Calcium specificity signaling mechanisms in abscisic acid signal transduction in Arabidopsis guard cells

Elife. 2015 Jul 20:4:e03599. doi: 10.7554/eLife.03599.

Abstract

A central question is how specificity in cellular responses to the eukaryotic second messenger Ca(2+) is achieved. Plant guard cells, that form stomatal pores for gas exchange, provide a powerful system for in depth investigation of Ca(2+)-signaling specificity in plants. In intact guard cells, abscisic acid (ABA) enhances (primes) the Ca(2+)-sensitivity of downstream signaling events that result in activation of S-type anion channels during stomatal closure, providing a specificity mechanism in Ca(2+)-signaling. However, the underlying genetic and biochemical mechanisms remain unknown. Here we show impairment of ABA signal transduction in stomata of calcium-dependent protein kinase quadruple mutant plants. Interestingly, protein phosphatase 2Cs prevent non-specific Ca(2+)-signaling. Moreover, we demonstrate an unexpected interdependence of the Ca(2+)-dependent and Ca(2+)-independent ABA-signaling branches and the in planta requirement of simultaneous phosphorylation at two key phosphorylation sites in SLAC1. We identify novel mechanisms ensuring specificity and robustness within stomatal Ca(2+)-signaling on a cellular, genetic, and biochemical level.

Keywords: SLAC1; SnRK; abscisic acid (ABA); arabidopsis; calcium specificity; calcium-dependent protein kinase (CPK); plant biology; protein phosphatase 2C (PP2C).

Publication types

  • Research Support, N.I.H., Extramural
  • Research Support, Non-U.S. Gov't
  • Research Support, U.S. Gov't, Non-P.H.S.

MeSH terms

  • Abscisic Acid / metabolism*
  • Arabidopsis / cytology
  • Arabidopsis / metabolism
  • Arabidopsis / physiology*
  • Arabidopsis Proteins / metabolism
  • Calcium / metabolism*
  • Focal Adhesion Kinase 2 / genetics
  • Focal Adhesion Kinase 2 / metabolism
  • Gene Deletion
  • Membrane Proteins / metabolism
  • Phosphoprotein Phosphatases / metabolism
  • Plant Cells / metabolism
  • Plant Cells / physiology*
  • Plant Stomata / metabolism
  • Plant Stomata / physiology*
  • Protein Phosphatase 2C
  • Protein Processing, Post-Translational
  • Signal Transduction*

Substances

  • Arabidopsis Proteins
  • Membrane Proteins
  • SLAC1 protein, Arabidopsis
  • Abscisic Acid
  • Focal Adhesion Kinase 2
  • Phosphoprotein Phosphatases
  • Protein Phosphatase 2C
  • Calcium