Tropical montane cloud forests support abundant epiphytic vascular plant communities that serve important ecosystem functions, but their reliance on atmospheric inputs of water may make them susceptible to the drying effects of rising cloud bases and more frequent droughts. We conducted a common garden experiment to explore the combined effects of decreasing cloud influence—lower humidity, warmer temperature, brighter light—and meteorological drought (i.e., absence of rain) on the physiology and morphology of vascular epiphytes native to primary forests of Monteverde, Costa Rica. The epiphytes, which exhibited C3 photosynthesis, were sourced from a lower montane cloud forest (CF) or a rainforest below the current cloud base (RF) and transp...
International audienceClimate models predict an increase in the severity and the frequency of drough...
Lianas are more abundant in seasonal forests than in wetter forests and are thought to perform bette...
PREMISE OF THE STUDY: California experienced severe drought between 2012 and 2016. During this perio...
Understanding plant hydraulic functioning and water balance during drought has become key in predict...
1. Epiphytes have the potential to modify the canopy environments in which they grow. Accurately eva...
Tropical montane cloud forests have a high diversity and abundance of epiphytes that have drought re...
1. Water availability is a key determinant of forest ecosystem function and tree species distributio...
Seasonal changes in water availability have been demonstrated to play a fundamental role in determin...
Vascular epiphytes are a major biomass component of forests across the globe and they contribute to ...
Key message: Stomatal and mesophyll conductance were the dominant limitations to photosynthesis in r...
1. Many plant species experience large differences in soil moisture availability within a season, po...
Climate change alters mean global surface temperatures, precipitation regimes, and atmospheric moist...
Key message: Relationship between sap flow and functional traits changes with altitude and changes i...
As climate change leads to increasing temperatures, tropical dry seasons are expected to become more...
Epiphytic plants account for high proportion of biomass in tropical montane rain forests. In high-el...
International audienceClimate models predict an increase in the severity and the frequency of drough...
Lianas are more abundant in seasonal forests than in wetter forests and are thought to perform bette...
PREMISE OF THE STUDY: California experienced severe drought between 2012 and 2016. During this perio...
Understanding plant hydraulic functioning and water balance during drought has become key in predict...
1. Epiphytes have the potential to modify the canopy environments in which they grow. Accurately eva...
Tropical montane cloud forests have a high diversity and abundance of epiphytes that have drought re...
1. Water availability is a key determinant of forest ecosystem function and tree species distributio...
Seasonal changes in water availability have been demonstrated to play a fundamental role in determin...
Vascular epiphytes are a major biomass component of forests across the globe and they contribute to ...
Key message: Stomatal and mesophyll conductance were the dominant limitations to photosynthesis in r...
1. Many plant species experience large differences in soil moisture availability within a season, po...
Climate change alters mean global surface temperatures, precipitation regimes, and atmospheric moist...
Key message: Relationship between sap flow and functional traits changes with altitude and changes i...
As climate change leads to increasing temperatures, tropical dry seasons are expected to become more...
Epiphytic plants account for high proportion of biomass in tropical montane rain forests. In high-el...
International audienceClimate models predict an increase in the severity and the frequency of drough...
Lianas are more abundant in seasonal forests than in wetter forests and are thought to perform bette...
PREMISE OF THE STUDY: California experienced severe drought between 2012 and 2016. During this perio...