Marine Biodiscovery, School of Chemistry and Ryan Institute, National University of Ireland Galway (NUI Galway), University Road, H91 TK33 Galway, Ireland.
Nat Prod Rep. 2020 Apr 1;37(4):515-540. doi: 10.1039/c9np00043g. Epub 2019 Oct 31.
Covering: up to the end of 2018Zoantharians, also improperly known as zoanthids or colonial anemones, are well known by aquarists because of their ease of use in aquaria but also because of their splendid colours. However, high concentrations of the highly toxic palytoxin found in some species of zoantharians maintained in reef aquaria has raised some issues recently, unveiling at the same time a rather unknown chemical diversity hidden in these marine beauties. Herein, we report the structure of the metabolites described in all species of zoantharians up to the end of 2018 and their associated biological activities. As sessile invertebrates, zoantharians harbour a rich diversity of micro-organisms that can play a role in the biosynthesis of these natural products and we detail the current hypotheses on the metabolic pathways leading to the identified ecdysteroids, zoanthoxanthins, zoanthamines, palytoxins and others. Finally, we assess the possible use of these metabolites in the systematics of such a complex group of marine invertebrates and we discuss their possible ecological roles. Altogether, this review brings some insights into the rich chemical diversity of zoantharians and their potential for marine biodiscovery and marine ecology.
截至 2018 年底 珊瑚虫,也被不当称为珊瑚虫或珊瑚虫,由于其在水族馆中的易用性以及绚丽的色彩而深受水族爱好者的喜爱。然而,在一些饲养在珊瑚礁水族馆中的珊瑚虫物种中发现的高浓度剧毒的 palytoxin 最近引起了一些问题,同时揭示了这些海洋生物中隐藏的相当未知的化学多样性。在此,我们报告了截至 2018 年底所有珊瑚虫物种中描述的代谢物的结构及其相关的生物活性。作为固着的无脊椎动物,珊瑚虫蕴藏着丰富的微生物多样性,这些微生物可能在这些天然产物的生物合成中发挥作用,我们详细介绍了目前关于导致鉴定出的蜕皮甾酮、珊瑚黄素、珊瑚胺、palytoxin 等化合物的代谢途径的假设。最后,我们评估了这些代谢物在如此复杂的海洋无脊椎动物群的系统发生学中的可能用途,并讨论了它们在海洋生态中的可能生态作用。总的来说,这篇综述深入了解了珊瑚虫的丰富化学多样性及其在海洋生物发现和海洋生态学中的潜力。