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Evidence of changing intrinsic water‐use efficiency under rising atmospheric CO2 concentrations in Boreal Fennoscandia from subfossil leaves and tree ring δ13C ratios
Authors:MARY GAGEN  WALTER FINSINGER  FRIEDERIKE WAGNER‐CREMER  DANNY MCCARROLL  NEIL J. LOADER  IAIN ROBERTSON  RISTO JALKANEN  GILES YOUNG  ANDREAS KIRCHHEFER
Affiliation:1. Department of Geography, School of the Environment and Society, Swansea University, Swansea, UK;2. Palaeoecology, Institute of Environmental Biology, Faculty of Science, Utrecht University, Budapestlaan 4, NL‐3584 CD, Utrecht, the Netherlands;3. Centre for Bio‐Archaeology and Ecology (UMR 5059 CNRS), University of Montpellier 2, Institut de Botanique, 163 Rue A. Broussonet, F‐34090 Montpellier, France;4. Finnish Forestry Institute, METLA, Rovaniemi, Finland;5. Department of Biology, University of Troms?, Troms?, Norway
Abstract:Investigating the many internal feedbacks within the climate system is a vital component of the effort to quantify the full effects of future anthropogenic climate change. The stomatal apertures of plants tend to close and decrease in number under elevated CO2 concentrations, increasing water‐use efficiency (WUE) and reducing canopy evapotranspiration. Experimental and modelling studies reveal huge variations in these changes such that the warming associated with reduced evapotranspiration (known as physiological forcing) is neither well understood or constrained. Palaeo‐observations of changes in stomatal response and plant WUE under rising CO2 might be used to better understand the processes underlying the physiological forcing feedback and to link measured changes in plant WUE to a specific physiological change in stomata. Here we use time series of tree ring (Pinus sylvestris L.) δ13C and subfossil leaf (Betula nana L.) measurements of stomatal density and geometry to derive records of changes in intrinsic water‐use efficiency (iWUE) and maximum stomatal conductance in the Boreal zone of northern Finland and Sweden. We investigate the rate of change in both proxies, over the recent past. The independent lines of evidence from these two different Boreal species indicate increased iWUE and reduced maximum stomatal conductance of similar magnitude from preindustrial times (ca. ad 1850) to around ad 1970. After this maximum stomatal conductance continues to decrease to ad 2000 in B. nana but iWUE in P. sylvestris reaches a plateau. We suggest that northern boreal P. sylvestris might have reached a threshold in its ability to increase WUE as CO2 rises.
Keywords:boreal forest  Fennoscandia  intrinsic water use efficiency  physiological forcing  stomatal conductance  stomatal density
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