The NAC domain-containing protein, GmNAC6, is a downstream component of the ER stress- and osmotic stress-induced NRP-mediated cell-death signaling pathway

<p>Abstract</p> <p>Background</p> <p>The endoplasmic reticulum (ER) is a major signaling organelle, which integrates a variety of responses against physiological stresses. In plants, one such stress-integrating response is the N-rich protein (NRP)-mediated cell death si...

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Main Authors: Pinheiro Guilherme L, Rosado Gustavo L, Reis Marco TB, Reis Pedro AB, Faria Jerusa AQA, Mendes Giselle C, Fontes Elizabeth PB
Format: Article
Language:English
Published: BMC 2011-09-01
Series:BMC Plant Biology
Subjects:
Online Access:http://www.biomedcentral.com/1471-2229/11/129
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spelling doaj-e0dc4503302447c48164a8236a9118ba2020-11-25T01:07:47ZengBMCBMC Plant Biology1471-22292011-09-0111112910.1186/1471-2229-11-129The NAC domain-containing protein, GmNAC6, is a downstream component of the ER stress- and osmotic stress-induced NRP-mediated cell-death signaling pathwayPinheiro Guilherme LRosado Gustavo LReis Marco TBReis Pedro ABFaria Jerusa AQAMendes Giselle CFontes Elizabeth PB<p>Abstract</p> <p>Background</p> <p>The endoplasmic reticulum (ER) is a major signaling organelle, which integrates a variety of responses against physiological stresses. In plants, one such stress-integrating response is the N-rich protein (NRP)-mediated cell death signaling pathway, which is synergistically activated by combined ER stress and osmotic stress signals. Despite the potential of this integrated signaling to protect plant cells against different stress conditions, mechanistic knowledge of the pathway is lacking, and downstream components have yet to be identified.</p> <p>Results</p> <p>In the present investigation, we discovered an NAC domain-containing protein from soybean, GmNAC6 (<it>Glycine max </it>NAC6), to be a downstream component of the integrated pathway. Similar to <it>NRP-A </it>and <it>NRP-B, GmNAC6 </it>is induced by ER stress and osmotic stress individually, but requires both signals for full activation. Transient expression of <it>GmNAC6 </it>promoted cell death and hypersensitive-like responses <it>in planta</it>. <it>GmNAC6 </it>and <it>NRPs </it>also share overlapping responses to biotic signals, but the induction of <it>NRPs </it>peaked before the increased accumulation of GmNAC6 transcripts. Consistent with the delayed kinetics of <it>GmNAC6 </it>induction, increased levels of <it>NRP-A </it>and <it>NRP-B </it>transcripts induced promoter activation and the expression of the <it>GmNAC6 </it>gene.</p> <p>Conclusions</p> <p>Collectively, our results biochemically link GmNAC6 to the ER stress- and osmotic stress-integrating cell death response and show that GmNAC6 may act downstream of the NRPs.</p> http://www.biomedcentral.com/1471-2229/11/129GmNAC6Cell deathER stressosmotic stressNRPsN-rich proteins
collection DOAJ
language English
format Article
sources DOAJ
author Pinheiro Guilherme L
Rosado Gustavo L
Reis Marco TB
Reis Pedro AB
Faria Jerusa AQA
Mendes Giselle C
Fontes Elizabeth PB
spellingShingle Pinheiro Guilherme L
Rosado Gustavo L
Reis Marco TB
Reis Pedro AB
Faria Jerusa AQA
Mendes Giselle C
Fontes Elizabeth PB
The NAC domain-containing protein, GmNAC6, is a downstream component of the ER stress- and osmotic stress-induced NRP-mediated cell-death signaling pathway
BMC Plant Biology
GmNAC6
Cell death
ER stress
osmotic stress
NRPs
N-rich proteins
author_facet Pinheiro Guilherme L
Rosado Gustavo L
Reis Marco TB
Reis Pedro AB
Faria Jerusa AQA
Mendes Giselle C
Fontes Elizabeth PB
author_sort Pinheiro Guilherme L
title The NAC domain-containing protein, GmNAC6, is a downstream component of the ER stress- and osmotic stress-induced NRP-mediated cell-death signaling pathway
title_short The NAC domain-containing protein, GmNAC6, is a downstream component of the ER stress- and osmotic stress-induced NRP-mediated cell-death signaling pathway
title_full The NAC domain-containing protein, GmNAC6, is a downstream component of the ER stress- and osmotic stress-induced NRP-mediated cell-death signaling pathway
title_fullStr The NAC domain-containing protein, GmNAC6, is a downstream component of the ER stress- and osmotic stress-induced NRP-mediated cell-death signaling pathway
title_full_unstemmed The NAC domain-containing protein, GmNAC6, is a downstream component of the ER stress- and osmotic stress-induced NRP-mediated cell-death signaling pathway
title_sort nac domain-containing protein, gmnac6, is a downstream component of the er stress- and osmotic stress-induced nrp-mediated cell-death signaling pathway
publisher BMC
series BMC Plant Biology
issn 1471-2229
publishDate 2011-09-01
description <p>Abstract</p> <p>Background</p> <p>The endoplasmic reticulum (ER) is a major signaling organelle, which integrates a variety of responses against physiological stresses. In plants, one such stress-integrating response is the N-rich protein (NRP)-mediated cell death signaling pathway, which is synergistically activated by combined ER stress and osmotic stress signals. Despite the potential of this integrated signaling to protect plant cells against different stress conditions, mechanistic knowledge of the pathway is lacking, and downstream components have yet to be identified.</p> <p>Results</p> <p>In the present investigation, we discovered an NAC domain-containing protein from soybean, GmNAC6 (<it>Glycine max </it>NAC6), to be a downstream component of the integrated pathway. Similar to <it>NRP-A </it>and <it>NRP-B, GmNAC6 </it>is induced by ER stress and osmotic stress individually, but requires both signals for full activation. Transient expression of <it>GmNAC6 </it>promoted cell death and hypersensitive-like responses <it>in planta</it>. <it>GmNAC6 </it>and <it>NRPs </it>also share overlapping responses to biotic signals, but the induction of <it>NRPs </it>peaked before the increased accumulation of GmNAC6 transcripts. Consistent with the delayed kinetics of <it>GmNAC6 </it>induction, increased levels of <it>NRP-A </it>and <it>NRP-B </it>transcripts induced promoter activation and the expression of the <it>GmNAC6 </it>gene.</p> <p>Conclusions</p> <p>Collectively, our results biochemically link GmNAC6 to the ER stress- and osmotic stress-integrating cell death response and show that GmNAC6 may act downstream of the NRPs.</p>
topic GmNAC6
Cell death
ER stress
osmotic stress
NRPs
N-rich proteins
url http://www.biomedcentral.com/1471-2229/11/129
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