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Response surface analyses of rhamnolipid production by Pseudomonas aeruginosa strain with two response values

机译:铜绿假单胞菌株与两个响应值的响应表面分析

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Response surface methodology (RSM) and Box-Behnken experiment design (BBD) were employed for optimization of biosurfactant shaking flask fermentation conditions of a Pseudomonas aeruginosa strain. Using Design Expert 8.0.5b software, multiple binomial mathematical models were established to study the influence of carbon sources (waste vegetable oil, WVO), nitrogen source (NaNO3) of and potassium source (KCl) levels in fermentation broth and their interactions on fermentation yield of biosurfactant. Significance tests showed that the model with the oil spreading circle (OSC) as response value was significant while that with rhamnolipid production by colorimetric method was narrowly significant (P=0.0531, R2=0.8218). Ultimately the optimal parameters were reached as WVO 5.04%, NaNO3 2.70 g/L, KCl 1.37 g/L with two index as response values. Under optimized conditions, the expected rhamnolipid yield increased dramatically. OSC measurement with diluted broth acting as the response value, rather as surface tension measurement or colorimetric method showed advantages such as easy and simple to conduct, the requirement for volume of broth, low cost and more precise to construct the optimal model.
机译:响应表面方法(RSM)和Box-Behnken实验设计(BBD)用于优化假单胞菌铜绿假单胞菌菌株的生物活性剂振动瓶发酵条件。使用设计专家8.0.5B软件,建立了多个二项式数学模型,以研究发酵液中碳源(废植物油,WVO),氮源(Nano3)和钾源(KCl)水平的影响及其对发酵时的相互作用生物活性剂的产量。重要性测试表明,具有油扩散圆圈(OSC)的模型是响应值的显着性,而通过比色法产生鼠霉素产生狭窄(P = 0.0531,R2 = 0.8218)。最终达到最佳参数,作为WVO 5.04%,NaNO 3 2.70g / L,KCl 1.37g / L,具有两个指数作为响应值。在优化条件下,预期的鼠李酮产量急剧增加。用稀释的肉汤作用作为响应值的OSC测量,而是表面张力测量或比色方法显示出易于和简单的优点,需要进行肉汤,低成本和更精确的要求构建最佳模型。

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