Gibberellic acid mitigates nickel stress in soybean by cell wall fixation and regulating oxidative stress metabolism and glyoxalase system

被引:17
|
作者
Bhat, Javaid Akhter [1 ]
Basit, Farwa [2 ]
Alyemeni, Mohammed Nasser [3 ]
Mansoor, Sheikh [4 ]
Kaya, Cengiz [5 ]
Ahmad, Parvaiz [6 ]
机构
[1] Zhejiang Lab, Hangzhou 311121, Zhejiang, Peoples R China
[2] Zhejiang Univ, Inst Crop Sci, Coll Agr & Biotechnol, Hangzhou 310058, Peoples R China
[3] Coll Sci King Saud Univ, Bot & Microbiol Dept, Riyadh 11451, Saudi Arabia
[4] Jeju Natl Univ, Dept Plant Resources & Environm, Jeju 63243, South Korea
[5] Harran Univ, Soil Sci & Plant Nutr Dept, Sanliurfa, Turkiye
[6] GDC Pulwama, Dept Bot, Pulwama 192301, Jammu & Kashmir, India
关键词
Gibberellic acid; Stress tolerance; Nickel; Cell wall fixation; Glyoxalase pathway; ALLEVIATES CADMIUM TOXICITY; NITRIC-OXIDE; ANTIOXIDANT DEFENSE; HYDROGEN-PEROXIDE; ENZYME-ACTIVITIES; GENE-EXPRESSION; METHYLGLYOXAL; L; TOLERANCE; CALCIUM;
D O I
10.1016/j.plaphy.2023.107678
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
It is broadly known that excessive concentration of nickel (Ni) causes venomous effects on plant health as well as food security. The underlying gibberellic acid (GA) mechanism to overcome Ni-induced stress is still unclear. Our outcomes represented the potential role of gibberellic acid (GA) to boost the soybean stress tolerance mechanism against Ni toxicity. GA elevated the seed germination, plant growth, biomass indices, and photosynthetic ma-chinery as well as relative water contents under Ni-induced stress in soybean. We found that the GA lowered the Ni uptake, and distribution in the soybean plants, as well as GA, can decrease the Ni fixation in the root cell wall by lowering the hemicelluloses content. However, it reduces the MDA level, over-generation of ROS, electrolyte leakage, and methylglyoxal contents by up-surging the level of antioxidant enzyme, and glyoxalase I and glyoxalase II activities. Furthermore, GA regulates the antioxidant-related (CAT, SOD, APX, and GSH) and phytochelatins (PCs) genes expression to sequester the excessive Ni to the vacuoles and efflux the Ni outer the cell. Hence, less Ni was translocated toward shoots. Overall, GA augmented cell wall Ni elimination, and the antioxidant defense mechanism possibly upgraded the soybean tolerance against Ni stress.
引用
收藏
页数:12
相关论文
共 50 条
  • [41] Molecular and proteome analyses highlight the importance of the Cpx envelope stress system for acid stress and cell wall stability in Escherichia coli
    Surmann, Kristin
    Cudic, Emina
    Hammer, Elke
    Hunke, Sabine
    MICROBIOLOGYOPEN, 2016, 5 (04): : 582 - 596
  • [42] EET Agonist Improves Cardiac Energy Metabolism and Heart Function by Regulating Fatty Acid Oxidation and Oxidative Stress in Infarcted Myocardium
    Cao, Jian
    Peterson, Stephen J.
    Favero, Gaia
    Rezzani, Rita
    Fabrizio, Rodella Luigi
    Schwartzman, Michal L.
    Zeldin, Darryl C.
    Shapiro, Joseph
    Abraham, Nader G.
    HYPERTENSION, 2013, 62 (03)
  • [43] Acid-Susceptible Mutants of Mycobacterium tuberculosis Share Hypersusceptibility to Cell Wall and Oxidative Stress and to the Host Environment
    Vandal, Omar H.
    Roberts, Julia A.
    Odaira, Toshiko
    Schnappinger, Dirk
    Nathan, Carl F.
    Ehrt, Sabine
    JOURNAL OF BACTERIOLOGY, 2009, 191 (02) : 625 - 631
  • [44] Naringenin mitigates cadmium-induced cell death, oxidative stress, mitochondrial dysfunction, and inflammation in KGN cells by regulating the expression of sirtuin-1
    Yuan, Ben
    Mao, Junbiao
    Wang, Junling
    Luo, Shuhong
    Luo, Bingbing
    DRUG AND CHEMICAL TOXICOLOGY, 2024, 47 (04) : 445 - 456
  • [45] T cell dysfunction in cancer:: Role of myeloid cells and tumor cells regulating amino acid availability and oxidative stress
    Rodríguez, PC
    Ochoa, AC
    SEMINARS IN CANCER BIOLOGY, 2006, 16 (01) : 66 - 72
  • [46] Brassinosteroid decreases cadmium accumulation via regulating gibberellic acid accumulation and Cd fixation capacity of root cell wall in rice (Oryza sativa) (vol 469, 133862, 2024)
    Sun, Jie Ya
    Guo, Rui
    Jiang, Qi
    Chen, Chang Zhao
    Gao, Yong Qiang
    Jiang, Meng Meng
    Shen, Ren Fang
    Zhu, Xiao Fang
    Huang, Jiu
    JOURNAL OF HAZARDOUS MATERIALS, 2024, 472
  • [47] Role of Oxidative Metabolism in the Effect of Valproic Acid on Markers of Cell Viability, Necrosis, and Oxidative Stress in Sandwich-Cultured Rat Hepatocytes
    Kiang, Tony K. L.
    Teng, Xiao Wei
    Karagiozov, Stoyan
    Surendradoss, Jayakumar
    Chang, Thomas K. H.
    Abbott, Frank S.
    TOXICOLOGICAL SCIENCES, 2010, 118 (02) : 501 - 509
  • [48] Poly-glutamic acid mitigates the negative effects of salt stress on wheat seedlings by regulating the photosynthetic performance, water physiology, antioxidant metabolism and ion homeostasis
    Zhu, Qidi
    Li, Yanyan
    Zhang, Niuniu
    Wu, Yilin
    Ou, Xingqi
    PLANT SOIL AND ENVIRONMENT, 2024, 70 (07) : 454 - 467
  • [49] Regulation of PPARγ/CPT-1 expression ameliorates cochlear hair cell injury by regulating cellular lipid metabolism and oxidative stress
    Niu, Xiaorong
    Han, Peng
    Liu, Junsong
    Chen, Zichen
    Zhang, Ting
    Li, Baiya
    Ma, Xiaoyan
    Wu, Qun
    Ma, Xudong
    MOLECULAR GENETICS AND GENOMICS, 2023, 298 (02) : 473 - 483
  • [50] Regulation of PPARγ/CPT-1 expression ameliorates cochlear hair cell injury by regulating cellular lipid metabolism and oxidative stress
    Xiaorong Niu
    Peng Han
    Junsong Liu
    Zichen Chen
    Ting Zhang
    Baiya Li
    Xiaoyan Ma
    Qun Wu
    Xudong Ma
    Molecular Genetics and Genomics, 2023, 298 : 473 - 483