Background and Aims Anthropogenic depletion of stratospheric ozone in Arctic latitudes has resulted in an increase of ultraviolet-B radiation (UV-B) reaching the biosphere. UV-B exposure is known to reduce above-ground biomass and plant height, to increase DNA damage and cause accumulation of UV-absorbing compounds in polar plants. However, many studies on Arctic mosses tended to be inconclusive. The importance of different water availability in influencing UV-B impacts on lower plants in the Arctic has been poorly explored and might partially explain the observed wide variation of responses, given the importance of water in controlling bryophyte physiology. This study aimed to assess the long-term responses of three common sub-Arctic bryop...
Abstract Previous reports on the effects of enhanced UV-B radiation on bryophytes have been equivoca...
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...
Background and Aims Anthropogenic depletion of stratospheric ozone in Arctic latitudes has resulted ...
Background and Aims: Anthropogenic depletion of stratospheric ozone in Arctic latitudes has resulted...
We report a meta-analysis of data from 34 field studies into the effects of ultraviolet B (UVB) radi...
In this review all recent field studies on the effects of UV-B radiation on bryophytes are discussed...
In this review all recent field studies on the effects of UV-B radiation on bryophytes are discussed...
Background and Aims: Anthropogenic depletion of stratospheric ozone in Arctic latitudes has resulted...
In this review all recent field studies on the effects of UV-B radiation on bryophytes are discussed...
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 response of the bipolar moss Sanionia uncinata (Hedw.) Loeske to ambient and enhanced UV-B radia...
The depletion of the stratospheric ozone layer as a result of anthropogenic activities increases the...
The response of tundra plants to enhanced UV-B radiation simulating 15 and 30% ozone depletion was s...
Abstract Previous reports on the effects of enhanced UV-B radiation on bryophytes have been equivoca...
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...
Background and Aims Anthropogenic depletion of stratospheric ozone in Arctic latitudes has resulted ...
Background and Aims: Anthropogenic depletion of stratospheric ozone in Arctic latitudes has resulted...
We report a meta-analysis of data from 34 field studies into the effects of ultraviolet B (UVB) radi...
In this review all recent field studies on the effects of UV-B radiation on bryophytes are discussed...
In this review all recent field studies on the effects of UV-B radiation on bryophytes are discussed...
Background and Aims: Anthropogenic depletion of stratospheric ozone in Arctic latitudes has resulted...
In this review all recent field studies on the effects of UV-B radiation on bryophytes are discussed...
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 response of the bipolar moss Sanionia uncinata (Hedw.) Loeske to ambient and enhanced UV-B radia...
The depletion of the stratospheric ozone layer as a result of anthropogenic activities increases the...
The response of tundra plants to enhanced UV-B radiation simulating 15 and 30% ozone depletion was s...
Abstract Previous reports on the effects of enhanced UV-B radiation on bryophytes have been equivoca...
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...