
姓 名:唐巧玉
电子邮件:2004039@hbmzu.edu.cn
通讯地址:湖北省恩施市学院路39号 365电子娱乐官方网站林学园艺学院
任职情况:博士,副教授,硕士研究生导师
研究领域:植物逆境生理生化;植物硒代谢
一、学习和工作简历:
学习经历:
2023年毕业于四川大学,获理学博士学位
2004年毕业于湖南农业大学,获理学硕士学位
工作经历:
2004-至今,365电子娱乐官方网站教师
二、参与科研项目情况:
(1)丛枝菌根真菌对大豆硒吸收的影响机制(31360498),国家自然科学基金,2014-2017,主持,已结题。
(2)水稻OsFBK21和OsFBX148参与ABA及干旱胁迫信号调控的机理研究(32360075),国家自然科学基金,2024-2027,参与,在研
(3)超聚硒植物壶瓶碎米荠硒化代谢途径的构建(32260070),国家自然科学基金,2023-2026,参与,在研。
(4)植物硒代谢与富硒食品研究(T2020020),湖北省高等学校优秀中青年科技创新团队计划项目,2020-2023,参与,已结题。
(5)一氧化氮调控植物硒代谢机制研究(31260057),国家自然科学基金,2013-2016,参与,已结题。
(6)丛枝菌根真菌(AMF)对山桐子根源干旱化学信号的调控机制研究(2018CFB764),湖北省自然科学基金面上类项目,2018-2021,参与,已结题。
三、主要科研成果(论文):
(1)Nanrong Deng , Xixi Zeng, Jialin Liu , Shengcai Chen , Yanke Lu, Zhixin Xiang, Zhi Hou , Qiaoyu Tang*, Yifeng Zhou*. Genome-Wide Identiffcation of the AP2/ERF Transcription Factor Family and Expression Analysis Under Selenium Stress in Cardamine hupingshanensis. Biology, 2025, 14, 1686
(2)Jing Xiao, Qian Yuan, Anjun Chen, Xixi Zeng, Yanke Lu, Zhixin Xiang, Zhi Hou, Qiaoyu Tang*, Yifeng Zhou*. Sulfotransferases in Cardamine hupingshanensis: Identification, expression, and regulatory role in selenium metabolism under selenium stress, Plant Science, 2025
(3)Xixi Zeng , Guoqiang Luo , Zhucheng Fan, Zhijing Xiao , Yanke Lu, Qiang Xiao, Zhi Hou, Qiaoyu Tang*,Yifeng Zhou*. Whole genome identifcation, molecular docking and expression analysis of enzymes involved in the selenomethionine cycle in Cardamine hupingshanensis, BMC plant biology, 2024, 24: 199
(4)Qiaoyu Tang, Yifeng Zhou, Dazhai Zhou, Jian Hong, Liming Zhao, Guijun Bu, Fang Chen, Lin Tang*. The ethylene response factor RAP2.6 plays a positive role in the regulation of selenium tolerance in Arabidopsis thaliana, Plant Growth Regulation, 2023, 99 (2): 241-250
(5)Zhijing Xiao, Yanke Lu, Yi Zou, Chi Zhang, Li Ding, Kai Luo, Qiaoyu Tang*, Yifeng Zhou*. Gene Identification, expression analysis and molecular docking of ATP sulfurylase in the selenization pathway of Cardamine hupingshanensis, BMC Plant Biology, 2022, 22: 491
(6)Yifeng Zhou, Qiaoyu Tang, Meiru Wu, Di Mou, Hui Liu, Shouchuang Wang, Chi Zhang, Li Ding, Jie Luo*. Comparative transcriptomics provides novel insights into the mechanisms of selenium tolerance in the hyperaccumulator plant Cardamine hupingshanensis, Scientific Report, 2018, 8