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首页> 外文期刊>Microorganisms >Genome Mining Coupled with OSMAC-Based Cultivation Reveal Differential Production of Surugamide A by the Marine Sponge Isolate Streptomyces sp. SM17 When Compared to Its Terrestrial Relative S. albidoflavus J1074
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Genome Mining Coupled with OSMAC-Based Cultivation Reveal Differential Production of Surugamide A by the Marine Sponge Isolate Streptomyces sp. SM17 When Compared to Its Terrestrial Relative S. albidoflavus J1074

机译:基因组采矿与基于OSMAC的栽培相结合,揭示了海洋海绵分离链霉菌sp。产生的氨基甲酸酯A的差异产生。与地面相对链霉菌S107相比

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Much recent interest has arisen in investigating Streptomyces isolates derived from the marine environment in the search for new bioactive compounds, particularly those found in association with marine invertebrates, such as sponges. Among these new compounds recently identified from marine Streptomyces isolates are the octapeptidic surugamides, which have been shown to possess anticancer and antifungal activities. By employing genome mining followed by an one strain many compounds (OSMAC)-based approach, we have identified the previously unreported capability of a marine sponge-derived isolate, namely Streptomyces sp. SM17, to produce surugamide A. Phylogenomics analyses provided novel insights on the distribution and conservation of the surugamides biosynthetic gene cluster ( sur BGC) and suggested a closer relatedness between marine-derived sur BGCs than their terrestrially derived counterparts. Subsequent analysis showed differential production of surugamide A when comparing the closely related marine and terrestrial isolates, namely Streptomyces sp. SM17 and Streptomyces albidoflavus J1074. SM17 produced higher levels of surugamide A than S. albidoflavus J1074 under all conditions tested, and in particular producing 13-fold higher levels when grown in YD and 3-fold higher levels in SYP-NaCl medium. In addition, surugamide A production was repressed in TSB and YD medium, suggesting that carbon catabolite repression (CCR) may influence the production of surugamides in these strains.
机译:在研究源自海洋环境的链霉菌分离物以寻找新的生物活性化合物方面,特别是与海绵等海洋无脊椎动物相关联的生物活性化合物,近来引起了人们的广泛兴趣。在最近从海洋链霉菌分离物中鉴定出的这些新化合物中,八肽surugamides已被证明具有抗癌和抗真菌活性。通过采用基因组挖掘,然后采用基于一种菌株的多种化合物(OSMAC)的方法,我们已经确定了海洋海绵来源的分离株,即链霉菌sp。以前未报道的能力。 SM17,以产生surugamideA。遗传学分析提供了关于surugamides生物合成基因簇(sur BGC)的分布和保守性的新见解,并表明海洋来源的sur BGC与陆地来源的sur BGC之间有更紧密的联系。随后的分析表明,当比较密切相关的海洋和陆地分离物,即链霉菌属时,产生了surugamide A的差异产生。 SM17和链霉菌Albidoflavus J1074。在所有测试条件下,SM17均比albidoflavus J1074产生更高水平的surugamide A,特别是在YD中生长时,其表达水平高出13倍,而在SYP-NaCl培养基中,其表达水平高出3倍。此外,在TSB和YD培养基中抑制了surugamide A的产生,这表明碳分解代谢物阻抑(CCR)可能影响这些菌株中surugamide的产生。

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