Cold-night responses in grapevine inflorescences

Plant Sci. 2015 Oct:239:115-27. doi: 10.1016/j.plantsci.2015.07.023. Epub 2015 Jul 29.

Abstract

Cold nights impact grapevine flower development and fruit set. Regulation at the female meiosis stepmay be of considerable importance for further understanding on how flower reacts to cold stress. In this study, the impact of chilling temperature (0 °C overnight) on carbon metabolism was investigated in the inflorescencesof two cultivars, Pinot noir (Pinot) and Gewurztraminer (Gewurtz.). Fluctuations in photosynthetic activity and carbohydrate metabolism were monitored by analyzing gas exchanges, simultaneous photosystem I and II activities, andcarbohydrate content. Further, the expression of PEPc, PC, FNR, ISO, OXO, AGPase, amylases and invertase genes, activities of various enzymes, as well as metabolomic analysis were attained. Results showed that the chilling night has different impacts depending on cultivars. Thus, in Gewurtz., net photosynthesis (Pn) was transiently increased whereas, in Pinot, the Pn increase was persistent and concomitant with an inhibition of respiration. However, during the days following the cold night, photosynthetic activity was decreased, and the cyclic electron flow was inhibited in Gewurtz., suggesting lower efficient energy dissipation. Likewise, metabolomic analysis revealed that several metabolites contents (namely alanine, GABA, lysine and succinate)were distinctly modulated in the two cultivars. Taking together, these results reflect a photosynthetic metabolism alteration or internal CO2 conductance in Gewurtz. explaining partly why Pinot is less susceptible to cold stress.

Keywords: Carbon metabolism; Cold night; Coulure; Grapevine; Inflorescences; Photosynthetic activity.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Carbohydrate Metabolism*
  • Cold Temperature*
  • Inflorescence / growth & development
  • Inflorescence / metabolism
  • Meiosis
  • Photosynthesis*
  • Plant Proteins / genetics*
  • Plant Proteins / metabolism
  • Vitis / genetics
  • Vitis / growth & development
  • Vitis / metabolism*

Substances

  • Plant Proteins