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Li Chao
cli@bio.ecnu.edu.cn
Chinese, English
Shanghai
East China Normal University
Life Sciences
  • 1998—2002 Bachelor: China Agricultural University
  • 2002—2008 PhD: Institute of Genetics and Developmental Biology, Chinese Academy of Sciences
  • Significant progress in molecular mechanisms of plant development
  • 2008-3—2016-3 Molecular Biology and Biochemistry Department, University of Massachusetts - Research Assistant
  • 2016-4—2021-6 East China Normal University, School of Life Sciences - Researcher / Doctoral Supervisor
  • 2021-7— East China Normal University, School of Life Sciences - Head of Botany
  • 2016 East China Normal University 'Zijiang Young Scholar'
  • 2021 East China Normal University 'Zijiang Outstanding Young Scholar'
  • 2021 Shanghai Biochemistry and Molecular Biology Society 'Young Talent Award'
  • 2021 East China Normal University 'Outstanding Academic Contribution Award', 'Outstanding Mentor Award'
  • 2022 Chinese Society of Plant Physiology and Molecular Biology 'Wei Zhiming Young Innovation Award'
  • 2023 Shanghai 'Top Talent Project of the Oriental Talent Plan'
Molecular mechanisms of plant development
Plant peptide-receptor kinase regulation
  • FERONIA-mediated TIR1/AFB2 oxidation stimulates auxin signalling in Arabidopsis, Li, C.#, 2024
  • Stigma receptors function as barriers between intraspecies and interspecies in Brassicaceae, Li, C.#, 2023
  • CrRLK1L receptor kinases-regulated pollen-pistil interactions, Li, C.#, 2022
  • Pollen–pistil interactions: It takes two to tangle but a molecular cast of many to deliver, Li, C., 2022
  • The xyloglucan galactosylation modulates the mechanical strength of pollen tube cell wall, Li, C.#, 2021
  • Pollen PCP-B peptides unlock a stigma peptide–receptor kinase gating mechanism for pollination, Li, C.#, 2021
  • 小肽激素调控植物生殖发育的研究进展, 李超#, 2021
  • LORELEI-LIKE GPI-ANCHORED PROTEINS 2/3 regulate pollen tube growth as chaperones and co-receptors for ANXUR/BUPS receptor kinases in Arabidopsis, Li, C.#, 2019
  • The REN4 rheostat spatiotemporally coordinates the dynamic apical and lateral domains of Arabidopsis pollen tubes, Li, C., 2018
  • 生长素信号转导研究进展, 李超, 2018
  • FERONIA and her pals: functions and mechanisms, Li, C., 2016
  • Glycosylphosphatidylinositol-anchored proteins act as chaperones and co-receptors for FERONIA receptor kinase signaling in Arabidopsis, Li, C., 2015
  • Glycosylphosphatidylinositol-anchoring: control through modification, Li, C., 2014
  • Involvement of Arabidopsis histone acetyltransferase HAC family genes in the ethylene signaling pathway, Li, C.*,#, 2014
  • Involvement of Arabidopsis HAC family genes in pleiotropic developmental processes, Li, C.*,#, 2014
  • FERONIA receptor-like kinase regulates RHO GTPase signaling of root hair development, Li, C., 2010
  • Overexpression of PGA37/MYB118 and MYB115 promotes vegetative-to-embryonic transition in Arabidopsis, Li, C., 2009
  • The Arabidopsis PARAQUAT RESISTANT2 gene encodes an S-nitrosoglutathione reductase that is a key regulator of cell death, Li, C., 2009
  • Generation of Chemical-inducible Activation Tagging T-DNA Insertion Lines of Arabidopsis thaliana, Li, C., 2005
Molecular Biology Genetics Cell Biology Biochemistry Biophysics Plant Development Peptide Signaling Receptor Kinases Environmental Interaction Developmental Mechanisms

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