Low sensitivity of gross primary production to elevated CO2 in a mature eucalypt woodland. 

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dc.contributor.author Yang, J.
dc.contributor.author Medlyn, B. E.
dc.contributor.author De Kauwe, M. G.
dc.contributor.author Duursma, R. A.
dc.contributor.author Jiang, M. 
dc.contributor.author Kumarathunge, D.
dc.contributor.author Crous, K. Y.
dc.contributor.author Gimeno, T. E.
dc.contributor.author Wujeska-Klause, A.
dc.contributor.author Ellsworth, D. S.
dc.date.accessioned 2022-12-15T08:10:16Z
dc.date.available 2022-12-15T08:10:16Z
dc.date.issued 2020-01-20
dc.identifier.citation Yang, J., Medlyn, B. E., De Kauwe, M. G., Duursma, R. A., Jiang, M., Kumarathunge, D., Crous, K. Y., Gimeno, T. E., Wujeska-Klause, A., & Ellsworth, D. S. (2020). Low sensitivity of gross primary production to elevated CO2 in a mature eucalypt woodland. Biogeosciences, 17(2), 265–279. https://doi.org/10.5194/bg-17-265-2020 en_US
dc.identifier.issn 1726-4189
dc.identifier.uri http://ir.lib.ruh.ac.lk/xmlui/handle/iruor/9882
dc.description.abstract The response of mature forest eco systems to arising atmospheric carbon dioxide concentration(Ca)is a major uncertainty in projecting the future trajectory of the Earth’s climate. Although leaf-level net photosynthesis is typically stimulated by exposure to elevated Ca (eCa), it is unclear how this stimulation translates into carbon cycle responses at the ecosystem scale. Here we estimate a key component of the carbon cycle, the gross primary productivity (GPP), of a mature native eucalypt forest exposed to free-air CO2 enrichment (the EucFACE experiment). In this experiment, light-saturated leaf photosynthesis increased by 19% in response to a 38% increase in Ca. We used the process-based forest canopy model, MAESPA, to upscale these leaf-level measurements of photosynthesis with canopy structure to estimate the GPP and its response to eCa. We assessed the direct impact of eCa, as well as the indirect effect of photosynthetic acclimation to eCa and variability among treatment plots using different model scenarios. At the canopy scale, MAESPA estimated a GPP of 1574gCm−2 yr−1 under ambient conditions across 4 years and a direct increase in the GPP of +11% in response to eCa. The smaller canopy-scale response simulated by the model, as compared with the leaf-level response, could be attributed to the prevalence of RuBP regeneration limitation of leaf photosynthesis within the canopy. Photosynthetic acclimation reduced this estimated response to 10%. After taking the baseline variability in the leaf area index across plots in ac count, we estimated a field GPP response to eCa of 6% with a 95% confidence interval (−2%,14%).These findings highlight that the GPP response of mature forests to eCa is likely to be considerably lower than the response of light-saturated leaf photosynthesis. Our results provide an important context for interpreting the eCa responses of other components of the ecosystem carbon cycle.
dc.language.iso en en_US
dc.publisher Copernicus Publications en_US
dc.subject Canopy photosynthesis en_US
dc.subject Carbon dioxide en_US
dc.subject Forests en_US
dc.subject Climate change en_US
dc.title Low sensitivity of gross primary production to elevated CO2 in a mature eucalypt woodland.  en_US
dc.type Article en_US


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