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首页> 外文期刊>Applied Microbiology and Biotechnology >Stress-driven discovery of a cryptic antibiotic produced by Streptomyces sp WU20 from Kueishantao hydrothermal vent with an integrated metabolomics strategy
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Stress-driven discovery of a cryptic antibiotic produced by Streptomyces sp WU20 from Kueishantao hydrothermal vent with an integrated metabolomics strategy

机译:来自Kueishantao Hymothermal发泄的Streptomyces SP Wu20产生的隐秘抗生素的应力驱动的发现,具有综合的代谢博弈策略

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摘要

Marine hydrothermal microorganisms respond rapidly to the changes in the concentrations and availability of metals within hydrothermal vent microbial habitats which are strongly influenced by elevated levels of heavy metals. Most hydrothermal vent actinomycetes possess a remarkable capability for the synthesis of a broad variety of biologically active secondary metabolites. Major challenges in the screening of these microorganisms are to activate the expression of cryptic biosynthetic gene clusters and the development of technologies for efficient dereplication of known compounds. Here, we report the identification of a novel antibiotic produced by Streptomyces sp. WU20 isolated from the metal-rich hydrothermal vents in Taiwan Kueishantao, following a strategy based on metal induction of silent genes combined with metabolomics analytical methods. HPLC-guided isolation by tracking the target peak resulted in the characterization of the novel compound 1 with antimicrobial activity against Bacillus subtilis. The stress metabolite 1 induced by nickel is structurally totally different compared with the normally produced compounds. This study underlines the applicability of metal induction combined with metabolic analytical techniques in accelerating the exploration of novel antibiotics and other medically relevant natural products.
机译:海洋水热量微生物迅速响应水热通风微生物栖息地浓度和金属浓度的变化,这受重金属水平升高的强烈影响。大多数水热通风放射素瘤细胞具有显着的能力,用于合成广泛的生物活性次生代谢物。筛查这些微生物的主要挑战是激活隐秘性生物合成基因集群的表达以及用于高效统计化合物的技术的发展。在这里,我们报告了通过链霉菌SP产生的新型抗生素的鉴定。 WU20从台湾Kueishantao的金属富含水热通风口分离,按照基于金属诱导的静音基因的策略结合代谢组种分析方法。通过跟踪目标峰的HPLC引导隔离导致新型化合物1具有针对枯草芽孢杆菌的抗微生物活性的特征。与通常产生的化合物相比,镍诱导的应力代谢物1结构完全不同。本研究强调了金属诱导与代谢分析技术相结合的适用性加速了新型抗生素和其他医学相关天然产物的探索。

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