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Functional Gene-Guided Discovery of Type II Polyketides from Culturable Actinomycetes Associated with Soft Coral Scleronephthya sp

机译:功能基因导引型II聚酮化合物的发现从可培养放线菌与相关软珊瑚scleronephthya sp

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摘要

Compared with the actinomycetes in stone corals, the phylogenetic diversity of soft coral-associated culturable actinomycetes is essentially unexplored. Meanwhile, the knowledge of the natural products from coral-associated actinomycetes is very limited. In this study, thirty-two strains were isolated from the tissue of the soft coral Scleronephthya sp. in the East China Sea, which were grouped into eight genera by 16S rDNA phylogenetic analysis: Micromonospora, Gordonia, Mycobacterium, Nocardioides, Streptomyces, Cellulomonas, Dietzia and Rhodococcus. 6 Micromonospora strains and 4 Streptomyces strains were found to be with the potential for producing aromatic polyketides based on the analysis of KSα (ketoacyl-synthase) gene in the PKS II (type II polyketides synthase) gene cluster. Among the 6 Micromonospora strains, angucycline cyclase gene was amplified in 2 strains (A5-1 and A6-2), suggesting their potential in synthesizing angucyclines e.g. jadomycin. Under the guidance of functional gene prediction, one jadomycin B analogue (7b, 13-dihydro-7-O-methyl jadomycin B) was detected in the fermentation broth of Micromonospora sp. strain A5-1. This study highlights the phylogenetically diverse culturable actinomycetes associated with the tissue of soft coral Scleronephthya sp. and the potential of coral-derived actinomycetes especially Micromonospora in producing aromatic polyketides.
机译:与石珊瑚中的放线菌相比,软珊瑚相关的可培养放线菌的系统发生多样性基本上是未开发的。同时,与珊瑚有关的放线菌天然产物的知识非常有限。在这项研究中,从软珊瑚Scleronephthya sp。的组织中分离出32株。通过16S rDNA的系统发育分析将其分为八个属:小单孢菌属,戈登尼亚属,分枝杆菌属,诺卡氏菌属,链霉菌属,纤维单胞菌属,迪茨氏菌属和红球菌属。根据对PKS II(II型聚酮化合物合酶)基因簇中的KSα(酮酰基合酶)基因的分析,发现有6个微单孢菌菌株和4个链霉菌菌株具有生产芳香族聚酮化合物的潜力。在这6个单孢单胞菌菌株中,在2个菌株(A5-1和A6-2)中扩增了angucycline环化酶基因,表明它们在合成angucyclines的潜力中,例如。佳霉素。在功能基因预测的指导下,在Micromonospora sp的发酵液中检测到一种佳霉素B类似物(7b,13-二氢-7-O-甲基佳霉素B)。菌株A5-1。这项研究突出了与软珊瑚Scleronephthya sp。的组织有关的系统发育多样的放线菌。以及珊瑚来源的放线菌,特别是Micromonospora在生产芳香族聚酮化合物中的潜力。

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