DocumentCode
3159127
Title
Optimization of α-amylase production from Aspergillus Niger using spoiled starch rich vegetables by response surface methodology and Genetic Algorithm
Author
Rajulapati, Satish Babu ; Lakshmi Narasu, M. ; Vundavilli, Panduranga
Author_Institution
Dept. of Biotechnol., DVR & Dr. HS MIC Coll. of Technol., Kanchikacherla, India
fYear
2011
fDate
16-18 Dec. 2011
Firstpage
1
Lastpage
9
Abstract
Optimization of process variables for the improvement of α-amylase production in the specially made starch medium from spoiled starch rich vegetables by the cultivation of Aspergillus Niger was performed using response surface methodology (RSM) and genetic algorithm. Cultivation of Aspergillus Niger was conducted in submerged fermentation in the starch medium. Initially, the effect of incubation time (12-72 hours), pH (4-8), Temperature (25-45°C), starch concentration (5-25 mg/ml) and Inoculum size (5-25 %) on two objectives, i.e. total amount of crude enzyme and its activity was examined. It is observed that process variables were found to have a significant influence on the enzyme production. Multi-objective optimization of process variables found from central composite design were-incubation time (60 hrs), pH (6), Temperature (35°C), Starch Concentration (15 mg/ml) and Inoculum size (15%). At these variables, maximum enzyme activity and concentration of protein were 94 IU/ml and 8.27 mg/ml respectively. The optimum process variables found from Genetic Algorithm (GA) were-Incubation time-68hrs, pH-7, Temperature-35°C, Starch Concentration-19 mg/ml and Inoculum size-20%. At these variables, maximum concentration of protein and its activity were 8.60 mg/ml and 90IU/ml respectively.
Keywords
agricultural products; biotechnology; enzymes; fermentation; genetic algorithms; pH; response surface methodology; temperature; α-amylase production; Aspergillus Niger cultivation; central composite design; crude enzyme; enzyme production; fermentation; genetic algorithm; incubation time; inoculum size; multiobjective optimization; pH; response surface methodology; spoiled starch rich vegetable; starch concentration; starch medium; temperature 25 degC to 45 degC; temperature 35 degC; time 12 hour to 72 hour; time 60 hour; time 68 hour; Equations; Genetic algorithms; Mathematical model; Optimization; Proteins; Response surface methodology; α-amylase; Central Composite design; Genetic Algorithm; Saccharification; Spoiled starch rich vegetables; fermentation;
fLanguage
English
Publisher
ieee
Conference_Titel
India Conference (INDICON), 2011 Annual IEEE
Conference_Location
Hyderabad
Print_ISBN
978-1-4577-1110-7
Type
conf
DOI
10.1109/INDCON.2011.6139617
Filename
6139617
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