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植物组织中生长素运输的数学建模:通量与信号转导和生长相遇。

Mathematical Modelling of Auxin Transport in Plant Tissues: Flux Meets Signalling and Growth.

机构信息

Department of Mathematics, Fulton Building, University of Dundee, Dundee, DD1 4HN, UK.

Department of Mathematics, Colin Maclaurin Building, Heriot-Watt University, Edinburgh, EH14 4AS, UK.

出版信息

Bull Math Biol. 2020 Jan 22;82(2):17. doi: 10.1007/s11538-019-00685-y.

Abstract

Plant hormone auxin has critical roles in plant growth, dependent on its heterogeneous distribution in plant tissues. Exactly how auxin transport and developmental processes such as growth coordinate to achieve the precise patterns of auxin observed experimentally is not well understood. Here we use mathematical modelling to examine the interplay between auxin dynamics and growth and their contribution to formation of patterns in auxin distribution in plant tissues. Mathematical models describing the auxin-related signalling pathway, PIN and AUX1 dynamics, auxin transport, and cell growth in plant tissues are derived. A key assumption of our models is the regulation of PIN proteins by the auxin-responsive ARF-Aux/IAA signalling pathway, with upregulation of PIN biosynthesis by ARFs. Models are analysed and solved numerically to examine the long-time behaviour and auxin distribution. Changes in auxin-related signalling processes are shown to be able to trigger transition between passage- and spot-type patterns in auxin distribution. The model was also shown to be able to generate isolated cells with oscillatory dynamics in levels of components of the auxin signalling pathway which could explain oscillations in levels of ARF targets that have been observed experimentally. Cell growth was shown to have influence on PIN polarisation and determination of auxin distribution patterns. Numerical simulation results indicate that auxin-related signalling processes can explain the different patterns in auxin distributions observed in plant tissues, whereas the interplay between auxin transport and growth can explain the 'reverse-fountain' pattern in auxin distribution observed at plant root tips.

摘要

植物激素生长素在植物生长中起着关键作用,这取决于其在植物组织中的不均匀分布。生长素运输和生长等发育过程如何协调以实现实验中观察到的生长素精确模式,目前还不是很清楚。在这里,我们使用数学模型来研究生长素动力学与生长之间的相互作用及其对植物组织中生长素分布模式形成的贡献。描述生长素相关信号通路、PIN 和 AUX1 动力学、生长素运输和细胞生长的数学模型被推导出来。我们模型的一个关键假设是 PIN 蛋白受生长素响应的 ARF-Aux/IAA 信号通路的调节,ARFs 上调 PIN 生物合成。对模型进行了分析和数值求解,以研究长时间行为和生长素分布。结果表明,生长素相关信号转导过程的变化能够触发生长素分布从通道型向点状型的转变。该模型还能够产生具有生长素信号通路成分振荡动力学的孤立细胞,这可以解释实验中观察到的 ARF 靶标水平的振荡。细胞生长对 PIN 极化和生长素分布模式的确定有影响。数值模拟结果表明,生长素相关信号转导过程可以解释在植物组织中观察到的不同生长素分布模式,而生长素运输和生长之间的相互作用可以解释在植物根尖观察到的生长素分布的“逆泉”模式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3184/6976557/0e21e7450520/11538_2019_685_Fig1_HTML.jpg

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