Home LiteratureArticle Details
PMID: 11500543 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Hydrogen peroxide is involved in abscisic acid-induced stomatal closure in Vicia faba.

Plant physiology ·Vol. 126 ·No. 4 ·2001-08-00 ·Pages 1438-48

Zhang X, Zhang L, Dong F, Gao J, Galbraith DW, Song CP

Abstract

One of the most important functions of the plant hormone abscisic acid (ABA) is to induce stomatal closure by reducing the turgor of guard cells under water deficit. Under environmental stresses, hydrogen peroxide (H(2)O(2)), an active oxygen species, is widely generated in many biological systems. Here, using an epidermal strip bioassay and laser-scanning confocal microscopy, we provide evidence that H(2)O(2) may function as an intermediate in ABA signaling in Vicia faba guard cells. H(2)O(2) inhibited induced closure of stomata, and this effect was reversed by ascorbic acid at concentrations lower than 10(-5) M. Further, ABA-induced stomatal closure also was abolished partly by addition of exogenous catalase (CAT) and diphenylene iodonium (DPI), which are an H(2)O(2) scavenger and an NADPH oxidase inhibitor, respectively. Time course experiments of single-cell assays based on the fluorescent probe dichlorofluorescein showed that the generation of H(2)O(2) was dependent on ABA concentration and an increase in the fluorescence intensity of the chloroplast occurred significantly earlier than within the other regions of guard cells. The ABA-induced change in fluorescence intensity in guard cells was abolished by the application of CAT and DPI. In addition, ABA microinjected into guard cells markedly induced H(2)O(2) production, which preceded stomatal closure. These effects were abolished by CAT or DPI micro-injection. Our results suggest that guard cells treated with ABA may close the stomata via a pathway with H(2)O(2) production involved, and H(2)O(2) may be an intermediate in ABA signaling.

MeSH Terms
Abscisic Acid/metabolism Biological Assay Biological Transport, Active/drug effects Catalase/pharmacology Chloroplasts/physiology Enzyme Inhibitors/pharmacology Hydrogen Peroxide/metabolism Magnoliopsida/enzymology,metabolism,physiology Onium Compounds/pharmacology Plant Epidermis/physiology Plant Growth Regulators/metabolism Plant Shoots/physiology Signal Transduction
Chemicals
Enzyme Inhibitors Onium Compounds Plant Growth Regulators diphenyleneiodonium Abscisic Acid Hydrogen Peroxide Catalase
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Zhang X
Department of Biology, Henan University, Kaifeng 475001, People's Republic of China.
Zhang L
Dong F
Gao J
Galbraith D W
Song C P
References (41)
41 references, click to expand
  1. Oxidative Signals in Tobacco Increase Cytosolic Calcium.
    Plant Cell. 1994 Sep;6(9):1301-1310 PMID: 12244272
  2. Oligogalacturonic acid and chitosan reduce stomatal aperture by inducing the evolution of reactive oxygen species from guard cells of tomato and Commelina communis.
    Plant Physiol. 1999 Sep;121(1):147-52 PMID: 10482669
  3. A possible role for calcium in oxidative plant stress.
    Free Radic Res Commun. 1990;10(6):345-9 PMID: 2124202
  4. Race-specific elicitors of Cladosporium fulvum promote translocation of cytosolic components of NADPH oxidase to the plasma membrane of tomato cells.
    Plant Cell. 1997 Feb;9(2):249-59 PMID: 9061955
  5. Signalling in guard cells and regulation of ion channel activity.
    J Exp Bot. 1997 Mar;48 Spec No:515-28 PMID: 21245228
  6. The origin of the oxidative burst in plants.
    Free Radic Res. 1995 Dec;23(6):517-32 PMID: 8574346
  7. Detection of picomole levels of hydroperoxides using a fluorescent dichlorofluorescein assay.
    Anal Biochem. 1983 Oct 1;134(1):111-6 PMID: 6660480
  8. Current advances in abscisic acid action and signalling.
    Plant Mol Biol. 1994 Dec;26(5):1557-77 PMID: 7858204
  9. Abscisic acid-induced stomatal closure mediated by cyclic ADP-ribose.
    Proc Natl Acad Sci U S A. 1998 Dec 22;95(26):15837-42 PMID: 9861057
  10. Reactive oxygen intermediates mediate a systemic signal network in the establishment of plant immunity.
    Cell. 1998 Mar 20;92(6):773-84 PMID: 9529253
  11. The involvement of hydrogen peroxide in the differentiation of secondary walls in cotton fibers
    Plant Physiol. 1999 Mar;119(3):849-58 PMID: 10069824
  12. Abscisic acid induces oscillations in guard-cell cytosolic free calcium that involve phosphoinositide-specific phospholipase C.
    Proc Natl Acad Sci U S A. 1999 Feb 16;96(4):1779-84 PMID: 9990101
  13. Alteration of stimulus-specific guard cell calcium oscillations and stomatal closing in Arabidopsis det3 mutant.
    Science. 2000 Sep 29;289(5488):2338-42 PMID: 11009417
  14. Abscisic acid signal transduction in guard cells is mediated by phospholipase D activity.
    Proc Natl Acad Sci U S A. 1999 Oct 12;96(21):12192-7 PMID: 10518598
  15. Two Distinct Sources of Elicited Reactive Oxygen Species in Tobacco Epidermal Cells.
    Plant Cell. 1997 Sep;9(9):1559-1572 PMID: 12237396
  16. Rubisco activity in guard cells compared with the solute requirement for stomatal opening.
    Plant Physiol. 1990 Jan;92(1):246-53 PMID: 16667255
  17. Solubilization and Separation of a Plant Plasma Membrane NADPH-O2- Synthase from Other NAD(P)H Oxidoreductases.
    Plant Physiol. 1997 Oct;115(2):543-550 PMID: 12223822
  18. Inhibition of inward K+ channels and stomatal response by abscisic acid: an intracellular locus of phytohormone action.
    Proc Natl Acad Sci U S A. 1994 Apr 26;91(9):4019-23 PMID: 8171028
  19. Active Oxygen Species in Plant Defense against Pathogens.
    Plant Physiol. 1994 Jun;105(2):467-472 PMID: 12232215
  20. H2O2 from the oxidative burst orchestrates the plant hypersensitive disease resistance response.
    Cell. 1994 Nov 18;79(4):583-93 PMID: 7954825
  21. Two Transduction Pathways Mediate Rapid Effects of Abscisic Acid in Commelina Guard Cells.
    Plant Cell. 1994 Sep;6(9):1319-1328 PMID: 12244274
  22. Changes in Stomatal Behavior and Guard Cell Cytosolic Free Calcium in Response to Oxidative Stress.
    Plant Physiol. 1996 Aug;111(4):1031-1042 PMID: 12226345
  23. Involvement of superoxide radical in signal transduction regulating stomatal movements.
    Biochem Biophys Res Commun. 1994 Nov 30;205(1):30-7 PMID: 7999040
  24. Evidence for an Extracellular Reception Site for Abscisic Acid in Commelina Guard Cells.
    Plant Physiol. 1994 Apr;104(4):1177-1183 PMID: 12232155
  25. ASCORBATE AND GLUTATHIONE: Keeping Active Oxygen Under Control.
    Annu Rev Plant Physiol Plant Mol Biol. 1998 Jun;49:249-279 PMID: 15012235
  26. Fluorescence Properties of Guard Cell Chloroplasts: EVIDENCE FOR LINEAR ELECTRON TRANSPORT AND LIGHT-HARVESTING PIGMENTS OF PHOTOSYSTEMS I AND II.
    Plant Physiol. 1981 Jan;67(1):17-20 PMID: 16661620
  27. Flavonoid-Peroxidase Reaction as a Detoxification Mechanism of Plant Cells against H2O2.
    Plant Physiol. 1997 Dec;115(4):1405-1412 PMID: 12223873
  28. Ca2+ channels at the plasma membrane of stomatal guard cells are activated by hyperpolarization and abscisic acid.
    Proc Natl Acad Sci U S A. 2000 Apr 25;97(9):4967-72 PMID: 10781106
  29. Cis-elements and trans-factors that regulate expression of the maize Cat1 antioxidant gene in response to ABA and osmotic stress: H2O2 is the likely intermediary signaling molecule for the response.
    Plant J. 2000 Apr;22(2):87-95 PMID: 10792824
  30. Guard cell abscisic acid signalling and engineering drought hardiness in plants.
    Nature. 2001 Mar 15;410(6826):327-30 PMID: 11268200
  31. Plasma Membrane Redox Enzyme Is Involved in the Synthesis of O2- and H2O2 by Phytophthora Elicitor-Stimulated Rose Cells.
    Plant Physiol. 1995 Apr;107(4):1241-1247 PMID: 12228430
  32. Signal transduction and ion channels in guard cells.
    Philos Trans R Soc Lond B Biol Sci. 1998 Sep 29;353(1374):1475-88 PMID: 9800209
  33. Oxygen Stress and Superoxide Dismutases.
    Plant Physiol. 1993 Jan;101(1):7-12 PMID: 12231660
  34. Abscisic acid signaling through cyclic ADP-ribose in plants.
    Science. 1997 Dec 19;278(5346):2126-30 PMID: 9405349
  35. Characterization of the Oligogalacturonide-Induced Oxidative Burst in Cultured Soybean (Glycine max) Cells.
    Plant Physiol. 1993 May;102(1):233-240 PMID: 12231814
  36. The presence of a heterotrimeric G protein and its role in signal transduction of extracellular calmodulin in pollen germination and tube growth
    Plant Cell. 1999 Jul;11(7):1351-64 PMID: 10402434
  37. Comparative biochemistry of the oxidative burst produced by rose and french bean cells reveals two distinct mechanisms
    Plant Physiol. 1998 Apr;116(4):1379-85 PMID: 9536055
  38. The multisensory guard cell. Stomatal responses to blue light and abscisic acid
    Plant Physiol. 1999 Mar;119(3):809-16 PMID: 10069820
  39. Regulation of abscisic acid-induced stomatal closure and anion channels by guard cell AAPK kinase.
    Science. 2000 Jan 14;287(5451):300-3 PMID: 10634783
  40. Calcium channels activated by hydrogen peroxide mediate abscisic acid signalling in guard cells.
    Nature. 2000 Aug 17;406(6797):731-4 PMID: 10963598
  41. Role of Calcium in Signal Transduction of Commelina Guard Cells.
    Plant Cell. 1991 Apr;3(4):333-344 PMID: 12324599
Article Info
Journal
Plant physiology
Abbr.
Plant Physiol
ISSN
0032-0889
Published
2001-08-00
Pages
1438-48
Language
English
Region
United States
NLM ID
0401224
PMCID
PMC117144
Subset
IM
Analysis Services
Analysis Services

Contact

No. 2 Wenbo Road, Zhangqiu District, Jinan, Shandong

Qilu Normal University · Genelibs Bioinformatics Lab

750 Shunhua Rd, Jinan

2F, Bldg F, University Science Park

Tel: 0531-88819269

WeChat Official Account

Follow our WeChat subscription account for real-time updates and the latest in medical and biological research.


Business Email

E-mail: product@genelibs.com