Global transcriptome profiling of Salicornia europaea L. shoots under NaCl treatment.

Soil salinity is a major abiotic stress that limits agriculture productivity worldwide. Salicornia europaea is well adapted to extreme saline environments with more than 1,000 mM NaCl in the soil, so it could serve as an important model species for studying halophilic mechanisms in euhalophytes. To...

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Main Authors: Jinbiao Ma, Meiru Zhang, Xinlong Xiao, Jinjin You, Junru Wang, Tao Wang, Yinan Yao, Changyan Tian
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2013-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3692491?pdf=render
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spelling doaj-c34881ca2a214191a06dafb5ad531f0d2020-11-24T20:40:21ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-0186e6587710.1371/journal.pone.0065877Global transcriptome profiling of Salicornia europaea L. shoots under NaCl treatment.Jinbiao MaMeiru ZhangXinlong XiaoJinjin YouJunru WangTao WangYinan YaoChangyan TianSoil salinity is a major abiotic stress that limits agriculture productivity worldwide. Salicornia europaea is well adapted to extreme saline environments with more than 1,000 mM NaCl in the soil, so it could serve as an important model species for studying halophilic mechanisms in euhalophytes. To obtain insights into the molecular basis of salt tolerance, we present here the first extensive transcriptome analysis of this species using the Illumina HiSeq™ 2000.A total of 41 and 39 million clean reads from the salt-treated (Se200S) and salt-free (SeCKS) tissues of S. europaea shoots were obtained, and de novo assembly produced 97,865 and 101,751 unigenes, respectively. Upon further assembly with EST data from both Se200S and SeCKS, 109,712 high-quality non-redundant unigenes were generated with a mean unigene size of 639 bp. Additionally, a total of 3,979 differentially expressed genes (DEGs) were detected between the Se200S and SeCKS libraries, with 348 unigenes solely expressed in Se200S and 460 unigenes solely expressed in SeCKS. Furthermore, we identified a large number of genes that are involved in ion homeostasis and osmotic adjustment, including cation transporters and proteins for the synthesis of low-molecular compounds. All unigenes were functionally annotated within the COG, GO and KEGG pathways, and 10 genes were validated by qRT-PCR.Our data contains the extensive sequencing and gene-annotation analysis of S. europaea. This genetic knowledge will be very useful for future studies on the molecular adaptation to abiotic stress in euhalophytes and will facilitate the genetic manipulation of other economically important crops.http://europepmc.org/articles/PMC3692491?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Jinbiao Ma
Meiru Zhang
Xinlong Xiao
Jinjin You
Junru Wang
Tao Wang
Yinan Yao
Changyan Tian
spellingShingle Jinbiao Ma
Meiru Zhang
Xinlong Xiao
Jinjin You
Junru Wang
Tao Wang
Yinan Yao
Changyan Tian
Global transcriptome profiling of Salicornia europaea L. shoots under NaCl treatment.
PLoS ONE
author_facet Jinbiao Ma
Meiru Zhang
Xinlong Xiao
Jinjin You
Junru Wang
Tao Wang
Yinan Yao
Changyan Tian
author_sort Jinbiao Ma
title Global transcriptome profiling of Salicornia europaea L. shoots under NaCl treatment.
title_short Global transcriptome profiling of Salicornia europaea L. shoots under NaCl treatment.
title_full Global transcriptome profiling of Salicornia europaea L. shoots under NaCl treatment.
title_fullStr Global transcriptome profiling of Salicornia europaea L. shoots under NaCl treatment.
title_full_unstemmed Global transcriptome profiling of Salicornia europaea L. shoots under NaCl treatment.
title_sort global transcriptome profiling of salicornia europaea l. shoots under nacl treatment.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2013-01-01
description Soil salinity is a major abiotic stress that limits agriculture productivity worldwide. Salicornia europaea is well adapted to extreme saline environments with more than 1,000 mM NaCl in the soil, so it could serve as an important model species for studying halophilic mechanisms in euhalophytes. To obtain insights into the molecular basis of salt tolerance, we present here the first extensive transcriptome analysis of this species using the Illumina HiSeq™ 2000.A total of 41 and 39 million clean reads from the salt-treated (Se200S) and salt-free (SeCKS) tissues of S. europaea shoots were obtained, and de novo assembly produced 97,865 and 101,751 unigenes, respectively. Upon further assembly with EST data from both Se200S and SeCKS, 109,712 high-quality non-redundant unigenes were generated with a mean unigene size of 639 bp. Additionally, a total of 3,979 differentially expressed genes (DEGs) were detected between the Se200S and SeCKS libraries, with 348 unigenes solely expressed in Se200S and 460 unigenes solely expressed in SeCKS. Furthermore, we identified a large number of genes that are involved in ion homeostasis and osmotic adjustment, including cation transporters and proteins for the synthesis of low-molecular compounds. All unigenes were functionally annotated within the COG, GO and KEGG pathways, and 10 genes were validated by qRT-PCR.Our data contains the extensive sequencing and gene-annotation analysis of S. europaea. This genetic knowledge will be very useful for future studies on the molecular adaptation to abiotic stress in euhalophytes and will facilitate the genetic manipulation of other economically important crops.
url http://europepmc.org/articles/PMC3692491?pdf=render
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