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Stress-driven Discovery of Natural Products from Extreme Marine Environment- Kueishantao Hydrothermal Vent, a Case Study of Metal Switch Valve

机译:应力驱动下极端海洋环境中天然产物的发现-龟山套热液通风口,以金属开关阀为例

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Marine hydrothermal vent microbial habitats are strongly influenced by elevated levels of heavy metals. Hydrothermal microorganisms respond rapidly to the changes in the concentrations and availability of metals within their environment, where geothermally heated water reacts with its host rock forming fluids that nourish a diverse array of geothermally dependent microorganisms. Most marine fungi possess a remarkable capability for the synthesis of a broad variety of biologically active secondary metabolites. One major obstacle in identifying secondary metabolites, however, is the known phenomenon of sleeping gene clusters and non-activated biosynthesis pathways which are present, but latent under standard screening conditions. Here, we proceed to show that non-activated or inert biosynthesis pathways can be awakened by the elicitation of heavy metal stress. In order to gain a more detailed insight into the nature of metal mediated products in marine fungi a chemical screening with extracts of biomass of two fungal strains derived from metal-rich Kueishantao hydrothermal vent environments was carried out to assay the influence of heavy metals on secondary metabolic patterns of marine fungi. Metabolite patterns of cultures grown in minimal media were compared to copper (or cadmium) spiked parallels. The results showed that contrarily to the widely held opinion of metals as hindrance in secondary metabolism, metals can induce synthesis of metabolites with a backbone not detected or detected as minor products in the normal cultures without metal stress. Hence, putative latent biosynthesis pathways in the hydrothermal vent fungi were deduced to be activated and switched by metals. Stress-driven discovery of natural products from hydrothermal vent fungi strain is a valid strategy to unveil the untapped reservoir of small molecules from hydrothermal vent environment.
机译:海洋热液喷口微生物的栖息地受到重金属含量升高的强烈影响。水热微生物对环境中金属的浓度和可利用性的变化做出快速响应,地热中的热水与其宿主岩石形成的流体发生反应,从而滋养了多种依赖地热的微生物。大多数海洋真菌具有合成多种具有生物活性的次生代谢产物的显着能力。然而,鉴定次级代谢产物的主要障碍是已知的睡眠基因簇和未激活的生物合成途径的现象,这些现象存在但在标准筛选条件下是潜在的。在这里,我们继续表明未激活或惰性的生物合成途径可以通过重金属应激的激发而被唤醒。为了更详细地了解海洋真菌中金属介导产物的性质,进行了化学筛选,方法是从富含金属的葵山套热液喷口环境中提取两种真菌菌株的生物质,以分析重金属对次生真菌的影响。海洋真菌的代谢模式。将在最少培养基中生长的培养物的代谢产物模式与铜(或镉)加标平行样进行了比较。结果表明,与普遍认为金属是次生代谢障碍的观点相反,金属可以诱导代谢产物的合成,该代谢产物的主链在没有金属胁迫的正常培养中未被检测到或被检测为次要产物。因此,推定了热液喷口真菌中潜在的潜在生物合成途径被金属激活和转换。应力驱动的热液喷发真菌菌株天然产物的发现是揭示热液喷发环境中未开发的小分子储集层的有效策略。

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