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Exopolysaccharide biosynthesis and biodegradation by a marine hydrothermal Alteromonas sp. strain ArchiMer
Lelchat, Florian; Cozien, Joelle; Le Costaouec, Tinaig; Brandily, Christophe; Schmitt, Sophie; Baudoux, Anne-claire; Colliec-jouault, Sylvia; Boisset, Claire.
Alteromonas macleodii subsp. fijiensis biovar deepsane is a deep-sea ecotype exopolysaccharide-producing bacteria isolated from the polychaete annelid Alvinella pompejana. The high molecular weight biopolymer HYD657 produced by this strain, is the first marine exopolysaccharide (EPS) to be commercialized for cosmetic use. Depolymerization methods are necessary to elucidate the complete structure of this EPS and to generate potentially bioactive oligosaccharides. Enzymatic methods are useful for elucidating polysaccharide structure because they specifically cleave glycosidic bonds and do not require harsh chemical conditions. The HYD657 EPS is structurally complex and no commercially available enzymes are able to effectively degrade it. Here, we present the...
Tipo: Text Palavras-chave: Marine Alteromonas macleodii sp strain; Bacterial exopolysaccharides; Microbial extracellular enzymes; Endogenous enzymatic degradation.
Ano: 2015 URL: https://archimer.ifremer.fr/doc/00240/35129/33893.pdf
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Study of biosorption of copper and silver by marine bacterial exopolysaccharides ArchiMer
Deschatre, Marine; Ghillebaert, F.; Guezennec, Jean; Simon-colin, Christelle.
Metal bioremediation was studied by biosorption of analytical grade copper Cu(II) and silver Ag(I) by an exopolysaccharide (EPS) produced by marine bacteria from French Polynesia. Colorimetric analysis showed that EPS was composed of neutral sugars, uronic acids, acetate and especially high sulfate amount (29%). Metal biosorption experiments were conducted in batch process. Results showed that the maximum sorption capacities calculated according to Langmuir model were 400 mg g(-1) EPS (6.29 mmol g(-1)) and 256 mg g(-1) EPS (2.38 mmol g(-1)) for Cu(II) and Ag(I), respectively. The influence of pH, biosorbent concentration, ionic strength on EPS biosorption capacities was investigated. Results showed that bacterial EPS can be considered as very promising for...
Tipo: Text Palavras-chave: Biosorption; Bacterial exopolysaccharides; Copper and silver removal; Bioremediation.
Ano: 2015 URL: https://archimer.ifremer.fr/doc/00601/71336/69766.pdf
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The marine bacteria Cobetia marina DSMZ 4741 synthesizes an unexpected K-antigen-like exopolysaccharide ArchiMer
Lelchat, Florian; Cerantola, Stephane; Brandily, Christophe; Colliec-jouault, Sylvia; Baudoux, Anne-claire; Ojima, Takao; Boisset, Claire.
We have studied the exopolysaccharide produced by Cobetia marina DSMZ 4741, a marine bacterium isolated from coastal seawater. This strain is able to produce a polysaccharide in presence of carbon sources as glucose, mannitol and alginate. The maximum production occurs in aerobic condition, during the end of the exponential phase. The polymer is a non-viscous, acidic heteropolysaccharide of 270 kDa constituted of a repeating unit of: →2)-β-D-Ribf-(1→4)-[7,8-O-(Pyr)]-α-D-KDOp-(2→ This kind of chemical structure is generally related to K-antigen polysaccharide of pathogenic Escherichia coli strains. This is the first time this type of EPS is described from a marine bacterium. Moreover the polysaccharide exhibits a pyruvate substitution on its...
Tipo: Text Palavras-chave: Bacterial exopolysaccharides; K-antigen; Cobetia marina; KDO; Marine polysaccharide.
Ano: 2015 URL: https://archimer.ifremer.fr/doc/00254/36494/35038.pdf
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