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A simple interaction-based E. coli growth model

机译:基于简单的相互作用的大肠杆菌生长模型

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We present a simple growth model which was developed to explain Escherichia coli growth in batch culture. Optical density measurements are used to obtain E. coli growth curves for different inoculum sizes and nutrients concentrations. The model is described by two nonlinear mutually dependent differential equations that describe time evolution of bacteria and nutrients concentration. Introduction of the negative bacterium-bacterium interaction term is specific for the model and leads to the population decay. The proposed model describes entire experimental growth curves. The growth rate, as a function of initial nutrients concentration, follows the Monod function, whilst during the growth it decreases proportionally with the concentration of nutrients. The parameters in our equations can be related to the parameters of the logistic model. The proposed model can be applied to different E. coli strains and, because of the universality of the equations, might be applied to other bacterial strains.
机译:我们提出了一种简单的生长模式,该模型是为了解释批量培养的大肠杆菌生长。光学密度测量用于获得不同的接种尺寸和营养浓度的大肠杆菌生长曲线。该模型由两种非线性相互依赖性微分方程描述,描述了细菌和营养物质浓度的时间演化。引入阴性细菌 - 细菌相互作用项对于模型特异性并导致人口衰减。所提出的模型描述了整个实验生长曲线。作为初始营养物质浓度的函数的增长率遵循Monod功能,同时在生长过程中,它随着营养物的浓度比例地减小。我们方程中的参数可以与逻辑模型的参数有关。所提出的模型可以应用于不同的大肠杆菌菌株,并且由于方程式的普遍性,可能适用于其他细菌菌株。

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