Xiaofeng Xu
Chinese, English
Shanghai
Shanghai Normal University
Life Sciences
  • 2012-2015 Doctorate: Tongji University
  • 2009-2012 Master's: Shanghai Normal University
  • 2005-2009 Bachelor's: Shanghai Normal University
  • 2016-present - Shanghai Normal University - Associate Researcher
Plant reproductive development regulation mechanisms
Nanomaterials in plant growth regulation and application
Strawberry molecular breeding (professional master's direction)
  • Slowing Development Facilitates Arabidopsis mgt Mutants to Accumulate Enough Magnesium for Pollen Formation and Fertility Restoration, Xu, X.F., Qian, X.X., Wang, K.Q., Yu, Y.H., Guo, Y.Y., Zhao, X., Wang, B., Yang, N.Y., Huang, J.R., and Yang, Z.N., 2021
  • Delayed callose degradation restores the fertility of multiple P/TGMS lines in Arabidopsis, Wang, K.Q., Yu, Y.H., Jia, X.L., Zhou, S.D., Zhang, F., Zhao, X., Zhai, M.Y., Gong, Y., Lu, J.Y., Guo, Y., Yang, N.Y., Wang, S., Xu, X.F., and Yang, Z.N., 2021
  • IMPERFECTIVE EXINE FORMATION (IEF) is required for exine formation and male fertility in Arabidopsis, Wang, K., Zhao, X., Pang, C., Zhou, S., Qian, X., Tang, N., Yang, N., Xu, P., Xu, X.F., and Gao, J., 2021
  • AUXIN RESPONSE FACTOR17 Directly Regulates MYB108 for Anther Dehiscence, Xu, X.F., Wang, B., Feng, Y.F., Xue, J.S., Qian, X.X., Liu, S.Q., Zhou, J., Yu, Y.H., Yang, N.Y., Xu, P., and Yang, Z.N., 2019
  • Lateral Organ Boundaries Domain 19 (LBD19) negative regulate callus formation in Arabidopsis, Liu, S.Q., Wang, B., Li, X.J., Pan, J.X., Qian, X.X., Yu, Y.H., Xu, P., Zhu, J., and Xu, X.F., 2019
  • Nontoxic fluorescent carbon nanodot serving as a light conversion material in plant for UV light utilization, Sai, L., Liu, S., Qian, X., Yu, Y., and Xu, X.F., 2018
  • Fine regulation of ARF17 for anther development and pollen formation, Wang, B., Xue, J.S., Yu, Y.H., Liu, S.Q., Zhang, J.X., Yao, X.Z., Liu, Z.X., Xu, X.F., and Yang, Z.N., 2017
  • Magnesium Transporter 5 plays an important role in Mg transport for male gametophyte development in Arabidopsis, Xu, X.F., Wang, B., Lou, Y., Han, W.J., Lu, J.Y., Li, D.D., Li, L.G., Zhu, J., and Yang, Z.N., 2015
  • DRM1 and DRM2 are involved in Arabidopsis callus formation, Jiang, F., Xu, X.F., Liu, H., and Zhu, J., 2015
  • The tapetal AHL family protein TEK determines nexine formation in the pollen wall, Lou, Y., Xu, X.F., Zhu, J., Gu, J.N., Blackmore, S., and Yang, Z.N., 2014
  • DYT1 directly regulates the expression of TDF1 for tapetum development and pollen wall formation in Arabidopsis, Gu, J.N., Zhu, J., Yu, Y., Teng, X.D., Lou, Y., Xu, X.F., Liu, J.L., and Yang, Z.N., 2014
  • Arabidopsis AT-hook protein TEK positively regulates the expression of arabinogalactan proteins in controlling nexine layer formation in the pollen wall, Jia, Q.S., Zhu, J., Xu, X.F., Lou, Y., Zhang, Z.L., Zhang, Z.P., and Yang, Z.N., 2014
  • No primexine and plasma membrane undulation is essential for primexine deposition and plasma membrane undulation during microsporogenesis in Arabidopsis, Chang, H.S., Zhang, C., Chang, Y.H., Zhu, J., Xu, X.F., Shi, Z.H., Zhang, X.L., Xu, L., Huang, H., Zhang, S., and Yang, Z.N., 2012
  • A genetic pathway for tapetum development and function in Arabidopsis, Zhu, J., Lou, Y., Xu, X.F., and Yang, Z.N., 2011
Plant Development Reproductive Mechanisms Genetic Regulation Nanomaterials Growth Control Application Strawberry Molecular Breeding Professional Master'S Agricultural Science

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