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钱崇祯助理教授

邮  箱:qiancz2019@xmu.edu.cn

职称/职务:助理教授

联系方式:

  • 个人简介
  • 科研领域
  • 代表性成果

2011年,beat365官方网站生物技术专业,学士学位;
2014年,beat365官方网站细胞生物学专业,硕士学位;
2019年,beat365官方网站植物学专业,博士学位;
2021年,beat365官方网站,博士后;
2022年至今,beat365官方网站,助理教授。
B.S. 2011, Lanzhou University, Biotechnology;
M.S. 2014, Lanzhou University, Cell Biology;
Ph.D. 2019, Xiamen University, Botany;
Postdoctoral Fellow, School of Life Sciences, Xiamen University, 2021;
Assistant Professor, School of Life Sciences, Xiamen University, 2022 to Present.


光是影响植物生长发育最重要的环境因子之一。非损伤的ultraviolet-B(UV-B)光促进植物的光形态建成和胁迫适应。在UV-B光照射时,UV RESISTANCE LOCUS 8(UVR8)蛋白能够感知UV-B光,从二聚体转化为单体,启动UV-B光信号转导。本人主要从事拟南芥UV-B光受体亚细胞定位与功能研究。
Light is one of the most important environmental cue for plant growth and development. Non-damaging ultraviolet B (UV-B) light promotes photomorphogenic development and stress acclimation through UV-B-specific signal transduction in Arabidopsis. UV-B irradiation induces monomerization of the UV-B photoreceptor UV RESISTANCE LOCUS 8 (UVR8). Our main research interest is to explore the molecular mechanism of the subcellular localization and activity of Arabidopsis UV-B Photoreceptor.

代表性论文(# co-first author, * Corresponding author):

1.Qian, C., Chen, Z., Liu, Q., Mao, W., Chen, Y., Tian, W., Liu, Y., Han, J., Ouyang, X., Huang, X. (2020) Coordinated transcriptional regulation by the UV-B photoreceptor and multiple transcription factors for plant UV-B responses. Mol Plant.13(5):777-792.
2.Qian, C., Mao, W., Liu, Y., Ren, H., Lau, O.S., Ouyang, X., Huang, X. (2016) Dual-source nuclear monomers of UV-B light receptor direct photomorphogenesis in Arabidopsis. Mol Plant. 9(12):1671-1674. COVER STORY
3.Ren, H., Han, J., Yang, P., Mao, W., Liu, X., Qiu, L., Qian, C. , Liu, Y., Chen, Z., Ouyang, X., Chen, X., Deng, X.W., Huang, X. (2019) Two E3 ligases antagonistically regulate the UV-B response in Arabidopsis. Proc Natl Acad Sci USA. 116(10):4722-4731.
4.Wang Z, Qian C, Guo X, Liu E, Mao K, Mu C, Chen N, Zhang W, Liu H. (2016) ELS1, a novel MATE transporter related to leaf senescence and iron homeostasis in Arabidopsis thaliana. Biochem Biophys Res Commun . 476(4):319-325.

荣誉、奖励及参加学术团体的情况: