Stomatal conductance of forest species after long‐term exposure to elevated CO2 concentration: a synthesis
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- 1 February 2001
- journal article
- research article
- Published by Wiley in New Phytologist
- Vol. 149 (2) , 247-264
- https://doi.org/10.1046/j.1469-8137.2001.00028.x
Abstract
• Data from 13 long-term (> 1 yr), field-based studies of the effects of elevated CO2 concentration ([CO2 ]) on European forest tree species were analysed using meta-analysis and modelling. Meta-analysis was used to determine mean responses across the data sets, and data were fitted to two commonly used models of stomatal conductance in order to explore response to environmental conditions and the relationship with assimilation. • Meta-analysis indicated a significant decrease (21%) in stomatal conductance in response to growth in elevated [CO2 ] across all studies. The response to [CO2 ] was significantly stronger in young trees than old trees, in deciduous compared to coniferous trees, and in water stressed compared to nutrient stressed trees. No evidence of acclimation of stomatal conductance to elevated [CO2 ] was found. • Fits of data to the first model showed that growth in elevated [CO2 ] did not alter the response of stomatal conductance to vapour pressure deficit, soil water content or atmospheric [CO2 ]. Fits of data to the second model indicated that conductance and assimilation responded in parallel to elevated [CO2 ] except when water was limiting. • Data were compared to a previous meta-analysis and it was found that the response of gs to elevated [CO2 ] was much more consistent in long-term (> 1 yr) studies, emphasising the need for long-term elevated [CO2 ] studies. By interpreting data in terms of models, the synthesis will aid future modelling studies of responses of forest trees to elevated [CO2 ].Keywords
This publication has 55 references indexed in Scilit:
- Growth response of branches of Picea sitchensis to four years exposure to elevated atmospheric carbon dioxide concentrationNew Phytologist, 1999
- Effect of irradiance and vapour pressure deficit On stomatal response to CO2enrichment of four tree speciesJournal of Experimental Botany, 1997
- Issues in scaling tree size and age responses to ozone: a reviewEnvironmental Pollution, 1997
- Effects of elevated CO2 concentration on photosynthesis, respiration and carbohydrate status of coppice Populus hybridsPhysiologia Plantarum, 1997
- MORE EFFICIENT PLANTS: A Consequence of Rising Atmospheric CO2?Annual Review of Plant Biology, 1997
- Photosynthetic responses to needle water potentials in Scots pine after a four-year exposure to elevated CO2 and temperatureTree Physiology, 1996
- Acclimation of photosynthesis to increasing atmospheric CO2: The gas exchange perspectivePhotosynthesis Research, 1994
- Photosynthetic acclimation in trees to rising atmospheric CO2: A broader perspectivePhotosynthesis Research, 1994
- Foliar gas exchange responses of two deciduous hardwoods during 3 years of growth in elevated CO2: no loss of photosynthetic enhancementPlant, Cell & Environment, 1993
- Growth and ecophysiological responses of black spruce seedlings to elevated CO2 under varied water and nutrient additionsCanadian Journal of Forest Research, 1993