The stratospheric ozone layer has been depleted at high and mid-latitudes as a consequence of man's pollution of the atmosphere, and this results in increasing ultraviolet-B radiation at ground level. We investigate the effects of further radiation increases on plants and ecosystems by irradiating natural sub-Arctic and Arctic vegetation with artificial UV-B radiation in field experiments extending over several years. Our experimental sites are located at Abisko, in northern Sweden (68"N), and Adventdalen, on the island of Spitsbergen (78"N). Additional UV-B induced interspecific differences in plant response in terms of reduced (or, in one case, increased) growth, changed morphology and changed pigment content. In some cases...
In the last three decades much researchhas been carried out to investigate the biologicaleffects of ...
Based on research to date, we can state some expectations about terrestrial ecosystem response as se...
In a field irradiation experiment UV-B radiation was enhanced to simulate 15% ozone depletion under ...
To investigate the effects of increased UV-B radiation on a natural subarctic ecosystem a field irra...
Depletion of stratospheric ozone over the Antarctic has been re-occurring yearly since 1974, leading...
The response of tundra plants to enhanced UV-B radiation simulating 15 and 30% ozone depletion was s...
The response of tundra plants to enhanced UV-B radiation simulating 15 and 30% ozone depletion was s...
The stratospheric ozone depletion and the concomitant increase in ultraviolet-B (UV-B, 280-320 nm) r...
The response of tundra plants to enhanced UV-B radiation simulating 15 and 30% ozone depletion was s...
Depletion of stratospheric ozone over the Antarctic has been re-occurring yearly since 1974, leading...
Depletion of stratospheric ozone over the Antarctic has been re-occurring yearly since 1974, leading...
Elevated solar UV-B radiation associated with stratospheric ozone reduction may exert effects on ter...
Ultraviolet radiation (UV) is a minor fraction of the solar spectrum reaching the ground surface. In...
Ultraviolet radiation (UV) is a minor fraction of the solar spectrum reaching the ground surface. In...
1 The responses of sub-Arctic heathland vegetation to enhanced UV-B radiation and increased summer p...
In the last three decades much researchhas been carried out to investigate the biologicaleffects of ...
Based on research to date, we can state some expectations about terrestrial ecosystem response as se...
In a field irradiation experiment UV-B radiation was enhanced to simulate 15% ozone depletion under ...
To investigate the effects of increased UV-B radiation on a natural subarctic ecosystem a field irra...
Depletion of stratospheric ozone over the Antarctic has been re-occurring yearly since 1974, leading...
The response of tundra plants to enhanced UV-B radiation simulating 15 and 30% ozone depletion was s...
The response of tundra plants to enhanced UV-B radiation simulating 15 and 30% ozone depletion was s...
The stratospheric ozone depletion and the concomitant increase in ultraviolet-B (UV-B, 280-320 nm) r...
The response of tundra plants to enhanced UV-B radiation simulating 15 and 30% ozone depletion was s...
Depletion of stratospheric ozone over the Antarctic has been re-occurring yearly since 1974, leading...
Depletion of stratospheric ozone over the Antarctic has been re-occurring yearly since 1974, leading...
Elevated solar UV-B radiation associated with stratospheric ozone reduction may exert effects on ter...
Ultraviolet radiation (UV) is a minor fraction of the solar spectrum reaching the ground surface. In...
Ultraviolet radiation (UV) is a minor fraction of the solar spectrum reaching the ground surface. In...
1 The responses of sub-Arctic heathland vegetation to enhanced UV-B radiation and increased summer p...
In the last three decades much researchhas been carried out to investigate the biologicaleffects of ...
Based on research to date, we can state some expectations about terrestrial ecosystem response as se...
In a field irradiation experiment UV-B radiation was enhanced to simulate 15% ozone depletion under ...