Molecular Genetics Group, Department of Biology, Utrecht University, Padualaan 8, 3584 CH Utrecht, The Netherlands.
Development. 2013 Jun;140(11):2253-68. doi: 10.1242/dev.079111.
Spatial patterns of the hormone auxin are important drivers of plant development. The observed feedback between the active, directed transport that generates auxin patterns and the auxin distribution that influences transport orientation has rendered this a popular subject for modelling studies. Here we propose a new mathematical framework for the analysis of polar auxin transport and present a detailed mathematical analysis of published models. We show that most models allow for self-organised patterning for similar biological assumptions, and find that the pattern generated is typically unidirectional, unless additional assumptions or mechanisms are incorporated. Our analysis thus suggests that current models cannot explain the bidirectional fountain-type patterns found in plant meristems in a fully self-organised manner, and we discuss future research directions to address the gaps in our understanding of auxin transport mechanisms.
生长素的空间模式是植物发育的重要驱动因素。生长素模式生成的主动、定向运输与影响运输方向的生长素分布之间的观察到的反馈,使得这成为建模研究的热门课题。在这里,我们提出了一个新的分析极性生长素运输的数学框架,并对已发表的模型进行了详细的数学分析。我们表明,大多数模型在类似的生物学假设下允许自组织模式形成,并且发现生成的模式通常是单向的,除非包含其他假设或机制。因此,我们的分析表明,当前的模型不能以完全自组织的方式解释在植物分生组织中发现的双向喷泉式模式,我们讨论了未来的研究方向,以解决我们对生长素运输机制理解的差距。