Little is known about the impact of changing temperature regimes on composition and diversity of cryptogam communities in the Arctic and Subarctic, despite the well-known importance of lichens and bryophytes to the functioning and climate feedbacks of northern ecosystems. We investigated changes in diversity and abundance of lichens and bryophytes within long-term (9-16 years) warming experiments and along natural climatic gradients, ranging from Swedish subarctic birch forest and subarctic/subalpine tundra to Alaskan arctic tussock tundra. In both Sweden and Alaska, lichen diversity responded negatively to experimental warming (with the exception of a birch forest) and to higher temperatures along climatic gradients. Bryophytes were less s...
Harsh winters are a characteristic element of Arctic ecosystems. Yet, winter conditions are often ne...
1. Climate change in the subarctic is expected to influence vegetation composition, specifically bry...
Graduation date: 2017Climate and terrestrial vegetation have had mutual feedbacks for nearly five hu...
Little is known about the impact of changing temperature regimes on composition and diversity of cry...
Little is known about the impact of changing temperature regimes on composition and diversity of cry...
Arctic tundra regions have been responding to global warming with visible changes in plant community...
Assessing the impacts of climate change on biodiversity and developing climate-wise conservation pla...
1. Changing temperature regimes and precipitation patterns in the Subarctic will impact on vegetatio...
Community stability is a fundamental factor sustaining ecosystem functioning and is affected by spec...
Macrolichens are important for the functioning and biodiversity of cold northern ecosystems and thei...
Arctic tundra regions have been responding to global warming with visible changes in plant community...
Global change is predicted to have large and rapid impact on polar and alpine regions. Bryophytes an...
Alpine ecosystems harbor remarkably diverse and distinct plant communities that are characteristical...
Climate change is affecting the composition and functioning of ecosystems across the globe. Mountain...
Alpine ecosystems harbor remarkably diverse and distinct plant communities that are characteristical...
Harsh winters are a characteristic element of Arctic ecosystems. Yet, winter conditions are often ne...
1. Climate change in the subarctic is expected to influence vegetation composition, specifically bry...
Graduation date: 2017Climate and terrestrial vegetation have had mutual feedbacks for nearly five hu...
Little is known about the impact of changing temperature regimes on composition and diversity of cry...
Little is known about the impact of changing temperature regimes on composition and diversity of cry...
Arctic tundra regions have been responding to global warming with visible changes in plant community...
Assessing the impacts of climate change on biodiversity and developing climate-wise conservation pla...
1. Changing temperature regimes and precipitation patterns in the Subarctic will impact on vegetatio...
Community stability is a fundamental factor sustaining ecosystem functioning and is affected by spec...
Macrolichens are important for the functioning and biodiversity of cold northern ecosystems and thei...
Arctic tundra regions have been responding to global warming with visible changes in plant community...
Global change is predicted to have large and rapid impact on polar and alpine regions. Bryophytes an...
Alpine ecosystems harbor remarkably diverse and distinct plant communities that are characteristical...
Climate change is affecting the composition and functioning of ecosystems across the globe. Mountain...
Alpine ecosystems harbor remarkably diverse and distinct plant communities that are characteristical...
Harsh winters are a characteristic element of Arctic ecosystems. Yet, winter conditions are often ne...
1. Climate change in the subarctic is expected to influence vegetation composition, specifically bry...
Graduation date: 2017Climate and terrestrial vegetation have had mutual feedbacks for nearly five hu...