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首页> 外文期刊>Functional Plant Biology >A process-based model to simulate nitrogen distribution in wheat (Triticum aestivum) during grain-filling
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A process-based model to simulate nitrogen distribution in wheat (Triticum aestivum) during grain-filling

机译:一种基于过程的模型,模拟了小麦在灌浆过程中氮素的分布

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摘要

Nitrogen (N) distribution among plant organs plays a major role in crop production and, in general, plant fitness to the environment. In the present study, a process-based model simulating N distribution within a wheat (Triticum aestivum L.) culm during grain filling was developed using a functional–structural approach. A model of turnover of the photosynthetic apparatus was used to describe the fluxes between a common pool of mobile N and each leaf lamina. Grain N accumulation within a time-step was modelled as the minimum between the quantity calculated by a potential function and the N available in the common pool. Nitrogen dynamics in the other organs (i.e. stem, chaff, root N uptake and remobilisation) were accounted for by forced variables. Using a unique set of six parameters, the model was able to simulate the observed N kinetics of each lamina and of the grains under a wide range of crop N supplies and for three cultivars. The time-course of the vertical gradient of lamina N during grain filling was realistically simulated as an emerging property of the local processes defined at the lamina scale. The model described in the present study offers new insight into the interactions between N metabolism, plant architecture and productivity.
机译:氮在植物器官之间的分布在作物生产以及植物对环境的适应性中起着重要作用。在本研究中,使用功能结构方法开发了基于过程的模型,该模型模拟了籽粒灌浆过程中小麦(Triticum aestivum L.)茎秆中的氮分布。使用光合作用设备的周转模型来描述公共移动氮池和每个叶片的叶片之间的通量。将一个时间步长内的谷物N积累建模为由势函数计算的数量与公共池中可用N之间的最小值。其他器官中的氮动力学(即茎,谷壳,根氮的吸收和迁移)是由强迫变量引起的。使用一组独特的六个参数,该模型能够模拟在多种作物氮供应和三个品种下每个叶片和谷物的N动力学。现实地模拟了籽粒充实过程中叶片N垂直梯度的时程,将其作为在叶片尺度上定义的局部过程的新兴特性。本研究中描述的模型为氮素代谢,植物结构和生产力之间的相互作用提供了新的见解。

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