首页> 外文期刊>The American Naturalist: Devoted to the Conceptual Unification of the Biological Sciences >A model of dynamics of leaves and nitrogen in a plant canopy: An integration of canopy photosynthesis, leaf life span, and nitrogen use efficiency
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A model of dynamics of leaves and nitrogen in a plant canopy: An integration of canopy photosynthesis, leaf life span, and nitrogen use efficiency

机译:植物冠层叶片和氮的动力学模型:冠层光合作用,叶片寿命和氮素利用效率的综合

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A model of dynamics of leaves and nitrogen is developed to predict the effect of environmental and ecophysiological factors on the structure and photosynthesis of a plant canopy. In the model, leaf area in the canopy increases by the production of new leaves, which is proportional to the canopy photosynthetic rate, with canopy nitrogen increasing with uptake of nitrogen from soil. Then the optimal leaf area index (LAI; leaf area per ground area) that maximizes canopy photosynthesis is calculated. If leaf area is produced in excess, old leaves are eliminated with their nitrogen as dead leaves. Consequently, a new canopy having an optimal LAI and an optimal amount of nitrogen is obtained. Repeating these processes gives canopy growth. The model provides predictions of optimal LAI, canopy photosynthetic rates, leaf life span, nitrogen use efficiency, and also the responses of these factors to changes in nitrogen and light availability. Canopies are predicted to have a larger LAI and a higher canopy photosynthetic rate at a steady state under higher nutrient and/or light availabilities. Effects of species characteristics, such as photosynthetic nitrogen use efficiency and leaf mass per area, are also evaluated. The model predicts many empirically observed patterns for ecophysiological traits across species. [References: 71]
机译:建立了叶片和氮的动力学模型,以预测环境和生态生理因素对植物冠层结构和光合作用的影响。在该模型中,冠层的叶面积通过新叶片的产生而增加,这与冠层的光合速率成正比,冠层氮随着土壤中氮的吸收而增加。然后计算使冠层光合作用最大化的最佳叶片面积指数(LAI;每地面面积的叶片面积)。如果叶片面积过多,则将旧叶片的氮作为枯叶淘汰。因此,获得了具有最佳LAI和最佳氮含量的新冠层。重复这些过程会使树冠生长。该模型提供了最佳LAI,冠层光合速率,叶片寿命,氮素利用效率以及这些因素对氮素和光利用率变化的响应的预测。在较高的养分和/或光利用率下,在稳定状态下,冠层预计具有更大的LAI和更高的冠层光合速率。还评估了物种特征的影响,例如光合氮的利用效率和单位面积的叶片质量。该模型预测了跨物种的许多生态生理特征的经验观察模式。 [参考:71]

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