Home LiteratureArticle Details
PMID: 11538122 Published · ppublish English Journal Article Research Support, U.S. Gov't, Non-P.H.S. Research Support, U.S. Gov't, P.H.S.

The role of extracellular free-calcium gradients in gravitropic signalling in maize roots.

Planta ·Vol. 185 ·1991-00-00 ·Pages 379-84

Björkman T, Cleland RE

Abstract

Gravitropism in roots has been proposed to depend on a downward redistribution of calcium across the root cap. However, because of the many calcium-binding sites in the apoplast, redistribution might not result in a physiologically effective change in the apoplasmic calcium activity. To test whether there is such a change, we measured the effect of gravistimulation on the calcium activity of statocyte cell walls with calcium-specific microelectrodes. Such a measurement must be made on a tissue with gravity sensing cells at the surface. To obtain such a tissue, decapped maize roots (Zea mays L. cv. Golden Cross Bantam) were grown for 31 h to regenerate gravitropic sensitivity, but not root caps. The calcium activity in the apoplasm surrounding the gravity-sensing cells could then be measured. The initial pCa was 2.60 +/- 0.28 (approx 2.5 mM). The calcium activity on the upper side of the root tip remained constant for 10 min after gravistimulation, then decreased 1.7-fold. On the lower side, after a similar lag the calcium activity increased 1.6-fold. Control roots, which were decapped but measured before recovering gravisensitivity (19 h), showed no change in calcium activity. To test whether this gradient is necessary for gravitropic curvature, we eliminated the calcium activity gradient during gravitropism by applying a mobile calcium-binding site (dinitro-BAPTA; 1,2-bis(2-amino-5-nitro-phenoxy)ethane-N,N,N',N'-tetraacetic acid) to the root cap; this treatment eliminated gravicurvature. A calcium gradient may be formed by proton-induced calcium desorption if there is a proton gradient. Preventing the formation of apoplastic pH gradients, using 10 and 50 mM 2-(N-morpholino)ethanesulfonic acid (Mes) buffer or 10 mM fusicoccin to stimulate proton excretion maximally, did not inhibit curvature; therefore the calcium gradient is not a secondary effect of a proton gradient. We have found a distinct and rapid differential in the apoplasmic calcium activity between the upper and lower sides of gravistimulated maize root tips which is necessary for gravitropism.

Keywords
NASA Discipline Number 40-50 NASA Discipline Number 40-99 NASA Discipline Plant Biology NASA Program Space Biology NASA Program Space Biology Research Associates Non-NASA Center
MeSH Terms
Biological Transport Calcium/metabolism,physiology Cell Wall/physiology Egtazic Acid/analogs & derivatives Electrophysiology Gravitation Gravitropism/physiology Hydrogen-Ion Concentration Plant Root Cap/cytology,metabolism,physiology Plant Roots/cytology,metabolism,physiology Time Factors Zea mays/cytology,metabolism,physiology
Chemicals
Egtazic Acid 1,2-bis(2-aminophenoxy)ethane-N,N,N',N'-tetraacetic acid Calcium
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Björkman T
Department of Botany, University of Washington, Seattle 98195, USA.
Cleland R E
Investigators
2 investigators, click to expand
Björkman T
U WA, Seattle, Dept Botany
Cleland R E
U WA, Seattle, Dept Botany
Article Info
Journal
Planta
Abbr.
Planta
ISSN
0032-0935
Published
1991-00-00
Pages
379-84
Language
English
Region
Germany
NLM ID
1250576
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