Guezennec J
IFREMER, Centre de Brest, Dept. DRV/VP/BMM, BP 70, Plouzane 29280, France.
J Ind Microbiol Biotechnol. 2002 Oct;29(4):204-8. doi: 10.1038/sj.jim.7000298.
Polysaccharides and, in particular, microbial polysaccharides represent a class of important products of growing interest for many sectors of industry. Although many known marine bacteria produce exopolysaccharides (EPS), continuation in looking for new polysaccharide-producing microorganisms is promising. Hydrothermal deep-sea vents could be a source of novel EPS as indicated by the screening of a number of mesophilic heterotrophic bacteria recovered from different locations. Although originating from such extreme environment, some bacteria were shown to biosynthesize innovative EPS under laboratory conditions. Their specific rheological properties either in the presence or absence of monovalent and divalent ions, biological activities, metal binding capabilities, and novel chemical composition mean that these EPS are expected to find many applications in the near future.
多糖,尤其是微生物多糖,是一类在许多工业领域中越来越受关注的重要产品。尽管许多已知的海洋细菌能产生胞外多糖(EPS),但继续寻找新的多糖产生微生物仍具有前景。从不同地点分离出的许多嗜温异养细菌的筛选结果表明,热液深海喷口可能是新型EPS的来源。尽管这些细菌源自极端环境,但在实验室条件下,一些细菌仍能生物合成创新型EPS。它们在单价和二价离子存在或不存在时的特定流变特性、生物活性、金属结合能力以及新颖的化学组成意味着这些EPS有望在不久的将来得到广泛应用。