Efficiency of nitrate uptake in spinach: impact of external nitrate concentration and relative growth rate on nitrate influx and efflux |
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Authors: | Ter Steege Margreet W. Stulen Ineke Wiersema Peter K. Posthumus Freek Vaalburg Wim |
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Affiliation: | (1) Department of Plant Biology, University of Groningen, P.O. Box 14, 9750 AA Haren, The Netherlands;(2) Present address: Department of Plant Ecology and Evolutionary Biology, Utrecht University, P.O. Box 80084, 3508 TB Utrecht, The Netherlands FAX No;(3) Isotope Laboratory, University of Groningen, P.O. Box 14, 9750 AA Haren, The Netherlands;(4) PET Centre, University Hospital, P.O. Box 31.001, 9713 EZ Groningen, The Netherlands |
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Abstract: | Regulation of nitrate influx and efflux in spinach (Spinacia oleracea L., cv. Subito), was studied in short-term label experiments with 13N- and 15N-nitrate. Nitrate fluxes were examined in relation to the N demand for growth, defined as relative growth rate (RGR) times plant N concentration. Plants were grown at different nitrate concentrations (0.8 and 4 mM), with mineral composition of growth and uptake solutions identical. Nitrate influx, efflux and net nitrate uptake rate (NNUR) were independent of the external nitrate concentration, despite differences in internal nitrate concentration. At both N regimes, NNUR was adequate to meet the N demand for growth. RGR-related signals predominantly determined the nitrate fluxes. At high RGR (0.25 g g-1 day-1), nitrate influx was 20 to 40% lower and nitrate efflux was 50 to 70% lower than at lower RGR (0.17 g g-1 day-1); efflux:influx ratio (E:I) declined from 0.5 at low RGR to 0.2 at higher RGR. Thus, the efficiency of NNUR substantially increased with increasing RGR. Differences in nitrate translocation between morning and afternoon coincided with differences in nitrate efflux, which is in accordance with the suggested regulation of nitrate efflux by the root cytoplasmic nitrate concentration. This revised version was published online in July 2006 with corrections to the Cover Date. |
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Keywords: | efflux influx net nitrate uptake rate regulation relative growth rate Spinacia oleracea L |
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