Abstract
We examined the influence of aluminum and calcium (and certain other cations) on hormone transport in corn roots. When aluminum was applied unilaterally to the caps of 15 mm apical root sections the roots curved strongly away from the aluminum. When aluminum was applied unilaterally to the cap and 3H-indole-3-acetic acid was applied to the basal cut surface twice as much radioactivity (assumed to be IAA) accumulated on the concave side of the curved root as on the convex side. Auxin transport in the apical region of intact roots was preferentially basipetal, with a polarity (basipetal transport divided by acropetal transport) of 6.3. In decapped 5 mm apical root segments, auxin transport was acropetally polar (polarity = 0.63). Application of aluminum to the root cap strongly promoted acropetal transport of auxin reducing polarity from 6.3 to 2.1. Application of calcium to the root cap enhanced basipetal movement of auxin, increasing polarity from 6.3 to 7.6. Application of the calcium chelator, ethylene-glycol-bis-(beta-aminoethylether)-N,N,N',N'-tetraacetic acid, greatly decreased basipetal auxin movement, reducing polarity from 6.3 to 3.7. Transport of label after application of tritiated abscisic acid showed no polarity and was not affected by calcium or aluminum. The results indicate that the root cap is particularly important in maintaining basipetal polarity of auxin transport in primary roots of corn. The induction of root curvature by unilateral application of aluminum or calcium to root caps is likely to result from localized effects of these ions on auxin transport. The findings are discussed relative to the possible role of calcium redistribution in the gravitropic curvature of roots and the possibility of calmodulin involvement in the action of calcium and aluminum on auxin transport.
Keywords
NASA Discipline Number 40-10
NASA Discipline Plant Biology
NASA Program Space Biology
Non-NASA Center
MeSH Terms
Abscisic Acid/physiology
Aluminum/pharmacology
Biological Transport
Calcium/physiology
Cations
Chelating Agents/pharmacology
Egtazic Acid/pharmacology
Gravitropism/physiology
Indoleacetic Acids/metabolism
Plant Growth Regulators/metabolism
Plant Root Cap/drug effects,metabolism
Plant Roots/drug effects,metabolism
Zea mays/drug effects,metabolism
Chemicals
Cations
Chelating Agents
Indoleacetic Acids
Plant Growth Regulators
Egtazic Acid
indoleacetic acid
Abscisic Acid
Aluminum
Calcium
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Hasenstein K H
Botany Department, Ohio State University, Columbus 43210, USA.
Evans M L
Investigators
1 investigators, click to expand
Evans M L
OH St U, Columbus, Dept Botany
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14 references, click to expand
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