Mellor Nathan, Péret Benjamin, Porco Silvana, Sairanen Ilkka, Ljung Karin, Bennett Malcolm, King John
Centre for Plant Integrative Biology, School of Biosciences, University of Nottingham, Sutton Bonington Campus, Loughborough LE12 5RD, UK.
Centre for Plant Integrative Biology, School of Biosciences, University of Nottingham, Sutton Bonington Campus, Loughborough LE12 5RD, UK; Unite Mixte de Recherche 7265, Commissariat à L׳Energie Atomique et aux Energies Alternatives, Centre National de la Recherche Scientifique, Aix-Marseille Université, Laboratoire de Biologie du Developpement des Plantes, Saint-Paul-lez-Durance, France.
J Theor Biol. 2015 Feb 7;366:57-70. doi: 10.1016/j.jtbi.2014.11.003. Epub 2014 Nov 13.
Emergence of new lateral roots from within the primary root in Arabidopsis has been shown to be regulated by the phytohormone auxin, via the expression of the auxin influx carrier LAX3, mediated by the ARF7/19 IAA14 signalling module (Swarup et al., 2008). A single cell model of the LAX3 and IAA14 auxin response was formulated and used to demonstrate that hysteresis and bistability may explain the experimentally observed 'all-or-nothing' LAX3 spatial expression pattern in cortical cells containing a gradient of auxin concentrations. The model was tested further by using a parameter fitting algorithm to match model output with qRT-PCR mRNA expression data following exogenous auxin treatment. It was found that the model is able to show good agreement with the data, but only when the exogenous auxin signal is degraded over time, at a rate higher than that measured in the experimental medium, suggesting the triggering of an endogenous auxin homeostasis mechanism. Testing the model over a more physiologically relevant range of extracellular auxin shows bistability and hysteresis still occur when using the optimised parameters, providing the rate of LAX3 active auxin transport is sufficiently high relative to passive diffusion.
拟南芥主根内新侧根的形成已被证明受植物激素生长素调控,通过生长素流入载体LAX3的表达,由ARF7/19 - IAA14信号模块介导(Swarup等人,2008年)。构建了LAX3和IAA14生长素反应的单细胞模型,并用于证明滞后现象和双稳性可以解释在含有生长素浓度梯度的皮层细胞中实验观察到的LAX3“全或无”空间表达模式。通过使用参数拟合算法使模型输出与外源生长素处理后的qRT-PCR mRNA表达数据相匹配,对该模型进行了进一步测试。结果发现,该模型能够与数据显示出良好的一致性,但前提是外源生长素信号随时间降解,降解速率高于在实验培养基中测得的速率,这表明触发了内源性生长素稳态机制。在更生理相关的细胞外生长素范围内测试该模型表明,当使用优化参数时,双稳性和滞后现象仍然会出现,前提是LAX3活性生长素运输速率相对于被动扩散足够高。