生殖发育

常芳

 

教授 

Chang, Fang, Professor

E-mail: fangchang@fudan.edu.cn

 

 

 

博士,副教授,博士生导师。2009年获得中国农业大学植物学博士学位;2006-2007年美国加州大学河滨分校植物系访问学者;2013年澳洲昆士兰科技大学访问学者。2009-2018年,复旦大学生命科学学院,讲师、副教授。2019年-今,复旦大学生命科学学院教授

 

主要研究方向:

主要从事植物雄性生殖发育的调控机制和环境响应的研究。采用分子遗传、细胞生物学、基因组学、蛋白质组学、以及生物信息学等手段,研究花药发育的转录调控、表观遗传调控、细胞-细胞间信号传导、以及环境对生殖发育的作用和机理。

 

获奖情况:

  • 国家 “优秀青年科学基金项目” (2018)
  • 复旦大学“卓学计划”(2015)
  • 复旦大学“优秀教工党支部书记”(2017)、“十佳辅导员”(2013)
  • 复星医药奖教金(2013、2015、2016、2017)

 

 

代表性成果

  1. Wang S, Lu J, Song X, Ren S, You C, Xu J, Liu C, Ma H, Chang F*. (2017) Cytological and Transcriptomic Evidence Reveal Important Roles of CLE19 in Pollen Exine Formation. Plant Physiol. 175:1186-1202.
  2. Chang F, Cui J, Wang L, Ma H*. (2017) REPLY: The BIF Domain is Structurally and Functionally Distinct from Other Types of ACT-like Domains. Plant Cell. 29:1803-1805.
  3. Zhang S, Yang H, Ding L, Song Z, Ma H, Chang F *, Liu J *. (2017) Tissue-Specific Transcriptomics Reveals an Important Role of the Unfolded Protein Response in Maintaining Fertility upon Heat Stress in Arabidopsis. Plant Cell. 29:1007-1023.
  4. Cui J, You C, Zhu E, Huang Q, Ma H *, Chang F*. (2016) Feedback Regulation of DYT1 by Interactions with Downstream bHLH Factors Promotes DYT1 Nuclear Localization and Anther Development. Plant Cell. 28:1078-1093.
  5. Zhu E, You C, Wang S, Cui J, Niu B, Wang Y, Qi J, Ma H *, Chang F*. (2015) The DYT1-interacting proteins bHLH010, bHLH089, and bHLH091 are redundantly required for Arabidopsis anther development and transcriptome. Plant J. 83:976-990.
  6. Yang H#, Chang F#,*, You C, Cui J, Zhu G, L, Zheng Y, Qi J *, Ma H*. (2014) Whole genome DNA methylation patterns and complex associations with gene structure and expression during flower development in Arabidopsis. Plant J. 81: 268-281.
  7. Chang F, Zhang Z, Jin Y, Ma, H. (2013) Cell Biological Analyses of anther morphogenesis and pollen viability in Arabidopsis and rice. Flower development: methods and protocols. (book chapter 19)
  8. Chang F#, Gu Y#, Ma H, Yang Z*. (2013) AtPRK2 promotes ROP1 activation via phosphorylation of RopGEFs to control polarized pollen tube growth. Mol. Plant. 6: 1187-1201.  
  9. Chang F #, Wang Y #, Wang S, Ma H*. (2011) Molecular control of microsporogenesis in Arabidopsis. Curr. Opin. Plant Biol. 14:66-73.  

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