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Effects of Cl- on and Malate Fluxes and CO2 Fixation in Carrot and Barley Root Cells
Authors:CRAM  W J
Abstract:Cl and ions interact apparently competitively during influx across the plasmalemma of carrot root cells. Cl,however, reduces influx much less than predicted from the effect of on Cl influx.Cl and plasmalemma influxes both increase with time after excision of carrot tissue. Cland may therefore be transported by a common mechanism. The effect of pH changes on the influx of malate across theplasmalemma in barley roots shows that malate crosses the plasmalemmaas the singly charged anion. Stimulations of influx by bothK2SO4 and KCl suggest that the malate anion crosses in associationwith. K+. If malate entry is passive, Pmal- is about 2?10–8cm s–1, but it is thought that malate entry is partlyan active process. A slight, apparently competitive inhibition by Cl ofmalate flux into the vacuole of barley root cells suggests thatthe two anions may be transported by a common process at thetonoplast, but this is not thought to be physiologically significant. The accumulation of 14C from 1 mM is drastically reduced by 10 mM Cl. A quantitative analysis of the kineticsof 14C exchange shows that Cl directly inhibits the formationof malate from . The decreased influx of endogenously produced malate to the vacuole in the presenceof Cl is probably a secondary consequence of the fallin the cytoplasmic concentration. The nature of the Clinhibition of malate formation is discussed. In KCl-loaded tissue the influx of external malate and the accumulationof 14C from external are reduced. The location of these effects is not certain, but the effects suggest thatregulation of malate synthesis and accumulation may be relatedto the negative-feedback regulation of Cl and transport.
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