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College of Life Sciences
Hebei Normal University, Shijiazhuang 050016, Hebei Province, China
E-mail: tangwq@hebtu.edu.cn
https://cls.hebtu.edu.cn/a/2017/04/18/F32409FDACB740DD8EAA96F9B049AF56.html
Area of expertise: Brassinosteroid signaling, heat shock signaling, RLK signaling
Selected Publications:
Li, B., Jiang, S., Gao, L., Wang, W., Luo, H., Dong, Y., Gao, Z., Zheng, S., Liu, X., and Tang, W. (2024). HEAT SHOCK FACTOR A1s are required for phytochrome-interacting factor 4-mediated thermomorphogenesis in Arabidopsis. J. Integr. Plant Biol. 66: 20–35.
Wu, X., Cai, X., Zhang, B., Wu, S., Wang, R., Li, N., Li, Y., Sun, Y., and Tang, W. (2022). ERECTA regulates seed size independently of its intracellular domain via MAPK-DA1-UBP15 signaling. Plant Cell 34: 3773–3789.
Wang, R., Wang, R., Liu, M., Yuan, W., Zhao, Z., Liu, X., Peng, Y., Yang, X., Sun, Y., and Tang, W. (2021). Nucleocytoplasmic trafficking and turnover mechanisms of BRASSINAZOLE RESISTANT 1 in Arabidopsis thaliana. Proc. Natl. Acad. Sci. U.S.A. 118:e2101838118.
Jia, D., Chen, L.G., Yin, G., Yang, X., Gao, Z., Guo, Y., Sun, Y., and Tang, W. (2020). Brassinosteroids regulate outer ovule integument growth in part via the control of INNER NO OUTER by BRASSINOZOLE-RESISTANT family transcription factors. J. Integr. Plant Biol. 62: 1093–1111.
Li, B., Gao, Z., Liu, X., Sun, D., and Tang, W. (2019). Transcriptional Profiling Reveals a Time-of-Day-Specific Role of REVEILLE 4/8 in Regulating the First Wave of Heat Shock–Induced Gene Expression in Arabidopsis. Plant Cell 31: 2353–2369.
Chen, L.G., Gao, Z., Zhao, Z., Liu, X., Li, Y., Zhang, Y., Liu, X., Sun, Y., and Tang, W. (2019). BZR1 Family Transcription Factors Function Redundantly and Indispensably in BR Signaling but Exhibit BRI1-Independent Function in Regulating Anther Development in Arabidopsis. Mol. Plant 12: 1408–1415.
Li, B., Gao, K., Ren, H., and Tang, W. (2018). Molecular mechanisms governing plant responses to high temperatures. J. Integr. Plant Biol. 60: 757–779.
An, Z., Liu, Y., Ou, Y., Li, J., Zhang, B., Sun, D., Sun, Y., and Tang, W. (2018). Regulation of the stability of RGF1 receptor by the ubiquitin-specific proteases UBP12/UBP13 is critical for root meristem maintenance. Proc. Natl. Acad. Sci. U.S.A. 115: 1123–1128.
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