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Changjie Yan
Family Name Yan Given name Changjie
Gender Male Date of birth 1970-09-24
Title Dean,Dr. and Professor
Telephone No. 086-514-87979218
Cell phone No 13004323106
Email cjyan@yzu.edu.cn
Fax 086-514-87996817
Organization and contact information Nongmu Building , Wenhui Road Campus, Yangzhou University
College of Agriculture, Yangzhou University
Key Laboratory for Plant Functional Genomics, MOE
Yangzhou 225009, Jiangsu Province, China
Affiliation(s) Member of Genetic Society of Jiangsu Agricultural Sciences
Member of Genetic Society of China
Research Interests QTL analysis and cloning for rice quality, agricultural traits
Molecular breeding by design
Grants Cloning of some key genes/QTL for cold tolerance at booting stage by using the rice chromosomal segmental substitution lines (2017-2020), National Natural Science Foundation of China
Molecular cloning of key genes involved in rice leaf morphology development in rice (2016-2020), Department of Agriculture, China
Molecular cloning of major QTLs controlling the rice grain protein content and its application in rice quality improvement (2013-2017), National Natural Science Foundation of China
Gene cloning and functional analysis for the genes controlling the hybrid breakdown in rice (2012-2015), National Natural Science Foundation of China
Molecular cloning of qPC-1responsible for protein content in milled rice (2014-2017), Government of Jiangsu Province
Selected publications Fan XY, Guo M, Li RD, Yang YH, Liu M, Zhu Q, Tang SZ, Gu MH, Xu RG*, Yan CJ*. Allelic variations in the soluble starch synthase II gene family result in changes of grain quality and starch properties in rice (Oryza sativa L.). Journal of Agricultural Science, 2016, doi:10.1017/S0021859615001331
Wang C, Shen L, Fu YP, Yan CJ, Wang KJ. A simple CRISPR/Cas9 system for multiplex genome editing in rice. Journal of Genomics and Genetics, 2015, 42:703-706
Li RD, Guo M, Lu Y, Yang YH, Liu M, Zhu Q, Wei CX, Gu MH, Yan CJ*. Genetic dissection of hybrid breakdown in an indica/japonica cross and fine mapping of a quantitative trait locus qSF-12 in rice (Oryza sativa L.). Mol Breeding, 2015, 35:144, DOI 10.1007/s11032-015-0331-4
Yang YH, Guo M, Li RD, Shen L, Wang W, Liu M, Hu Z, He QW, Xue Y, Tang SZ, Gu MH, Yan CJ*.  Identification of quantitative trait loci responsible for rice grain protein content using chromosome segment substitution lines and fine mapping of qPC-1 in rice (Oryza sativa L.).Mol Breeding, 2015, 35:130, DOI: 10.1007/s11032-015-0328-z
Deng ZY, Liu LT, Li T, Yan S, Kuang BJ, Huang SJ, Yan CJ* & Wang T*.  OsKinesin-13A is an active microtubule depolymerase involved in glume length regulation via affecting cell elongation.Scientific Reports, 2015, 5: 9457
Guo M,Yang YH,Liu M,Meng QC,Zeng XH,Dong LX,Tang SZ,Gu MH,Yan CJ*. Clustered spikelets 4, encoding a putative cytochrome P450 protein CYP724B1, is essential for rice panicle development. Chin. Sci. Bull. 2014, 59(31):4050-4059
Yang ZF, Wang YF, Xu SH, Xu CW, Yan CJ*. Molecular Evolution and Functional Divergence of Soluble Starch Synthase Genes in Cassava (Manihot Esculenta Crantz).Evolutionary Bioinformatics,2013:9 239–249
Zhang ZJ, Li M, Fang YW, Liu FC, Lu Y, Meng QC, Peng JC, Yi XH, Gu MH, Yan CJ*. Diversification of the Waxy gene is closely related to variations in rice eating and cooking quality. Plant Molecular Biology Reporter, 2012, 30:462-469
Yan S, Zou GH, Li SJ, Wang H, Liu HQ, Zhai GW, Guo P, Song HM, Yan CJ, Tao YZ. Seed size is determined by the combinations of the genes controlling different seed characteristics in rice Theor Appl Genet 2011, 123(7):1173-81
Wei CX, Xie PS, Chen YF, Yu HG, Su YJ, Gu MH, Yan CJ*. Anatomical and chemical characteristics of culm of rice brittle mutant bc7(t ).Functional Plant Biology, 2011, 38, 227–235 
Yi XH, Zhang ZJ, Zeng SY, Tian CY, Peng JC, Li M, Lu Y, Meng QC, Gu MH, Yan CJ*. Introgression of qPE9-1 allele, conferring the panicle erectness, leads to the decrease of grain yield per plant in japonica rice (Oryza sativa L.). Journal of Genetics and Genomics. 2011,38:217-223 
Li M, Tang D, Wang KJ, Wu XR, Lu LL, Yu HX, Gu MH, Yan CJ*, Cheng ZK*. Mutations in the F-box gene LARGER PANICLE improve the panicle architecture and enhance the grain yield in rice. Plant Biotechnology Journal, 2011, 9(9):1002-1013
Yan CJ, Tian ZX, Fang YW, Yang YC, Li J, Zeng SY, Gu SL, Xu CW, Tang SZ, Gu MH. Genetic analysis of starch paste viscosity parameters in glutinous rice (Oryza sativa L.). Theor Appl Genet, 2011, 122:63–76
Tian ZX*, Yan CJ*, Qian Q, Yan S, Xie HL, Wang F, Xu JF, Liu GF, Wang YH, Liu QQ, Tang SZ, Li JY*, Gu MH*. Development of gene-tagged molecular markers for starch synthesis-related genes in rice. Chinese Science Bulletin, 2010 55 (33):3768-3777
Tian ZX, Qian Q, Liu QQ, Yan MX, Liu XF, Yan CJ, Liu GF, Gao ZY, Tang SZ, Zeng DL, Wang YH, Yu JM, Gu MH & Li JY.Allelic diversities in rice starch biosynthesis lead to a diverse array of rice eating and cooking qualities.Proc Natl Acad Sci USA, 2009, 106: 21760–21765
Zhu KM, Tang D, Yan CJ, Chi ZC, Yu HX, Chen JM, Liang JS, Gu MH, Cheng ZK. ERECT PANICLE 2 encodes a novel protein that regulates panicle erectness in indica rice. Genetics, 2009, 184: 343-350
Yan CJ, Yan S, Yang YC, Zeng XH, Fang YW, Zeng SY, Tian CY, Sun YW, Tang SZ & Gu MH. Development of gene-tagged markers for quantitative trait loci underlying rice yield components. Euphytica, 2009, 169:215-226
Yan S*, Yan CJ*, Zeng XH, Yang YC, Fang YW, Tian CY, Sun YW, Cheng ZK, Gu MH. ROLLED LEAF 9, encoding a GARP protein, regulates the leaf abaxial cell fate in rice. Plant Mol Biol, 2008,68:239–250 
Yan CJ, Zhou JH, Yan S, Chen F, Yeboah M, Tang SZ, Liang GH, Gu MH. Identification and characterization of a major QTL responsible for erect panicle trait in japonica rice (Oryza sativa L.). Theoretical and Applied Genetics, 2007,115(8):1093-1100

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