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首页> 外文期刊>Annals of Botany >NEMA, a functional-structural model of nitrogen economy within wheat culms after flowering. I. Model description
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NEMA, a functional-structural model of nitrogen economy within wheat culms after flowering. I. Model description

机译:NEMA,开花后小麦茎中氮经济的功能结构模型。一,型号说明

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Background and Aims Models simulating nitrogen use by plants are potentially efficient tools to optimize the use of fertilizers in agriculture. Most crop models assume that a target nitrogen concentration can be defined for plant tissues and formalize a demand for nitrogen, depending on the difference between the target and actual nitrogen concentrations. However, the teleonomic nature of the approach has been criticized. This paper proposes a mechanistic model of nitrogen economy, NEMA (Nitrogen Economy Model within plant Architecture), which links nitrogen fluxes to nitrogen concentration and physiological processes.Methods A functional-structural approach is used: plant aerial parts are described in a botanically realistic way and physiological processes are expressed at the scale of each aerial organ or root compartment as a function of local conditions (light and resources).Key Results NEMA was developed for winter wheat (Triticum aestivum) after flowering. The model simulates the nitrogen (N) content of each photosynthetic organ as regulated by Rubisco turnover, which depends on intercepted light and a mobile N pool shared by all organs. This pool is enriched by N acquisition from the soil and N release from vegetative organs, and is depleted by grain uptake and protein synthesis in vegetative organs; NEMA accounts for the negative feedback from circulating N on N acquisition from the soil, which is supposed to follow the activities of nitrate transport systems. Organ N content and intercepted light determine dry matter production via photosynthesis, which is distributed between organs according to a demand-driven approach.Conclusions NEMA integrates the main feedbacks known to regulate plant N economy. Other novel features are the simulation of N for all photosynthetic tissues and the use of an explicit description of the plant that allows how the local environment of tissues regulates their N content to be taken into account. We believe this represents an appropriate frame for modelling nitrogen in functional-structural plant models. A companion paper will present model evaluation and analysis.
机译:背景和目的模拟植物氮素使用的模型是优化农业肥料使用的潜在有效工具。大多数作物模型都假定可以为植物组织定义目标氮浓度,并根据目标氮浓度与实际氮浓度之间的差异来规范对氮的需求。然而,该方法的远程电子学性质已受到批评。本文提出了一种氮素经济机制模型NEMA(植物体系结构内的氮素经济模型),该模型将氮通量与氮素浓度和生理过程联系起来。方法采用功能结构方法:以植物性的真实方式描述植物的地上部分NEMA是针对开花后的冬小麦(Triticum aestivum)开发的。该模型模拟由Rubisco周转调节的每个光合器官的氮(N)含量,这取决于拦截的光和所有器官共享的移动N池。通过从土壤中吸收氮和从营养器官中释放氮来富集该池,并通过营养器官中的谷物吸收和蛋白质合成来耗尽该池。 NEMA解释了循环N对从土壤中获取N的负反馈,该反馈应遵循硝酸盐传输系统​​的活动。器官N的含量和所拦截的光通过光合作用决定了干物质的产生,光合作用是根据需求驱动的方法在器官之间分配的。结论NEMA整合了已知的调节植物N经济的主要反馈。其他新颖的功能是对所有光合作用组织的N进行模拟,并使用对植物的明确描述,从而可以考虑组织的局部环境如何调节其N含量。我们认为,这代表了在功能结构植物模型中对氮进行建模的合适框架。随附的论文将介绍模型评估和分析。

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