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A Stochastic Growth Model of Grapevine with Full Interaction Between Environment, Trophic Competition and Plant Development

机译:葡萄树的随机生长模型,具有环境,营养竞争与植物开发的全面相互作用

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摘要

Grapevine development is mainly determined by environmental factors whose effects are modulated by its complex topological structure. The trophic relationships between all the organs of the different axes appear to be the main underlying process which drive axis organogenesis in fluctuating environment. A new modelling approach is proposed based on GreenLab formalism in which axis organogenesis is controlled by stochastic processes according to trophic competition between the different axes. In this model, a water budget was also implemented to account for the effects of water depletion. The model was validated at organ and axis scales on a large range of environmental conditions in terms of photosynthetic active radiation, temperature and soil water supply. The efficiency of the model to simulate plant development at a detailed scale proved its ability to further analyse of the retroactions between plant development and the different environmental variables in order to improve crop management.
机译:葡萄开发主要由环境因素决定,其影响通过其复杂的拓扑结构调节。不同轴的所有器官之间的营养关系似乎是驱动波动环境中的轴器组织的主要底层过程。基于Greenlab形式主义提出了一种新的建模方法,其中轴心机组根据不同轴之间的营养竞争通过随机过程控制。在这一模型中,还实施了水预算,以考虑水耗尽的影响。在光合主动辐射,温度和土壤供水方面,在器官和轴尺度上验证了该模型。模型以详细规模模拟植物开发的效率证明了其进一步分析植物开发与不同环境变量之间的胸肉的能力,以改善作物管理。

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