A novel salt inducible WRKY transcription factor gene, AhWRKY75, confers salt tolerance in transgenic peanut

被引:59
作者
Zhu, Hong [1 ]
Jiang, Yanan [1 ]
Guo, Yue [1 ]
Huang, Jianbin [1 ]
Zhou, Minghan [1 ]
Tang, Yanyan [1 ]
Sui, Jiongming [1 ]
Wang, Jingshan [1 ]
Qiao, Lixian [1 ]
机构
[1] Qingdao Agr Univ, Shandong Dry Land Farming Technol Key Lab, Coll Agron, Peanut Ind Cooperat Innovat Ctr, Qingdao 266109, Shandong, Peoples R China
基金
中国国家自然科学基金;
关键词
Peanut (Arachis hypogaea L.); Genetic transformation; AhWRKY75; Salt tolerance; ROS scavenging System; DROUGHT TOLERANCE; STRESS TOLERANCE; ABIOTIC STRESS; DNA-BINDING; ARABIDOPSIS; OVEREXPRESSION; PROTEIN; EXPRESSION; INCREASES; FAMILY;
D O I
10.1016/j.plaphy.2021.01.014
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Peanut is an important oilseed crop whose production is threatened by various abiotic and biotic stresses. Study of the molecular mechanism of salt tolerance could provide important information for the salt tolerance of this crop. WRKY transcription factors (TFs) are one of the largest TF families in plants and are involved in growth and development, defense regulation and the stress response. Here, we cloned a novel WRKY transcription factor gene belonging to the WRKY IIc subfamily, AhWRKY75, from the salt-tolerant mutant M34. The expression of AhWRKY75 was induced by NaCl stress treatment. After salt treatment, AhWRKY75-overexpressing peanuts grew better than wild-type plants. Furthermore, several genes related to the reactive oxygen species (ROS) scavenging system were up-regulated; the activities of superoxide dismutase (SOD), peroxidase (POD) and catalase (CAT) were significantly higher in transgenic lines than in non-transgenic control plants; and the malondialdehyde (MDA) and superoxide anion contents were significantly lower in transgenic lines than in control plants. The net photosynthetic rate (Pn), stomatal conductance (GS) and transpiration rate (Tr) of transgenic lines were significantly higher in transgenic plants than in control plants, and the intercellular CO2 concentration (Ci) was significantly lower in transgenic plants than in control plants. These results demonstrated that the AhWRKY75 gene conferred salt tolerance in transgenic peanut lines by improving the efficiency of the ROS scavenging system and photosynthesis under stress treatment. This study identifies a novel WRKY gene for enhancing the tolerance of peanut and other plants to salt stress.
引用
收藏
页码:175 / 183
页数:9
相关论文
共 50 条
  • [41] Birch WRKY transcription factor, BpWRKY32, confers salt tolerance by mediating stomatal closing, proline accumulation, and reactive oxygen species scavenging
    Liu, Zhujun
    Wang, Pengyu
    Wang, Zhibo
    Wang, Chao
    Wang, Yucheng
    PLANT PHYSIOLOGY AND BIOCHEMISTRY, 2024, 210
  • [42] Maize WRKY Transcription Factor ZmWRKY106 Confers Drought and Heat Tolerance in Transgenic Plants
    Wang, Chang-Tao
    Ru, Jing-Na
    Liu, Yong-Wei
    Li, Meng
    Zhao, Dan
    Yang, Jun-Feng
    Fu, Jin-Dong
    Xu, Zhao-Shi
    INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2018, 19 (10)
  • [43] The TCP transcription factor PeTCP10 modulates salt tolerance in transgenic Arabidopsis
    Xu, Yuzeng
    Liu, Huanlong
    Gao, Yameng
    Xiong, Rui
    Wu, Min
    Zhang, Kaimei
    Xiang, Yan
    PLANT CELL REPORTS, 2021, 40 (10) : 1971 - 1987
  • [44] Overexpression of a cotton (Gossypium hirsutum) WRKY gene, GhWRKY34, in Arabidopsis enhances salt-tolerance of the transgenic plants
    Zhou, Li
    Wang, Na-Na
    Gong, Si-Ying
    Lu, Rui
    Li, Yang
    Li, Xue-Bao
    PLANT PHYSIOLOGY AND BIOCHEMISTRY, 2015, 96 : 311 - 320
  • [45] Grape BES1 transcription factor gene VvBES1-3 confers salt tolerance in transgenic Arabidopsis
    Cao, Xuejing
    Ma, Weifeng
    Zeng, Fanwei
    Cheng, Yongjuan
    Ma, Zonghuan
    Mao, Juan
    Chen, Baihong
    GENE, 2023, 854
  • [46] Cloning and characterization of a maize bZIP transcription factor, ZmbZIP72, confers drought and salt tolerance in transgenic Arabidopsis
    Sheng Ying
    Deng-Feng Zhang
    Jing Fu
    Yun-Su Shi
    Yan-Chun Song
    Tian-Yu Wang
    Yu Li
    Planta, 2012, 235 : 253 - 266
  • [47] Overexpression of a Camellia sinensis DREB transcription factor gene (CsDREB) increases salt and drought tolerance in transgenic Arabidopsis thaliana
    Wang, Mingle
    Zhuang, Jing
    Zou, Zhongwei
    Li, Qinghui
    Xin, Huahong
    Li, Xinghui
    JOURNAL OF PLANT BIOLOGY, 2017, 60 (05) : 452 - 461
  • [48] A Novel Wheat Nicotianamine Synthase Gene, TaNAS-D, Confers High Salt Tolerance in Transgenic Arabidopsis
    Jie Han
    Wei Zhang
    Lijing Sun
    Qiannan Su
    Zijing Li
    Xiaoli Fan
    Na Zhang
    Ruiqing Pan
    Fa Cui
    Jun Ji
    Hui Li
    Junming Li
    Plant Molecular Biology Reporter, 2017, 35 : 252 - 264
  • [49] Isolation and Functional Analysis of VvWRKY28, a Vitis vinifera WRKY Transcription Factor Gene, with Functions in Tolerance to Cold and Salt Stress in Transgenic Arabidopsis thaliana
    Liu, Wei
    Liang, Xiaoqi
    Cai, Weijia
    Wang, Hao
    Liu, Xu
    Cheng, Longfei
    Song, Penghui
    Luo, Guijie
    Han, Deguo
    INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2022, 23 (21)
  • [50] The Novel Rose MYB Transcription Factor RhMYB96 Enhances Salt Tolerance in Transgenic Arabidopsis
    Jiang, Xinqiang
    Li, Shaocui
    Ding, Aiqin
    Zhang, Zhujun
    Hao, Qing
    Wang, Kuiling
    Liu, Qingchao
    Liu, Qinghua
    PLANT MOLECULAR BIOLOGY REPORTER, 2018, 36 (03) : 406 - 417