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Remotely Measuring Chlorophyll Content in Corn Leaves with Differing Nitrogen Levels and Relative Water Content

机译:不同氮素水平和相对含水量的玉米叶片叶绿素含量的遥感测定

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摘要

Measuring a crop’s physiological parameters provides information for interpreting its response to the environment. Remote sensing is quickly becoming recognized as a valuable tool that has the potential to assess a wide variety of physiological properties over a large area in a short amount of time. This study examined the relationship of corn (Zea mays L.) leaf spectral response to its chlorophyll contentand relative water content. The effects of N stress and water stress were examined on each of these physiological parameters. Over the years, several spectral indices have been introduced for a wide variety of applications. A number of these indices were evaluated for their ability to predict the parameters in question. The normalized difference between the first derivatives at 525 and 570 nm, as well as the wavelength location of the red edge, showed a strong association withchlorophyll content (r2 = 0.81 and 0.80, respectively). Even stronger relationships to chlorophyll content were observed with the ratios of 600/680 nm (r2 = 0.83) and 630/680 nm (r2 = 0.83). Thus, our results suggest that spectral reflectance measurements hold promise for the assessment of some physiological parameters at the leaf level. Further investigation is needed to evaluate the effectiveness of such techniques at the canopy level.
机译:测量农作物的生理参数可提供信息,以解释其对环境的反应。遥感迅速被认为是一种有价值的工具,它有潜力在短时间内评估大范围内的各种生理特性。本研究研究了玉米(Zea mays L.)叶片光谱响应与其叶绿素含量和相对含水量之间的关系。研究了氮胁迫和水分胁迫对这些生理参数的影响。多年来,已针对多种应用引入了几种光谱指数。对这些指数中的许多指数进行了预测有关参数的能力的评估。一阶导数在525和570 nm处的归一化差异以及红色边缘的波长位置显示出与叶绿素含量的强相关性(分别为r2 = 0.81和0.80)。以600/680 nm(r2 = 0.83)和630/680 nm(r2 = 0.83)的比率观察到与叶绿素含量的更强关系。因此,我们的结果表明光谱反射率测量有望在叶片水平上评估某些生理参数。需要进一步调查以评估这种技术在冠层水平上的有效性。

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