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Microbial extracellular polymeric substances in marine biogeochemicalprocesses

机译:海洋生物地球化学过程中的微生物细胞外聚合物

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Microbial extracellular polymeric substances (EPS) are widely distributed in marine environments and are found in free dissolved form, colloids, discreet particles like TEP and/or associated with particulate matter, including cell aggregates, detritus, biofilms, microbial mats, etc. The chemical composition of EPS is influenced by various factors, including nutrients, temperature, pH, physiology and age of the culture. Microbial EPS perform various functions, and are involved in diverse marine processes. The unique gelling properties of microbial EPS are considered important in the transport and trans-formation of organic matter, complexation of dissolved metals and biogeochemical cycling of elements. EPS are rich in organic carbon and therefore are an important source of carbon for different organisms in the food chain. The production of dissolved EPS during the bacterial growth, production of particulate organic carbon from the dissolved EPS and enzymatic breakdown and conversion of particulate EPS into dissolved organic matter within the microbial loop, form an important alternate route of organic carbon cycling in the marine trophic web. In this article, recent findings on EPS and their significance in biogeochemical processes are discussed with respect to their role in marine microbial ecology, marine food-web and other areas of future research.
机译:微生物细胞外聚合物质(EPS)广泛分布在海洋环境中,并以游离溶解形式,胶体,离散颗粒(如TEP)和/或与颗粒物质(包括细胞聚集体,碎屑,生物膜,微生物垫等)相关的形式发现。 EPS的组成受多种因素影响,包括养分,温度,pH,生理和培养年龄。微生物EPS具有多种功能,并且涉及各种海洋过程。微生物EPS的独特胶凝特性被认为对有机物的运输和转化,溶解金属的络合以及元素的生物地球化学循环很重要。 EPS富含有机碳,因此是食物链中不同生物的重要碳源。细菌生长过程中溶解的EPS的产生,溶解的EPS产生的颗粒有机碳以及酶分解以及微生物循环内颗粒EPS转化为溶解的有机物质的形成,是海洋营养网中有机碳循环的重要替代途径。 。在本文中,就EPS在海洋微生物生态学,海洋食物网和其他未来研究领域中的作用,讨论了EPS的最新发现及其在生物地球化学过程中的重要性。

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