Ethylene Response Factors (ERF) are differentially regulated by different abiotic stress types in tomato plants

Plant Sci. 2018 Sep:274:137-145. doi: 10.1016/j.plantsci.2018.05.023. Epub 2018 May 26.

Abstract

Plants are sessile organisms, hence to face environmental constrains they developed strategies that rely on the activation of stress-response genes under the control of specific transcription factors. The plant hormone ethylene mediates physiological, developmental and stress responses through the activation of Ethylene Response Factors (ERFs) which belong to a large multigene family of transcription factors. While an increasing number of studies supports the involvement of ERFs in abiotic stress responses, so far the specific role of ERF family members in different abiotic stress conditions remains unexplored. The present work investigates the expression profile of a set of ERFs, representative of different ERF types, in tomato plants subjected to cold, heat, salt, drought and flooding conditions. The study revealed that a group of ERFs is preferentially associated with cold and heat stress responses while another set is expressed in response to salt, water and flooding stresses. Transactivation assays indicated that ERFs can regulate the expression of abiotic stress genes regardless of whether or not they harbor conserved GCC or DRE cis-elements in their promoter region. The outcome of the study provides clue on which ERFs should be targeted when aiming to improve adaptation to a particular stress type.

Keywords: Abiotic stress; ERF; Tomato.

MeSH terms

  • Cold-Shock Response
  • Ethylenes / metabolism
  • Gene Expression Regulation, Plant
  • Heat-Shock Response
  • Plant Proteins / metabolism
  • Plant Proteins / physiology*
  • Real-Time Polymerase Chain Reaction
  • Salt Tolerance
  • Solanum lycopersicum / metabolism*
  • Stress, Physiological* / physiology
  • Transcription Factors / metabolism
  • Transcription Factors / physiology*
  • Water / metabolism

Substances

  • Ethylenes
  • Plant Proteins
  • Transcription Factors
  • Water
  • ethylene