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Red edge shift and biochemical content in grass canopies

机译:草冠层的红边偏移和生化含量

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The concentration of foliar nitrogen in tropical grass is one of the factors that explain the distribution of wildlife. Therefore, the remote sensing of foliar nitrogen contributes to a better understanding of wildlife feeding patterns. This study evaluated changes in the red edge position of the 680 nm continuum removed chlorophyll feature in the reflectance spectra of samples of Cenchus ciliaris grass grown in a greenhouse under three levels of nitrogen supply. Canopy spectral measurements from each treatment were recorded under controlled laboratory conditions over a four-week period using a GER 3700 spectroradiometer. Results indicate that the mean wavelength positions of the three fertilization treatments were statistically different. An increase in nitrogen supply yielded a shift in the red edge position to longer wavelengths. The red edge position, amplitude, slope at 713 nm and slope at 725 nm were significantly correlated to measured nitrogen concentration (bootstrapped r = 0.89, -0.28, 0.63 and 0.75, respectively) even at canopy level. Based on these results, the red edge position is strongly correlated with biochemical concentration in plants compared to the other methods tested. The study provides conclusive evidence that confirms the strength of a red edge-nitrogen relationship that remains underused in remote sensing. This method is promising for estimating nutrient content in grasslands.
机译:热带草中叶氮的浓度是解释野生动植物分布的因素之一。因此,遥感叶面氮有助于更好地了解野生动植物的摄食方式。这项研究评估了在三个氮供应水平下,温室中生长的C草样品的反射光谱中680 nm连续去除的连续叶绿素特征的红色边缘位置的变化。使用GER 3700分光光度计,在受控的实验室条件下,在四周的时间内记录了每种处理的冠层光谱测量值。结果表明,三种施肥处理的平均波长位置在统计学上是不同的。氮供应的增加导致红色边缘位置向更长波长移动。即使在冠层水平,红色边缘的位置,幅度,713 nm处的斜率和725 nm处的斜率也与测得的氮浓度显着相关(自举r分别为0.89,-0.28、0.63和0.75)。根据这些结果,与其他测试方法相比,红色边缘位置与植物中的生化浓度高度相关。这项研究提供了确凿的证据,证实了遥感中仍未充分利用的红边与氮之间关系的强度。该方法有望用于估算草地的养分含量。

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