Flagellin peptide flg22 gains access to long-distance trafficking in Arabidopsis via its receptor, FLS2
Abstract
Diverse pathogen-derived molecules, such as bacterial flagellin and its conserved peptide flg22, are recognized in plants via plasma membrane receptors and induce both local and systemic immune responses. The fate of such ligands was unknown: whether and by what mechanism(s) they enter plant cells and whether they are transported to distal tissues. We used biologically active fluorophore and radiolabeled peptides to establish that flg22 moves to distal organs with the closest vascular connections. Remarkably, entry into the plant cell via endocytosis together with the FLS2 receptor is needed for delivery to vascular tissue and long-distance transport of flg22. This contrasts with known routes of long distance transport of other non-cell-permeant molecules in plants, which require membrane-localized transporters for entry to vascular tissue. Thus, a plasma membrane receptor acts as a transporter to enable access of its ligand to distal trafficking routes.
- Authors:
-
- Univ. of Chicago, IL (United States)
- Oak Ridge National Lab. (ORNL), Oak Ridge, TN (United States)
- Oak Ridge National Lab. (ORNL), Oak Ridge, TN (United States); Univ. of Tennessee, Knoxville, TN (United States)
- Publication Date:
- Research Org.:
- Oak Ridge National Laboratory (ORNL), Oak Ridge, TN (United States)
- Sponsoring Org.:
- USDOE Office of Science (SC), Biological and Environmental Research (BER)
- OSTI Identifier:
- 1394455
- Grant/Contract Number:
- AC05-00OR22725
- Resource Type:
- Accepted Manuscript
- Journal Name:
- Journal of Experimental Botany
- Additional Journal Information:
- Journal Volume: 68; Journal Issue: 7; Journal ID: ISSN 0022-0957
- Publisher:
- Oxford University Press
- Country of Publication:
- United States
- Language:
- English
- Subject:
- 60 APPLIED LIFE SCIENCES
Citation Formats
Jelenska, Joanna, Davern, Sandra M., Standaert, Robert F., Mirzadeh, Saed, and Greenberg, Jean T. Flagellin peptide flg22 gains access to long-distance trafficking in Arabidopsis via its receptor, FLS2. United States: N. p., 2017.
Web. doi:10.1093/jxb/erx060.
Jelenska, Joanna, Davern, Sandra M., Standaert, Robert F., Mirzadeh, Saed, & Greenberg, Jean T. Flagellin peptide flg22 gains access to long-distance trafficking in Arabidopsis via its receptor, FLS2. United States. https://doi.org/10.1093/jxb/erx060
Jelenska, Joanna, Davern, Sandra M., Standaert, Robert F., Mirzadeh, Saed, and Greenberg, Jean T. Wed .
"Flagellin peptide flg22 gains access to long-distance trafficking in Arabidopsis via its receptor, FLS2". United States. https://doi.org/10.1093/jxb/erx060. https://www.osti.gov/servlets/purl/1394455.
@article{osti_1394455,
title = {Flagellin peptide flg22 gains access to long-distance trafficking in Arabidopsis via its receptor, FLS2},
author = {Jelenska, Joanna and Davern, Sandra M. and Standaert, Robert F. and Mirzadeh, Saed and Greenberg, Jean T.},
abstractNote = {Diverse pathogen-derived molecules, such as bacterial flagellin and its conserved peptide flg22, are recognized in plants via plasma membrane receptors and induce both local and systemic immune responses. The fate of such ligands was unknown: whether and by what mechanism(s) they enter plant cells and whether they are transported to distal tissues. We used biologically active fluorophore and radiolabeled peptides to establish that flg22 moves to distal organs with the closest vascular connections. Remarkably, entry into the plant cell via endocytosis together with the FLS2 receptor is needed for delivery to vascular tissue and long-distance transport of flg22. This contrasts with known routes of long distance transport of other non-cell-permeant molecules in plants, which require membrane-localized transporters for entry to vascular tissue. Thus, a plasma membrane receptor acts as a transporter to enable access of its ligand to distal trafficking routes.},
doi = {10.1093/jxb/erx060},
journal = {Journal of Experimental Botany},
number = 7,
volume = 68,
place = {United States},
year = {Wed Mar 01 00:00:00 EST 2017},
month = {Wed Mar 01 00:00:00 EST 2017}
}
Web of Science
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Defining the Genetic Basis of Plant–Endophytic Bacteria Interactions
journal, April 2019
- Pinski, Artur; Betekhtin, Alexander; Hupert-Kocurek, Katarzyna
- International Journal of Molecular Sciences, Vol. 20, Issue 8
Paecilomyces variotii extracts (ZNC) enhance plant immunity and promote plant growth
journal, May 2019
- Lu, Chongchong; Liu, Haifeng; Jiang, Depeng
- Plant and Soil, Vol. 441, Issue 1-2
Biogenesis and Function of Multivesicular Bodies in Plant Immunity
journal, July 2018
- Li, Xifeng; Bao, Hexigeduleng; Wang, Zhe
- Frontiers in Plant Science, Vol. 9
An important role of l ‐fucose biosynthesis and protein fucosylation genes in Arabidopsis immunity
journal, January 2019
- Zhang, Li; Paasch, Bradley C.; Chen, Jin
- New Phytologist, Vol. 222, Issue 2
Plant–microbe interactions: tipping the balance
journal, July 2019
- Ntoukakis, Vardis; Gifford, Miriam L.
- Journal of Experimental Botany, Vol. 70, Issue 18
Cargo‐dependent and cell wall‐associated xylem transport in Arabidopsis
journal, November 2018
- Endo, Satoshi; Iwai, Yumi; Fukuda, Hiroo
- New Phytologist, Vol. 222, Issue 1
Bacterial infection systemically suppresses stomatal density
journal, June 2019
- Dutton, Christian; Hõrak, Hanna; Hepworth, Christopher
- Plant, Cell & Environment, Vol. 42, Issue 8
Bacterial infection systemically suppresses stomatal density
journal, June 2019
- Dutton, Christian; Hõrak, Hanna; Hepworth, Christopher
- Plant, Cell & Environment, Vol. 42, Issue 8
Defence priming in Arabidopsis – a Meta-Analysis
journal, September 2019
- Westman, Sara M.; Kloth, Karen J.; Hanson, Johannes
- Scientific Reports, Vol. 9, Issue 1