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Modelling transport of inhibiting and activating signals and their combined effects on floral induction: application to apple tree

机译:抑制和激活信号的建模运输及其对花卉诱导的综合影响:苹果树应用

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Floral induction (FI) in shoot apical meristems (SAM) is assumed to be triggered by antagonistic endogenous signals. In fruit trees, FI occurs in some SAM only and is determined by activating and inhibiting signals originating from leaves and fruit, respectively. We developed a model?(SigFlow) to quantify on 3D structures the combined impact of such signals and distances at which they act on SAM. Signal transport was simulated considering a signal ‘attenuation’ parameter, whereas SAM fate was determined by probability functions depending on signal quantities. Model behaviour was assessed on simple structures before being calibrated and validated on a unique experimental dataset of 3D digitized apple trees with contrasted crop loads and subjected to leaf and fruit removal at different scales of tree organization. Model parameter estimations and comparisons of two signal combination functions led us to formulate new assumptions on the mechanisms involved: (i) the activating signal could be transported at shorter distances than the inhibiting one (roughly 50?cm vs 1?m) (ii) both signals jointly act to determine FI with SAM being more sensitive to inhibiting signal than activating one. Finally, the genericity of the model is promising to further understand the physiological and architectural determinisms of FI in plants.
机译:假设拍摄顶端商品(SAM)中的花卉感应(FI)被拮抗内源信号触发。在果树中,Fi仅在一些SAM中发生,并且通过分别通过激活和抑制来自叶片和果实的信号来确定。我们开发了一种模型?(SIGFOLL)来量化3D结构的组合影响,这些信号和距离在SAM上的作用。考虑到信号“衰减”参数模拟信号传输,而SAM命运是根据信号量的概率函数确定的。在简单的结构上评估模型行为,然后在校准并在3D数字化苹果树的独特实验数据集上进行验证,以对比的作物负荷,并在不同的树组织的不同尺度上进行叶子和果实去除。模型参数估计和两个信号组合函数的比较LED我们在涉及的机制上制定新的假设:(i)激活信号可以在较短的距离上传送,而不是抑制一个(大约50Ωcm与1?m)(ii)两个信号都共同行动,以确定FI与SAM对抑制信号更敏感而不是激活一个。最后,该模型的常见性很有希望进一步了解植物中FI的生理和建筑确定主义。

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