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Carbon-phosphorus cycle models overestimate CO 2 enrichment response in a mature Eucalyptus forest

Authors :
Jiang, Mingkai
Medlyn, Belinda E.
Wårlind, David
Knauer, Jürgen
Fleischer, Katrin
Goll, Daniel S.
Olin, Stefan
Yang, Xiaojuan
Yu, Lin
Zaehle, Sönke
Zhang, Haicheng
Lv, He
Crous, Kristine Y.
Carrillo, Yolima
Macdonald, Catriona
Anderson, Ian
Boer, Matthias M.
Farrell, Mark
Gherlenda, Andrew
Castañeda-Gómez, Laura
Hasegawa, Shun
Jarosch, Klaus
Milham, Paul
Ochoa-Hueso, Raúl
Pathare, Varsha
Pihlblad, Johanna
Nevado, Juan Piñeiro
Powell, Jeff
Power, Sally A.
Reich, Peter
Riegler, Markus
Ellsworth, David S.
Smith, Benjamin
Jiang, Mingkai
Medlyn, Belinda E.
Wårlind, David
Knauer, Jürgen
Fleischer, Katrin
Goll, Daniel S.
Olin, Stefan
Yang, Xiaojuan
Yu, Lin
Zaehle, Sönke
Zhang, Haicheng
Lv, He
Crous, Kristine Y.
Carrillo, Yolima
Macdonald, Catriona
Anderson, Ian
Boer, Matthias M.
Farrell, Mark
Gherlenda, Andrew
Castañeda-Gómez, Laura
Hasegawa, Shun
Jarosch, Klaus
Milham, Paul
Ochoa-Hueso, Raúl
Pathare, Varsha
Pihlblad, Johanna
Nevado, Juan Piñeiro
Powell, Jeff
Power, Sally A.
Reich, Peter
Riegler, Markus
Ellsworth, David S.
Smith, Benjamin
Source :
Science advances vol.10 (2024) date: 2024-07-05 nr.27 [ISSN 2375-2548]
Publication Year :
2024

Abstract

The importance of phosphorus (P) in regulating ecosystem responses to climate change has fostered P-cycle implementation in land surface models, but their CO2 effects predictions have not been evaluated against measurements. Here, we perform a data-driven model evaluation where simulations of eight widely used P-enabled models were confronted with observations from a long-term free-air CO2 enrichment experiment in a mature, P-limited Eucalyptus forest. We show that most models predicted the correct sign and magnitude of the CO2 effect on ecosystem carbon (C) sequestration, but they generally overestimated the effects on plant C uptake and growth. We identify leaf-to-canopy scaling of photosynthesis, plant tissue stoichiometry, plant belowground C allocation, and the subsequent consequences for plant-microbial interaction as key areas in which models of ecosystem C-P interaction can be improved. Together, this data-model intercomparison reveals data-driven insights into the performance and functionality of P-enabled models and adds to the existing evidence that the global CO2-driven carbon sink is overestimated by models.

Details

Database :
OAIster
Journal :
Science advances vol.10 (2024) date: 2024-07-05 nr.27 [ISSN 2375-2548]
Notes :
DOI: 10.1126/sciadv.adl5822, Science advances vol.10 (2024) date: 2024-07-05 nr.27 [ISSN 2375-2548], English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1450027956
Document Type :
Electronic Resource