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首页> 外文期刊>Photochemistry and Photobiology: An International Journal >Advances on photosystem II investigation by measurement of delayed chlorophyll fluorescence by a phosphoroscopic method
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Advances on photosystem II investigation by measurement of delayed chlorophyll fluorescence by a phosphoroscopic method

机译:荧光法测定延迟叶绿素荧光的光系统II研究进展

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摘要

A method for data acquisition based on recording of light signal from a conventional phophoroscope fluorometer with high-speed digitalization is proposed to extract more information from a delayed chlorophyll a fluorescence (DF) signal. During the signal processing from all points registered by the fluorometer, we obtain simultaneously a large number of induction curves of DF decaying at different time ranges. In addition, it is possible to register a series of dark relaxation kinetics of DF, recorded at different moments during the induction period or at different temperatures. This allows the evaluation of the contribution of DF kinetic components during the induction period or at different temperatures and the comparison between DF signals registered with different phophoroscopes. With the phosphoroscope system used in this study, we have shown that the contribution of the millisecond components (with lifetimes 0.6 and 2-4 ms) predominates during the first second of the induction period. After I s of illumination, the amplitudes of the 0.6 ms and 2-4 ms components and of the slower one (with lifetime more than 10 ms) become approximately equal. The change in lifetime of the different components during the induction and during gradual heating is also observed. It is shown that all registered DF kinetic components have different temperature dependences. [References: 50]
机译:为了从延迟的叶绿素荧光信号中提取更多的信息,提出了一种基于记录传统荧光粉荧光计的光信号并进行高速数字化的数据采集方法。在荧光计记录的所有点进行信号处理的过程中,我们同时获得了大量的DF在不同时间范围内衰减的感应曲线。另外,有可能记录一系列DF的暗弛豫动力学,这些动力学是在诱导期的不同时刻或在不同的温度下记录的。这样可以评估在诱导期或在不同温度下DF动力学成分的贡献,并可以比较用不同荧光粉记录的DF信号之间的比较。使用本研究中使用的荧光镜系统,我们已经表明,在感应周期的第一秒内,毫秒分量(寿命分别为0.6和2-4 ms)的贡献占主导地位。在经过I s的照射后,0.6 ms和2-4 ms的分量以及较慢的分量(寿命超过10 ms)的幅度变得近似相等。还观察到在感应期间和逐渐加热期间不同组件的寿命变化。结果表明,所有记录的DF动力学成分具有不同的温度依赖性。 [参考:50]

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