As the global climate warms, a key question is how increased leaf temperatures will affect tree physiology and the coupling between leaf and air temperatures in forests. To explore the impact of increasing temperatures on plant performance in open air, we warmed leaves in the canopy of two mature evergreen forests, a temperate Eucalyptus woodland and a tropical rainforest. The leaf heaters consistently maintained leaves at a target of 4 °C above ambient leaf temperatures. Ambient leaf temperatures (Tleaf) were mostly coupled to air temperatures (Tair), but at times, leaves could be 8–10 °C warmer than ambient air temperatures, especially in full sun. At both sites, Tleaf was warmer at higher air temperatures (Tair > 25 °C), but was cooler a...
Climate is an important factor limiting tree distributions and adaptation to different thermal envir...
Tropical forest canopies cycle vast amounts of carbon, yet we still have a limited understanding of ...
Acclimation of plant respiration rates (R) to climate warming is highly variable and many results ap...
As temperature dependence in many biological processes is generally a bell-shaped curve, warming may...
Tropical tree species have evolved under very narrow temperature ranges compared to temperate forest...
Rising mean annual temperatures due to climate change have intensified the need to understand the ef...
Northern hardwood forests are experiencing higher temperatures and more extreme heat waves, potentia...
Factorial experiments of combined warming and elevated CO2 are rarely performed but essential for ou...
Understanding physiological acclimation of photosynthesis and respiration is important in elucidatin...
© 2018 John Wiley & Sons Ltd Heatwaves are likely to increase in frequency and intensity with climat...
To predict the effects of global warming on plants, previous studies have investigated how the distr...
Tropical tree species have evolved under very narrow temperature ranges compared to temperate forest...
Given the contrasting short-term temperature dependences of gross primary production (GPP) and autot...
Temperature plays a key role in plant growth and development, because it affects metabolic rates of ...
© 2018 The Authors. Plant, Cell & Environment Published by John Wiley & Sons Ltd Given anticipated c...
Climate is an important factor limiting tree distributions and adaptation to different thermal envir...
Tropical forest canopies cycle vast amounts of carbon, yet we still have a limited understanding of ...
Acclimation of plant respiration rates (R) to climate warming is highly variable and many results ap...
As temperature dependence in many biological processes is generally a bell-shaped curve, warming may...
Tropical tree species have evolved under very narrow temperature ranges compared to temperate forest...
Rising mean annual temperatures due to climate change have intensified the need to understand the ef...
Northern hardwood forests are experiencing higher temperatures and more extreme heat waves, potentia...
Factorial experiments of combined warming and elevated CO2 are rarely performed but essential for ou...
Understanding physiological acclimation of photosynthesis and respiration is important in elucidatin...
© 2018 John Wiley & Sons Ltd Heatwaves are likely to increase in frequency and intensity with climat...
To predict the effects of global warming on plants, previous studies have investigated how the distr...
Tropical tree species have evolved under very narrow temperature ranges compared to temperate forest...
Given the contrasting short-term temperature dependences of gross primary production (GPP) and autot...
Temperature plays a key role in plant growth and development, because it affects metabolic rates of ...
© 2018 The Authors. Plant, Cell & Environment Published by John Wiley & Sons Ltd Given anticipated c...
Climate is an important factor limiting tree distributions and adaptation to different thermal envir...
Tropical forest canopies cycle vast amounts of carbon, yet we still have a limited understanding of ...
Acclimation of plant respiration rates (R) to climate warming is highly variable and many results ap...