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首页> 外文期刊>Functional Plant Biology >Dynamics of the energy flow through photosystem II under changing light conditions: a model approach.
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Dynamics of the energy flow through photosystem II under changing light conditions: a model approach.

机译:在不断变化的光照条件下,通过光系统II的能量流动力学:一种模型方法。

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Several biochemical models of photosynthesis exist that consider the effects of the dynamic adjustment of enzymatic and stomatal processes on carbon assimilation under fluctuating light. However, the rate of electron transport through the light reactions is commonly modelled by means of an empirical equation, parameterized with data obtained at the steady state. A steady-state approach cannot capture the dynamic nature of the adjustment of the light reactions under fluctuating light. Here we present a dynamic model approach for photosystem II that considers the adjustments in the regulative non-photochemical processes. The model is initially derived to account for changes occurring at the seconds-to-minutes time-scale under field conditions, and is parameterized and tested with chlorophyll fluorescence data. Results derived from this model show good agreement with experimentally obtained photochemical and non-photochemical quantum yields, providing evidence for the effect that the dark reactions exert in the adjustment of the energy flows at the light reactions. Finally, we compare the traditional steady-state approach with our dynamic approach and find that the steady-state approach produces an underestimation of the modelled electron transport rate under rapidly fluctuating light (1 second or less), whereas it produces overestimations under slower fluctuations of light (5 seconds or more)..
机译:存在几种光合作用的生化模型,这些模型考虑了在光照变化下酶和气孔过程动态调节对碳同化的影响。但是,通过光反应的电子传输速率通常是通过经验方程式建模的,该方程式使用在稳态下获得的数据进行参数化。稳态方法无法捕获波动光下光反应调节的动态特性。在这里,我们提出了光系统II的动态模型方法,该方法考虑了调节性非光化学过程中的调整。最初导出该模型是为了说明在田野条件下几秒钟到几分钟的时间范围内发生的变化,并对该模型进行参数设置并使用叶绿素荧光数据进行测试。从该模型得出的结果与实验获得的光化学和非光化学量子产率显示出良好的一致性,为暗反应在光反应的能量流调节中发挥作用提供了证据。最后,我们将传统的稳态方法与动态方法进行了比较,发现稳态方法在快速波动的光(1秒或更短)下产生了模型化的电子传输速率的低估,而在速度缓慢波动的情况下却产生了高估。点亮(5秒或更长时间)。

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