support@kaust.edu.sa
+966 (12) 808-3463
  • العربية
logo-black
  • Home
  • People
  • Research
  • Publications
  • Teaching
  • Grants
  • Media
    • News
    • Gallery
      • Open Lab 2021
      • Plant Science Night at TKS
      • Green House
      • Visitors in Stress Granule Lab
      • Traveling with Visitors
      • End of Year Celebration
      • ICAR 2022 Belfast
      • Graduation
  • Contact us
breadcrumb-bg

Constitutively expressed ERF-VII transcription factors redundantly activate the core anaerobic response in Arabidopsis thaliana

  1. Home
  2. Publications
  • Clear filters

Constitutively expressed ERF-VII transcription factors redundantly activate the core anaerobic response in Arabidopsis thaliana

by Liem T. Bui, Beatrice Giuntoli, Monika Kosmacz, Sandro Parlanti, Francesco Licausi
Scientific Year: 2015 DOI: 10.1016/j.plantsci.2015.03.008

Extra Information

Plant Science

Abstract

Plant adaptation to hypoxic conditions is mediated by the transcriptional activation of genes involved in the metabolic reprogramming of plant cells to cope with reduced oxygen availability. Recent studies indicated that members of the group VII of the Ethylene Responsive Transcription Factor (ERFs) family act as positive regulators of this molecular response. In the current study, the five ERF-VII transcription factors of Arabidopsis thaliana were compared to infer a hierarchy in their role with respect to the anaerobic response. When the activity of each transcription factor was tested on a set of hypoxia-responsive promoters, RAP2.2, RAP2.3 and RAP2.12 appeared to be the most powerful activators. RAP2.12 was further dissected in transactivation assays in Arabidopsis protoplasts to identify responsible regions for transcriptional activation. An ultimate C-terminal motif was identified as sufficient to drive gene transcription. Finally, using realtime RT-PCR in single and double mutants for the corresponding genes, we confirmed that RAP2.2 and RAP2.12 exert major control upon the anaerobic response.

Keywords

arabidopsis thaliana ethylene response factor hypoxia transcriptional activation
Stress-Granule-icon-IT-WHITE logo-white
  • Home
  • People
  • Research
  • Publications
  • Media
  • Contact us
Flag Counter

© King Abdullah University of Science and Technology. All rights reserved

Privacy Policy
Terms of Use
Loading...