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Photoperiodic regulation of the seasonal pattern of photosynthetic capacity and the implications for carbon cycling.

Publication ,  Journal Article
Bauerle, WL; Oren, R; Way, DA; Qian, SS; Stoy, PC; Thornton, PE; Bowden, JD; Hoffman, FM; Reynolds, RF
Published in: Proceedings of the National Academy of Sciences of the United States of America
May 2012

Although temperature is an important driver of seasonal changes in photosynthetic physiology, photoperiod also regulates leaf activity. Climate change will extend growing seasons if temperature cues predominate, but photoperiod-controlled species will show limited responsiveness to warming. We show that photoperiod explains more seasonal variation in photosynthetic activity across 23 tree species than temperature. Although leaves remain green, photosynthetic capacity peaks just after summer solstice and declines with decreasing photoperiod, before air temperatures peak. In support of these findings, saplings grown at constant temperature but exposed to an extended photoperiod maintained high photosynthetic capacity, but photosynthetic activity declined in saplings experiencing a naturally shortening photoperiod; leaves remained equally green in both treatments. Incorporating a photoperiodic correction of photosynthetic physiology into a global-scale terrestrial carbon-cycle model significantly improves predictions of seasonal atmospheric CO(2) cycling, demonstrating the benefit of such a function in coupled climate system models. Accounting for photoperiod-induced seasonality in photosynthetic parameters reduces modeled global gross primary production 2.5% (∼4 PgC y(-1)), resulting in a >3% (∼2 PgC y(-1)) decrease of net primary production. Such a correction is also needed in models estimating current carbon uptake based on remotely sensed greenness. Photoperiod-associated declines in photosynthetic capacity could limit autumn carbon gain in forests, even if warming delays leaf senescence.

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Published In

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

DOI

EISSN

1091-6490

ISSN

0027-8424

Publication Date

May 2012

Volume

109

Issue

22

Start / End Page

8612 / 8617

Related Subject Headings

  • Trees
  • Temperature
  • Seasons
  • Plant Leaves
  • Photosynthesis
  • Photoperiod
  • Models, Biological
  • Carbon Cycle
  • Algorithms
 

Citation

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Bauerle, W. L., Oren, R., Way, D. A., Qian, S. S., Stoy, P. C., Thornton, P. E., … Reynolds, R. F. (2012). Photoperiodic regulation of the seasonal pattern of photosynthetic capacity and the implications for carbon cycling. Proceedings of the National Academy of Sciences of the United States of America, 109(22), 8612–8617. https://doi.org/10.1073/pnas.1119131109
Bauerle, William L., Ram Oren, Danielle A. Way, Song S. Qian, Paul C. Stoy, Peter E. Thornton, Joseph D. Bowden, Forrest M. Hoffman, and Robert F. Reynolds. “Photoperiodic regulation of the seasonal pattern of photosynthetic capacity and the implications for carbon cycling.Proceedings of the National Academy of Sciences of the United States of America 109, no. 22 (May 2012): 8612–17. https://doi.org/10.1073/pnas.1119131109.
Bauerle WL, Oren R, Way DA, Qian SS, Stoy PC, Thornton PE, et al. Photoperiodic regulation of the seasonal pattern of photosynthetic capacity and the implications for carbon cycling. Proceedings of the National Academy of Sciences of the United States of America. 2012 May;109(22):8612–7.
Bauerle, William L., et al. “Photoperiodic regulation of the seasonal pattern of photosynthetic capacity and the implications for carbon cycling.Proceedings of the National Academy of Sciences of the United States of America, vol. 109, no. 22, May 2012, pp. 8612–17. Epmc, doi:10.1073/pnas.1119131109.
Bauerle WL, Oren R, Way DA, Qian SS, Stoy PC, Thornton PE, Bowden JD, Hoffman FM, Reynolds RF. Photoperiodic regulation of the seasonal pattern of photosynthetic capacity and the implications for carbon cycling. Proceedings of the National Academy of Sciences of the United States of America. 2012 May;109(22):8612–8617.
Journal cover image

Published In

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

DOI

EISSN

1091-6490

ISSN

0027-8424

Publication Date

May 2012

Volume

109

Issue

22

Start / End Page

8612 / 8617

Related Subject Headings

  • Trees
  • Temperature
  • Seasons
  • Plant Leaves
  • Photosynthesis
  • Photoperiod
  • Models, Biological
  • Carbon Cycle
  • Algorithms