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一种基于叶绿素荧光的方法,用于综合表征对光胁迫的光生理响应。

A chlorophyll fluorescence-based method for the integrated characterization of the photophysiological response to light stress.

作者信息

Serôdio João, Schmidt William, Frankenbach Silja

机构信息

Departamento de Biologia andCentro de Estudos do Ambiente e do Mar (CESAM), Universidade de Aveiro, Campus de Santiago, 3810-193 Aveiro, Portugal.

出版信息

J Exp Bot. 2017 Feb 1;68(5):1123-1135. doi: 10.1093/jxb/erw492.

Abstract

This work introduces a new experimental method for the comprehensive description of the physiological responses to light of photosynthetic organisms. It allows the integration in a single experiment of the main established manipulative chlorophyll fluorescence-based protocols. It enables the integrated characterization of the photophysiology of samples regarding photoacclimation state (generating non-sequential light-response curves of effective PSII quantum yield, electron transport rate or non-photochemical quenching), photoprotection capacity (running light stress-recovery experiments, quantifying non-photochemical quenching components) and the operation of photoinactivation and photorepair processes (measuring rate constants of photoinactivation and repair for different light levels and the relative quantum yield of photoinactivation). The new method is based on a previously introduced technique, combining the illumination of a set of replicated samples with spatially separated actinic light beams of different intensity, and the simultaneous measurement of the fluorescence emitted by all samples using an imaging fluorometer. The main novelty described here is the independent manipulation of light intensity and duration of exposure for each sample, and the control of the cumulative light dose applied. The results demonstrate the proof of concept for the method, by comparing the responses of cultures of Chlorella vulgaris acclimated to low and high light regimes, highlighting the mapping of light stress responses over a wide range of light intensity and exposure conditions, and the rapid generation of paired light-response curves of photoinactivation and repair rate constants. This approach represents a chlorophyll fluorescence 'protocol of everything', contributing towards the high throughput characterization of the photophysiology of photosynthetic organisms.

摘要

这项工作介绍了一种新的实验方法,用于全面描述光合生物对光的生理反应。它允许在一个实验中整合主要已确立的基于叶绿素荧光的操作方案。它能够对样品的光生理学进行综合表征,包括光适应状态(生成有效PSII量子产率、电子传递速率或非光化学猝灭的非顺序光响应曲线)、光保护能力(进行光胁迫恢复实验,量化非光化学猝灭成分)以及光失活和光修复过程的运行情况(测量不同光照水平下光失活和修复的速率常数以及光失活的相对量子产率)。这种新方法基于先前引入的一项技术,即将一组重复样品用不同强度的空间分离的光化光束进行照射,并使用成像荧光计同时测量所有样品发出的荧光。这里描述的主要新颖之处在于对每个样品的光强度和曝光持续时间进行独立操作,以及对施加的累积光剂量进行控制。通过比较适应低光和高光条件的小球藻培养物的反应,结果证明了该方法的概念验证,突出了在广泛的光强度和曝光条件下光胁迫反应的映射,以及光失活和修复速率常数的成对光响应曲线的快速生成。这种方法代表了一种叶绿素荧光的“万能方案”,有助于对光合生物的光生理学进行高通量表征。

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