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海绵化学多样性:从生物合成途径到生态角色。

Sponge chemical diversity: from biosynthetic pathways to ecological roles.

出版信息

Adv Mar Biol. 2012;62:183-230. doi: 10.1016/B978-0-12-394283-8.00004-7.

Abstract

Since more than 50 years, sponges have raised the interest of natural product chemists due to the presence of structurally original secondary metabolites. While the main objective were first to discover new drugs from the Sea, a large number of interrogations arose along with the isolation and structure elucidations of a wide array of original architectures and new families of natural products not found in the terrestrial environment. In this chapter, we focus on the results obtained during this period on the following questions. A preliminary but still unresolved issue to be addressed will be linked to the role of the microbiota into the biosynthesis of these low-weight compounds. Our knowledge on the biosynthetic pathways leading to plant secondary metabolites is now well established, and this background will influence our comprehension of the biosynthetic events occurring in a sponge. But is the level of similarity between both metabolisms so important? We clearly need more experimental data to better assess this issue. This question is of fundamental interest because sponges have a long evolutionary history, and this will allow a better understanding on the transfer of the genetic information corresponding to the biosynthesis of secondary metabolites. After the how, the why! The question of the ecological role of these metabolites is also of high importance first not only because they can serve as synapomorphic characters but also because they may represent chemical cues in the water environment. Even if most of these compounds are considered as defensive weapons for these sessile invertebrates, they may also be linked to physiological characters as the reproduction. Finally, a metabolomic approach can appear as a complementary tool to give additional information on the sponge fitness. All the new developments in molecular biology and bioanalytical tools will open the way for a better comprehension on the complex field of sponge secondary metabolites.

摘要

五十多年来,由于存在结构原始的次生代谢产物,海绵一直引起天然产物化学家的兴趣。虽然最初的主要目标是从海洋中发现新药,但随着大量原始结构和在陆地环境中未发现的新型天然产物的广泛分离和结构阐明,出现了大量的疑问。在本章中,我们重点介绍在此期间针对以下问题获得的结果。一个初步但仍未解决的问题将与微生物群在这些低分子量化合物生物合成中的作用有关。我们对导致植物次生代谢物生物合成途径的了解现在已经很完善,这一背景将影响我们对海绵中发生的生物合成事件的理解。但是,两种代谢物之间的相似性水平如此重要吗?我们显然需要更多的实验数据来更好地评估这个问题。这个问题具有根本的重要性,因为海绵具有悠久的进化历史,这将有助于更好地了解与次生代谢物生物合成相对应的遗传信息的转移。在探讨了“如何”之后,我们再来探讨“为什么”!这些代谢物的生态作用问题也非常重要,首先,它们不仅可以作为趋同特征,而且它们可能代表着水环境中的化学线索。即使这些化合物中的大多数被认为是这些固着无脊椎动物的防御武器,它们也可能与生理特征有关,例如繁殖。最后,代谢组学方法可以作为一种补充工具,提供有关海绵适应能力的附加信息。分子生物学和生物分析工具的所有新发展将为更好地理解海绵次生代谢物这一复杂领域开辟道路。

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