Abstract
Segments of mesocotyls of Avena sativa L. transported [1-14C]indol-3yl-acetic acid (IAA) with strictly basipetal polarity. Treatment of the segments with solutions of sorbitol caused a striking increase in basipetal auxin transport, which was greatest at concentrations around 0.5 M. Similar effects were observed with mannitol or quebrachitol as osmotica, but with glucose or sucrose the increases were smaller. Polar transport was still detectable in segments treated with 1.2 M sorbitol. The effects of osmotic stress on the polar transport of auxin were reversible, but treatment with sorbital solutions more concentrated than 0.5 M reduced the subsequent ability of mesocotyl segments to grow in response to IAA. The increased transport of auxin in the osmotically stressed segments could not be explained in terms of an increased uptake from donor blocks. The velocity of transport declined with higher concentrations of osmoticum. The reasons for the enhancement of auxin transport by osmotic stress are not known.
Similar content being viewed by others
References
Cande, W. Z., Ray, P. M.: Nature of cell-to-cell transfer of auxin in polar transport. Planta 129, 43–52 (1976)
Cleland, R. E.: Auxin-induced hydrogen ion excretion: correlation with growth, and control by external pH and water stress. Planta 127, 233–242 (1975)
Goldsmith, M. H. M.: The polar transport of auxin. Ann. Rev. Plant Physiol. 28, 439–478 (1977)
McCready, C. C., Jacobs, W. P.: Movement of growth regulators in plants. V. A. further note on the relationship between polar transport and growth. New Phytol. 66, 485–488 (1967)
Rubery, P., Sheldrake, A. R.: Effect of pH and surface charge on cell uptake of auxin. Nature New Biol. 244, 285–288 (1973)
Rubery, P., Sheldrake, A. R.: Carrier-mediated auxin transport. Planta 118, 101–121 (1974)
Sheldrake, A. R.: The occurrence and significance of auxin in the substrata of bryophytes. New Phytol. 70, 519–526 (1972)
Sheldrake, A. R.: Auxin transport in secondary tissues. J. Exp. Bot. 24, 87–96 (1973)
van der Weij, H. G.: Der Mechanismus des Wuchsstofftransportes. Rec. Trav. Bot. Néerl. 29, 379–496 (1932)
Walter, H., Kreeb, K.: Die Hydratation und Hydratur des Protoplasmas der Pflanzen und ihre öko-physiologische Bedeutung. Protoplasmatologia 11 C 6, 59–67 (1970)
Author information
Authors and Affiliations
Rights and permissions
About this article
Cite this article
Sheldrake, A.R. Effects of osmotic stress on polar auxin transport in Avena mesocotyl sections. Planta 145, 113–117 (1979). https://doi.org/10.1007/BF00388706
Received:
Accepted:
Issue date:
DOI: https://doi.org/10.1007/BF00388706