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西南大学农学与生物科技学院导师教师师资介绍简介-钱伟

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钱伟,1973年9月出生,男,农学博士,西南大学二级教授,博士生导师,******。中国作物学会、中国遗传学会会员。
联系方式
通信地址:重庆市北碚区天生路2号西南大学农学与生物科技学院;邮编:400715
E-mail:qianwei666@hotmail.com
学习与工作经历
2006.3 -现在 西南大学工作,教授
2011.7 - 2013.7 美国Colorado State University高级访问****
2003.10 - 2006.12 德国Kiel University博士后
1997.7- 2003.10 华中农业大学攻读硕士,博士学位。
1995.7- 1997.7 潜江农业局工作
1991.9 -1995.7 湖北农学院学习
研究方向
1. 油菜资源的组学研究 我们对数百份油菜及其近缘种进行DNA芯片和基因组测序分析,挖掘出了一批与油菜驯化和杂种优势有关的遗传位点;
2. 油菜重要农艺性状分子解析 油菜的很多重要农艺性状都是数量性状。我们主要针对油菜菌核病和根肿病抗性性状,油菜千粒重和分枝等农艺性状,硫苷等品质性状开展QTL定位和基因克隆研究,分子育种选育优良品种/品系。
5年的科研课题
1. 西南大学团队项目,油菜重要病害基因组学,80万,2018-2019,主持
2. 973项目,油菜高收获指数株型结构的遗传及分子解析,560万,批号:2015CB150201,2015-2020,主持
2. 国家自然科学基金,油菜铜离子分子伴侣基因BnCCH在菌核病抗性中的功能分析,62万,批号:**, 2017-2020,主持
3. 国家科技支撑计划,油菜商业化育种技术研究与示范,135万,批号:2014BAD01B07, 2014-2019,主持
4. 国家科技支撑计划,高油高产机械化专用油菜新品种培育,54万,批号:2010BAD01B02,2011-2014,主持
5. 国家自然科学基金,甘蓝型油菜角果长度主效QTL精细定位和候选基因克隆,85万,批号:**, 2015-2019,主持
6. 国家自然科学基金,利用转录组测序挖掘甘蓝菌核病抗病相关基因,61万,批号**,2012.1-2015.12,主持
成果与奖励(各种科研成果获奖、教学成果获奖、个人荣誉奖励、品种、专利、教材、专著等)
1. 油菜及其亲本种种质资源评价与利用,重庆市人民政府,重庆市自然科学奖,二等奖,2013. 第一完成人
2. 一种利用白菜拓宽芥菜A亚基因组遗传变异的方法, ZL 7.2. 第一完成人
3. 一种利用黑芥拓宽芥菜B亚基因组遗传变异的方法, ZL 9.0. 第一完成人
4. 利用甘蓝改良甘蓝型油菜的方法. ZL7.3. 第二完成人
5. 一种油菜菌核病改良的方法. ZL5.3. 第一完成人
6. 一种植物离体茎杆接种鉴定菌核病的方法. ZL2.1. 第一完成人
7. 一种利用白菜型油菜拓宽甘蓝型油菜遗传变异的方法. ZL 5.4. 第一完成人
8. 一种改良人工合成甘蓝型油菜用于发种优势利用的方法. ZL 4.1. 第一完成人
9. 利用油菜基因组间杂种优势的方法, ZL **.2. 第二完成人
近年的主要学术论文 *,通讯作者)
2018
1. Yijuan Ding, Jiaqin Mei, Yaru Chai, Yang Yu, Chaoguo Shao, Qinan Wu, Joseph Onwusemu Disi, Yuhua Li, Huafang Wan, and Wei Qian*. Imultaneous transcriptome analysis of host and pathogen highlights the interaction between Brassica oleracea and Sclerotinia sclerotiorum. Phytopathology. https://doi.org/10.1094/PHYTO-06-18-0204-R
2. Yongjing Zhang, Qinfei Li, Yixin Cui, Zhi Liu, Zhifu Chen, Yajun He, Jiaqin Mei1, Qing Xiong, Xiaorong Li, Wei Qian*. Genetic characterization and fine mapping for multi‐inflorescence in Brassica napus L. Theoretical and Applied Genetics. https://doi.org/10.1007/s00122-018-3153-z
3. Hongli Dong, Chuandong Tan, Yuzhen Li, Yan He, Shuai Wei, Yixin Cui,Yangui Chen, Dayong Wei, Ying Fu, Yajun He, Huafang Wan, Zhi Liu, Qing Xiong, Kun Lu, Jiana Li and Wei Qian*. Genome-Wide Association Study Reveals Both Overlapping and Independent Genetic Loci to Control Seed Weight and Silique Length in Brassica napus. Frontiers in Plant Science.2018 9; doi: 10.3389/fpls.2018.00921.
4. Yajun He, Ying Fu, Dingxue Hu, Dayong Wei and Wei Qian*. QTL Mapping of Seed Glucosinolate Content Responsible for Environment in Brassica napus. Frontiers in Plant Science.2018 9; doi: 10.3389/fpls.2018.00891.
5. Qinfei Li, Yangui Chen, Fang Yue, Wei Qian*, Hongyuan Song*. Microspore culture reveals high fitness of B. napus-like gametes in an interspecific hybrid between Brassica napus and B. oleracea. PloS One. https://doi.org/10.1371/journal.pone.**
6. Dayong Wei, Yixin Cui, Jiaqin, Lunwen Qian, Kun Lu, ZhiMin Wang, Jiana Li, Qinglin Tang*, Wei Qian*. Genome-wide identification of loci affecting seed glucosinolate contents in Brassica napus L. Journal of Integrative Plant Biology.2018.9. DOI: 10.1111/jipb.12717
7. Xiaohua Wang, Ping Xu, Liang Yin, Yan Ren, Shuangling Li, Yanmao Shi, Thomas D. Alcock, Qing Xiong, Wei Qian, Xiaoyuan Chi, Manish K. Pandey, Rajeev K. Varshney, Mei Yuan. Genomic and Transcriptomic Analysis Identified Gene Clusters and Candidate Genes for Oil Content in Peanut (Arachis hypogaea L.). Plant Molecular Biology Reporter (2018) 36:518–529.
8. Lisha Peng, Lili Zhou, Qinfei Li, Dayong Wei, Xuesong Ren, Hongyuan Song, Jiaqin Mei, Jun Si and Wei Qian. Identification of Quantitative Trait Loci for Clubroot Resistance in Brassica oleracea With the Use of Brassica SNP Microarray. Frontiers in Plant Science .2018 8; doi: 10.3389/fpls.2018.00822
9. 贺亚军,吴道明,傅鹰,钱伟*.利用DH和IF2群体检测甘蓝型油菜株高相关性状QTL. 作物学报,2018, 44(4): 533-541.
10. 魏大勇,崔艺馨,熊清,汤青林,梅家琴,李加纳,钱伟*.用全基因组关联作图和共表达网络分析鉴定油菜种子硫苷含量的候选基因. 作物学报, 2018,44(5): 629-641.?
11. 魏大勇,崔艺馨,熊清,汤青林,梅家琴,李加纳,钱伟*.油菜种子含油量GWAS分析及位点整合系统构建. 作物学报,2018, 44(9): 1311-1319.
2017
1. Wan H, Cui Y, Ding Y, Mei J, Dong H, Zhang W, Wu S, Liang Y, Zhang C, Li J, Xiong Q, Qian W. Time-Series Analyses of Transcriptomes and Proteomes Reveal Molecular Networks Underlying Oil Accumulation in Canola. Front Plant Sci. 2017 Jan 10;7:2007. doi: 10.3389/fpls.2016.02007.
2. Fu, Ying,Zhang, Dongqing,Gleeson, Madeleine,Zhang, Yaofeng,Lin, Baogang,Hua, Shuijin,Ding, Houdon. MartinFrauen, JianaLi, WeiQian*, HuashengYu*. Analysis of QTL for seed oil content in Brassica napus by association mapping and QTL mapping. Euphytica,2017. 17:1817-1819
3. Mei J, Wang J, Li Y, Tian S, Wei D, Shao C, Si J, Xiong Q, Li J, Qian W*. Mapping of genetic locus for leaf trichome in Brassica oleracea. Theor Appl Genet. 2017 130(9):1953-1959.
4. Dayong Wei, Yixin Cui, Yajun He, Qing Xiong, Lunwen Qian, Chaobo Tong, Guangyuan Lu, Yijuan Ding, Jiana Li, Christian Jung and Wei Qian*. A genome-wide survey with different rapeseed ecotypes uncovers footprints of domestication and breeding. Journal of Experimental Botany. 2017. 68(17): 4791-4801
5. Y.H. Li, Y.J. Ding, C.G. Shao, J.Q. Mei and W. Qian*. EXPLORING GENE INDICATORS TO PREDICT SUSCEPTIBILITY TO SCLEROTINIA SCLEROTIORUM IN BRASSICA PLANTS. Journal of Plant Pathology. 2017, 99 (3), 593-598
6. Yajun He, Daoming Wu, Dayong Wei, Ying Fu, Yixin Cui, Hongli Dong, Chuandong Tan & Wei Qian*. GWAS, QTL mapping and gene expression analyses in Brassica napus reveal genetic control of branching morphogenesis. Scientific RepORTS, 2017 Nov 11; 7: 15971 | DOI:10.1038/s41598-017-15976-4
7. 魏大勇,谭传东,崔艺馨,吴道明,李加纳,梅家琴,钱伟. 甘蓝型油菜 polCMS 育性恢复位点的全基因组关联分析. 中国农业科学,2017,50(5):802-810.
8. 李勤菲,陈致富,刘瑶,梅家琴,钱伟. 六倍体(AnAnCnCnCoCo)与白菜型油菜杂交可交配性及后代菌核病抗性. 中国农业科学,2017,50(1):123-130.
9. 贺亚军,吴道明,游婧璨,钱伟. 油菜耐盐相关性状的全基因组关联分析及其候选基因预测. 中国农业科学,2017,50(7):1189-1201.
2016
1. Qian L, Qian W, Snowdon RJ. (2016) Haplotype hitchhiking promotes trait coselection in Brassica napus. Plant Biotechnol J. 2016 Jan 23. doi: 10.1111/pbi.12521.
2. Jiaqin Mei, Yijuan Ding, Yuehua Li, Chaobo Tong, Hai Du, Yang Yu, Huafan Wan, Qing Xiong, Jingyin Yu, Shengyi Liu, Jiana Li & Wei Qian*. Transcriptomic comparison between Brassica oleracea and rice (Oryza sativa) reveals diverse modulations on cell death in response to Sclerotinia sclerotiorum. Scientific Reports 2016, 6:33706
3. Qian L, Voss-Fels K, Cui Y, Jan HU, Samans B, Obermeier C, Qian W, Snowdon RJ. Deletion of a stay-green gene associates with adaptive selection in Brassica napus. Mol Plant. 2016 Nov 4. pii: S1674-2052(16)30264-7. doi: 10.1016/j.molp.2016.10.017.
4. He Y, Mao S, Gao Y, Zhu L, Wu D, Cui Y, Li J, Qian W*. Genome-Wide Identification and Expression Analysis of WRKY Transcription Factors under Multiple Stresses in Brassica napus.PLoS One. 2016 Jun 20;11(6):e**. doi: 10.1371/journal.pone.**.
5. Yang Yu, Jifen Xiao, Wenjun Zhu, Yuheng Yang, Jiaqin Mei, Chaowei Bi, Wei Qian, Ling Qing, Wanzhong Tan. Ss-Rhs1, a secretory Rhs repeat-containing protein, is required for the virulence of Sclerotinia sclerotiorum. Molecular Plant Pathology, 2016 , 18 (8).
2015
1. Fu Y, Wei D, Dong H, He Y, Cui Y, Mei J, Wan H, Li J, Snowdon R, Friedt W, Li X, Qian W*. (2015) Comparative quantitative trait loci for silique length and seed weight in Brassica napus. Sci Rep. 5:14407. doi: 10.1038/srep14407.
2. Schiessl S, Iniguez-Luy F, Qian W, Snowdon RJ. (2015) Diverse regulatory factors associate with flowering time and yield responses in winter-type Brassica napus. BMC Genomics. 16:737.
3. Wang J, Jian H, Wei L, Qu C, Xu X, Lu K, Qian W, Li J, Li M, Liu L. (2015) Genome-Wide Analysis of Seed Acid Detergent Lignin (ADL) and Hull Content in Rapeseed (Brassica napus L.). PLoS One. 10(12):e**.
4. Jiaqin Mei, Yao Liu, Dayong Wei, Benjamin Wittko, Yijuan Ding, Qinfei Li, Jiana Li, Huafang Wan, Zaiyun Li, Xianhong Ge, Martin Frauen, Rod J. Snowdon, Qian Wei*, Wolfgang Friedt*. (2015) Transfer of sclerotinia resistance from wild relative of Brassica oleracea into Brassica napus using a hexaploidy step. Theoretical and Applied Genetics, 2015 128: 639-644
5. Jiaqin Mei, Dayong Wei, Qinfei Li, Jiana Li, Wei Qian*. (2015) Effective accumulated temperature is associated with the efficiency of hybrid ovary culture between Brassica napus and B. oleracea. Acta Physiologiae Plantarum, 2015 37:18
6. Ying Fu, Kun Lu, Lunwen Qian, Jiaqin Mei, Dayong Wei, Xuhui Peng, Xinfu Xu, Jiana Li, Martin Frauen, Felix Dreyer, Rod J. Snowdon*, Wei Qian*. (2015) Development of Genic cleavage markers in association with seed glucosinolate content in canola. Theor Appl Genet. 128(6):1029-37. doi: 10.1007/s00122-015-2487-z.
7. Yijuan Ding, Jiaqin Mei, Yao Liu, Lei Wang, Yuehua Li, Huafang Wan, Jiana Li, Wei Qian (2015) Transfer of sclerotinia stem rot resistance from wild Brassica oleracea into B. rapa. Mol Breeding 35:225?DOI 10.1007/s11032-015-0392-4
8. 陈致富,李勤菲,张永晶,崔艺馨,许汪洁,贺亚军,万华方,李晓荣, (2015) 白菜型油菜品种萌发期的抗旱性鉴定与筛选. 植物遗传资源学报 16(1):15-22?
9. 刘 瑶,丁一娟,汪 雷,万华方,梅家琴, (2015) 甘蓝型油菜与 AnAnCnCnCoCo六倍体的可交配性及杂交种菌核病抗性. 中国农业科学 48(24):4885-4891?
2014
1. Disi, J.O., Mei, J., Wei, D., Ding, Y., Qian, W.* (2014): Inheritance of leaf and stem resistance to Sclerotinia sclerotiorum in a cross between Brassica incana and Brassica oleracea var. albolabra. Journal of Agricultural Science, 152: 146-152
2. Wei, D., Mei, J., Fu, Y., Disi1, J.O., Li, J., Qian, W.* (2014): Quantitative trait loci analyses for resistance to Sclerotiniasclerotiorum and flowering time in Brassica napus. Molecular breeding, 34: 1797-1804
3. Li, Q., Zhou, Q., Mei, J., Zhang, Y., Li, J., Li, Z., Ge, X., Xiong, Z., Huang, Y., Qian, W. * (2014): Improvment of Brassica napus via interspecific hybridization between B. napus and B. oleracea. Molecular breeding, 34: 1955-1963
4. Qian, L., Qian, W., Snowdon, R.. (2014) Sub-genomic selection patterns as a signature of breeding in the allopolyploid Brassica napus genome. BMC Genomics.15:1170. doi: 10.1186/1471-2164-15-1170.
2013
1. Yijuang Ding, Jiaqin Mei, Qinfei Li, Yao Liu, Huafang Wan, Lei Wang, Heiko C.Becker, Wei Qian*. Improvement of Sclerotinia sclerotiorum resistance in Brassica napus by using B. oleracea. Genetics Resource and Crop Evolution, 2013, 60:1615-1619
2. Qinfei Li, Jiaqing Mei, Yongjing Zhang, Jiana Li, Xianhong Ge, Zaiyun Li, Wei Qian*. A large-scale introgression of genomic components of Brassica rapa into B. napus by the bridge of hexaploid derived from hybridization between B. napus and B. oleracea. Theoretical and Applied Genetics, 2013, 126:2073-2080
3. Jiaqin Mei, Yijuan Ding, Kun Lu, Dayong Wei, Yao Liu, Joeseph Onwusemu Disi, Jiana Li, Liezhao Liu, Shengyi Liu, John McKay, Wei Qian*. Identification of genomic regions involved in resistance against Sclerotinia sclerotiorum from wild Brassica oleracea. Theoretical and Applied Genetics, 2013, 126:549-556
4. Wanshan Xiong, Xiaorong Li, Donghui Fu, Jiaqin Mei, Qinfei Li, Guanyuan Lu, Luwen Qian, Yin Fu, Joseph Onwusemu Disi, Jiana Li, Wei Qian*. DNA methylation alterations at 5’-CCGG sites in the interspecific and intraspecific hybridizations derived from Brassica rapa and B. napus. PLoS ONE, 2013, 8(6):e65946
5. Qian Lunwen, Chen Lunlin, Mei Jiaqin, Li Maoteng, Martin Frauen, Chistian Jung, Qian Wei, Meng Jinling. Heterotic patterns in rapeseed (Brassica napus L.) using exotic germplasm for Chinese semi-winter hybrid breeding. Engineering Sciences, 2013, 11(5): 41-44, 50
6. J. O. DISI, J. MEI, D. WEI, Y. DING &W. QIAN*?. Inheritance of leaf and stem resistance to Sclerotinia sclerotiorum in a cross between Brassica incana and Brassica oleracea var. alboglabra. Journal of Agricultural Science,2013, doi:10.1017/S002**87
7. 丁一娟, 魏大勇, 刘瑶, 梅家琴, 钱伟*.不同类型甘蓝的可交配性研究. 植物遗传资源学报, 2013, 14(2): 342-346
8. 杨续蕊, 李勤菲, 葛贤宏, 李再云, 钱伟*. 芥菜型油菜与埃塞俄比亚芥杂种基因组原位杂交分析. 植物遗传资源学报, 2013, 14(2):329-333
2012
1. Joseph Onwusemu Disi, Dayong Wei, Jiaqin Wei, Wei Qian*. Understanding epigenetic effects in crop species. African Journal of Plant Science, 2012, 6 (14):355-363
2. Jiaqin Mei, Dayong Wei, Joseph Onwusemu Disi, Yijuan Ding, Yao Liu, Wei Qian*. Screening resistance against Sclerotinia sclerotiorum in Brassica crops with use of detached stem assay under controlled environment. European Journal of Plant Pathology, 2012, 134: 599-604
3. Lijuan Wei, Chaoxian Zhao, Jiana Li, Wei Qian, Donghui Fu. Screening of core simple sequence repeat primer pairs and extablishment of a multiplex polymerase chain reaction system for Brassica genomes A and C. Plant Breeding, 2012, 131: 457-459
4. Gao C, Xiao M, Jiang L, Li J, Yin J, Ren X, Qian W, Oscar O, Fu D, Tang Z. Characterization of transcriptional activation and inserted-into-gene preference of various transposable elements in the Brassica species. Mol Biol Rep. 2012. 39:7513-23.
5. Fu D, Qian W, Zou J, Meng J. Genetic dissection of intersubgenomic heterosis in Brassica napus carrying genomic components of B. rapa. Euphytica. 2012. 184:151-164.
6. 万华方, 刘瑶, 梅家琴, 丁一娟, 梁颖, 曲存民, 卢坤, 李加纳, 钱伟*.人工合成高抗菌核病甘蓝型油菜几种关键酶编码基因的表达与其抗性的关系. 中国农业科学, 2012, 45(22): 4543-4451
2011
1. Jiaqin Mei, Lunwen Qian, J. O. Disi, Xurui Yang, Qinfei Li, Jiana Li, M. Frauen, Daguang Cai, Wei Qian*. Identification of resistance against Sclerotinia sclerotiorum in Brassica species with emphasis on B. oleracea. Euphytica, 2011, 177: 393-399
2. Jiaqin Mei, Qinfei Li, Lunwen Qian, Yin Fu, Jiana Li, Martin Frauen, Wei Qian*. Genetic investigation of the origination of allopolyploid with virtually synthesized lines: Application to the C subgenome of Brassica napus. Heredity, 2011, 106: 955-961
3. Jiaqin Mei, Ying Fu, Lunwen Qian, Xinfu Xu, Jiana Li, Wei Qian*. Effectively widening the gene pool of oilseed rape (Brassica napus L.) by using Chinese B. rapa in a ‘virtual allopolyploid’ approach. Plant Breeding, 2013, 130: 333-337
4. Nian Wang, Wei Qian, Ida Suppanz, Lijuan Wei, Bizeng Mao,Yan Long, Jinling Meng, Andreas E. Müller, Christian Jung. Flowering time variation in oilseed rape (Brassica napus L.) is associated with allelic variation in the FRIGIDA homologue BnaA.FRI.a. Journal of Experimental Botany, 2011, 62: 5641-58
5. Jun Zou, Donghui Fu, Huihui Gong, Wei Qian, Wei Xia, Chris Pires, Ruiyuan Li, Yan Long, Annaliese S. Mason, Tae-Jin Yang, Yong P Lim, Beom S. Park, Jinling Meng. De novo genetic variation associated with retrotransposon activation, genomic rearrangements and trait variation in a RIL population of Brassica napus derived from interspecific hybridization with B. rapa. Plant Journal, 2011, 68(2): 212-24
6. 李勤菲, 向竹清, 梅家琴, 杨续蕊, 李加纳, 钱伟*. 秋水仙碱对芸薹属三种单倍体染色体加倍效率. 中国油料作物学报, 2011, 33(4):409-411
2010
1. J. Mei, Q. Li, X. Yang, L. Qian, L. Liu, J. Yin, M. Frauen, J. Li, W. Qian*. Genomic relationships between wild and cultivated Brassica oleracea L. with emphasis on the origination of cultivated crops. Genetics Resource and Crop Evolution, 2010, 57: 687-692
2. Maoteng Li, Wei Qian, Xin Chen, Jinling Meng. The progress of intersubgenomic heterosis studies in Brassica napus. African Journal of Biotechnology, 2010, 9: 1543-1550
3. 陈新,钱伟,曾长英,王文泉,孟金陵. 合成甘蓝型油菜中双隐性雄性核不育材料的发现及遗传规律分析.热带亚热带植物学报, 2010, 18(3):217-221
4. 傅鹰, 覃锋, 梅家琴, 李加纳, 徐新福, 刘列钊, 谌利, 李海渤, 钱伟*. 白菜型油菜黄子资源的初步遗传研究. 植物遗传资源学报, 2010, 11(6):729-735
2009
1. Qian, W., Sass, O., Meng, J., Li, M., Frauen, M., Jung, C. Heterotic patterns in rapeseed (Brassica napus L.): II. Crosses between winter and Chinese semi-winter lines. Plant Breeding, 2009, 128: 466-470
2. 梅家琴,李加纳,李勤菲,任自力,史佩娟,殷家明,刘列钊,徐新福,钱伟*. 芸薹属远缘杂交试管苗快繁培养基的优化. 中国油料作物学报, 2009, 31:527-530
2008年及以前
1. Chen, X., Li, M., Shi, J., Fu, D., Qian, W., Zou, J., Zhang, C., Meng, J.. Gene expression profiles associated with intersubgenomic heterosis in Brasscia napus. Theoretical and Applied Genetics, 2008, 117: 1031-1040
2. 熊万山,李加纳,刘列钊,钱 伟*. RNAi 机制及在植物遗传改良中的应用. 西南大学学报,2008,30: 81-85
3. Li, M., Zhang, C., Qian, W., Meng, J. Genetic Diversity of Brassica Species Revealed by Amplified Fragment Length Polymorphism and Simple Sequence Repeat Markers. Horticulture, Environment and Biotechnology, 2007, 48: 9-15
4. Qian, W., Sass, O., Meng, J., Li, M., Frauen, M., Jung, C. Heterotic patterns in rapeseed (Brassica napus L.): I. Crosses between spring and Chinese semi-winter lines. Theoretical and Applied Genetics, 2007, 115: 27-34.
5. Jung, C., Qian, W., Bfittner, B., et al.. Using genomic information for altering bolting and flowering behaviour of crop plants. Molecular Plant Breeding, 2007, 5: 156-158.
6. 梅家琴,李加纳,谌利,刘列钊,钱伟*. 高温对不同基因型油菜种子含油量影响的初探。西南大学学, 2007,29:9-11
7. Qian, W., Meng, J., Li, M., Frauen, M., Sass, O. , Noack, J., Jung, C. Introgression of genomic components from Chinese Brassica rapa contributes to widening genetic diversity in rapeseed (B. napus L) with emphasis on the evolution of Chinese rapeseed. Theoretical and Applied Genetics, 2006, 113: 49-54
8. Qian, W., Chen, X., Fu, D., Zou, J. and Meng, J. (): Intersubgenomic heterosis in seed yield potential observed in a new type of Brassica napus introgressed with partial Brassica rapa genome. Theoretical and Applied Genetics ,2005,110: 1187-1194.
9. Li, M., Li, Z., Zhang, C., Qian, W. and Meng, J. Reproduction and cytogenetic characterization of interspecific hybrids derived from crosses between Brasscia carinata and B. rapa. Theoretical and Applied Genetics, 2005, 110: 1284-1289
10. Li, M., Qian, W., Meng, J. and Li, Z. Construction of novel Brassica napus genotypes through chromosomal substitution and elimination using interploid species hybridization. Chromosome Research , 2004, 12, 417-426.
11. Qian, W., Liu, R. and Meng, J. Genetic effects on biomass in interspecific hybrids between Brassica napus and B. rapa. Euphytica, 2003, 134, 9-15.
12. Liu, R., Qian, W. and Meng, J. Association of RFLP markers and biomass heterosis in trigenomic hybrids of oilseed rape (Brassica napus × B. campestris). Theoretical and Applied Genetics, 2002, 105, 1050-1057.
Curriculum Vitae of Dr. Wei Qian
Personal information
NAME: Wei Qian
Address: College of Agronomy and Biotechnology, Southwest University,
Beibei, Chongqing 400715, China
Phone: +86-** Fax: +86-
Date of birth: September, 1973 Nationality: China
E-Mail: qianwei666@hotmail.com
Internet home page: http://agronomy.swu.edu.cn/teacher/qianwei.htm
Education
July 2003 Ph. D in Crop Science, Huazhong Agricultural University, Wuhan
July 2000 MS in Crop Science, Huazhong Agricultural University, Wuhan
July 1995 BS in Genetics and Plant breeding, Hubei Agricultural College
Main Professional Experiences:
Mar. 2006 Present: Professor and group leader in molecular breeding
College of Agronomy and Biotechnology, Southwest University, Beibei, Chongqing 400716, China
July 2011 – August 2012: Scientific visitor in Colorado State University
Oct. 2003 – Dec. 2006: Visiting Scientist
Institute of Plant Breeding, Kiel University, and Norddeutsche Pflanzenzucht Hans-Georg Lembke KG, Germany.
Sept. 1997– Oct. 2003: Assistant Researcher
Huazhong Agricultural University, National Key Laboratory of Crop Genetic improvement, China
July 1995 – Sept. 1997: Assistant Agronomist
Bureau of agronomy in Qianjian, Hubei
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Awards
· Excellent Ph. D student award in Huazhong Agricultural University in 2002
· Excellent teacher award in Southwest University in 2009
· The second award of Chongqing National Science in 2013, endowed by the people's Government of Chongqing City
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Publications
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A) Articles in journals (*: Corresponding author)
2018
1. Yijuan Ding, Jiaqin Mei, Yaru Chai, Yang Yu, Chaoguo Shao, Qinan Wu, Joseph Onwusemu Disi, Yuhua Li, Huafang Wan, and Wei Qian*. Imultaneous transcriptome analysis of host and pathogen highlights the interaction between Brassica oleracea and Sclerotinia sclerotiorum. Phytopathology. https://doi.org/10.1094/PHYTO-06-18-0204-R
2. Yongjing Zhang, Qinfei Li, Yixin Cui, Zhi Liu, Zhifu Chen, Yajun He, Jiaqin Mei1, Qing Xiong, Xiaorong Li, Wei Qian*. Genetic characterization and fine mapping for multi‐inflorescence in Brassica napus L. Theoretical and Applied Genetics. https://doi.org/10.1007/s00122-018-3153-z
3. Hongli Dong, Chuandong Tan, Yuzhen Li, Yan He, Shuai Wei, Yixin Cui,Yangui Chen, Dayong Wei, Ying Fu, Yajun He, Huafang Wan, Zhi Liu, Qing Xiong, Kun Lu, Jiana Li and Wei Qian*. Genome-Wide Association Study Reveals Both Overlapping and Independent Genetic Loci to Control Seed Weight and Silique Length in Brassica napus. Frontiers in Plant Science.2018 9; doi: 10.3389/fpls.2018.00921.
4. Yajun He, Ying Fu, Dingxue Hu, Dayong Wei and Wei Qian*. QTL Mapping of Seed Glucosinolate Content Responsible for Environment in Brassica napus. Frontiers in Plant Science.2018 9; doi: 10.3389/fpls.2018.00891.
5. Qinfei Li, Yangui Chen, Fang Yue, Wei Qian*, Hongyuan Song*. Microspore culture reveals high fitness of B. napus-like gametes in an interspecific hybrid between Brassica napus and B. oleracea. PloS One. https://doi.org/10.1371/journal.pone.**
6. Dayong Wei, Yixin Cui, Jiaqin, Lunwen Qian, Kun Lu, ZhiMin Wang, Jiana Li, Qinglin Tang*, Wei Qian*. Genome-wide identification of loci affecting seed glucosinolate contents in Brassica napus L. Journal of Integrative Plant Biology.2018.9. DOI: 10.1111/jipb.12717
7. Xiaohua Wang, Ping Xu, Liang Yin, Yan Ren, Shuangling Li, Yanmao Shi, Thomas D. Alcock, Qing Xiong, Wei Qian, Xiaoyuan Chi, Manish K. Pandey, Rajeev K. Varshney, Mei Yuan. Genomic and Transcriptomic Analysis Identified Gene Clusters and Candidate Genes for Oil Content in Peanut (Arachis hypogaea L.). Plant Molecular Biology Reporter (2018) 36:518–529.
8. Lisha Peng, Lili Zhou, Qinfei Li, Dayong Wei, Xuesong Ren, Hongyuan Song, Jiaqin Mei, Jun Si and Wei Qian. Identification of Quantitative Trait Loci for Clubroot Resistance in Brassica oleracea With the Use of Brassica SNP Microarray. Frontiers in Plant Science .2018 8; doi: 10.3389/fpls.2018.00822
9. 贺亚军,吴道明,傅鹰,钱伟*.利用DH和IF2群体检测甘蓝型油菜株高相关性状QTL. 作物学报,2018, 44(4): 533-541.
10. 魏大勇,崔艺馨,熊清,汤青林,梅家琴,李加纳,钱伟*.用全基因组关联作图和共表达网络分析鉴定油菜种子硫苷含量的候选基因. 作物学报, 2018,44(5): 629-641.?
11. 魏大勇,崔艺馨,熊清,汤青林,梅家琴,李加纳,钱伟*.油菜种子含油量GWAS分析及位点整合系统构建. 作物学报,2018, 44(9): 1311-1319.
2017
1. Wan H, Cui Y, Ding Y, Mei J, Dong H, Zhang W, Wu S, Liang Y, Zhang C, Li J, Xiong Q, Qian W. Time-Series Analyses of Transcriptomes and Proteomes Reveal Molecular Networks Underlying Oil Accumulation in Canola. Front Plant Sci. 2017 Jan 10;7:2007. doi: 10.3389/fpls.2016.02007.
2. Fu, Ying,Zhang, Dongqing,Gleeson, Madeleine,Zhang, Yaofeng,Lin, Baogang,Hua, Shuijin,Ding, Houdon. MartinFrauen, JianaLi, WeiQian*, HuashengYu*. Analysis of QTL for seed oil content in Brassica napus by association mapping and QTL mapping. Euphytica,2017. 17:1817-1819
3. Mei J, Wang J, Li Y, Tian S, Wei D, Shao C, Si J, Xiong Q, Li J, Qian W*. Mapping of genetic locus for leaf trichome in Brassica oleracea. Theor Appl Genet. 2017 130(9):1953-1959.
4. Dayong Wei, Yixin Cui, Yajun He, Qing Xiong, Lunwen Qian, Chaobo Tong, Guangyuan Lu, Yijuan Ding, Jiana Li, Christian Jung and Wei Qian*. A genome-wide survey with different rapeseed ecotypes uncovers footprints of domestication and breeding. Journal of Experimental Botany. 2017. 68(17): 4791-4801
5. Y.H. Li, Y.J. Ding, C.G. Shao, J.Q. Mei and W. Qian*. EXPLORING GENE INDICATORS TO PREDICT SUSCEPTIBILITY TO SCLEROTINIA SCLEROTIORUM IN BRASSICA PLANTS. Journal of Plant Pathology. 2017, 99 (3), 593-598
6. Yajun He, Daoming Wu, Dayong Wei, Ying Fu, Yixin Cui, Hongli Dong, Chuandong Tan & Wei Qian*. GWAS, QTL mapping and gene expression analyses in Brassica napus reveal genetic control of branching morphogenesis. Scientific RepORTS, 2017 Nov 11; 7: 15971 | DOI:10.1038/s41598-017-15976-4
7. 魏大勇,谭传东,崔艺馨,吴道明,李加纳,梅家琴,钱伟. 甘蓝型油菜 polCMS 育性恢复位点的全基因组关联分析. 中国农业科学,2017,50(5):802-810.
8. 李勤菲,陈致富,刘瑶,梅家琴,钱伟. 六倍体(AnAnCnCnCoCo)与白菜型油菜杂交可交配性及后代菌核病抗性. 中国农业科学,2017,50(1):123-130.
9. 贺亚军,吴道明,游婧璨,钱伟. 油菜耐盐相关性状的全基因组关联分析及其候选基因预测. 中国农业科学,2017,50(7):1189-1201
2016
1. Qian L, Qian W, Snowdon RJ. (2016) Haplotype hitchhiking promotes trait coselection in Brassica napus. Plant Biotechnol J. 2016 Jan 23. doi: 10.1111/pbi.12521.
2. Jiaqin Mei, Yijuan Ding, Yuehua Li, Chaobo Tong, Hai Du, Yang Yu, Huafan Wan, Qing Xiong, Jingyin Yu, Shengyi Liu, Jiana Li & Wei Qian*. Transcriptomic comparison between Brassica oleracea and rice (Oryza sativa) reveals diverse modulations on cell death in response to Sclerotinia sclerotiorum. Scientific Reports 2016, 6:33706
3. Qian L, Voss-Fels K, Cui Y, Jan HU, Samans B, Obermeier C, Qian W, Snowdon RJ. Deletion of a stay-green gene associates with adaptive selection in Brassica napus. Mol Plant. 2016 Nov 4. pii: S1674-2052(16)30264-7. doi: 10.1016/j.molp.2016.10.017.
4. He Y, Mao S, Gao Y, Zhu L, Wu D, Cui Y, Li J, Qian W*. Genome-Wide Identification and Expression Analysis of WRKY Transcription Factors under Multiple Stresses in Brassica napus.PLoS One. 2016 Jun 20;11(6):e**. doi: 10.1371/journal.pone.**.
5. Yang Yu, Jifen Xiao, Wenjun Zhu, Yuheng Yang, Jiaqin Mei, Chaowei Bi, Wei Qian, Ling Qing, Wanzhong Tan. Ss-Rhs1, a secretory Rhs repeat-containing protein, is required for the virulence of Sclerotinia sclerotiorum. Molecular Plant Pathology, 2016 , 18 (8).
2015
1. Fu Y, Wei D, Dong H, He Y, Cui Y, Mei J, Wan H, Li J, Snowdon R, Friedt W, Li X, Qian W*. (2015) Comparative quantitative trait loci for silique length and seed weight in Brassica napus. Sci Rep. 5:14407. doi: 10.1038/srep14407.
2. Schiessl S, Iniguez-Luy F, Qian W, Snowdon RJ. (2015) Diverse regulatory factors associate with flowering time and yield responses in winter-type Brassica napus. BMC Genomics. 16:737.
3. Wang J, Jian H, Wei L, Qu C, Xu X, Lu K, Qian W, Li J, Li M, Liu L. (2015) Genome-Wide Analysis of Seed Acid Detergent Lignin (ADL) and Hull Content in Rapeseed (Brassica napus L.). PLoS One. 10(12): e**.
4. Jiaqin Mei, Yao Liu, Dayong Wei, Benjamin Wittko, Yijuan Ding, Qinfei Li, Jiana Li, Huafang Wan, Zaiyun Li, Xianhong Ge, Martin Frauen, Rod J. Snowdon, Qian Wei*, Wolfgang Friedt*. (2015) Transfer of sclerotinia resistance from wild relative of Brassica oleracea into Brassica napus using a hexaploidy step. Theoretical and Applied Genetics, 2015 128: 639-644
5. Jiaqin Mei, Dayong Wei, Qinfei Li, Jiana Li, Wei Qian*. (2015) Effective accumulated temperature is associated with the efficiency of hybrid ovary culture between Brassica napus and B. oleracea. Acta Physiologiae Plantarum, 2015 37:18
6. Ying Fu, Kun Lu, Lunwen Qian, Jiaqin Mei, Dayong Wei, Xuhui Peng, Xinfu Xu, Jiana Li, Martin Frauen, Felix Dreyer, Rod J. Snowdon*, Wei Qian*. (2015) Development of Genic cleavage markers in association with seed glucosinolate content in canola. Theor Appl Genet. 128(6):1029-37. doi: 10.1007/s00122-015-2487-z.
7. Yijuan Ding, Jiaqin Mei, Yao Liu, Lei Wang, Yuehua Li, Huafang Wan, Jiana Li, Wei Qian (2015) Transfer of sclerotinia stem rot resistance from wild Brassica oleracea into B. rapa. Mol Breeding 35:225?DOI 10.1007/s11032-015-0392-4
8. 陈致富,李勤菲,张永晶,崔艺馨,许汪洁,贺亚军,万华方,李晓荣, (2015) 白菜型油菜品种萌发期的抗旱性鉴定与筛选. 植物遗传资源学报 16(1):15-22?
9. 刘 瑶,丁一娟,汪 雷,万华方,梅家琴, (2015) 甘蓝型油菜与 AnAnCnCnCoCo六倍体的可交配性及杂交种菌核病抗性. 中国农业科学 48(24):4885-4891?
2014
1. Disi, J.O., Mei, J., Wei, D., Ding, Y., Qian, W.* (2014): Inheritance of leaf and stem resistance to Sclerotinia sclerotiorum in a cross between Brassica incana and Brassica oleracea var. albolabra. Journal of Agricultural Science, 152: 146-152
2. Wei, D., Mei, J., Fu, Y., Disi1, J.O., Li, J., Qian, W.* (2014): Quantitative trait loci analyses for resistance to Sclerotiniasclerotiorum and flowering time in Brassica napus. Molecular breeding, 34: 1797-1804
3. Li, Q., Zhou, Q., Mei, J., Zhang, Y., Li, J., Li, Z., Ge, X., Xiong, Z., Huang, Y., Qian, W. * (2014): Improvment of Brassica napus via interspecific hybridization between B. napus and B. oleracea. Molecular breeding, 34: 1955-1963
4. Qian L, Qian W, Snowdon RJ. Sub-genomic selection patterns as a signature of breeding in the allopolyploid Brassica napus genome. BMC Genomics. 2014 Dec 23;15:1170. doi: 10.1186/1471-2164-15-1170
2013
1. Yijuang Ding, Jiaqin Mei, Qinfei Li, Yao Liu, Huafang Wan, Lei Wang, Heiko C.Becker, Wei Qian*. Improvement of Sclerotinia sclerotiorum resistance in Brassica napus by using B. oleracea. Genetics Resource and Crop Evolution, 2013, 60:1615-1619
2. Qinfei Li, Jiaqing Mei, Yongjing Zhang, Jiana Li, Xianhong Ge, Zaiyun Li, Wei Qian*. A large-scale introgression of genomic components of Brassica rapa into B. napus by the bridge of hexaploid derived from hybridization between B. napus and B. oleracea. Theoretical and Applied Genetics, 2013, 126:2073-2080
3. Jiaqin Mei, Yijuan Ding, Kun Lu, Dayong Wei, Yao Liu, Joeseph Onwusemu Disi, Jiana Li, Liezhao Liu, Shengyi Liu, John McKay, Wei Qian*. Identification of genomic regions involved in resistance against Sclerotinia sclerotiorum from wild Brassica oleracea. Theoretical and Applied Genetics, 2013, 126:549-556
4. Wanshan Xiong, Xiaorong Li, Donghui Fu, Jiaqin Mei, Qinfei Li, Guanyuan Lu, Luwen Qian, Yin Fu, Joseph Onwusemu Disi, Jiana Li, Wei Qian*. DNA methylation alterations at 5’-CCGG sites in the interspecific and intraspecific hybridizations derived from Brassica rapa and B. napus. PLoS ONE, 2013, 8(6):e65946
5. Qian Lunwen, Chen Lunlin, Mei Jiaqin, Li Maoteng, Martin Frauen, Chistian Jung, Qian Wei, Meng Jinling. Heterotic patterns in rapeseed (Brassica napus L.) using exotic germplasm for Chinese semi-winter hybrid breeding. Engineering Sciences, 2013, 11(5): 41-44, 50
6. J. O. DISI, J. MEI, D. WEI, Y. DING &W. QIAN*?. Inheritance of leaf and stem resistance to Sclerotinia sclerotiorum in a cross between Brassica incana and Brassica oleracea var. alboglabra. Journal of Agricultural Science,2013, doi:10.1017/S002**87
7. 丁一娟, 魏大勇, 刘瑶, 梅家琴, 钱伟*.不同类型甘蓝的可交配性研究. 植物遗传资源学报, 2013, 14(2): 342-346
8. 杨续蕊, 李勤菲, 葛贤宏, 李再云, 钱伟*. 芥菜型油菜与埃塞俄比亚芥杂种基因组原位杂交分析. 植物遗传资源学报, 2013, 14(2):329-333
2012
1. Joseph Onwusemu Disi, Dayong Wei, Jiaqin Wei, Wei Qian*. Understanding epigenetic effects in crop species. African Journal of Plant Science, 2012, 6 (14):355-363
2. Jiaqin Mei, Dayong Wei, Joseph Onwusemu Disi, Yijuan Ding, Yao Liu, Wei Qian*. Screening resistance against Sclerotinia sclerotiorum in Brassica crops with use of detached stem assay under controlled environment. European Journal of Plant Pathology, 2012, 134: 599-604
3. Lijuan Wei, Chaoxian Zhao, Jiana Li, Wei Qian, Donghui Fu. Screening of core simple sequence repeat primer pairs and extablishment of a multiplex polymerase chain reaction system for Brassica genomes A and C. Plant Breeding, 2012, 131: 457-459
4. Gao C, Xiao M, Jiang L, Li J, Yin J, Ren X, Qian W, Oscar O, Fu D, Tang Z. Characterization of transcriptional activation and inserted-into-gene preference of various transposable elements in the Brassica species. Mol Biol Rep. 2012. 39:7513-23.
5. Fu D, Qian W, Zou J, Meng J. Genetic dissection of intersubgenomic heterosis in Brassica napus carrying genomic components of B. rapa. Euphytica. 2012. 184:151-164.
6. 万华方, 刘瑶, 梅家琴, 丁一娟, 梁颖, 曲存民, 卢坤, 李加纳, 钱伟*.人工合成高抗菌核病甘蓝型油菜几种关键酶编码基因的表达与其抗性的关系. 中国农业科学, 2012, 45(22): 4543-4451
2011
1. Jiaqin Mei, Lunwen Qian, J. O. Disi, Xurui Yang, Qinfei Li, Jiana Li, M. Frauen, Daguang Cai, Wei Qian*. Identification of resistance against Sclerotinia sclerotiorum in Brassica species with emphasis on B. oleracea. Euphytica, 2011, 177: 393-399
2. Jiaqin Mei, Qinfei Li, Lunwen Qian, Yin Fu, Jiana Li, Martin Frauen, Wei Qian* . Genetic investigation of the origination of allopolyploid with virtually synthesized lines: Application to the C subgenome of Brassica napus. Heredity, 2011, 106: 955-961
3. Jiaqin Mei, Ying Fu, Lunwen Qian, Xinfu Xu, Jiana Li, Wei Qian*. Effectively widening the gene pool of oilseed rape (Brassica napus L.) by using Chinese B. rapa in a ‘virtual allopolyploid’ approach. Plant Breeding, 2013, 130: 333-337
4. Nian Wang, Wei Qian, Ida Suppanz, Lijuan Wei, Bizeng Mao,Yan Long, Jinling Meng, Andreas E. Müller, Christian Jung. Flowering time variation in oilseed rape (Brassica napus L.) is associated with allelic variation in the FRIGIDA homologue BnaA.FRI.a. Journal of Experimental Botany, 2011, 62: 5641-58
5. Jun Zou, Donghui Fu, Huihui Gong, Wei Qian, Wei Xia, Chris Pires, Ruiyuan Li, Yan Long, Annaliese S. Mason, Tae-Jin Yang, Yong P Lim, Beom S. Park, Jinling Meng. De novo genetic variation associated with retrotransposon activation, genomic rearrangements and trait variation in a RIL population of Brassica napus derived from interspecific hybridization with B. rapa. Plant Journal, 2011, 68(2): 212-24
6. 李勤菲, 向竹清, 梅家琴, 杨续蕊, 李加纳, 钱伟*. 秋水仙碱对芸薹属三种单倍体染色体加倍效率. 中国油料作物学报, 2011, 33(4):409-411
2010
1. J. Mei, Q. Li, X. Yang, L. Qian, L. Liu, J. Yin, M. Frauen, J. Li, W. Qian*. Genomic relationships between wild and cultivated Brassica oleracea L. with emphasis on the origination of cultivated crops. Genetics Resource and Crop Evolution, 2010, 57: 687-692
2. Maoteng Li, Wei Qian, Xin Chen, Jinling MengThe progress of intersubgenomic heterosis studies in Brassica napus. African Journal of Biotechnology, 2010, 9: 1543-1550
3. 陈新,钱伟,曾长英,王文泉,孟金陵. 合成甘蓝型油菜中双隐性雄性核不育材料的发现及遗传规律分析.热带亚热带植物学报, 2010, 18(3):217-221
4. 傅鹰, 覃锋, 梅家琴, 李加纳, 徐新福, 刘列钊, 谌利, 李海渤, 钱伟*. 白菜型油菜黄子资源的初步遗传研究. 植物遗传资源学报, 2010, 11(6):729-735
2009
1. Qian, W., Sass, O., Meng, J., Li, M., Frauen, M., Jung, C. Heterotic patterns in rapeseed (Brassica napus L.): II{C}{C}. Crosses between winter and Chinese semi-winter lines. Plant Breeding, 2009, 128: 466-470
2. 梅家琴,李加纳,李勤菲,任自力,史佩娟,殷家明,刘列钊,徐新福,钱伟*. 芸薹属远缘杂交试管苗快繁培养基的优化. 中国油料作物学报, 2009, 31:527-530
2008年及以前
1. Chen, X., Li, M., Shi, J., Fu, D., Qian, W., Zou, J., Zhang, C., Meng, J.. Gene expression profiles associated with intersubgenomic heterosis in Brasscia napus. Theoretical and Applied Genetics, 2008, 117: 1031-1040
2. 熊万山,李加纳,刘列钊,钱 伟*. RNAi 机制及在植物遗传改良中的应用. 西南大学学报,2008,30: 81-85
3. Li, M., Zhang, C., Qian, W., Meng, J. Genetic Diversity of Brassica Species Revealed by Amplified Fragment Length Polymorphism and Simple Sequence Repeat Markers. Horticulture, Environment and Biotechnology, 2007, 48: 9-15
4. Qian, W., Sass, O., Meng, J., Li, M., Frauen, M., Jung, C. Heterotic patterns in rapeseed (Brassica napus L.): I. Crosses between spring and Chinese semi-winter lines. Theoretical and Applied Genetics, 2007, 115: 27-34.
5. Jung, C., Qian, W., Bfittner, B., et al.. Using genomic information for altering bolting and flowering behaviour of crop plants. Molecular Plant Breeding, 2007, 5: 156-158.
6. 梅家琴,李加纳,谌利,刘列钊,钱伟*. 高温对不同基因型油菜种子含油量影响的初探。西南大学学, 2007,29:9-11
7. Qian, W., Meng, J., Li, M., Frauen, M., Sass, O. , Noack, J., Jung, C. Introgression of genomic components from Chinese Brassica rapa contributes to widening genetic diversity in rapeseed (B. napus L) with emphasis on the evolution of Chinese rapeseed. Theoretical and Applied Genetics, 2006, 113: 49-54
8. Qian, W., Chen, X., Fu, D., Zou, J. and Meng, J. (): Intersubgenomic heterosis in seed yield potential observed in a new type of Brassica napus introgressed with partial Brassica rapa genome. Theoretical and Applied Genetics ,2005,110: 1187-1194.
9. Li, M., Li, Z., Zhang, C., Qian, W. and Meng, J. Reproduction and cytogenetic characterization of interspecific hybrids derived from crosses between Brasscia carinata and B. rapa. Theoretical and Applied Genetics, 2005, 110: 1284-1289
10. Li, M., Qian, W., Meng, J. and Li, Z. Construction of novel Brassica napus genotypes through chromosomal substitution and elimination using interploid species hybridization. Chromosome Research , 2004, 12, 417-426.
11. Qian, W., Liu, R. and Meng, J. Genetic effects on biomass in interspecific hybrids between Brassica napus and B. rapa. Euphytica, 2003, 134, 9-15.
12. Liu, R., Qian, W. and Meng, J. Association of RFLP markers and biomass heterosis in trigenomic hybrids of oilseed rape (Brassica napus × B. campestris). Theoretical and Applied Genetics, 2002, 105, 1050-1057.
B) Patents
1. Wei Qian, Qinfei Li, Jiaqin Mei, Donghui Fu, Jiana Li. Utilization of Brassica rapa to widen the genetic variation of B. napus. ZL 5.4
2. Wei Qian, Jiana li, Martin Frauen, Jiaqin Mei , Qinfei Li, Jiaming Yin. A strategy to explore heterosis with improved resynthesized rapeseed. ZL 4.1
3. Wei Qian, Jiaqin Mei, Yijuan Ding, Jiana Li, Huafan Wan. A method to improve Sclerotinia resistance in rapeseed. ZL5.3.
4. Wei Qian, Jiaqin Mei, Yijuan Ding, Dayong Wei. A method to screen plant Sclerotinia resistance by inoculating detached stem. ZL2.1.
5. Jinling Meng, Wei Qian,Renhu Liu, Jianwei Zhao. Utilization the heterosis underlying the sub-genome in rapeseed. ZL **.2
6. Wei Qian, Jiayi Ming, Jiaqin Mei, Ruifang Wei, Qinfei Li. A method to wide the genetic variation of A sub-genome of Brassica juncea by using Brassica rapa.
ZL7.2
7. Wei Qian, Jiayi Ming, Jiaqin Mei, Ruifang Wei, Qinfei Li. A method to wide the genetic variation of B sub-genome of Brassica juncea by using Brassica nigra.
ZL9.0
8. Jiaqin Mei, Wei Qian, Jiana Li, Yao Liu, Qinfei Li, Yijuan Ding. Utilization of Brassica oleracea to improve B. napus. ZL7.3

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