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黄涛教授

邮  箱: huangtao@xmu.edu.cn

职称/职务:教授

联系方式:

  • 个人简介
  • 科研领域
  • 代表性成果

1994年,河南农业大学农学专业,学士学位;
1997年,南京农业大学植物生理学专业,硕士学位;
2002年,中国科学院华南植物研究所植物学专业,博士学位;
2002-2006年,瑞典农业大学博士后;
2006年至今,伟德国际官网登录入口生命科学院,教授。
B.S. 1994, Henan Agricultural University, Agriculture;
M.S. 1997, Nanjing Agricultural University, Botany;
Ph.D. 2002, Graduate University of Chinese Academy of Sciences, Botany;
Postdoctoral Fellow, Sweden Agricultural University, 2002-2006;
Professor, School of Life Sciences, Xiamen University, 2006 to Present.

植物干细胞维持与器官分化机理、植物干细胞响应外界环境因子的信号转导通路,植物干细胞分离与大规模培养技术等方面的应用研究,以期通过植物干细胞规模化培养技术来高效生产植物天然有效成份。利用基因工程技术培育符合海峡西岸经济区农业可持续发展所需要的植物新种质。
The mechanism of plant stem cell maintenance and organ differentiation. The response of plant stem cell to environmental factors that ultimately determine plant growth and development. The isolation of stem cell from medical plants and industrial production of medical molecules from stem cell culture.

代表性论文(# co-first author, * Corresponding author):

1.Li Y, Sun W, Yao Y, Zhang L, Xu S, Zhang Q, Huang T. (2023) FRUCTOSE INSENSITIVE1 regulates stem cell function in Arabidopsis in response to fructose signalling. J Exp Bot. 74(10):3060-3073.
2.Zhan S, Zhang Q, Yao Y, Cui Y, Huang T. (2023) Cytosolic isocitrate dehydrogenase regulates plant stem cell maintenance in response to nutrient deficiency. Plant Physiol. 192(4):3069-3087.
3. Cui Y., Rao S., Chang B., Wang X., Zhang K., Hou X., Zhu X., Wu H., Tian Z., Zhao Z., Yang C., Huang T.* AtLa1 protein initiates IRES-dependent translation of WUSCHEL mRNA and regulates the stem cell homeostasis of Arabidopsis in response to environmental hazards. Plant, Cell and Environment 2015;38: 2098–2114. DOI: 10.1111/pce.12535
4. Huang Y., Cui Y., Hou X., Huang T.* The AtMC4 regulates the stem cell homeostasis in Arabidopsis by catalyzing the cleavage of AtLa1 protein in response to environmental hazards. Plant Science 2018;266, 64-75. DOI: 10.1016/j.plantsci.2017.10.008
5. Jia T, Zhang K, Li F, Huang Y, Fan M, Huang T.* The AtMYB2 inhibits the formation of axillary meristem in Arabidopsis by repressing RAX1 gene under environmental stresses. Plant Cell Rep. 2020;39, 1755-1765. Doi: 10.1007/s00299-020-02602-3
6. Jia T., Li F., Liu S., Dou J., Huang T.* DnaJ proteins regulate WUS expression in shoot apical meristem of Arabidopsis. Plants 2021;10, 136. DOI: 10.3390/plants10010136

荣誉、奖励及参加学术团体的情况: