Merzlyak Mark N, Solovchenko Alexei E, Smagin Alexei I, Gitelson Anatoly A
Faculty of Biology, Department of Physiology of Microorganisms, Moscow State University, 119992 Moscow GSP-2, Russia.
J Plant Physiol. 2005 Feb;162(2):151-60. doi: 10.1016/j.jplph.2004.07.002.
Spectral properties of flavonols of three varieties (Golden Delicious, Antonovka, and Renet Simirenko) of anthocyanin-free apple fruit were investigated with reflectance spectroscopy. The results of spectral and biochemical analyses suggested that fruit reflectance in a broad spectral range 365-430 nm is strongly dependent on and, in sunlit fruit surfaces, governed by flavonols. The build up of peel flavonols (mainly rutin and other quercetin glycosides) resulted in a dramatic decrease of fruit reflectance in this range, flattening of the spectrum, and extending the region with low reflectance (4-5%) to ca. 410 nm. The spectral features observed suggest that flavonols contribute significantly to screening of excessive radiation, not only UV-A, but in the short-wave bands of chlorophyll and carotenoid absorption in the visible part of the spectrum as well. To retrieve quantitatively flavonol content from reflectance spectra, we tested the applicability of an inversion technique developed for non-destructive leaf pigment assessment. The model for flavonol content assessment was suggested in the form (R(-1)410 - R(-1)460)R800, where Rlambda is reflectance at wavelength lambda. The model was linearly related to flavonol content between 8 and 220nmol/cm2 with the coefficient of determination r2=0.92 and root mean square error of flavonol estimation of 20 nmol/ cm2 regardless of cultivar, chlorophyll, and carotenoid content.
利用反射光谱法研究了三个无花青素苹果品种(金冠、安托诺夫卡和雷内特·西米连科)中黄酮醇的光谱特性。光谱和生化分析结果表明,在365 - 430 nm的宽光谱范围内,果实反射率强烈依赖于黄酮醇,并且在阳光照射的果实表面,受黄酮醇的控制。果皮黄酮醇(主要是芦丁和其他槲皮素糖苷)的积累导致该范围内果实反射率急剧下降,光谱变平,并将低反射率区域(4 - 5%)扩展到约410 nm。观察到的光谱特征表明,黄酮醇不仅对紫外-A,而且对光谱可见光部分叶绿素和类胡萝卜素吸收的短波波段的过量辐射屏蔽都有显著贡献。为了从反射光谱中定量检索黄酮醇含量,我们测试了一种为无损叶片色素评估开发的反演技术的适用性。黄酮醇含量评估模型以(R(-1)410 - R(-1)460)R800的形式提出,其中Rlambda是波长lambda处的反射率。该模型与8至220 nmol/cm2之间的黄酮醇含量呈线性相关,决定系数r2 = 0.92,黄酮醇估计的均方根误差为20 nmol/cm2,与品种、叶绿素和类胡萝卜素含量无关。