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Chemical Ecology Special Feature: Biosynthetic origin of natural products isolated from marine microorganism–invertebrate assemblages

机译:化学生态学专题:从海洋微生物-无脊椎动物群中分离出来的天然产物的生物合成来源

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摘要

In all probability, natural selection began as ancient marine microorganisms were required to compete for limited resources. These pressures resulted in the evolution of diverse genetically encoded small molecules with a variety of ecological and metabolic roles. Remarkably, many of these same biologically active molecules have potential utility in modern medicine and biomedical research. The most promising of these natural products often derive from organisms richly populated by associated microorganisms (e.g., marine sponges and ascidians), and often there is great uncertainty about which organism in these assemblages is making these intriguing metabolites. To use the molecular machinery responsible for the biosynthesis of potential drug-lead natural products, new tools must be applied to delineate their genetic and enzymatic origins. The aim of this perspective is to highlight both traditional and emerging techniques for the localization of metabolic pathways within complex marine environments. Examples are given from the literature as well as recent proof-of-concept experiments from the authors' laboratories.
机译:极有可能自然选择开始了,因为古代海洋微生物需要竞争有限的资源。这些压力导致具有多种生态和代谢作用的多种遗传编码小分子的进化。值得注意的是,许多这些相同的生物活性分子在现代医学和生物医学研究中具有潜在的实用性。这些天然产物中最有前途的通常是来自富含相关微生物的生物(例如海生海绵和海鞘),而且对于这些组合中的哪种生物正在制造这些有趣的代谢物,通常存在很大的不确定性。要使用负责潜在药物前导天然产物生物合成的分子机制,必须使用新工具来描述其遗传和酶促起源。该观点的目的是强调在复杂海洋环境中定位代谢途径的传统技术和新兴技术。示例来自文献,以及作者实验室的最新概念验证实验。

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