Cellulose synthase-like protein OsCSLD4 plays an important role in the response of rice to salt stress by mediating abscisic acid biosynthesis to regulate osmotic stress tolerance
文献类型: 外文期刊
第一作者: Zhao, Hui
作者: Zhao, Hui;Li, Zixuan;Wang, Yayun;Wang, Jiayi;Quan, Ruidang;Zhang, Haiwen;Huang, Rongfeng;Zhu, Li;Zhang, Zhijin;Zhao, Hui;Zhao, Hui;Li, Zixuan;Wang, Yayun;Wang, Jiayi;Quan, Ruidang;Zhang, Haiwen;Huang, Rongfeng;Zhang, Zhijin;Xiao, Minggang;Liu, Hai
作者机构:
关键词: cell wall polysaccharides; salt stress; osmotic stress; ABA; OsCSLD4
期刊名称:PLANT BIOTECHNOLOGY JOURNAL ( 影响因子:9.803; 五年影响因子:9.555 )
ISSN: 1467-7644
年卷期:
页码:
收录情况: SCI
摘要: Cell wall polysaccharide biosynthesis enzymes play important roles in plant growth, development and stress responses. The functions of cell wall polysaccharide synthesis enzymes in plant growth and development have been well studied. In contrast, their roles in plant responses to environmental stress are poorly understood. Previous studies have demonstrated that the rice cell wall cellulose synthase-like D4 protein (OsCSLD4) is involved in cell wall polysaccharide synthesis and is important for rice growth and development. This study demonstrated that the OsCSLD4 function-disrupted mutant nd1 was sensitive to salt stress, but insensitive to abscisic acid (ABA). The expression of some ABA synthesis and response genes was repressed in nd1 under both normal and salt stress conditions. Exogenous ABA can restore nd1-impaired salt stress tolerance. Moreover, overexpression of OsCSLD4 can enhance rice ABA synthesis gene expression, increase ABA content and improve rice salt tolerance, thus implying that OsCSLD4-regulated rice salt stress tolerance is mediated by ABA synthesis. Additionally, nd1 decreased rice tolerance to osmotic stress, but not ion toxic tolerance. The results from the transcriptome analysis showed that more osmotic stress-responsive genes were impaired in nd1 than salt stress-responsive genes, thus indicating that OsCSLD4 is involved in rice salt stress response through an ABA-induced osmotic response pathway. Intriguingly, the disruption of OsCSLD4 function decreased grain width and weight, while overexpression of OsCSLD4 increased grain width and weight. Taken together, this study demonstrates a novel plant salt stress adaptation mechanism by which crops can coordinate salt stress tolerance and yield.
分类号:
- 相关文献
作者其他论文 更多>>
-
Ethylene Modulates Rice Root Plasticity under Abiotic Stresses
作者:Qin, Hua;Li, Yuxiang;Huang, Rongfeng;Qin, Hua;Huang, Rongfeng;Xiao, Minggang
关键词:root development; ethylene; abiotic stress; rice
-
Full-length transcriptome and RNA-Seq analyses reveal the resistance mechanism of sesame in response to Corynespora cassiicola
作者:Jia, Min;Ni, Yunxia;Zhao, Hui;Liu, Xintao;Yan, Wenqing;Zhao, Xinbei;Wang, Jing;He, Bipo;Liu, Hongyan;Jia, Min;Ni, Yunxia;Zhao, Hui;Liu, Hongyan
关键词:Sesame; full-length transcriptome; WGCNA; resistant; susceptible; Corynespora cassiicola
-
Research on the influence factors of sustainable development of plateau characteristic agriculture based on DEMATEL and AISM combined model
作者:Wang, Wei;Liu, Hai;Zhao, Pengfei;Han, Mo
关键词:
-
Increase in potato yield by the combined application of biochar and organic fertilizer: key role of rhizosphere microbial diversity
作者:Hou, Jianwei;Xing, CunFang;Zhang, Jun;Duan, Yu;Hou, Jianwei;Wang, Zuhua;Liu, Min;Zhao, Hui
关键词:biochar; organic fertilizer; equal carbon ratio; chemical properties; rhizosphere microorganism; potato yield
-
OsEIN2-OsEIL1/2 pathway negatively regulates chilling tolerance by attenuating OsICE1 function in rice
作者:Zhai, Mingjuan;Chen, Yating;Chen, Ying;Zhou, Jiahao;Jiang, Xiaodan;Zhang, Zhijin;Zhang, Haiwen;Chen, Yating;Xiao, Guiqing
关键词:ethylene signal; low temperature response; transcriptional regulation; Oryza sativa L
-
Evaluation of reference genes for quantitative expression analysis in Mylabris sibirica (Coleoptera, Meloidae)
作者:Shen, Chen-Hui;Tang, Min;Li, Xiao-Fei;Zhu, Li;Wu, Gang;Yan, Xiao-Hong;Li, Wei;Deng, Pan;Zhai, Qing
关键词:Mylabris sibirica; reference gene; RT-qPCR; RefFinder; geNorm
-
Electrochemical and colorimetric dual-signal detection of Staphylococcus aureus enterotoxin B based on AuPt bimetallic nanoparticles loaded Fe-N-C single atom nanocomposite
作者:Liang, Huan;Ning, Guobao;Lu, Xiaokang;Li, Canpeng;Liu, Hongcheng;Lin, Haojian;Liu, Fei;Ma, Siying;Zhao, Hui
关键词:Staphylococcus aureus enterotoxin; Electrochemical immunosensor; Colorimetric assay; MOF@borophene composite; Dual-functional Fe-N-C signal atom catalyst