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Optical properties and phytolit content in common reed

机译:普通芦苇的光学性质和植酸含量

摘要

We studied the optical properties of common reed leaves (Phragmites australis), the influence of anatomical and biochemical characteristics on light reflectance and transmittance and the differences in characteristics between the leaves of different age. We also determined the content of phytoliths in leaves and their influence on reflectance and transmittance. Plants were collected in reed stands at Lake Cerknica. We have measured the concentration of chlorophyll a and b, carotenoids, anthocyanins and UV-absorbing compounds, the structural properties of the leaves, and their optical properties in the range of 280 to 880 nm. The leaves differed the most in the thickness of the cuticle and mesophyll and the number of stomata. Biochemical parameters differ the most in old leaves, sampled in July. The content of phytoliths in old and young leaves was very similar. The leaves differed the most in June and July. Curves of reflectance and transmittance spectra have similar shape irrespective of the age of the leaves. We measured relatively low reflectance and transmittance in the ultraviolet and visible part of the spectrum and a relatively high reflectance and transmittance in the NIR range. The RDA analysis revealed that the reflectance spectra are the most affected by the content of carotenoids, chlorophyll a, the length of prickle hairs, the length of the stomata and the thickness of the mesophyll, while the transmittance spectra are affected by the number of stomata in the upper epidermis and the thickness of the upper epidermis. The most pronounced difference between the June and July leaves is evident in the NIR region, as leaves sampled in June had significantly lower reflectance.
机译:我们研究了普通芦苇叶片(芦苇)的光学特性,解剖和生化特性对光反射率和透射率的影响以及不同年龄叶片之间的特性差异。我们还确定了叶中植硅石的含量及其对反射率和透射率的影响。在采尔科尼察湖的芦苇林中收集植物。我们测量了叶绿素a和b,类胡萝卜素,花色苷和紫外线吸收化合物的浓度,叶片的结构特性以及它们在280至880 nm范围内的光学特性。叶片的角质层和叶肉厚度以及气孔数量差异最大。在7月采样的旧叶子中,生化参数差异最大。老叶和幼叶中的植硅石含量非常相似。六月和七月的叶子差异最大。反射率和透射率光谱的曲线形状相似,与叶片的年龄无关。我们在光谱的紫外和可见光部分测得相对较低的反射率和透射率,而在NIR范围内测得相对较高的反射率和透射率。 RDA分析表明,反射光谱受类胡萝卜素含量,叶绿素a,刺毛长度,气孔长度和叶肉厚度的影响最大,而透射光谱受气孔数量的影响。在上表皮和上表皮的厚度。在6月和7月树叶之间的最明显差异是在NIR区域,因为6月采样的树叶反射率明显较低。

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    Jelenko Neva;

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  • 年度 2016
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