1982.09—1986.07 | 安徽师范大学 | 获理学学士学位 |
1989.09—1992.07 | 中国科学院成都生物研究所 | 获理学硕士学位 |
1992.08—1995.07 | 四川大学生命科学学院 | 获博士学位 |
1995.08—1998.10 | 四川大学生命科学学院 | 副教授 |
1998.11—1999.12 | 德国植物遗传与栽培植物研究所(IPK) | 访问学者 |
2000.01—2001.12 | 德国农业部栽培植物研究中心(BAZ) | 从事博士后研究 |
2002.01—2004.05 | 德国农业部栽培植物研究中心(BAZ) | 任研究科学家 |
2004.06—至今 | 扬州大学生物科学与技术学院 | 教 授 |
学术兼职:
全国“植物组织培养和生物技术”专业委员会委员;
中国作物学会油料作物专业委员会理事;
江苏省植物生理学会理事;
Journal of Integrative Agriculture (中国农业科学,英文版)编委。
1982.09—1986.07 | 安徽师范大学 | 获理学学士学位 |
1989.09—1992.07 | 中国科学院成都生物研究所 | 获理学硕士学位 |
1992.08—1995.07 | 四川大学生命科学学院 | 获博士学位 |
1995.08—1998.10 | 四川大学生命科学学院 | 副教授 |
1998.11—1999.12 | 德国植物遗传与栽培植物研究所(IPK) | 访问学者 |
2000.01—2001.12 | 德国农业部栽培植物研究中心(BAZ) | 从事博士后研究 |
2002.01—2004.05 | 德国农业部栽培植物研究中心(BAZ) | 任研究科学家 |
2004.06—至今 | 扬州大学生物科学与技术学院 | 教 授 |
本科生:《细胞遗传学》和《植物细胞工程与技术》。
研究生:《发育生物学进展》。
油菜基因组学与遗传育种。
植物表观遗传及分子调控。
现主持国家自然科学基金2项,省部级项目4项,参加“973”项目1项。在国内外学术期刊上发表论文70多篇(SCI收录46篇)。参编教材3部,专著2部,授权专利1项。
[1] 褐(黄)籽甘蓝型油菜基因表达差异分析及定位,国家基金面上项目,2012-2015。
[2] 甘蓝型油菜黄籽性状形成的遗传网络解析,国家基金重点项目,2014-2018。
[1] Shao Yl, Jiang JJ, Ran LP, Lu CL, Wei CX,Wang YP*,2014, Analysis of flavonoids and hydroxycinnamic acid derivatives in seeds of Brassica napus by HPLC-PDA-ESI(-)MS/HRMS.J Agric Food Chem 62:2935-2945 .
[2]Jiang JJ, Shao YL, Du K, Ran LP, Fang XP,Wang YP*,2013, Use of digital gene expression to discriminate gene expression differences in early generations of resynthesized Brassica napus and its diploi d progenitors. BMC Genomics 14:72.
[3] Wang J, Jiang JJ,Wang YP*, 2013, Protoplast fusion for crop improvement and breeding inChina.Plant Cell Tiss Org Cult112: 131-142.
[4] Jiang J, Shao Y, Li A, Lu C, Zhang Y,Wang YP*, 2013, Flavonoid profiling and gene expression in developing seeds of yellow- and black-seededBrassica napus.J Integrat Plant Biol55(6):537-551.
[5] Jiang JJ, Shao YL, Li AM, Zhang YT, Wei CX,Wang YP*, 2013, FTIR and NMR study of seed coat dissected from different colored progenies ofBrassica napus-Sinapis albahybrids.J Sci Food Agric93:1898-1902.
[6] Wang J, Jiang JJ, Li XM, Li AM, Zhang YT, Guan RZ,Wang YP*, 2012, Complete sequence of heterogenous-composition mitochondrial genome (Brassica napus) and its exogenous source.BMC Genomics13(1):675.
[7] Li A, Jiang J, Zhang Y, Snowdon RJ, Liang G,Wang YP*, 2012, Molecular and cytological characterization ofintrogression lines with yellow seed derived from somatic hybrids betweenBrassica napusandSinapis alba.MolBreed28: 209-219.
[8] Kong F, Mao SJ, Jiang JJ, Wang XP,Wang YP*, 2011, Proteomic changes in newly synthesized Brassica napus allotetraploids and their early generations.Plant MolBreed Rep29:927-935.
[9] Qin XY, Liu Y, Mao SJ, Li TB, Wu HK, Chu CC,Wang YP*,2011, Genetic transformation of lipid transfer protein (LTP)gene inPhalaenopsis amabilisto enhance its cold resistance.Euphytica177:33-43.
[10] Kong F, Mao SJ, Du K, Wu M, Zhou XY, Chu CC,Wang YP*,2011, Comparative proteomics analysis of transgenicBrassica napuswithOsNAS1under salt stress.Chinese Sci Bull56: 2343-2350.
[11] Kong F, Ge CL, Fang XP, Snowdon RJ,Wang YP*,2010, Characterization of seedling proteomes and development of markers to distinguish theBrassicaA and C genomes.J Genet Genomics37:333-340.
[12] Li AM,Wei CX, Jiang JJ, Zhang YT, Snowdon RJ,Wang YP*, 2009, Phenotypic variation in the progenies of somatic hybrids betweenBrassica napusandSinapis alba.Euphytica170: 289-296.
[13] Jiang JJ, Zhao XX, Tian W, Li TB,Wang YP*, 2009, Intertribal somatic hybrids betweenBrassica napusandCamelina sativawith high linolenic acid content.Plant Cell Tiss Org Cult99:91-95.
[14] Wallbraun M, Sonntag K, Eisenhauer C, Krzcal G,Wang YP*, 2009,Phosphomannose-isomerase (pmi) gene as a selectable marker forAgrobacterium-mediated transformation of rapeseed.Plant Cell Tiss Org Cult99:345-351.
[15]Wang YP*, Sonntag K, Rudloff E, Wehling P, Snowdon R, 2006, GISH analysis of disomicBrassica napus-Crambe abyssinicachromosome addition lines produced by microspore culture from monosomic addition lines.Plant Cell Rep25:35-40.
[16]Wang YP*,Sonntag K,Rudloff E, Groeneveld I, Gramenz I,Chu CC, 2006, Production and characterization of somatic hybrids betweenBrassica napusandRaphanus sativus.Plant Cell Tiss Org Cult86:279-283.
[17]Wang YP*, Sonntag K, Rudloff E, Chen JM, 2005, Intergeneric somatic hybridization betweenBrassica napusand Sinapis alba.J Integr Plant Biol47: 84-91.
[18]Wang YP*, Sonntag K, Rudloff E, Han J, 2005, Production of fertile transgenicBrassica napusbyAgrobacterium-mediated transformation of protoplasts.Plant Breed124: 1-4.
[19]Wang YP*,Zhao XX,Sonntag K,Wehling P, Snowdon RJ, 2005, Behaviour ofSinapis albaaddition chromosomes in aBrassica napusbackground revealed by genomic in situ hybridisation.Chromosome Res13:819-826.
[20]Wang YP*,Snowdon RJ, Rudloff E, Wehling P, Friedt W, Sonntag K, 2004, Cytogenetic characterization andfae1gene variation in progenies from asymmetric somatic hybrids betweenBrassica napusandCrambe abyssinica.Genome, 47:724-731.
[21]Wang YP*, Sonntag K, Rudloff E, 2003, Development of rapeseed with high erucic acid content by asymmetric somatic hybridization betweenBrassica napusandCrambe abyssinica.Theor Appl Genet106:1147-1155.
《作物育种原理》(高等教育“十一五”规划教材),科学出版社,2009。
《现代植物育种学》,科学出版社,2010。
Rudloff E, Wang YP, Wild Crop Relatives-Genomics and Breeding Resources of Oilseeds. Springer- VerlagBerlin-Heidelberg-New York, 2011.
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[2] 王幼平,2008,原位杂交一章的知识框架和衔接,生物学杂志,25(1):64-66;
[3] 王幼平,吴晓霞,PEG介导的原生质体融合方法的改进及注意事项,生物学通报,2009,44:51;
[4] 王幼平,张莉莉,吴晓霞,原生质体融合,生物学通报,2009,44(8):7-9。