The molecular identification of seven biofilm-forming cyanobacteria and the characterization of their exopolysaccharides were made and considered in terms of potential biotechnological applications. The studied strains were isolated from phototrophic biofilms taken from various Italian sites including a wastewater treatment plant, an eroded soil and a brackish lagoon. The polysaccharides were characterized by use of ion exchange chromatography, circular dichroism and cytochemical stains. All strains produced exopolysaccharides with differing ratios of hydrophobic and hydrophilic moieties depending on the species, the polysaccharide fraction (i.e. whether capsular or released) and the ambient conditions. It was shown that the anionic nature of the exopolysaccharides was due to the presence of carboxylic and sulfated groups and is likely the main characteristic with industrial applicability. Potential biotechnological applications are discussed
Characterization of exopolysaccharides produced by seven biofilm-forming cyanobacterial strains for biotechnological applications / Francesca Pippo;Neil T. W. Ellwood;Alessandra Gismondi;Laura Bruno;Federico Rossi;Paolo Magni; Roberto De Philippis. - In: JOURNAL OF APPLIED PHYCOLOGY. - ISSN 0921-8971. - STAMPA. - 25:(2013), pp. 1697-1708. [10.1007/s10811-013-0028-1]
Characterization of exopolysaccharides produced by seven biofilm-forming cyanobacterial strains for biotechnological applications
ROSSI, FEDERICO;DE PHILIPPIS, ROBERTO
2013
Abstract
The molecular identification of seven biofilm-forming cyanobacteria and the characterization of their exopolysaccharides were made and considered in terms of potential biotechnological applications. The studied strains were isolated from phototrophic biofilms taken from various Italian sites including a wastewater treatment plant, an eroded soil and a brackish lagoon. The polysaccharides were characterized by use of ion exchange chromatography, circular dichroism and cytochemical stains. All strains produced exopolysaccharides with differing ratios of hydrophobic and hydrophilic moieties depending on the species, the polysaccharide fraction (i.e. whether capsular or released) and the ambient conditions. It was shown that the anionic nature of the exopolysaccharides was due to the presence of carboxylic and sulfated groups and is likely the main characteristic with industrial applicability. Potential biotechnological applications are discussedI documenti in FLORE sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.