Meihong Sun
Chinese, English
Shanghai
Shanghai Normal University
Life Sciences
  • 2014-2017 PhD: Shandong Agricultural University
  • 2011-2014 Master's: Shandong Agricultural University
  • 2007-2011 Bachelor's: Shandong Agricultural University
  • 2019-Present - Shanghai Normal University - Associate Researcher
  • 2017-2019 - Shanghai Normal University - Postdoctoral Researcher
Molecular regulation mechanisms of heat tolerance in spinach
Plant secondary metabolism and stress resistance
  • The glucose sensor MdHXK1 phosphorylates a tonoplast Na+/H+ exchanger to improve salt tolerance, Sun, M. H., Ma, Q. J., Hu, D. G., Zhu, X. P., You, C. X., Shu, H. R., Hao, Y. J., 2018
  • The biosynthesis of phenolic acids is positively regulated by the JA-responsive transcription factor ERF115 in Salvia miltiorrhiza, Sun, M. H., Shi M., Wang Y., Huang Q., Yuan T.P., Wang Q., Wang C., Zhou W., Kai G.Y., 2018
  • Molecular cloning and functional characterization of MdNHX1 reveals its involvement in salt tolerance in apple calli and Arabidopsis, Sun M. H., Ma Q. J., Liu X., Zhu X. P., Hu D. G., Hao Y. J., 2017
  • The AP2/ERF transcription factor SmERF1L1 regulates the biosynthesis of tanshinones and phenolic acids in Salvia miltiorrhiza, Huang Q., Sun M. H., Yuan T.P., Wang Y., Shi M., Liu S.J., Tang B.P., Pan J.X., Wang Y., Kai G.Y., 2019
  • An apple sucrose transporter MdSUT2.2 is a phosphorylation target for protein kinase MdCIPK22 in response to drought, Ma, Q. J., Sun, M. H., Lu, J., Kang, H., You, C. X., Hao, Y. J., 2019
Spinach Heat Tolerance Molecular Regulation Plant Biology Stress Response Gene Expression Protein Phosphorylation Metabolism Secondary Metabolites Resistance

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