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Towards a model of wheat leaf morphogenesis at plant scale driven by organ-level metabolites

机译:在由器官级代谢物驱动的植物规模中朝着小麦叶形态发生模型

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Leaf dimensions, specific mass and composition are traits of interest, as leaves constitute the main exchange surface with the aboveground environment. These variables arise from the interplay between many processes, and vary with growth conditions. Models of plant growth are useful tools to explore a wide range of climatic scenarios, management practices and genotypes. However, most models lacks process-based formalisms allowing simulating shoot architecture plasticity. We propose a functional-structural wheat model that couples carbon and nitrogen metabolism with leaf morphogenesis during the vegetative stage. The originality of our model relies on the interaction between leaf growth and the metabolism of carbon and nitrogen in the growing zone, which is possible thanks to an explicit and detailed formalism of the processes at organ level. The model simulates the appearance of successive leaves using coordination rules instead of a constant phyllochron as a driving mechanism. As a first step, main modules were evaluated separately: the coordination model and the metabolism model of a single growing leaf. The model shows interesting emergent properties: phyllochron stability, pattern of mature leaf length along the culm and realistic kinetics of length, dry mass and concentrations in both growing and mature zones. A qualitative evaluation strategy of the completely integrated model at plant scale is then proposed. As a conclusion, the model appears to be a useful concept, which could be transposed to other grasses.
机译:叶子尺寸,特定质量和组成是感兴趣的特征,因为叶子构成具有地下环境的主要交换表面。这些变量从许多过程之间的相互作用产生,并且随着生长条件而变化。植物增长模型是探索广泛的气候情景,管理实践和基因型的有用工具。然而,大多数模型缺乏基于过程的形式主义,允许模拟射击架构可塑性。我们提出了一种功能性 - 结构小麦模型,将碳和氮代谢与营养期间的叶片形态发生。我们模型的原创性依赖于叶片生长与生长区中碳和氮的代谢的相互作用依赖于生长区中的碳和氮的代谢,这是由于器官水平的过程的明确和详细的形式主义。该模型使用协调规则来模拟连续叶子的外观,而不是恒定的工艺作为驱动机构。作为第一步,分别评估主模块:单个生长叶的协调模型和代谢模型。该模型显示了有趣的紧急性质:PhylloShron稳定性,成熟的叶片长度沿着秆和现实动力学的长度,干肿块和浓度在生长和成熟的区域中。然后提出了植物规模完全集成模型的定性评估策略。作为结论,该模型似乎是一个有用的概念,可以转移到其他草地上。

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