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Genome guided investigation of antibiotics producing actinomycetales strain isolated from a Macau mangrove ecosystem

机译:基因组指导调查从澳门红树生态系统中分离出抗生素菌株的抗生素

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Actinomycetes are a heterogeneous group of gram positive filamentous bacteria that have been found to produce a wide range of valuable bioactive secondary metabolites, particularly antibiotics. Moreover, actinomycetes isolated from unexplored environments show an unprecedented potential to generate novel active compounds. Hence, in order to search for novel antibiotics, we isolated and characterized actinomycetes strains from plant samples collected from a mangrove in Macau. Within the class of actinobacteria, fourteen actinomycetes isolates have been isolated and identified belonging to the genus of Streptomyces, Micromonospora, Mycobacterium, Brevibacterium, Curtobacterium and Kineococcus based on their 16S rRNA sequences. Further whole genome sequencing analysis of one of the isolated Streptomyces sp., which presented 99.13% sequence similarity with Streptomyces parvulus strain 2297, showed that it consisted of 118 scaffolds, 8,348,559 base pairs and had a 72.28% G?+?C content. In addition, genome-mining revealed that the isolated Streptomyces sp. contains 109 gene clusters responsible for the biosynthesis of known and/or novel secondary metabolites, including different types of terpene, T1pks, T2pks, T3pks, Nrps, indole, siderophore, bacteriocin, thiopeptide, phosphonate, lanthipeptide, ectoine, butyrolactone, T3pks-Nrps, and T1pks-Nrps. Meanwhile, the small molecules present in ethyl acetate extract of the fermentation broth of this strain were analyzed by LC-MS. Predicted secondary metabolites of melanin and desferrioxamine B were identified and both of them were firstly found to be produced by the Streptomyces parvulus strain. Our study highlights that combining genome mining is an efficient method to detect potentially promising natural products from mangrove-derived actinomycetes.
机译:放线菌是一种异质组的革氏阳性细菌,已被发现产生各种有价值的生物活性次生代谢物,特别是抗生素。此外,从未开发的环境中分离的放线菌表现出前所未有的潜力来产生新型活性化合物。因此,为了寻找新的抗生素,我们从澳门的红树林收集的植物样品中分离和表征菌菌菌株。在肌动菌类的类别中,基于16S rRNA序列,已分离和鉴定了四核癌分离物,并鉴定了链霉菌,微孢子菌,分枝杆菌,细菌和Kineocccus的瘢痕杆菌属的属性。进一步的全基因组测序分析其中一种分离的链霉菌Sp。,其与链霉菌菌株2297呈现99.13%的序列相似性,表明它由118个支架,8,348,559个碱基对组成,具有72.28%g≤c= c含量。此外,Genome-Mining揭示了分离的链霉菌SP。含有109个基因簇,其负责已知的和/或新型代谢物的生物合成,包括不同类型的萜烯,T1PK,T2PK,T3PK,NRP,吲哚,阳光,菌毛蛋白,硫肽,膦酸盐,兰Hantihepiders,Ectoine,丁酰胺酮,T3PKS-NRP和t1pks-nrps。同时,通过LC-MS分析该菌株的发酵液的乙酸乙酯提取物中存在的小分子。鉴定了黑色素和脱硫B的预测二次代谢物,并首先发现它们两者都是通过链霉菌菌株产生的。我们的研究突出了组合基因组采矿是一种有效的方法,可检测来自红树林衍生的放线菌的潜在有前途的天然产物。

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