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November 20, 2002The Plant Cell1,257 citationsOpen Access

Arabidopsis OST1 Protein Kinase Mediates the Regulation of Stomatal Aperture by Abscisic Acid and Acts Upstream of Reactive Oxygen Species Production

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AMAnna-Chiara MustilliSMSylvain MerlotAVAlain Vavasseur

Key Points

  • To identify the signaling role of the OST1 protein kinase in abscisic acid (ABA)-induced stomatal closure and drought tolerance in Arabidopsis.
  • Screened Arabidopsis mutants impaired in drought-induced transpiration control using infrared thermography to isolate ost1-1 and ost1-2 alleles.
  • Identified and cloned the OST1 gene via positional cloning and assessed kinase activity using in-gel assays.
  • Measured stomatal responses and reactive oxygen species (ROS) production in guard cells exposed to ABA, light, CO2, H2O2, and calcium.
  • Recessive ost1 mutations selectively abolished ABA-induced stomatal closure and ABA inhibition of light-induced opening, while light and CO2 responses remained intact.
  • The cloned OST1 gene encodes an ABA-activated protein kinase expressed in stomatal guard cells and vascular tissue.
  • ABA-induced ROS production was impaired in ost1 guard cells, whereas stomata closed normally in response to downstream treatments with exogenous H2O2 or calcium.

Abstract

During drought, the plant hormone abscisic acid (ABA) triggers stomatal closure, thus reducing water loss. Using infrared thermography, we isolated two allelic Arabidopsis mutants (ost1-1 and ost1-2) impaired in the ability to limit their transpiration upon drought. These recessive ost1 mutations disrupted ABA induction of stomatal closure as well as ABA inhibition of light-induced stomatal opening. By contrast, the ost1 mutations did not affect stomatal regulation by light or CO(2), suggesting that OST1 is involved specifically in ABA signaling. The OST1 gene was isolated by positional cloning and was found to be expressed in stomatal guard cells and vascular tissue. In-gel assays indicated that OST1 is an ABA-activated protein kinase related to the Vicia faba ABA-activated protein kinase (AAPK). Reactive oxygen species (ROS) were shown recently to be an essential intermediate in guard cell ABA signaling. ABA-induced ROS production was disrupted in ost1 guard cells, whereas applied H(2)O(2) or calcium elicited the same degree of stomatal closure in ost1 as in the wild type. These results suggest that OST1 acts in the interval between ABA perception and ROS production. The relative positions of ost1 and the other ABA-insensitive mutations in the ABA signaling network (abi1-1, abi2-1, and gca2) are discussed.

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Cite This Study

Mustilli et al. (2002) studied this question.

synapsesocial.com/papers/69d8fd60a5ecc596b5d18fb1https://doi.org/10.1105/tpc.007906
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