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一种新的产胞外聚合物细菌,即类胡萝卜素产色副球菌派里亚亚种,从位于法属波利尼西亚环礁朗伊罗阿的一块“科帕拉”席垫中分离得到。

A novel exopolymer-producing bacterium, Paracoccus zeaxanthinifaciens subsp. payriae, isolated from a "kopara" mat located in Rangiroa, an atoll of French Polynesia.

作者信息

Raguénès Gérard, Moppert Xavier, Richert Laurent, Ratiskol Jacqueline, Payri Claude, Costa Bernard, Guezennec Jean

机构信息

Institut Français de Recherche pour l'Exploitation de la Mer, Centre de Brest, DRV/VP/BMM, B.P. 70, 29280 Plouzané, France.

出版信息

Curr Microbiol. 2004 Sep;49(3):145-51. doi: 10.1007/s00284-004-4303-x.

Abstract

An aerobic, mesophilic and heterotrophic marine bacterium designated RA19, able to produce two different exocellular polymers and zeaxanthin, was isolated from a French polynesian bacterial mat (localy named "kopara") situated in the atoll of Rangiroa. This microorganism, on the basis of its phenotypical features and the genotypic investigations, can be clearly assigned to the Parococcus zeaxanthinifaciens species and the name Parococcus zeaxanthinifaciens subsp. payriae is proposed. Optimal growth occurs between 30 degrees C and 35 degrees C, at pH between 6.5 and 7.5 and at ionic strength between 20 and 40 g/L of NaCl. The guanine-plus-cytosine content of DNA was 65.6%. This bacterium excreted, under laboratory conditions, two different polymers: a water-soluble exopolysaccharide (EPSI) consisting of 5 different sugars and a non-water-soluble macromolecule assumed to be of a glycoproteinic nature. The high sulfate content of the EPS1 and preliminary biological tests clearly showed that applications could be found in the very near future for both polymers in the cosmetic area. Their contribution to the viscous laminated microbial mat locally called "kopara" can be also mentioned.

摘要

从位于朗伊罗阿环礁的法属波利尼西亚细菌垫(当地称为“kopara”)中分离出一株需氧、嗜温且异养的海洋细菌,命名为RA19,它能够产生两种不同的细胞外聚合物和玉米黄质。基于其表型特征和基因研究,这种微生物可明确归为产玉米黄质副球菌物种,并提出命名为产玉米黄质副球菌派里亚亚种。最佳生长温度在30℃至35℃之间,pH值在6.5至7.5之间,离子强度为20至40g/L的氯化钠。DNA的鸟嘌呤加胞嘧啶含量为65.6%。在实验室条件下,这种细菌分泌出两种不同的聚合物:一种由5种不同糖类组成的水溶性胞外多糖(EPSI)和一种假定为糖蛋白性质的非水溶性大分子。EPS1的高硫酸盐含量和初步生物学测试清楚地表明,这两种聚合物在不久的将来可应用于化妆品领域。还可以提及它们对当地称为“kopara”的粘性层状微生物垫的作用。

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