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Gemini: A grassland model simulating the role of plant traits for community dynamics and ecosystem functioning. Parameterization and evaluation

机译:双子座:一种草原模型,模拟植物性状对社区动态和生态系统功能的作用。参数化和评估

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摘要

A structure-function-diversity model of grassland ecosystems (Gemini) has been developed. For a potentially unlimited number of clonal plant populations, it explicitly simulates competition for two key resources (light and nitrogen) along vertical canopy and soil profiles. Population turnover, shoot and root morphogenesis, photosynthesis, respiration, transpiration, N acquisition by uptake, allocation of assimilates between structural compartments, and reserve storage and remobilization, are simulated for each plant population. The object-oriented structure of the modeling framework allows to couple, or not, the simulated plant populations to other sub-models describing climate variables, soil functioning, grazing behavior and grassland management. Partitioning of growth between shoot structures, leaf photosynthetic proteins and roots is based on two assumptions: (i) functional balance between root and shoot activity, (ii) coordination of leaf photosynthesis. The model was parameterized from plant functional trait measurements of 13 native perennial pasture grass species grown in monocultures at high N availability and low cutting frequency in a field trial. Predicted and measured annual dry-matter yields were highly correlated without bias across species, N supply and cutting frequency treatments in monocultures and in mixtures of six species. Results show the ability of this mechanistic model to simulate without bias nitrogen and disturbance responses of net primary productivity and of plant community structure.
机译:建立了草地生态系统(双子座)的结构-功能-多样性模型。对于可能无限数量的克隆植物种群,它明确模拟了沿垂直冠层和土壤剖面对两种关键资源(光和氮)的竞争。针对每个植物种群,模拟了种群更新,芽和根的形态发生,光合作用,呼吸作用,蒸腾作用,通过吸收获得的氮,在结构区室之间分配同化物以及储备存储和迁移。通过建模框架的面向对象的结构,可以将模拟植物种群与其他子模型(是否描述气候变量,土壤功能,放牧行为和草地管理)耦合或不耦合。枝条结构,叶片光合蛋白和根之间的生长分配基于两个假设:(i)根与枝条活性之间的功能平衡,(ii)叶片光合作用的协调。该模型是通过在田间试验中以高氮素利用率和低截割频率对单一栽培中生长的13种本地多年生牧草物种的植物功能性状测量进行参数化的。预测和测量的年度干物质单产高度相关,在单一品种和六种混合物中,物种间,氮素供应和切割频率处理之间没有偏差。结果表明,该机理模型能够模拟无偏氮和净初级生产力和植物群落结构的扰动响应。

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