Piel Jörn, Butzke Daniel, Fusetani Nobuhiro, Hui Dequan, Platzer Matthias, Wen Gaiping, Matsunaga Shigeki
Kekulé Institute of Organic Chemistry and Biochemistry, University of Bonn, Gerhard-Domagk-Strasse 1, 53121 Bonn, Germany.
J Nat Prod. 2005 Mar;68(3):472-9. doi: 10.1021/np049612d.
Symbiotic bacteria have long been proposed as being responsible for the production of numerous natural products isolated from invertebrate animals. However, systematic studies of invertebrate-symbiont associations are usually associated with serious technical challenges, such as the general resistance of symbionts to culturing attempts and the complexity of many microbial consortia. Herein an overview is provided on the culture-independent, metagenomic strategies recently employed by our group to contribute to a better understanding of natural product symbiosis. Using terrestrial Paederus spp. beetles and the marine sponge Theonella swinhoei as model animals, the putative genes responsible for the production of pederin-type antitumor polyketides have been isolated. In Paederus fuscipes, which uses pederin for chemical defense, these genes belong to an as-yet unculturable symbiont closely related to Pseudomonas aeruginosa. To study the extremely complex association of T. swinhoei and its multispecies bacterial consortium, we used a phylogenetic approach that allowed the isolation of onnamide/theopederin polyketide synthase genes from an uncultured sponge symbiont. Analysis of the biosynthesis genes provided unexpected insights into a possible evolution of pederin-type pathways. Besides revealing new facets of invertebrate chemical ecology, these first gene clusters from uncultivated symbiotic producers suggest possible biotechnological strategies to solve the supply problem associated with the development of most marine drug candidates.
长期以来,共生细菌一直被认为是从无脊椎动物中分离出的众多天然产物的产生原因。然而,对无脊椎动物与共生体关联的系统研究通常伴随着严重的技术挑战,例如共生体对培养尝试的普遍抗性以及许多微生物群落的复杂性。本文概述了我们小组最近采用的非培养宏基因组学策略,以促进对天然产物共生关系的更好理解。以陆生隐翅虫属甲虫和海洋海绵斯氏海绵为模式动物,已分离出负责产生佩德菌素型抗肿瘤聚酮化合物的推定基因。在将佩德菌素用于化学防御的梭毒隐翅虫中,这些基因属于一种与铜绿假单胞菌密切相关的尚未培养的共生体。为了研究斯氏海绵与其多物种细菌群落极其复杂的关联,我们采用了一种系统发育方法,该方法允许从未培养的海绵共生体中分离出安那米德/西奥佩德菌素聚酮合酶基因。对生物合成基因的分析为佩德菌素型途径的可能进化提供了意想不到的见解。除了揭示无脊椎动物化学生态学的新方面外,这些来自未培养共生生产者的首批基因簇还提出了可能的生物技术策略,以解决与大多数海洋药物候选物开发相关的供应问题。