Suppr超能文献

印度-太平洋海参的化学防御机制及其生态意义。

Chemical Defense Mechanisms and Ecological Implications of Indo-Pacific Holothurians.

机构信息

Institute for Chemistry and Biology of the Marine Environment (ICBM), Carl-von-Ossietzky University Oldenburg, Schleusenstrasse 1, 26382 Wilhelmshaven, Germany.

Helmholtz Institute for Functional Marine Biodiversity, University of Oldenburg, Ammerländer Heerstrasse 231, D-26129 Oldenburg, Germany.

出版信息

Molecules. 2020 Oct 19;25(20):4808. doi: 10.3390/molecules25204808.

Abstract

Sea cucumbers are slow-moving organisms that use morphological, but also a diverse combination of chemical defenses to improve their overall fitness and chances of survival. Since chemical defense compounds are also of great pharmaceutical interest, we pinpoint the importance of biological screenings that are a relatively fast, informative and inexpensive way to identify the most bioactive organisms prior to further costly and elaborate pharmacological screenings. In this study, we investigated the presence and absence of chemical defenses of 14 different sea cucumber species from three families (Holothuriidae, Stichopodidae and Synaptidae) against ecological factors such as predation and pathogenic attacks. We used the different sea cucumber crude extracts as well as purified fractions and pure saponin compounds in a portfolio of ecological activity tests including fish feeding assays, cytotoxicity tests and antimicrobial assays against environmental pathogenic and non-pathogenic bacteria. Furthermore, we quantified and correlated the concentrations of sea cucumber characteristic saponin compounds as effective chemical defensive compounds in all 14 crude extracts by using the vanillin-sulfuric acid test. The initial results revealed that among all tested sea cucumber species that were defended against at least one ecological threat (predation and/or bacterial attack), , and were the three most promising bioactive sea cucumber species. Therefore, following further fractionation and purification attempts, we also tested saponin-containing butanol fractions of the latter, as well as two purified saponin species from . We could demonstrate that both, the amount of saponin compounds and their structure likely play a significant role in the chemical defense strategy of the sea cucumbers. Our study concludes that the chemical and morphological defense mechanisms (and combinations thereof) differ among the ecological strategies of the investigated holothurian species in order to increase their general fitness and level of survival. Finally, our observations and experiments on the chemical ecology of marine organisms can not only lead to a better understanding of their ecology and environmental roles but also can help in the better selection of bioactive organisms/compounds for the discovery of novel, pharmacologically active secondary metabolites in the near future.

摘要

海参是行动缓慢的生物,它们使用形态学,还使用多样化的化学防御组合来提高整体适应性和生存机会。由于化学防御化合物也具有很大的药物学价值,因此我们强调生物筛选的重要性,这是一种相对快速、信息丰富且廉价的方法,可以在进一步进行昂贵而复杂的药理学筛选之前,确定最具生物活性的生物。在这项研究中,我们调查了来自三个科(Holothuriidae、Stichopodidae 和 Synaptidae)的 14 种不同海参物种的化学防御的存在和不存在情况,以应对捕食和病原攻击等生态因素。我们使用不同的海参粗提取物以及纯化的馏分和纯皂苷化合物,在一系列生态活性测试中进行了研究,包括鱼类摄食测定、细胞毒性测试和针对环境病原和非病原细菌的抗菌测定。此外,我们通过香草醛-硫酸测试,对所有 14 种粗提取物中的海参特征皂苷化合物的浓度进行了量化和相关性分析,这些化合物是有效的化学防御化合物。初步结果表明,在所测试的所有海参物种中,至少有一种生态威胁(捕食和/或细菌攻击)得到防御的物种中, 、 和 是最有前途的三种生物活性海参物种。因此,在进一步的分馏和纯化尝试之后,我们还测试了后两者的含皂苷丁醇馏分,以及 中的两种纯化皂苷物质。我们可以证明,皂苷化合物的数量及其结构在海参的化学防御策略中都起着重要作用。我们的研究得出结论,在所研究的海参物种的生态策略中,化学和形态防御机制(及其组合)存在差异,以提高其总体适应性和生存水平。最后,我们对海洋生物化学生态学的观察和实验不仅可以帮助更好地了解它们的生态和环境作用,还可以帮助更好地选择生物活性生物/化合物,以在不久的将来发现新型、具有药理学活性的次生代谢物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d1b8/7587958/2214ada57ebf/molecules-25-04808-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验