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Antarctic marine chemical ecology: what is next?

机译:南极海洋化学生态学:下一步是什么?

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Antarctic ecosystems are exposed to unique environmental characteristics resulting in communities structured both by biotic interactions such as predation and competition, as well as abiotic factors such as seasonality and ice-scouring. It is important to understand how ecological factors may trigger chemical mechanisms in marine Antarctic organisms as a response for survival. However, very little is known yet about the evolution of chemical compounds in Antarctic organisms. Investigations in chemical ecology have demonstrated over the last several years that defensive metabolites have evolved in numerous representative Antarctic species. This contradicts earlier theories concerning biogeographic variation in predation and chemical defenses. As reviewed here, a number of interesting natural products have been isolated from Antarctic organisms. However, we believe many more are still to be discovered. Currently, many groups such as microorganisms, planktonic organisms and deep-sea fauna remain almost totally unknown regarding their natural products. Furthermore, for many described compounds, ecological roles have yet to be evaluated. In fact, much of the research carried out to date has been conducted in the laboratory, and only in a few cases in an ecologically relevant context. Therefore, there is a need to extend the experiments to the field, as done in tropical and temperate marine ecosystems, or at least, to test the activity of the chemicals in natural conditions and ecologically meaningful interactions. Defense against predators is always one of the main topics when talking about the roles of natural products in species interactions, but many other interesting aspects, such as competition, chemoattraction, fouling avoidance and ultraviolet (UV) protection, also deserve further attention. In our opinion, challenging future developments are to be expected for Antarctic marine chemical ecology in the years to come.
机译:南极生态系统暴露于独特的环境特征中,从而形成了由生物相互作用(例如捕食和竞争)以及非生物因素(例如季节性和冰蚀)构成的社区。重要的是要了解生态因素如何触发海洋南极生物的化学机制,以求生存。但是,关于南极生物中化学化合物的进化知之甚少。在过去的几年中,化学生态学研究表明防御性代谢物已经在许多具有代表性的南极物种中进化。这与关于捕食和化学防御中生物地理变异的早期理论相矛盾。如本文所述,从南极生物中分离出了许多有趣的天然产物。但是,我们相信还有更多发现。目前,微生物,浮游生物和深海动物等许多种类的天然产物几乎完全未知。此外,对于许多描述的化合物,其生态作用尚待评估。实际上,迄今为止进行的许多研究都是在实验室中进行的,并且仅在少数情况下是与生态相关的。因此,有必要像在热带和温带海洋生态系统中那样,将实验扩展到野外,或者至少在自然条件下和具有生态意义的相互作用中测试化学物质的活性。在讨论天然产物在物种相互作用中的作用时,防御掠食者一直是主要主题之一,但是竞争,化学引诱,避免结垢和紫外线(UV)保护等许多其他有趣的方面也值得进一步关注。我们认为,在未来几年中,南极海洋化学生态学将面临充满挑战的未来发展。

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