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A constant production hypothesis guides leaf venation patterning

机译:恒定产量假说指导叶片通气模式

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We propose a theoretical mechanism that enables the elaboration of veins to supply distant cells during leaf development. In contrast to the more standard view that a signal (e.g., auxin) is produced at isolated sites to stimulate growth, we determine the consequences of the hypothesis that auxin is produced at a constant rate in every cell. High concentration sites for auxin emerge naturally in a reaction-diffusion model, together with global information about leaf shape and existing venation. Because the global information is encoded as auxin concentration and its gradient, those signals provide individual cells with sufficient information to determine their own fate. Unlike other models, a single substance suffices for the reaction-diffusion at early, but not initial, stages of development. Neither complex interactions nor predetermination are necessary. We predict angiosperm areolation patterns in simulation, and our model further implies the Sachs Canalization Hypothesis and resolves a dilemma regarding the role of auxin in cell growth.
机译:我们提出了一种理论机制,可以使叶片的细化过程在叶片发育过程中提供远处的细胞。与在隔离的位置产生信号(例如生长素)以刺激生长的更标准的观点相反,我们确定了在每个细胞中以恒定速率产生生长素的假设的后果。生长素的高浓度位点自然在反应扩散模型中出现,同时还包含有关叶形和现有脉管的全局信息。因为全局信息被编码为生长素浓度及其梯度,所以这些信号为单个细胞提供了足够的信息来确定其自身的命运。与其他模型不同,单一物质足以在开发的早期而非初始阶段进行反应扩散。既不需要复杂的交互作用也不需要预先确定。我们预测模拟中的被子植物隔离模式,我们的模型进一步暗示了萨克斯管渠假说,并解决了关于生长素在细胞生长中的作用的难题。

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