首页> 外文期刊>Annals of Botany >Exploring the spatial distribution of light interception and photosynthesis of canopies by means of a functional-structural plant model
【24h】

Exploring the spatial distribution of light interception and photosynthesis of canopies by means of a functional-structural plant model

机译:通过功能结构植物模型探索冠层光拦截和光合作用的空间分布

获取原文
获取原文并翻译 | 示例
           

摘要

Background and Aims At present most process-based models and the majority of three-dimensional models include simplifications of plant architecture that can compromise the accuracy of light interception simulations and, accordingly, canopy photosynthesis. The aim of this paper is to analyse canopy heterogeneity of an explicitly described tomato canopy in relation to temporal dynamics of horizontal and vertical light distribution and photosynthesis under direct-and diffuse-light conditions.Methods Detailed measurements of canopy architecture, light interception and leaf photosynthesis were carried out on a tomato crop. These data were used for the development and calibration of a functional-structural tomato model. The model consisted of an architectural static virtual plant coupled with a nested radiosity model for light calculations and a leaf photosynthesis module. Different scenarios of horizontal and vertical distribution of light interception, incident light and photosynthesis were investigated under diffuse and direct light conditions.Key Results Simulated light interception showed a good correspondence to the measured values. Explicitly described leaf angles resulted in higher light interception in the middle of the plant canopy compared with fixed and ellipsoidal leaf-angle distribution models, although the total light interception remained the same. The fraction of light intercepted at a north-south orientation of rows differed from east-west orientation by 10 % on winter and 23 % on summer days. The horizontal distribution of photosynthesis differed significantly between the top, middle and lower canopy layer. Taking into account the vertical variation of leaf photosynthetic parameters in the canopy, led to approx. 8 % increase on simulated canopy photosynthesis.Conclusions Leaf angles of heterogeneous canopies should be explicitly described as they have a big impact both on light distribution and photosynthesis. Especially, the vertical variation of photosynthesis in canopy is such that the experimental approach of photosynthesis measurements for model parameterization should be revised.
机译:背景和目标目前,大多数基于过程的模型和大多数三维模型都包括简化植物体系结构的过程,这可能会损害光拦截模拟的准确性,并因此损害冠层光合作用。本文的目的是分析在直射光和漫射光条件下,与水平和垂直光分布和光合作用的时间动态有关的,明确描述的番茄冠层的冠层异质性。方法对冠层结构,光拦截和叶片光合作用的详细测量在番茄作物上进行。这些数据用于功能结构番茄模型的开发和校准。该模型由建筑静态虚拟植物,嵌套的光能传递模型(用于光计算)和叶子光合作用模块组成。研究了在漫射光和直射光条件下光拦截,入射光和光合作用的水平和垂直分布的不同情况。关键结果模拟光拦截显示了与测量值的良好对应性。明确描述的叶角与固定和椭圆形的叶角分布模型相比,在植物冠层的中间导致较高的光拦截,尽管总的光拦截保持不变。在行的从南到北方向上截获的光的比例与东西向方向上的差异在冬季为10%,在夏季为23%。顶部,中部和下部冠层之间光合作用的水平分布差异显着。考虑到冠层中叶片光合作用参数的垂直变化,导致大约。模拟冠层光合作用增加了8%。结论应明确描述非均质冠层的叶片角,因为它们对光分布和光合作用都有很大影响。特别是,冠层光合作用的垂直变化使得必须修改用于模型参数化的光合作用测量的实验方法。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号