Heterologous expression of an uncharacterized universal stress protein gene (SbUSP) from the extreme halophyte, Salicornia brachiata, which confers salt and osmotic tolerance to E. coli

被引:52
|
作者
Udawat, Pushpika [1 ]
Mishra, Avinash [1 ]
Jha, Bhavanath [1 ]
机构
[1] CSIR, Cent Salt & Marine Chem Res Inst, Discipline Marine Biotechnol & Ecol, Bhavnagar 364002, Gujarat, India
关键词
Abiotic stress; Halophytes; Osmotic tolerance; Salt stress; Salt tolerance; DROUGHT; REVEALS; CLONING; PCR;
D O I
10.1016/j.gene.2013.11.020
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
Salicornia brachiata is an extreme halophyte considered to be a rich source of stress responsive genes and an EST database revealed that 30% of its genes are uncharacterized. In order to ascertain its function, a gene (Sal-E-56) of unknown function was made full length using RACE, cloned and characterized. The full length gene (873 bp; accession no. KF164282) contained an open reading frame (ORF) of 486 bp encoding for a protein that belongs to the universal stress protein (USP) family that was named SbUSP. The SbUSP interacted with adenosine monophosphate and exhibited characteristic motifs, phosphorylation, glycosylation and ATP binding sites. Further, in-silico analyses suggested a probable role in metabolic process of phosphate-containing compounds including signal transduction. In planta transcript profiling exhibited a significant expression response (7.8-fold) to salt stress, additionally abundant of SbUSP transcripts were observed during drought, heat and cold stress, reaching a maximum increase of 3.66-, 2.64- and 2.14-fold, respectively, at 12 or 24 h. The heterologous expression of this gene in Escherichia coli provided enhanced stress tolerance and recombinant cells have higher growth rate compared to vector alone and showed growth at up to a 10(-5) dilution in the spot assay. It was predicted that SbUSP may be directly involved in tolerance mechanisms or function as a molecular switch (signaling molecule) to activate the stress adaptive mechanisms. However, further investigation will be required to determine its role as a molecular switch and mode of action during stress. (C) 2013 Elsevier B.V. All rights reserved.
引用
收藏
页码:163 / 170
页数:8
相关论文
共 31 条
  • [21] Heterologous Expression of a Salinity and Developmentally Regulated Rice Cyclophilin Gene (OsCyp2) in E. coli and S. cerevisiae Confers Tolerance Towards Multiple Abiotic Stresses
    Sumita Kumari
    Prabhjeet Singh
    Sneh L. Singla-Pareek
    Ashwani Pareek
    Molecular Biotechnology, 2009, 42 : 195 - 204
  • [22] Heterologous Expression of a Salinity and Developmentally Regulated Rice Cyclophilin Gene (OsCyp2) in E. coli and S. cerevisiae Confers Tolerance Towards Multiple Abiotic Stresses
    Sumita Kumari
    Prabhjeet Singh
    Sneh L. Singla-Pareek
    Ashwani Pareek
    Molecular Biotechnology, 2009, 43 (1) : 95 - 96
  • [23] A DNA fragment from the cyanobacterium Synechocystis sp. PCC 6803 mediates gene expression inducible by osmotic stress in E. coli
    Milkowski G.
    Quinones A.
    Hagemann M.
    Current Microbiology, 1998, 37 (2) : 108 - 116
  • [24] Expression of a late embryogenesis abundant protein gene, HVA1, from barley confers tolerance to water deficit and salt stress in transgenic rice
    Xu, DP
    Duan, XL
    Wang, BY
    Hong, BM
    Ho, THD
    Wu, R
    PLANT PHYSIOLOGY, 1996, 110 (01) : 249 - 257
  • [25] Expression of a novel OSPGYRP (rice proline-, glycine- and tyrosine-rich protein) gene, which is involved in vesicle trafficking, enhanced cold tolerance in E. coli
    Hui Li
    Jing Yang
    Yayu Wang
    Zhijun Chen
    Sansi Tu
    Lingling Feng
    Yingguo Zhu
    Yangsheng Li
    Biotechnology Letters, 2009, 31 : 905 - 910
  • [26] SmLEA2, a gene for late embryogenesis abundant protein isolated from Salvia miltiorrhiza, confers tolerance to drought and salt stress in Escherichia coli and S-miltiorrhiza
    Wang, Huaiqin
    Wu, Yucui
    Yang, Xinbing
    Guo, Xiaorong
    Cao, Xiaoyan
    PROTOPLASMA, 2017, 254 (02) : 685 - 696
  • [27] SmLEA2, a gene for late embryogenesis abundant protein isolated from Salvia miltiorrhiza, confers tolerance to drought and salt stress in Escherichia coli and S. miltiorrhiza
    Huaiqin Wang
    Yucui Wu
    Xinbing Yang
    Xiaorong Guo
    Xiaoyan Cao
    Protoplasma, 2017, 254 : 685 - 696
  • [28] MutantGossypium universal stress protein-2 (GUSP-2) gene confers resistance to various abiotic stresses in E. coli BL-21 and CIM-496-Gossypium hirsutum
    Muhammad Nadeem Hafeez
    Mohsin Ahmad Khan
    Bilal Sarwar
    Sameera Hassan
    Qurban Ali
    Tayyab Husnain
    Bushra Rashid
    Scientific Reports, 11
  • [29] MutantGossypium universal stress protein-2 (GUSP-2) gene confers resistance to various abiotic stresses in E. coli BL-21 and CIM-496-Gossypium hirsutum
    Hafeez, Muhammad Nadeem
    Khan, Mohsin Ahmad
    Sarwar, Bilal
    Hassan, Sameera
    Ali, Qurban
    Husnain, Tayyab
    Rashid, Bushra
    SCIENTIFIC REPORTS, 2021, 11 (01)
  • [30] Ectopic Expression of CrPIP2;3, a Plasma Membrane Intrinsic Protein Gene from the Halophyte Canavalia rosea, Enhances Drought and Salt-Alkali Stress Tolerance in Arabidopsis
    Zheng, Jiexuan
    Lin, Ruoyi
    Pu, Lin
    Wang, Zhengfeng
    Mei, Qiming
    Zhang, Mei
    Jian, Shuguang
    INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2021, 22 (02) : 1 - 20