Maize ZmRAV1 contributes to salt and osmotic stress tolerance in transgenic arabidopsis

被引:21
|
作者
Min, Haowei [1 ]
Zheng, Jun [2 ]
Wang, Jianhua [1 ]
机构
[1] China Agr Univ, Coll Agr & Biotechnol, Beijing 100094, Peoples R China
[2] Chinese Acad Agr Sci, Inst Crop Sci, Beijing 100081, Peoples R China
关键词
Maize; RAV1; ROS; Salt and osmotic stress; Transgenic Arabidopsis; RESPONSIVE GENE-EXPRESSION; TRANSCRIPTION FACTOR; SIGNAL-TRANSDUCTION; TOBACCO SEEDLINGS; BINDING PROTEINS; RICE; PLANTS; PEROXIDASE; DROUGHT; RAV1;
D O I
10.1007/s12374-013-0284-2
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
RAV1 (Related to ABI3/VP1) has been widely studied in plants such as Arabidopsis, pepper and rice; however, the functions of RAVs in maize have not been described. In this study, a novel gene ZmRAV1 was amplified from a Zea mays inbred line H21. This gene was predicted to encode a transcription factor with 2 distinct DNA-binding domains, AP2 and B3, which are both present in members of the RAV family. Transient expression assays of a 35S::YFP-ZmRAV1 fusion construct in onion epidermal cells revealed that the ZmRAV1 protein is localized in the nucleus. ZmRAV1 expression was upregulated in maize by dehydration, salt, and ABA stress. Overexpression of ZmRAV1 in transgenic Arabidopsis plants enhanced salt and osmotic stress tolerance compared to the wild type, further confirmed by increased survival rate, longer primary roots and physiological characteristics such as lower relative electrolyte leakages. Illumina sequencing revealed that a number of salt responsive genes, primarily involved in reactive oxygen species scavenging, were upregulated in the ZmRAV1 transgenic line compared to the wild-type plants. The detection of the activity of antioxidant enzyme in WT and 35S::ZmRAV1 plants under salt stress shown that, higher maintenance of POD contributes to the salt tolerance of Arabidopsis transgenic lines. These data suggest that ZmRAV1 functions as a transcriptional activator that may be involved in the salt and osmotic resistance signaling pathways in plants.
引用
收藏
页码:28 / 42
页数:15
相关论文
共 50 条
  • [21] Maize Rab17 overexpression in Arabidopsis plants promotes osmotic stress tolerance
    Figueras, M
    Pujal, J
    Saleh, A
    Savé, R
    Pagès, M
    Goday, A
    ANNALS OF APPLIED BIOLOGY, 2004, 144 (03) : 251 - 257
  • [22] Overexpression of GhGSTF9 Enhances Salt Stress Tolerance in Transgenic Arabidopsis
    Li, Huimin
    Liu, Yihui
    Wu, Jie
    Chang, Kexin
    Zhang, Guangqiang
    Zhao, Hang
    Qiu, Nianwei
    Bao, Ying
    GENES, 2024, 15 (06)
  • [23] Overexpression of SDH confers tolerance to salt and osmotic stress, but decreases ABA sensitivity in Arabidopsis
    Shi, X. -P.
    Ren, J. -J.
    Yu, Q.
    Zhou, S. -M.
    Ren, Q. -P.
    Kong, L. -J.
    Wang, X. -L.
    PLANT BIOLOGY, 2018, 20 (02) : 327 - 337
  • [24] The Reaumuria trigyna transcription factor RtWRKY1 confers tolerance to salt stress in transgenic Arabidopsis
    Du, Chao
    Zhao, Pingping
    Zhang, Huirong
    Li, Ningning
    Zheng, Linlin
    Wang, Yingchun
    JOURNAL OF PLANT PHYSIOLOGY, 2017, 215 : 48 - 58
  • [25] The Maize Gene ZmGLYI-8 Confers Salt and Drought Tolerance in Transgenic Arabidopsis Plants
    Yu, Ting
    Dong, Wei
    Hou, Xinwei
    Sun, Aiqing
    Li, Xinzheng
    Yu, Shaowei
    Zhang, Jiedao
    INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2024, 25 (20)
  • [26] ThNAC13, a NAC Transcription Factor from Tamarix hispida, Confers Salt and Osmotic Stress Tolerance to Transgenic Tamarix and Arabidopsis
    Wang, Liuqiang
    Li, Zhen
    Lu, Mengzhu
    Wang, Yucheng
    FRONTIERS IN PLANT SCIENCE, 2017, 8
  • [27] Tomato (Solanum lycopersicum) WRKY23 enhances salt and osmotic stress tolerance by modulating the ethylene and auxin pathways in transgenic Arabidopsis
    Singh, Deepika
    Debnath, Pratima
    Sane, Aniruddha P.
    Sane, Vidhu A.
    PLANT PHYSIOLOGY AND BIOCHEMISTRY, 2023, 195 : 330 - 340
  • [28] AcCIPK5, a pineapple CBL-interacting protein kinase, confers salt, osmotic and cold stress tolerance in transgenic Arabidopsis
    Aslam, Mohammad
    Greaves, Joseph G.
    Jakada, Bello Hassan
    Fakher, Beenish
    Wang, Xiaomei
    Qin, Yuan
    PLANT SCIENCE, 2022, 320
  • [29] Wheat TaTIP4;1 Confers Enhanced Tolerance to Drought, Salt and Osmotic Stress in Arabidopsis and Rice
    Wang, Yan
    Zhang, Yaqi
    An, Yinchao
    Wu, Jingyuan
    He, Shibin
    Sun, Lirong
    Hao, Fushun
    INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2022, 23 (04)
  • [30] Overexpression of the Malus hupehensis MhNPR1 gene increased tolerance to salt and osmotic stress in transgenic tobacco
    Ji-Yu Zhang
    Shen-Chun Qu
    Yu-Shan Qiao
    Zhen Zhang
    Zhong-Ren Guo
    Molecular Biology Reports, 2014, 41 : 1553 - 1561