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The New Phytologist|September 7, 2007
Decline of arbuscular mycorrhizal fungi in northern hardwood forests exposed to chronic nitrogen additionsLinda T A Van Diepen, Erik A Lilleskov, Kurt S Pregitzer, et al.Tree Physiology|March 26, 2003
Variation in sugar maple root respiration with root diameter and soil depthKurt S. Pregitzer, Michele J. Laskowski, Andrew J. Burton, et al.Ecology|February 10, 2011
Nitrogen turnover in the leaf litter and fine roots of sugar mapleKurt S Pregitzer, Donald R Zak, Alan F Talhelm, et al.Ecological Applications : a Publication of the Ecological Society of America|March 7, 2009
Simulated atmospheric NO3- deposition increases soil organic matter by slowing decompositionDonald R Zak, William E Holmes, Andrew J Burton, et al.The New Phytologist|April 20, 2021
Interacting effects of soil fertility and atmospheric CO2 on leaf area growth and carbon gain physiology in Populus×euramericana (Dode) GuinierPeter S Curtis, Christoph S Vogel, Kurt S Pregitzer, et al.Nature|October 17, 2003
Reduction of soil carbon formation by tropospheric ozone under increased carbon dioxide levelsWendy M Loya, Kurt S Pregitzer, Noah J Karberg, et al.Oecologia|March 18, 2017
Populus tremuloides photosynthesis and crown architecture in response to elevated CO2 and soil N availabilityM E Kubiske, Kurt S Pregitzer, Carl J Mikan, et al.Ecology Letters|May 1, 2008
Scaling of respiration to nitrogen in leaves, stems and roots of higher land plantsPeter B Reich, Mark G Tjoelker, Kurt S Pregitzer, et al.The New Phytologist|February 9, 2007
Plant growth, biomass partitioning and soil carbon formation in response to altered lignin biosynthesis in Populus tremuloidesJessica E Hancock, Wendy M Loya, Christian P Giardina, et al.The New Phytologist|November 30, 2005
Tropospheric O(3) compromises net primary production in young stands of trembling aspen, paper birch and sugar maple in response to elevated atmospheric CO(2)John S King, Mark E Kubiske, Kurt S Pregitzer, et al.Pageof 5