杜斐
职 称
电 话
电子邮件
创新团队
研 究 组
研究中心
组 员:
教育经历
- 2011-09 至 2016-12, 德国弗莱堡大学, 生物系, 博士
- 2008-09 至 2011-06, 北京师范大学, 生命科学学院, 硕士
- 2004-09 至 2008-06, 曲阜师范大学, 生命科学学院, 学士
工作经历
- 2024-08 至今, 中国农业科学院作物科学研究所, 所聘研究员
- 2021-04 至 2024-07, 中国科学院遗传与发育生物学研究所, 副研究员
- 2017-01 至 2021-04, 中国科学院遗传与发育生物学研究所, 博士后
研究方向
- 1. 小麦穗型建立的发育生物学基础
- 2. 小麦穗型的改良与设计
学术兼职
- 中国细胞生物学学会会员 (植物细胞生物学分会)
- 中国作物学会高级会员(小麦专业委员会)
- 2020-2022, Molecular Plant, 青年编委
- 2022至今, Frontiers in Plant Science, 青年编委
- 2024至今, Seed Biology, 青年编委
获奖成果
- 中国细胞生物学学会第8、11、13届显微摄影大赛优秀作品奖(2019, 2022, 2024)
- 中国科学院遗传与发育生物学研究所益海嘉里优秀博士后奖(2020)
- 植物基因组学国家重点实验室2018、2019年度夏季青年学术论坛墙报一等奖(2018, 2019)
- 植物基因组学国家重点实验室2017年度冬季青年学术论坛报告二等奖(2018)
- 弗莱堡大学分子植物科学系2016年度最佳报告人奖(2016)
- 北京师范大学优秀毕业生(2011)
- 北京师范大学优秀学术型硕士 (2011)
- 细胞增殖与调控生物学教育部重点实验室2010年度青年论坛学术成果一等奖(2010)
- 曲阜师范大学优秀毕业生(2008)
- 山东省优秀学生干部(2007)
承担项目
- 国家重点研发计划青年科学家项目(2024YFF1001200,2024.12-2027.11),TaDOG1-like 基因调控小麦穗发芽的分子机制解析及其抗性网络研究,项目骨干,在研
- 山东省重点研发计划(农业良种工程)项目(2024LZGCQY001,2024.10-2027.9),突破性小麦新品种培育与产业化,子课题负责人,在研
- 国家自然科学基金青年项目 (32000507, 2021.1-2023.12), 调控拟南芥体细胞再生关键基因的鉴定,主持,结题
- 国家基金委国际合作与交流项目 (31961133010, 2019.1-2022.12), 表皮细胞形态建立的生物力学调控研究,参与,结题
- 国家自然科学基金面上项目 (31872835, 2019.1-2022.12), 叶片形态建成的调控网络解析,参与,结题
主要论文
- Du, F., Dai, J.*, Jiao, Y*. (2024) Insights into a functional synthetic plant genome. New Phytologist. 244: 46–50.下载
- Wang, Y.#, Du, F.#, Wang, J., Wang, K., Tian, C., Qi, X., Lu, F., Liu, X., Ye, X., Jiao, Y*. (2022) Improving bread wheat yield through modulating an unselected AP2/ERF gene. Nature Plants. 8: 930–939.下载
- Zhao, F#., Du, F#., Oliveri, H#., Zhou, L#., Ali, O#., Chen, W., Feng, S., Wang, Q., Lü, S., Long, Mian., Schneider, R., Sampathkumar, A., Godin, C., Traas, J*. and Jiao, Y*. (2020) Microtubule-mediated wall anisotropy contributes to leaf blade flattening. Current Biology. 30: 3972–3985.下载
- Du, F#*., Mo, Y#., Israeli, A., Wang, Q., Yifhar, T., Ori, N. and Jiao, Y. (2020) Leaflet initiation and blade expansion are separable in compound leaf development. Plant Journal. 104: 1073–1087.下载
- Du, F. and Jiao, Y*. (2020) Mechanical control of plant morphogenesis: concepts and progress. Current Opinion in Plant Biology. 57: 16–23.下载
- Du, F#., Gong, W#., Boscá, S., Tucker, M., Vaucheret, H. and Laux, T*. (2020) Dose-dependent AGO1-mediated inhibition of the miRNA165/166 pathway modulates stem cell maintenance in arabidopsis shoot apical meristem. Plant Communications. 1, 100002.下载
- Xiong, Y#., Wu, B#., Du, F#., Guo, X., Tian, C., Hu, J., Lü, S., Long, M., Zhang, L*., Wang, Y*. and Jiao, Y*. (2021) A crosstalk between auxin and brassinosteroid regulates leaf shape by modulating growth anisotropy. Molecular Plant. 14: 949–962.下载
- Du, F#., Zhao, F#., Traas, J*. and Jiao, Y*. (2021) Visualization of cortical microtubule networks in plant cells by live imaging and immunostaining. STAR Protocols. 2(1):100301.下载
- Zhou, L#*., Du, F#., Feng, S., Hu, J., Lü, S., Long, Mian. and Jiao, Y. (2020) Epidermal restriction confers robustness to organ shapes. Journal of Integrative Plant Biology. 62(12):1853-1867.下载
- Du, F#., Guan, C#., and Jiao, Y*. (2018) Molecular mechanisms of leaf morphogenesis. Molecular Plant. 11(9): 1117-1134.下载
- Jiao, Y*., Du, F. and Traas, J*. (2021) The mechanical feedback theory of leaf lamina formation. Trends in Plant Science. 26(2):107-110.下载
- Roodbarkelari, F., Du, F., Truernit, E. and Laux, T*. (2015) ZLL/AGO10 maintains shoot meristem stem cells during embryogenesis by blocking auxin response. BMC Biology. 13: 74.下载
- Du, F., Zhang, Y. and Ren, H*. (2011) The universal bundling activity of AtVLN4 in diffusely growing cells. Plant Signaling & Behavior. 6(9): 1290-1293.下载
- Zhang, Y#., Xiao, Y#., Du, F., Cao, L., Dong, H. and Ren, H*. (2011) AtVLN4 is involved in root hair growth through regulating actin organization in a Ca2+-denpendent manner. New Phytologist. 190(3): 667-82.下载
- Xue, X#., Guo, C#., Du, F., Lu, Q., Zhang, C. and Ren, H*. (2011) AtFH8 is involved in root development through regulating actin cytoskeleton in dividing cells. Molecular Plant. 4(2): 264–278.下载
- Du, F. and Ren, H*. (2011) Development and application of probes for labeling the actin cytoskeleton in living plant cells. Protoplasma. 248(2): 239-50.下载
- Guan, C., Du, F., Xiong, Y. and Jiao, Y*. (2019) The 35S promoter-driven mDII auxin control sensor is uniformly distributed in leaf primordia. Journal of Integrative Plant Biology. 61(11): 1114-1120.下载
- Pei, W., Du, F., Zhang, Y., He, T. and Ren, H*. (2012) Control of the actin cytoskeleton in root hair development. Plant Science. 187: 10–18.下载