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Laser-induced chlorophyll fluorescence and reflectance spectroscopy of cadmium treatedTriticum aestivumL. plants

机译:镉处理的普通小麦的激光诱导叶绿素荧光和反射光谱。植物

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The present study deals with laser-induced chlorophyll fluorescence (LICF) spectra, reflectance spectra and fluorescence induction kinetics (FIK) curves ofTriticum aestivumL. plants treated with different concentrations of cadmium (0.01, 0.1 and 1.0 mM). LICF spectra were recorded in the region of 650–780 nm using violet diode laser (405 nm) and FIK curves were recorded at 685 and 730 nm using red diode laser (635 nm) for excitation. Reflectance spectra were recorded in the region of 400–800 nm using spectrophotometer with an integrating sphere. The fluorescence intensity ratios (FIR) were determined from LICF spectra, vitality index (Rfd) from FIK curves and narrow band vegetation index (NBVI) from reflectance spectra. These parameters along with plant growth parameters and photosynthetic pigment contents were used to analyze the effect of cadmium on wheat plants. The results clearly show that lower concentration of Cd (0.01 mM) shows stimulatory response; whereas higher concentrations (0.1 and 1.0 Mm) are hazardous for plant growth, photosynthetic pigments and photosynthetic activity of wheat plants.
机译:本研究涉及普通小麦的激光诱导叶绿素荧光(LICF)光谱,反射光谱和荧光诱导动力学(FIK)曲线。用不同浓度的镉(0.01、0.1和1.0 mM)处理过的植物。 LICF光谱使用紫二极管激光器(405 nm)记录在650–780 nm范围内,FIK曲线使用红二极管激光器(635 nm)进行激发分别记录在685和730 nm处。使用带有积分球的分光光度计在400–800 nm范围内记录反射光谱。从LICF光谱确定荧光强度比(FIR),从FIK曲线确定活力指数(Rfd),并从反射光谱确定窄带植被指数(NBVI)。这些参数与植物生长参数和光合色素含量一起用于分析镉对小麦植物的影响。结果清楚地表明,较低浓度的Cd(0.01 mM)表现出刺激性反应。而较高的浓度(0.1和1.0 Mm)对小麦的植物生长,光合色素和光合活性有害。

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