个人简介
2007年获中国农业大学作物遗传育种专业博士学位,毕业后进入清华大学生物系从事博士后研究,2010年入职中国农业大学作物遗传育种系。长期从事野生稻有利等位基因发掘与利用、水稻驯化分子机理以及水稻重要农艺性状遗传调控网络解析的研究。以第一作者或通讯作者在Nature Genetics、Nature Communications、Plant Cell、Molecular Plant等期刊发表多篇论文。2009年获全国优秀博士学位论文,2012年入选教育部新世纪优秀人才支持计划,2012年获国家优秀青年科学基金资助,2020年获国家自然科学奖二等奖(排名第二),2021年获国家杰出青年科学基金资助。
教育经历
2004.09.01-2007.06.30,博士,中国农业大学,作物遗传育种
2001.09.01-2004.06.30,硕士,中国农业大学,作物遗传育种
1996.09.01-2000.06.30,学士,湖南农业大学,农学
工作经历
2010.04.01,农学院
2007.07.01-2010.04.01,清华大学生物系博士后
荣誉及奖励
2021,国家自然科学奖
2009,全国优秀博士学位论文
近期论文
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Tang Y, Ma X, Zhao S, Xue W, Zheng X, Sun H, Gu P, Zhu Z, Sun C, Liu F*, Tan L*. Identification of an active miniature inverted-repeat transposable element mJing rice. Plant Journal, 2019, doi:10.1111/tpj.14260.
Jiang L, Ma X, Zhao S, Tang Y, Liu F, Gu P, Fu Y, Zhu Z, Cai H, Sun C, Tan L*. The APETALA2-like transcription factor SUPERNUMERARY BRACT controls rice seed shattering and seed size. Plant Cell, 2019, 31: 17–36.
Wu Y#, Zhao S#, Li X#, Zhang B, Jiang L, Tang Y, Zhao J, Ma X, Cai H, Sun C, Tan L*. Deletions linked to PROG1 gene participate in plant architecture domestication in Asian and African rice. Nature Communications. 2018, 9: 4157.
Huo X, Wu S, Zhu Z, Liu F, Fu Y, Cai H, Sun X, Gu P, Xie D, Tan L*, Sun C*. NOG1 increases grain production in rice. Nature Communications. 2017, 8:1497.
Zhao S, Zhao L, Liu F, Wu Y, Zhu Z, Sun C, Tan L*. NARROW AND ROLLED LEAF 2 regulates leaf shape, male fertility, and seed size in rice. Journal of Integrative Plant Biology. 2016, 58:983–996.
Wu Y, Fu Y, Zhao S, Gu P, Zhu Z, Sun C, Tan L*. CLUSTERED PRIMARY BRANCH 1, a new allele of DWARF11, controls panicle architecture and seed size in rice. Plant Biotechnology Journal. 2016, 14:377–386.
Ma X, Fu Y, Zhao X, Jiang L, Zhu Z, Gu P, Xu W, Su Z, Sun C, Tan L*. Genomic structure analysis of a set of Oryza nivara introgression lines and identification of yield-associated QTLs using whole-genome resequencing. Scientific Reports. 2016, 6:27425.
Zhao L, Tan L, Zhu Z, Xiao L, Xie D, Sun C. PAY1 improves plant architecture and enhances grain yield in rice. Plant Journal. 2015, 83:528–536.
Zhang Y, Tan L, Zhu Z, Yuan L, Xie D, Sun C. TOND1 confers tolerance to nitrogen deficiency in rice. Plant Journal. 2015, 81:367–376.
Zhang B, Sun C, Xie D, Tan L*. Global gene expression analysis of a rice high-tillering dwarf mutant. Genes & Genomics. 2014, 36:485–496.
Zhu Z, Tan L, Fu Y, Liu F, Cai H, Xie D, Wu F, Wu J, Matsumoto T, Sun C. Genetic control of inflorescence architecture during rice domestication. Nature Communications. 2013, 4:2200.
Li X, Tan L, Wang L, Hu S, Sun C. Isolation and characterization of conserved non-coding sequences among rice (Oryza sativa L.) paralogous regions. Molecular Genetics and Genomics. 2009, 281:11–18.
Garcia-Oliveira AL, Tan L, Fu Y, Sun C. QTL mapping for mineral nutrients in rice grain using introgression lines population. Journal of Integrative Plant Biology. 2009, 51:84–92.
Tan L, Li X, Liu F, Sun X, Li C, Zhu Z, Fu Y, Cai H, Wang X, Xie D, Sun C. Control of a key transition from prostrate to erect growth in rice domestication. Nature Genetics. 2008, 40:1360–1364.
Tan L, Zhang P, Liu F, Wang G, Ye S, Zhu Z, Fu Y, Cai H, Sun C. Quantitative trait loci underlying domestication- and yield-related traits in an Oryza rufipogon × Oryza sativa advanced backcross population. Genome. 2008, 51:692–704.
Tan L, Liu F, Xue W, Wang G, Ye S, Zhu Z, Fu Y, Wang X, Sun C. Development of Oryza rufipogon and Oryza sativa introgression lines and assessment for yield-related quantitative trait loci. Journal of Integrative Plant Biology. 2007, 49:871–884.