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首页> 外文期刊>International journal of remote sensing >Leaf and spike reflectance spectra of rice with contrasting nitrogen supplemental levels
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Leaf and spike reflectance spectra of rice with contrasting nitrogen supplemental levels

机译:不同氮素补充水平的水稻叶片和穗状反射光谱

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摘要

Reflectance (350-1060 nm) of leaves and spikes were measured from rice plants with three contrasting nitrogen supplemental levels at the grain-filling stage. The rice spikes have the typical reflectance spectra characteristic of plants, but they reflected more radiation and had longer wavelengths of maximum/ minimum reflectance in the visible region in comparison with the rice leaves. The spike differed from the leaf by its negative PRI (Photochemical Reflectance Index), evidently showing lower ratios of near-infrared (NIR) reflectance to red reflectance and much greater NPCI (Normalized total Pigment to Chlorophyll ratio Index). The NPCI decreased with increased nitrogen level, PRI increased with nitrogen level for both the spikes and the leaves, and leaf ratios of NIR reflectance to red reflectance increased with increased nitrogen level. The ratio values of spikes were near constant under the different nitrogen supplemental levels. The results suggested that the spectra of rice spikes might be of potential value in predicting rice yield and quality by assessing the spike nitrogen status.
机译:在灌浆阶段,从三个具有不同氮补充水平的水稻植株中测量叶片和穗的反射率(350-1060 nm)。稻穗具有植物的典型反射光谱特征,但是与稻叶相比,它们反射更多的辐射并且在可见光区域具有更长/最大反射率的波长。峰值与叶片的区别在于其负PRI(光化学反射率指数),显然显示出较低的近红外(NIR)反射率与红色反射率之比和更大的NPCI(归一化总颜料与叶绿素之比指数)。氮素含量增加,NPCI随氮素含量的增加而降低,PRI含量随氮素含量的增加而增加,氮素反射率与红色反射率的比值随氮素含量的增加而增加。在不同的氮添加水平下,穗的比率值几乎恒定。结果表明,通过评估穗氮状况,水稻穗的光谱可能在预测水稻产量和品质方面具有潜在价值。

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