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海洋食物网底层的原核生物脂质。

Lipids of prokaryotic origin at the base of marine food webs.

机构信息

IBB-Institute for Biotechnology and Bioengineering, Centre for Biological and Chemical Engineering, Department of Bioengineering, Instituto Superior Técnico, Technical University of Lisbon, Av. Rovisco Pais, Lisbon 1049-001, Portugal.

出版信息

Mar Drugs. 2012 Dec;10(12):2698-2714. doi: 10.3390/md10122698.

Abstract

In particular niches of the marine environment, such as abyssal trenches, icy waters and hot vents, the base of the food web is composed of bacteria and archaea that have developed strategies to survive and thrive under the most extreme conditions. Some of these organisms are considered "extremophiles" and modulate the fatty acid composition of their phospholipids to maintain the adequate fluidity of the cellular membrane under cold/hot temperatures, elevated pressure, high/low salinity and pH. Bacterial cells are even able to produce polyunsaturated fatty acids, contrarily to what was considered until the 1990s, helping the regulation of the membrane fluidity triggered by temperature and pressure and providing protection from oxidative stress. In marine ecosystems, bacteria may either act as a sink of carbon, contribute to nutrient recycling to photo-autotrophs or bacterial organic matter may be transferred to other trophic links in aquatic food webs. The present work aims to provide a comprehensive review on lipid production in bacteria and archaea and to discuss how their lipids, of both heterotrophic and chemoautotrophic origin, contribute to marine food webs.

摘要

特别是在海洋环境的特定生态位,如深海沟、冰冷的水域和热液喷口,食物网的基础是由细菌和古菌组成的,它们已经发展出在最极端的条件下生存和繁荣的策略。这些生物体中的一些被认为是“极端微生物”,它们调节其磷脂的脂肪酸组成,以在低温/高温、高压、高/低盐度和 pH 值下保持细胞膜的适当流动性。与直到 20 世纪 90 年代才被认为的情况相反,细菌细胞甚至能够产生多不饱和脂肪酸,这有助于调节由温度和压力引发的膜流动性,并提供抗氧化应激的保护。在海洋生态系统中,细菌可以作为碳的汇,有助于向光自养生物进行营养物质的再循环,或者细菌有机物质可以转移到水生食物网中的其他营养级。本研究旨在全面综述细菌和古菌的脂类生产,并讨论其脂类(包括异养和化能自养来源)如何为海洋食物网做出贡献。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fd70/3528120/06a7d2167148/marinedrugs-10-02698-g001.jpg

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