Mountain birch (Betula utilis) is the most important treeline species in alpine forests of southwestern China. In order to understand the effects of future warming on treeline birch, this study was conducted to examine the effects of experimental warming on leaf phenology, growth and gas exchange of B. utilis saplings using the open top chamber (OTC) method in a treeline ecotone of eastern Tibetan Plateau. The OTCs enhanced daily mean air temperature by 2.9 K throughout the growing season. Conversely, soil moisture within the OTCs on average declined by 3% over the experimental period. Experimental warming did not affect the timing of bud break, although treeline birch saplings growing in the OTCs manifested later leaf abscission, resulting...
Rising mean annual temperatures due to climate change have intensified the need to understand the ef...
Change in plant phenology is one of the most sensitive ecological responses to climate warming. Litt...
The short-term effects of two levels of air temperature (ambient and warmed) and light (full light a...
Rising temperature associated with climate change may have substantial impacts on forest tree functi...
The short-term effects of artificial warming on phenology, growth and leaf traits were investigated ...
Low temperatures are generally limiting factors in alpine ecosystems. Predicted global warming there...
Temperature and litter quality are two of the key factors controlling litter decomposition. Predicte...
Global air temperatures are predicted to rise 1° to 4.5° Celsius by the year 2100. This climatic cha...
Previous research on the effects of tree species on soil processes has focused primarily on the role...
Previous research on the effects of tree species on soil processes has focused primarily on the role...
Global air temperature has increased and continues to increase, especially in high latitude and high...
The response and adaption mechanisms of seedlings under long-term warming have remained largely unkn...
Previous studies about the effects of experimental warming on tree species have focused primarily on...
The effects of different climatic conditions on birch (Betula pendula Roth) and poplar (Populus) hyb...
Given the time scale based on the duration of exposure to global warming, natural climate-gradient s...
Rising mean annual temperatures due to climate change have intensified the need to understand the ef...
Change in plant phenology is one of the most sensitive ecological responses to climate warming. Litt...
The short-term effects of two levels of air temperature (ambient and warmed) and light (full light a...
Rising temperature associated with climate change may have substantial impacts on forest tree functi...
The short-term effects of artificial warming on phenology, growth and leaf traits were investigated ...
Low temperatures are generally limiting factors in alpine ecosystems. Predicted global warming there...
Temperature and litter quality are two of the key factors controlling litter decomposition. Predicte...
Global air temperatures are predicted to rise 1° to 4.5° Celsius by the year 2100. This climatic cha...
Previous research on the effects of tree species on soil processes has focused primarily on the role...
Previous research on the effects of tree species on soil processes has focused primarily on the role...
Global air temperature has increased and continues to increase, especially in high latitude and high...
The response and adaption mechanisms of seedlings under long-term warming have remained largely unkn...
Previous studies about the effects of experimental warming on tree species have focused primarily on...
The effects of different climatic conditions on birch (Betula pendula Roth) and poplar (Populus) hyb...
Given the time scale based on the duration of exposure to global warming, natural climate-gradient s...
Rising mean annual temperatures due to climate change have intensified the need to understand the ef...
Change in plant phenology is one of the most sensitive ecological responses to climate warming. Litt...
The short-term effects of two levels of air temperature (ambient and warmed) and light (full light a...