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Modeling bikaverin production by Fusarium oxysporum CCT7620 in shake flask cultures

机译:用Fusarium Oxysporum CCT7620在摇瓶培养中建模Bikaverin生产

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Bikaverin is a fungal red pigment that presents antimicrobial and antitumor activities. Therefore, this substance could be used as an alternative additive in the food and pharmaceutical industries. The aim of this work was to use response surface methodology to optimize the fermentation conditions and maximize the production of bikaverin in shake flasks. The variables investigated were agitation speed (71-289 rpm), temperature (21-35), and substrate (rice) concentration in the culture medium (16.4-83.6 g/L). The agitation speed had a positive effect on red pigment production, while substrate concentration and temperature had the opposite effect. Maximum bikaverin production was predicted to occur using 289 rpm, 24.3, and 16.4 g/L rice concentration. Experimental validation using 289 rpm, 28, and 20 g/L rice concentration was 6.2% higher than predicted by the model. The present investigation was important for defining the best conditions for the production of bikaverin.
机译:Bikaverin是一种真菌红色颜料,呈现抗菌和抗肿瘤活动。因此,这种物质可用作食品和制药行业中的替代添加剂。这项工作的目的是使用响应面方法来优化发酵条件,并最大限度地提高摇瓶中的Bikaverin的生产。研究的变量是培养基中的搅拌速度(71-289rpm),温度(21-35)和基材(水稻)浓度(16.4-83.6g / l)。搅拌速度对红色颜料生产具有积极影响,而底物浓度和温度具有相反的效果。预计使用289rpm,24.3和16.4g / L水稻浓度进行最大的BikaVerin生产。使用289rpm,28和20g / l水稻浓度的实验验证比模型预测的6.2%。本调查对于定义Bikaverin生产的最佳条件非常重要。

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