isolated from the mangrove environment as a possible novel source of natural products.

摘要

放线菌是一类革兰氏阳性细菌,能够产生大量有价值的生物活性次级代谢产物,尤其是抗生素。因此,为了寻找新的放线菌,从中国深圳福田红树林生态系统中采集的根际土壤中分离出放线菌。根据 16S rRNA 序列,分离并鉴定了 14 株链霉菌属、红球菌属、微杆菌属、密旋菌属、游动放线菌属和分枝杆菌属的放线菌。其中,根据基因组分析,分枝杆菌属的一株分枝杆菌属菌株 13 被描述为一种潜在的新种。基于基因组的 16S rRNA 序列与分枝杆菌属的分枝杆菌属菌株 Morioakaense DSM 44221 的序列相似性为 98.48%。同时,分枝杆菌属菌株 13 的基因组序列与分枝杆菌属的分枝杆菌属菌株 DSM 44476、分枝杆菌属的分枝杆菌属菌株 MKD8 和分枝杆菌属的分枝杆菌属菌株 X7B 的平均核苷酸同一性(ANI)分别仅为 74.79%、76.12%和 76.42%。此外,基因组挖掘结果表明,分枝杆菌属菌株 13 含有 105 个基因簇,编码次级代谢产物生物合成,其中包括萜烯、细菌素、T1pks、NRPS、糖、脂肪酸、丁内酯、ectoine 和间苯二酚等多种物质。最后,通过 LC-MS 和 HR-MS 分析该菌株乙酸乙酯提取物中的小分子,首次发现 asukamycin C 和 apramycin 存在于分枝杆菌属菌株中。我们的研究为从红树林环境中分离出的潜在新的分枝杆菌属菌株 13 作为天然产物的潜在新来源提供了证据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1a7a/6351551/b0c3371758bc/41598_2018_37475_Fig1_HTML.jpg

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