Land-atmosphere exchanges influence atmospheric CO2. Emphasis has been on describing photosynthetic CO2 uptake, but less on respiration losses. New global datasets describe upper canopy dark respiration (Rd) and temperature dependencies. This allows characterisation of baseline Rd, instantaneous temperature responses and longer-term thermal acclimation effects. Here we show the global implications of these parameterisations with a global gridded land model. This model aggregates Rd to whole-plant respiration Rp, driven with meteorological forcings spanning uncertainty across climate change models. For preindustrial estimates, new baseline Rd increases Rp and especially in the tropics. Compared to new baseline, revised instantaneous response...
• Leaf dark respiration (R) is one of the most fundamental physiological processes in plants and is ...
Plant photosynthesis and respiration are the largest carbon fluxes between the terrestrial biosphere...
Plant respiration results in an annual flux of carbon dioxide (CO2) to the atmosphere that is six ti...
Land-atmosphere exchanges influence atmospheric CO2. Emphasis has been on describing photosynthetic ...
When predicting the effects of climate change, global carbon circulation models that include a posit...
Recent compilations of experimental and observational data have documented global temperature-depend...
• Leaf dark respiration (R) is one of the most fundamental physiological processes in plants and is ...
Short-term temperature response curves of leaf dark respiration (R–T) provide insights into a critic...
Plant respiration constitutes a massive carbon flux to the atmosphere, and a major control on the ev...
Leaf mitochondrial ('dark') respiration (Rd) is a key process influencing the feedback between clima...
Leaf dark respiration (Rd) acclimates to environmental changes. However, the magnitude, controls and...
International audienceLeaf dark respiration (R-dark) is an important yet poorly quantified component...
How leaf respiration (Rd) is represented in leading terrestrial biosphere models (TBMs) is reviewed...
• Leaf dark respiration (R) is one of the most fundamental physiological processes in plants and is ...
Plant photosynthesis and respiration are the largest carbon fluxes between the terrestrial biosphere...
Plant respiration results in an annual flux of carbon dioxide (CO2) to the atmosphere that is six ti...
Land-atmosphere exchanges influence atmospheric CO2. Emphasis has been on describing photosynthetic ...
When predicting the effects of climate change, global carbon circulation models that include a posit...
Recent compilations of experimental and observational data have documented global temperature-depend...
• Leaf dark respiration (R) is one of the most fundamental physiological processes in plants and is ...
Short-term temperature response curves of leaf dark respiration (R–T) provide insights into a critic...
Plant respiration constitutes a massive carbon flux to the atmosphere, and a major control on the ev...
Leaf mitochondrial ('dark') respiration (Rd) is a key process influencing the feedback between clima...
Leaf dark respiration (Rd) acclimates to environmental changes. However, the magnitude, controls and...
International audienceLeaf dark respiration (R-dark) is an important yet poorly quantified component...
How leaf respiration (Rd) is represented in leading terrestrial biosphere models (TBMs) is reviewed...
• Leaf dark respiration (R) is one of the most fundamental physiological processes in plants and is ...
Plant photosynthesis and respiration are the largest carbon fluxes between the terrestrial biosphere...
Plant respiration results in an annual flux of carbon dioxide (CO2) to the atmosphere that is six ti...