The transcription factor ThDOF8 binds to a novel cis-element and mediates molecular responses to salt stress in Tamarix hispida
文献类型: 外文期刊
作者: Wang, Peilong 1 ; Wang, Danni 1 ; Li, Yongxi 1 ; Li, Jinghang 1 ; Liu, Baichao 1 ; Wang, Yuanyuan 1 ; Gao, Caiqiu 1 ;
作者机构: 1.Northeast Forestry Univ, State Key Lab Tree Genet & Breeding, Harbin 150040, Peoples R China
2.Zhejiang Acad Agr Sci, Zhejiang Inst Subtrop Crops, Wenzhou 325000, Peoples R China
关键词: CRK10; DOF transcription factor; salt stress; Tamarix hispida; TGCG cis-element; transgenesis
期刊名称:JOURNAL OF EXPERIMENTAL BOTANY ( 影响因子:6.9; 五年影响因子:8.0 )
ISSN: 0022-0957
年卷期: 2024 年 75 卷 10 期
页码:
收录情况: SCI
摘要: Salt stress is a common abiotic factor that restricts plant growth and development. As a halophyte, Tamarix hispida is a good model plant for exploring salt-tolerance genes and regulatory mechanisms. DNA-binding with one finger (DOF) is an important transcription factor (TF) that influences and controls various signaling substances involved in diverse biological processes related to plant growth and development, but the regulatory mechanisms of DOF TFs in response to salt stress are largely unknown in T. hispida. In the present study, a newly identified Dof gene, ThDOF8, was cloned from T. hispida, and its expression was found to be induced by salt stress. Transient overexpression of ThDOF8 enhanced T. hispida salt tolerance by enhancing proline levels, and increasing the activities of the antioxidant enzymes superoxide dismutase (SOD) and peroxidase (POD). These results were also verified in stably transformed Arabidopsis. Results from TF-centered yeast one-hybrid (Y1H) assays and EMSAs showed that ThDOF8 binds to a newly identified cis-element (TGCG). Expression profiling by gene chip analysis identified four potential direct targets of ThDOF8, namely the cysteine-rich receptor-like kinases genes, CRK10 and CRK26, and two glutamate decarboxylase genes, GAD41, and GAD42, and these were further verified by ChIP-quantitative-PCR, EMSAs, Y1H assays, and beta-glucuronidase enzyme activity assays. ThDOF8 can bind to the TGCG element in the promoter regions of its target genes, and transient overexpression of ThCRK10 also enhanced T. hispida salt tolerance. On the basis of our results, we propose a new regulatory mechanism model, in which ThDOF8 binds to the TGCG cis-element in the promoter of the target gene CRK10 to regulate its expression and improve salt tolerance in T. hispida. This study provides a basis for furthering our understanding the role of DOF TFs and identifying other downstream candidate genes that have the potential for improving plant salt tolerance via molecular breeding. The transcription factor ThDOF8 binds to the cis -element TGCG to regulate various target genes, including the cysteine-rich receptor-like kinase CRK10 , to positively regulate responses to salt stress in the halophyte Tamarix hispida .
- 相关文献
作者其他论文 更多>>
-
Evolution of reactive oxygen species cellular targets for plant development
作者:Singh, Vijay Pratap;Jaiswal, Saumya;Wang, Yuanyuan;Chen, Zhong-Hua;Feng, Shouli;Xu, Shengchun;Tripathi, Durgesh Kumar;Singh, Samiksha;Gupta, Ravi;Xue, Dawei
关键词:
-
Hormone effects of eighteen bisphenol analogues and their effects on cellular homeostasis and the typical signal pathways
作者:Ma, Mengmeng;Wang, Ruiguo;Wang, Peilong;Su, Xiaoou;Guo, Dongmei;Su, Xiaoou
关键词:Hormone effect; Bisphenol analogues; MDA-kb2; MCF-7 cells; Signal pathway; Cellular homeostasis
-
Heat-dependent postpollination limitations on maize pollen tube growth and kernel sterility
作者:Wang, Yuanyuan;Lv, Xuanlong;Sheng, Dechang;Hou, Xinfang;Liu, Xiaoli;Shen, Si;Wang, Pu;Huang, Shoubing;Wang, Yuanyuan;Mandal, Shreya;Krishna Jagadish, S. V.;Wang, Yuanyuan;Mandal, Shreya;Zhang, Ping;Krishna Jagadish, S. V.;Huang, Shoubing;Krishna Jagadish, S. V.
关键词:fertilization; heat stress; hormones; ovaries; pollen germination and tube growth; silks; sugar
-
Optimizing root system architecture to improve root anchorage strength and nitrogen absorption capacity under high plant density in maize
作者:Zhang, Ping;Gu, Shuangcheng;Yan, Ye;Wang, Pu;Huang, Shoubing;Zhang, Ping;Zhao, Fucheng;Wang, Yuanyuan;Sheng, Dechang;Zhang, Shuai
关键词:Zea mays; Root lodging; Nitrogen absorption; Root architecture; Root morphology
-
The multilayered hierarchical gene regulatory network reveals interaction of transcription factors in response to cadmium in Tamarix hispida roots
作者:Xie, Qingjun;Wang, Yuanyuan;Wang, Danni;Li, Jinghang;Liu, Baichao;Liu, Zhongyuan;Wang, Peilong;Zhang, Hao;Yang, Kaiye;Gao, Caiqiu;Wang, Peilong
关键词:cadmium stress; ML-hGRN; transcriptome
-
Comparative transcriptomic analysis of normal and abnormal in vitro flowers in Cymbidium nanulum Y. S. Wu et S. C. Chen identifies differentially expressed genes and candidate genes involved in flower formation
作者:Fu, Shuangbin;Yang, Yanping;Wang, Peilong;Ying, Zhen;Xu, Wan;Zhou, Zhuang
关键词:orchid; Cymbidium nanulum Y; S; Wu et S; C; Chen; in vitro flower; abnormal flower; transcriptomic analysis; WGCNA
-
Dynamic genome evolution in a model fern
作者:Marchant, D. Blaine;Chen, Guang;Chen, Guang;Tong, Tao;Cai, Shengguan;Dai, Fei;Xu, Shengchun;Xu, Fei;Cai, Shengguan;Chen, Zhong-Hua;Chen, Fei;Xue, Dawei;Wu, Yuhuan;Schafran, Peter;Li, Fay-Wei;Jenkins, Jerry;Plott, Chris;Webber, Jenell;Lovell, John T.;Williams, Melissa;Healey, Adam;Harkess, Alex;Grimwood, Jane;Schmutz, Jeremy;Shu, Shengqiang;Lovell, John T.;He, Guifen;Sandor, Laura;Barry, Kerrie;Schmutz, Jeremy;Rajasekar, Shanmugam;Zhang, Yinwen;Sessa, Emily;Soltis, Douglas E.;Dhakal, Rijan R.;Wolf, Paul G.;Harkess, Alex;Li, Fay-Wei;Roessner, Clemens;Becker, Annette;Gramzow, Lydia;Theissen, Guenter;Wang, Yuanyuan;Hua, Shuijin;Wang, Hua;Duan, Honglang;McKain, Michael R.;Li, Zheng;McKibben, Michael T. W.;Barker, Michael S.;Schmitz, Robert J.;Stevenson, Dennis W.;Zumajo-Cardona, Cecilia;Ambrose, Barbara A.;Leebens-Mack, James H.;Soltis, Pamela S.;Soltis, Douglas E.;Chen, Zhong-Hua
关键词: