首页> 外文期刊>Plant and Soil >Study of differences between vertical root maps observed in a maize crop and simulated maps obtained using a model for the three-dimensional architecture of the root system.
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Study of differences between vertical root maps observed in a maize crop and simulated maps obtained using a model for the three-dimensional architecture of the root system.

机译:研究在玉米作物中观察到的垂直根图与使用根系统三维结构模型获得的模拟图之间的差异。

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摘要

Differences between observed and simulated vertical root maps were studied in an attempt to evaluate the predictive ability of a simulation model of root system architecture under field conditions on mature plants, and to identify avenues for improvement. Some methodological problems associated with root mapping in the field are considered with a sensitivity analysis. Comparisons were made on a maize crop (early maturing hybrid F1 cv. Dea) 15 days after silking. Four vertical root maps, perpendicular to the row and midway between two successive plants, were observed. Simulated root maps for different locations along the row showed essentially the same pattern, attesting of an approximately two-dimensional distribution of the roots in such a crop.Simulation of the intersection of roots with thin layers (thickness from 0 to 20 mm) instead of a perfect plane allowed the assessment of effects due to the roughness of actual trench walls, and possible artefacts in the observation of root intersections. The simulated root profiles were very sensitive to this thickness, especially in the 0-5 mm range, in both average values, and overall shape. Actual data were close to the 3 mm thick simulations. Differences between simulated and actual root maps wereshown to be mostly accounted for by the variations in soil bulk density. Thus, this environmental parameter appears as the most important one to include into the model for improving its predictions.
机译:研究了观察到的垂直根图与模拟垂直根图之间的差异,以评估田间条件下成熟植物的根系体系结构仿真模型的预测能力,并确定改进途径。通过敏感性分析考虑了与根映射有关的一些方法学问题。蚕丝后15天,对玉米作物(早熟的F1 cv。Dea杂交种)进行了比较。观察到四个垂直的根图,垂直于两个连续植物之间的行和中间。行中不同位置的模拟根图显示了基本相同的模式,证明了这种作物中根的大约二维分布,模拟了根与薄层(厚度从0到20 mm)而不是相交的交叉点一个完美的平面可以评估由于实际沟渠壁的粗糙度而产生的影响,以及在观察根部相交处可能存在的人为因素。模拟的根部轮廓对该厚度非常敏感,尤其是在0-5 mm范围内,无论是平均值还是整体形状。实际数据接近3毫米厚的模拟。结果表明,模拟的和实际的根图之间的差异主要是由土壤容重的变化引起的。因此,此环境参数似乎是最重要的参数,可包含在模型中以改善其预测。

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