The study investigated on medium optimization for production of exopolymer by a newly isolated bacterium, Halobacterium sp. SM5, using the mixture design and response surface method. The mixture experiment was designed by setting five parameters at the lowest and highest of concentrations: pseudo components design containing 0.15-0.25 glucose, 0.15-0.25 yeast extract, 0.35-0.45 MgSO4·7H2O, 0.1-0.2 vitamin casamino acid and 0.02-0.06 KCl. The results of the mixture design revealed that the effect of nutrients or elements on the exopolymer produced by the strain SM5 were in the order of MgSO4·7H2O > yeast extract > vitamin casamino acid > KCl > glucose, respectively. The suitable medium recipe for enhancement the exopolymer production was 7...
The combined effects of the processing parameters for exopolysaccharides production by Rhizobium s...
Background and Aims: Due to its self-assembly properties on variety of surfaces and creating regular...
The extraordinary nature of the bacterial cellulose (BC) biopolymer gives it potential for diverse a...
The study investigated on medium optimization for production of exopolymer by a newly isolated bacte...
Purpose: To improve the production of a novel exopolysaccharide (EPS) by Bacillus mucilaginosus CG...
Purpose: To improve the production of a novel exopolysaccharide (EPS) by Bacillus mucilaginosus CGMC...
Berkleasmium sp. Dzf12, an endophytic fungus from Dioscorea zingiberensis, is a high producer of spi...
Exopolysaccharides (EPSs) are important biopolymers with diverse applications such as gelling compou...
A recently isolated Streptomyces sp. JRG-04 from a mangrove estuary was identified as a producer ...
With the rising awareness of microbial exopolysaccharides (EPSs) application in various fields, halo...
Aim. Optimization of the nutrient medium (NM) for cultivation of Pseudomonas maltophilia ONU-329 str...
<p><a href="/public/journals/52/Othman.png" target="_self"><strong><img src="/public/site/images/mmo...
Factors affecting the production of exopolysaccharide (EPS) from Enterobacter cloacae WD7 cultivated...
The production of cellulase by Bacillus subtilis MU S1, a strain isolated from Eravikulam National P...
<span>Probiotics are defined as living microorganisms with beneficial effects on the host. Probiotic...
The combined effects of the processing parameters for exopolysaccharides production by Rhizobium s...
Background and Aims: Due to its self-assembly properties on variety of surfaces and creating regular...
The extraordinary nature of the bacterial cellulose (BC) biopolymer gives it potential for diverse a...
The study investigated on medium optimization for production of exopolymer by a newly isolated bacte...
Purpose: To improve the production of a novel exopolysaccharide (EPS) by Bacillus mucilaginosus CG...
Purpose: To improve the production of a novel exopolysaccharide (EPS) by Bacillus mucilaginosus CGMC...
Berkleasmium sp. Dzf12, an endophytic fungus from Dioscorea zingiberensis, is a high producer of spi...
Exopolysaccharides (EPSs) are important biopolymers with diverse applications such as gelling compou...
A recently isolated Streptomyces sp. JRG-04 from a mangrove estuary was identified as a producer ...
With the rising awareness of microbial exopolysaccharides (EPSs) application in various fields, halo...
Aim. Optimization of the nutrient medium (NM) for cultivation of Pseudomonas maltophilia ONU-329 str...
<p><a href="/public/journals/52/Othman.png" target="_self"><strong><img src="/public/site/images/mmo...
Factors affecting the production of exopolysaccharide (EPS) from Enterobacter cloacae WD7 cultivated...
The production of cellulase by Bacillus subtilis MU S1, a strain isolated from Eravikulam National P...
<span>Probiotics are defined as living microorganisms with beneficial effects on the host. Probiotic...
The combined effects of the processing parameters for exopolysaccharides production by Rhizobium s...
Background and Aims: Due to its self-assembly properties on variety of surfaces and creating regular...
The extraordinary nature of the bacterial cellulose (BC) biopolymer gives it potential for diverse a...