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A case study on evaluation of water contents change in leaves (Sudajii) by using chlorophyll absorption band in the 400-1100 nm region

机译:利用400-1100 nm区域叶绿素吸收带评估叶片(Sudajii)水分变化的案例研究

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摘要

This study describes a method for evaluating the change in the water content of leaves by using visible and near infrared spectral analyses. The spectral behaviors within the 400-1100 nm region that corresponded to drought in the sample leaves were investigated using a spectrometer. Bands in the 470-490, 600-620, and 650-690 nm regions that are due to chlorophyll absorption were identified. Importantly, these bands were blueshifted by about 6-9 nm and showed decreased intensities. In particular, theband in the 650-690 nm region correlated to the water content with a coefficient of determination (r2) of 0.74. The spectral patterns of the loadings, which were calculated by principal component analysis (PCA), appeared similar to those of the second derivative spectra. Furthermore, the score of the first principal component obtained by PCA was clearly separated at the water content value of 48.1%. Therefore, the results provide a chemical understanding of band behavior in the 400-1100 nm region and suggest that PCA may support the evaluation of water content and stress in leaves by using this spectral region.
机译:这项研究描述了一种通过使用可见光和近红外光谱分析来评估叶片含水量变化的方法。使用分光计研究了400-1100 nm区域内对应于样品叶片干旱的光谱行为。确定了由于叶绿素吸收而在470-490、600-620和650-690 nm区域中的条带。重要的是,这些条带蓝移了大约6-9 nm,并显示出降低的强度。特别是,在650-690 nm范围内的波段与水含量相关,确定系数(r2)为0.74。通过主成分分析(PCA)计算的载荷谱图谱看起来与二阶导数谱图相似。此外,在水含量值为48.1%时,由PCA获得的第一主成分的分数明显分开。因此,结果提供了对400-1100 nm区域内谱带行为的化学理解,并表明PCA可通过使用该光谱区来支持叶片中水分和胁迫的评估。

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