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Improved Rifamycin B Production by Nocardia mediterranei MTCC 14 under Solid-State Fermentation through Process Optimization

机译:通过工艺优化固态发酵诺卡氏诺卡氏菌MTCC 14提高利福霉素B的生产

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摘要

Optimization of various production parameters using response surface methodology (RSM) was performed to assess maximum yield of rifamycin B from Nocardia mediterranei MTCC 14. Plackett-Burman design test was applied to determine the significant effects of various production parameters such as glucose, maltose, ribose, galactose, beef extract, peanut meal, ammonium chloride, ammonium sulphate, barbital, pH, and moisture content on production of rifamycin B. Among the eleven variables tested, galactose, ribose, glucose, and pH were found to have significant effect on rifamycin B production. Optimum levels of the significant variables were decided by using a central composite design. The most appropriate condition for production of rifamycin B was found to be a single step production at galactose (8% w/w), ribose (3% w/w), glucose (9% w/w), and pH (7.0). At these optimum production parameters, the maximum yield of rifamycin B obtained experimentally (9.87 g/kgds dry sunflower oil cake) was found to be very close to its predicted value of 10.35 g/kgds dry sunflower oil cake. The mathematical model developed was found to fit greatly with the experimental data of rifamycin B production.
机译:使用响应表面方法(RSM)对各种生产参数进行了优化,以评估地中海诺卡氏菌MTCC 14产生的利福霉素B的最大产量。采用Plackett-Burman设计测试来确定各种生产参数(如葡萄糖,麦芽糖,核糖)的显着影响,半乳糖,牛肉提取物,花生粕,氯化铵,硫酸铵,巴比妥,pH和水分对利福霉素B的生产。在所测试的11个变量中,半乳糖,核糖,葡萄糖和pH对利福霉素有显着影响B生产。通过使用中央复合设计来确定重要变量的最佳水平。发现生产利福霉素B的最合适条件是在半乳糖(8%w / w),核糖(3%w / w),葡萄糖(9%w / w)和pH(7.0)下一步生产。在这些最佳生产参数下,实验获得的利福霉素B的最大产量(9.87微克/千克干向日葵油饼)非常接近其预测值10.35微克/千克干向日葵油饼。发现开发的数学模型与利福霉素B生产的实验数据非常吻合。

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