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从遥感太阳诱导叶绿素荧光到生态系统结构、功能与服务:第一部分——利用理论

From remotely sensed solar-induced chlorophyll fluorescence to ecosystem structure, function, and service: Part I-Harnessing theory.

作者信息

Sun Ying, Gu Lianhong, Wen Jiaming, van der Tol Christiaan, Porcar-Castell Albert, Joiner Joanna, Chang Christine Y, Magney Troy, Wang Lixin, Hu Leiqiu, Rascher Uwe, Zarco-Tejada Pablo, Barrett Christopher B, Lai Jiameng, Han Jimei, Luo Zhenqi

机构信息

School of Integrative Plant Science, Soil and Crop Sciences Section, Cornell University, Ithaca, New York, USA.

Environmental Sciences Division and Climate Change Science Institute, Oak Ridge National Laboratory, Oak Ridge, Tennessee, USA.

出版信息

Glob Chang Biol. 2023 Jun;29(11):2926-2952. doi: 10.1111/gcb.16634. Epub 2023 Mar 29.

Abstract

Solar-induced chlorophyll fluorescence (SIF) is a remotely sensed optical signal emitted during the light reactions of photosynthesis. The past two decades have witnessed an explosion in availability of SIF data at increasingly higher spatial and temporal resolutions, sparking applications in diverse research sectors (e.g., ecology, agriculture, hydrology, climate, and socioeconomics). These applications must deal with complexities caused by tremendous variations in scale and the impacts of interacting and superimposing plant physiology and three-dimensional vegetation structure on the emission and scattering of SIF. At present, these complexities have not been overcome. To advance future research, the two companion reviews aim to (1) develop an analytical framework for inferring terrestrial vegetation structures and function that are tied to SIF emission, (2) synthesize progress and identify challenges in SIF research via the lens of multi-sector applications, and (3) map out actionable solutions to tackle these challenges and offer our vision for research priorities over the next 5-10 years based on the proposed analytical framework. This paper is the first of the two companion reviews, and theory oriented. It introduces a theoretically rigorous yet practically applicable analytical framework. Guided by this framework, we offer theoretical perspectives on three overarching questions: (1) The forward (mechanism) question-How are the dynamics of SIF affected by terrestrial ecosystem structure and function? (2) The inference question: What aspects of terrestrial ecosystem structure, function, and service can be reliably inferred from remotely sensed SIF and how? (3) The innovation question: What innovations are needed to realize the full potential of SIF remote sensing for real-world applications under climate change? The analytical framework elucidates that process complexity must be appreciated in inferring ecosystem structure and function from the observed SIF; this framework can serve as a diagnosis and inference tool for versatile applications across diverse spatial and temporal scales.

摘要

太阳诱导叶绿素荧光(SIF)是光合作用光反应过程中发出的一种遥感光学信号。在过去二十年中,SIF数据的可用性呈爆炸式增长,其空间和时间分辨率越来越高,引发了在不同研究领域(如生态学、农业、水文学、气候学和社会经济学)的应用。这些应用必须应对因尺度巨大变化以及植物生理学和三维植被结构的相互作用和叠加对SIF发射和散射的影响所导致的复杂性。目前,这些复杂性尚未得到克服。为推动未来研究,这两篇配套综述旨在:(1)建立一个用于推断与SIF发射相关的陆地植被结构和功能的分析框架;(2)通过多部门应用的视角,综合SIF研究的进展并识别挑战;(3)规划可采取的解决方案来应对这些挑战,并基于所提出的分析框架,阐述我们对未来5至10年研究重点的展望。本文是这两篇配套综述中的第一篇,以理论为导向。它介绍了一个理论严谨但实际适用的分析框架。在这个框架的指导下,我们针对三个总体问题提供理论观点:(1)正向(机制)问题——陆地生态系统结构和功能如何影响SIF的动态变化?(2)推断问题:从遥感SIF中可以可靠推断出陆地生态系统结构、功能和服务的哪些方面以及如何推断?(3)创新问题:为了在气候变化下实现SIF遥感在实际应用中的全部潜力,需要哪些创新?该分析框架阐明,在从观测到的SIF推断生态系统结构和功能时,必须认识到过程的复杂性;这个框架可以作为一个诊断和推断工具,用于跨不同空间和时间尺度的多种应用。

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