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1、遗传学
2、生物信息学 1、植物遗传学
2、基因组学与生物信息学
3、植物分子育种 1、松树内含子多态性标记开发及其在遗传作图中的应用,国家自然科学基金(30771750),2008~2010
2、植物与微生物互作的跨基因组多基因遗传体系的研究,国家自然科学基金(30671123),2007~2009
3、植物ILP标记的大规模开发与数据库建设,863计划(2006AA10Z1E2),2006~2010
4、水稻育性分子标记育种,863计划(2004AA211141),2004~2005
5、一个水稻生殖发育起始关键基因的克隆,国家自然科学基金(30270716),2003~2005
6、应用高新技术培育生产安全的优质高产两系稻及其产业化,863计划(2002AA001008),2002 ~ 2004
7、水稻花发育关键基因的克隆与应用研究,863计划(2001AA222271),2001~2003
8、应用分子标记辅助育种技术改良珍汕97B,863计划(2001AA211071-02),2001~2003
9、QTL精细定位研究——以水稻细条病抗性为模式性状,国家自然科学基金(30170503),2002~2005 (仅列出SCI收录的论文;*号表示通讯作者)
1) Zheng Y, Zheng W, Lin F, Zhang Y, Yi Y, Wang B, Lu G, Wang Z, Wu W*. AVR1-CO39 is a predominant locus governing the broad avirulence of Magnaporthe grisea strain 2539 on cultivated rice (Oryza sativa L.). Molecular Plant Microbe Interaction, 2011, 24(1): 13-17
2) Chen X, Zhang G, Wu W*. Investigation and utilization of intron length polymorphisms in conifers. New Forests, 2010, DOI 10.1007/s11
3) Duan Y, Diao Z, Liu H, Cai M, Wang F, Lan T, Wu W*. Molecular cloning and functional characterization of OsJAG gene based on a complete-deletion mutant in rice (Oryza sativa L.). Plant Molecular Biology, 2010, 74: 605-615
4) Lan T, Wang B, Ling Q, Xu C, Tong Z, Liang K, Duan Y, Jin J, Wu W*. Fine mapping of cisc(t), a gene for cold-induced seedling chlorosis, and identification of its candidate in rice. Chinese Science Bulletin, 2010, 55: 3149-3153
5) Tang J, Yan J, Ma X, Teng W, Wu W et al. Dissection of the genetic basis of heterosis in an elite maize hybrid by QTL mapping in an immortalized F2 population. Theoretical and Applied Genetics, 2010, 120: 333-340
6) Zhao X, Yang L, Zheng Y, Xu Z, Wu W*. Subspecies-specific intron length polymorphism markers reveal clear genetic differentiation in common wild rice (Oryza rufipogon L.) in relation to the domestication of cultivated rice (O. sativa L.). Journal of Genetics and Genomics, 2009, 36: 435-442
7) Zheng Y, Zhang G, Lin F, Wang Z, Jin G, Yang L, Wang Y, Chen X, Xu Z, Zhao X, Wang H, Lu J, Lu G, Wu W*. Development of microsatellite markers and construction of genetic map in rice blast pathogen Magnaporthe grisea. Fungal Genetics & Biology, 2008, 45: 1340-1347
8) Huang D, Wu W, Abrams SR, Cutler AJ. The relationship of drought-related gene expression in Arabidopsis thaliana to hormonal and environmental factors. Journal of Experimental Botany, 2008, 59: 2991-3007
9) Wen Y, Wu W*. Experimental designs and statistical methods for mapping quantitative trait loci underlying triploid endosperm traits without maternal genetic variation. Journal of Heredity, 2008, 99(5): 546-551
10) Yang J, Wu W, Zhu J. Mapping interspecific genetic architecture in a host-parasite interaction system. Genetics, 2008, 178: 1737-1743
11) Yang L, Jin G, Zhao X, Zheng Y, Xu Z, Wu W*. PIP: a database of potential intron polymorphism markers. Bioinformatics, 2007, 23: 2174-2177
12) Wen Y, Wu W*. Interval mapping of quantitative trait loci underlying triploid endosperm traits using F3 seeds. Journal of Genetics and Genomics, 2007, 34(5): 429-436
13) Huang D, Jaradat MR, Wu W et al. Structural analogs of ABA reveal novel features of ABA perception and signaling in Arabidopsis. Plant Journal, 2007, 50: 414-428
14) Wang X, Zhu H, Jin G, Liu H, Wu W*, Zhu Jun. Genome-scale identification and analysis of LEA genes in rice (Oryza sativa L.). Plant Science, 2007, 172: 414-420
15) Tang J, Ma X, Teng W, Yan J, Wu W, Dai J, Li J. Detection of quantitative trait loci and heterotic loci for plant height using an immortalized F2 population in maize. Chinese Science Bulletin, 2007, 52(4): 477-483
16) Wu W*, Huang B. Strategy for the mapping of interactive genes using bulked segregant analysis method and Mapmaker/Exp software. Chinese Science Bulletin, 2006, 51(21): 2619-2623
17) Wen Y, Wu W*. Methods for mapping QTLs underlying endosperm traits based on random hybridization design. Chinese Science Bulletin, 2006, 51(16): 1976-1981
18) Wang X, Zhao X, Zhu J, Wu W*. Genome-wide investigation of intron length polymorphisms and their potential as molecular markers in rice (Oryza sativa L.). DNA Research, 2005, 12: 417-427
19) Wang X, Wu W*, Jin Gulei, Zhu Jun. Genome-wide identification of R genes and exploitation of candidate RGA markers in rice. Chinese Science Bulletin, 2005, 50(11):1120-1125
20) Huang D, Wu W, Zhou Y, Hu Z, Lu L. Microdissection and molecular manipulation of single chromosomes in woody fruit trees with small chromosomes using pomelo (Citrus grandis) as a model: I. construction of single chromosomal DNA libraries. Theoretical and Applied Genetics, 2004, 108: 1366-1370
21) Huang D, Wu W, Lu L. Microdissection and molecular manipulation of single chromosomes in woody fruit trees with small chromosomes using pomelo (Citrus grandis) as a model: II. cloning of resistance-gene analogs from single chromosomes. Theoretical and Applied Genetics, 2004, 108: 1371-1377
22) Hua J, Xing Y, Wu W et al. Single-locus heterotic effects and dominance by dominance interactions can adequately explain the genetic basis of heterosis in an elite rice hybrid. Proceedings of the National Academy of Sciences USA, 2003, 100: 2574-2579
23) Duan Y, Wu W*, Liu H et al. Genetic analysis and gene mapping of leafy head (lhd), a mutant blocking the differentiation of rachis branches in rice (Oryza sativa L.). Chinese Science Bulletin, 2003, 48(20): 2201-2205
24) Duan Y, Li W, Wu W et al. Genetic analysis and mapping of gene fzp(t) controlling spikelet differentiation in rice. Science in China (Ser. C), 2003, 46(3): 328-334
25) Lu Y, Sun X, Yao J, Chai Y, Zhao X, Zhang L, Song J, Pang Y, Wu W, Tang K. Isolation and expression of cold-regulated cDNA from chinese cabbage (Brassica pekinensis). DNA Sequence, 2003, 14(3): 219-222
26) Wu W*, Zhou Y, Li W et al. Mapping of quantitative trait loci based on growth models. Theoretical and Applied Genetics, 2002, 105: 1043-1049
27) Wu W*, Zhou Y, Li W. Comparison of potentials between genotype-based selection and genotypic value-based selection of quantitative traits. Chinese Science Bulletin, 2002, 47(24): 2080-2083
28) Zhou Y, Li W, Wu W* et al. Genetic dissection of heading time and its components in rice. Theoretical and Applied Genetics, 2001, 102: 1236-1242
29) Tang D, Wu W*, Li W et al. Mapping of QTLs conferring resistance to bacterial leaf streak in rice. Theoretical and Applied Genetics, 2000, 101: 286-291
30) Wu W*, Li W, Tang D et al. Time-related mapping of quantitative trait loci underlying tiller number in rice. Genetics, 1999, 151: 297-303
31) Wu W*, Li W. Joint mapping of quantitative trait loci using F2 populations. Theoretical and Applied Genetics, 1996, 93: 1156-1160
32) Wu W*, Li W. Model fitting and model testing in the method of joint mapping of quantitative trait loci. Theoretical and Applied Genetics, 1996, 92: 477-482
33) Wu W*, Li W. A new approach for mapping quantitative trait loci using complete genetic marker linkage maps. Theoretical and Applied Genetics, 1994, 89: 535-539 1、《世纪之交863计划生物高技术丛书·作物DNA标记辅助育种》,科学出版社,2001
2、《普通遗传学·全国高等农业院校教材》,中国农业出版社,2005
方宣钧, 吴为人, 唐纪良. 《世纪之交863计划生物高技术丛书·作物DNA标记辅助育种》,科学出版社, 2001 1) 水稻分子标记辅助选择技术体系的建立与应用,福建省科学技术奖二等奖(2006;排名第一)
2) 用PCR技术快速鉴定sorghum属,福建省科学技术奖三等奖(2006;排名第四)
3) 细胞工程应用于水稻遗传育种的研究,福建省科学技术奖二等奖(2001;排名第五)
4、优质不育系金山A-2的选育,福建省技术鉴定,2003(排名第一)

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