Scripps Institution of Oceanography, University of California, San Diego, La Jolla, CA 92093-0204, USA.
Curr Opin Biotechnol. 2010 Dec;21(6):794-800. doi: 10.1016/j.copbio.2010.09.010. Epub 2010 Oct 13.
Terpenoids are among the most ubiquitous and diverse secondary metabolites observed in nature. Although actinomycete bacteria are one of the primary sources of microbially derived secondary metabolites, they rarely produce compounds in this biosynthetic class. The terpenoid secondary metabolites that have been discovered from actinomycetes are often in the form of biosynthetic hybrids called hybrid isoprenoids (HIs). HIs include significant structural diversity and biological activity and thus are important targets for natural product discovery. Recent screening of marine actinomycetes has led to the discovery of a new lineage that is enriched in the production of biologically active HI secondary metabolites. These strains represent a promising resource for natural product discovery and provide unique opportunities to study the evolutionary history and ecological functions of an unusual group of secondary metabolites.
萜类化合物是自然界中分布最广泛、种类最多的次生代谢物之一。虽然放线菌是微生物来源的次生代谢物的主要来源之一,但它们很少产生此类生物合成类别的化合物。从放线菌中发现的萜类次生代谢物通常是以生物合成杂种的形式存在,称为杂种异戊二烯(HIs)。HIs 具有显著的结构多样性和生物活性,因此是天然产物发现的重要目标。最近对海洋放线菌的筛选导致发现了一个新谱系,该谱系在生物活性 HI 次生代谢物的产生中更为丰富。这些菌株是天然产物发现的有前途的资源,并为研究一组不寻常的次生代谢物的进化历史和生态功能提供了独特的机会。