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中国科学院大学研究生导师简介-区永祥(DavidW.Ow)

中国科学院大学 免费考研网/2016-05-09

基本信息
区永祥(David W. Ow) 男 博导 华南植物园
电话: **
电子邮件:dow@scbg.ac.cn
通信地址:广州市天河区兴科路723号华南植物园
邮政编码:510650
研究领域定点重组
金属与氧化胁迫耐受基因功能研究
垂直农业


招生信息

招生专业 生物化学与分子生物学
遗传学
植物学

招生方向 定点重组
植物抵抗逆境胁迫基因的功能研究
垂直农业
教育背景 1978-09--1983-01 哈佛大学 博士
1974-04--1978-06 加州大学,伯克利分校 学士


学历 哈佛大学 -- 研究生


学位 哈佛大学 -- 博士

工作经历2010.1- 至今 中国科学院华南植物园, 首席研究员, 植物基因工程中心主任
1986.12-2009.12 美国农业部植物基因表达研究中心,首席研究员
1984.8-1986.11 美国加州大学圣地亚哥分校,美国科学基金(NSF)博士后
1983.8-1984.7 中国科学院上海植物生理研究所,访问学者
1983.1-1983.7 美国麻省总医院,博士后

获奖及荣誉

奖励信息 (1) 广东省领军人才,省级,2010
(2) 国家****,国家级,2010
(3) 美国农业部太平洋西部地区年度优秀科学家,其他级,2003

出版信息

最近和以前代表性论文 (1) Recombinase-mediated gene stacking as a Transformation Operating System.,Journal of Integrative Plant Biology,2011,第1作者
(2) Stress tolerance to stress escape in plants: role of the OXS2 zinc-finger transcription factor family.,European Molecular Biology Organization Journal,2011,通讯作者
(3) An efficient and rapid transgenic pollen screening and detection method using flow cytometry.,Biotechnology Journal ,2011,第4作者
(4) Transgene excision in pollen using a codon optimized serine resolvase CinH-RS2 site-specific recombination system,Plant Molecular Biology,2011,第5作者
(5)PhiC31 recombinase demonstrates heritable germinal transmission of site-specific excision from the Arabidopsis genome,BMC Biotechnology ,2010,通讯作者
(6) ParA resolvase catalyzes site-specific excision of DNA from the Arabidopsis genome.,Transgenic Research ,2009,通讯作者
(7) OXIDATIVE STRESS 3 is a chromatin-associated factor involved in tolerance to heavy metals and oxidative stress,Plant Journal ,2009,通讯作者
(8) Biolistic mediated site-specific integration in rice,Molecular Breeding,2002,通讯作者
(9) Single copy primary transformants of maize obtained through the co-introduction of a recombinase-expressing construct,Plant Molecular Biology,2001,通讯作者
(10) DNA integration into the same chromosome location can produce transgene alleles that express at a predictable level, or alleles that are differentially silenced,Genes Development,2000,通讯作者
(11) Single-copy transgenic wheat generated through the resolution of complex integration patterns,Proceedings of the National Academy of Sciences USA,1999,通讯作者
(12) Site-specific integration of DNA into wild type and mutant lox sites placed in the plant genome,Plant Journal,1995,通讯作者
(13) Transport of metal-binding peptides by HMT1, a fission yeast ABC-type vacuolar membrane protein,Journal of Biological Chemistry,1995,通讯作者
(14) Cre recombinase mediated sitespecific recombination between plant chromosomes,Proceedings of the National Academy of Sciences USA,1994,通讯作者
(15) Heavy metal tolerance in the fission yeast requires an ATP binding cassette-type vacuolar membrane transporter,EMBO (European Molecular Biology Organization) Journal,1992,通讯作者
(16) Engineering 2-4-D resistance into cotton,Theoretical Applied Genetics,1992,通讯作者
(17)Gene transfer with subsequent removal of the selection gene from the host genome,Proceedings of the National Academy of Sciences USA,1991,通讯作者
(18) Transient and stable expression of the firefly luciferase gene in plant cells and transgenic plants,Science,1986,第1作者
(19)Regulation of nitrogen metabolism genes by the nifA gene product in Klebsiella pneumoniae,Nature,1983,第1作者


最近著作 (1)Method for Bxb1-mediated site-specific integration in planta, Method for Bxb1-mediated site-specific integration in planta,Humana Press,2011-06,第4作者
(2) Site-specific recombination for precise and clean transgene integration in plant genome, Site-specific recombination for precise and clean transgene integration in plant genome,Wiley-Blackwell Publishers,2011-05,第2作者
(3) Historical Technology Developments in Plant Transformation ,Historical Technology Developments in Plant Transformation ,Bentham eBooks.,2011-01,第2作者
(4) Chance events shape a career,Chance events shape a career,Wiley and Sons,2008-10,第1作者
(5) The Future of Plant Biotechnology.,The Future of Plant Biotechnology.,Wiley and Sons,2008-01,第2作者

科研活动

参与会议 (1) International Symposium on Plant Biotechnology towards Tolerance to Stresses and Enhancing Crop Yield, Birla Institute of Technology Ranchi, Jharkhand, India, September 29-October 1, 2011.“Nuclear proteins in stress tolerance and stress escape”,2011-09,David W Ow
(2) Plant Transformation Technologies II International Symposium, Vienna Austria, February 19-22, 2011. “Gene Stacking via Site-specific Recombination”.,2011-02,David W.Ow
(3) Plant and Animal Genomes XIX Conference, San Diego, CA, January 15-19, 2011. In Plant Transgene Genetics Workshop Gene stacking as a transformation system.,2011-01,David W. Ow
(4) Boiforsk, Norwegian Institute for Agricultural and Environmental Research. Hoegskoleveien 7, N-1432 Aas, Norway.Removal of marker genes and beyond,2010-09,David W. Ow
(5) First National Symposium on the Biological Basis for Phytoremediation. Xiamen, China, August 13-16, Metal and oxidative stress tolerance, the role of several nuclear proteins.,2010-08,David W. Ow (区永祥)
(6) First International Symposium on Molecular Strategies for Crop Improvement, Beijing, China, May 29-30, 2010, Marker removal and beyond. ,2010-05,David W. Ow (区永祥)
(7) China-U.S. Relations Conference: Looking Ahead after 30 Years, Beijing, China, October 21-23, 2009.In Symposium: A New Look at Transgenic Plants… Looking to 2040, Vertical Agriculture, new niche for transgenics.,2009-10,David W. Ow
(8) International Rice Research Institute Symposium on the Future of Multigene and Targeted Gene Delivery in Crop Plants, IRRI, Philippines, May 11-13, 2009.Recombinase-mediated plant transformation,what lies ahead,2009-05,David W. Ow

指导学生现指导学生

陈岩 硕士研究生 071010-生物化学与分子生物学

陈伟强 硕士研究生 430139-生物工程

侯黎丽 博士研究生 071010-生物化学与分子生物学

朱磊 硕士研究生 071010-生物化学与分子生物学

刘亭 博士研究生 071010-生物化学与分子生物学

贺立龙 博士研究生 071010-生物化学与分子生物学

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