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Stomatal Guard Cells Co-opted an Ancient ABA-Dependent Desiccation Survival System to Regulate Stomatal Closure

  • Christof Lind
  • , Ingo Dreyer
  • , Enrique J. Lopez-Sanjurjo
  • , Katharina von Meyer
  • , Kimitsune Ishizaki
  • , Takayuki Kohchi
  • , Daniel Lang
  • , Yang Zhao
  • , Ines Kreuzer
  • , Khaled A. S. Al-Rasheid
  • , Hans Ronne
  • , Ralf Reski
  • , Jian-Kang Zhu
  • , Dietmar Geiger
  • , Rainer Hedrich

    Publication: Contribution to journalJournal articlepeer-review

    Abstract

    During the transition from water to land, plants had to cope with the loss of water through transpiration, the inevitable result of photosynthetic CO2 fixation on land [1, 2]. Control of transpiration became possible through the development of a new cell type: guard cells, which form stomata. In vascular plants, stomatal regulation is mediated by the stress hormone ABA, which triggers the opening of the SnR kinase OST1-activated anion channel SLAC1 [3, 4]. To understand the evolution of this regulatory circuit, we cloned both ABA-signaling elements, SLAC1 and OST1, from a charophyte alga, a liverwort, and a moss, and functionally analyzed the channel-kinase interactions. We were able to show that the emergence of stomata in the last common ancestor of mosses and vascular plants coincided with the origin of SLAC1-type channels capable of using the ancient ABA drought signaling kinase OST1 for regulation of stomatal closure.
    Original languageEnglish
    Pages (from-to)928-935
    Number of pages8
    JournalCurrent Biology
    Volume25
    Issue number7
    DOIs
    Publication statusPublished - 2015

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