离散动态系统中节奏产生的条件

A. Mathieu, D. Barthélémy, P. Cournède, P. de Reffye
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引用次数: 5

摘要

为了模拟植物在其环境中的表型可塑性,我们开发了一个新版本的功能结构模型GreenLab,其中一个代表植物汇和源平衡的单一变量控制着植物结构中的不同事件,其中包括果实和树枝的数量。模拟揭示了这个模型的突现特性,比如节奏的自动生成。在真实植物的枝条或果实生产中也可以观察到类似的循环模式。该模型基于离散动力系统理论。本文建立了植物生长的动力学方程。它帮助我们解释节奏的产生和控制系统的行为。这种节律出现的条件是由植物内源参数和环境条件的作用决定的。它目前是一个纯理论模型,但进行了实验来校准模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Conditions for the Generation of Rhythms in a Discrete Dynamic System
To model phenotypic plasticity of plants in their environment, a new version of the functional-structural model GreenLab has been developed where a single variable representative of the plant sink and source balance controls different events in plant architecture, among which the numbers of fruits and of branches. Simulations revealed emergent properties of this model like the automatic generation of rhythms. Similar cyclic patterns in branch or fruit production may be observed in real plants. The model is based on the theory of discrete dynamic system. In this article, we present dynamic equations of the plant growth. It helps us explain rhythm generation and control the behaviour of the system. Conditions for the appearance of such rhythms are determined as functions of the plant endogenous parameters and the environmental conditions. It is at present a purely theoretical model but experiments are conducted to calibrate the model.
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