Increased Accumulation of Carbohydrates and Decreased Photosynthetic Gene Transcript Levels in Wheat Grown at an Elevated CO2 Concentration in the Field
Open Access
- 1 July 1995
- journal article
- Published by Oxford University Press (OUP) in Plant Physiology
- Vol. 108 (3), 975-983
- https://doi.org/10.1104/pp.108.3.975
Abstract
Repression of photosynthetic genes by increased soluble carbohydrate concentrations may explain acclimation of photosynthesis to elevated CO2 concentration. This hypothesis was examined in a field crop of spring wheat (Triticum aestivum L.) grown at both ambient (approximately 360 [mu]mol mol-1) and elevated (550 [mu]mol mol-1) atmospheric CO2 concentrations using free-air CO2 enrichment at Maricopa, Arizona. The correspondence of steady-state levels of mRNA transcripts (coding for the 83-kD photosystem I apoprotein, sedoheptulose-1,7-bisphosphatase, phosphoribulokinase, phosphoglycerokinase, and the large and small subunits of ribulose-1,5-bisphosphate carboxylase/oxygenase) with leaf carbohydrate concentrations (glucose-6-phosphate, glucose, fructose, sucrose, fructans, and starch) was examined at different stages of crop and leaf development and through the diurnal cycle. Overall only a weak correspondence between increased soluble carbohydrate concentrations and decreased levels for nuclear gene transcripts was found. The difference in soluble carbohydrate concentration between leaves grown at elevated and current ambient CO2 concentrations diminished with crop development, whereas the difference in transcript levels increased. In the flag leaf, soluble carbohydrate concentrations declined markedly with the onset of grain filling; yet transcript levels also declined. The results suggest that, whereas the hypothesis may hold well in model laboratory systems, many other factors modified its significance in this field wheat crop.Keywords
This publication has 13 references indexed in Scilit:
- Regulation of Photosynthesis by End-Product Accumulation in Leaves of Plants Storing Starch, Sucrose, and Hexose SugarsPlant Physiology, 1992
- cDNA and gene sequences of wheat chloroplast sedoheptulose‐1,7‐bisphosphatase reveal homology with fructose‐1,6‐bisphosphatasesEuropean Journal of Biochemistry, 1992
- Circadian oscillations of nuclear-encoded chloroplast proteins in pea (Pisum sativum)Plant Molecular Biology, 1991
- Root Restriction as a Factor in Photosynthetic Acclimation of Cotton Seedlings Grown in Elevated Carbon DioxidePlant Physiology, 1991
- Metabolic repression of transcription in higher plants.Plant Cell, 1990
- Acclimation of Two Tomato Species to High Atmospheric CO2Plant Physiology, 1989
- Acclimation to High CO2 in Monoecious CucumbersPlant Physiology, 1986
- Reversibility of Photosynthetic Inhibition in Cotton after Long-Term Exposure to Elevated CO2 ConcentrationsPlant Physiology, 1985
- Sequence of the chloroplast DNA region of Chlamydomonas reinhardii containing the gene of the large subunit of ribulose bisphosphate carboxylase and parts of its flanking genesJournal of Molecular Biology, 1982
- Evidence for Lack of Turnover of Ribulose 1,5-Diphosphate Carboxylase in Barley LeavesPlant Physiology, 1973