Exploring FKBP12's Role in Enhancing Drought Tolerance in Rice

被引:0
作者
Jiang, Yaohuang [1 ]
Qiao, Yu [1 ]
Ye, Chenxi [1 ]
Chen, Fei [1 ]
Zhang, Yanli [1 ]
Ma, Yingying [1 ]
Wang, Sining [1 ]
Wu, Limin [1 ]
Ruan, Banpu [1 ]
Yu, Yanchun [1 ]
机构
[1] Hangzhou Normal Univ, Coll Life & Environm Sci, Hangzhou 311121, Peoples R China
基金
中国国家自然科学基金;
关键词
Drought tolerance; FKBP12; ABA; ROS; Rice; ORYZA-SATIVA L; STRESS; EXPRESSION; GENES; WATER; SALT; PRODUCTIVITY; MECHANISMS; RESISTANCE; CO2;
D O I
10.1186/s12284-025-00795-3
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
Rice, as the largest consumer of global freshwater resources, faces significant challenges due to increasing drought conditions exacerbated by climate change. In this study, we explore the critical role of FKBP12, a molecular chaperone protein, in modulating drought tolerance in rice. Utilizing a T-DNA insertional mutant (fkbp12) and FKBP12-overexpressing lines, we investigated the gene's influence on rice under various drought conditions. Our results revealed that the fkbp12 mutant exhibited significantly enhanced drought tolerance compared to the wild type, evidenced by improved water retention, reduced cellular damage, and an upregulated expression of key drought-responsive genes such as OsNCED3, OsSNAC1, and OsDREB2A. This suggests a compensatory upregulation of abscisic acid (ABA)-mediated pathways, enhancing the plant's ability to cope with water deficit. Conversely, overexpression of FKBP12 resulted in increased sensitivity to drought, likely due to disruption in stress signaling and reactive oxygen species (ROS) scavenging mechanisms. Additionally, we observed an impact on seed development, where the fkbp12 mutant presented smaller seed sizes, indicating a potential trade-off between growth and stress tolerance. This comprehensive analysis not only highlights the diverse roles of FKBP12 in drought stress response but also its implications for rice yield and seed development, providing valuable insights for breeding more resilient rice varieties in the face of escalating climate challenges.
引用
收藏
页数:16
相关论文
共 40 条
[31]   TOR signaling in plants: conservation and innovation [J].
Shi, Lin ;
Wu, Yue ;
Sheen, Jen .
DEVELOPMENT, 2018, 145 (13)
[32]   Role of dehydrin-FK506-binding protein complex in enhancing drought tolerance through the ABA-mediated signaling pathway [J].
Tiwari, Poonam ;
Indoliya, Yuvraj ;
Singh, Pradyumna Kumar ;
Singh, Poonam C. ;
Chauhan, Puneet S. ;
Pande, Veena ;
Chakrabarty, Debasis .
ENVIRONMENTAL AND EXPERIMENTAL BOTANY, 2019, 158 :136-149
[33]   Effects of high CO2 levels on dynamic photosynthesis: carbon gain, mechanisms, and environmental interactions [J].
Tomimatsu, Hajime ;
Tang, Yanhong .
JOURNAL OF PLANT RESEARCH, 2016, 129 (03) :365-377
[34]   Methods and concepts in quantifying resistance to drought, salt and freezing, abiotic stresses that affect plant water status [J].
Verslues, PE ;
Agarwal, M ;
Katiyar-Agarwal, S ;
Zhu, JH ;
Zhu, JK .
PLANT JOURNAL, 2006, 45 (04) :523-539
[35]   A double-stranded RNA binding protein enhances drought resistance via protein phase separation in rice [J].
Wang, Huaijun ;
Ye, Tiantian ;
Guo, Zilong ;
Yao, Yilong ;
Tu, Haifu ;
Wang, Pengfei ;
Zhang, Yu ;
Wang, Yao ;
Li, Xiaokai ;
Li, Bingchen ;
Xiong, Haiyan ;
Lai, Xuelei ;
Xiong, Lizhong .
NATURE COMMUNICATIONS, 2024, 15 (01)
[36]   iTRAQ-based proteomic analysis provides insights into the molecular mechanisms of rice formyl tetrahydrofolate deformylase in salt response [J].
Xiong, Erhui ;
Zhang, Chen ;
Ye, Chenxi ;
Jiang, Yaohuang ;
Zhang, Yanli ;
Chen, Fei ;
Dong, Guojun ;
Zeng, Dali ;
Yu, Yanchun ;
Wu, Limin .
PLANTA, 2021, 254 (04)
[37]   Glucose-TOR signalling reprograms the transcriptome and activates meristems [J].
Xiong, Yan ;
McCormack, Matthew ;
Li, Lei ;
Hall, Qi ;
Xiang, Chengbin ;
Sheen, Jen .
NATURE, 2013, 496 (7444) :181-+
[38]   OsLPR5 Encoding Ferroxidase Positively Regulates the Tolerance to Salt Stress in Rice [J].
Zhao, Juan ;
Meng, Xin ;
Zhang, Zhaonian ;
Wang, Mei ;
Nie, Fanhao ;
Liu, Qingpo .
INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2023, 24 (09)
[39]   The miR528-D3 Module Regulates Plant Height in Rice by Modulating the Gibberellin and Abscisic Acid Metabolisms [J].
Zhao, Juan ;
Liu, Xing ;
Wang, Mei ;
Xie, Lingjuan ;
Wu, Zhengxin ;
Yu, Jiuming ;
Wang, Yuchen ;
Zhang, Zhiqiao ;
Jia, Yufang ;
Liu, Qingpo .
RICE, 2022, 15 (01)
[40]   Reactive Oxygen, Nitrogen, Carbonyl and Sulfur Species and Their Roles in Plant Abiotic Stress Responses and Tolerance [J].
Zhou, Xianrong ;
Joshi, Shrushti ;
Patil, Suraj ;
Khare, Tushar ;
Kumar, Vinay .
JOURNAL OF PLANT GROWTH REGULATION, 2022, 41 (01) :119-142