Gao Qifei
qfgao@sjtu.edu.cn
Chinese, English
Shanghai
Shanghai Jiao Tong University
Agriculture and Biotechnology
  • 2009-2015 PhD in Plant Physiology and Ecology, Shanghai Institute of Plant Physiology and Ecology, Chinese Academy of Sciences
  • 2005-2009 Bachelor's Degree, Nanjing Agricultural University
  • 2022.09-present Tenured Associate Professor at Shanghai Jiao Tong University, School of Agriculture and Biology
  • 2017.09-2022.08 Postdoctoral Researcher at University of California, Berkeley, Department of Plant and Microbial Biology
  • 2015.12-2017.03 Postdoctoral Researcher at Shaanxi Normal University, School of Life Sciences
Calcium signaling in plant male-female gamete interactions
Calcium signaling in plant stress and disease resistance processes
  • A receptor-channel trio conducts Ca2+ signaling for pollen tube reception, Gao, Q., Wang, C., Xi, Y., Shao, Q., Li, L., and Luan, S., 2022
  • A plasma membrane transporter coordinates phosphate reallocation and grain filling in cereals, Ma, B., Zhang, L., Gao, Q., Wang, J., Li, X., Wang, H., Liu, Y., Lin. H., Liu, J., Wang, X., Li, Q., Deng, Y., Tang, W., Luan, S. and He, Z., 2021
  • Two glutamate- and pH-regulated Ca2+ channels are required for systemic wound signaling in Arabidopsis, Shao, Q., Gao, Q., Lhamo, D., Zhang, H., Luan, S., 2020
  • Calcium spikes, waves and oscillations in plant development and biotic interactions, Tian, W., Wang, C., Gao, Q., Li, L., and Luan, S., 2020
  • Dynamic interactions of plant CNGC subunits and calmodulins drive oscillatory Ca2+ channel activities, Pan, Y., Chai, X., Gao, Q., Zhou, L., Zhang, S., Li, L., and Luan, S., 2019
  • CNGC18 is an essential Ca2+ channel in pollen tube tips for pollen tube guidance to ovules in Arabidopsis, Gao, Q., Gu, L.L., Wang, H.Q., Fei, C.F., Fang, X., Hussain, J., Sun, S.J., Dong, J.Y., Liu, H., and Wang, Y.F., 2016
  • Arabidopsis CNGC18 is a Ca2+-permeable channel, Gao, Q., Fei, C., Dong, J, Gu, L., and Wang, Y., 2014
Calcium Signaling Plant Gamete Interaction Stress Disease Resistance Transduction Reception

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