A novel tonoplast Na+/H+ antiporter gene from date palm (PdNHX6) confers enhanced salt tolerance response in Arabidopsis

被引:33
|
作者
Al-Harrasi, Ibtisam [1 ]
Jana, Gerry Aplang [1 ]
Patankar, Himanshu, V [1 ]
Al-Yahyai, Rashid [2 ]
Rajappa, Sivamathini [3 ]
Kumar, Prakash P. [3 ]
Yaish, Mahmoud W. [1 ]
机构
[1] Sultan Qaboos Univ, Coll Sci, Dept Biol, POB 36, Muscat 123, Oman
[2] Sultan Qaboos Univ, Coll Agr & Marine Sci, Dept Crop Sci, POB 34, Muscat 123, Oman
[3] Natl Univ Singapore, Fac Sci, Dept Biol Sci, Singapore 117543, Singapore
关键词
NHXs; Date palm; Abiotic stress; Salinity; pH regulation; TRANSCRIPTION FACTOR; SALINITY TOLERANCE; STRESS; DROUGHT; OVEREXPRESSION; HALOPHYTES; TRANSPORT; VACUOLES; PH;
D O I
10.1007/s00299-020-02549-5
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Key message A sodium hydrogen exchanger (NHX) gene from the date palm enhances tolerance to salinity in Arabidopsis plants. Plant sodium hydrogen exchangers/antiporters (NHXs) are pivotal regulators of intracellular Na+/K+ and pH homeostasis, which is essential for salt stress adaptation. In this study, a novel orthologue of Na+/H+ antiporter was isolated from date palm (PdNHX6) and functionally characterized in mutant yeast cells and Arabidopsis plants to assess the behavior of the transgenic organisms in response to salinity. Genetically transformed yeast cells with PdNHX6 were sensitive to salt stress when compared to the empty vector (EV) yeast cells. Besides, the acidity value of the vacuoles of the transformant yeast cells has significantly (p <= 0.05) increased, as indicated by the calibrated fluorescence intensity measurements and the fluorescence imagining analyses. This observation supports the notion that PdNHX6 might regulate proton pumping into the vacuole, a crucial salt tolerance mechanism in the plants. Consistently, the transient overexpression and subcellular localization revealed the accumulation of PdNHX6 in the tonoplast surrounding the central vacuole of Nicotiana benthamiana leaf epidermal cells. Stable overexpression of PdNHX6 in Arabidopsis plants enhanced tolerance to salt stress and retained significantly higher chlorophyll, water contents, and increased seed germination under salinity when compared to the wild-type plants. Despite the significant increase of Na+, transgenic Arabidopsis lines maintained a balanced Na+/K+ ratio under salt stress conditions. Together, the results obtained from this study imply that PdNHX6 is involved in the salt tolerance mechanism in plants by controlling K+ and pH homeostasis of the vacuoles.
引用
收藏
页码:1079 / 1093
页数:15
相关论文
共 50 条
  • [31] Overexpression of a tonoplast Na+/H+ antiporter from the halophytic shrub Nitraria sibirica improved salt tolerance and root development in transgenic poplar
    Xin Geng
    Shouye Chen
    E. Yilan
    Wenbo Zhang
    Huiping Mao
    Alatan qiqige
    Yingchun Wang
    Zhi Qi
    Xiaofei Lin
    Tree Genetics & Genomes, 2020, 16
  • [32] The cotton GhNHX1 gene encoding a novel putative tonoplast Na+/H+ antiporter plays an important role in salt stress
    Wu, CA
    Yang, GD
    Meng, QW
    Zheng, CC
    PLANT AND CELL PHYSIOLOGY, 2004, 45 (05) : 600 - 607
  • [33] Overexpression of a Na+/H+ antiporter confers salt tolerance on a freshwater cyanobacterium, making it capable of growth in sea water
    Waditee, R
    Hibino, T
    Nakamura, T
    Incharoensakdi, A
    Takabe, T
    PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2002, 99 (06) : 4109 - 4114
  • [34] Novel NhaC Na+/H+ antiporter in cyanobacteria contributes to key molecular processes for salt tolerance
    Waditee-Sirisattha, Rungaroon
    Kageyama, Hakuto
    PLANT MOLECULAR BIOLOGY, 2024, 114 (06)
  • [35] GhSOS1, a plasma membrane Na+/H+ antiporter gene from upland cotton, enhances salt tolerance in transgenic Arabidopsis thaliana
    Chen, Xiugui
    Lu, Xuke
    Shu, Na
    Wang, Delong
    Wang, Shuai
    Wang, Junjuan
    Guo, Lixue
    Guo, Xiaoning
    Fan, Weili
    Lin, Zhongxu
    Ye, Wuwei
    PLOS ONE, 2017, 12 (07):
  • [36] Cloning and Functional Characterization of a Vacuolar Na+/H+ Antiporter Gene from Mungbean (VrNHX1) and Its Ectopic Expression Enhanced Salt Tolerance in Arabidopsis thaliana
    Mishra, Sagarika
    Alavilli, Hemasundar
    Lee, Byeong-Ha
    Panda, Sanjib Kumar
    Sahoo, Lingaraj
    PLOS ONE, 2014, 9 (10):
  • [37] Overexpression of AeNHX1, a root-specific vacuolar Na+/H+ antiporter from Agropyron elongatum, confers salt tolerance to Arabidopsis and Festuca plants
    Wei Hua Qiao
    Xiang Yu Zhao
    Wei Li
    Yan Luo
    Xian Sheng Zhang
    Plant Cell Reports, 2007, 26 : 1663 - 1672
  • [38] Overexpression of AeNHX1, a root-specific vacuolar Na+/H+ antiporter from Agropyron elongatum, confers salt tolerance to Arabidopsis and Festuca plants
    Qiao, Wei Hua
    Zhao, Xiang Yu
    Li, Wei
    Luo, Yan
    Zhang, Xian Sheng
    PLANT CELL REPORTS, 2007, 26 (09) : 1663 - 1672
  • [39] Overexpression of Arabidopsis thaliana Na+/H+ antiporter gene enhanced salt resistance in transgenic poplar (Populus x euramericana 'Neva')
    Jiang, Chaoqiang
    Zheng, Qingsong
    Liu, Zhaopu
    Xu, Wenjun
    Liu, Ling
    Zhao, Gengmao
    Long, Xiaohua
    TREES-STRUCTURE AND FUNCTION, 2012, 26 (03): : 685 - 694
  • [40] An Na+/H+ antiporter gene from wheat plays an important role in stress tolerance
    Yu, Jia Ning
    Huang, Han
    Wang, Zi Ning
    Zhang, Jin Song
    Chen, Shou Yi
    JOURNAL OF BIOSCIENCES, 2007, 32 (06) : 1153 - 1161