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Mathematical modelling and analysis of the brassinosteroid and gibberellin signalling pathways and their interactions

机译:芸苔类固醇和胃植物素信号传导途径的数学建模与分析及其相互作用

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Highlights ? Derivation of novel mathematical models for BR signalling and BR-GA crosstalk signalling. ? Linearised stability analysis and existence of Hopf bifurcation. ? Importance of control of phosphorylation state of BZR for BR homeostasis. ? Importance of transcription factor interactions for the crosstalk between BR and GA. ? Observed greater influence of GA pathway on BR pathway through crosstalk. Abstract The plant hormones brassinosteroid (BR) and gibberellin (GA) have important roles in a wide range of processes involved in plant growth and development. In this paper we derive and analyse new mathematical models for the BR signalling pathway and for the crosstalk between the BR and GA signalling pathways. To analyse the effects of spatial heterogeneity of the signalling processes, along with spatially-homogeneous ODE models we derive coupled PDE-ODE systems modelling the temporal and spatial dynamics of molecules involved in the signalling pathways. The values of the parameters in the model for the BR signalling pathway are determined using experimental data on the gene expression of BR biosynthetic enzymes. The stability of steady state solutions of our mathematical model, shown for a wide range of parameters, can be related to the BR homeostasis which is essential for proper function of plant cells. Solutions of the mathematical model for the BR signalling pathway can exhibit oscillatory behaviour only for relatively large values of parameters associated with transcription factor brassinazole-resistant1’s (BZR) phosphorylation state, suggesting that this process may be important in governing the stability of signalling processes. Comparison between ODE and PDE-ODE models demonstrates distinct spatial distribution in the level of BR in the cell cytoplasm, however the spatial heterogeneity has significant effect on the dynamics of the averaged solutions only in the case when we have oscillations in solutions for at least one of the models, i.e. for possibly biologically not relevant parameter values. Our results for the crosstalk model suggest that the interaction between transcription factors BZR and DELLA exerts more influence on the dynamics of the signalling pathways than BZR-mediated biosynthesis of GA, suggesting that the interaction between transcription factors may constitute the principal mechanism of the crosstalk between the BR and GA signalling pathways. In general, perturbations in the GA signalling pathway have larger effects on the dynamics of components of the BR signalling pathway than perturbations in the BR signalling pathway on the dynamics of the GA pathway. The perturbation in the crosstalk mechanism also has a larger effect on the dynamics of the BR pathway than of the GA pathway. Large changes in the dynamics of the GA signalling processes can be observed only in the case where there are disturbances in both the BR signalling pathway and the crosstalk mechanism. Those results highlight the robustness of the GA signalling pathway.
机译:强调 ?推导出GR信令和BR-GA串扰信号的新颖数学模型。还线性化稳定性分析与跳跃分岔的存在。还BZR对BZR磷酸化状态控制的重要性。还BR和GA之间串扰转录因子相互作用的重要性。还观察到Ga通路对通过串扰的GR途径的影响。摘要植物激素芸苔(BR)和吉布林素(GA)在植物生长和发育中的各种过程中具有重要作用。在本文中,我们得出并分析了BR信号通路的新数学模型以及BR和GA信令路径之间的串扰。为了分析信号传导过程的空间异质性的影响,以及空间 - 均匀的颂歌模型,我们推出了耦合的PDE-ode系统,建模了信号传导途径所涉及的分子的时间和空间动态。使用关于Br生物合成酶的基因表达的实验数据确定BR信号通路模型中参数的值。我们数学模型的稳态解的稳定性,显示了广泛的参数,可以与植物细胞适当功能至关重要的铜稳态相关。 BR信号传导途径的数学模型的溶液可以表现出与转录因子铜醇抗磷酸化态相关的相对大的参数值的振荡行为,表明该过程对于控制信号传导过程的稳定性可能是重要的。颂歌和PDE-ode模型之间的比较显示了细胞细胞质中Br水平的明显的空间分布,但是空间异质性在我们在至少一个解决方案中具有振荡时的平均解决方案的动态具有显着影响模型,即可能生物学上不是相关的参数值。我们的串扰模型的结果表明,转录因子BZR和Della之间的相互作用对信令途径的动态产生的影响比BZR介导的GA的生物合成,表明转录因子之间的相互作用可能构成串扰之间的主要机制BR和GA信号传导途径。通常,GA信号通路的扰动对BR信号通路的组件的动力学产生大于GA通知途径的扰动的动态。串扰机制的扰动也对BR途径的动态效果大于GA通路。只有在BR信号传导路径和串扰机制中存在干扰的情况下,只能观察到GA信号传导过程的动态的大变化。这些结果突出了GA信号通路的鲁棒性。

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