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A mathematical model of auxin-mediated radial growth in trees.

机译:生长素介导的树木径向生长的数学模型。

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A mathematical model is presented to describe the coupling between the concentration of indole-3-acetic acid (IAA) in the cambial region of a tree branch and the radial expansion of the branch during active growth. The main features of the model are (1) the branch cambium is treated as an approximately cylindrical surface of negligible thickness, (2) the rate of radial growth is proportional to the mass of IAA per unit area on the cambial surface, and (3) IAA is transported basipetally through the cambium at a constant speed. We neglect the role of elastic strains in the determination of branch shape, and the effects of IAA synthesis and metabolization in the cambium, so the model is not quantitatively accurate. However, the model does reproduce several important qualitative features of tree growth including the approximate area-preserving property of tree branch junctions and the ability of a branch to maintain its shape despite perturbations due to injury. Copyright 2001 Academic Press.
机译:提出了一个数学模型来描述在树枝生长的冈比亚区域中吲哚-3-乙酸(IAA)的浓度与树枝的径向膨胀之间的耦合。该模型的主要特征是(1)将分支形成层视为厚度可忽略不计的近似圆柱形表面;(2)径向生长速率与冈比亚表面上每单位面积的IAA质量成正比;以及(3 )IAA以恒定的速度通过形成层进行基础运输。我们忽略了弹性应变在确定分支形状中的作用,以及IAA在形成层中的合成和代谢的影响,因此该模型在定量上不准确。但是,该模型的确重现了树木生长的几个重要的定性特征,包括树枝结的近似保留面积特性以及即使受到伤害扰动,树枝仍能保持其形状的能力。版权所有2001学术出版社。

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