DTU Informatics, Technical University of Denmark, Richard Petersens Plads, Building 321, DK-2800, Kgs. Lyngby, Denmark.
J Theor Biol. 2010 Mar 7;263(1):134-42. doi: 10.1016/j.jtbi.2009.11.011. Epub 2009 Nov 24.
Conjugation is an important mechanism involved in the transfer of resistance between bacteria. In this article a stochastic differential equation based model consisting of a continuous time state equation and a discrete time measurement equation is introduced to model growth and conjugation of two Enterococcus faecium strains in a rich exhaustible media. The model contains a new expression for a substrate dependent conjugation rate. A maximum likelihood based method is used to estimate the model parameters. Different models including different noise structure for the system and observations are compared using a likelihood-ratio test and Akaike's information criterion. Experiments indicating conjugation on the agar plates selecting for transconjugants motivates the introduction of an extended model, for which conjugation on the agar plate is described in the measurement equation. This model is compared to the model without plate conjugation. The modelling approach described in this article can be applied generally when modelling dynamical systems.
conjugation 是细菌之间耐药性转移的重要机制。本文引入了一种基于随机微分方程的模型,该模型由连续时间状态方程和离散时间测量方程组成,用于在丰富的可耗尽培养基中模拟两种屎肠球菌菌株的生长和接合。该模型包含了一个新的基于底物的接合率表达式。使用最大似然法估计模型参数。通过似然比检验和赤池信息量准则比较了不同的模型,包括系统和观测的不同噪声结构。实验表明,在琼脂平板上选择转导体的接合激发了引入扩展模型的动机,该模型在测量方程中描述了琼脂平板上的接合。将该模型与没有平板接合的模型进行了比较。本文描述的建模方法在一般的动态系统建模中都可以应用。