Scaling relationships linking photosynthesis (A) to leaf traits are important for predicting vegetation patterns and plant-atmosphere carbon fluxes. Here, we investigated the impact of growth temperature on such scaling relationships. We assessed whethe
More than 5,000 measurements from 1,943 plant species were used to explore the scaling relationships...
The rise in atmospheric [CO2] is associated with increasing air temperature. However, studies on pla...
Phenology studies tend to use air temperature instead of plant tissue temperature. This study provid...
The subject of this review is the impact of long-term changes in temperature on plant growth and its...
We investigated whether plants adapted to thermally contrasting environments (e.g. tropical-temperat...
The temperature response of photosynthesis is one of the key factors determining predicted responses...
Leaf thermoregulation has been documented in a handful of studies, but the generality and origins of...
Abstract Under future climates, leaf temperature (Tl) will be higher and more variable. This will a...
Nitrogen (N) and phosphorus (P) have key roles in leaf metabolism, resulting in a strong coupling of...
The temperature response of photosynthesis is one of the key factors determining predicted responses...
Leaf functional traits are important indicators of plant growth and ecosystem dynamics. Despite a we...
A global analysis of the relationship between photosynthesis and temperature identifes key similarit...
Short-term temperature response curves of leaf dark respiration (R–T) provide insights into a critic...
Thermal acclimation of leaf gas exchange could facilitate the maintenance of positive carbon gain un...
• Global-scale quantification of relationships between plant traits gives insight into the evolution...
More than 5,000 measurements from 1,943 plant species were used to explore the scaling relationships...
The rise in atmospheric [CO2] is associated with increasing air temperature. However, studies on pla...
Phenology studies tend to use air temperature instead of plant tissue temperature. This study provid...
The subject of this review is the impact of long-term changes in temperature on plant growth and its...
We investigated whether plants adapted to thermally contrasting environments (e.g. tropical-temperat...
The temperature response of photosynthesis is one of the key factors determining predicted responses...
Leaf thermoregulation has been documented in a handful of studies, but the generality and origins of...
Abstract Under future climates, leaf temperature (Tl) will be higher and more variable. This will a...
Nitrogen (N) and phosphorus (P) have key roles in leaf metabolism, resulting in a strong coupling of...
The temperature response of photosynthesis is one of the key factors determining predicted responses...
Leaf functional traits are important indicators of plant growth and ecosystem dynamics. Despite a we...
A global analysis of the relationship between photosynthesis and temperature identifes key similarit...
Short-term temperature response curves of leaf dark respiration (R–T) provide insights into a critic...
Thermal acclimation of leaf gas exchange could facilitate the maintenance of positive carbon gain un...
• Global-scale quantification of relationships between plant traits gives insight into the evolution...
More than 5,000 measurements from 1,943 plant species were used to explore the scaling relationships...
The rise in atmospheric [CO2] is associated with increasing air temperature. However, studies on pla...
Phenology studies tend to use air temperature instead of plant tissue temperature. This study provid...