Maize similar to RCD1 gene induced by salt enhances Arabidopsis thaliana abiotic stress resistance

被引:12
|
作者
Li, Xiaoyu [1 ,2 ]
Xu, Yunjian [1 ,2 ]
Liu, Fang [2 ,3 ]
Zhao, Manli [1 ,2 ]
Sun, Yi [2 ]
Ma, Qing [1 ,2 ]
机构
[1] Anhui Agr Univ, Sch Life Sci, 130 West Changjiang Rd, Hefei 230036, Anhui, Peoples R China
[2] Anhui Agr Univ, Natl Engn Lab Crop Stress Resistance Breeding, 130 West Changjiang Rd, Hefei 230036, Anhui, Peoples R China
[3] Anhui Agr Univ, Coll Agron, 130 West Changjiang Rd, Hefei 230036, Anhui, Peoples R China
基金
美国国家科学基金会;
关键词
Maize; SRO proteins; Salt; Cadmium; MV; Resistance; HEAVY-METAL; SIGNALING PATHWAYS; PROTEIN FAMILY; TRANSCRIPTION; TOLERANCE; RICE; DROUGHT; OVEREXPRESSION; ETHYLENE; ELEMENT;
D O I
10.1016/j.bbrc.2018.08.014
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Plant SRO (SIMILAR TO RCD-ONE) proteins play important roles in regulating oxidation and metal ion metabolism. Numbers of SRO proteins have been functional identified in Arabidopsis and rice, but little is known in maize. In this study, we identified a salt induced SRO gene, ZmSRO1b, from maize and analyzed its characteristics. ZmSRO1b expressed mainly in leaf tissues. The ZmSRO1b is encoded by 595 amino acid residues and shared conserved protein models with AtRCD1 and AtSRO1 from Arabidopsis. Promoter-elements analysis showed ZmSRO1b promoter harbored salt and metal stress responsive elements, DRE, GT-like and MRE. Further promoter inductive analysis by GUS staining and quantification confirmed that ZmSRO1b promoter was induced by salt and cadmium (Cd). Methylviologen (MV) simulated oxidative stress showed ZmSRO1b promoter was also induced by MV. Overexpression of ZmSRO1b in Arabidopsis plants showed increased resistance to salt, Cd and oxidative stress. Our results for the first time experimentally validate the function of ZmSRO1b and contribute to the better understanding of SRO genes across different plant species. (C) 2018 Elsevier Inc. All rights reserved.
引用
收藏
页码:2625 / 2632
页数:8
相关论文
共 50 条
  • [31] RCD1-DREB2A interaction in leaf senescence and stress responses in Arabidopsis thaliana
    Vainonen, Julia P.
    Jaspers, Pinja
    Wrzaczek, Michael
    Lamminmaki, Airi
    Reddy, Ramesha A.
    Vaahtera, Lauri
    Brosche, Mikael
    Kangasjarvi, Jaakko
    BIOCHEMICAL JOURNAL, 2012, 442 : 573 - 581
  • [32] Heterologous expression of bacterial dehydrin gene in Arabidopsis thaliana promotes abiotic stress tolerance
    Nadir Zaman Khan
    Akhtar Ali
    Waqar Ali
    Muhammad Aasim
    Tariq Khan
    Zaryab Khan
    Iqbal Munir
    Physiology and Molecular Biology of Plants, 2023, 29 : 1239 - 1246
  • [33] Heterologous expression of bacterial dehydrin gene in Arabidopsis thaliana promotes abiotic stress tolerance
    Khan, Nadir Zaman
    Ali, Akhtar
    Ali, Waqar
    Aasim, Muhammad
    Khan, Tariq
    Khan, Zaryab
    Munir, Iqbal
    PHYSIOLOGY AND MOLECULAR BIOLOGY OF PLANTS, 2023, 29 (09) : 1239 - 1246
  • [34] Overexpression of maize chloride channel gene ZmCLC-d in Arabidopsis thaliana improved its stress resistance
    Wang, S.
    Su, S. Z.
    Wu, Y.
    Li, S. P.
    Shan, X. H.
    Liu, H. K.
    Wang, S.
    Yuan, Y. P.
    BIOLOGIA PLANTARUM, 2015, 59 (01) : 55 - 64
  • [35] The association among gene expression responses to nine abiotic stress treatments in Arabidopsis thaliana
    Swindell, William R.
    GENETICS, 2006, 174 (04) : 1811 - 1824
  • [36] The Function of Arabidopsis Thaliana Thioredoxin M1 (TRX m1) Gene under Abiotic Stress
    Ju, Guihong
    2013 INTERNATIONAL CONFERENCE ON INDUSTRIAL ENGINEERING AND MANAGEMENT SCIENCE (ICIEMS 2013), 2013, : 1025 - 1030
  • [37] Overexpression of the Arabidopsis thaliana EDS5 gene enhances resistance to viruses
    Ishihara, T.
    Sekine, K. -T.
    Hase, S.
    Kanayama, Y.
    Seo, S.
    Ohashi, Y.
    Kusano, T.
    Shibata, D.
    Shah, J.
    Takahashi, H.
    PLANT BIOLOGY, 2008, 10 (04) : 451 - 461
  • [38] The SINAC8 gene of the halophyte Suaeda liaotungensis enhances drought and salt stress tolerance in transgenic Arabidopsis thaliana
    Wu, Dandan
    Sun, Yinghao
    Wang, Hongfei
    Shi, He
    Su, Mingxing
    Shan, Hongyan
    Li, Tongtong
    Li, Qiuli
    GENE, 2018, 662 : 10 - 20
  • [39] A novel TaSST gene from wheat contributes to enhanced resistance to salt stress in Arabidopsis thaliana and Oryza sativa
    Yao Li
    Wenji Liang
    Jie Han
    Zhanjing Huang
    Acta Physiologiae Plantarum, 2016, 38
  • [40] Multidimensional patterns of metabolic response in abiotic stress-induced growth of Arabidopsis thaliana
    Yadav, Brijesh S.
    Lahav, Tamar
    Reuveni, Eli
    Chamovitz, Daniel A.
    Freilich, Shiri
    PLANT MOLECULAR BIOLOGY, 2016, 92 (06) : 689 - 699