Global warming could increase leaf transpiration and soil evaporation, which can potentially cause water deficit to plants. As valves, leaf stomata can control plant water loss and carbon gain, particularly under water stress conditions. To investigate the responses of stomata to elevated temperature in Schima superba and Syzygium rehderianum, two co-occurring subtropical forest dominant tree species, functional traits related to gas exchange, stomatal anatomy, and drought resistance were measured under control and warming environment (ca. 2 degrees C higher). We found that leaf water potential at both predawn and midday significantly decreased for the two species grown under warming conditions compared with those grown in the control envir...
Factorial experiments of combined warming and elevated CO2 are rarely performed but essential for ou...
Plant physiological adaptation to the global rise in atmospheric CO 2 concentration (CO2) is identif...
There remains an ongoing need to make crops more productive in the face of further increases in atmo...
Global warming could increase leaf transpiration and soil evaporation, which can potentially cause w...
<p>Global warming could increase leaf transpiration and soil evaporation, which can potentially caus...
Future climate change is expected to increase temperature (T) and atmospheric vapour pressure defici...
Future climate regimes characterized by rising [CO2], rising temperatures and associated droughts ma...
Rising temperature associated with climate change may have substantial impacts on forest tree functi...
Key message: Stomatal and mesophyll conductance were the dominant limitations to photosynthesis in r...
Tree mortality during global-change-type drought is usually attributed to xylem dysfunction, but as ...
Rising levels of atmospheric carbon dioxide concentration ([CO2]) and temperature have the potential...
Disentangling the relative impacts of precipitation reduction and vapour pressure deficit (VPD) on p...
Factorial experiments of combined warming and elevated CO2 are rarely performed but essential for ou...
Factorial experiments of combined warming and elevated CO2 are rarely performed but essential for ou...
Stomatal responses to environmental and climate changes have been widely investigated. However, stom...
Factorial experiments of combined warming and elevated CO2 are rarely performed but essential for ou...
Plant physiological adaptation to the global rise in atmospheric CO 2 concentration (CO2) is identif...
There remains an ongoing need to make crops more productive in the face of further increases in atmo...
Global warming could increase leaf transpiration and soil evaporation, which can potentially cause w...
<p>Global warming could increase leaf transpiration and soil evaporation, which can potentially caus...
Future climate change is expected to increase temperature (T) and atmospheric vapour pressure defici...
Future climate regimes characterized by rising [CO2], rising temperatures and associated droughts ma...
Rising temperature associated with climate change may have substantial impacts on forest tree functi...
Key message: Stomatal and mesophyll conductance were the dominant limitations to photosynthesis in r...
Tree mortality during global-change-type drought is usually attributed to xylem dysfunction, but as ...
Rising levels of atmospheric carbon dioxide concentration ([CO2]) and temperature have the potential...
Disentangling the relative impacts of precipitation reduction and vapour pressure deficit (VPD) on p...
Factorial experiments of combined warming and elevated CO2 are rarely performed but essential for ou...
Factorial experiments of combined warming and elevated CO2 are rarely performed but essential for ou...
Stomatal responses to environmental and climate changes have been widely investigated. However, stom...
Factorial experiments of combined warming and elevated CO2 are rarely performed but essential for ou...
Plant physiological adaptation to the global rise in atmospheric CO 2 concentration (CO2) is identif...
There remains an ongoing need to make crops more productive in the face of further increases in atmo...