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A comparative study of fluxes and compartmentation of nitrate and ammonium in early-successional tree species
Authors:X Min  M Yaeesh Siddiqi  R D Guy  A D M Glass  & H J Kronzucker
Institution:Department of Forest Sciences and,;Department of Botany, University of British Columbia, 6270, University Boulevard, Vancouver, B.C., Canada V6T 1Z4
Abstract:13NO3 and 13NH4+ compartmental analyses were carried out in seedling roots of trembling aspen (Populus tremuloides Michx.), lodgepole pine (Pinus contorta Dougl. ex Loud. var. latifolia Engelm.) and interior Douglas-fir (Pseudotsuga menziesii var. glauca Beissn.] Franco) at 0·1 and 1·5 mol m–3 external NO3 or NH4+ concentrations (NO3]o or NH4+]o, respectively). At the lower NO3]o, the capacities and efficiencies of acquisition and accumulation of NO3, based upon NO3 fluxes and cytoplasmic NO3 concentrations (NO3]c), were in the order aspen >> Douglas-fir > pine. At 1·5 mol m–3NO3]o, the NO3 influx increased 18-fold in pine, four-fold in Douglas-fir and approximately 1·4-fold in aspen; in fact, at 1·5 mol m–3NO3]o, the NO3 influx in pine was higher than in aspen. However, at high NO3]o, efflux also increased in the two conifers to a much greater extent than in aspen. In aspen, at both NO3]o, approximately 30% of the 13N absorbed was translocated to the shoot during 57 min of 13N loading and elution, compared with less than 10% in the conifers. At 0·1 mol m–3NH4+]o, influx and net flux were in the order: aspen > pine > Douglas-fir but the differences were much less than in NO3 fluxes. At 1·5 mol m–3NH4+]o, NH4+ influx, efflux and NH4+]c greatly increased in aspen and Douglas-fir and, to a much lesser extent, in pine. In aspen, 29 and 12% of the 13N absorbed was translocated to the shoot at 0·1 and 1·5 mol m–3NH4+]o, respectively, compared with 5 to 7% in the conifers at either NH4+]o. These patterns of nitrogen (N) uptake, particularly in the case of NO3, and the observed concentration responses of NO3 uptake, reflect the availability of N in the ecological niches, to which these species are adapted.
Keywords:ammonium fluxes  compartmental analysis  cytoplasmic ammonium  cytoplasmic nitrate  Douglas-fir  lodgepole pine  nitrate fluxes  nitrogen nutrition  trembling aspen
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