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An introduction to modeling the initiation of the floral primordium

机译:建模造型造型花卉原始的介绍

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This chapter presents models of the processes involved in floral initiation and development. It begins by briefy presenting models of hormonal transport. The focus is on two key aspects of floral development, namely floral initiation, due to the periodic local accumulation of auxin(a plant hormone)near the plant apex, and the genetic regulation of floral development. The main assumptions about auxin transport that have been proposed and tested in the literature are described, and it is shown how the use of models makes it possible to test assumptions expressed in terms of local cell-cell interaction rules and to check if they lead to patterning in the growing tissue that is consistent with observation. The gene regulatory networks(GRNs)that control the initial steps of floral development and differentiation are investigated. In a simplified form, this network contains dozens of components that interact with each other in space and time. The understanding of such a complex system also requires a modeling approach in order to quantify these interactions and analyze their properties. There are two main formalisms that are used to model GRN: the Boolean and the ODE formalisms. Both these are illustrated on a submodule of the floral GRN and their main advantages and drawbacks are discussed. It is shown how manipulations of the network models can be used to make predictions corresponding to possible biological manipulations of the GRN(e. g., loss-of-function mutants). Throughout, specific mathematical topics of particular interest for the development of these ideas are detailed in separate boxes which can be read relatively independently of the main text.
机译:本章介绍了花卉启动和发展所涉及的流程的模型。它始于令人作呕的荷尔蒙运输模型。重点是在花卉发育的两个关键方面,即由于植物顶点附近的植物蛋白(植物激素)的周期性局部积累以及花卉发育的遗传调节,因此是花卉发育的两个关键方面。描述了关于在文献中提出和测试的制造传输的主要假设,并且示出了模型的使用如何使得可以在局部细胞 - 小区交互规则方面进行测试,并检查它们是否导致在不断增长的组织中,与观察一致的栽培组织。研究了控制初始流行开发和分化步骤的基因监管网络(GRNS)。以简化的形式,该网络包含数十个组件,可在空间和时间内相互交互。对这种复杂系统的理解还需要建模方法,以便量化这些相互作用并分析它们的性质。有两个主要的形式主义用于模拟GN:布尔和颂歌形式主义。这两种都在花卉GRN的子模块上示出,并讨论了它们的主要优点和缺点。图3示出了网络模型的操纵方式如何用于使对应于GRN(例如,函数损失突变体的可能生物学操纵的预测。在整个中,对这些想法的开发特别兴趣的特定数学主题在单独的框中详细说明,可以相对独立于主文本读取。

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