Kuttler Christina, Hense Burkhard A
GSF-National Research Center for Environment and Health, Institute of Biomathematics and Biometry, Ingolstädter Landstr. 1, 85764 Oberschleissheim, Germany.
J Theor Biol. 2008 Mar 7;251(1):167-80. doi: 10.1016/j.jtbi.2007.11.015. Epub 2007 Nov 22.
Many bacteria developed a possibility to recognise aspects of their environment or to communicate with each other by chemical signals. An important strategy is the so-called quorum sensing (QS), a regulatory mechanism for the gene expression, where the bacteria measure their own cell density by means of this signalling pathway. One of the best-studied species using QS is the marine luminescent bacterium Vibrio fischeri which is considered here as a model organism. The two main regulatory pathways (lux and ain) are combined to a regulation system, the dynamics is modelled by an ODE system. This system is analysed thoroughly, considering stationary states, dynamical behaviour and the possible biological meaning of it. The influence of different parameter values on the behaviour is examined, the same basic system is able to reflect the peculiarities of different bacteria strains (respectively, their mutants).
许多细菌能够识别其环境的各个方面,或通过化学信号相互交流。一种重要的策略是所谓的群体感应(QS),这是一种基因表达的调控机制,细菌通过这种信号通路来测量自身的细胞密度。利用群体感应进行研究得最为透彻的物种之一是海洋发光细菌费氏弧菌,在此将其视为一种模式生物。两条主要的调控途径(lux和ain)组合成一个调控系统,其动力学由一个常微分方程系统建模。对该系统进行了全面分析,考虑了稳态、动力学行为及其可能的生物学意义。研究了不同参数值对行为的影响,同一基本系统能够反映不同细菌菌株(或其突变体)的特性。