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Improving the Prediction of Phosphate Dynamics in Biotechnological Processes: A Case Study Based on Antibiotic Production Using Streptomyces coelicolor

机译:改善生物技术过程中磷动力学的预测 - 基于抗生素生产的抗生素生产的案例研究

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The objective of this study is to demonstrate that the accurate mathematical description of phosphate dynamics requires a considerable, but unavoidable, degree of complexity when modelling biotechnological systems. As an example, a model predicting antibiotic production using Streptomyces coelicolor is chosen which had difficulties explaining the phosphate dynamics. The model is enhanced by the implementation of an advanced speciation model and a multiple mineral precipitation framework. Furthermore, a model describing intracellular polyphosphate accumulation and consumption is developed and implemented. Based on the conducted work the improved process model is capable of predicting the phosphate dynamics (RMSE_(≤52h): -90 %, RAD_(≤52h): -96 %) very accurately in comparison to the original implementation, where biomass growth was the only phosphate sink. The description of most other variables was improved by a knowledge-based re-estimation of selected parameters as well. This work contributes to the existing process knowledge of biotechnological systems in general and especially to the antibiotic production with S. coelicolor, which emphasizes the necessity of combining physico-chemical and biological processes to accurately describe phosphate dynamics.
机译:本研究的目的是证明磷酸盐动力学的准确数学描述需要在建模生物技术系统时需要相当大但不可避免的程度的复杂性。作为一个例子,选择使用链霉菌的抗生素生产的模型,其难以解释磷酸盐动力学。通过实施先进的形态模型和多种矿物降水框架,该模型得到增强。此外,制定并实施了描述细胞内多磷酸盐积聚和消费的模型。基于进行的工作,改进的过程模型能够预测磷酸盐动力学(RMSE_(≤52h):-90%,Rad_(≤52h):-96%)与原始实施相比,生物量增长唯一的磷酸盐水槽。通过基于知识的重新估计,所选参数的基于知识的重新估计,大多数其他变量的描述也得到了改进。这项工作有助于一般而言,对生物技术系统的现有流程知识尤其是抗生素生产,其中Coelicolor的抗生素产生,强调了将物理化学和生物过程结合准确描述磷酸盐动力学的必要性。

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