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Translocation Profiles of [11C] and [13N]-Labelled Metabolites after Assimilation of 11CO2 and [13N]-Labelled Ammonia Gas by Leaves of Helianthus annuus L. and Lupinus albus L.
Authors:GRODZINSKI  BERNARD; JAHNKE  SIEGFRIED; THOMPSON  ROBERT
Abstract:Tracer amounts of atmospheric 13N]-Iabelled ammonia gas, wereabsorbed by leaves of Lupinus albus and Helianthus annuus inboth the light and the dark. Exogenous 13N]-ammonia was onlyabsorbed in the dark when the feeding occurred shortly aftera period of illumination and the tissue was not depleted ofits carbohydrate reserves (e.g. starch). Incorporation of the13N]-ammonia appeared to occur via the leaf glutamine synthetase/glutamatesynthase (GS/GOGAT) cycle since 2.0 mol m–3 MSX, an inhibitorof the GS reduced uptake in both the light and dark. Photosyntheticincorporation of 11CO2 was not affected by this treatment Therate of movement of 13N]-assimilates in the petiole of attachedleaves of Helianthus and Lupinus was similar to that of the11Cl-photo assimilates. Export of both 13N] and 11C]-Iabelledassimilates from the leaf and movement in the petiole in boththe light and the dark was inhibited by source leaf anoxia (i.e.nitrogen gas). Translocation was re-established at the samerate when the feed leaf was exposed to gas containing more than2% O2 which permitted dark respiration to proceed. After aninitial feeding of either 11CO2 or 13N]-ammonia at ambient(21%) O2 exposure of the source leaf to 2% O2, or 50% O2 didnot alter the rates of translocation, indicating that changesin photosynthetic activity in the source leaf due to photorespiratoryactivity need not markedly alter, at least during the shortperiod, the loading and translocation of either 11C ] or 13N]-labelledleaf products. Key words: Translocation, CO2, NH3, Leaves, Helianthus annuus, Lupinus albus
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