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Modeling of Pullulan Fermentation by Using a Color Variant Strain of Aureobasidium pullulans

机译:使用紫红素淀粉淀粉的彩色变体菌株建模藜

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Pullulan, which is comprised of glucose units, is a simple linear polysaccharide produced by Aureobasidium pullulans. Pullulan has long been used in various applications such as blood plasma substitutes, food additives, adhesive additives, flocculants, and even environmental pollution control agents. Mathematical models of biomass, pullulan, and sucrose profiles during fermentation not only provide information about the kinetic-metabolic nature of pullulan, but also facilitate the control and optimization of pullulan production. In this study, several models were modified and tested in order to describe biomass, pullulan, and sucrose profiles during batch fermentation using a color variant strain of A. pullulans. The results demonstrated that the modified Gompertz model ^an serve as a generalized equation to fit biomass production, pullulan production, and sucrose consumption. Furthermore, validation of this modified Gompertz model indicated that biomass (slope = 1.00, R2 = 0.991), pullulan (slope= 1.10, R2 = 0.991), and sucrose (slope = 0.96, R2 = 0.991) were all predicted accurately.
机译:由葡萄糖单元组成的胰蛋白酶是由金属脱碳淀粉制备的简单线性多糖。长期以来一直用于各种应用,如血浆替代品,食品添加剂,粘合剂添加剂,絮凝剂,甚至环境污染对照剂。发酵过程中生物质,胰岛,蔗糖谱的数学模型不仅提供了有关普拉班的动力学代谢性质的信息,而且促进了普拉兰生产的控制和优化。在这项研究中,修改并测试了几种模型,以描述使用A.普拉拉斯的颜色变体菌株在分批发酵期间描述生物质,胰蛋白酶和蔗糖型材。结果表明,改进的Gompertz模型^ AN用作装配生物质生产,普拉兰生产和蔗糖消耗的广义方程。此外,这种改进的gompertz模型的验证表明,生物量(斜率= 1.00,r2 = 0.991),pullulan(斜率= 1.10,r2 = 0.991),以及蔗糖(斜率= 0.96,r2 = 0.991)都是准确的。

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