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Impact of mesophyll diffusion on estimated global land CO2 fertilization.


ABSTRACT: In C3 plants, CO2 concentrations drop considerably along mesophyll diffusion pathways from substomatal cavities to chloroplasts where CO2 assimilation occurs. Global carbon cycle models have not explicitly represented this internal drawdown and therefore overestimate CO2 available for carboxylation and underestimate photosynthetic responsiveness to atmospheric CO2. An explicit consideration of mesophyll diffusion increases the modeled cumulative CO2 fertilization effect (CFE) for global gross primary production (GPP) from 915 to 1,057 PgC for the period of 1901-2010. This increase represents a 16% correction, which is large enough to explain the persistent overestimation of growth rates of historical atmospheric CO2 by Earth system models. Without this correction, the CFE for global GPP is underestimated by 0.05 PgC/y/ppm. This finding implies that the contemporary terrestrial biosphere is more CO2 limited than previously thought.

SUBMITTER: Sun Y 

PROVIDER: S-EPMC4226101 | biostudies-literature | 2014 Nov

REPOSITORIES: biostudies-literature

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Impact of mesophyll diffusion on estimated global land CO2 fertilization.

Sun Ying Y   Gu Lianhong L   Dickinson Robert E RE   Norby Richard J RJ   Pallardy Stephen G SG   Hoffman Forrest M FM  

Proceedings of the National Academy of Sciences of the United States of America 20141013 44


In C3 plants, CO2 concentrations drop considerably along mesophyll diffusion pathways from substomatal cavities to chloroplasts where CO2 assimilation occurs. Global carbon cycle models have not explicitly represented this internal drawdown and therefore overestimate CO2 available for carboxylation and underestimate photosynthetic responsiveness to atmospheric CO2. An explicit consideration of mesophyll diffusion increases the modeled cumulative CO2 fertilization effect (CFE) for global gross pr  ...[more]

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