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向成斌

鎖定
向成斌,男,1962年出生於重慶,博士,中國科學技術大學教授、博士生導師。
中文名
向成斌
出生地
重慶
出生日期
1962年
畢業院校
愛達荷大學
學位/學歷
博士
專業方向
植物分子生物學/逆境脅迫生物學
任職院校
中國科學技術大學
職    稱
中國科學技術大學教授

向成斌人物經歷

1982年8月畢業於西南農業大學園藝系,獲學士學位;
1987年3月於加州大學河邊分校植物科學系獲碩士學位;
1992年10月於愛達荷大學微生物、生物化學及分子生物學系獲博士學位。曾在愛達荷大學微生物、生物化學及分子生物學系、羅格斯大學農業生物技術中心及依阿華州立大學植物系做博士後。
1999.7-2001.8,依阿華州立大學植物系助理科學家;
2001.8-2002.7,依阿華州立大學植物系助理教授; [1] 

向成斌論文專著

(1) Arabidopsis ERF1 mediates cross-talk between ethylene and auxin biosynthesis during primary root elongation by regulating ASA1 expression - PLoS Genetics - 2016-1 - 2016.1
(2) Arabidopsis EDT1/HDG11 improves drought and salt tolerance in cotton and poplar and increases cotton yield in the field - Plant Biotechnology Journal - - 2016.1
(3) Activated expression of AtEDT1/HDG11 promotes lateral root formation in Arabidopsis mutant edt1 by upregulating jasmonate biosynthesis. - J Integr Plant Biol. - - 57:1017–1030.
(4) Arabidopsis ERF109 mediates crosstalk between jasmonic acid and auxin biosynthesis during lateral root formation. - Nature Communications - 2014 - 5:5833 doi: 10.1038/ncomms6833
(5) MADS-Box Transcription Factor AGL21 Regulates Lateral Root Development and Responds to Multiple External and Physiological Signals. - Mol Plant - 2014 - 7 (11): 1653-1669.
(6) Arabidopsis Enhanced Drought Tolerance1/HOMEODOMAIN GLABROUS11 Confers Drought Tolerance in Transgenic Rice without Yield Penalty. - Plant Physiol - 2013 - 162:1378-1391
(7) HDG11 upregulates cell-wall-loosening protein genes to promote root elongation in Arabidopsis. - J Exp Bot. - 2014 - 65 (15): 4285-4295.
(8) SULTR3;1 is a chloroplast-localized sulfate transporter in Arabidopsis thaliana. - Plant Journal - 2013 - 73:607-616.
(9) Sulfate availability affects ABA levels and germination response to ABA and salt stress in Arabidopsis thaliana. - Plant J - 2014 - 77:604-615.
(10) Sulfur nutrient availability regulates root elongation by affecting root IAA levels and the stem cell niche. - J Integr Plant Biol. 56: 1151–1163. - 2014 - 56: 1151–1163.
(11) L-Cysteine inhibits root elongation through auxin/PLETHORA and SCR/SHR pathway in Arabidopsis thaliana. - J Integr Plant Biol. - 2015 - 57:186–197.
(12) Functional gene-mining for salt-tolerance genes with the power of Arabidopsis - The Plant Journal 56:653–664 - 2008 -
(13) Activated Expression of an Arabidopsis HD-START Protein Confers Drought Tolerance with Improved Root System and Reduced Stomatal Density - The Plant Cell 20:1134-1151 - 2008 -
(14) The genetic locus At1g73660 encodes a putative MAPKKK and negatively regulates salt tolerance in Arabidopsis - Plant Mol Biol 67:125–134 - 2008 -
(15) Late-flowering mutants of Arabidopsis thaliana show enhanced tolerance to abiotic stresses. - Journal of Integrative Plant Biology. 24:572-580 - 2007 -
(16) Characterization of the extracellular gamma-glutamyl transpeptidases, GGT1 and GGT2, in Arabidopsis - Plant Journal. 49:865-877 - 2007 - 2007年第1期
(17) High-throughput Binary Vectors for Plant Gene Function Analysis. - Journal of Integrative Plant Biology 49:556-567 - 2007 - 2007年第4期
(18) Glutathione Conjugates in the Vacuole is Degraded by gamma-Glutamyl Transpeptidase 3 in Arabidopsis. - Plant Journal. 49:878-888. - 2007 - 2007年第1期
(19) Construction of a Plant Transformation-ready Expression cDNA Library for Thellungiella halophila Using Recombination Cloning - Journal of Integrative Plant Biology 49:1313-1319 - 2007 -
(20) Stomatal Density and Bio-water Saving. - Journal of Integrative Plant Biology 49:1435-1444 - 2007 -
(21) Arabidopsis Late-flowering Mutants with Elevated SOD Activities Show Enhanced Tolerance to Abiotic Stresses - Chinese Bulletin of Botany,2007, 24 (5): 572-580, - 2007 - 2007年第5期
(22) Plant Sulfur Metabolism, Regulation, and Biological Functions. - Chinese Bulletin of Botany 2007, 24 (6): 735-761, - 2007 - 2007年第6期
(23) A Novel High-throughput Genetic Screen for Stress-Responsive Mutants of Arabidopsis thaliana Revealed Novel Loci Involving Stress Responses - Plant Journal. 47:652-663. - 2006 - 2006年第6期
(24) The biological function of glutathione revisited in Arabidopsis transgenic plants with altered glutathione levels - PLANT PHYSIOL. 126:564-574 - 2001 - 2001年第6期
(25) A mini binary vector series for plant transformation - PLANT MOL BIOL. 40: 711-717 - 1999 - 1999年第七期
(26) Glutathione metabolic genes coordinately respond to heavy metals and jasmonic acid in Arabidopsis - PLANT CELL 10: 1539-1550 - 1998 - 1998年第九期 [1] 

向成斌科學研究

向成斌研究方向

1、植物分子生物學/逆境脅迫生物學
2、植物營養高效利用分子機制
3、植物耐逆基因資源的發掘與應用 [1] 

向成斌科研項目

“973”,“863”,“Rockefeller Foundation”,“院創新重點”,NNSFC。 [2] 
參考資料
  • 1.    向成斌  .中國科學技術大學[引用日期2019-11-03]
  • 2.    向成斌  .中國科學技術大學生命科學學院[引用日期2014-01-24]