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Functional-structural plant model for testing the effect of maize architecture on hourly light distribution in strip-intercropping systems

机译:用于测试玉米建筑效果对条间系统中小光分布的功能 - 结构植物模型

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Intercropping is an important aspect for the sustainable intensification of agriculture. Maize and a shorter legume crop are common species in intercropping systems and competition for light plays a major role on productivity given the large differences in canopy height. Particularly in intercropping systems, the light intensity for the shorter crop fluctuates strongly during the day. For selecting a maize cultivar, the influence of its architecture on this light fluctuation is very important. With the aim to pre-select suitable cultivars for experimentation and to guide breeding programs, modelling approaches are crucial. Here we present and evaluate a functional-structural plant model (FSPM) able to simulate on an hourly resolution the influence of architectural characteristics of maize on light distribution within strip-intercropping systems. This is a first step towards a complex dynamic FSPM intercropping model, suitable for detailed investigations of the effects of plant architecture on light absorption, photosynthesis and finally biomass production.
机译:间作是农业可持续增强的一个重要方面。玉米和矮小的豆类作物是间作系统的常见物种,鉴于树冠高度的巨大差异,光线竞争在生产率上发挥着重要作用。特别是在间作系统中,在白天的较短作物的光强度强烈波动。为了选择玉米品种,其结构对这种光波的影响非常重要。随着预先选择合适的品种进行实验和引导育种计划,建模方法至关重要。在这里,我们展示并评估了能够模拟的功能性结构植物模型(FSPM),可以在每小时解决玉米建筑特征对条带间系统中光分布的影响。这是迈向复杂的动态FSPM间作模型的第一步,适用于植物架构对光吸收,光合作用和最终生物量产生的影响的详细研究。

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