Salt stress induces endoplasmic reticulum stress-responsive genes in a grapevine rootstock.

Grapevines, although adapted to occasional drought or salt stress, are relatively sensitive to growth- and yield-limiting salinity stress. To understand the molecular mechanisms of salt tolerance and endoplasmic reticulum (ER) stress and identify genes commonly regulated by both stresses in grapevin...

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Main Authors: Birsen Çakır Aydemir, Canan Yüksel Özmen, Umut Kibar, Filiz Mutaf, Pelin Burcu Büyük, Melike Bakır, Ali Ergül
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2020-01-01
Series:PLoS ONE
Online Access:https://doi.org/10.1371/journal.pone.0236424
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spelling doaj-7f1b3e8a468144d68891bbdf1406b5912021-03-03T21:57:13ZengPublic Library of Science (PLoS)PLoS ONE1932-62032020-01-01157e023642410.1371/journal.pone.0236424Salt stress induces endoplasmic reticulum stress-responsive genes in a grapevine rootstock.Birsen Çakır AydemirCanan Yüksel ÖzmenUmut KibarFiliz MutafPelin Burcu BüyükMelike BakırAli ErgülGrapevines, although adapted to occasional drought or salt stress, are relatively sensitive to growth- and yield-limiting salinity stress. To understand the molecular mechanisms of salt tolerance and endoplasmic reticulum (ER) stress and identify genes commonly regulated by both stresses in grapevine, we investigated transcript profiles in leaves of the salt-tolerant grapevine rootstock 1616C under salt- and ER-stress. Among 1643 differentially expressed transcripts at 6 h post-treatment in leaves, 29 were unique to ER stress, 378 were unique to salt stress, and 16 were common to both stresses. At 24 h post-treatment, 243 transcripts were unique to ER stress, 1150 were unique to salt stress, and 168 were common to both stresses. GO term analysis identified genes in categories including 'oxidative stress', 'protein folding', 'transmembrane transport', 'protein phosphorylation', 'lipid transport', 'proteolysis', 'photosynthesis', and 'regulation of transcription'. The expression of genes encoding transporters, transcription factors, and proteins involved in hormone biosynthesis increased in response to both ER and salt stresses. KEGG pathway analysis of differentially expressed genes for both ER and salt stress were divided into four main categories including; carbohydrate metabolism, amino acid metabolism, signal transduction and lipid metabolism. Differential expression of several genes was confirmed by qRT-PCR analysis, which validated our microarray results. We identified transcripts for genes that might be involved in salt tolerance and also many genes differentially expressed under both ER and salt stresses. Our results could provide new insights into the mechanisms of salt tolerance and ER stress in plants and should be useful for genetic improvement of salt tolerance in grapevine.https://doi.org/10.1371/journal.pone.0236424
collection DOAJ
language English
format Article
sources DOAJ
author Birsen Çakır Aydemir
Canan Yüksel Özmen
Umut Kibar
Filiz Mutaf
Pelin Burcu Büyük
Melike Bakır
Ali Ergül
spellingShingle Birsen Çakır Aydemir
Canan Yüksel Özmen
Umut Kibar
Filiz Mutaf
Pelin Burcu Büyük
Melike Bakır
Ali Ergül
Salt stress induces endoplasmic reticulum stress-responsive genes in a grapevine rootstock.
PLoS ONE
author_facet Birsen Çakır Aydemir
Canan Yüksel Özmen
Umut Kibar
Filiz Mutaf
Pelin Burcu Büyük
Melike Bakır
Ali Ergül
author_sort Birsen Çakır Aydemir
title Salt stress induces endoplasmic reticulum stress-responsive genes in a grapevine rootstock.
title_short Salt stress induces endoplasmic reticulum stress-responsive genes in a grapevine rootstock.
title_full Salt stress induces endoplasmic reticulum stress-responsive genes in a grapevine rootstock.
title_fullStr Salt stress induces endoplasmic reticulum stress-responsive genes in a grapevine rootstock.
title_full_unstemmed Salt stress induces endoplasmic reticulum stress-responsive genes in a grapevine rootstock.
title_sort salt stress induces endoplasmic reticulum stress-responsive genes in a grapevine rootstock.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2020-01-01
description Grapevines, although adapted to occasional drought or salt stress, are relatively sensitive to growth- and yield-limiting salinity stress. To understand the molecular mechanisms of salt tolerance and endoplasmic reticulum (ER) stress and identify genes commonly regulated by both stresses in grapevine, we investigated transcript profiles in leaves of the salt-tolerant grapevine rootstock 1616C under salt- and ER-stress. Among 1643 differentially expressed transcripts at 6 h post-treatment in leaves, 29 were unique to ER stress, 378 were unique to salt stress, and 16 were common to both stresses. At 24 h post-treatment, 243 transcripts were unique to ER stress, 1150 were unique to salt stress, and 168 were common to both stresses. GO term analysis identified genes in categories including 'oxidative stress', 'protein folding', 'transmembrane transport', 'protein phosphorylation', 'lipid transport', 'proteolysis', 'photosynthesis', and 'regulation of transcription'. The expression of genes encoding transporters, transcription factors, and proteins involved in hormone biosynthesis increased in response to both ER and salt stresses. KEGG pathway analysis of differentially expressed genes for both ER and salt stress were divided into four main categories including; carbohydrate metabolism, amino acid metabolism, signal transduction and lipid metabolism. Differential expression of several genes was confirmed by qRT-PCR analysis, which validated our microarray results. We identified transcripts for genes that might be involved in salt tolerance and also many genes differentially expressed under both ER and salt stresses. Our results could provide new insights into the mechanisms of salt tolerance and ER stress in plants and should be useful for genetic improvement of salt tolerance in grapevine.
url https://doi.org/10.1371/journal.pone.0236424
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