The OsGAPC1-OsSGL module negatively regulates salt tolerance by mediating abscisic acid biosynthesis in rice

被引:2
|
作者
Jiang, Lingli [1 ]
Xiao, Weiyu [1 ]
Chen, Huiping [1 ]
Qi, Yinyao [1 ]
Kuang, Xinyu [1 ]
Shi, Jiahui [1 ]
Liu, Zhenming [2 ]
Cao, Jianzhong [2 ]
Lin, Qinlu [2 ]
Yu, Feng [1 ]
Wang, Long [1 ,3 ]
机构
[1] Hunan Univ, Natl Ctr Technol Innovat Saline Alkali Tolerant Ri, Gerater Area Inst Innovat, Coll Biol,Hunan Prov Key Lab Plant Funct Genom & D, Changsha 410082, Peoples R China
[2] Cent South Univ Forestry & Technol, Natl Engn Lab Rice & By Prod Deep Proc, Changsha 410004, Peoples R China
[3] Hunan Univ, Chongqing Res Inst, Chongqing 401120, Peoples R China
关键词
OsGAPC1; OsNCED3; OsSGL; salt tolerance; transcription factor; TRANSCRIPTION FACTOR; DROUGHT; GENE; ABA; GROWTH;
D O I
10.1111/nph.20061
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Plants frequently encounter adverse conditions and stress during their lives. Abscisic acid (ABA) plays a crucial role in response to salt stress, and dynamic regulation of ABA levels is essential for plant growth and stress resistance.<br /> In this study, we identified a transcription factor, OsSGL (Oryza sativa Stress tolerance and Grain Length), which acts as a negative regulator in salt stress, controlling ABA synthesis. OsSGL-overexpressing and mutant materials exhibited sensitivity and tolerance to salt stress, respectively. Notably, under salt treatment, several ABA-related genes, including the ABA synthesis enzyme OsNCED3 and the ABA response gene OsRAB21, were bound by OsSGL, leading to the inhibition of their transcription.<br /> Additionally, we found that a key enzyme involved in glycolysis, OsGAPC1, interacted with OsSGL and enhanced the inhibitory effect of OsSGL on OsNCED3. Upon salt stress, OsGAPC1 underwent acetylation and then translocated from the nucleus to the cytoplasm, partially alleviating the inhibitory effect of OsSGL on OsNCED3. Identification of the OsGAPC1-OsSGL module revealed a negative regulatory mechanism involved in the response of rice to salt stress.<br /> This discovery provides insight into the dynamic regulation of ABA synthesis in plants under salt stress conditions, highlighting the delicate balance between stress resistance and growth regulation.
引用
收藏
页码:825 / 839
页数:15
相关论文
共 50 条
  • [1] OsVDE, a xanthophyll cycle key enzyme, mediates abscisic acid biosynthesis and negatively regulates salinity tolerance in rice
    Wang, Xiaocui
    Ren, Pengxu
    Ji, Lingxiao
    Zhu, Bohua
    Xie, Guosheng
    PLANTA, 2022, 255 (01)
  • [2] OsVDE, a xanthophyll cycle key enzyme, mediates abscisic acid biosynthesis and negatively regulates salinity tolerance in rice
    Xiaocui Wang
    Pengxu Ren
    Lingxiao Ji
    Bohua Zhu
    Guosheng Xie
    Planta, 2022, 255
  • [3] The PalWRKY77 transcription factor negatively regulates salt tolerance and abscisic acid signaling in Populus
    Jiang, Yuanzhong
    Tong, Shaofei
    Chen, Ningning
    Liu, Bao
    Bai, Qiuxian
    Chen, Yang
    Bi, Hao
    Zhang, Zhiyang
    Lou, Shangling
    Tang, Hu
    Liu, Jianquan
    Ma, Tao
    Liu, Huanhuan
    PLANT JOURNAL, 2021, 105 (05): : 1258 - 1273
  • [4] OsJAB1 Positively Regulates Ascorbate Biosynthesis and Negatively Regulates Salt Tolerance Due to Inhibiting Early-Stage Salt-Induced ROS Accumulation in Rice
    Wang, Jiayi
    Zhang, Chuanyu
    Li, Hua
    Xu, Yuejun
    Zhang, Bo
    Zheng, Fuyu
    Zhao, Beiping
    Zhang, Haiwen
    Zhao, Hui
    Liu, Baohai
    Xiao, Minggang
    Zhang, Zhijin
    PLANTS-BASEL, 2023, 12 (22):
  • [5] OsABT Negatively Regulates the Abscisic Acid Signal Transduction Pathway in Rice Seedling Roots
    Bao, Lingran
    Shen, Yi
    Yan, Yijie
    Huang, Xuanzhu
    Wen, Danni
    Shen, Bo
    AGRONOMY-BASEL, 2024, 14 (11):
  • [6] Abscisic acid pretreatment enhances salt tolerance of rice seedlings: Proteomic evidence
    Li, Xiao-Juan
    Yang, Ming-Feng
    Chen, Hui
    Qu, Le-Qing
    Chen, Fan
    Shen, Shi-Hua
    BIOCHIMICA ET BIOPHYSICA ACTA-PROTEINS AND PROTEOMICS, 2010, 1804 (04): : 929 - 940
  • [7] The miR528-AO Module Confers Enhanced Salt Tolerance in Rice by Modulating the Ascorbic Acid and Abscisic Acid Metabolism and ROS Scavenging
    Wang, Mei
    Guo, Wenping
    Li, Jun
    Pan, Xiangjian
    Pan, Lihao
    Zhao, Juan
    Zhang, Yiwei
    Cai, Shitian
    Huang, Xia
    Wang, An
    Liu, Qingpo
    JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, 2021, 69 (31) : 8634 - 8648
  • [8] A celery transcriptional repressor AgERF8 negatively modulates abscisic acid and salt tolerance
    Jie-Xia Liu
    Bei Wu
    Kai Feng
    Meng-Yao Li
    Ao-Qi Duan
    Di Shen
    Lian Yin
    Zhi-Sheng Xu
    Ai-Sheng Xiong
    Molecular Genetics and Genomics, 2021, 296 : 179 - 192
  • [9] A celery transcriptional repressor AgERF8 negatively modulates abscisic acid and salt tolerance
    Liu, Jie-Xia
    Wu, Bei
    Feng, Kai
    Li, Meng-Yao
    Duan, Ao-Qi
    Shen, Di
    Yin, Lian
    Xu, Zhi-Sheng
    Xiong, Ai-Sheng
    MOLECULAR GENETICS AND GENOMICS, 2021, 296 (01) : 179 - 192
  • [10] OsJRL negatively regulates rice cold tolerance via interfering phenylalanine metabolism and flavonoid biosynthesis
    An, Zengxu
    Yang, Zihan
    Zhou, Yi
    Huo, Shaojie
    Zhang, Siyan
    Wu, Dianxing
    Shu, Xiaoli
    Wang, Yin
    PLANT CELL AND ENVIRONMENT, 2024, 47 (11): : 4071 - 4085