The CIPK23 protein kinase represses SLAC1‐type anion channels in Arabidopsis guard cells and stimulates stomatal opening

Author:

Huang Shouguang1ORCID,Maierhofer Tobias1ORCID,Hashimoto Kenji2ORCID,Xu Xiangyu34ORCID,Karimi Sohail M.1ORCID,Müller Heike1,Geringer Michael A.1,Wang Yi5ORCID,Kudla Jörg6ORCID,De Smet Ive34ORCID,Hedrich Rainer1ORCID,Geiger Dietmar1ORCID,Roelfsema M. Rob G.1ORCID

Affiliation:

1. Molecular Plant Physiology and Biophysics, Julius‐von‐Sachs Institute for Biosciences, Biocenter Würzburg University Julius‐von‐Sachs‐Platz 2 D‐97082 Würzburg Germany

2. Department of Applied Biological Science Tokyo University of Science 2641 Yamazaki Noda 278‐8510 Japan

3. Department of Plant Biotechnology and Bioinformatics Ghent University 9052 Ghent Belgium

4. VIB Center for Plant Systems Biology Technologiepark Zwijnaarde 71 9052 Ghent Belgium

5. State Key Laboratory of Plant Physiology and Biochemistry (SKLPPB), College of Biological Sciences China Agricultural University Beijing 100193 China

6. Institut für Biologie und Biotechnologie der Pflanzen Universität Münster Schlossplatz 7 48149 Münster Germany

Abstract

Summary Guard cells control the opening of stomatal pores in the leaf surface, with the use of a network of protein kinases and phosphatases. Loss of function of the CBL‐interacting protein kinase 23 (CIPK23) was previously shown to decrease the stomatal conductance, but the molecular mechanisms underlying this response still need to be clarified. CIPK23 was specifically expressed in Arabidopsis guard cells, using an estrogen‐inducible system. Stomatal movements were linked to changes in ion channel activity, determined with double‐barreled intracellular electrodes in guard cells and with the two‐electrode voltage clamp technique in Xenopus oocytes. Expression of the phosphomimetic variant CIPK23T190D enhanced stomatal opening, while the natural CIPK23 and a kinase‐inactive CIPK23K60N variant did not affect stomatal movements. Overexpression of CIPK23T190D repressed the activity of S‐type anion channels, while their steady‐state activity was unchanged by CIPK23 and CIPK23K60N. We suggest that CIPK23 enhances the stomatal conductance at favorable growth conditions, via the regulation of several ion transport proteins in guard cells. The inhibition of SLAC1‐type anion channels is an important facet of this response.

Funder

China Scholarship Council

Deutsche Forschungsgemeinschaft

Publisher

Wiley

Subject

Plant Science,Physiology

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