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首页> 外文期刊>Process Biochemistry >Modelling the uptake and growth kinetics of Penicillium glabrum in a tannic acid-containing solid-state fermentation for tannase production
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Modelling the uptake and growth kinetics of Penicillium glabrum in a tannic acid-containing solid-state fermentation for tannase production

机译:模拟含鞣酸的固态发酵法生产青霉菌时青霉菌的摄取和生长动力学

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摘要

A mathematical growth model for the batch solid-state fermentation process for fungal tannase production was developed and tested experimentally. The unstructured model describes the uptake and growth kinetics of Penicillium glabrum in an impregnated polyurethane foam substrate system. In general, good agreement between the experimental data and model simulations was obtained. Biomass, tannase and spore production are described by logistic kinetics with a time delay between biomass production and tannase and spore formation. Possible induction mechanisms for the latter are proposed. Hydrolysis of tannic acid, the main carbon source in the substrate system, is reasonably well described with Michaelis-Menten kinetics with time-varying enzyme concentration but a more complex reaction mechanism is suspected. The metabolism of gallic acid, a tannase-hydrolysis product of tannic acid, was shown to be growth limiting during the main growth phase.
机译:开发了用于真菌鞣酸酶的分批固态发酵过程的数学增长模型,并进行了实验测试。非结构化模型描述了在浸渍的聚氨酯泡沫基材体系中青霉菌的吸收和生长动力学。通常,在实验数据和模型仿真之间取得了良好的一致性。生物量,鞣酸酶和芽孢的产生通过逻辑动力学描述,在生物质产生与鞣酸酶和孢子形成之间存在时间延迟。提出了可能的诱导机制。单宁酸(底物系统中的主要碳源)的水解可以通过具有酶随时间变化的Michaelis-Menten动力学来很好地描述,但是怀疑有更复杂的反应机理。鞣酸的鞣酸酶解产物没食子酸的代谢在主要生长期受到限制。

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