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关于植物细胞中的极性生长素运输。

On polar auxin transport in plant cells.

作者信息

Martin M H, Goldsmith M H, Goldsmith T H

机构信息

Institute for Physical Science and Technology, University of Maryland, College Park 20742.

出版信息

J Math Biol. 1990;28(2):197-223. doi: 10.1007/BF00163145.

Abstract

We present here explicit mathematical formulas for calculating the concentration, mass, and velocity of movement of the center of mass of the plant growth regulator auxin during its polar movement through a linear file of cells. The results of numerical computations for two cases, (a) the conservative, in which the mass in the system remains constant and (b) the non-conservative, in which the system acquires mass at one end and loses it at the other, are graphically presented. Our approach differs from that of Mitchison's (Mitchison 1980) in considering both initial effects of loading and end effects of substance leaving the file of cells. We find the velocity varies greatly as mass is entering or leaving the file of cells but remains constant as long as most of the mass is within the cells. This is also the time for which Mitchison's formula for the velocity, which neglects end effects, reflects the true velocity of auxin movement. Finally, the predictions of the model are compared with two sets of experimental data. Movement of a pulse of auxin through corn coleoptiles is well described by the theory. Movement of auxin through zucchini shoots, however, shows the need to take into account immobilization of auxin by this tissue during the course of transport.

摘要

我们在此给出明确的数学公式,用于计算植物生长调节剂生长素在通过线性细胞列进行极性运输过程中其质心的浓度、质量和移动速度。以图形方式展示了两种情况的数值计算结果:(a)保守情况,即系统中的质量保持恒定;(b)非保守情况,即系统在一端获取质量而在另一端损失质量。我们的方法与米奇森(Mitchison,1980)的不同,我们同时考虑了加载的初始效应和物质离开细胞列的末端效应。我们发现,当质量进入或离开细胞列时,速度变化很大,但只要大部分质量在细胞内,速度就保持恒定。这也是米奇森忽略末端效应的速度公式能反映生长素真实移动速度的时间段。最后,将该模型的预测结果与两组实验数据进行了比较。该理论很好地描述了生长素脉冲在玉米胚芽鞘中的移动。然而,生长素在西葫芦茎中的移动表明,在运输过程中需要考虑该组织对生长素的固定作用。

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