Release of SOS2 kinase from sequestration with GIGANTEA determines salt tolerance in Arabidopsis

  • Kim, Woe-Yeon
  • Ali, Zahir
  • Park, Hee Jin
  • Park, Su Jung
  • Cha, Joon-Yung
  • 외 12명
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초록

Environmental challenges to plants typically entail retardation of vegetative growth and delay or cessation of flowering. Here we report a link between the flowering time regulator, GIGANTEA (GI), and adaptation to salt stress that is mechanistically based on GI degradation under saline conditions, thus retarding flowering. GI, a switch in photoperiodicity and circadian clock control, and the SNF1-related protein kinase SOS2 functionally interact. In the absence of stress, the GI: SOS2 complex prevents SOS2-based activation of SOS1, the major plant Na+/H+-antiporter mediating adaptation to salinity. GI overexpressing, rapidly flowering, plants show enhanced salt sensitivity, whereas gi mutants exhibit enhanced salt tolerance and delayed flowering. Salt-induced degradation of GI confers salt tolerance by the release of the SOS2 kinase. The GI-SOS2 interaction introduces a higher order regulatory circuit that can explain in molecular terms, the long observed connection between floral transition and adaptive environmental stress tolerance in Arabidopsis.

키워드

CIRCADIAN CLOCKPLASMA-MEMBRANENA+/H+ ANTIPORTERLOW-TEMPERATUREPLANT-GROWTHTHALIANAPROTEINGENESTRESSLIGHT
제목
Release of SOS2 kinase from sequestration with GIGANTEA determines salt tolerance in Arabidopsis
저자
Kim, Woe-YeonAli, ZahirPark, Hee JinPark, Su JungCha, Joon-YungPerez-Hormaeche, JavierJavier Quintero, FranciscoShin, GilokKim, Mi RiQiang, ZhangNing, LiPark, Hyeong CheolLee, Sang YeolBressan, Ray A.Pardo, Jose M.Bohnert, Hans J.Yun, Dae-Jin
DOI
10.1038/ncomms2357
발행일
2013-01
유형
Article
저널명
Nature Communications
4