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首页> 外文期刊>Preparative biochemistry & biotechnology: An international journal for rapid communication >OPTIMIZATION OF FERMENTATION MEDIUM FOR ACETOIN PRODUCTION BY Bacillus subtilis SF4-3 USING STATISTICAL METHODS
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OPTIMIZATION OF FERMENTATION MEDIUM FOR ACETOIN PRODUCTION BY Bacillus subtilis SF4-3 USING STATISTICAL METHODS

机译:统计方法优化枯草芽孢杆菌SF4-3生产丙酮酸的发酵培养基

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摘要

To improve the acetoin-producing ability of Bacillus subtilis SF4-3, isolated from "natto," a Japanese traditional food, the fermentation medium was optimized in shake-flask fermentation by statistically designed methods. Based on results of the single-factor experiment, orthogonal experiment, and Plackett-Burman design, yeast extract, corn steep liquor, and urea were identified as showing significant influence on the acetoin production. Subsequently, the optimum combination of the three factors was investigated by the Box-Behnken design (BBD) of response surface methodology (RSM) in order to further enhance the acetoin production. The maximum acetoin yield of 45.4 g/L was predicted when the concentrations of yeast extract, corn steep liquor, and urea were 8.5 g/L, 14.6 g/L, and 3.8 g/L, respectively. The results were further confirmed in triplicate experiments using the optimized medium (glucose 160 g/L, yeast extract 8.5 g/L, corn steep liquor 14.6 g/L, urea 3.8 g/L, manganese sulfate 0.05 g/L, ferrous sulfate 0.05 g/L), and an acetoin yield of 46.2 g/L was obtained in the validation experiment, which was in agreement with the prediction. After the optimization of medium components, an increase of 36.28% in acetoin production was achieved in comparison to that at the initial medium levels.
机译:为了提高从日本传统食品“纳豆”中分离出的枯草芽孢杆菌SF4-3的乙酰化酶生产能力,通过统计设计的方法对摇瓶发酵中的发酵培养基进行了优化。根据单因素实验,正交实验和Plackett-Burman设计的结果,可以确定酵母提取物,玉米浆和尿素对乙酰辅酶的产生具有显着影响。随后,通过响应面方法(RSM)的Box-Behnken设计(BBD)研究了这三个因素的最佳组合,以进一步提高丙酮的产量。当酵母提取物,玉米浆和尿素的浓度分别为8.5 g / L,14.6 g / L和3.8 g / L时,预计最大乙酰丙酮产量为45.4 g / L。使用优化的培养基(葡萄糖160 g / L,酵母提取物8.5 g / L,玉米浆14.6 g / L,尿素3.8 g / L,硫酸锰0.05 g / L,硫酸亚铁0.05)在三次实验中进一步证实了结果。验证实验中获得的乙酰丙酮收率为46.2 g / L,与预测结果相符。在优化培养基成分后,与初始培养基水平相比,乙酰丙酮产量提高了36.28%。

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