The Ubiquitin-Binding Protein OsDSK2a Mediates Seedling Growth and Salt Responses by Regulating Gibberellin Metabolism in Rice
文献类型: 外文期刊
第一作者: Wang, Juan
作者: Wang, Juan;Qin, Hua;Zhang, Haiwen;Huang, Rongfeng;Wang, Juan;Qin, Hua;Zhang, Haiwen;Huang, Rongfeng;Zhou, Shirong;Wei, Pengcheng;Zhou, Yun;Miao, Yuchen
作者机构:
期刊名称:PLANT CELL ( 影响因子:11.277; 五年影响因子:12.061 )
ISSN: 1040-4651
年卷期: 2020 年 32 卷 2 期
页码:
收录情况: SCI
摘要: The ubiquitin-binding protein OsDSK2a modulates the level of the gibberellin metabolism regulator EUI to coordinate plant growth and salt-stress responses in rice. UBL-UBA (ubiquitin-like-ubiquitin-associated) proteins are ubiquitin receptors and transporters in the ubiquitin-proteasome system that play key roles in plant growth and development. High salinity restricts plant growth by disrupting cellular metabolism, but whether UBL-UBA proteins are involved in this process is unclear. Here, we demonstrate that the UBL-UBA protein OsDSK2a (DOMINANT SUPPRESSOR of KAR2) mediates seedling growth and salt responses in rice (Oryza sativa). Through analysis of osdsk2a, a mutant with retarded seedling growth, as well as in vitro and in vivo assays, we demonstrate that OsDSK2a combines with polyubiquitin chains and interacts with the gibberellin (GA)-deactivating enzyme ELONGATED UPPERMOST INTERNODE (EUI), resulting in its degradation through the ubiquitin-proteasome system. Bioactive GA levels were reduced, and plant growth was retarded in the osdsk2a mutant. By contrast, eui mutants displayed increased seedling growth and bioactive GA levels. OsDSK2a levels decreased in plants under salt stress. Moreover, EUI accumulated under salt stress more rapidly in osdsk2a than in wild-type plants. Thus, OsDSK2a and EUI play opposite roles in regulating plant growth under salt stress by affecting GA metabolism. Under salt stress, OsDSK2a levels decrease, thereby increasing EUI accumulation, which promotes GA metabolism and reduces plant growth.
分类号:
- 相关文献
作者其他论文 更多>>
-
Integrative Analysis of Metabolome and Transcriptome of Carotenoid Biosynthesis Reveals the Mechanism of Fruit Color Change in Tomato (Solanum lycopersicum)
作者:Hu, Jiahui;Yu, Qinghui;Hu, Jiahui;Wang, Juan;Muhammad, Tayeb;Yang, Tao;Li, Ning;Yang, Haitao;Yu, Qinghui;Wang, Baike
关键词:tomato; fruit ripening; metabolome; transcriptome; carotenoids; lycopene; ethenyl
-
Comprehensive genomic characterization and expression analysis of calreticulin gene family in tomato
作者:Muhammad, Tayeb;Yang, Tao;Wang, Baike;Yang, Haitao;Wang, Juan;Yu, Qinghui;Tuerdiyusufu, Diliaremu
关键词:tomato; CRT gene family; endoplasmic reticulum; bioinformatics; abiotic stress; gene expression
-
Enantioselective Synthesis of the Active Sex Pheromone Components of the Female Lichen Moth, Lyclene dharma dharma, and Their Enantiomers
作者:Zhou, Yun;Zhang, Yueru;Fu, Xiaochen;Xie, Hongqing;Han, Jinlong;Zhang, Jianhua;Shan, Chenggang;Wang, Jianan;Zhong, Jiangchun
关键词:sex pheromone; Lyclene dharma dharma; Evans' chiral auxiliary; enantioselective synthesis
-
Long-term Application of Agricultural Amendments Regulate Hydroxyl Radicals Production during Oxygenation of Paddy Soils
作者:Chen, Ning;Huang, Danyu;Liu, Xiantang;Zhou, Dongmei;Chen, Ning;Zeng, Yu;Wu, Tongliang;Fang, Guodong;Wang, Yujun;Wang, Juan;Liu, Guangxia;Gao, Yan
关键词:agricultural amendment; hydroxyl radicals; soil aggregate fractionation, paddy soil; organic contaminantattenuation
-
Stomach as the target organ of Rickettsia heilongjiangensis infection in C57BL/6 mice identified by click chemistry
作者:Wang, Juan;Wang, Juan;Wei, Wei;Chen, Zi-Yun;Xiong, Tao;Xia, Luo-Yuan;Jiang, Jia-Fu;Zhu, Dai-Yun;Jia, Na;Cao, Wu-Chun;Du, Li-Feng;Zhang, Ming-Zhu;Xia, Luo-Yuan;Chen, Zi-Yun;Zhang, Xu;Li, Wen-Jun;Wang, Zhen-Fei
关键词:
-
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
-
Q negatively regulates wheat salt tolerance through directly repressing the expression of TaSOS1 and reactive oxygen species scavenging genes
作者:Yang, Ziyi;Yang, Ruizhen;Bai, Wanqing;Chen, Wenxi;Kong, Xiuying;Qiao, Weihua;Zhang, Yunwei;Sun, Jiaqiang;Zhou, Yun
关键词:wheat; salt tolerance; reactive oxygen species; Q; TaWD40