Leaf photosynthetic CO2 responses can provide insight into how major nutrients, such as phosphorus (P), constrain leaf CO2 assimilation rates (Anet). However, triose-phosphate limitations are rarely employed in the classic photosynthesis model and it is uncertain as to what extent these limitations occur in field situations. In contrast to predictions from biochemical theory of photosynthesis, we found consistent evidence in the field of lower Anet in high [CO2] and low [O2] than at ambient [O2]. For 10 species of trees and shrubs across a range of soil P availability in Australia, none of them showed a positive response of Anet at saturating [CO2] (i.e. Amax) to 2 kPa O2. Three species showed >20% reductions in Amax in low [O2], a phenomen...
This Zenodo record is a permanently preserved version of a PREreview. You can view the complete PREr...
Tropical forests take up more carbon (C) from the atmosphere per annum by photosynthesis than any ot...
Nitrogen (N) and phosphorus (P) are essential nutrients for plant metabolism, and their availability...
Leaf photosynthetic CO2 responses can provide insight into how major nutrients, such as phosphorus (...
Leaf photosynthetic CO₂ responses can provide insight into how major nutrients, such as phosphorus (...
The triose phosphate utilization rate (TPU) has been identified as is one of the processes that can ...
Tropical forests take up more carbon (C) from the atmosphere per annum by photosynthesis than any ot...
Tropical forests take up more carbon (C) from the atmosphere per annum by photosynthesis than any ot...
Tropical forests take up more carbon (C) from the atmosphere per annum by photosynthesis than any&nb...
Tropical forests take up more carbon (C) from the atmosphere per annum by photosynthesis than any&nb...
Aims: Few direct tests of phosphorus (P) limitation on highly-weathered soils have been conducted, e...
Rising atmospheric CO2 stimulates photosynthesis and productivity of forests, offsetting CO2 emissio...
Tropical forests take up more carbon (C) from the atmosphere per annum by photosynthesis than any ot...
There is huge uncertainty about how global exchanges of carbon between the atmosphere and land will ...
Phosphorus (P) is an essential macro-nutrient required for plant metabolism and growth. Low P availa...
This Zenodo record is a permanently preserved version of a PREreview. You can view the complete PREr...
Tropical forests take up more carbon (C) from the atmosphere per annum by photosynthesis than any ot...
Nitrogen (N) and phosphorus (P) are essential nutrients for plant metabolism, and their availability...
Leaf photosynthetic CO2 responses can provide insight into how major nutrients, such as phosphorus (...
Leaf photosynthetic CO₂ responses can provide insight into how major nutrients, such as phosphorus (...
The triose phosphate utilization rate (TPU) has been identified as is one of the processes that can ...
Tropical forests take up more carbon (C) from the atmosphere per annum by photosynthesis than any ot...
Tropical forests take up more carbon (C) from the atmosphere per annum by photosynthesis than any ot...
Tropical forests take up more carbon (C) from the atmosphere per annum by photosynthesis than any&nb...
Tropical forests take up more carbon (C) from the atmosphere per annum by photosynthesis than any&nb...
Aims: Few direct tests of phosphorus (P) limitation on highly-weathered soils have been conducted, e...
Rising atmospheric CO2 stimulates photosynthesis and productivity of forests, offsetting CO2 emissio...
Tropical forests take up more carbon (C) from the atmosphere per annum by photosynthesis than any ot...
There is huge uncertainty about how global exchanges of carbon between the atmosphere and land will ...
Phosphorus (P) is an essential macro-nutrient required for plant metabolism and growth. Low P availa...
This Zenodo record is a permanently preserved version of a PREreview. You can view the complete PREr...
Tropical forests take up more carbon (C) from the atmosphere per annum by photosynthesis than any ot...
Nitrogen (N) and phosphorus (P) are essential nutrients for plant metabolism, and their availability...