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基于叶绿素a荧光推断光合能力参数受PSII反应中心氧化还原状态的影响。

Inference of photosynthetic capacity parameters from chlorophyll a fluorescence is affected by redox state of PSII reaction centers.

作者信息

Han Jimei, Gu Lianhong, Wen Jiaming, Sun Ying

机构信息

College of Agriculture and Life Sciences, School of Integrative Plant Science, Soil and Crop Science 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

Plant Cell Environ. 2022 Apr;45(4):1298-1314. doi: 10.1111/pce.14271. Epub 2022 Feb 6.

Abstract

Solar-induced chlorophyll fluorescence (SIF) has been used to infer photosynthetic capacity parameters (e.g., the maximum carboxylation rate V , and the maximum electron transport rate J ). However, the precise mechanism and practical utility of such approach under dynamic environments remain unclear. We used the balance between the light and carbon reactions to derive theoretical equations relating chlorophyll a fluorescence (ChlF) emission and photosynthetic capacity parameters, and formulated testable hypotheses regarding the dynamic relationships between the true total ChlF emitted from PSII (SIF ) and V and J . We employed concurrent measurements of gas exchanges and ChlF parameters for 15 species from six biomes to test the formulated hypotheses across species, temperatures, and limitation state of carboxylation. Our results revealed that SIF alone is incapable of informing the variations in V and J across species, even when SIF is determined under the same environmental conditions. In contrast, the product of SIF and the fraction of open PSII reactions q , which indicates the redox state of PSII, is a strong predictor of both V and J , although their precise relationships vary somewhat with environmental conditions. Our findings suggest the redox state of PSII strongly influences the relationship between SIF and V and J .

摘要

太阳诱导叶绿素荧光(SIF)已被用于推断光合能力参数(例如,最大羧化速率V和最大电子传递速率J)。然而,在动态环境下这种方法的确切机制和实际效用仍不清楚。我们利用光反应和碳反应之间的平衡来推导叶绿素a荧光(ChlF)发射与光合能力参数之间的理论方程,并就从PSII发射的真实总ChlF(SIF)与V和J之间的动态关系提出了可检验的假设。我们对来自六个生物群落的15个物种同时进行了气体交换和ChlF参数测量,以检验所提出的跨物种、温度和羧化限制状态的假设。我们的结果表明,即使在相同环境条件下测定SIF,仅SIF本身也无法告知跨物种V和J的变化。相比之下,SIF与开放PSII反应分数q(表明PSII的氧化还原状态)的乘积是V和J的有力预测指标,尽管它们的确切关系会因环境条件而有所不同。我们的研究结果表明,PSII的氧化还原状态强烈影响SIF与V和J之间的关系。

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