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周飞
准聘副教授、特聘研究员
研究领域
植物次生代谢与合成生物学
南京市栖霞区仙林大道163号,210023
feizhou@nju.edu.cn

工作经历

2023.06 -         南京大学生命科学学院,博士研究生导师

2023.03 -          南京大学生命科学学院,特聘研究员

2022.01 - 2023.02 南京大学生命科学学院,特任副研究员

2016.10 - 2021.10 美国密歇根大学,博士后


荣誉奖励

2023,国家级青年人才计划


学术任职

2024-,江苏省植物生理学会理事


代表性成果

1. Fei Zhou, Ya-Nan Zhao, James Perkins, Haiyang Xu, Eran Pichersky, Rod Peakall* and Darren C J Wong*. Fine-tuned terpene synthase gene expression, functional promiscuity, and subcellular localization: implications for the evolution of complex floral volatile bouquet in Caladenia orchids. Plant and Cell Physiology 2025, 66(4):627-644.

2. Shuyan Song, Ruitao Jin, Yufan Chen, Sitong He, Kui Li, Qian Tang, Qi Wang, Linjuan Wang, Mengjuan Kong, Natalia Dudareva*, Brian J. Smith*, Fei Zhou* and Shan Lu*. The functional evolution of architecturally different plant geranyl diphosphate synthases from geranylgeranyl diphosphate synthase. The Plant Cell 2023, koad083.

3. Shuyan Song, Shu-yuan Song, Peiwen Nian, Dexin Lv, Yunhe Jing, Shan Lu*, Qiang Wang*, and Fei Zhou*. Transcriptomic analysis suggests a coordinated regulation of carotenoid metabolism in ripening chili pepper (Capsicum annuum var. conoides) fruits. Antioxidants 2022, 11:2245.

4. Qi Wang, Guang-Ling Wang, Shu-Yuan Song, Ya-Nan Zhao, Shan Lu* and Fei Zhou*. ORANGE negatively regulates flowering time in Arabidopsis thaliana. Journal of Plant Physiology 2022, 274:153719.

5. Fei Zhou, Robert L. Last and Eran Pichersky*: Degradation of salicylic acid to catechol in Solanaceae by SA 1-hydroxylases. Plant Physiology 2021, 185:876-891.

6. Fei Zhou and Eran Pichersky*: The complete functional characterization of the terpene synthase family in tomato. New Phytologist 2020, 226:1341-1360.

7. Fei Zhou and Eran Pichersky*: More is better: the diversity of terpene metabolism in plants. Current Opinion in Plant Biology 2020, 55:1-10.

8. Fei Zhou, Cheng-Yuan Wang, Michael Gutensohn, Ling Jiang, Peng Zhang, Dabing Zhang, Natalia Dudareva and Shan Lu*: A recruiting protein of geranylgeranyl diphosphate synthase controls metabolic flux toward chlorophyll biosynthesis in rice. Proceedings of the National Academy of Sciences 2017, 114:6866-6871.