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植物种间对阳光的竞争:冠层分配的数学模型

Plant interspecies competition for sunlight: a mathematical model of canopy partitioning.

作者信息

Nevai Andrew L, Vance Richard R

机构信息

Department of Mathematics, University of California, Los Angeles, CA 90095-1555, USA.

出版信息

J Math Biol. 2007 Jul;55(1):105-45. doi: 10.1007/s00285-007-0073-y. Epub 2007 Feb 10.

Abstract

We examine the influence of canopy partitioning on the outcome of competition between two plant species that interact only by mutually shading each other. This analysis is based on a Kolmogorov-type canopy partitioning model for plant species with clonal growth form and fixed vertical leaf profiles (Vance and Nevai in J. Theor. Biol., 2007, to appear). We show that canopy partitioning is necessary for the stable coexistence of the two competing plant species. We also use implicit methods to show that, under certain conditions, the species' nullclines can intersect at most once. We use nullcline endpoint analysis to show that when the nullclines do intersect, and in such a way that they cross, then the resulting equilibrium point is always stable. We also construct surfaces that divide parameter space into regions within which the various outcomes of competition occur, and then study parameter dependence in the locations of these surfaces. The analysis presented here and in a companion paper (Nevai and Vance, The role of leaf height in plant competition for sunlight: analysis of a canopy partitioning model, in review) together shows that canopy partitioning is both necessary and, under appropriate parameter values, sufficient for the stable coexistence of two hypothetical plant species whose structure and growth are described by our model.

摘要

我们研究了冠层分配对仅通过相互遮荫进行相互作用的两种植物物种间竞争结果的影响。该分析基于一个针对具有克隆生长形式和固定垂直叶型的植物物种的柯尔莫哥洛夫型冠层分配模型(万斯和内瓦伊,《理论生物学杂志》,2007年,即将发表)。我们表明,冠层分配对于两种竞争植物物种的稳定共存是必要的。我们还使用隐式方法表明,在某些条件下,物种的零倾线最多只能相交一次。我们使用零倾线端点分析表明,当零倾线确实相交且以交叉的方式相交时,那么所得到的平衡点总是稳定的。我们还构建了将参数空间划分为不同竞争结果出现区域的曲面,然后研究这些曲面位置中的参数依赖性。本文以及一篇配套论文(内瓦伊和万斯,《叶高在植物争夺阳光竞争中的作用:冠层分配模型分析》,正在审稿)中所呈现的分析共同表明,冠层分配对于由我们的模型描述其结构和生长的两种假设植物物种的稳定共存既是必要的,并且在适当的参数值下也是充分的。

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