Abstract
The validity of a chemiosmotic hypothesis for uptake of weak acids as an explanation for the accumulation of auxin by cells has been explored further by comparing the uptake of indole-3-acetic acid (IAA) by 1-mm segments of corn (Zea mays L.) coleoptiles with that of benzoic acid and two neutral indoles, indoleethanol and indoleacetonitrile, which do not ionize. These substances, while structurally related to IAA lack both auxin activity and polar transport. Uptake of IAA and benzoic acid increase with decreasing external pH, whereas the uptake of the two neutral indoles is independent of external pH.Although metabolism of IAA, during 90 min or less, is minimal and without significant effect on its uptake, metabolism of benzoic acid appears responsible for the apparent saturation of benzoic acid uptake at high concentrations. An inhibitor of auxin transport, N-1-naphthylphathalamic acid (NPA), stimulates uptake of IAA but has no effect on uptake of either benzoic acid or the two neutral indoles. Thus, NPA does not affect the driving forces for accumulation of weak acids but probably specifically decreases the flux of the auxin anions relative to undissociated auxin. Since the electrochemical potential of auxin anions is usually higher in than outside cells, blocking the anion flux with NPA would enhance auxin uptake. Azide, which abolishes accumulation of both IAA and benzoic acid, may simply collapse the pH gradient across the plasma membrane.In the absence of NPA, increasing concentrations of auxins or the analogoue β-naphthaleneacetic acid (β-NAA) exert two opposing effects on the uptake of IAA-depression and stimulation. Stimulation results from saturating the anion flux. With uptake fully stimulated by NPA, however, increasing concentrations of auxins or analogues only depress uptake of [(3)H]IAA. These results are consistent with more than one path for auxin transport each with a different dependence on concentration. In depressing NPA-stimulated IAA uptake, the effectiveness of β-NAA≧IAA≫α-NAA≫ benzoic acid, a specificity similar to that of an auxin binding site in vitro that has been implicated by others in auxin transport. The results support the general hypothesis that cellular auxin uptake and polar transport through tissues are chemiosmotically coupled to the electrochemical potential of auxin and protons.
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Sussman M R
Department of Biology, Kline Biology Tower, Yale University, 06520, New Haven, CT, USA.
Goldsmith M H
References (26)
26 references, click to expand
-
Specificity of Auxin-binding Sites on Maize Coleoptile Membranes as Possible Receptor Sites for Auxin Action.
Plant Physiol. 1977 Oct;60(4):585-91
PMID: 16660143
-
The electrochemical proton gradient in Escherichia coli membrane vesicles.
Biochemistry. 1977 Mar 8;16(5):848-54
PMID: 14664
-
Polar auxin transport and auxin-induced elongation in the absence of cytoplasmic streaming.
Planta. 1973 Dec;111(4):279-96
PMID: 24469695
-
Carrier-mediated auxin transport.
Planta. 1974 Jun;118(2):101-21
PMID: 24442257
-
Uptake of Indole-3-acetic Acid and Indole-3-acetonitrile by Avena Coleoptile Sections.
Plant Physiol. 1964 Jan;39(1):98-103
PMID: 16655887
-
NMR studies of pH-induced transport of carboxylic acids across phospholipid vesicle membranes.
Biochem Biophys Res Commun. 1977 Mar 21;75(2):295-301
PMID: 15562
-
Sites of auxin action: regulation of geotropism, growth, and ethylene production by inhibitors of auxin transport.
Plant Physiol. 1975 Sep;56(3):404-9
PMID: 16659313
-
The specificity of the auxin transport system.
Planta. 1969 Sep;85(3):238-49
PMID: 24515633
-
Catecholamine uptake and concentration by liposomes maintaining p/ gradients.
Biochim Biophys Acta. 1976 Nov 11;455(1):269-71
PMID: 11002
-
Effect of auxins on the auxin transport system in coleoptiles.
Planta. 1969 Mar;87(1-2):49-53
PMID: 24504714
-
Components of auxin transport in stem segments of Pisum sativum L.
Planta. 1978 Jan;142(2):211-9
PMID: 24408105
-
The driving force for proton(s) metabolites cotransport in bacterial cells.
FEBS Lett. 1976 Jul 15;66(2):159-63
PMID: 8335
-
1-N-naphthylphthalamic acid and 2,3,5-triiodobenzoic acid : In-vitro binding to particulate cell fractions and action on auxin transport in corn coleoptiles.
Planta. 1973 Dec;109(4):337-52
PMID: 24474210
-
Auxin binding to subcellular fractions from Cucurbita hypocotyls: In vitro evidence for an auxin transport carrier.
Planta. 1978 Jan;142(1):1-10
PMID: 24407991
-
The specificity of carrier-mediated auxin transport by suspension-cultured crown gall cells.
Planta. 1977 Jan;135(3):275-83
PMID: 24420094
-
Evidence for amino Acid-h co-transport in oat coleoptiles.
Plant Physiol. 1978 Jun;61(6):933-7
PMID: 16660429
-
The action of specific inhibitors of auxin transport on uptake of auxin and binding of N-1-naphthylphthalamic acid to a membrane site in maize coleoptiles.
Planta. 1981 May;152(1):13-8
PMID: 24302312
-
pH-Dependent accumulation of indoleacetic acid by corn coleoptile sections.
Planta. 1980 Feb;147(5):457-66
PMID: 24311169
-
Permeability of lipid bilayer membranes to organic solutes.
J Gen Physiol. 1968 Sep;52(3):495-508
PMID: 5673304
-
Hydrogen ion dependence of carrier-mediated auxin uptake by suspension-cultured crown gall cells.
Planta. 1978 Jan;142(2):203-6
PMID: 24408103
-
Effect of pH and surface charge on cell uptake of auxin.
Nat New Biol. 1973 Aug 29;244(139):285-8
PMID: 4517011
-
The effects of 2,4-dinitrophenol and chemical modifying reagents on auxin transport by suspension-cultured crown gall cells.
Planta. 1979 Jan;144(2):173-8
PMID: 24408690
-
Measurement of the Cytoplasmic pH in Nitella translucens: Comparison of Values Obtained by Microelectrode and Weak Acid Methods.
Plant Physiol. 1977 Apr;59(4):664-6
PMID: 16659914
-
The timing of growth promotion and conversion to indole-3-acetic acid for auxin precursors.
Plant Physiol. 1970 Mar;45(3):240-3
PMID: 5423464
-
The relationship between the electrochemical proton gradient and active transport in Escherichia coli membrane vesicles.
Biochemistry. 1977 Mar 8;16(5):854-9
PMID: 14665
-
Auxin transport inhibitors: fluorescein and related compounds.
Plant Physiol. 1975 Nov;56(5):645-6
PMID: 16659362