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百事3 > 師資隊伍 > 專任教師 > 遺傳育種部 > 正文
師資隊伍
李娜 研究員
添加時間:2018-06-08

李娜_編輯.jpg

李娜,1976年8月出生,博士,研究員👨🏻‍🦰,主要研究方向為園藝作物器官發育調控的分子機製👨🏼‍🦲。


教育背景

1995.09-1999.07,東北師範大學,生物技術專業🚣🏽,學士學位

2001.09-2004.07🙋‍♀️,中國科百事3遺傳與發育生物學研究所,遺傳學專業🔪,碩士學位

2004.09-2008.01🛋,中國科百事3遺傳與發育生物學研究所7️⃣,發育生物學專業,博士學位


工作經歷

2020.01至今📡,河北農業大學,研究員

2019.06至今,河北農業大學,校聘教授

2015.01-2019.05,中國科百事3遺傳與發育生物學研究所,副研究員

2013.09-2013.12🔪,英國John Innes Centre,訪問學者

2011.05-2014.12,中國科百事3遺傳與發育生物學研究所🧖🏽‍♀️,助理研究員

2008.11-2011.04,荷蘭Wageningen大學,博士後


◆榮譽稱號

2020年,河北農業大學“高峰人才”

2019年,河北農業大學“太行學者”三層次


教學情況

本科課程,分子生物學專題與實踐

博士課程📗,分子生物學研究專題

留學生課程☛,高級分子生物學專題

留學生課程,蔬菜seminar

留學生課程👨‍👧‍👦,蔬菜生物技術與品種改良


科研項目

國家自然科學基金面上項目,LONG8及其互作蛋白LGIP1調控水稻籽粒大小的分子機理研究,2019/01-2022/12,第1(59萬元)

國家自然科學基金國際(地區)合作與交流項目項目🖕,兩個核心生長調節因子的下遊分子途徑研究,2019.01-2021.12,第2(200萬元)

國家自然科學重大研究計劃,水稻籽粒大小調控的分子遺傳網絡解析,2018.01-2019.12,第6(450萬元)

國家重點研發項目,主要農作物品質性狀形成的分子基礎,2016.1-2020.12,任務負責人(119萬元)

轉基因重大專項,高產性狀關鍵基因克隆及功能驗證,2016.1-2018.12🦑,任務負責人(70.09萬元)

國家自然科學重大研究計劃,植物生長素調控種子和器官大小的分子機理研究🕸,2015.01-2015.12,第2(85萬元)

國家自然科學基金青年基金項目,擬南芥DA2基因調控種子和器官大小的分子機製🪬,2014/01-2016/12🧡,第1(23萬元)

留學回國人員科研啟動基金,第46批,第1(3萬元)


◆授權專利

ZL 2014 8 00 197. 9(中國),調節植物中的種子和器官大小的方法👧🏼👨‍👩‍👦‍👦,李雲海;夏天;李娜;傑克·杜梅尼爾;邁克爾·貝文,申請日期★:30 July 2014,授權公告日:20191126

No 033454Eurasian),Methods of modulating seed and organ size in plants🕠,Li Yunhai, Xia Tian, Li Na, Dumenil Jack, Bevan Michael🫵🏼,申請日期🤜🙇🏻‍♂️:30 July 2014🙅🏼‍♀️🎅🏼,授權日期:20191031

US 10329577 B2USA),Methods of modulating seed and organ size in plantsYunhai Li, Tian Xia, Na Li, Jack Dumenil, Michael Bevan🕛,申請日期💷🤦🏻‍♂️:2014730日🥌,授權日期:2019625

No 119645Ukraine),A method of increasing the yield of plantsYunhai Li, Tian Xia, Na Li, Jack Dumenil, Michael Bevan,申請日期🍰:20168月,授權日期🧑🏼‍🦰:2019725


◆論文論著 (*co-first author)

Li, N.*, Xu, R.*, and Li, Y. (2019). Molecular networks of seed size control in plants. Annual Review of Plant Biology 70, 435–63

Xu, R.*, Li, N.*, Li, Y. (2019) Control of grain size by G-protein signaling in rice. Journal of Integrative Plant Biology 5, 533-540

Li, N.*, Liu, Z.*, Wang, Z., Ru, L., Gonzalez, N., Baekelandt, A., Pauwels, L., Goossens, A., Xu, R., Zu, Z., Inze, D. and Li, Y. (2018). STERILE APETALA modulates the stability of a repressor protein complex to control organ size in Arabidopsis thaliana. PLoS Genetics 14, e1007218

Li, N., Xu, R., Duan, P. and Li, Y. (2018). Control of grain size in rice. Plant Reproduction. DOI:10.1007/s00497-018-0333-6

Li, S., Xu, R., Li, A., Liu, K., Gu, L., Li, M., Zhang, H., Zhang, Y., Zhuang, S., Wang, Q., Gao, G., Li, N., Zhang, C., Li, Y., Yu, B. (2018). SMA1, a homolog of the splicing factor Prp28, has a multifaceted role in miRNA biogenesis in Arabidopsis. Nucleic Acids Research. DOI:10.1093/nar/gky591 11.56

Xu, R., Duan, P., Yu, H., Zhou, Z., Zhang, B., Wang, R., Li, J., Zhang, G., Zhuang, S., Lyu, J., Li, N., Chai, T., Tian, Z., Yao, S., Li, Y. (2018). Control of Grain Size and Weight by the OsMKKK10-OsMKK4-OsMAPK6 Signaling Pathway in Rice. Molecular Plant. DOI:10.1016/j.molp.2018.04.004

Xu, R., Yu, H., Wang, J., Duan, P., Zhang, B., Li, J., Li, Y., Xu, J., Lyu, J., Li, N., Chai, T. (2018). A Mitogen-Activated Protein Kinase Phosphatase influences grain size and weight in rice. Plant Journal. doi: 10.1111/tpj.13971

Dong, H.*, Dumenil, J.*, Lu, F.H.*, Li, N.*, Vanhaeren, H., Naumann, C., Klecker, M., Prior, R., Smith, C., McKenzie, N., et al. (2017). Ubiquitylation activates a peptidase that promotes cleavage and destabilization of its activating E3 ligases and diverse growth regulatory proteins to limit cell proliferation in Arabidopsis. Genes & Development 31, 197-208.

Huang, K., Wang, D., Duan, P., Zhang, B., Xu, R., Li, N., Li, Y. (2017). WIDE AND THICK GRAIN 1, which encodes an otubain-like protease with deubiquitination activity, influences grain size and shape in rice. Plant Journal 91, 849-860.

Li, N., and Li, Y. (2016). Signaling pathways of seed size control in plants. Current Opinion in Plant Biology 33, 23-32

Xu, Y., Jin, W., Li, N., Zhang, W., Liu, C., Li, C., and Li, Y. (2016). UBIQUITIN-SPECIFIC PROTEASE14 Interacts with ULTRAVIOLET-B INSENSITIVE4 to Regulate Endoreduplication and Cell and Organ Growth in Arabidopsis. The Plant Cell 28, 1200-1214.

Wang, Z., Li, N., Jiang, S., Gonzalez, N., Huang, X., Wang, Y., Inze, D., and Li, Y. (2016). SCF(SAP) controls organ size by targeting PPD proteins for degradation in Arabidopsis thaliana. Nature Communications 7, 11192.

Li, N., and Li, Y. (2015). Maternal control of seed size in plants. Journal of Experimental Botany 66, 1087-1097

Du, L.*, Li, N.*, Chen, L., Xu, Y., Li, Y., Zhang, Y., and Li, C. (2014). The ubiquitin receptor DA1 regulates seed and organ size by modulating the stability of the ubiquitin-specific protease UBP15/SOD2 in Arabidopsis. The Plant Cell 26, 665-677

Li, N., and Li, Y. (2014). Ubiquitin-mediated control of seed size in plants. Frontiers in Plant Science 5, 332

Xia, T.*, Li, N.*, Dumenil, J.*, Li, J., Kamenski, A., Bevan, M.W., Gao, F., and Li, Y. (2013). The Ubiquitin Receptor DA1 Interacts with the E3 Ubiquitin Ligase DA2 to Regulate Seed and Organ Size in Arabidopsis. The Plant Cell 25, 3347-3359

Fabregas, N., Li, N., Boeren, S., Nash, T.E., Goshe, M.B., Clouse, S.D., de Vries, S., and Cano-Delgado, A.I. (2013). The BRASSINOSTEROID INSENSITIVE1- LIKE3 Signalosome Complex Regulates Arabidopsis Root Development. The Plant Cell 25, 3377-3388

Peng, Y., Ma, W., Chen, L., Yang, L., Li, S., Zhao, H., Zhao, Y., Jin, W., Li, N., Bevan, M.W., Li, X., Tong, Y., and Li, Y. (2013). Control of root meristem size by DA1-related protein 2 in Arabidopsis thaliana. Plant Physiology 161, 1542-1556

Smaczniak, C.*, Li, N.*, Boeren, S., America, T., van Dongen, W., Goerdayal, S.S., de Vries, S., Angenent, G.C., and Kaufmann, K. (2012). Proteomics-based identification of low-abundance signaling and regulatory protein complexes in native plant tissues. Nature Protocols 7: 2144-2158

Li, S., Liu, Y., Zheng, L., Chen, L., Li, N., Corke, F., Lu, Y., Fu, X., Zhu, Z., Bevan, M.W., and Li, Y. (2012). The plant-specific G protein gamma subunit AGG3 influences organ size and shape in Arabidopsis thaliana. New Phytologist 194: 690-703.

Mravec, J., Petrášek, J., Li, N., Boeren, S., Karlova, R., Kitakura, S., Pařezová, M., Naramoto, S., Nodzyński, T., Dhonukshe, P., Bednarek, S., Zažímalová, E., Vries, S., and Friml, J. (2011). Cell plate restricted association of DRP1A and PIN proteins is required for cell polarity establishment in Arabidopsis. Current Biology 21: 1055-1060

Li, N.*, Yuan, L.*, Liu, N., Shi, D., Li, X., Tang, Z., Liu, J., Sundaresan, V., and Yang, W.C. (2009). SLOW WALKER2, a NOC1/MAK21 homologue, is essential for coordinated cell cycle progression during female gametophyte development in Arabidopsis. Plant Physiology 151: 1486-1497


團隊和平臺

省部共建華北作物改良與調控國家重點實驗室

蔬菜分子染色體工程與新品種選育創新團隊

河北省“巨人計劃”創新團體

河北省蔬菜產業協同創新中心

河北省蔬菜種質創新與利用重點實驗室


學術會議

參加國際學術會議8次,全國性學術會議10次,省級學術會議5次,其他學術會議10次🤌🏿。


聯系方式

電子郵件:yyln@hebau.edu.cn

 

 

 

 

 

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