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Dependency of Cotton Leaf Nitrogen, Chlorophyll, and Reflectance on Nitrogen and Potassium Availability

机译:棉花叶氮,叶绿素的依赖性以及氮和钾有效性的反射

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摘要

In-season assessment of cotton (Gossypium hirsutum L.) leaf N and K concentration using remote sensing techniques is needed to address spatial and temporal variation of these two nutrients. The objective of this study was to evaluate the effects of varying N and K availability on cotton chlorophyll concentration and detection of leaf N utilizing reflectance properties. Fertilizer N rates of 0, 45, 90, 135, and 180 kg ha–1 in factorial combination with K rates of 0 and 112 kg ha–1 were applied to cotton under field conditions. Recently matured leaves on the main stem were collected at first bloom and peak bloom physiological stages of growth in 1999 and 2000 to determine leaf N and K concentrations, chlorophyll concentration, and spectral reflectance. Nutrient stress anomalies from spectral reflectance data were predicted using partial least-squares regression. Partial least squares yielded a better predictability of leaf N concentration at first bloom and peak bloom when K was adequately supplied. The greatest predictability of leaf N was observed at peak bloom in 2000 with a maximum r2 of 0.77 and minimum standard error of prediction of 2.72. A red-edge shift to longer wavelengths with increased N supply was observed when K was sufficient. Utilization of leaf N concentration sampled at a coarse resolution in combination with timely and appropriate imagery may enhance nutrient management capabilities in precision agriculture so long as other nutrients are not limiting.
机译:需要使用遥感技术对棉(Gossypium hirsutum L.)叶片中的氮和钾浓度进行季节评估,以解决这两种养分的时空变化。 > 该研究的目的是利用反射特性评估变化的 N和K有效性对棉花叶绿素浓度和 叶片氮含量的影响。因子 组合中肥料 N的比率为0、45、90、135和180 kg ha –1 ,K比率为0和112 kg在田间条件下,将ha –1 应用于棉花。在1999年和2000年的第一花期和峰值花期生理 生长阶段,收集 主茎上最近成熟的叶片,以确定叶片的N和K 浓度,叶绿素浓度和光谱反射率。 使用偏最小二乘回归法预测来自光谱反射率数据的营养胁迫异常。充分供应钾肥后,偏最小二乘方对初开花和高峰开花时叶片氮浓度的预测性更好。 叶片氮的最大预测性在2000年的峰值Bloom 观测到,最大r 2 为0.77,最小标准误差 预测为2.72。当K足够时,观察到红边会随着氮的供应增加而移向更长的波长 以粗分辨率采样的叶片N浓度的利用 结合及时适当的图像可能会增强精密农业中的 养分管理能力,因此 只要其他养分没有限制。

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  • 来源
    《Agronomy Journal》 |2004年第1期|63-69|共7页
  • 作者单位

    Dep. of Plant and Soil Sci., Mississippi State Univ., Mississippi State, MS 39762;

    Dep. of Plant and Soil Sci., Mississippi State Univ., Mississippi State, MS 39762;

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  • 正文语种 eng
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