Limited capability of current satellite solar-induced chlorophyll fluorescence reconstructions to capture stomatal responses to environmental stresses

Zhao J, Paschalis A, Gentine P, Feng Z, Fatichi S. 2026. Limited capability of current satellite solar-induced chlorophyll fluorescence reconstructions to capture stomatal responses to environmental stresses. Communications Earth & Environment. 7, 9.

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Author
Zhao, Jiacheng; Paschalis, Athanasios; Gentine, Pierre; Feng, Zhaozhong; Fatichi, SimoneISTA
Abstract
Quantification of the impact of environmental stress on terrestrial vegetation photosynthesis is crucial for our understanding of the global carbon cycle, particularly under a changing climate. Vegetation responses to environmental stress manifest first as plant physiological changes, and at later stages through changes in canopy structure. Here we leverage CO2 and water flux data from 103 eddy covariance towers and satellite thermal images to assess whether current satellite reconstructions of solar-induced chlorophyll fluorescence capture these plant mechanisms. After removing seasonality using standardized anomalies (z-scores), we found that the relationship between tower-observed gross primary productivity and fluorescence reconstructions considerably weakened across a wide range of biomes. This loss of correlation results from a decoupling between stomatal responses and the physiological emission yield (ΦF) of fluorescence reconstructions during soil and atmospheric dry periods. The consequence is that productivity derived from fluorescence reconstructions will be progressively overestimated as dry conditions persist.
Publishing Year
Date Published
2026-01-05
Journal Title
Communications Earth & Environment
Publisher
Springer Nature
Volume
7
Article Number
9
eISSN
IST-REx-ID

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Zhao J, Paschalis A, Gentine P, Feng Z, Fatichi S. Limited capability of current satellite solar-induced chlorophyll fluorescence reconstructions to capture stomatal responses to environmental stresses. Communications Earth & Environment. 2026;7. doi:10.1038/s43247-025-03035-0
Zhao, J., Paschalis, A., Gentine, P., Feng, Z., & Fatichi, S. (2026). Limited capability of current satellite solar-induced chlorophyll fluorescence reconstructions to capture stomatal responses to environmental stresses. Communications Earth & Environment. Springer Nature. https://doi.org/10.1038/s43247-025-03035-0
Zhao, Jiacheng, Athanasios Paschalis, Pierre Gentine, Zhaozhong Feng, and Simone Fatichi. “Limited Capability of Current Satellite Solar-Induced Chlorophyll Fluorescence Reconstructions to Capture Stomatal Responses to Environmental Stresses.” Communications Earth & Environment. Springer Nature, 2026. https://doi.org/10.1038/s43247-025-03035-0.
J. Zhao, A. Paschalis, P. Gentine, Z. Feng, and S. Fatichi, “Limited capability of current satellite solar-induced chlorophyll fluorescence reconstructions to capture stomatal responses to environmental stresses,” Communications Earth & Environment, vol. 7. Springer Nature, 2026.
Zhao J, Paschalis A, Gentine P, Feng Z, Fatichi S. 2026. Limited capability of current satellite solar-induced chlorophyll fluorescence reconstructions to capture stomatal responses to environmental stresses. Communications Earth & Environment. 7, 9.
Zhao, Jiacheng, et al. “Limited Capability of Current Satellite Solar-Induced Chlorophyll Fluorescence Reconstructions to Capture Stomatal Responses to Environmental Stresses.” Communications Earth & Environment, vol. 7, 9, Springer Nature, 2026, doi:10.1038/s43247-025-03035-0.
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