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首页> 外文期刊>Photosynthesis Research: An International Journal >Kinetics of delayed chlorophyll a fluorescence registered in milliseconds time range.
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Kinetics of delayed chlorophyll a fluorescence registered in milliseconds time range.

机译:延迟叶绿素a荧光的动力学在毫秒时间范围内记录。

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Delayed fluorescence dark decays in the time interval from 0.35 to 5.5 ms are measured during dark to light adaptation in whole barley leaves and isolated thylakoid membranes, using a disc phosphoroscope. The changes in delayed fluorescence features are compared with variable chlorophyll fluorescence simultaneously registered with the same apparatus as well as in parallel by Handy PEA (Hansatech Instruments Ltd.), and absorbance changes at 820 nm. The registered delayed fluorescence signal is a sum of three components - submillisecond with lifetime of about 0.6 ms, millisecond decayed 2-4 ms and slow component with lifetime 5.5 ms. The submillisecond delayed fluorescence component is proposed to be a result of radiative charge recombination in Photosystem II reaction centers in the state Z+PQA-QB-, and its lifetime is determined by the rate of electron transfer from QA- to QB-. The millisecond delayed fluorescence component is associated with recombination in Z+PQA-QB= centers with a lifetime determined by the sum of the rate constants of electron transfer from the oxygen-evolving complex to Z+ and of the exchange between the reduced and oxidized plastoquinone pool in the QB-site. On the basis of these assumptions and of the different share of the three components in the integral delayed fluorescence during induction, an attempt has been made to interpret the changes in the delayed fluorescence intensity during the transition of the photosynthetic apparatus from dark to light adapted state..
机译:使用圆盘荧光镜在整个大麦叶片和分离的类囊体膜的暗光适应过程中,在0.35至5.5 ms的时间间隔内测量了延迟的荧光暗衰减。将延迟荧光特征的变化与同时在同一设备上注册的可变叶绿素荧光进行比较,以及由Handy PEA(Hansatech Instruments Ltd.)并行注册,并且在820 nm处的吸光度发生变化。记录的延迟荧光信号是三个分量的总和-生命周期约0.6 ms的亚毫秒,衰减2-4 ms的毫秒和生命周期 5.5 ms的慢分量。亚毫秒级延迟荧光成分被认为是光系统II反应中心中Z + PQA-QB-状态下辐射电荷重组的结果,其寿命由电子从QA-转移到QB-的速率决定。毫秒级延迟荧光成分与Z + PQA-QB =中心的重组相关,其寿命由从放氧复合物到Z +的电子转移速率常数和还原与氧化的质体醌库之间的交换速率常数之和确定在QB站点中。基于这些假设以及诱导过程中整体延迟荧光中三种成分的不同份额,已尝试解释光合装置从暗适应状态转变为光适应状态期间延迟荧光强度的变化。 ..

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