Functional Identification of Malus halliana MhbZIP23 Gene Demonstrates That It Enhances Saline-Alkali Stress Tolerance in Arabidopsis thaliana

被引:0
|
作者
Liu, Wenqing [1 ]
Li, Peng [1 ]
Wang, Xiu [1 ]
Zhang, Zhongxing [1 ]
Wang, Yanxiu [1 ]
机构
[1] Gansu Agr Univ, Coll Hort, Lanzhou 730070, Peoples R China
来源
PLANTS-BASEL | 2024年 / 13卷 / 13期
关键词
MhbZIP23; saline-alkali stress; Malus halliana; functional characteristics; BZIP TRANSCRIPTION FACTOR; FACTOR FAMILY; SALT; DATABASE;
D O I
10.3390/plants13131803
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Saline-alkali stress is a significant abiotic stress that restricts plant growth globally. Basic region leucine zipper (bZIP) transcription factor proteins are widely involved in plants in response to abiotic stress such as saline-alkali stress. Based on transcriptome and quantitative real-time PCR (qRT-PCR), we found that the MhbZIP23 gene could respond to saline-alkali stress. Despite this discovery, the underlying mechanism by which the MhbZIP23 transcription factor responds to saline-alkaline stress remains unexplored. To address this gap in knowledge, we successfully cloned the MhbZIP23 (MD05G1121500) gene from Malus halliana for heterologous expression in Arabidopsis thaliana, facilitating the investigation of its functional role in stress response. Compared to the wild type (WT), Arabidopsis plants demonstrated enhanced growth and a lower degree of wilting when subjected to saline-alkali stress. Furthermore, several physiological indices of the plants altered under such stress conditions. The transgenic Arabidopsis plants (OE-5, 6, and 8), which grew normally, exhibited a higher chlorophyll content and had greater root length in comparison to the control check (CK). MhbZIP23 effectively regulated the levels of the osmoregulatory substance proline (Pro), enhanced the activities of antioxidant enzymes such as peroxidase (POD) and superoxide dismutase (SOD), and reduced the levels of malondialdehyde (MDA) and relative conductivity (REC). These actions improved the ability of plant cells in transgenic Arabidopsis to counteract ROS, as evidenced by the decreased accumulation of O-2(-) and hydrogen peroxide (H2O2). In summary, the MhbZIP23 gene demonstrated effectiveness in alleviating saline-alkali stress in M. halliana, presenting itself as an outstanding resistance gene for apples to combat saline-alkali stress.
引用
收藏
页数:13
相关论文
共 50 条
  • [1] Functional identification of CCR1 gene in apple (Malus halliana) demonstrates that it enhances saline-alkali stress tolerance
    Xiu Wang
    Zhong-Xing Zhang
    Wan-Xia Wang
    Si-Tian Li
    Juan-Li Li
    Yan-Xiu Wang
    Chemical and Biological Technologies in Agriculture, 11
  • [2] Functional identification of CCR1 gene in apple (Malus halliana) demonstrates that it enhances saline-alkali stress tolerance
    Wang, Xiu
    Zhang, Zhong-Xing
    Wang, Wan-Xia
    Li, Si-Tian
    Li, Juan-Li
    Wang, Yan-Xiu
    CHEMICAL AND BIOLOGICAL TECHNOLOGIES IN AGRICULTURE, 2024, 11 (01)
  • [3] Functional identifification of LAR genes in apple (Malus halliana) demonstrates that it enhances saline-alkali stress tolerance
    Li, Juan-Li
    Zhang, Zhong-Xing
    Wang, Xiu
    Zhao, Wen-Bing
    Zhang, Dong-Hai
    Wang, Yan-Xiu
    PLANT GROWTH REGULATION, 2024, 104 (03) : 1575 - 1588
  • [4] Functional identification of LAR genes in apple (Malus halliana) demonstrates that it enhances saline-alkali stress tolerance (vol 104, pg 1575, 2024)
    Li, Juan-Li
    Zhang, Zhong-Xing
    Wang, Xiu
    Zhao, Wen-Bing
    Zhang, Dong-Hai
    Wang, Yan-Xiu
    PLANT GROWTH REGULATION, 2025, : 529 - 529
  • [5] Functional identification of ANR genes in apple (Malus halliana) that reduce saline-alkali stress tolerance
    Wang, W. -X.
    Zhang, Z. -X.
    Wang, X.
    Han, C.
    Dong, Y. -J.
    Wang, Y. -X.
    PLANT BIOLOGY, 2023, 25 (06) : 892 - 901
  • [6] Functional identification of ZDS gene in apple (Malus halliana) and demonstration of it's role in improving saline-alkali stress tolerance
    Wang, Xiu
    Du, Lei
    Wang, Wanxia
    Zhang, Zhongxing
    Wu, Yuxia
    Wang, Yanxiu
    PHYSIOLOGY AND MOLECULAR BIOLOGY OF PLANTS, 2023, 29 (06) : 799 - 813
  • [7] Functional identification of saline-alkali stress enhancing gene GATL1 in apple (Malus halliana)
    Wang, Xiu
    Li, Juanli
    Zhang, Zhongxing
    Wang, Yanxiu
    FRUIT RESEARCH, 2025, 5
  • [8] Functional identification of ZDS gene in apple (Malus halliana) and demonstration of it's role in improving saline–alkali stress tolerance
    Xiu Wang
    Lei Du
    Wanxia Wang
    Zhongxing Zhang
    Yuxia Wu
    Yanxiu Wang
    Physiology and Molecular Biology of Plants, 2023, 29 : 799 - 813
  • [9] Saline-alkali stress tolerance is enhanced by MhPR1 in Malus halliana leaves as shown by transcriptomic analyses
    Rui Zhang
    Zhongxing Zhang
    Shuangcheng Wang
    Ting Zhao
    De Zhang
    Naiying Ma
    Yanxiu Wang
    Planta, 2022, 256
  • [10] Molecular cloning and functional characterization in response to saline-alkali stress of the MhZEP gene in Arabidopsis thaliana
    Dong, Yongjuan
    Du, Lei
    Zhang, Zhongxing
    Cheng, Jiao
    Gao, Yanlong
    Wang, Xiaoya
    Wu, Yuxia
    Wang, Yanxiu
    PHYSIOLOGY AND MOLECULAR BIOLOGY OF PLANTS, 2024, 30 (09) : 1551 - 1564