Long-term night chilling of cotton (Gossypium hirsutum) does not result in reduced CO2 assimilation

  • Singh, Bir
  • Haley, Luke
  • Nightengale, Jamie
  • Won, Heekang
  • Haigler, Candace H.
  • 외 1명
Citations

SCOPUS

12

초록

The aim of this study was to characterise the response of CO<inf>2</inf> assimilation (A) of cotton (Gossypium hirsutum L.) to short- and long-term exposures to night chilling. We hypothesised that short-term exposures to night chilling would induce reductions in g<inf>s</inf> and, therefore, A during the following days, while growth of cotton plants for several weeks in cool night conditions would cause elevated leaf carbohydrate content, leading to the down-regulation of the capacity for A. Transferring warm-grown seedlings of wild type cotton, transgenic cotton with elevated sucrose-phosphate synthase activity (SPS+) that might produce and export more sucrose from the leaf, and a segregating null to cool nights (9°C minimum) for 1 or 2 d caused a small reduction in A (12%) and g<inf>s</inf> (21-50%) measured at 28°C. Internal CO<inf>2</inf> did not change, suggesting some biochemical restriction of A along with a g<inf>s</inf> restriction. After 30 d, new leaves that developed in cool nights exhibited acclimation of A and partial acclimation of g <inf>s</inf>. Despite the elevated leaf carbohydrate content when plants were grown to maturity with night chilling, no reduction in A, g<inf>s</inf>, carboxylation capacity, electron transport capacity, or triose-phosphate utilisation capacity occurred. Instead, growth in cool nights tended to retard the diminishing of photosynthetic parameters and g<inf>s</inf> for aging stem and subtending leaves. However, elevated SPS activity did not affect any photosynthetic parameters. Therefore, when cotton that is well fertilised with nitrogen is grown with continuous night chilling, photosynthesis should not be negatively affected. However, an occasional exposure to cool nights could result in a small reduction in A and g<inf>s</inf> for leaves that have developed in warm night conditions. © CSIRO 2005.

키워드

CarbohydratesCottonNight chillingPhotosynthesisSucrose-phosphate synthase
제목
Long-term night chilling of cotton (Gossypium hirsutum) does not result in reduced CO2 assimilation
저자
Singh, BirHaley, LukeNightengale, JamieWon, HeekangHaigler, Candace H.Holaday, A. Scott
DOI
10.1071/FP05018
발행일
2005
유형
Article
저널명
Functional Plant Biology
32
7
페이지
655 ~ 666