Abstract
Previous work showed that primary root elongation in maize (Zea mays L.) seedlings at low water potentials (psi(w)) requires the accumulation of abscisic acid (ABA) (R.E. Sharp, Y. Wu, G.S. Voetberg, I.N. Saab, M.E. LeNoble [1994] J Exp Bot 45: 1743-1751). The objective of the present study was to determine whether the inhibition of elongation in ABA-deficient roots is attributable to ethylene. At a psi(w) of -1.6 MPa, inhibition of root elongation in dark-grown seedlings treated with fluridone to impose ABA deficiency was largely prevented with two inhibitors of ethylene synthesis (aminooxyacetic acid and aminoethoxyvinylglycine) and one inhibitor of ethylene action (silver thiosulfate). The fluridone treatment caused an increase in the rate of ethylene evolution from intact seedlings. This effect was completely prevented with aminooxyacetic acid and also when ABA was supplied at a concentration that restored the ABA content of the root elongation zone and the root elongation rate. Consistent results were obtained when ABA deficiency was imposed using the vp5 mutant. Both fluridone-treated and vp5 roots exhibited additional morphological symptoms of excess ethylene. The results demonstrate that an important role of ABA accumulation in the maintenance of root elongation at low psi(w) is to restrict ethylene production.
MeSH Terms
Abscisic Acid/metabolism
Ethylenes/biosynthesis
Mutation
Plant Roots/drug effects,growth & development,metabolism
Pyridones/pharmacology
Water/metabolism
Zea mays/genetics,growth & development,metabolism
Chemicals
Ethylenes
Pyridones
Water
fluridone
Abscisic Acid
ethylene
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Spollen W G
Department of Agronomy, Plant Science Unit, 1-87 Agriculture Building, University of Missouri, Columbia, Missouri 65211, USA.
LeNoble M E
Samuels T D
Bernstein N
Sharp R E
References (21)
21 references, click to expand
-
Endogenous ABA maintains shoot growth in tomato independently of effects on plant water balance: evidence for an interaction with ethylene.
J Exp Bot. 2000 Sep;51(350):1575-84
PMID: 11006308
-
The effect of ethylene on root growth of Zea mays seedlings.
Can J Bot. 1988 Apr;66(4):719-23
PMID: 11537849
-
Regulation of Growth Anisotropy in Well-Watered and Water-Stressed Maize Roots (I. Spatial Distribution of Longitudinal, Radial, and Tangential Expansion Rates).
Plant Physiol. 1997 Sep;115(1):101-111
PMID: 12223794
-
Proline Accumulation in Maize (Zea mays L.) Primary Roots at Low Water Potentials (I. Requirement for Increased Levels of Abscisic Acid).
Plant Physiol. 1994 Jul;105(3):981-987
PMID: 12232259
-
Root Growth Maintenance at Low Water Potentials (Increased Activity of Xyloglucan Endotransglycosylase and Its Possible Regulation by Abscisic Acid).
Plant Physiol. 1994 Oct;106(2):607-615
PMID: 12232354
-
Abnormal stomatal behavior in wilty mutants of tomato.
Plant Physiol. 1966 Oct;41(8):1387-91
PMID: 16656409
-
Mediation of a plant response to malformin by ethylene.
Plant Physiol. 1968 Jan;43(1):76-80
PMID: 16656740
-
Effect of abscisic Acid and its interactions with other plant hormones on ethylene production in two plant systems.
Plant Physiol. 1972 Jul;50(1):194-5
PMID: 16658123
-
Abnormal Stomatal Behavior and Hormonal Imbalance in flacca, a Wilty Mutant of Tomato: V. Effect of Abscisic Acid on Indoleacetic Acid Metabolism and Ethylene Evolution.
Plant Physiol. 1979 Jun;63(6):1044-8
PMID: 16660854
-
Water Relations and Growth of the flacca Tomato Mutant in Relation to Abscisic Acid.
Plant Physiol. 1983 May;72(1):251-5
PMID: 16662970
-
Growth of the maize primary root at low water potentials : I. Spatial distribution of expansive growth.
Plant Physiol. 1988 May;87(1):50-7
PMID: 16666126
-
Characterization of abscisic Acid-induced ethylene production in citrus leaf and tomato fruit tissues.
Plant Physiol. 1990 Jan;92(1):48-53
PMID: 16667264
-
Increased endogenous abscisic Acid maintains primary root growth and inhibits shoot growth of maize seedlings at low water potentials.
Plant Physiol. 1990 Aug;93(4):1329-36
PMID: 16667621
-
Does water deficit stress promote ethylene synthesis by intact plants?
Plant Physiol. 1990 Dec;94(4):1616-24
PMID: 16667895
-
Water-stress-induced ethylene production in wheat : a fact or artifact?
Plant Physiol. 1991 Jun;96(2):406-10
PMID: 16668200
-
Effect of inhibition of abscisic Acid accumulation on the spatial distribution of elongation in the primary root and mesocotyl of maize at low water potentials.
Plant Physiol. 1992 May;99(1):26-33
PMID: 16668859
-
A monoclonal antibody to (S)-abscisic acid: its characterisation and use in a radioimmunoassay for measuring abscisic acid in crude extracts of cereal and lupin leaves.
Planta. 1988 Mar;173(3):330-9
PMID: 24226540
-
The isolation of abscisic acid (ABA) deficient mutants by selection of induced revertants in non-germinating gibberellin sensitive lines of Arabidopsis thaliana (L.) heynh.
Theor Appl Genet. 1982 Dec;61(4):385-93
PMID: 24270501
-
The effect of plant growth regulator treatments on the levels of ethylene emanating from excised turgid and wilted wheat leaves.
Planta. 1980 Apr;148(4):381-8
PMID: 24310142
-
Isopiestic Technique for Measuring Leaf Water Potentials with a Thermocouple Psychrometer
Proc Natl Acad Sci U S A. 1965 Oct;54(4):1044-51
PMID: 5219815
-
Regulation of growth anisotropy in well-watered and water-stressed maize roots. II. Role Of cortical microtubules and cellulose microfibrils
Plant Physiol. 1999 Feb;119(2):681-92
PMID: 9952465