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首页> 外文期刊>American Journal of Plant Sciences >Vegetative Rhombic Pattern Formation Driven by Root Suction for an Interaction-Diffusion Plant-Ground Water Model System in an Arid Flat Environment
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Vegetative Rhombic Pattern Formation Driven by Root Suction for an Interaction-Diffusion Plant-Ground Water Model System in an Arid Flat Environment

机译:干旱平坦环境中根-吸相互作用的植物-地下水-水相互作用模型的植物菱形模式形成

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摘要

A rhombic planform nonlinear cross-diffusive instability analysis is applied to a particular interaction-diffusion plant-ground water model system in an arid flat environment. This model contains a plant root suction effect as a cross-diffusion term in the ground water equation. In addition a threshold-dependent paradigm that differs from the usually employed implicit zero-threshold methodology is introduced to interpret stable rhombic patterns. These patterns are driven by root suction since the plant equation does not yield the required positive feedback necessary for the generation of standard Turing-type self-diffusive instabilities. The results of that analysis can be represented by plots in a root suction coefficient versus rainfall rate dimensionless parameter space. From those plots regions corresponding to bare ground and vegetative patterns consisting of isolated patches, rhombic arrays of pseudo spots or gaps separated by an intermediate rectangular state, and homogeneous distributions from low to high density may be identified in this parameter space. Then, a morphological sequence of stable vegetative states is produced upon traversing an experimentally-determined root suction characteristic curve as a function of rainfall through these regions. Finally, that predicted sequence along a rainfall gradient is compared with observational evidence relevant to the occurrence of leopard bush, pearled bush, or labyrinthine tiger bush vegetative patterns, used to motivate an aridity classification scheme, and placed in the context of some recent biological nonlinear pattern formation studies.
机译:将菱形平面形式的非线性交叉扩散不稳定性分析应用于干旱平坦环境中特定的相互作用扩散植物-地下水模型系统。该模型包含植物根部吸力效应作为地下水方程中的交叉扩散项。另外,引入了与通常采用的隐式零阈值方法不同的阈值相关范例来解释稳定的菱形图案。这些模式是由根吸力驱动的,因为植物方程式无法产生标准图灵型自扩散不稳定性所必需的正反馈。该分析的结果可以通过根部吸力系数与降雨率无量纲参数空间的关系图来表示。从这些地块中,与裸露的地面和植被模式相对应的区域包括孤立的斑块,由中间矩形状态分隔的伪斑点或间隙的菱形阵列,以及从低密度到高密度的均匀分布。然后,遍历实验确定的根部吸力特性曲线作为降雨穿过这些区域的函数,从而产生稳定的植物状态的形态序列。最后,将沿降雨梯度的预测序列与与豹纹灌木,珍珠灌木或迷宫虎纹灌木植物模式的发生有关的观测证据进行比较,用于激发干旱分类方案,并置于最近的一些生物非线性研究的背景下模式形成研究。

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