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Variability of corn/soybean yield and soil/landscape properties across a Southwestern Minnesota landscape

机译:玉米/大豆产量和土壤/景观特性的可变性横跨明尼苏达州景观

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Site-specific management of fertilizer depends upon accurate knowledge about the source of spatial variability in crop yield. Variations in landscape characteristics and soil properties are thought to be responsible for much of the variation in cropyield. Landscape characteristics, soil properties, and corn/soybean yield data were collected from four transects (320 to 365 m long) at 30 m intervals. Corn/soybean yields were less at eroded slopes than at the nearly level summit or at the foot/toeslope positions. Corn yield was positively correlated with A horizon thickness and negatively correlated with surface pH. A horizon thickness, surface pH, tillage system, and growing season precipitation explained 72% of the variability in corn yield. Slopegradient, depth to free CaCO_3, soil profile water storage, surface available K and growing season precipitation explained 44% of the variability in soybean yield.
机译:特定于特定的肥料管理取决于关于作物产量的空间变异源的准确知识。景观特征和土壤性质的变化被认为是农田大部分变化的原因。景观特征,土壤性质和玉米/大豆屈服数据以30米间隔从四个横断面(320至365米长)收集。玉米/大豆产率在侵蚀斜坡上比在几乎水平的峰会或脚/脚趾位置处较少。玉米产量与地平线厚度呈正相关,与表面pH值呈负相关。地平线厚度,表面pH,耕作系统和生长季节降水解释了72%的玉米产量变异。缩略图,对免费的Caco_3深度,土壤轮廓储水,表面可用k和生长季节降水解释了大豆产量变异的44%。

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