An organic solvent-tolerant bacterium producing an organic solvent-stable protease was isolated from soil and identified as Pseudomonas aeruginosa strain K. Nutritional requirements for optimized protease production by this strain were investigated. Maximum protease activity was achieved with sorbitol as the sole carbon source, followed by starch and lactose at pH 7.0 and 37 °C. Dextrose, sucrose and glycerol greatly reduced the protease production. The best organic nitrogen source was casamino acid. Tryptone, soytone and yeast extract supported protease production while corn steep liquor and beef extract inhibited the protease activity. Significant protease production was observed with sodium nitrate as a sole nitrogen source however, amm...
A potent bacterium for extracellular protease production was isolated from local soil and identified...
A gene encoding an organic solvent-stable protease was amplified from Pseudomonas aeruginosa strain ...
Pseudomonas fluorescens AU17 was isolated from the fish waste discharged soil and it was tested for ...
An organic solvent-tolerant bacterium designated as 146 capable of producing an organic solvent-stab...
The physical factors affecting the production of an organic solvent-tolerant protease from Pseudomon...
This study involves the isolation and screening of an organic solvent-tolerant producer from eleven...
A biologically pure strain of bacteria Pseudomonas aeruginosa strain K capable of producing protease...
The organic solvent-tolerant strain K protease was purified to homogeneity by ammonium sulphate prec...
The potential advantage of using organic solvents for enzymatic reactions was due to the shift of re...
AbstractIn this study, proteases have been isolated from halophilic bacteria, Pseudomonas stutzeri B...
Background: Many researchers have reported on the optimization of protease production; nevertheless,...
329-339A new organic solvent-tolerant bacterial strain UD-5 was isolated from industrial solvent ef...
A protease producing bacteria was isolated from meat waste contaminated soil and identified as Pseud...
A bacterium known as Strain K was identified as Pseudomonas aeruginosa since it 16S rRNA sequence ex...
Optimization of the growth conditions for maximum growth rate and alkaline protease production was c...
A potent bacterium for extracellular protease production was isolated from local soil and identified...
A gene encoding an organic solvent-stable protease was amplified from Pseudomonas aeruginosa strain ...
Pseudomonas fluorescens AU17 was isolated from the fish waste discharged soil and it was tested for ...
An organic solvent-tolerant bacterium designated as 146 capable of producing an organic solvent-stab...
The physical factors affecting the production of an organic solvent-tolerant protease from Pseudomon...
This study involves the isolation and screening of an organic solvent-tolerant producer from eleven...
A biologically pure strain of bacteria Pseudomonas aeruginosa strain K capable of producing protease...
The organic solvent-tolerant strain K protease was purified to homogeneity by ammonium sulphate prec...
The potential advantage of using organic solvents for enzymatic reactions was due to the shift of re...
AbstractIn this study, proteases have been isolated from halophilic bacteria, Pseudomonas stutzeri B...
Background: Many researchers have reported on the optimization of protease production; nevertheless,...
329-339A new organic solvent-tolerant bacterial strain UD-5 was isolated from industrial solvent ef...
A protease producing bacteria was isolated from meat waste contaminated soil and identified as Pseud...
A bacterium known as Strain K was identified as Pseudomonas aeruginosa since it 16S rRNA sequence ex...
Optimization of the growth conditions for maximum growth rate and alkaline protease production was c...
A potent bacterium for extracellular protease production was isolated from local soil and identified...
A gene encoding an organic solvent-stable protease was amplified from Pseudomonas aeruginosa strain ...
Pseudomonas fluorescens AU17 was isolated from the fish waste discharged soil and it was tested for ...