As human activity continues to increase CO2 and O3, broad expanses of north temperate forests will be simultaneously exposed to elevated concentrations of these trace gases. Although both CO2 and O3 are potent modifiers of plant growth, we do not understand the extent to which they alter competition for limiting soil nutrients, like nitrogen (N). We quantified the acquisition of soil N in two 8-year-old communities composed of trembling aspen genotypes (n55) and trembling aspen–paper birch which were exposed to factorial combinations of CO2 (ambient and 560 lLL 1) and O3 (ambient530–40 vs. 50–60 nL L 1). Tracer amount of 15NH4+ were applied to soil to determine how these trace gases altered the competitive ability of genotypes and species t...
Human activities are increasing the concentrations of atmospheric carbon dioxide ([CO2]) and troposp...
International audienceNitrogen availability in terrestrial ecosystems strongly influences plant prod...
• Concentrations of atmospheric CO2 and tropospheric ozone (O3) are rising concurrently in the atmos...
As human activity continues to increase CO2 and O3, broad expanses of north temperate forests will b...
As human activity continues to increase CO2 and O3, broad expanses of north temperate forests will b...
As human activity continues to increase CO 2 and O 3 , broad expanses of north temperate forests wil...
Plant growth responses to rising atmospheric CO 2 and O 3 vary among genotypes and between species, ...
Plant growth responses to rising atmospheric CO2 and O3 vary among genotypes and between species, wh...
Plant growth responses to rising atmospheric CO 2 and O 3 vary among genotypes and between spe...
Anthropogenic O3 and CO2-induced declines in soil N availability could counteract greater plant grow...
Nitrogen cycling in northern temperate forest ecosystems could change under increasing atmospheric C...
It is uncertain whether elevated atmospheric CO2 will increase C storage in terrestrial ecosystems w...
Three model communities of trembling aspen (monoculture, and mixed with either paper birch or sugar ...
Atmospheric chemical composition affects foliar chemical composition, which in turn influences the d...
The aspen free-air CO 2 and O 3 enrichment (FACTS II–FACE) study in Rhinelander, Wisconsin, USA, is ...
Human activities are increasing the concentrations of atmospheric carbon dioxide ([CO2]) and troposp...
International audienceNitrogen availability in terrestrial ecosystems strongly influences plant prod...
• Concentrations of atmospheric CO2 and tropospheric ozone (O3) are rising concurrently in the atmos...
As human activity continues to increase CO2 and O3, broad expanses of north temperate forests will b...
As human activity continues to increase CO2 and O3, broad expanses of north temperate forests will b...
As human activity continues to increase CO 2 and O 3 , broad expanses of north temperate forests wil...
Plant growth responses to rising atmospheric CO 2 and O 3 vary among genotypes and between species, ...
Plant growth responses to rising atmospheric CO2 and O3 vary among genotypes and between species, wh...
Plant growth responses to rising atmospheric CO 2 and O 3 vary among genotypes and between spe...
Anthropogenic O3 and CO2-induced declines in soil N availability could counteract greater plant grow...
Nitrogen cycling in northern temperate forest ecosystems could change under increasing atmospheric C...
It is uncertain whether elevated atmospheric CO2 will increase C storage in terrestrial ecosystems w...
Three model communities of trembling aspen (monoculture, and mixed with either paper birch or sugar ...
Atmospheric chemical composition affects foliar chemical composition, which in turn influences the d...
The aspen free-air CO 2 and O 3 enrichment (FACTS II–FACE) study in Rhinelander, Wisconsin, USA, is ...
Human activities are increasing the concentrations of atmospheric carbon dioxide ([CO2]) and troposp...
International audienceNitrogen availability in terrestrial ecosystems strongly influences plant prod...
• Concentrations of atmospheric CO2 and tropospheric ozone (O3) are rising concurrently in the atmos...