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个人简介

余四斌,男,1967年9月出生,教授,博士生导师。主要从事水稻遗传育种和分子生物学研究以及教学工作,讲授数量遗传学、种子生理工艺学和遗传学进展等课程。1998-2000年在国际水稻研究所(IRRI)进行合作研究。

研究领域

主要包括水稻新种质创建、基因多样性分析与优异基因发掘、分子育种、种子质量控制等

近期论文

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1.Chen W, Gao Y, Xie W, Gong L, Lu K, Wang W, Li Y, Liu X, Zhang H, Dong H, Zhang W, Zhang L, Yu SB, Wang G, Lian X, Luo J (2014) Genome-wide association analyses provide genetic and biochemical insights into natural variation in rice metabolism. Nat Genet 46 (7): 714 -721 2.Gong L, Chen W, Gao Y, Liu X, Zhang H, Xu C, Yu SB, Zhang Q, Luo J (2013) Genetic analysis of the metabolome exemplified using a rice population. Proc Natl Acad Sci USA 110 (50): 20320 - 20325 3.Zhang F, Jiang YZ, Yu SB, Ali J, Paterson AH, Khush GS, Xu JL, Gao YM, Fu BY, Lafitte R, Li ZK (2013)Three genetic systems controlling growth, development and productivity of rice (Oryza sativa L.): a reevaluation of the ‘Green Revolution’. Theor Appl Genet 126:1011–1024 4.Lu L, Shao D, Qiu XJ, Sun L, Yan W, Zhou X, Yang L, He Y, Yu SB, Xing YZ (2013) Natural variation and artificial selection in four genes determine grain shape in rice. New Phytologist 200: 1269–1280 5.Qiu XJ, Gong R, Tan YB, Yu SB (2012) Mapping and characterization of the major quantitative trait locus qSS7 associated with increased length and decreased width of rice seeds. Theor Appl Genet 125:1717–1726 6.Wang P, Xing YZ, Li ZK, Yu SB (2012) Improving rice yield and quality by QTL pyramiding. Mol Breeding 29: 903–913 7.Wang P, Zhou GL, Cui KH, Li ZK, Yu SB (2012) Clustered QTL for source leaf size and yield traits in rice (Oryza sativa L.) Mol Breeding 29: 99–113 8.Ding ZH, Wang CR, Chen S, Yu SB (2011) Diversity and selective sweep in the OsAMT1;1 genomic region of rice. BMC Evolutionary Biology 11: 61. http://www.biomedcentral.com/1471-2148/11/61 9.Wang CR, Chen S, Yu SB (2011) Functional markers developed from multiple loci in GS3 for fine marker-assisted selection of grain length in rice. Theor Appl Genet 122: 905–913 10.Yan WH, Wang P, Chen HX, Zhou HJ, Li QP, Wang CR, Ding ZH, Zhang YS, Yu SB, Xing YZ, Zhang Q (2011) A Major QTL, Ghd8, plays pleiotropic roles in regulating grain productivity, plant height, and heading date in rice. Molecular Plant 4: 319–330 11.Tan CJ, Sun YJ, Xu HS, Yu SB (2011) Identification of quantitative trait locus and epistatic interaction for degenerated spikelets on the top of panicle in rice. Plant Breeding 130: 177–184 12.Ali ML, Sanchez PL, Yu SB, Lorieux M, Eizenga GC (2010) Chromosome segment substitution lines: A powerful tool for the introgression of valuable genes from oryza wild species into cultivated rice (O. sativa). Rice, 3: 218–234 13.Wang J, Yu HH, Xie WB, Xing YZ, Yu SB, Xu CG, Li XH, Xiao JH, Zhang Q (2010) A global analysis of QTLs for expression variations in rice shoots at the early seedling stage. The Plant J. 63: 1063–1074 14.Xie W, Feng Q, Yu H, Huang X, Zhao Q, Xing Y, Yu SB, Han B, Zhang Q (2010) Parent-independent genotyping for constructing an ultrahigh-density linkage map based on population sequencing. Proc Natl Acad Sci. USA. 107: 10578–10583 15.Mao HL, Sun SY, Yao JL, Wang CR, Yu SB, Xu CG, Li XH, Zhang Q(2010) Linking differential domain functions of the GS3 protein to natural variation of grain size in rice. Proc Natl Acad Sci. USA. 107: 19579–19584 16.Wang Y, Sun YJ, Chen DY, Yu SB (2009) Analysis of quantitative trait loci in response to nitrogen and phosphorus deficiency in rice using chromosomal segment substitution lines. Acta Agron Sin. 35(4): 580–587 17.Zeng B, Li Min, Yang ZY, Tan CJ, Dong HL, Yu SB (2009) Mapping of a novel semisterile pollen QTL in rice. Acta Agron Sin. 35(9): 1584–1589 18.Zhao LN, Zhou HJ, Lu LX, Liu L, Li XH, Lin YJ, Yu SB (2009) Identification of quantitative trait loci controlling rice mature seed culturability using chromosomal segment substitution lines. Plant Cell Rep 28:247–256 19.Wen WW, Mei HW, Feng FJ, Yu SB, Huang ZC, Wu JH, Chen, Xu XY, Luo LJ (2009) Population structure and association mapping on chromosome 7 using a diverse panel of Chinese germplasm of rice (Oryza sativa L.). Theor Appl Genet 119:459–470 20.Fan CC, Yu SB, Wang CR, Xing YZ (2009) A causal C-A mutation in the second exon of GS3 highly associated with rice grain length and validated as a functional marker. Theor Appl Genet. 118:465–472

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