Evidence of changing intrinsic water-use efficiency under rising atmospheric CO2 concentrations in Boreal Fennoscandia from subfossil leaves and tree ring δ13C ratios

Author:

GAGEN MARY,FINSINGER WALTER,WAGNER-CREMER FRIEDERIKE,MCCARROLL DANNY,LOADER NEIL J.,ROBERTSON IAIN,JALKANEN RISTO,YOUNG GILES,KIRCHHEFER ANDREAS

Publisher

Wiley

Subject

General Environmental Science,Ecology,Environmental Chemistry,Global and Planetary Change

Reference46 articles.

1. The response of photosynthesis and stomatal conductance to rising CO2;Ainsworth;Plant, Cell and Environment,2007

2. Ontogeny affects response of northern red oak seedlings to elevated CO2 and water stress carbon assimilation and biomass production;Anderson;New Phytologist,1998

3. Strong correlation between summer temperature and pollen accumulation rates for Pinus sylvestris, Picea abies and Betula spp. in a high-resolution record from northern Sweden;Barnekow;Journal of Quaternary Science,2007

4. Simulated responses of potential vegetation to doubled-CO2 climate change and feedbacks on near-surface temperature;Betts;Global Ecology and Biogeography,2000

5. Effects of elevated CO2, increased nitrogen deposition and soil on evapotranspiration and water use efficiency of spruce-beech model ecosystems;Bucher-Wallin;Phyton-Annales Rei Botanicae,2000

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