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Culturing marine bacteria from the genus Pseudoalteromonas on a cotton scaffold alters secondary metabolite production

机译:从棉脚手架上的伪alomonas中培养海洋细菌改变次生代谢产物

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The discovery of secondary metabolites from marine microorganisms is beset by numerous challenges including difficulties cultivating and subsequently eliciting expression of biosynthetic genes from marine microbes in the laboratory. In this paper, we describe a method of culturing three species from the marine bacterial genus Pseudoalteromonas using cotton scaffold supplemented liquid media. This simple cultivation method was designed to mimic the natural behavior of some members of the genus wherein they form epibiotic/symbiotic associations with higher organisms such as sponges and corals or attach to solid structures as a biofilm. Our scaffolded cultivation is highly effective at stimulating an attachment/biofilm phenotype and causes large changes to metabolite profiles for the microbes investigated. Metabolite changes include alteration to the production levels of known molecules such as violacein, thiomarinol A, and the alterochromide and prodiginine families of molecules. Finally and critically, our technique stimulates the production of unknown compounds that will serve as leads for future natural product discovery. These results suggest our cultivation approach could potentially be used as a general strategy for the activation of silent gene clusters in marine microbes to facilitate access to their full natural product biosynthetic capacity.
机译:从海洋微生物中发现次级代谢物的发现是由于许多挑战,包括在实验室中培养的困难和随后引发生物合成基因的表达的困难。在本文中,我们描述了一种使用棉花支架补充液体介质从海洋细菌属植物术中培养三种物种的方法。这种简单的栽培方法旨在模仿属的某些成员的自然行为,其中它们形成具有更高生物的癫痫/共生关联,例如海绵和珊瑚,或者作为生物膜的固体结构连接。我们的脚手架培养在刺激附着/生物膜表型时具有高效效果,并导致对研究的微生物的代谢物谱变大。代谢物变化包括改变已知分子,如紫茎蛋白,硫甲醇A和分子的替稀链蛋白素家族的生产水平。最后和批判性地,我们的技术刺激了未来的未来自然产品发现的导致的未知化合物的生产。这些结果表明我们的培养方法可能被用作激活海洋微生物中的静音基因簇的一般策略,以便于获得其全天然产物的生物合成能力。

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