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A method for the rapid generation of nonsequential light-response curves of chlorophyll fluorescence

机译:快速生成叶绿素荧光非顺序光响应曲线的方法

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Light-response curves (LCs) of chlorophyll fluorescence are widely used in plant physiology. Most commonly, LCs are generated sequentially, exposing the same sample to a sequence of distinct actinic light intensities. These measurements are not independent, as the response to each new light level is affected by the light exposure history experienced during previous steps of the LC, an issue particularly relevant in the case of the popular rapid light curves. In this work, we demonstrate the proof of concept of a new method for the rapid generation of LCs from nonsequential, temporally independent fluorescence measurements. The method is based on the combined use of sample illumination with digitally controlled, spatially separated beams of actinic light and a fluorescence imaging system. It allows the generation of a whole LC, including a large number of actinic light steps and adequate replication, within the time required for a single measurement (and therefore named "singlepulse light curve"). This method is illustrated for the generation of LCs of photosystem II quantum yield, relative electron transport rate, and nonphotochemical quenching on intact plant leaves exhibiting distinct light responses. This approach makes it also possible to easily characterize the integrated dynamic light response of a sample by combining the measurement of LCs (actinic light intensity is varied while measuring time is fixed) with induction/relaxation kinetics (actinic light intensity is fixed and the response is followed over time), describing both how the response to light varies with time and how the response kinetics varies with light intensity.
机译:叶绿素荧光的光响应曲线(LC)广泛用于植物生理。最常见的是,LC是按顺序生成的,将同一样品暴露于一系列不同的光化性光强度下。这些测量不是独立的,因为对每个新光水平的响应都会受到LC先前步骤中经历的曝光历史的影响,这在流行的快速光曲线情况下尤其重要。在这项工作中,我们演示了从非顺序,时间独立的荧光测量快速生成LC的新方法的概念验证。该方法基于样品照明与数字控制的,空间分离的光化光束和荧光成像系统的组合使用。它允许在单个测量所需的时间内(因此称为“单脉冲光曲线”)生成整个LC,包括大量的光化光阶跃和足够的复制。说明了此方法用于产生光系统II量子产率,相对电子传输速率和完整植物叶片上非光化学猝灭的LC的表现,这些植物叶片表现出明显的光响应。这种方法还可以通过将LC的测量值(光化强度在测量时间固定的同时变化)与感应/松弛动力学(光化强度固定并且响应为)相结合来轻松表征样品的动态光响应特性。随时间变化),描述了对光的响应如何随时间变化以及响应动力学如何随光强度变化。

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