方军
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承担科研项目1. 国家自然科学基金面上项目,水稻组蛋白甲基化酶基因SDG724在种子休眠和萌发中调控机制,2014-2017 2. 国家重点研发专项,北方粳稻优质高产高效新品种培育,2017-20203. 国家转基因重点项目,东北水稻耐盐碱基因的挖掘及耐盐碱水稻的培育,2018-2020 4. 东北地理与农业生态研究所人才项目,高纬度亚寒带区域水稻抽穗期的适应机制,2016-20195. 黑龙江省杰出青年基金, ABA和糖调控水稻穗发芽的遗传网络,2017-2020招生信息生态学071007-遗传学招生方向水稻抽穗期分子机制教育背景2003-09--2007-06 中国科学院遗传与发育生物学研究所 博士2000-09--2003-07 南京农业大学农学院 硕士1996-09--2000-07 长江大学(湖北农学院) 本科工作经历2016年3月至今:中科院东北地理与农业生态研究所,研究员 2013年10月到2016年2月:中科院遗传与发育生物学研究所,副研究员2013年6月到9月:日本冈山大学资源植物科学研究所,客座研究员;2010年1月到2013年5月:中科院遗传与发育生物学研究所,副研究员;2007年10到2009年12月:中科院遗传与发育生物学研究所,助理研究员;2007年7月到2007年9月:中科院遗传与发育生物学研究所,助理研究员。研究领域
"针对水稻生产实际问题,如杂交稻不育系包颈、两系制种安全性,现代轻简栽培要求品种(早熟,抗倒,萌发快等)开展水稻重要农艺性状基因的挖掘和克隆;重点在如下:1、光温调控水稻抽穗期分子机制及应用2、水稻耐盐碱的分子机制及耐盐碱品种培育3、水稻的休眠和萌发"近期论文
Du L#, Xu F#, Fang J#, Gao S, Tang J, Fang S, Wang H, Tong H, Cao S, Zhang F, Chu J, Wang G, Chu C (2018) Endosperm sugar accumulation caused by mutation of PHS8/ISA1 leads to pre-harvest sprouting in rice. Plant J. Doi: 10.1111/tpj.13970. (IF 5.46)Wang M, Wu Hua, Fang J, Chu C, Wang X (2017) A long noncoding RNA involved in rice reproductive development by negatively regulating osa-miR160.Science Bulletin 62:470–475(IF 1.78)Li X, Zhou W,Ren Y, Tian X, Lv T, Wang Z, Fang J, Chu C, Yang J, Bu Q*(2017) High-efficiency breeding of early-maturing rice cultivars via CRISPR/Cas9-mediated genome editing. J Genet Genomics. 2017 Mar 20;44 (3):175-178. (IF 3.98)Gao S,Fang J, Xu F, Wang W,Chu C*(2016)Rice HOX12 Regulates Panicle Exsertion by Directly Modulating the Expression of ELONGATED UPPERMOST INTERNODE1. Plant Cell. 28(3):680-95 B (IF 10.53)Li X, Liu H, Wang M, Liu H, Tian X, Zhou W, Lv T, Wang Z, Chu C, Fang J*, Bu Q*(2015) Combinations of Hd2 and Hd4 genes determine rice adaptability to Heilongjiang Province, northern limit of China. J Integr Plant Biol. 57(8):698-707(IF 3.67)Xu F#, Fang J#, Ou S , Gao S , Zhang F , Du L , Xiao Y, Wang H, Sun X, Chu J , Wang G, Chu C* (2015) Variations in CYP78A13 coding region influence grain size and yield in rice. Plant Cell Environment. 38(4):800-11(IF 6.17)Gao S#, Fang J#, Xu F, Wang W, Sun X, Chu J, Cai B, Feng Y, Chu C* (2014) A cytokinin oxidase/dehydrogenase gene OsCKX4 integrates cytokinin and auxin signaling to control rice crown root formation. Plant Physiol.165(3):1035-1046( IF 8.03)Liu Y, Fang J, Xu F, Chu J, Yan C, Schläppi M, Wang Y, Chu C (2014) Expression patterns of ABA and GA metabolism genes and hormone levels during rice seed development and imbibition: A comparison of dormant and non-dormant rice cultivars. J. Genet Genomics, 41(6):327-38 ( IF 3.98)Sun C, Chen D, Fang J, Wang P, Deng X*, Chu C* (2014) Understanding the Genetic and Epigenetic Architecture in Complex Network of Rice Flowering Pathways. Protein & Cell. 5(12):889-98 (IF 3.24)Guo XL #, Hou XM#, Fang J#*, Wei PW, Xu B, Chen ML, Feng YQ,Chu C*(2013)The rice GERMINATION-DEFECTIVE1, encoding a B3 domain transcriptional repressor, is an essential regulator for seed germination and seedling development. Plant J.75:403-416. (IF 5.46)Sun C#, Fang J#, Zhao T, Xu B, Zhang F, Liu L, Tang J, Zhang G, Deng X, Chen F,Qian Q, Cao X, Chu C* (2012) The histone methyltransferase SDG724 mediates H3K36me2/3 deposition at MADS50 and RFT1, and promotes flowering in rice. Plant Cell. 24(8): 3235-3247 (IF 10.53)Fang J#., Chai C#., Qian Q., Li C., Tang J., Sun L., Huang Z., Guo X., Sun C., Liu M., Zhang Y., Lu Q., Wang Y., Lu, C, Han B., Chen F., Cheng Z., Chu C*. (2008) Mutations of genes in synthesis of the carotenoid precursors of ABA lead to preharvest sprouting and photo-oxidation in rice, Plant J., 54: 177-189. (IF 6.8)Zhang FT#, Fang J#, Sun CH, Li RB, Luo XD, Xie JK, Deng X-J, Chu CC* (2012) Characterization of a rice dwarf and twist leaf 1 (dtl1) mutant and fine mapping of DTL1 gene, Hereditas, 34 (1): 79-86. (IF:0.75)Chai C#, Fang J#, Liu Y, Tong H, Gong Y, Wang Y, Liu M, Wang Y, Qian Q, Cheng Z, Chu CC* (2011) ZEBRA2, encoding a carotenoid isomerase, is involved in photoprotection in rice. Plant Mol. Biol. 75(3): 211-221)(IF 3.8)Tang J, Zhu X, Wang Y, Liu L, Xu B, Li F, Fang J, Chu C (2011) Semidominant mutations in the CC-NB-LRR-type R gene, NLS1, lead to constitutive activation of defense responses in rice. Plant J. 76: 145-156 (IF 5.46)Zhang S, Li G, Fang J, Chen W, Jiang H, Zou J, Liu X, Zhao X, Li X, Chu C, Xie Q, Jiang X, Zhu L(2010) The interactions among DWARF10, auxin and cytokinin underlie lateral bud outgrowth in rice. J Integr Plant Biol. 52(7):626-38 (IF 3.67)Li F, Liu W, Tang J, Chen J, Tong H, Hu B, Li C, Fang J, Chen M, Chu C (2010) Rice DENSE AND ERECT PANICLE 2 is essential for determining panicle outgrowth and elongation. Cell Res. 20(7):838-49.(IF 14.8) Tong H, Jin Y, Liu W, Li F, Fang J, Yin Y, Qian Q, Zhu L, Chu C (2009) DWARF AND LOW-TILLERING, a new member of GRAS family, plays positive roles in brassinosteroid signaling in rice. Plant J. 58:803-816. (IF 5.46)Ma Y, Liu L, Zhu C, Sun C, Xu B, Fang J, Tang J, Luo A, Cao S, Li G, Qian Q, Xue Y, Chu C (2009) Molecular analysis of rice plants harboring a multi-functional T-DNA tagging system J. Genet. Genomics 36(5): 267-276. (IF 3.98)Fang J and Chu C. (2008) Abscisic acid and the pre-harvest sprouting in cereals Plant Signaling & Behavior, 3 (12): 1046-1048.Liu B., Chen Z., Song X., Liu C., Cui X., Zhao X., Fang J., Xu W., Zhang H., Wang X., Chu C., Deng X.W., Xue Y., Cao X. (2007) Oryza sativa Dicer-like4 reveals a key role for small interfering RNA silencing in plant development Plant Cell 19(9):2705-2718 (IF 10.53) 相关热点
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