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An analysis of factors determining spatial variable grain yield of winter wheat.

机译:决定冬小麦空间变量籽粒产量的因素分析。

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We analyzed under the temperate weather conditions of northwest Germany the relationships between soil water supply, crop canopy dynamics, radiation interception, components of the soil water balance and grain yield of winter wheat using data obtained from field experiments during three years. A dynamic model of the soil water budget in combination with frequent measurements of canopy parameters thereby was used to estimate the components of the water balance and radiation interception site specifically. Differences in soil texture and soil water supply characteristics in combination with variable canopy dynamics lead to substantial differences in radiation interception, components of the soil water budget and yield. The sum of intercepted photosynthetic active radiation corrected for drought stress by the ratio of actual to potential transpiration showed a unique positive correlation to grain yield over the three experimental years. Positive correlations between grain yield and actual transpiration normalized by saturation deficit were also found, however, the slopes differed between years. The best predictor of grain yield was the ratio of the sum actual transpiration to the sum of potential evapotranspiration. We could also show that drought stress corrected radiation interception and the ratio Sigma Ta/ Sigma ETp evaluated at end of May already correlated significantly with final grain yield. This may offer options for improved site specific crop management.
机译:我们使用三年来的田间试验数据,分析了德国西北部的温带气候条件下土壤水分供应,作物冠层动态,辐射截留,土壤水分平衡成分和冬小麦籽粒产量之间的关系。结合经常测量冠层参数的土壤水分收支动态模型,可以用来估算水平衡和辐射截留部位的组成部分。土壤质地和土壤供水特性的差异以及不同的冠层动力学会导致辐射截留,土壤水分收支和产量的实质差异。在三个实验年中,通过实际蒸腾量与潜在蒸腾量的比值对干旱胁迫校正的截获的光合作用活性辐射的总和与籽粒产量呈独特的正相关。还发现了谷物产量与通过饱和度亏缺归一化的实际蒸腾量之间呈正相关,但是,不同年份之间的斜率不同。谷物产量的最佳预测指标是实际蒸腾量与潜在蒸散量之比。我们还可以证明,干旱胁迫校正了辐射截留,5月底评估的Sigma T a / Sigma ET p 比已经与最终谷物产量显着相关。这可能为改善特定地点的作物管理提供了选择。

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