Human activity causes increasing background concentrations of the greenhouse gases CO2 and O31. Increased levels of CO2 can be found in all terrestrial ecosystems2. Damaging O3 concentrations currently occur over 29% of the world\u27s temperate and subpolar forests but are predicted to affect fully 60% by 2100 (ref. 3). Although individual effects of CO2 and O3 on vegetation have been widely investigated, very little is known about their interaction, and long-term studies on mature trees and higher trophic levels are extremely rare4. Here we present evidence from the most widely distributed North American tree species5, Populus tremuloides, showing that CO2 and O3, singly and in combination, affected productivity, physical and chemical leaf...
The International Panel of Climate Change (IPCC) has concluded that the greenhouse gases, carbon dio...
Elevated levels of CO2 and O-3 affect plant growth and phytochemistry, which in turn can alter physi...
Over the years, a series of trembling aspen (Populus tremuloides Michx.) clones differing in O3 sens...
Human activity causes increasing background concentrations of the greenhouse gases CO2 and O3. Incre...
Human activity causes increasing background concentrations of the greenhouse gases CO2 and O-3(1). I...
1 This research was conducted at the Aspen FACE (Free Air CO2 Enrichment) site located in northern W...
The Intergovernmental Panel of Climate Change (IPCC) has concluded that the greenhouse gases carbon ...
Although rising levels of atmospheric carbon dioxide are expected to directly affect forest ecosyste...
CO2 concentrations in the Earth's atmosphere will rise to between 550 and 700 mu L L-1 by 2100 (IPCC...
Many uncertainties remain regarding how climate change will alter the structure and function of fore...
Tropospheric ozone (O3) levels are increasing around the world and damaging concentrations now occur...
Rising atmospheric CO2 concentrations may change soil fauna abundance. How increase of tropospheric ...
Stimulation of forest productivity by elevated concentrations of CO2 is expected to partially offset...
Atmospheric chemical composition affects foliar chemical composition, which in turn influences the d...
The combustion of fossil fuels is profoundly altering the chemical composition of the atmosphere. Be...
The International Panel of Climate Change (IPCC) has concluded that the greenhouse gases, carbon dio...
Elevated levels of CO2 and O-3 affect plant growth and phytochemistry, which in turn can alter physi...
Over the years, a series of trembling aspen (Populus tremuloides Michx.) clones differing in O3 sens...
Human activity causes increasing background concentrations of the greenhouse gases CO2 and O3. Incre...
Human activity causes increasing background concentrations of the greenhouse gases CO2 and O-3(1). I...
1 This research was conducted at the Aspen FACE (Free Air CO2 Enrichment) site located in northern W...
The Intergovernmental Panel of Climate Change (IPCC) has concluded that the greenhouse gases carbon ...
Although rising levels of atmospheric carbon dioxide are expected to directly affect forest ecosyste...
CO2 concentrations in the Earth's atmosphere will rise to between 550 and 700 mu L L-1 by 2100 (IPCC...
Many uncertainties remain regarding how climate change will alter the structure and function of fore...
Tropospheric ozone (O3) levels are increasing around the world and damaging concentrations now occur...
Rising atmospheric CO2 concentrations may change soil fauna abundance. How increase of tropospheric ...
Stimulation of forest productivity by elevated concentrations of CO2 is expected to partially offset...
Atmospheric chemical composition affects foliar chemical composition, which in turn influences the d...
The combustion of fossil fuels is profoundly altering the chemical composition of the atmosphere. Be...
The International Panel of Climate Change (IPCC) has concluded that the greenhouse gases, carbon dio...
Elevated levels of CO2 and O-3 affect plant growth and phytochemistry, which in turn can alter physi...
Over the years, a series of trembling aspen (Populus tremuloides Michx.) clones differing in O3 sens...