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Dual-excitation FLIDAR for the estimation of epidermal UV absorption in leaves and canopies

机译:双重激发FLIDAR用于估计叶片和冠层中表皮紫外线的吸收

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摘要

A new FLIDAR was designed for remote quantitative assessment of epidermal W absorption of leaves and canopies from chlorophyll (Chl) fluorescence (ChlF) measurements. The dual-excitation fluorescence light detection and ranging (DE-FLIDAR) performs a dual excitation of the Chi present in leaves, in the UV (355 nm) and visible (532 nm) part of the spectrum, the latter being used as a reference excitation not absorbed by the epidermis. Therefore, the epidermal UV absorption of vegetation can be estimated from the Chi fluorescence excitation ratio (FER). PhiF(532)/PhiF(355). Thanks to the alternated excitation by the DE-FLIDAR, the FER is immune to natural conditions in field, such as light-induced variable ChlF and leaf movement (variation of the angle of excitation). The DE-FLIDAR was used to investigate the presence of UV-absorbing compounds in individual leaves and canopies of different plant species, tobacco, pea, barley and wheat. The FER was much larger in outdoor-grown plants, indicating an accumulation of UV-absorbing compounds. Wie also analysed the epidermal UV absorption of the adaxial and abaxial side of tobacco leaves of different age. The logarithm of the FER showed a good agreement with the absorbance of methanolic extracts obtained from the same leaves. The presented DE-FLIDAR can perform up to three simultaneous fluorescence measurements; therefore, we could compare blue fluorescence (BR) to the epidermal UV absorption. In addition, a dual ratio. the red fluorescence (RF) to far-red fluorescence (FRF) emission ratio, excited at 355 and 532 nm, was shown to be linearly dependent on the Chi content. A mathematical model of leaf absorption and fluorescence, based on the Beer-Lambert's law, was developed to describe and analyse the fluorescence signatures obtained with the DE-FLIDAR. (C) 2001 Elsevier Science Inc. All rights reserved. [References: 58]
机译:设计了一种新的FLIDAR,用于通过叶绿素(Chl)荧光(ChlF)测量来远程定量评估叶和冠层的表皮W吸收。双重激发荧光检测和测距(DE-FLIDAR)对叶片中存在的Chi进行双重激发,在光谱的UV(355 nm)和可见光(532 nm)部分中,后者用作参考兴奋不被表皮吸收。因此,可以从Chi荧光激发率(FER)估算植被的表皮紫外线吸收。 PhiF(532)/ PhiF(355)。得益于DE-FLIDAR的交替激发,FER不受了自然条件的影响,例如光诱导的Chlf和叶片运动(激发角的变化)。 DE-FLIDAR用于研究不同植物物种(烟草,豌豆,大麦和小麦)的单个叶片和冠层中紫外线吸收化合物的存在。 FER在室外种植的植物中要大得多,这表明会吸收紫外线。 Wie还分析了不同年龄的烟叶的正反面的表皮紫外线吸收。 FER的对数显示与从相同叶片中提取的甲醇提取物的吸光度高度吻合。所展示的DE-FLIDAR最多可以同时执行三个荧光测量。因此,我们可以将蓝色荧光(BR)与表皮紫外线吸收进行比较。另外,双重比例。在355和532 nm处激发的红色荧光(RF)与远红外荧光(FRF)发射比显示出与Chi含量呈线性关系。建立了基于比尔朗伯定律的叶片吸收和荧光的数学模型,以描述和分析用DE-FLIDAR获得的荧光特征。 (C)2001 Elsevier Science Inc.保留所有权利。 [参考:58]

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