The subject of this review is the impact of long-term changes in temperature on plant growth and its underlying components. The discussion highlights the extent to which thermal acclimation of metabolism is intrinsically linked to the plasticity of a range of biochemical and morphological traits. The fact that there is often a trade-off between temperature-mediated changes in net assimilation rates (NAR) and biomass allocation [in particular the specific leaf area (SLA)] when plants are grown at different temperatures is also highlighted. Also discussed is the role of temperature-mediated changes in photosynthesis and respiration in determining NAR values. It is shown that in comparisons that do not take phylogeny into account, fast-growing...
• We examined whether increased high temperature photosynthetic thermal tolerance (PT), reduced spec...
Thermal acclimation of photosynthesis and respiration can enable plants to maintain near constant ra...
Plants show flexible acclimation of leaf photosynthesis to temperature that depends both on their pr...
The subject of this review is the impact of long-term changes in temperature on plant growth and its...
Predicting plastic responses is crucial to assess plant species potential to adapt to climate change...
Temperature governs several biological processes from molecular to macroecological scales. Underlyin...
Plants are capable of actively adapting to a variety of environmental signals by adjusting physiolog...
Short-term temperature response curves of leaf dark respiration (R–T) provide insights into a critic...
Scaling relationships linking photosynthesis (A) to leaf traits are important for predicting vegetat...
• The present study shows that the relative contributions of leaf area ratio (LAR) and net assimilat...
We investigated the extent to which leaf and root respiration (R) differ in their response to short-...
• Gas exchange, fluorescence, western blot and chemical composition analyses were combined to assess...
Thermal acclimation of photosynthesis and respiration can enable plants to maintain near constant ra...
Abstract Under future climates, leaf temperature (Tl) will be higher and more variable. This will a...
Large interspecific differences exist in the potential relative growth rate (RGR) of plants. Which p...
• We examined whether increased high temperature photosynthetic thermal tolerance (PT), reduced spec...
Thermal acclimation of photosynthesis and respiration can enable plants to maintain near constant ra...
Plants show flexible acclimation of leaf photosynthesis to temperature that depends both on their pr...
The subject of this review is the impact of long-term changes in temperature on plant growth and its...
Predicting plastic responses is crucial to assess plant species potential to adapt to climate change...
Temperature governs several biological processes from molecular to macroecological scales. Underlyin...
Plants are capable of actively adapting to a variety of environmental signals by adjusting physiolog...
Short-term temperature response curves of leaf dark respiration (R–T) provide insights into a critic...
Scaling relationships linking photosynthesis (A) to leaf traits are important for predicting vegetat...
• The present study shows that the relative contributions of leaf area ratio (LAR) and net assimilat...
We investigated the extent to which leaf and root respiration (R) differ in their response to short-...
• Gas exchange, fluorescence, western blot and chemical composition analyses were combined to assess...
Thermal acclimation of photosynthesis and respiration can enable plants to maintain near constant ra...
Abstract Under future climates, leaf temperature (Tl) will be higher and more variable. This will a...
Large interspecific differences exist in the potential relative growth rate (RGR) of plants. Which p...
• We examined whether increased high temperature photosynthetic thermal tolerance (PT), reduced spec...
Thermal acclimation of photosynthesis and respiration can enable plants to maintain near constant ra...
Plants show flexible acclimation of leaf photosynthesis to temperature that depends both on their pr...