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Invited Talk: Structural-Functional Model SimRoot and its Applications

机译:特邀演讲:结构功能模型SimRoot及其应用

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摘要

SimRoot is a structural-functional model with, in contrast to most structural-functional models, emphasis on the architecture and function of the root system. We use SimRoot as a heuristic tool in our efforts to understand the function of different root traits for acquisition of nutrients and water in low fertility soils and drought environments. We parameterized SimRoot for both maize and bean and are currently able to simulate nutrient uptake for phosphorus and nitrogen in combination with water uptake and photosynthesis. SimRoot is designed to simulate stress responses in a virtual plant with a 'sound' carbon balance sheet. SimRoot is a modular model and can be run in different configurations. The main modules are root growth and shoot growth modules, carbon module, nutrient and water uptake and stress modules. The carbon module is based on LinTul. Both the Barber-Cushman model and Simunek's SWMS can be used for simulating nutrient uptake & transport in the soil. Nutrient stress effects growth by reducing for example the leaf area expansion rate or photosynthetic efficiency of the leaves. SimRoot is designed to work with measurable parameters and uses a predictor-corrected integration method to obtain accurate results, even when positive feedbacks are simulated.
机译:SimRoot是一种结构功能模型,与大多数结构功能模型相比,它着重于根系统的体系结构和功能。我们使用SimRoot作为一种启发式工具,以努力了解低肥力土壤和干旱环境中不同根系性状在获取养分和水分方面的功能。我们为玉米和大豆都设置了SimRoot参数,并且目前能够模拟磷和氮与水分吸收和光合作用的养分吸收。 SimRoot旨在模拟具有“健全”碳平衡表的虚拟工厂中的应力响应。 SimRoot是一个模块化模型,可以在不同的配置中运行。主要模块是根部生长和枝条生长模块,碳模块,养分和水分吸收及胁迫模块。碳模块基于LinTul。 Barber-Cushman模型和Simunek的SWMS均可用于模拟土壤中养分的吸收和运输。营养胁迫通过降低例如叶片的叶面积扩大率或叶片的光合效率来影响生长。 SimRoot旨在与可测量的参数一起使用,并使用预测器校正的积分方法来获得准确的结果,即使模拟了正反馈也是如此。

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