Showing results (11-20 of 28) with videos related to
Sort By:
Pageof 3
Environmental Pollution (Barking, Essex : 1987)|March 22, 2008
Effects of decadal exposure to interacting elevated CO2 and/or O3 on paper birch (Betula papyrifera) reproductionJoseph N T Darbah, Mark E Kubiske, Neil Nelson, et al.Environmental Pollution (Barking, Essex : 1987)|August 14, 2009
Leaf size and surface characteristics of Betula papyrifera exposed to elevated CO2 and O3Johanna Riikonen, Kevin E Percy, Minna Kivimäenpää, et al.Tree Physiology|December 7, 2007
Carbon gain and bud physiology in Populus tremuloides and Betula papyrifera grown under long-term exposure to elevated concentrations of CO2 and O3Johanna Riikonen, Katre Kets, Joseph Darbah, et al.Environmental Pollution (Barking, Essex : 1987)|November 14, 2009
Will photosynthetic capacity of aspen trees acclimate after long-term exposure to elevated CO2 and O3?Joseph N T Darbah, Mark E Kubiske, Neil Nelson, et al.The New Phytologist|April 23, 2009
Transcriptomic comparison in the leaves of two aspen genotypes having similar carbon assimilation rates but different partitioning patterns under elevated [CO2]Leland J Cseke, Chung-Jui Tsai, Alistair Rogers, et al.Plant Physiology|January 1, 2004
Respiratory oxygen uptake is not decreased by an instantaneous elevation of [CO2], but is increased with long-term growth in the field at elevated [CO2]Phillip A Davey, Stephen Hunt, Graham J Hymus, et al.Tree Physiology|March 5, 2008
Wood properties of trembling aspen and paper birch after 5 years of exposure to elevated concentrations of CO(2) and O(3)Katri Kostiainen, Seija Kaakinen, Elina Warsta, et al.Plant, Cell & Environment|April 5, 2007
Isoprene synthase expression and protein levels are reduced under elevated O3 but not under elevated CO2 (FACE) in field-grown aspen treesCarlo Calfapietra, Amy E Wiberley, Tanya G Falbel, et al.Gene|July 26, 2005
SEP-class genes in Populus tremuloides and their likely role in reproductive survival of poplar treesLeland J Cseke, Sarah Beth Cseke, Namritha Ravinder, 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 3