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Identification model and properties of the membrane transport mechanism of the microbial enzyme catalysis of 1,3-propanediol based on robustness analysis

机译:基于鲁棒性分析的1,3-丙二醇微生物酶催化膜传递机理的识别模型和性质

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This paper consider a microbial continuous process. Hybrid nonlinear systems are developed for describing the dynamics of the process under three possible transmembrane transport modes of the goal product 1,3-propanediol. The established model is also based on the assumptions that the transmembrane transport mode of the substrate glycerol is a combination of active and passive transport, and that the specific growth rate of the microorganism is not inhibited by 3-hydroxypropionaldehyde. Parameter identification model is established with the quantitative definition of the given system's robustness as performance index. The model was proved identifiable. The contributions of this work could provide theoretical reference for numerical inference of the membrane transport mechanism.
机译:本文考虑了微生物的连续过程。开发了用于描述目标产物1,3-丙二醇的三种可能的跨膜传输模式下过程动力学的混合非线性系统。建立的模型还基于以下假设:底物甘油的跨膜转运模式是主动转运和被动转运的组合,并且微生物的比生长速率不受3-羟基丙醛的抑制。以给定系统的鲁棒性的定量定义作为性能指标,建立了参数辨识模型。该模型被证明是可识别的。这项工作的贡献可以为膜转运机制的数值推论提供理论参考。

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