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Modelling variations in individual plant productivity within a stand: Comparison of top-down and bottom-up approaches in an alfalfa crop

机译:立场中个体植物生产率的建模变化:苜蓿作物中的自上而下和自下而上的方法的比较

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Modelling individual variations in plant productivity and resource-dependent mortality is a key issue in population dynamic models. The present study examined two classical approaches to account for plant productivity in functional-structural plant models (i.e. the up-scaling of a leaf photosynthesis model, and the down-scaling of a canopy production model) and compares them in their ability to account for the size-structure of a population of alfalfa plants competing for light. The two models differed mainly in their formulation of the plant carbon balance. Only the leaf approach included a respiration sub-model and was able to predict self-thinning and changes in radiation use efficiency among plants. Variations in plant mass were however mainly explained by differences in light interception. The two models behaved quite well to simulate the mass distribution of surviving plants, the leaf model being clearly more difficult to calibrate.
机译:建模植物生产率和资源依赖性死亡率的个体变化是人口动态模型中的关键问题。本研究检测了两种古典方法,以便在功能性结构植物模型中进行植物生产力(即叶片光合模型的上缩放,以及树冠生产模型的下缩放)并将其与其占用的能力进行比较竞争光的苜蓿植物群体的尺寸结构。这两种型号主要不同于其植物碳平衡的配方。只有叶片方法包括呼吸子模型,并且能够预测植物中辐射使用效率的自我稀释和变化。然而,植物质量的变化主要是通过光截止光截取的差异来解释。这两种模型表现得很好,才能模拟幸存厂的群众分布,叶模型显然难以校准。

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