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Evidence for the mechanisms of zinc uptake by rice using isotope fractionation
Authors:TIM ARNOLD  GUY J. D. KIRK  MATTHIAS WISSUWA  MICHAEL FREI  FANG‐JIE ZHAO  THOMAS F. D. MASON  DOMINIK J. WEISS
Affiliation:1. Department of Earth Science and Engineering, Imperial College London, London SW7 2AZ, UK;2. Current address: Scripps Institution of Oceanography, University of California, San Diego, La Jolla, California 92093, USA.;3. National Soil Resources Institute, Cranfield University, Cranfield MK43 0AL, UK;4. Crop Production and Environment Division, Japan International Research Center for Agricultural Sciences (JIRCAS), 1‐1 Ohwashi, Tsukuba, Ibaraki 305‐8686, Japan;5. Rothamsted Research, Harpenden, Herts AL5 2JQ, UK and;6. Mineralogy, The Natural History Museum, London, SW7 5PD, UK
Abstract:In an earlier study, we found that rice (Oryza sativa) grown in nutrient solution well‐supplied with Zn preferentially took up light 64Zn over 66Zn, probably as a result of kinetic fractionation in membrane transport processes. Here, we measure isotope fractionation by rice in a submerged Zn‐deficient soil with and without Zn fertilizer. We grew the same genotype as in the nutrient solution study plus low‐Zn tolerant and intolerant lines from a recombinant inbred population. In contrast to the nutrient solution, in soil with Zn fertilizer we found little or heavy isotopic enrichment in the plants relative to plant‐available Zn in the soil, and in soil without Zn fertilizer we found consistently heavy enrichment, particularly in the low‐Zn tolerant line. These observations are only explicable by complexation of Zn by a complexing agent released from the roots and uptake of the complexed Zn by specific root transporters. We show with a mathematical model that, for realistic rates of secretion of the phytosiderophore deoxymugineic acid (DMA) by rice, and realistic parameters for the Zn‐solubilizing effect of DMA in soil, solubilization and uptake by this mechanism is necessary and sufficient to account for the measured Zn uptake and the differences between genotypes.
Keywords:DMA  isotope fractionation  phytosiderophore  rice  solubilization  stable isotopes  zinc
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