Experimental investigations were carried out to develop economic production process of cellulase using coconut mesocarp as an inexpensive lignocellulosic inducer while replacing commercial cellulose. Cellulase production was initially investigated from commercial cellulose in different submerged conditions using Trichoderma reesei (MTCC 164). Maximum enzyme production was achieved 6.3Â g/l with activity level 37 FPU/ml in the condition where cellulose to water content ratio was maintained at 5:35 (W/V). To achieve similar maximum production of cellulase from coconut mesocarp, response surface methodology was implemented to optimize most influencing parameters. Most influencing nutritional parameters such as coconut mesocarp, glucose and peptone were optimized in the concentration ranges of 35Â g/l, 35Â g/l and 25Â g/l, respectively. Selecting optimized parameter values, fermentations were conducted inside the fermenter with 2Â L operating volume to ensure high concentration and activity profiles of enzyme. Enzyme concentration was achieved 7.20Â g/l after 96Â h of batch fermentation with specific activity levels of 42 FPU/ ml and CMCase 75Â U/ml. Enzyme concentration was further improved to 9.58Â g/l with activity levels of 54 FPU/ml and CMCase 93Â U/ml by adopting sequential feeding of coconut mesocarp in fed-batch fermentation mode. The presence of pure cellulase in the sample was confirmed by FTIR analysis.
Improved production of cellulase by Trichoderma reesei (MTCC 164) from coconut mesocarp-based lignocellulosic wastes under response surface-optimized condition.
在响应面优化条件下,利用里氏木霉(MTCC 164)从椰子果肉木质纤维素废料中提高纤维素酶的产量
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作者:Dey Pinaki, Singh Joginder, Scaria Jismole, Anand Athira P
| 期刊: | 3 Biotech | 影响因子: | 2.900 |
| 时间: | 2018 | 起止号: | 2018 Sep;8(9):402 |
| doi: | 10.1007/s13205-018-1421-x | 研究方向: | 免疫/内分泌 |
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