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Demonstration of plant fluorescence by imaging technique and Intelligent FluoroSensor

机译:通过成像技术和智能FluoroSensor演示植物荧光

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Photosynthesis is a process that converts carbon-dioxide into organic compounds, especially into sugars, using the energy of sunlight. The absorbed light energy is used mainly for photosynthesis initiated at the reaction centers of chlorophyll-protein complexes, but part of it is lost as heat and chlorophyll fluorescence. Therefore, the measurement of the latter can be used to estimate the photosynthetic activity. The basic method, when illuminating intact leaves with strong light after a dark adaptation of at least 20 minutes resulting in a transient change of fluorescence emission of the fluorophore chlorophyll-a called 'Kautsky effect', is demonstrated by an imaging setup. The experimental kit includes a high radiant blue LED and a CCD camera (or a human eye) equipped with a red transmittance filter to detect the changing fluorescence radiation. However, for the measurement of several fluorescence parameters, describing the plant physiological processes in detail, the variation of several excitation light sources and an adequate detection method are needed. Several fluorescence induction protocols (e.g. traditional Kautsky, pulse amplitude modulated and excitation kinetic), are realized in the Intelligent FluoroSensor instrument. Using it, students are able to measure different plant fluorescence induction curves, quantitatively determine characteristic parameters and qualitatively interpret the measured signals.
机译:光合作用是利用阳光的能量将二氧化碳转化为有机化合物,特别是糖的过程。吸收的光能主要用于在叶绿素-蛋白质复合物反应中心引发的光合作用,但一部分热量和叶绿素荧光损失。因此,后者的测量可用于估计光合作用活性。在成像设置中证明了基本方法,即在黑暗适应至少20分钟后用强光照射完整的叶子,导致荧光团叶绿素a的荧光发射发生瞬时变化,称为“考茨基效应”。该实验套件包括一个高辐射蓝色LED和一个配备有红色透射滤光片的CCD摄像头(或人眼),用于检测变化的荧光辐射。然而,为了测量几个荧光参数,详细描述植物的生理过程,需要几个激发光源的变化和适当的检测方法。在Intelligent FluoroSensor仪器中实现了几种荧光诱导方案(例如传统的Kautsky,脉冲幅度调制和激发动力学)。使用它,学生能够测量不同的植物荧光诱导曲线,定量确定特征参数并定性解释所测量的信号。

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