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首页> 外文期刊>Marine Biotechnology >Production of Cold-Adapted Amylase by Marine Bacterium Wangia sp. C52: Optimization, Modeling, and Partial Characterization
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Production of Cold-Adapted Amylase by Marine Bacterium Wangia sp. C52: Optimization, Modeling, and Partial Characterization

机译:海洋细菌Wangia sp。生产冷适应的淀粉酶。 C52:优化,建模和部分表征

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摘要

The aim of this work was to optimize the fermentation parameters in the shake-flask culture of marine bacterium Wangia sp. C52 to increase cold-adapted amylase production using two statistical experimental methods including Plackett–Burman design, which was applied to find the key ingredients for the best medium composition, and response surface methodology, which was used to determine the optimal concentrations of these components. The results showed starch, tryptone, and initial pH had significant effects on the cold-adapted amylase production. A central composite design was then employed to further optimize these three factors. The experimental results indicated that the optimized composition of medium was 6.38 g L−1 starch, 33.84 g L−1 tryptone, 3.00 g L−1 yeast extract, 30 g L−1 NaCl, 0.60 g L−1 MgSO4 and 0.56 g L−1 CaCl2. The optimized cultivation conditions for amylase production were pH 7.18, a temperature of 20°C, and a shaking speed of 180 rpm. Under the proposed optimized conditions, the amylase experimental yield (676.63 U mL−1) closely matched the yield (685.60 U mL−1) predicted by the statistical model. The optimization of the medium contributed to tenfold higher amylase production than that of the control in shake-flask experiments.
机译:这项工作的目的是优化海洋细菌Wangia sp。的摇瓶培养中的发酵参数。使用两种统计实验方法(包括Plackett-Burman设计和PACE)来响应C52以增加冷适应淀粉酶的产量,该方法用于找到最佳培养基组成的关键成分,而响应面分析法则用于确定这些成分的最佳浓度。结果表明,淀粉,胰蛋白tone和初始pH值对冷适应淀粉酶的产生有显着影响。然后采用中央复合设计来进一步优化这三个因素。实验结果表明,最佳培养基组成为:6.38 g L-1 淀粉,33.84 g L-1 胰蛋白,、 3.00 g L-1 酵母提取物,30 g L-1 NaCl,0.60 g L-1 MgSO4 和0.56 g L-1 CaCl2 。用于生产淀粉酶的最佳培养条件是pH 7.18,温度20°C和摇动速度180 rpm。在建议的优化条件下,淀粉酶实验产量(676.63 U mL-1 )与统计模型预测的产量(685.60 U mL-1 )非常匹配。在摇瓶实验中,培养基的优化产生了比对照高十倍的淀粉酶产量。

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