Abstract
Lateral exchange of water and nutrients between xylem and surrounding tissues helps to de-couple uptake from utilization in all parts of a plant. We studied the dynamics of these exchanges, using stable isotope tracers for water (H 218O), magnesium ( 26Mg), potassium ( 41K) and calcium ( 44Ca) delivered via a cut stem for various periods to the transpiration stream of bean shoots (Phaseolus vulgaris cv. Fardenlosa Shiny). Tracers were subsequently mapped in stem cross-sections with cryo-secondary ion mass spectrometry. The water tracer equilibrated within minutes across the entire cross-section. In contrast, the nutrient tracers showed a very heterogeneous exchange between xylem vessels and the different stem tissues, even after 4 h. Dynamics of nutrients in the tissues revealed a fast and extensive exchange of nutrients in the xylem parenchyma, with, for example, calcium being completely replaced by tracer in less than 5 min. Dilution of potassium tracer during its 30 s transit in xylem sap through the stem showed that potassium concentration was up-regulated overmany hours, to the extent that some of it was probably supplied by phloem recirculation from the shoot. © 2010 Blackwell Publishing Ltd.
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Metzner, R., Thorpe, M. R., Breuer, U., Blümler, P., Schurr, U., Schneider, H. U., & Schroeder, W. H. (2010). Contrasting dynamics of water and mineral nutrients in stems shown by stable isotope tracers and cryo-SIMS. Plant, Cell and Environment, 33(8), 1393–1407. https://doi.org/10.1111/j.1365-3040.2010.02157.x
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