Improving the estimation and partitioning of plant nitrogen in the RiceGrow model

开花 氮气 生物量(生态学) 作物 农学 现场试验 环境科学 植物生长 开枪 产量(工程) 数学 化学 生物 物理 有机化学 栽培 热力学
作者
Liang Tang,R. J. Chang,Bruno Basso,Tongjie Li,Fengxian Zhen,L. L. Liu,Weixing Cao,Yan Zhu
出处
期刊:The Journal of Agricultural Science [Cambridge University Press]
卷期号:156 (8): 959-970 被引量:11
标识
DOI:10.1017/s0021859618001004
摘要

Abstract Plant nitrogen (N) links with many physiological progresses of crop growth and yield formation. Accurate simulation is key to predict crop growth and yield correctly. The aim of the current study was to improve the estimation of N uptake and translocation processes in the whole rice plant as well as within plant organs in the RiceGrow model by using plant and organ maximum, critical and minimum N dilution curves. The maximum and critical N (Nc) demand (obtained from the maximum and critical curves) of shoot and root and Nc demand of organs (leaf, stem and panicle) are calculated by N concentration and biomass. Nitrogen distribution among organs is computed differently pre- and post-anthesis. Pre-anthesis distribution is determined by maximum N demand with no priority among organs. In post-anthesis distribution, panicle demands are met first and then the remaining N is allocated to other organs without priority. The amount of plant N uptake depends on plant N demand and N supplied by the soil. Calibration and validation of the established model were performed on field experiments conducted in China and the Philippines with varied N rates and N split applications; results showed that this improved model can simulate the processes of N uptake and translocation well.
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