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Different ratios of sucrose/raffinose-induced membrane depolarizations in the mesophyll of species with symplasmic (Catharanthus roseus, Ocimum basilicum) or apoplasmic (Impatiens walleriana, Vicia faba) minor-vein configurations
Authors:Aart J E van Bel  Janneke H M Hendriks  Eline J M C Boon  Yuri V Gamalei  Arjan Ph van de Merwe
Institution:(1) Department of Plant Ecology and Evolutionary Biology, Transport Physiology Research Group, Sorbonnelaan 16, NL-3584 CA Utrecht, The Netherlands;(2) Department of Ecophysiology, Komarov Botanical Institute, 2 Professor Popov Street, 197376 St. Petersburg, Russia;(3) Present address: Botanisches Institut 1, Justus-Liebig-Universität, Senckenbergstrasse 17, D-35390 Giessen, Germany
Abstract:In mesophyll cells of species with a symplasmic (Ocimum basilicum, Catharanthus roseus, Magnolia denudata) or an apoplasmic (Vicia faba, Impatiens walleriana, Bellis perennis) minor-vein configuration, membrane depolarizations in response to 20 or 200 mol·m–3 raffinose and sucrose were measured. Ageing period and resting potential marginally affected the degree of depolarization. The symplasmic species showed similar depolarization responses to 20 and 200 mol·m–3 sucrose or raffinose. In the apoplasmic species, depolarization increased statistically significantly from 20 to 200 mol·m–3 sucrose, whereas the depolarization response to raffinose was equal at both concentrations. In the apoplasmic species, moreover, the depolarization response to raffinose was significantly weaker than to sucrose at all concentrations. A major difference between symplasmic and apoplasmic species seems to lie in the scantiness of raffinose carriers in the mesophyll plasma membrane of species with the apoplasmic mode of phloem loading.Abbreviations 20R(200R) 20(200) mol·m–3 raffinose - 20S(200S) 20(200) mol·m–3 sucrose
Keywords:Galactosyl oligosaccharides  Membrane depolarization  Phloem loading (apoplasmic  symplasmic)  Raffinose uptake  Sucrose uptake
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