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Large diurnal compensatory effects mitigate the response of Amazonian forests to atmospheric warming and drying.


ABSTRACT: Photosynthesis and evapotranspiration in Amazonian forests are major contributors to the global carbon and water cycles. However, their diurnal patterns and responses to atmospheric warming and drying at regional scale remain unclear, hindering the understanding of global carbon and water cycles. Here, we used proxies of photosynthesis and evapotranspiration from the International Space Station to reveal a strong depression of dry season afternoon photosynthesis (by 6.7 ± 2.4%) and evapotranspiration (by 6.1 ± 3.1%). Photosynthesis positively responds to vapor pressure deficit (VPD) in the morning, but negatively in the afternoon. Furthermore, we projected that the regionally depressed afternoon photosynthesis will be compensated by their increases in the morning in future dry seasons. These results shed new light on the complex interplay of climate with carbon and water fluxes in Amazonian forests and provide evidence on the emerging environmental constraints of primary productivity that may improve the robustness of future projections.

SUBMITTER: Zhang Z 

PROVIDER: S-EPMC10234591 | biostudies-literature | 2023 May

REPOSITORIES: biostudies-literature

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Large diurnal compensatory effects mitigate the response of Amazonian forests to atmospheric warming and drying.

Zhang Zhaoying Z   Cescatti Alessandro A   Wang Ying-Ping YP   Gentine Pierre P   Xiao Jingfeng J   Guanter Luis L   Huete Alfredo R AR   Wu Jin J   Chen Jing M JM   Ju Weimin W   Peñuelas Josep J   Zhang Yongguang Y  

Science advances 20230526 21


Photosynthesis and evapotranspiration in Amazonian forests are major contributors to the global carbon and water cycles. However, their diurnal patterns and responses to atmospheric warming and drying at regional scale remain unclear, hindering the understanding of global carbon and water cycles. Here, we used proxies of photosynthesis and evapotranspiration from the International Space Station to reveal a strong depression of dry season afternoon photosynthesis (by 6.7 ± 2.4%) and evapotranspir  ...[more]

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