We examined spatial and temporal dynamics of foliage respiration in canopies of dominant and suppressed Eucalyptus globulus trees to better understand processes regulating foliage respiration in a young fast-growing stand. Temperature response functions and seasonal measures of respiration (measured at a reference temperature of 15 °C, R15) were studied for ∼1 year to (i) examine controls on respiration as a function of canopy position, foliar nitrogen and non-structural carbohydrate concentrations and (ii) assess the capacity for thermal acclimation within E. globulus canopies. The short-term temperature response of respiration varied both with canopy position and seasonally. Area-based R15 measurements declined with increasing...
Understanding physiological acclimation of photosynthesis and respiration is important in elucidatin...
Given the contrasting short-term temperature dependences of gross primary production (GPP) and autot...
We explored the impact of canopy position on leaf respiration (R) and associated traits in tree and ...
We examined spatial and temporal dynamics of foliage respiration in canopies of dominant and suppre...
We measured the responses of leaf respiration to temperature and leaf characteristics of Quercus rub...
Leaf respiratory temperature responses of Quercus rubra were measured throughout the 2003-growing se...
Summary: 1. Leaf respiratory temperature responses and general leaf properties of Quercus rubra were...
Quantifying the adjustments of leaf respiration in response to seasonal temperature variation and cl...
Most vascular plants acclimate respiration to changes in ambient temperature, but explicit tests of ...
Most vascular plants acclimate respiration to changes in ambient temperature, but explicit tests of ...
Respiration from vegetation is a substantial part of the global carbon cycle and the responses of pl...
Stand-level, canopy foliar carbon loss (Rcan) was modeled for a virtual Quercus rubra L. monoculture...
Understanding the environmental and biotic drivers of respiration at the ecosystem level is a prereq...
Although it has long been recognized that physiological acclimation of photosynthesis and respiratio...
Short-term temperature response curves of leaf dark respiration (R–T) provide insights into a critic...
Understanding physiological acclimation of photosynthesis and respiration is important in elucidatin...
Given the contrasting short-term temperature dependences of gross primary production (GPP) and autot...
We explored the impact of canopy position on leaf respiration (R) and associated traits in tree and ...
We examined spatial and temporal dynamics of foliage respiration in canopies of dominant and suppre...
We measured the responses of leaf respiration to temperature and leaf characteristics of Quercus rub...
Leaf respiratory temperature responses of Quercus rubra were measured throughout the 2003-growing se...
Summary: 1. Leaf respiratory temperature responses and general leaf properties of Quercus rubra were...
Quantifying the adjustments of leaf respiration in response to seasonal temperature variation and cl...
Most vascular plants acclimate respiration to changes in ambient temperature, but explicit tests of ...
Most vascular plants acclimate respiration to changes in ambient temperature, but explicit tests of ...
Respiration from vegetation is a substantial part of the global carbon cycle and the responses of pl...
Stand-level, canopy foliar carbon loss (Rcan) was modeled for a virtual Quercus rubra L. monoculture...
Understanding the environmental and biotic drivers of respiration at the ecosystem level is a prereq...
Although it has long been recognized that physiological acclimation of photosynthesis and respiratio...
Short-term temperature response curves of leaf dark respiration (R–T) provide insights into a critic...
Understanding physiological acclimation of photosynthesis and respiration is important in elucidatin...
Given the contrasting short-term temperature dependences of gross primary production (GPP) and autot...
We explored the impact of canopy position on leaf respiration (R) and associated traits in tree and ...