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首页> 外文期刊>Royal Society Open Science >Differential equation-based minimal model describing metabolic oscillations in Bacillus subtilis biofilms
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Differential equation-based minimal model describing metabolic oscillations in Bacillus subtilis biofilms

机译:基于微分方式的最小模型,描述了枯草芽孢杆菌生物膜中的代谢振荡

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Biofilms offer an excellent example of ecological interaction among bacteria. Temporal and spatial oscillations in biofilms are an emerging topic. In this paper, we describe the metabolic oscillations in Bacillus subtilis biofilms by applying the smallest theoretical chemical reaction system showing Hopf bifurcation proposed by Wilhelm and Heinrich in 1995. The system involves three differential equations and a single bilinear term. We specifically select parameters that are suitable for the biological scenario of biofilm oscillations. We perform computer simulations and a detailed analysis of the system including bifurcation analysis and quasi-steady-state approximation. We also discuss the feedback structure of the system and the correspondence of the simulations to biological observations. Our theoretical work suggests potential scenarios about the oscillatory behaviour of biofilms and also serves as an application of a previously described chemical oscillator to a biological system.
机译:生物膜提供细菌之间生态相互作用的一个优秀典范。生物膜中的时间和空间振荡是一个新兴的主题。在本文中,我们通过应用威尔赫尔姆和海因里奇提出的最小理论化学反应体系,描述了枯草芽孢杆菌生物膜的代谢振荡,该系统在1995年提出。该系统涉及三个微分方程和单一双线性术语。我们专门选择适用于生物膜振荡生物环境的参数。我们执行计算机仿真和对系统的详细分析,包括分叉分析和准稳态近似。我们还讨论了系统的反馈结构和模拟对生物观察的对应关系。我们的理论工作表明了关于生物膜振荡行为的潜在情景,并且还用作先前描述的化学振荡器到生物系统的应用。

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