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Modelling Cereal Root Systems for Water and Nitrogen Capture: Towards an Economic Optimum

机译:用于水和氮捕获的谷物根系建模:寻求经济上的最优

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摘要

A quantitative model of wheat root systems is developed that links the size and distribution of the root system to the capture of water and nitrogen (which are assumed to be evenly distributed with depth) during grain filling, and allows estimates of the economic consequences of this capture to be assessed. A particular feature of the model is its use of summarizing concepts, and reliance on only the minimum number of parameters (each with a clear biological meaning). The model is then used to provide an economic sensitivity analysis of possible target characteristics for manipulating root systems. These characteristics were: root distribution with depth, proportional dry matter partitioning to roots, resource capture coefficients, shoot dry weight at anthesis, specific root weight and water use efficiency. From the current estimates of parameters it is concluded that a larger investment by the crop in fine roots at depth in the soil, and less proliferation of roots in surface layers, would improve yields by accessing extra resources. The economic return on investment in roots for water capture was twice that of the same amount invested for nitrogen capture.
机译:建立了小麦根系的定量模型,该模型将根系的大小和分布与灌浆过程中捕获的水和氮(假定在深度上均匀分布)联系在一起,并可以估算其经济后果。捕获要评估。该模型的一个特殊功能是它使用了摘要概念,并且仅依赖最小数量的参数(每个参数都有明确的生物学含义)。然后使用该模型对操纵根系的可能目标特征进行经济敏感性分析。这些特征是:根的深度分布,按比例分配干物质到根的比例,资源捕获系数,花期的枝干重,比根重和水分利用效率。根据目前对参数的估计,可以得出结论,农作物对土壤深处的细根进行较大的投资,而表层根系的繁殖较少,将通过获取额外资源来提高产量。根系吸水的经济投资回报是氮素吸水的经济回报的两倍。

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