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Investigation of Unique Marine Environments for Microbial Natural Products.

机译:调查微生物天然产物独特的海洋环境。

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摘要

Metagenomics has revealed that the marine microbial biosphere is immensely more diverse than originally considered, and is an almost untapped reservoir for the potential discovery of microbial natural products. Despite numerous advances in culturing, biosynthetic engineering and genomic-based screening efforts to uncover much of this diversity in relatively accessible environments, a high rediscovery rate has resulted in the investigation of unique, relatively unexplored ecosystems harboring phylogenetically diverse communities of marine organisms. The focus of this research was to establish a culture repository of microorganisms collected from the Red Sea and from deep-sea hydrothermal vents, and to assess their biosynthetic potential for the production of new chemical scaffolds. Cultivation of marine cyanobacteria from the Red Sea has led to the identification of five new cyclic depsipeptides, apratoxin H, grassypeptolides D and E, Ibu-epidemethoxylyngbyastin 3 and leptochelin, the latter possessing a unique chemical scaffold capable of binding metals. A collection of deep-sea hydrothermal vent sediment and microbial mat samples led to the isolation of 64 unique bacterial strains, with eight assigned as members of the order Actinomycetales. Importantly, these isolates, along with a collection of deep-vent invertebrates and microbes, have led to the development of methods for the collection, culturing and biological screening of organisms from this extreme environment for future natural products research.
机译:元基因组学已经表明,海洋微生物生物圈比最初考虑的要多样化得多,并且是潜在发现微生物天然产物的几乎未开发的水库。尽管在培养,生物合成工程和基于基因组的筛选工作方面取得了许多进展,以在相对可及的环境中发现许多这种多样性,但较高的再发现率导致人们对具有生态系统多样性的海洋生物群落的独特,相对未开发的生态系统进行了研究。这项研究的重点是建立一个从红海和深海热液喷口收集的微生物的培养库,并评估它们在生产新化学支架中的生物合成潜力。来自红海的海洋蓝细菌的培养已导致鉴定出五种新的环状双肽,Apratoxin H,草肽D和E,Ibu-表甲氧基lyngbyastin 3和Leptochelin,后者具有能够结合金属的独特化学支架。深海热液喷口沉积物和微生物垫样品的收集导致分离出64种独特的细菌菌株,其中8种被指定为放线菌纲的成员。重要的是,这些分离物以及深通风无脊椎动物和微生物的收集,导致了从这种极端环境中收集,培养和生物筛选生物的方法的发展,以用于未来的天然产物研究。

著录项

  • 作者

    Thornburg, Christopher C.;

  • 作者单位

    Oregon State University.;

  • 授予单位 Oregon State University.;
  • 学科 Health Sciences Pharmacy.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 301 p.
  • 总页数 301
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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