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The mechanism of zinc uptake in excised roots and leaf discs of Phaseolus vulgaris L. Die meganisme van sinkopname in blaarskyfies en wortelpunte van Phaseolus vulgaris L

Abstract

The mechanism and nature of zinc uptake was studied with the aid of {sup 65}Zn. Uptake of zinc was also compared to that of potassium and phosphate, which are known to be ATP-dependent. Zinc uptake was characterized by a rapid initial uptake, followed by a slower linear phase. Decreasing the temperature from 25 to 2 deg C resulted in a decrease of only 30% in the rate of zinc uptake. Uptake of zinc was insensitive to DNP - possibly indicating the non-metabolic nature of the uptake process. A possible role for zinc in protein synthesis could not be demonstrated as CHI did not inhibit zinc uptake. Cyanide reduced zinc uptake to almost zero, possibly due to complexation of zinc by cyanide. Light had no effect on the accumulation of Zn, whereas dark incubation reduced potassium uptake substantially. The relative high rate of zinc uptake and the passive nature of the uptake process might be due to the high binding capacity of the free space for zinc ions. Transport of the zinc in the xylem and phloem of intact bean plants, as well as the metabolic dependence of the latter, was also investigated. The bulk of the zinc absorbed by bean  More>>
Authors:
Publication Date:
Mar 01, 1991
Product Type:
Miscellaneous
Reference Number:
AIX-23-014429; EDB-92-024317
Resource Relation:
Other Information: Thesis (M.Sc.)
Subject:
63 RADIATION, THERMAL, AND OTHER ENVIRON. POLLUTANT EFFECTS ON LIVING ORGS. AND BIOL. MAT.; ZINC; UPTAKE; ADSORPTION; ATP; CYANIDES; CYCLOHEXIMIDE; DESORPTION; DINITROPHENOL; DTPA; EDTA; INHIBITION; LEAVES; PHASEOLUS; PHOSPHATES; PLANT STEMS; POTASSIUM; PROTEINS; ROOTS; SACCHARIDES; SODIUM; SYNTHESIS; TEMPERATURE DEPENDENCE; ZINC 65; ZINC IONS; ALKALI METALS; AMINO ACIDS; ANTI-INFECTIVE AGENTS; ANTIBIOTICS; AROMATICS; BETA DECAY RADIOISOTOPES; BETA-PLUS DECAY RADIOISOTOPES; CARBOHYDRATES; CARBOXYLIC ACIDS; CHARGED PARTICLES; CHELATING AGENTS; DAYS LIVING RADIOISOTOPES; DRUGS; ELECTRON CAPTURE RADIOISOTOPES; ELEMENTS; EVEN-ODD NUCLEI; FUNGICIDES; HYDROXY COMPOUNDS; INTERMEDIATE MASS NUCLEI; IONS; ISOTOPES; LEGUMINOSAE; MAGNOLIOPHYTA; MAGNOLIOPSIDA; METALS; NITRO COMPOUNDS; NUCLEI; NUCLEOTIDES; ORGANIC ACIDS; ORGANIC COMPOUNDS; ORGANIC NITROGEN COMPOUNDS; OXYGEN COMPOUNDS; PESTICIDES; PHENOLS; PHOSPHORUS COMPOUNDS; PLANTS; RADIOISOTOPES; RADIOPROTECTIVE SUBSTANCES; SORPTION; ZINC ISOTOPES; 560162* - Radionuclide Effects, Kinetics, & Toxicology- Animals, Plants, Microorganisms, & Cells
OSTI ID:
6059146
Research Organizations:
Stellenbosch Univ. (South Africa)
Country of Origin:
South Africa
Language:
Afrikaans
Availability:
Available from the Registrar, University of Stellenbosch, STELLENBOSCH, 7600, South Africa
Submitting Site:
INIS
Size:
Pages: (158 p)
Announcement Date:
May 13, 2001

Citation Formats

Van As, J A. The mechanism of zinc uptake in excised roots and leaf discs of Phaseolus vulgaris L. Die meganisme van sinkopname in blaarskyfies en wortelpunte van Phaseolus vulgaris L. South Africa: N. p., 1991. Web.
Van As, J A. The mechanism of zinc uptake in excised roots and leaf discs of Phaseolus vulgaris L. Die meganisme van sinkopname in blaarskyfies en wortelpunte van Phaseolus vulgaris L. South Africa.
Van As, J A. 1991. "The mechanism of zinc uptake in excised roots and leaf discs of Phaseolus vulgaris L. Die meganisme van sinkopname in blaarskyfies en wortelpunte van Phaseolus vulgaris L." South Africa.
@misc{etde_6059146,
title = {The mechanism of zinc uptake in excised roots and leaf discs of Phaseolus vulgaris L. Die meganisme van sinkopname in blaarskyfies en wortelpunte van Phaseolus vulgaris L}
author = {Van As, J A}
abstractNote = {The mechanism and nature of zinc uptake was studied with the aid of {sup 65}Zn. Uptake of zinc was also compared to that of potassium and phosphate, which are known to be ATP-dependent. Zinc uptake was characterized by a rapid initial uptake, followed by a slower linear phase. Decreasing the temperature from 25 to 2 deg C resulted in a decrease of only 30% in the rate of zinc uptake. Uptake of zinc was insensitive to DNP - possibly indicating the non-metabolic nature of the uptake process. A possible role for zinc in protein synthesis could not be demonstrated as CHI did not inhibit zinc uptake. Cyanide reduced zinc uptake to almost zero, possibly due to complexation of zinc by cyanide. Light had no effect on the accumulation of Zn, whereas dark incubation reduced potassium uptake substantially. The relative high rate of zinc uptake and the passive nature of the uptake process might be due to the high binding capacity of the free space for zinc ions. Transport of the zinc in the xylem and phloem of intact bean plants, as well as the metabolic dependence of the latter, was also investigated. The bulk of the zinc absorbed by bean plants remained in the roots and stems with only a very small fraction being translocated to shoots. Adsorption was the major uptake mechanism in roots and stems. In contrast to transport in the xylem, zinc was readily transported in the phloem. Loading and unloading of zinc in the phloem was not influenced by low temperature or DNP. Opposed to this, loading of potassium and phosphate was inhibited by DNP, while unloading was inhibited by low temperature. It can therefore be concluded that the uptake and transport of zinc is probably a passive process. 33 figs., 282 refs.}
place = {South Africa}
year = {1991}
month = {Mar}
}