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Development of a Critical Nitrogen Dilution Curve Based on Leaf Area Duration in Wheat

机译:基于叶面积持续时间的小麦临界氮稀释曲线的建立

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摘要

Precise quantification of plant nitrogen (N) nutrition status is essential for crop N management. The concept of critical N concentration (Nc) has been widely used for assessment of plant N status. This study aimed to develop a new winter wheat Nc dilution curve based on leaf area duration (LAD). Four field experiments were performed on different cultivars with different N fertilization modes in the Yangtze River basin and Yellow River basin in China. Results showed that the increase in LAD with increasing cumulative thermal time took the shape of an “S” type curve; whereas shoot N concentration decreased with increasing LAD, according to a power function. Both LAD and shoot N concentration increased with increasing N application. The new LAD based Nc dilution curve was determined and described as Nc = 1.6774 LAD−0.37 when LAD > 0.13. However, when LAD ≤ 0.13, Nc was constant and can be calculated by the equation when LAD = 0.13. The validation of Nc dilution curve with dataset acquired from independent experiments confirmed that N nutrition index (NNI) predictions based on the newly established Nc dilution curve could precisely diagnose N deficiency at different plant growth stages. The integrated N nutrition index (NNIinte), which was obtained by the weighted mean of NNI, was used to estimate shoot N concentration, shoot dry matter, LAD, and yield using regression functions. The linear relationships between NNIinte and these growth variables were well correlated. These results provided enough evidence that the new LAD–based Nc dilution curve could effectively and precisely diagnoses N deficiency in winter wheat crops.
机译:精确定量植物氮(N)营养状况对于作物氮素管理至关重要。临界氮浓度(Nc)的概念已被广泛用于评估植物氮的状况。这项研究旨在根据叶面积持续时间(LAD)绘制新的冬小麦Nc稀释曲线。在长江流域和黄河流域,对不同氮素施肥方式的不同品种进行了四个田间试验。结果表明,随着累积热时间的增加,LAD的增加呈“ S”型曲线。而根据幂函数,茎中氮的浓度随LAD的增加而降低。随着施氮量的增加,LAD和地上部的N浓度均增加。确定了新的基于LAD的Nc稀释曲线,当LAD> 0.13时,Nc = 1.6774 LAD -0.37 。但是,当LAD≤0.13时,Nc是恒定的,并且可以通过LAD = 0.13时的公式进行计算。利用从独立实验获得的数据集对Nc稀释曲线的验证证实,基于新建立的Nc稀释曲线的N营养指数(NNI)预测可以精确地诊断不同植物生长阶段的N缺乏。通过NNI的加权平均值获得的综合N营养指数(NNIinte)用于使用回归函数估算苗N浓度,苗干物质,LAD和产量。 NNIinte与这些生长变量之间的线性关系很好地相关。这些结果提供了足够的证据,表明新的基于LAD的Nc稀释曲线可以有效,准确地诊断冬小麦作物中的氮缺乏。

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