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PMID: 20231481 Published · ppublish English Historical Article Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, Non-P.H.S.

Global patterns in leaf 13C discrimination and implications for studies of past and future climate.

Diefendorf AF, Mueller KE, Wing SL, Koch PL, Freeman KH

Abstract

Fractionation of carbon isotopes by plants during CO(2) uptake and fixation (Delta(leaf)) varies with environmental conditions, but quantitative patterns of Delta(leaf) across environmental gradients at the global scale are lacking. This impedes interpretation of variability in ancient terrestrial organic matter, which encodes climatic and ecological signals. To address this problem, we converted 3,310 published leaf delta(13)C values into mean Delta(leaf) values for 334 woody plant species at 105 locations (yielding 570 species-site combinations) representing a wide range of environmental conditions. Our analyses reveal a strong positive correlation between Delta(leaf) and mean annual precipitation (MAP; R(2) = 0.55), mirroring global trends in gross primary production and indicating stomatal constraints on leaf gas-exchange, mediated by water supply, are the dominant control of Delta(leaf) at large spatial scales. Independent of MAP, we show a lesser, negative effect of altitude on Delta(leaf) and minor effects of temperature and latitude. After accounting for these factors, mean Delta(leaf) of evergreen gymnosperms is lower (by 1-2.7 per thousand) than for other woody plant functional types (PFT), likely due to greater leaf-level water-use efficiency. Together, environmental and PFT effects contribute to differences in mean Delta(leaf) of up to 6 per thousand between biomes. Coupling geologic indicators of ancient precipitation and PFT (or biome) with modern Delta(leaf) patterns has potential to yield more robust reconstructions of atmospheric delta(13)C values, leading to better constraints on past greenhouse-gas perturbations. Accordingly, we estimate a 4.6 per thousand decline in the delta(13)C of atmospheric CO(2) at the onset of the Paleocene-Eocene Thermal Maximum, an abrupt global warming event approximately 55.8 Ma.

MeSH Terms
Altitude Carbon Isotopes/metabolism Climate Change/history Databases, Factual Ecosystem History, Ancient Models, Biological Plant Leaves/metabolism Rain Trees/metabolism
Chemicals
Carbon Isotopes
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Diefendorf Aaron F
Department of Geosciences, Pennsylvania State University, University Park, PA 16802, USA. aaron.diefendorf@gmail.com
Mueller Kevin E
Wing Scott L
Koch Paul L
Freeman Katherine H
References (12)
12 references, click to expand
  1. Functional convergence in plant responses to the environment.
    Oecologia. 2003 Jan;134(1):1-11 PMID: 12647172
  2. Atmospheric CO(2) and the ratio of intercellular to ambient CO(2) concentrations in plants.
    Tree Physiol. 1995 Feb;15(2):105-11 PMID: 14965982
  3. A humid climate state during the Palaeocene/Eocene thermal maximum.
    Nature. 2004 Nov 25;432(7016):495-9 PMID: 15565152
  4. Transient floral change and rapid global warming at the Paleocene-Eocene boundary.
    Science. 2005 Nov 11;310(5750):993-6 PMID: 16284173
  5. Internal conductance does not scale with photosynthetic capacity: implications for carbon isotope discrimination and the economics of water and nitrogen use in photosynthesis.
    Plant Cell Environ. 2006 Feb;29(2):192-201 PMID: 17080635
  6. Atmosphere. An ancient carbon mystery.
    Science. 2006 Dec 8;314(5805):1556-7 PMID: 17158314
  7. Carbon isotopes and water use efficiency: sense and sensitivity.
    Oecologia. 2008 Mar;155(3):441-54 PMID: 18224341
  8. Subtropical to boreal convergence of tree-leaf temperatures.
    Nature. 2008 Jul 24;454(7203):511-4 PMID: 18548005
  9. Phylogenetic biome conservatism on a global scale.
    Nature. 2009 Apr 9;458(7239):754-6 PMID: 19219025
  10. The advantages of being evergreen.
    Trends Ecol Evol. 1995 Oct;10(10):402-7 PMID: 21237084
  11. Characterization of riparian species and stream detritus using multiple stable isotopes.
    Oecologia. 1996 Jul;107(2):232-238 PMID: 28307309
  12. Water availability and carbon isotope discrimination in conifers.
    Oecologia. 2001 May;127(4):476-486 PMID: 28547484
Article Info
Journal
Proceedings of the National Academy of Sciences of the United States of America
Abbr.
Proc Natl Acad Sci U S A
ISSN
1091-6490
Published
2010-03-30
Epub
2010-00-15
Pages
5738-43
Language
English
Region
United States
NLM ID
7505876
PMCID
PMC2851872
Subset
IM
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