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Plant abiotic stress diagnostic by laser induced chlorophyll fluorescence spectral analysis of in vivo leaf tissue of biofuel species

机译:激光诱导叶绿素荧光光谱分析生物燃料物种体内叶片组织对植物非生物胁迫的诊断

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Laser induced fluorescence is exploited to evaluate the effect of abiotic stresses upon the evolution and characteristics of in vivo chlorophyll emission spectra of leaves tissues of brazilian biofuel plants species(Sacc/zGram officinarum and Jatropha curcas). The chlorophyll fluorescence spectra of 20 min predarkened intact leaves were studied employing several excitation wavelengths in the UV-VIS spectral region. Red(Fr) and far-red (FFr) chlorophyll fluorescence emission signals around 685 nm and 735 nm, respectively, were analyzed as a function of the stress intensity and the time of illumination(Kautsky effect). The Chi fluorescence ratio Fr/FFr which is a valuable nondestructive indicator of the chlorophyll content of leaves was investigated during a period of time of 30 days. The dependence of the Chi fluorescence ratio Fr/FFr upon the intensity of the abiotic stress(salinity) was examined. The results indicated that the salinity plays a major hole in the chlorophyll concentration of leaves in both plants spieces, with a significant reduction in the chlorophyll content for NaCl concentrations in the 25 - 200 mM range. The laser induced chlorophyll fluorescence analysis allowed detection of damage caused by salinity in the early stages of the plants growing process, and can be used as an early-warning indicator of salinity stress
机译:利用激光诱导的荧光来评估非生物胁迫对巴西生物燃料植物(Sacc / zGram officinarum和Jatropha curcas)叶片组织的体内叶绿素发射光谱的演变和特征的影响。使用UV-VIS光谱区域中的多个激发波长,研究了20分钟预先变暗的完整叶片的叶绿素荧光光谱。分析了分别在685 nm和735 nm处的红色(Fr)和远红色(FFr)叶绿素荧光发射信号,作为应力强度和照明时间的函数(考茨基效应)。在30天的时间内研究了Chi荧光比Fr / FFr,它是叶子的叶绿素含量的重要非破坏性指标。检验了Chi荧光比率Fr / FFr对非生物胁迫(盐度)强度的依赖性。结果表明,盐度在两种植物叶片的叶绿素浓度中起主要作用,而NaCl浓度在25-200 mM范围内,叶绿素含量显着降低。激光诱导的叶绿素荧光分析可以检测植物生长过程早期盐度引起的损害,并且可以用作盐度胁迫的预警指标

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