中文 Contact
  • About CAAS
    Introduction
    Mission & Vision
    Leadership
    CAAS In Numbers
    Organization
  • Newsroom
    Focus News
    Latest News
    Research Updates
    Bulletins
  • Research & Innovation
    Major Achievements
    Research Areas
    Facilities
    ASTIP
    Innovation Teams
  • International Cooperation
    Partners
    Platforms
    Initiatives
  • Join Us
    Talent Recruitment
    Career Opportunities
    Postgraduate Education
  • Media
    Annual Report
    Video
    CAAS in Media
    Journal
Back CAAS 中文 Contact
  • About CAAS
    Introduction
    Mission & Vision
    Leadership
    CAAS In Numbers
    Organization
  • Newsroom
    Focus News
    Latest News
    Research Updates
    Bulletins
  • Research & Innovation
    Major Achievements
    Research Areas
    Facilities
    ASTIP
    Innovation Teams
  • International Cooperation
    Partners
    Platforms
    Initiatives
  • Join Us
    Talent Recruitment
    Career Opportunities
    Postgraduate Education
  • Media
    Annual Report
    Video
    CAAS in Media
    Journal

Newsroom

Home- Newsroom- Research Updates
Home- Newsroom- Research Updates
分享到

Novel Molecular Mechanism of Rice Seed Germination and Salt Tolerance Revealed

小 中 大
Source : Biotechnology Research Institute

Recently, the research group of Prof. Huang Rongfeng from Biotechnology Research Institute, Chinese Academy of Agricultural Sciences (BRI, CAAS) has dissected the role of an APETALA2-type transcription factor, SALT AND ABA RESPONSE ERF1 (OsSAE1), as a positive regulator of seed germination and salt tolerance in rice, which provides avenues to improve seed vigor and seedling tolerance via molecular breeding. The results are published on Plant Physiology with the title of “SALT AND ABA RESPONSE ERF1 improves seed germination and salt tolerance by repressing ABA signaling in rice”.

 

Successful germination is essential for seedling establishment and crop yield but can be adversely added by environmental and hormonal stimuli. AP2 transcription factors, unique to plants, play very important roles in hormonal regulation and stress responses during development, but whether they function in seed germination is unknown. In this study, we provide the first report of an AP2 transcription factor, OsSAE1, functioning during germination and early vegetative development to boost germination and salt tolerance. OsSAE1 negatively regulates abscisic acid sensitivity by directly repressing OsABI5 transcription, shedding light on the function of AP2 proteins in seed germination and abiotic stress responses.

 

The staple crop rice is particularly susceptible to salinity in early growth stages. This work provides new avenues for molecular breeding of rice varieties with improved salt tolerance, particularly in early seedling development, and with enhanced seed vigour and germination, suitable for saline–alkali land.

 

This work was funded by National Natural Science Foundation of China, National Key R&D Program of China, and the Agricultural Science and Technology Innovation Program of CAAS.

 

 

By Qin Hua (qinhua@caas.cn)

 

 

Latest News
  • Apr 18, 2024
    Opening Ceremony of the Training Workshop on Wheat Head Scab Resistance Breeding and Pest Control in Africa Held in CAAS
  • Apr 03, 2024
    IPPCAAS Co-organized the Training Workshop on Management and Application of Biopesticides in Nepal
  • Mar 28, 2024
    Delegation from the School of Agriculture and Food Science of University College Dublin, Ireland Visit to IAS, CAAS
  • Mar 25, 2024
    Director of World Food Prize Foundation visited GSCAAS
  • Mar 20, 2024
    Institute of Crop Sciences (ICS) and Syngenta Group Global Seeds Advance Collaborative Research in the Seed Industry
  • About CAAS
    Introduction
    Mission & Vision
    Leadership
    CAAS In Numbers
    Organization
  • Newsroom
    Focus News
    Latest News
    Research Updates
    Bulletins
  • Research & Innovation
    Major Achievements
    Research Areas
    Facilities
    ASTIP
    Innovation Teams
  • International Cooperation
    Partners
    Platforms
    Initiatives
  • Join Us
    Talent Recruitment
    Career Opportunities
    Postgraduate Education
  • Media
    Annual Report
    Video
    CAAS in Media
    Journal

Links

Ministry of Agriculture and Rural Affairs of the People's Republic of China
Giving to CAAS

CAAS

Copyright © 2023 Chinese Academy of Agricultural Sciences京ICP备10039560号-5 京公网安备11940846021-00001号

No.12 Zhongguancun South Street, Haidian District, Beijing, P.R.China

www.caas.cn/en/

diccaas@caas.cn

Top