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Open AccessJournal ArticleDOI

Hydrogen Peroxide Is Involved in Abscisic Acid-Induced Stomatal Closure in Vicia faba

TLDR
It is suggested that guard cells treated with ABA may close the stomata via a pathway with H(2)O(2), which may be an intermediate in ABA signaling, and H( 2)O
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.

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Antisense Inhibition of the Iron-Sulphur Subunit of Succinate Dehydrogenase Enhances Photosynthesis and Growth in Tomato via an Organic Acid–Mediated Effect on Stomatal Aperture

TL;DR: The antisense inhibition of the iron-sulphur subunit of succinate dehydrogenase in tomato increases photosynthesis and biomass via an organic acid–mediated effect on stomatal aperture, which reinforces earlier suggestions that malate plays a crucial role inStomatal opening and supports the hypothesis that stomatic function can be regulated remotely via mesophyll-generated cues.
Journal ArticleDOI

Guard cells: a dynamic signaling model

TL;DR: The year 2003 has provided a continuing accretion of knowledge concerning the diverse ways in which guard cells sense and respond to abscisic acid and new insights have been garnered regarding roles of the extracellular matrix in stomatal regulation.
Journal ArticleDOI

Dehydroascorbate Reductase Affects Leaf Growth, Development, and Function

TL;DR: Observations support the conclusion that through its Asc recycling function, DHAR affects the level of foliar ROS and photosynthetic activity during leaf development and as a consequence, influences the rate of plant growth and leaf aging.
Journal ArticleDOI

NADPH oxidase-dependent reactive oxygen species formation required for root hair growth depends on ROP GTPase

TL;DR: The role of ROP GTPase in NOX-dependent ROS formation by root hairs was investigated and it was found that RHD2 is required for this ROP2- dependent ROS formation.
Journal ArticleDOI

Degradation of the ABA co-receptor ABI1 by PUB12/13 U-box E3 ligases

TL;DR: It is reported that ABI1 (ABA-INSENSITIVE 1) can interact with the U-box E3 ligases PUB12 and PUB13, but is ubiquitinated only when it interacts with ABA receptors in an in vitro assay.
References
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Journal ArticleDOI

ASCORBATE AND GLUTATHIONE: Keeping Active Oxygen Under Control

TL;DR: A detailed account of current knowledge of the biosynthesis, compartmentation, and transport of these two important antioxidants, with emphasis on the unique insights and advances gained by molecular exploration are provided.
Journal ArticleDOI

H2O2 from the oxidative burst orchestrates the plant hypersensitive disease resistance response

TL;DR: It is reported here that H2O2 from this oxidative burst not only drives the cross-linking of cell wall structural proteins, but also functions as a local trigger of programmed death in challenged cells and as a diffusible signal for the induction in adjacent cells of genes encoding cellular protectants.
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Superoxide dismutase and stress tolerance

TL;DR: Prospects for Stress Tolerance through Genetic Engineering of SOD and MnSOD Overexpression are surveyed, and the Mechanism of Sod Regulation is studied.
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Calcium channels activated by hydrogen peroxide mediate abscisic acid signalling in guard cells

TL;DR: Activation of Ca2+-permeable channels in the plasma membrane of Arabidopsis guard cells by hydrogen peroxide indicates that ABA-induced H2O2 production and the H 2O 2-activated Ca2-activated channels are important mechanisms for A BA-induced stomatal closing.
Journal ArticleDOI

Oxygen Stress and Superoxide Dismutases

TL;DR: The accumulation of dioxygen in Earth's atmosphere allowed for the evolution of aerobic organisms that use O2 as the terminal electron acceptor, thus providing a higher yield of energy compared with fermentation and anaerobic respiration.
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