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Regulation of mesophyll photosynthesis in intact wheat leaves by cytoplasmic phosphate concentrations
Authors:J I L Morison  G D Batten
Institution:(1) Division of Plant Industry, CSIRO, G.P.O. Box 1600, 2601 Canberra City, ACT, Australia;(2) Department of Botany, Australian National University, P.O. Box 4, 2601 Canberra City, ACT, Australia;(3) Present address: Department of Meteorology, University of Reading, 2 Earley Gate, Whiteknights, RG6 2AU Reading, UK;(4) Present address: Yanco Agricultural Institute, New South Wales Department of Agriculture, 2703 Yanco, NSW, Australia
Abstract:The effect of D-(+)-mannose, inorganic phosphate (Pi) and mannose-6-phosphate on net mesophyll CO2 assimilation rate (A) and stomatal conductance (gs) of wheat (Triticum aestivum L.) leaves was studied. The compounds were supplied through the transpiration stream of detached leaves from plants grown in sand in growth cabinets or glasshouses, with different concentrations of Pi (0.25, 1.0 and 4.0 mM) supplied during growth. In all cases, 10 mM D-(+)mannose caused 40–60% reduction of A within 30 min, though the time courses differed for flag leaves and the sixth leaf on the mainstem of glasshouse- and cabinet-grown plants. D-(+)Mannose had a similar effect on A in leaves having a fourfold range in total phosphate content. Effects of D-(+)mannose in reducing gs were always slower than on A. When the CO2 concentration in the leaf chamber was adjusted to maintain intercellular CO2 concentration (Ci) constant as A declined after mannose supply, gs still declined indicating that stomatal closure was not caused by changing Ci. Supplying mannose-6-phosphate at 10 and 1 mM and Pi at 5 and 10 mM concentrations caused rapid reductions in gs and also direct reductions in A. The observed effects of mannose and Pi on assimilation are consistent with the proposed regulatory role of cytoplasmic Pi in determining mesophyll carbon assimilation that has been derived previously using leaf discs, protoplasts and chloroplasts.Abbreviations and symbols A net mesophyll CO2-assimilation rate - Ca, Ci external (assimilation-chamber) and intercellular CO2 concentration, respectively - gs stomatal conductance - Man6P mannose-6-phosphate - Pi orthophosphate
Keywords:Mannose  Phosphate and CO2 assimilation  Photosynthesis and cytoplasmic phosphate  Stomatal conductance  Triticum (photosynthesis)
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