Stress memory in plants: a negative regulation of stomatal response and transient induction of rd22 gene to light in abscisic acid‐entrained Arabidopsis plants
- 15 September 2003
- journal article
- Published by Wiley in The Plant Journal
- Vol. 36 (2) , 240-255
- https://doi.org/10.1046/j.1365-313x.2003.01872.x
Abstract
Summary: All organisms, including plants, perceive environmental stress, and they use this information to modify their behavior or development. Here, we demonstrate that Arabidopsis plants have memory functions related to repeated exposure to stressful concentrations of the phytohormone abscisic acid (ABA), which acts as a chemical signal. Repeated exposure of plants to ABA (40 µm for 2 h) impaired light‐induced stomatal opening or inhibited the response to a light stimulus after ABA‐entrainment under both dark/light cycle and continuous light. Moreover, there were transient expressions of the rd22 gene during the same periods under both the growing conditions. Such acquired information in ABA‐entrained plants produced a long‐term sensitization. When the time of light application was changed, a transient induction of the rd22 gene in plants after ABA‐entrainment indicated that these were light‐associated responses. These transient effects were also observed in kin1, rab18, and rd29B. The transient expression of AtNCED3, causing the accumulation of endogenous ABA, indicated a possible regulation by ABA‐dependent pathways in ABA‐entrained plants. An ABA immunoassay supported this hypothesis: ABA‐entrained plants showed a transient increase in endogenous ABA level from 220 to 250 pmol g−1 fresh mass at 1–2 h of the training period, whereas ABA‐deficient (aba2) mutants did not. Taking into account these results, we propose that plants have the ability to memorize stressful environmental experiences, and discuss the molecular events in ABA‐entrained plants.Keywords
This publication has 57 references indexed in Scilit:
- Endogenous Timekeepers in Photosynthetic OrganismsAnnual Review of Physiology, 2001
- The Effect of Exogenous Abscisic Acid on Stomatal Development, Stomatal Mechanics, and Leaf Gas Exchange inTradescantia virginianaPlant Physiology, 2001
- New approach of monitoring changes in chlorophyll a fluorescence of single guard cells and protoplasts in response to physiological stimuliPlant, Cell & Environment, 1999
- Control of Circadian Rhythms and Photoperiodic Flowering by the Arabidopsis GIGANTEA GeneScience, 1999
- Generation of Expressed Sequence Tags of Random Root cDNA Clones of Brassica napus by Single-Run Partial SequencingPlant Physiology, 1993
- Xylem‐transported abscisic acid: the relative importance of its mass and its concentration in the control of stomatal aperturePlant, Cell & Environment, 1993
- Late embryogenesis‐abundant genes encoding proteins with different numbers of hydrophilic repeats are regulated differentially by abscisic acid and osmotic stressThe Plant Journal, 1992
- Springback in Root GravitropismPlant Physiology, 1989
- After-effect of Water Stress on Stomatal Opening Potential: I. TECHNIQUES AND MAGNITUDESJournal of Experimental Botany, 1970