Guanqiang Zuo, Robert M Aiken, Naijie Feng, Dianfeng Zheng, Haidong Zhao, Thomas J Avenson, Xiaomao Lin
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引用次数: 0
摘要
脉冲幅度调制(PAM)叶绿素 a 荧光可提供有关光合作用能量转换的信息。如果测量可靠,叶绿素 a 荧光可提供有关体内关键光合作用过程的详细信息。这些信息最近为如何提高农作物的产量潜力提供了新颖而重要的见解,并被用于了解遥感荧光,这种荧光被称为太阳诱导荧光,将完全由计划于今年发射的卫星测量。虽然 PAM 叶绿素 a 荧光仪测量的是荧光强度本身,但我们在本文中阐述了公理标准,根据这些标准,仪器检测到的强度可被假定为评估荧光产量,这是一种与荧光强度截然不同的现象,它为了解太阳能如何以不同方式分配到生物圈中提供了重要依据。本文对许多有用的叶绿素 a 荧光参数进行了数学、现象学和实践方面的综合讨论。我们提请注意不正确的方法和可能存在问题的仪器设计特点可能导致的潜在不确定性,并提供了相关实例。讨论了荧光测量的基本原理,包括信号的主要假设以及在暗适应和光适应条件下进行测量的方法注意事项。结合最近在环境压力下的应用,讨论了关键的荧光参数。还阐明了可从荧光衍生参数的内部比较以及荧光衍生参数与基于其他技术的参数的相互比较中收集到的细微信息。
Fresh perspectives on an established technique: Pulsed amplitude modulation chlorophyll a fluorescence.
Pulsed amplitude modulation (PAM) chlorophyll a fluorescence provides information about photosynthetic energy transduction. When reliably measured, chlorophyll a fluorescence provides detailed information about critical in vivo photosynthetic processes. Such information has recently provided novel and critical insights into how the yield potential of crops can be improved and it is being used to understand remotely sensed fluorescence, which is termed solar-induced fluorescence and will be solely measured by a satellite scheduled to be launched this year. While PAM chlorophyll a fluorometers measure fluorescence intensity per se, herein we articulate the axiomatic criteria by which instrumentally detected intensities can be assumed to assess fluorescence yield, a phenomenon quite different than fluorescence intensity and one that provides critical insight about how solar energy is variably partitioned into the biosphere. An integrated mathematical, phenomenological, and practical discussion of many useful chlorophyll a fluorescence parameters is presented. We draw attention to, and provide examples of, potential uncertainties that can result from incorrect methodological practices and potentially problematic instrumental design features. Fundamentals of fluorescence measurements are discussed, including the major assumptions underlying the signals and the methodological caveats about taking measurements during both dark- and light-adapted conditions. Key fluorescence parameters are discussed in the context of recent applications under environmental stress. Nuanced information that can be gleaned from intra-comparisons of fluorescence-derived parameters and intercomparisons of fluorescence-derived parameters with those based on other techniques is elucidated.