
姓名:常芳
职称:教授/博士生导师
电子邮箱:[email protected]
办公地点:成人动漫 E401-8室
办公电话:021-31246536
研究方向
植物发育与抗逆、植物合成生物学
综合利用分子遗传、细胞、生化、单细胞、合成生物学、及多维组学等方法,重点开展以下几方面的研究:
(1)植物生殖干细胞的命运决定和雄性不育;
(2)全球气候变暖下的育性维持;
(3)植物底盘系统的建立和合成生物学。
欢迎有志于从事上述研究的博士后、研究生加盟我们的研究团队!
个人简介
女,教授/博士生导师,教学科研双 PI。2005-2009,中国农业大学/美国加州大学河滨分校攻读博士学位;2009-2017年,成人动漫 讲师、副教授;2018年至今,成人动漫 教授、博导。课题组长期围绕植物发育、抗逆及植物合成生物学展开系统性研究,承担国家重点研发项目课题、国家优秀青年科学基金、面上项目等,作为通讯作者先后在Nature Communications、The Plant Cell,Molecular Plant等国际主流期刊发表论文 30 余篇,主编英文版《植物发育生物学》专著(21 章,40 余万字)、受邀在Current Opinion of Plant Biology 等期刊撰写综述。国家优秀青年科学基金获得者,中国植生学会“卫志明青年创新奖” 获得者,教育部全国高校教师“双带头人”党支部书记,上海市高校教师“双带头人”党支部书记,上海市优秀党务工作者。
学术兼职:
中国植物学会植物结构与生殖专委会委员;
中国植生学会女科学家分会委员;
中国细胞学会女科学家分会委员;
全国专业标准技术委员会委员;
上海植生学会理事;
上海生化学会理事;
美国 ASPB ASPB Enid MacRobbie Corresponding Membership Award Committee member;
Seed Biology期刊青年编委
授课情况:
现代生物科学导论 A/C、植物细胞与发育生物学(课程 PI)
获奖情况:
国家优秀青年科学基金获得者;
中国植物生理与分子生物学会“卫志明青年创新奖” 获得者;
教育部全国高校教师“双带头人”党支部书记;
上海市高校教师“双带头人”党支部书记;
上海市“优秀党务工作者”。
成人动漫 “三八红旗手”
成人动漫 院长奖
主要代表性论文和论著(仅列第一或通讯作者)
1. Wang S#, Zhang S#, Yu Y#, Wang JZ, Wang JY, Li M, Lu J, Ye J, Li H, Liu Y, Zhao Y, Song W, Dong J, Li J, Liu C, Ma H, Chang F*. (2025). CLE19 Suppresses Brassinosteroid Signaling Output via the BSL-BIN2 Module to Maintain BES1 Activity and Pollen Exine Patterning in Arabidopsis. J Integr Plant Biol, 67(12),3216-3230.【封面文章】
2. Yu Y#, Zhang S#, Chang F*.(2025). CLE peptides: key regulators of plant development and stress adaption. Seed Biol 4: e009.
3. Wang J., Lai Z., Lei Z. Chang F*. (2025). Comprehensive Analysis of RNA Expression and Isoform Diversity Reveals Molecular Mechanisms in Plant Responses to Diverse Thermal Conditions. Phenomics, DOI: 10.1007/s43657-025-00254-5.
4. Lai Z, Wang J, Fu Y, Wang M, Ma H, Peng S-Q, Chang F*. (2024). Revealing the role of CCoAOMT1: fine-tuning bHLH transcription factors for optimal anther development. Sci China Life Sci. 2024,67(3):565-578.
5. Yu Y#, Song W#, Zhai N#, Zhang S, Wang J, Wang S, Liu W, Huang CH, Ma H, Chai J, Chang F*. (2023). PXL1 and SERKs act as receptor-coreceptor complexes for the CLE19 peptide to regulate pollen development. Nat Commun. 14, 3307.
6. Yang Q, Wang J, Zhang S, Zhan Y, Shen J, Chang F*. (2023). ARF3-Mediated Regulation of SPL in Early Anther Morphogenesis: Maintaining Precise Spatial Distribution and Expression Level. Int J Mol Sci. 24(14):11740.
7. Chang F*, Wang S, Lai Z, Zhang Z, Jin Y, Ma H. (2023) Cell Biological Analyses of Anther Morphogenesis and Pollen Viability in Arabidopsis and Rice. Methods Mol Biol.2686:199-218.
8. Lai Z., Wang J., Peng S., Chang F.* (2022) bHLH010/089 Transcription Factors Control Pollen Wall Development via Specific Transcriptional and Metabolic Networks in Arabidopsis thaliana. Int J Mol Sci. 23, 11683.
9. Fu Y., Li M, Zhang S, Yang Q, Zhu E, You C, Qi J, Ma H*, Chang F* (2020) Analyses of functional conservation and divergence reveals requirement of bHLH010/089/091 for pollen development at elevated temperature in Arabidopsis. JGG, 2020, 47(2020):477-492.【封面文章】
10. Lu J#, Fu Y#, Li M, Wang S, Wang J, Yang J, Ye J, Zhang X, Ma H*, Chang F* (2020) Global Quantitative Proteomics Studies Revealed Tissue-Preferential Expression and Phosphorylation of Regulatory Proteins in Arabidopsis. Int J Mol Sci. 21, 6116.
11. Wang S., Lu J., Song X-F., Ren S-C., You C., Xu J., Liu C-M., Ma H., Chang F.*(2017) Cytological and Transcriptomic Evidence Reveal Important Roles of CLE19 in Pollen Exine Formation. Plant Physiol. 175:1186-1202.
12. Chang F., Cui J., Wang L., Ma H.* (2017) The BIF Domain is Structurally and Functionally Distinct from Other Types of ACT-like Domains. Plant Cell, 29:1803-1805.
13. Zhang S-S., Yang H., Ding L., Song Z-T., Ma H., Chang F. *, Liu J-X. * (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.
14. 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. 【亮点文章】
15. 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.
16. Yang H.#, Chang F.#,*, You C., Cui J., Zhu G., L., Zheng Y., Qi J. *, Ma H.* (2015) Whole genome DNA methylation patterns and complex associations with gene structure and expression during flower development in Arabidopsis.Plant J. 81: 268-281.
17. Chang F., Zhang Z., Jin Y., Ma, H*. Cell biological analyses of anther morphogenesis and pollen viability in Arabidopsis and rice. Methods Mol Biol. 2014,1110:203-16.
18. Chang F.#, Gu Y.#, Ma H., Yang Z*. AtPRK2 promotes ROP1 activation via phosphorylation of RopGEFs to control polarized pollen tube growth. Mol Plant 2013,6:1187-1201.
19. Chang F. #, Wang Y. #, Wang S., Ma H*. Molecular control of microsporogenesis in Arabidopsis. Curr Opin Plant Biol.2011,14:66-73.
