Repository logo
Log In(current)
  1. Home
  2. Colleges & Schools
  3. College of Arts and Sciences
  4. Biochemistry & Cellular and Molecular Biology
  5. Biochemistry, Cellular and Molecular Biology Publications and Other Works
  6. Ethylene signaling in plants
Details

Ethylene signaling in plants

Source Publication
Journal of Biological Chemistry
Date Issued
May 1, 2020
Author(s)
Binder, Brad M.  
DOI
10.1074/jbc.REV120.010854
Permanent URI
https://trace.tennessee.edu/handle/20.500.14382/15541
Abstract

Ethylene is a gaseous phytohormone and the first of this hormone class to be discovered. It is the simplest olefin gas and is biosynthesized by plants to regulate plant development, growth, and stress responses via a well-studied signaling pathway. One of the earliest reported responses to ethylene is the triple response. This response is common in eudicot seedlings grown in the dark and is characterized by reduced growth of the root and hypocotyl, an exaggerated apical hook, and a thickening of the hypocotyl. This proved a useful assay for genetic screens and enabled the identification of many components of the ethylene-signaling pathway. These components include a family of ethylene receptors in the membrane of the endoplasmic reticulum (ER); a protein kinase, called constitutive triple response 1 (CTR1); an ER-localized transmembrane protein of unknown biochemical activity, called ethylene-insensitive 2 (EIN2); and transcription factors such as EIN3, EIN3-like (EIL), and ethylene response factors (ERFs). These studies led to a linear model, according to which in the absence of ethylene, its cognate receptors signal to CTR1, which inhibits EIN2 and prevents downstream signaling. Ethylene acts as an inverse agonist by inhibiting its receptors, resulting in lower CTR1 activity, which releases EIN2 inhibition. EIN2 alters transcription and translation, leading to most ethylene responses. Although this canonical pathway is the predominant signaling cascade, alternative pathways also affect ethylene responses. This review summarizes our current understanding of ethylene signaling, including these alternative pathways, and discusses how ethylene signaling has been manipulated for agricultural and horticultural applications.

Subjects

Arabidopsis thaliana

bioengineering

hormone receptor

phytohormone

plant hormone

signal transduction

signaling

constitutive triple r...

ethylene

ethylene-insensitive ...

Disciplines
Biochemistry
Plant Sciences
Submission Type
Publisher's Version
File(s)
Thumbnail Image
Name

PIIS0021925817494610.pdf

Size

1.01 MB

Format

Adobe PDF

Checksum (MD5)

9412b8afc9803064a43efc751c00e54a


University Libraries

1015 Volunteer Boulevard
Knoxville, TN 37996
865-974-4351

Map & Directions
Donate to the Libraries
  • About
  • John C. Hodges Society
  • Speaking Volumes magazine
  • Outreach
  • Directory
  • Employment
  • Policies
  • Library Intranet
University of Tennessee power T logo

The University of Tennessee, Knoxville
Knoxville, Tennessee 37996
865-974-1000

Events
A-Z
Apply
Privacy
Map
Directory
Give to UT
Accessibility

Built with DSpace-CRIS software - Extension maintained and optimized by 4Science