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Optimization of Fermentation Conditions for Cold-active Cellulase Production by Response Surface Methodology

机译:响应面法优化冷活性纤维素酶生产的发酵条件

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The design of an optimum and cost-efficient fermentation conditions for production of cold-active cellulase by Penicillium cordubense D28 was attempted by using response surface methodology (RSM). Based on the Plackett-Burman design, temperature, seed age and inoculum size were selected as the most critical condition. Subsequently, they were investigated by the Box-Behnken design. Results showed that the maximum cold-active cellulase activity of 110.4U/mL was predicted when the coded values of temperature, seed age and inoculum size were -0.495, 0.455, and 0.253, respectively. The results were further verified by triplicate experiments. The batch reactors were operated under an optimized condition of the respective temperature, seed age and inoculum size of 17°C, 29h and 12.5%. The maximum cold-active cellulase activity of 219.9 U/mL was obtained based on the optimized fermentation conditions with further verified the practicability of this optimum strategy.
机译:通过使用响应面分析法(RSM)尝试设计一种最佳且经济高效的发酵条件,以生产由青霉青霉D28产生的冷活性纤维素酶。根据Plackett-Burman设计,选择温度,种子年龄和接种量作为最关键的条件。随后,通过Box-Behnken设计对其进行了研究。结果表明,当温度,种子年龄和接种量的编码值分别为-0.495、0.455和0.253时,预测的最大冷活性纤维素酶活性为110.4U / mL。通过一式三份的实验进一步验证了结果。间歇式反应器在各自的温度,种子年龄和接种量分别为17℃,29h和12.5%的最佳条件下运行。根据优化的发酵条件,获得的最大冷活性纤维素酶活性为219.9 U / mL,并进一步证明了该最佳策略的实用性。

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