Interactions between the effects of atmospheric CO2 content and P nutrition on photosynthesis in white lupin (Lupinus albus L.)
Open Access
- 21 February 2006
- journal article
- Published by Wiley in Plant, Cell & Environment
- Vol. 29 (5) , 844-853
- https://doi.org/10.1111/j.1365-3040.2005.01464.x
Abstract
Phosphorus (P) is a major factor limiting the response of carbon acquisition of plants and ecosystems to increasing atmospheric CO2 content. An important consideration, however, is the effect of P deficiency at the low atmospheric CO2 content common in recent geological history, because plants adapted to these conditions may also be limited in their ability to respond to further increases in CO2 content. To ascertain the effects of low P on various components of photosynthesis, white lupin (Lupinus albus L.) was grown hydroponically at 200, 400 and 750 µmol mol−1 CO2, under sufficient and deficient P supply (250 and 0.69 µm P, respectively). Increasing growth CO2 content increased photosynthesis only under sufficient growth P. Ribulose 1,5-biphosphate carboxylase/oxygenase (Rubisco) content and activation state were not reduced to the same degree as the net CO2 assimilation rate (A), and the in vivo rate of electron transport was sufficient to support photosynthesis in all cases. The rate of triose phosphate use did not appear limiting either, because all the treatments continued to respond positively to a drop in oxygen levels. We conclude that, at ambient and elevated CO2 content, photosynthesis in low-P plants appears limited by the rate of ribulose biphosphate (RuBP) regeneration, probably through inhibition of the Calvin cycle. This failure of P-deficient plants to respond to rising CO2 content above 200 µmol mol−1 indicates that P status already imposes a widespread restriction in plant responses to increases in CO2 content from the pre-industrial level to current values.Keywords
This publication has 55 references indexed in Scilit:
- Interactions between atmospheric CO2 concentration and phosphorus nutrition on the formation of proteoid roots in white lupin (Lupinus albus L.)Plant, Cell & Environment, 2002
- Root system adjustments: regulation of plant nutrient uptake and growth responses to elevated CO2Oecologia, 2001
- Effects of elevated CO 2 and phosphorus addition on productivity and community composition of intact monoliths from calcareous grasslandOecologia, 1998
- Acclimation of photosynthesis to increasing atmospheric CO2: The gas exchange perspectivePhotosynthesis Research, 1994
- Regulation of Ribulose-1,5-Bisphosphate Carboxylase Activity in Response to Light Intensity and CO2 in the C3 Annuals Chenopodium album L. and Phaseolus vulgaris L.Plant Physiology, 1990
- A Model Describing the Regulation of Ribulose-1,5-Bisphosphate Carboxylase, Electron Transport, and Triose Phosphate Use in Response to Light Intensity and CO2 in C3 PlantsPlant Physiology, 1990
- Photosynthesis and nitrogen relationships in leaves of C3 plantsOecologia, 1989
- Chlorophyll a Fluorescence and Photosynthetic and Growth Responses of Pinus radiata to Phosphorus Deficiency, Drought Stress, and High CO2Plant Physiology, 1986
- Effects of Phosphorus Nutrition on Ribulose-1,5-Bisphosphate Carboxylase Activation, Photosynthetic Quantum Yield and Amounts of Some Calvin-Cycle Metabolites in Spinach LeavesFunctional Plant Biology, 1986
- Effects of Phosphorus Deficiency on the Photosynthesis and Respiration of Leaves of Sugar BeetPlant Physiology, 1973