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AGU: Geophysical Research Letters

 

Index Terms

  • Biogeosciences: Biogeochemical cycles, processes, and modeling
  • Biogeosciences: Biogeophysics
  • Biogeosciences: Diel, seasonal, and annual cycles
  • Biogeosciences: Plant ecology
  • Global Change: Land/atmosphere interactions

Abstract

GEOPHYSICAL RESEARCH LETTERS, VOL. 33, L15404, 5 PP., 2006
doi:10.1029/2006GL026750

Circadian rhythms constrain leaf and canopy gas exchange in an Amazonian forest

Christopher E. Doughty

Department of Earth System Science, University of California, Irvine, California, USA

Michael L. Goulden

Department of Earth System Science, University of California, Irvine, California, USA

Scott D. Miller

Department of Earth System Science, University of California, Irvine, California, USA

Humberto R. da Rocha

Department of Atmospheric Sciences, University of São Paulo, São Paulo, Brazil

We used a controlled-environment leaf gas-exchange system and the micrometeorological technique eddy covariance to determine whether circadian rhythms constrain the rates of leaf and canopy gas exchange in an Amazonian forest over a day. When exposed to continuous and constant light for 20 to 48 hours leaves of eleven of seventeen species reduced their photosynthetic rates and closed their stomata during the normally dark period and resumed active gas exchange during the normally light period. Similarly, the rate of whole-forest CO2 uptake at a predetermined irradiance declined during the late afternoon and early morning and increased during the middle of the day. We attribute these cycles to circadian rhythms that are analogous to ones that have been reported for herbaceous plants in the laboratory. The importance of endogenous gas exchange rhythms presents a previously unrecognized challenge for efforts to both interpret and model land-atmosphere energy and mass exchange.

Received 28 April 2006; accepted 28 June 2006; published 8 August 2006.

Citation: Doughty, C. E., M. L. Goulden, S. D. Miller, and H. R. da Rocha (2006), Circadian rhythms constrain leaf and canopy gas exchange in an Amazonian forest, Geophys. Res. Lett., 33, L15404, doi:10.1029/2006GL026750.

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