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A simple model for chickpea development, growth and yield

机译:鹰嘴豆发育,生长和产量的简单模型

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Chickpea (Cicer arietinum L.) yield is unstable and low in major producer countries. A robust crop model can assist in evaluation of possible genetic improvements and cultural management practices to improve yield. The objectives of this study were to develop and test a chickpea simulation model that could be used across a wide range of environments. This model simulates phenological development, leaf development and senescence, mass partitioning, plant nitrogen balance, yield formation and soil water balance. Responses of crop processes to environmental factors of solar radiation, photoperiod, temperature, nitrogen and water availability, and genotype differences were included in the model. The model uses a daily time step and readily available weather and soil information. The model was tested using independent data from a wide range of growth and environmental conditions. In most cases, simulated grain yield were similar to observed yield (ranging from 20 to 379 g m(-2)) with a root mean square root of 26 g m(-2) (15% of average measured yield). It was concluded that the model generality, i.e., constant parameters for genotypes across locations, and applicability to a wide range of environmental conditions factors made this model especially useful
机译:在主要生产国,鹰嘴豆(Cicer arietinum L.)的产量不稳定且较低。稳健的作物模型可以帮助评估可能的遗传改良和文化管理实践,以提高产量。这项研究的目的是开发和测试可在多种环境中使用的鹰嘴豆模拟模型。该模型模拟物候发育,叶片发育和衰老,质量分配,植物氮平衡,产量形成和土壤水分平衡。该模型包括了农作物加工对太阳辐射,光周期,温度,氮和水利用率以及基因型差异等环境因素的响应。该模型使用每日时间步长和随时可用的天气和土壤信息。使用来自各种增长和环境条件的独立数据对模型进行了测试。在大多数情况下,模拟的谷物产量与观察到的产量相似(范围从20到379 g m(-2)),均方根为26 g m(-2)(平均实测产量的15%)。结论是,该模型的通用性,即跨位置的基因型的恒定参数,以及对各种环境条件因素的适用性,使该模型特别有用

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