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来自极端海洋环境的细菌胞外多糖,特别关注南大洋、海冰和深海热液喷口:综述

Bacterial exopolysaccharides from extreme marine environments with special consideration of the southern ocean, sea ice, and deep-sea hydrothermal vents: a review.

作者信息

Nichols C A Mancuso, Guezennec J, Bowman J P

机构信息

School of Agricultural Science, University of Tasmania, GPO Box 252-54, Hobart, Tasmania, 7000, Australia.

出版信息

Mar Biotechnol (NY). 2005 Jul-Aug;7(4):253-71. doi: 10.1007/s10126-004-5118-2. Epub 2005 Jul 21.

DOI:10.1007/s10126-004-5118-2
PMID:16075348
Abstract

Exopolysaccharides (EPSs) are high molecular weight carbohydrate polymers that make up a substantial component of the extracellular polymers surrounding most microbial cells in the marine environment. EPSs constitute a large fraction of the reduced carbon reservoir in the ocean and enhance the survival of marine bacteria by influencing the physicochemical environment around the bacterial cell. Microbial EPSs are abundant in the Antarctic marine environment, for example, in sea ice and ocean particles, where they may assist microbial communities to endure extremes of temperature, salinity, and nutrient availability. The microbial biodiversity of Antarctic ecosystems is relatively unexplored. Deep-sea hydrothermal vent environments are characterized by high pressure, extreme temperature, and heavy metals. The commercial value of microbial EPSs from these habitats has been established recently. Extreme environments offer novel microbial biodiversity that produces varied and promising EPSs. The biotechnological potential of these biopolymers from hydrothermal vent environments as well as from Antarctic marine ecosystems remains largely untapped.

摘要

胞外多糖(EPSs)是高分子量碳水化合物聚合物,构成了海洋环境中大多数微生物细胞周围细胞外聚合物的重要组成部分。EPSs占海洋中还原碳库的很大一部分,并通过影响细菌细胞周围的物理化学环境来提高海洋细菌的存活率。微生物EPSs在南极海洋环境中含量丰富,例如在海冰和海洋颗粒中,它们可能有助于微生物群落耐受极端的温度、盐度和养分可用性。南极生态系统的微生物生物多样性相对未被探索。深海热液喷口环境的特点是高压、极端温度和重金属。来自这些栖息地的微生物EPSs的商业价值最近已得到确认。极端环境提供了产生多样且有前景的EPSs的新型微生物生物多样性。来自热液喷口环境以及南极海洋生态系统的这些生物聚合物的生物技术潜力在很大程度上仍未被开发。

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