Cargando…

Arabidopsis sos1 mutant in a salt-tolerant accession revealed an importance of salt acclimation ability in plant salt tolerance

An analysis of the salinity tolerance of 354 Arabidopsis thaliana accessions showed that some accessions were more tolerant to salt shock than the reference accession, Col-0, when transferred from 0 to 225 mM NaCl. In addition, several accessions, including Zu-0, showed marked acquired salt toleranc...

Descripción completa

Detalles Bibliográficos
Autores principales: Ariga, Hirotaka, Katori, Taku, Yoshihara, Ryouhei, Hase, Yoshihiro, Nozawa, Shigeki, Narumi, Issay, Iuchi, Satoshi, Kobayashi, Masatomo, Tezuka, Kenji, Sakata, Yoichi, Hayashi, Takahisa, Taji, Teruaki
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Landes Bioscience 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3908940/
https://www.ncbi.nlm.nih.gov/pubmed/23656872
http://dx.doi.org/10.4161/psb.24779
_version_ 1782301766518308864
author Ariga, Hirotaka
Katori, Taku
Yoshihara, Ryouhei
Hase, Yoshihiro
Nozawa, Shigeki
Narumi, Issay
Iuchi, Satoshi
Kobayashi, Masatomo
Tezuka, Kenji
Sakata, Yoichi
Hayashi, Takahisa
Taji, Teruaki
author_facet Ariga, Hirotaka
Katori, Taku
Yoshihara, Ryouhei
Hase, Yoshihiro
Nozawa, Shigeki
Narumi, Issay
Iuchi, Satoshi
Kobayashi, Masatomo
Tezuka, Kenji
Sakata, Yoichi
Hayashi, Takahisa
Taji, Teruaki
author_sort Ariga, Hirotaka
collection PubMed
description An analysis of the salinity tolerance of 354 Arabidopsis thaliana accessions showed that some accessions were more tolerant to salt shock than the reference accession, Col-0, when transferred from 0 to 225 mM NaCl. In addition, several accessions, including Zu-0, showed marked acquired salt tolerance after exposure to moderate salt stress. It is likely therefore that Arabidopsis plants have at least two types of tolerance, salt shock tolerance and acquired salt tolerance. To evaluate a role of well-known salt shock tolerant gene SOS1 in acquired salt tolerance, we isolated a sos1 mutant from ion-beam-mutagenized Zu-0 seedlings. The mutant showed severe growth inhibition under salt shock stress owing to a single base deletion in the SOS1 gene and was even more salt sensitive than Col-0. Nevertheless, it was able to survive after acclimation on 100 mM NaCl for 7 d followed by 750 mM sorbitol for 20 d, whereas Col-0 became chlorotic under the same conditions. We propose that genes for salt acclimation ability are different from genes for salt shock tolerance and play an important role in the acquisition of salt or osmotic tolerance.
format Online
Article
Text
id pubmed-3908940
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher Landes Bioscience
record_format MEDLINE/PubMed
spelling pubmed-39089402014-02-05 Arabidopsis sos1 mutant in a salt-tolerant accession revealed an importance of salt acclimation ability in plant salt tolerance Ariga, Hirotaka Katori, Taku Yoshihara, Ryouhei Hase, Yoshihiro Nozawa, Shigeki Narumi, Issay Iuchi, Satoshi Kobayashi, Masatomo Tezuka, Kenji Sakata, Yoichi Hayashi, Takahisa Taji, Teruaki Plant Signal Behav Research Paper An analysis of the salinity tolerance of 354 Arabidopsis thaliana accessions showed that some accessions were more tolerant to salt shock than the reference accession, Col-0, when transferred from 0 to 225 mM NaCl. In addition, several accessions, including Zu-0, showed marked acquired salt tolerance after exposure to moderate salt stress. It is likely therefore that Arabidopsis plants have at least two types of tolerance, salt shock tolerance and acquired salt tolerance. To evaluate a role of well-known salt shock tolerant gene SOS1 in acquired salt tolerance, we isolated a sos1 mutant from ion-beam-mutagenized Zu-0 seedlings. The mutant showed severe growth inhibition under salt shock stress owing to a single base deletion in the SOS1 gene and was even more salt sensitive than Col-0. Nevertheless, it was able to survive after acclimation on 100 mM NaCl for 7 d followed by 750 mM sorbitol for 20 d, whereas Col-0 became chlorotic under the same conditions. We propose that genes for salt acclimation ability are different from genes for salt shock tolerance and play an important role in the acquisition of salt or osmotic tolerance. Landes Bioscience 2013-07-01 2013-07-08 /pmc/articles/PMC3908940/ /pubmed/23656872 http://dx.doi.org/10.4161/psb.24779 Text en Copyright © 2013 Landes Bioscience http://creativecommons.org/licenses/by-nc/3.0/ This is an open-access article licensed under a Creative Commons Attribution-NonCommercial 3.0 Unported License. The article may be redistributed, reproduced, and reused for non-commercial purposes, provided the original source is properly cited.
spellingShingle Research Paper
Ariga, Hirotaka
Katori, Taku
Yoshihara, Ryouhei
Hase, Yoshihiro
Nozawa, Shigeki
Narumi, Issay
Iuchi, Satoshi
Kobayashi, Masatomo
Tezuka, Kenji
Sakata, Yoichi
Hayashi, Takahisa
Taji, Teruaki
Arabidopsis sos1 mutant in a salt-tolerant accession revealed an importance of salt acclimation ability in plant salt tolerance
title Arabidopsis sos1 mutant in a salt-tolerant accession revealed an importance of salt acclimation ability in plant salt tolerance
title_full Arabidopsis sos1 mutant in a salt-tolerant accession revealed an importance of salt acclimation ability in plant salt tolerance
title_fullStr Arabidopsis sos1 mutant in a salt-tolerant accession revealed an importance of salt acclimation ability in plant salt tolerance
title_full_unstemmed Arabidopsis sos1 mutant in a salt-tolerant accession revealed an importance of salt acclimation ability in plant salt tolerance
title_short Arabidopsis sos1 mutant in a salt-tolerant accession revealed an importance of salt acclimation ability in plant salt tolerance
title_sort arabidopsis sos1 mutant in a salt-tolerant accession revealed an importance of salt acclimation ability in plant salt tolerance
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3908940/
https://www.ncbi.nlm.nih.gov/pubmed/23656872
http://dx.doi.org/10.4161/psb.24779
work_keys_str_mv AT arigahirotaka arabidopsissos1mutantinasalttolerantaccessionrevealedanimportanceofsaltacclimationabilityinplantsalttolerance
AT katoritaku arabidopsissos1mutantinasalttolerantaccessionrevealedanimportanceofsaltacclimationabilityinplantsalttolerance
AT yoshihararyouhei arabidopsissos1mutantinasalttolerantaccessionrevealedanimportanceofsaltacclimationabilityinplantsalttolerance
AT haseyoshihiro arabidopsissos1mutantinasalttolerantaccessionrevealedanimportanceofsaltacclimationabilityinplantsalttolerance
AT nozawashigeki arabidopsissos1mutantinasalttolerantaccessionrevealedanimportanceofsaltacclimationabilityinplantsalttolerance
AT narumiissay arabidopsissos1mutantinasalttolerantaccessionrevealedanimportanceofsaltacclimationabilityinplantsalttolerance
AT iuchisatoshi arabidopsissos1mutantinasalttolerantaccessionrevealedanimportanceofsaltacclimationabilityinplantsalttolerance
AT kobayashimasatomo arabidopsissos1mutantinasalttolerantaccessionrevealedanimportanceofsaltacclimationabilityinplantsalttolerance
AT tezukakenji arabidopsissos1mutantinasalttolerantaccessionrevealedanimportanceofsaltacclimationabilityinplantsalttolerance
AT sakatayoichi arabidopsissos1mutantinasalttolerantaccessionrevealedanimportanceofsaltacclimationabilityinplantsalttolerance
AT hayashitakahisa arabidopsissos1mutantinasalttolerantaccessionrevealedanimportanceofsaltacclimationabilityinplantsalttolerance
AT tajiteruaki arabidopsissos1mutantinasalttolerantaccessionrevealedanimportanceofsaltacclimationabilityinplantsalttolerance