Section for Ecology and Evolution, Department of Biology, University of Copenhagen, Universitetsparken 15, 2100 Copenhagen, Denmark.
Leibniz Institute for Natural Product Research and Infection Biology e.V., Hans-Knöll-Institute (HKI), Beutenbergstraße 11a, 07745 Jena, Germany.
Nat Prod Rep. 2022 Feb 23;39(2):231-248. doi: 10.1039/d1np00022e.
Covering: September 1972 to December 2020Explorations of complex symbioses have often elucidated a plethora of previously undescribed chemical compounds that may serve ecological functions in signalling, communication or defence. A case in point is the subfamily of termites that cultivate a fungus as their primary food source and maintain complex bacterial communities, from which a series of novel compound discoveries have been made. Here, we summarise the origins and types of 375 compounds that have been discovered from the symbiosis over the past four decades and discuss the potential for synergistic actions between compounds within the complex chemical mixtures in which they exist. We go on to highlight how vastly underexplored the diversity and geographic distribution of the symbiosis is, which leaves ample potential for natural product discovery of compounds of both ecological and medical importance.
1972 年 9 月至 2020 年 12 月
对复杂共生关系的探索常常阐明了大量以前未描述的化学化合物,这些化合物可能在信号传递、通讯或防御中具有生态功能。一个典型的例子是饲养真菌作为主要食物来源的白蚁亚科,以及维持复杂细菌群落的白蚁亚科,从这些群落中已经发现了一系列新的化合物。在这里,我们总结了过去四十年中从共生关系中发现的 375 种化合物的起源和类型,并讨论了它们存在的复杂化学混合物中化合物之间协同作用的潜力。我们接着强调了共生关系的多样性和地理分布是多么的未被充分探索,这为具有生态和医学重要性的化合物的天然产物发现留下了巨大的潜力。