Engineering carpel-specific cold stress tolerance: a case study in Arabidopsis

Physiol Plant. 2016 Aug;157(4):469-78. doi: 10.1111/ppl.12420. Epub 2016 Mar 16.

Abstract

Climate change predictions forecast an increase in early spring frosts that could result in severe damage to perennial crops. For example, the Easter freeze of April 2007 left several states in the United States reporting a complete loss of that year's peach crop. The most susceptible organ to early frost damage in fruit trees is the carpel, particularly during bloom opening. In this study, we explored the use of a carpel-specific promoter (ZPT2-10) from petunia (Petunia hybrida var. Mitchell) to drive expression of the peach dehydrin PpDhn1. In peach, this gene is exceptionally responsive to low temperature but has not been observed to be expressed in carpels. This study examined carpel-specific properties of a petunia promoter driving the expression of the GUS gene (uidA) in transgenic Arabidopsis flowers and developed a carpel-specific ion leakage test to assess freezing tolerance. A homozygous Arabidopsis line (line 1-20) carrying the petunia ZPT2-10 promoter::PpDhn1 construct was obtained and freezing tolerance in the transgenic line was compared with an untransformed control. Overexpression of PpDhn1 in line 1-20 provided as much as a 1.9°C increase in carpel freezing tolerance as measured by electrolyte leakage.

MeSH terms

  • Acclimatization*
  • Arabidopsis / genetics*
  • Arabidopsis / physiology
  • Cold Temperature
  • Flowers / genetics
  • Flowers / physiology
  • Gene Expression
  • Genes, Reporter
  • Organ Specificity
  • Petunia / genetics*
  • Plant Proteins / genetics
  • Plants, Genetically Modified
  • Promoter Regions, Genetic / genetics
  • Stress, Physiological

Substances

  • Plant Proteins