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Beta-glucan production by Botryosphaeria rhodina in different bench-top bioreactors

pmid: 15078524
handle: 2607/4640 , 2607/4639 , 2607/30658 , 2607/30657 , 2067/30658
Beta-glucan production by Botryosphaeria rhodina in different bench-top bioreactors
Evaluation of the technical feasibility of transferring beta-glucan production by Botryosphaeria rhodina DABAC-P82 from shaken flasks to bench-top bioreactors.Three different bioreactors were used: 3 l stirred tank reactor (STR-1) equipped with two different six-blade turbines; STR as above but equipped with a three-blade marine propeller plus draft-tube (STR-2); 2 l air-lift column reactor (ALR) equipped with an external loop. STR-1, tested at three different stirrer speeds (300, 500 and 700 rev min(-1)) appeared to be less suitable for beta-glucan production by the fungus, being maximum production (19.4 g l(-1)), productivity (0.42 g l(-1) h(-1)) and yield (0.48 g g(-1) of glucose consumed) markedly lower than those obtained in shaken culture (29.7 g l(-1), 1.23 g l(-1) h(-1) and 0.61 g g(-1), respectively). Better performances were obtained with both STR-2 and ALR. With the latter, in particular, the increase of production was accompanied by reduced fermentation time (25.7 g l(-1) after only 22 h); productivity and yield were highest (1.17 g l(-1) h(-1) and 0.62 g g(-1) of glucose consumed, respectively).Using an air-lift reactor with external loop, the scaling up from shaken flasks to bench-top bioreactor of the beta-glucan production by B. rhodina DABAC-P82 is technically feasible.Although culture conditions are still to be optimized, the results obtained using the ARL are highly promising.
- Tuscia University Italy
Time Factors, Polysaccharides, Bacterial, Culture Media, Bioreactors, Glucose, Ascomycota, Fermentation, Biomass, Mitosporic Fungi, Glucans
Time Factors, Polysaccharides, Bacterial, Culture Media, Bioreactors, Glucose, Ascomycota, Fermentation, Biomass, Mitosporic Fungi, Glucans
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