Variation in waterlogging-triggered stomatal behavior contributes to changes in the cold acclimation process in prehardened Lolium perenne and Festuca pratensis

Plant Physiol Biochem. 2016 Dec:109:280-292. doi: 10.1016/j.plaphy.2016.10.012. Epub 2016 Oct 14.

Abstract

According to predicted changes in climate, waterlogging events may occur more frequently in the future during autumn and winter at high latitudes of the Northern Hemisphere. If excess soil water coincides with the process of cold acclimation for plants, winter survival may potentially be affected. The effects of waterlogging during cold acclimation on stomatal aperture, relative water content, photochemical activity of photosystem II, freezing tolerance and plant regrowth after freezing were compared for two prehardened overwintering forage grasses, Lolium perenne and Festuca pratensis. The experiment was performed to test the hypothesis that changes in photochemical activity initiated by waterlogging-triggered modifications in the stomatal aperture contribute to changes in freezing tolerance. Principal component analysis showed that waterlogging activated different adaptive strategies in the two species studied. The increased freezing tolerance of F. pratensis was associated with increased photochemical activity connected with stomatal opening, whereas freezing tolerance of L. perenne was associated with a decrease in stomatal aperture. In conclusion, waterlogging-triggered stomatal behavior contributed to the efficiency of the cold acclimation process in L. perenne and F. pratensis.

Keywords: Chlorophyll fluorescence; Cold acclimation; Freezing tolerance; Prehardening; Stomatal aperture; Waterlogging.

MeSH terms

  • Acclimatization / genetics
  • Acclimatization / physiology*
  • Climate Change
  • Cold Climate
  • Festuca / genetics
  • Festuca / growth & development
  • Festuca / physiology*
  • Floods
  • Freezing
  • Genotype
  • Lolium / genetics
  • Lolium / growth & development
  • Lolium / physiology*
  • Models, Biological
  • Photosystem II Protein Complex / metabolism
  • Plant Stomata / physiology*
  • Principal Component Analysis
  • Seasons
  • Species Specificity
  • Water / metabolism

Substances

  • Photosystem II Protein Complex
  • Water