论文专著:
发表英文论文 :
[1]Zhang Fengqi; Huang Junyan; Tang Minqiang; Cheng Xiaohui; Liu Yueying; Tong Chaobo; Yu Jingyin; Sadia Tehrim; Dong Caihua; Liu Lingyan; Tang Baojun; Chen Jianguo*; Liu Shengyi* .Syntenic quantitative trait loci and genomic divergence for Sclerotinia resistance and flowering time in Brassica napus. Journal of Integrative Plant Biology, 2019, 61(1): 75-88.DOI: 10.1111/jipb.12754
[2]Cao, Huihui; Ke, Tao; Liu, Renhu; Yu, Jingyin; Dong, Caihua; Cheng, Mingxing; Huang, Junyan*; Liu, Shengyi.Identification of a Novel Proline-Rich Antimicrobial Peptide from Brassica napus. PLos One, 2015, 10(9): e0137414. DOI: 10.1371/journal.pone.0137414
[3]CYang, Yongxue; Dong, Caihua; Yu, Jingyin; Shi, Lei; Tong, Chaobo; Li, Zhenbo; Huang, Junyan; Liu, Shengyi*.ysteine Protease 51 (CP51), an anther-specific cysteine protease gene, is essential for pollen exine formation in Arabidopsis.Plant Cell, Tissue and Organ Culture, 2014, 119(2): 383-397.DOI: 10.1007/s11240-014-0542-0
[4]Chalhoub, Boulos*; Denoeud, France; Liu, Shengyi; Parkin, Isobel A. P.; Tang, Haibao; Wang, Xiyin; Chiquet, Julien; Belcram, Harry; Tong, Chaobo; Samans, Birgit; Correa, Margot; Da Silva, Corinne; Just, Jeremy; Falentin, Cyril; Koh, Chu Shin; Le Clainche, Isabelle; Bernard, Maria; Bento, Pascal; Noel, Benjamin; Labadie, Karine; Alberti, Adriana; Charles, Mathieu; Arnaud, Dominique; Guo, Hui; Daviaud, Christian; Alamery, Salman; Jabbari, Kamel; Zhao, Meixia; Edger, Patrick P.Early allopolyploid evolution in the post-Neolithic Brassica napus oilseed genome.Science, 2014, 345(6199): 950-953. DOI: 10.1126/science.1253435
[5]Barbetti, M. J.*; Banga, S. K.; Fu, T. D.; Li, Y. C.; Singh, D.; Liu, S. Y.; Ge, X. T.; Banga, S. S. Comparative genotype reactions to Sclerotinia sclerotiorum within breeding populations of Brassica napus and B-juncea from India and China.Euphytica, 2014, 197(1): 47-59. DOI: 10.1007/s10681-013-1049-1
[6]Liu, Shengyi*; Liu, Yumei; Yang, Xinhua; Tong, Chaobo; Edwards, David; Parkin, Isobel A. P.; Zhao, Meixia; Ma, Jianxin; Yu, Jingyin; Huang, Shunmou; Wang, Xiyin; Wang, Junyi; Lu, Kun; Fang, Zhiyuan; Bancroft, Ian; Yang, Tae-Jin; Hu, Qiong; Wang, Xinfa; Yue, Zhen; Li, Haojie; Yang, Linfeng; Wu, Jian; Zhou, Qing; Wang, Wanxin; King, Graham J.; Pires, J. Chris; Lu, Changxin; Wu, Zhangyan; Sampath, Perumal; Wang, Zhuo; Guo, Hui; Pan, Shengkai; Yang, Limei; Min, Jiumeng; Zhang, Dong. The Brassica oleracea genome reveals the asymmetrical evolution of polyploid genomes. Nature Communications, 2014, 5: 3930. DOI: 10.1038/ncomms4930
[7]Sampath, Perumal; Murukarthick, Jayakodi; Izzah, Nur Kholilatul; Lee, Jonghoon; Choi, Hong-Il; Shirasawa, Kenta; Choi, Beom-Soon; Liu, Shengyi; Nou, Ill-Sup; Yang, Tae-Jin*. Genome-Wide Comparative Analysis of 20 Miniature Inverted-Repeat Transposable Element Families in Brassica rapa and B-oleracea. PLos One, 2014, 9(4): e94499. DOI: 10.1371/journal.pone.0094499
[8]Wang, Linhai; Yu, Sheng; Tong, Chaobo; Zhao, Yingzhong; Liu, Yan; Song, Chi; Zhang, Yanxin; Zhang, Xudong; Wang, Ying; Hua, Wei; Li, Donghua; Li, Dan; Li, Fang; Yu, Jingyin; Xu, Chunyan; Han, Xuelian; Huang, Shunmou; Tai, Shuaishuai; Wang, Junyi; Xu, Xun; Li, Yingrui; Liu, Shengyi*; Varshney, Rajeev K; Wang, Jun; Zhang, Xiurong. Genome sequencing of the high oil crop sesame provides insight into oil biosynthesis. Genome Biology, 2014, 15(2). DOI: 10.1186/gb-2014-15-2-r39
[9]Shi, Jiaqin; Huang, Shunmou; Zhan, Jiepeng; Yu, Jingyin; Wang, Xinfa*; Hua, Wei; Liu, Shengyi; Liu, Guihua; Wang, Hanzhong. Genome-Wide Microsatellite Characterization and Marker Development in the Sequenced Brassica Crop Species.DNA Research, 2014, 21(1): 53-68. DOI: 10.1093/dnares/dst040
[10]Yu, Jingyin; Tehrim, Sadia; Zhang, Fengqi; Tong, Chaobo; Huang, Junyan; Cheng, Xiaohui; Dong, Caihua; Zhou, Yanqiu; Qin, Rui; Hua, Wei; Liu, Shengyi*.Genome-wide comparative analysis of NBS-encoding genes between Brassica species and Arabidopsis thaliana.BMC Genomics, 2014, 15(1): 3-3.DOI: 10.1186/1471-2164-15-3
[11]Wang, Linhai; Yu, Sheng; Tong, Chaobo; Zhao, Yingzhong; Liu, Yan; Song, Chi; Zhang, Yanxin; Zhang, Xudong; Wang, Ying; Hua, Wei; Li, Donghua; Li, Dan; Li, Fang; Yu, Jingyin; Xu, Chunyan; Han, Xuelian; Huang, Shunmou; Tai, Shuaishuai; Wang, Junyi; Xu, Xun; Li, Yingrui; Liu, Shengyi*; Varshney, Rajeev K.; Wang, Jun; Zhang, Xiurong. Genome sequencing of the high oil crop sesame provides insight into oil biosynthesis. Genome Biology, 2014, 15(2): R39. DOI: 10.1186/gb-2014-15-2-r39
[12]Huang, Shunmou; Deng, Linbin; Guan, Mei; Li, Jiana; Lu, Kun; Wang, Hanzhong; Fu, Donghui; Mason, Annaliese S.; Liu, Shengyi*; Hua, Wei.Identification of genome-wide single nucleotide polymorphisms in allopolyploid crop Brassica napus. BMC Genomics, 2013, 14: 717. DOI: 10.1186/1471-2164-14-717
[13]Zhu, Wei; Zhang, Erhua; Li, Haifen; Chen, Xiaoping; Zhu, Fanghe; Hong, Yanbin; Liao, Boshou; Liu, Shengyi; Liang, Xuanqiang*.Comparative proteomics analysis of developing peanut aerial and subterranean pods identifies pod swelling related proteins. Journal of Proteomics, 2013, 91: 172-187. DOI: 10.1016/j.jprot.2013.07.002
[14]Zhu, Wei; Zhang, Erhua; Li, Haifen; Chen, Xiaoping; Zhu, Fanghe; Hong, Yanbin; Liao, Boshou; Liu, Shengyi; Liang, Xuanqiang*.Comparative proteomics analysis of developing peanut aerial and subterranean pods identifies pod swelling related proteins.Journal of Proteomics, 2013, 91: 172-187.DOI: 10.1016/j.jprot.2013.07.002
[15]Tong, Chaobo; Wang, Xiaowu; Yu, Jingyin; Wu, Jian; Li, Wanshun; Huang, Junyan; Dong, Caihua; Hua, Wei*; Liu, Shengyi.Comprehensive analysis of RNA-seq data reveals the complexity of the transcriptome in Brassica rapa.BMC Genomics, 2013, 14: 689.DOI: 10.1186/1471-2164-14-689
[16]Zhao, Meixia; Du, Jianchang; Lin, Feng; Tong, Chaobo; Yu, Jingyin; Huang, Shunmou; Wang, Xiaowu; Liu, Shengyi*; Ma, Jianxin. Shifts in the evolutionary rate and intensity of purifying selection between two Brassica genomes revealed by analyses of orthologous transposons and relics of a whole genome triplication.Plant Journal, 2013, 76(2): 211-222.DOI: 10.1111/tpj.12291
[17]Zhao, Meixia; Du, Jianchang; Lin, Feng; Tong, Chaobo; Yu, Jingyin; Huang, Shunmou; Wang, Xiaowu; Liu, Shengyi*; Ma, Jianxin.Shifts in the evolutionary rate and intensity of purifying selection between two Brassica genomes revealed by analyses of orthologous transposons and relics of a whole genome triplication.Plant Journal, 2013, 76(2): 211-222.DOI: 10.1111/tpj.12291
[18]Yu, Jingyin; Zhao, Meixia; Wang, Xiaowu; Tong, Chaobo; Huang, Shunmou; Tehrim, Sadia; Liu, Yumei; Hua, Wei*; Liu, Shengyi. Bolbase: a comprehensive genomics database for Brassica oleracea.BMC Genomics, 2013, 14: 664.DOI: 10.1186/1471-2164-14-664
[19]Shi, Jiaqin; Huang, Shunmou; Fu, Donghui; Yu, Jinyin; Wang, Xinfa; Hua, Wei; Liu, Shengyi; Liu, Guihua; Wang, Hanzhong*. Evolutionary Dynamics of Microsatellite Distribution in Plants: Insight from the Comparison of Sequenced Brassica, Arabidopsis and Other Angiosperm Species. PLos One, 2013, 8(3): e59988. DOI: 10.1371/journal.pone.0059988
[20]Mei, Jiaqin; Ding, Yijuan; Lu, Kun; Wei, Dayong; Liu, Yao; Disi, Joseph Onwusemu; Li, Jiana; Liu, Liezhao; Liu, Shengyi; McKay, John; Qian, Wei.Identification of genomic regions involved in resistance against Sclerotinia sclerotiorum from wild Brassica oleracea.Theoretical and Applied Genetics, 2013, 126(2): 549-556. DOI: 10.1007/s00122-012-2000-x
[21]Tong, Chaobo; Wang, Xiaowu; Yu, Jingyin; Wu, Jian; Li, Wanshun; Huang, Junyan; Dong, Caihua; Hua, Wei; Liu, Shengyi*. Comprehensive analysis of RNA-seq data reveals the complexity of the transcriptome in Brassica rapa.BMC Genomics, 2013, 14: 689-689. DOI: 10.1186/1471-2164-14-689
[22]Yu, Jingyin; Zhao, Meixia; Wang, Xiaowu; Tong, Chaobo; Huang, Shunmou; Tehrim, Sadia; Liu, Yumei; Hua, Wei; Liu, Shengyi*.Bolbase: a comprehensive genomics database for Brassica oleracea.BMC Genomics, 2013, 14: 664-664. DOI: 10.1186/1471-2164-14-664
[23]Huang, Shunmou; Deng, Linbin; Guan, Mei; Li, Jiana; Lu, Kun; Wang, Hanzhong; Fu, Donghui; Mason, Annaliese S; Liu, Shengyi*; Hua, Wei*. Identification of genome-wide single nucleotide polymorphisms in allopolyploid crop Brassica napus.BMC Genomics, 2013, 14: 717-717. DOI: 10.1186/1471-2164-14-717
[24]Wang, Wanxing; Huang, Shunmou; Liu, Yumei*; Fang, Zhiyuan; Yang, Limei; Hua, Wei; Yuan, Suxia; Liu, Shengyi; Sun, Jifeng; Zhuang, Mu; Zhang, Yangyong; Zeng, Aisong. Construction and analysis of a high-density genetic linkage map in cabbage (Brassica oleracea L. var. capitata).BMC Genomics, 2012, 13: 523. DOI: 10.1186/1471-2164-13-523.
[25]Liu, Jing; Huang, Shunmou; Sun, Meiyu; Liu, Shengyi; Liu, Yumei; Wang, Wanxing; Zhang, Xiurong; Wang, Hanzhong; Hua, Wei*.An improved allele-specific PCR primer design method for SNP marker analysis and its application.Plant Methods, 2012, 8: 34.DOI: 10.1186/1746-4811-8-34
[26]Ke, Tao*; Liang, Su; Huang, Jin; Mao, Han; Chen, Jibao; Dong, Caihua; Huang, Junyan; Liu, Shengyi; Kang, Jianxiong; Liu, Dongqi; Ma, Xiangdong.A novel PCR-based method for high throughput prokaryotic expression of antimicrobial peptide genes.BMC Biotechnology, 2012, 12: 10.DOI: 10.1186/1472-6750-12-10
[27]Ke, Tao; Dong, Caihua; Mao, Han; Zhao, Yingzhong; Chen, Hong; Liu, Hongyan; Dong, Xuyan; Tong, Chaobo; Liu, Shengyi.Analysis of expression sequence tags from a full-length-enriched cDNA library of developing sesame seeds (Sesamum indicum).BMC Plant Biology, 2011, 11: 180-188.DOI: 10.1186/1471-2229-11-180
[28]Feng Cheng; Shengyi Liu,; Jian Wu; Lu Fang; Silong Sun; Bo Liu; Pingxia Li; Wei Hua; Xiaowu Wang.BRAD, the genetics and genomics database for Brassica plants.
BMC Plant biology, 2011, 11: 136-140.
[29]Li, Yan-hua; Wei, Fang; Dong, Xu-yan; Peng, Jin-hua; Liu, Sheng-yi; Chen, Hong*.Simultaneous Analysis of Multiple Endogenous Plant Hormones in Leaf Tissue of Oilseed Rape by Solid-phase Extraction Coupled with High-performance Liquid Chromatography-Electrospray Ionisation Tandem Mass Spectrometry.Phytochemical Analysis, 2011, 22(5): 442-449.DOI: 10.1002/pca.1300
[30]Ian Bancroft; Colin Morgan; Fiona Fraser; Janet Higgins; Rachel Wells; Leah Clissold; David Baker; Yan Long; Jinling Meng; Xiaowu Wang; Shengyi Liu; Martin Trick.Genome dissection in the polyploid crop oilseed rape by transcriptome sequencing. Nature Biotechnology, 2011, 29: 762-766.
[31]Bancroft, Ian*; Morgan, Colin; Fraser, Fiona; Higgins, Janet; Wells, Rachel; Clissold, Leah; Baker, David; Long, Yan; Meng, Jinling; Wang, Xiaowu; Liu, Shengyi; Trick, Martin.Dissecting the genome of the polyploid crop oilseed rape by transcriptome sequencing. Nature Biotechnology, 2011, 29(8): 762.DOI: 10.1038/nbt.1926
[32]Ke Tao; Dong Cai-hua; Mao Han; Zhao Ying-zhong; Liu Hong-yan; Liu Sheng-yi*. Construction of a Normalized Full-Length cDNA Library of Sesame Developing Seed by DSN and SMART (TM).Agricultural Sciences in China, 2011, 10(7): 1004-1009.DOI: 10.1016/S1671-2927(11)60087-4
[33]Xiaojia Hu; Daniel P. Roberts; Jude E. Maul; Sarah E. Emche; Xing Liao; Xuelan Guo; Yeying Liu; Laurie F. McKenna; Jeffrey S. Buyer; Shengyi Liu*.Formulations of the endophytic bacterium Bacillus subtilis Tu-100 suppress Sclerotinia sclerotiorum on oilseed rape and improve plant vigor in field trials conducted at separate locations. Can. J. Microbiol, 2011, 57: 539-546.
[34]Hu, Fan; Li, Xin; Lue, Jie; Mao, Pei Hong; Jin, Xiang; Rao, Ben; Zheng, Peng; Zhou, Yu Lin; Liu, Sheng Yi; Ke, Tao; Ma, Xiang Dong*; Ma, Li Xin.A visual method for direct selection of high-producing Pichia pastoris clones.BMC Biotechnology, 2011, 11: 23.DOI: 10.1186/1472-6750-11-23
[35]Yinan Yao; Haiyan Sun; Fangsen Xu; Caihua Dong; Xuejiang Zhan; Shengyi Liu*.Comparative proteome analysis of metabolic changes by low phosphorus stress in two Brassica napus genotypes.Planta, 2011, 233: 523-537.
[36]Wei, Fang; Cheng, Ji-hua; Liu, Sheng-yi; Huang, Jun-yan; Wang, Zhan; Dong, Xu-yan; Li, Ping-ping; Kong, Fan-pi; Wu, Yu; Li, Yan-hua; Feng, Yu-qi; Chen, Hong.A Robust Sampling Approach for Identification and Quantification of Methyl Jasmonate in Leaf Tissue of Oilseed Rape for Analysis of Early Signaling in Sclerotinia Sclerotiorum Resistance. Phytochemical Analysis, 2010, 21(3): 290-297.DOI: 10.1002/pca.1199
[37]Wei, Wenhui; Li, Yunchang; Wang, Lijun; Liu, Shengyi; Yan, Xiaohong; Mei, Desheng; Li, Yinde; Xu, Yusong; Peng, Pengfei; Hu, Qiong.Development of a novel Sinapis arvensis disomic addition line in Brassica napus containing the restorer gene for Nsa CMS and improved resistance to Sclerotinia sclerotiorum and pod shattering.Theoretical and Applied Genetics, 2010, 120(6): 1089-1097.DOI: 10.1007/s00122-009-1236-6
[38]Wang, Zhan; Wei, Fang; Liu, Sheng-Yi; Xu, Qiao; Huang, Jun-Yan; Dong, Xu-Yan; Yu, Jiu-Hong; Yang, Qin; Zhao, Yuan-Di; Chen, Hong.Electrocatalytic oxidation of phytohormone salicylic acid at copper nanoparticles-modified gold electrode and its detection in oilseed rape infected with fungal pathogen Sclerotinia sclerotiorum.
Talanta, 2010, 80(3): 1277-1281.DOI: 10.1016/j.talanta.2009.09.023
[39]Ai, Feng; Chen, Hong; Zhang, Shu-Hui; Liu, Sheng-Yi; Wei, Fang; Dong, Xu-Yan; Cheng, Jie-Ke; Huang, Wei-Hua.Real-Time Monitoring of Oxidative Burst from Single Plant Protoplasts Using Microelectrochemical Sensors Modified by Platinum Nanoparticles.Analytical Chemistry, 2009, 81(20): 8453-8458.DOI: 10.1021/ac901300b
[40]Wang, Zheng; Mao, Han; Dong, Caihua; Ji, Ruiqin; Cai, Li; Fu, Hao; Liu, Shengyi.Overexpression of Brassica napus MPK4 Enhances Resistance to Sclerotinia sclerotiorum in Oilseed Rape.Molecular Plant-Microbe Interactions, 2009, 22(3): 235-244.DOI: 10.1094/MPMI-22-3-0235
[41]Qiao Xu; Sheng-Yi Liu; Qiu-Ju Zou; Xue-Lan Guo; Xu-Yan Dong; Pei-Wu Li; Dan-Yang Song; Hong Chen; Yuan-Di Zhao.Microsensor in vivo monitoring of oxidative burst in oilseed rape (Brassica napus L.) leaves infected by Sclerotinia sclerotiorum.Analytica Chimica Acta, 2009, 632(1): 21-25.
[42]D.P. Roberts; C.J. Baker; L. McKenna; S. Liu; J.S. Buyer; D.Y. Kobayashi.Influence of host seed on metabolic activity of Enterobacter cloacae in the spermosphere.Soil Biology and Biochemistry, 2009, 41: 754-761.
[43]Li, C. X.; Liu, S. Y.; Sivasithamparam, K.; Barbetti, M. J. New sources of resistance to Sclerotinia stem rot caused by Sclerotinia sclerotiorum in Chinese and Australian Brassica napus and B-juncea germplasm screened under Western Australian conditions.Australasian Plant Pathology, 2009, 38(2): 149-152.
[44]Zheng Wang; Han Mao; Caihua Dong; Ruiqin Ji; Li Cai; Hao Fu; Shengyi Liu*.Overexpression of Brassica napus MPK4 Enhances Resistance to Sclerotinia sclerotiorum in Oilseed Rape.Molecular Plant-Microbe Interactions, 2008, 22(3): 235-244.
[45]Fitt, B. D. L.; Hu, B. C.; Li, Z. Q.; Liu, S. Y.; Lange, R. M.; Kharbanda, P. D.; Butterworth, M. H.; White, R. P. Strategies to prevent spread of Leptosphaeria maculans (phoma stem canker) onto oilseed rape crops in China; costs and benefits. Plant Pathology, 2008, 57(4): 652-664.
[46]Cai Li; Zhou Biwen; Guo XueLan; Dong CaiHua; Hu XiaoJia; Hou MingSheng; Liu ShengYi. Pollen-mediated gene flow in Chinese commercial fields of glufosinate-resistant canola (Brassica napus). Chinese Science Bulletin, 2008, 53(15): 2333-2341.
[47]Dong, Xiangbai; Ji, Ruiqin; Guo, Xuelan; Foster, Simon J.; Chen, Hong; Dong, Caihua; Liu, Yueying; Hu, Qiong; Liu, Shengyi. Expressing a gene encoding wheat oxalate oxidase enhances resistance to Sclerotinia sclerotiorum in oilseed rape (Brassica napus). Planta, 2008, 228(2): 331-340.
[48] Liu, Shengyi; Hu, Xiaojia; Lohrke, Scott M.; Baker, C. Jaycn; Buyer, Jeffrey S.; de Souza, Jorge T.; Roberts, Daniel P. Role of sdhA and pfkA and catabolism of reduced carbon during colonization of cucumber roots by Enterobacter cloacae. Microbiology-SGM, 2007, 153: 3196-3209.
[49]QIU-JU ZOU; SHENG-YI LIU; XU-YAN DONG; YAN-HUA BI; YUAN-CHENG CAO; QIAO XU; YUAN-DI ZHAO; HONG CHEN. In vivo measurements of changes in pH triggered by oxalic acid in leaf tissue of transgenic oilseed rape. Phytochemical Analysis, 2007, 18(4): 341-346.
[50]Li, C. X.; Li, Hua; Siddique, A. B.; Sivasithamparam, K.; Salisbury, P.; Banga, S. S.; Banga, Shashi; Chattopadhyay, C.; Kumar, A.; Singh, R.; Singh, D.; Agnihotri, A.; Liu, S. Y.; Li, Y. C.; Tu, J.; Fu, T. D.; Wang, Y. F.; Barbetti, M. J. The importance of the type and time of inoculation and assessment in the determination of resistance in Brassia napus and B-juncea to Siclerotinia sclerotiorum. Australian Journal of Agricultural Research, 2007, 58(12): 1198-1203.
[51]Li, C. X.; Sivasithamparam, K.; Walton, G.; Salisbury, P.; Burton, W.; Banga, Surinder S.; Banga, Shashi; Chattopadhyay, C.; Kumar, A.; Singh, R.; Singh, D.; Agnohotri, A.; Liu, S. Y.; Li, Y. C.; Fu, T. D.; Wang, Y. F.; Barbetti, M. J. Expression and relationships of resistance to white rust (Albugo candida) at cotyledonary, seedling, and. flowering stages in Brassica juncea germplasm from Australia, China, and India.Australian Journal of Agricultural Research, 2007, 58(3): 259-264.
[52]Hu, S.W.; Fan, Y.F.; Zhao, H.X.; Guo, X.L.; Yu, C.Y.; Sun, G.L.; Dong, C.H.; Liu, S.Y.; Wang, H.Z. Analysis of MS2Bnap genomic DNA homologous to MS2 gene from Arabidopsis thaliana in two dominant digenic male sterile accessions of oilseed rape (Brassica napus L.).Theoretical and Applied Genetics, 2006, 113(3): 397-406.
[53]Li, C. X.; Li, Hua; Sivasithamparam, K.; Fu, T. D.; Li, Y. C.; Liu, S. Y.; Barbetti, M. J. Expression of field resistance under Western Australian conditions to Sclerotinia sclerotiorum in Chinese and Australian Brassica napus and Brassica juncea germplasm and its relation with stem diameter. Australian Journal of Agricultural Research, 2006, 57(10): 1131-1135.
[54]Liu, S; Wang, H; Zhang, J; Fitt, BDL; Xu, Z; Evans, N; Liu, Y; Yang, W; Guo, X. In vitro mutation and selection of doubled-haploid Brassica napus lines with improved resistance to Sclerotinia sclerotiorum. Plant Cell Reports, 2005, 24(3): 133-144.
[55]Guohua Chai; Zetao Bai; Fang Wei; Graham J. King; Chenggang Wang; Lei Shi; Caihua Dong; Hong Chen; Shengyi Liu*.Brassica GLABRA2 genes: analysis of function related to seed oil content and development of functional markers.Theoretical and Applied Genetics.
发表中文期刊论文:
[1]张旭,Luqman Bin Safdar,唐敏强,刘越英,张园园,刘胜毅.结合PCA和GWAS解析甘蓝型油菜株型相关性状的遗传调控位点[J].中国油料作物学报,2021,43(03):462-469.
[2]李玉博,刘胜毅,张景景,贾冬艳.基于Zadoff-Chu矩阵的最优码本构造方法[J].通信学报,2020,41(03):112-119.
[3]曹慧慧,王磊,闫艳华,林田,柯涛,黄军艳,程晓晖,刘胜毅.油菜抗菌肽基因BnCRP1的克隆表达和活性分析[J].中国粮油学报,2020,35(02):91-97.
[4]胡鸣,姚圣黎,程晓晖,刘越英,马立新,向阳,黄军艳,童超波,刘胜毅.基于高深度重测序的春性、半冬性和冬性甘蓝型油菜基因组遗传变异分析[J].中国油料作物学报,2018,40(04):469-478.
[5]程明星,童超波,程晓晖,刘越英,刘立江,柴国华,黄军艳,刘胜毅.甘蓝型油菜作图群体亲本基因组及性状QTL密集区变异特点[J].中国油料作物学报,2017,39(04):427-436.
[6]黄静,程明星,唐敏强,张凤启,张园园,童超波,刘越英,程晓晖,董彩华,黄军艳,刘胜毅.甘蓝型油菜RIL群体株高性状的全基因组关联分析[J].中国油料作物学报,2016,38(05):543-548.
[7]阳永学,李振波,童超波,黄军艳,于景印,董彩华,刘胜毅.甘蓝型油菜半胱氨酸蛋白酶基因BnCP51及其启动子的克隆与表达[J].中国油料作物学报,2016,38(04):406-414.
[8]曹慧慧,董彩华,于景印,柯涛,童超波,黄军艳,刘胜毅.油菜抗菌肽基因BnLTP1的克隆表达及活性[J].中国油料作物学报,2016,38(01):1-6.
[9]马小艮,于景印,唐敏强,张凤启,董彩华,童超波,黄军艳,刘胜毅.不同菌核病抗性甘蓝型油菜中BnVRN2基因的克隆与表达[J].中国油料作物学报,2015,37(06):735-743.
[10]曹慧慧,黄军艳,柯涛,于景印,董彩华,刘胜毅.萝卜抗菌肽基因Rs对菌核病的抗性[J].中国油料作物学报,2015,37(05):614-621.
[11]陈泉,王杰,侯明生,刘胜毅,蔡丽.油菜BnSGS3基因克隆及转基因拟南芥病毒抗性[J].中国油料作物学报,2015,37(04):512-519.
[12]唐敏强,程晓晖,童超波,刘越英,赵传纪,董彩华,于景印,马小艮,黄军艳,刘胜毅.甘蓝型油菜株高性状的全基因组关联分析[J].作物学报,2015,41(07):1121-1126.
[13]刘胜毅.中外科学家携手破译油菜多倍体基因组[J].基层农技推广,2015,3(04):66.
[14]周晏秋,覃瑞,刘胜毅,李刚,黄军艳,董彩华,程晓晖,刘虹,童超波.中华猕猴桃基因组可变剪接事件鉴定及分析[J].中国科学:生命科学,2015,45(03):289-300.
[15]张凤启,程晓辉,刘越英,童超波,董彩华,于景印,黄军艳,刘胜毅.甘蓝型油菜分枝数QTL定位及其候选基因预测[J].中国油料作物学报,2015,37(01):15-20.
[16]张凤启,刘越英,程晓辉,童超波,董彩华,唐敏强,黄军艳,刘胜毅.利用高密度SNP标记定位甘蓝型油菜株高QTL[J].中国油料作物学报,2014,36(06):695-700.
[17]周荣芳,袁午舟,童超波,黄军艳,程晓晖,于景印,董彩华,刘越英,刘胜毅.芸薹属AC基因组中VIT基因家族的鉴定与进化[J].中国油料作物学报,2014,36(05):551-561.
[18]袁午舟,周荣芳,童超波,程晓晖,黄军艳,于景印,董彩华,刘胜毅.芸薹属AC基因组中SUC基因家族的鉴定与进化分析[J].中国油料作物学报,2014,36(03):289-299.
[19]黄金,黄军艳,柯涛,周瑢,曹慧慧,马向东,童超波,于景印,吴南,董彩华,刘胜毅.抗菌肽基因BnPCD842895克隆表达及活性检测[J].中国油料作物学报,2013,35(04):357-363.
[20]季海雯,任莉,陈坤荣,徐理,刘凡,孙超超,李俊,刘胜毅,方小平.油菜根肿病病原主要生理小种和品种抗病性鉴定[J].中国油料作物学报,2013,35(03):301-306.
[21]刘玲彦,董彩华,程晓晖,刘越英,黄军艳,刘胜毅.2009-2012年全国区域试验冬油菜品种菌核病抗性评价[J].中国油料作物学报,2013,35(03):331-333+340.
[22]赵美霞,张彪,刘胜毅,马渐新.白菜和甘蓝基因组转座子表达及其对基因调控的潜在影响[J].遗传,2013,35(08):1014-1022.
[23]王轩鹏,李振波,童超波,黄军艳,于景印,董彩华,刘胜毅.甘蓝型油菜RabGDI3基因启动子的克隆和功能验证[J].中国油料作物学报,2013,35(02):109-116.
[24]王志慧,童超波,袁午舟,刘学群,程晓辉,于景印,董彩华,刘胜毅.四种油料作物中的细菌型PEPC基因的鉴定及在发育种子中的表达[J].中国油料作物学报,2013,35(01):8-16+23.
[25]柯涛,毛晗,董彩华,陈书元,于景印,赵应忠,刘红艳,刘胜毅.芝麻EST-SSR引物的开发与应用[J].中国油料作物学报,2013,35(01):43-47.
[26]孙海波,王智慧,刘学群,黄军艳,董彩华,刘胜毅.一种适用于油菜、大豆、花生、芝麻四种油料作物种子的RNA提取方法[J].中国油料作物学报,2012,34(04):353-358.
[27]汪承刚,李丹,许李明,董彩华,黄军艳,方菊萍,刘胜毅.甘蓝型油菜BnERF50的超表达增强了转基因拟南芥对核盘菌的抗性[J].中国油料作物学报,2011,33(05):427-432.
[28]汪承刚,蔡丽,董彩华,黄军艳,赵美霞,周瑢,刘胜毅.甘蓝型油菜BnERF104超表达增强了转基因拟南芥对核盘菌的抗性[J].中国油料作物学报,2011,33(04):325-330.
[29]胡小加,谢立华,余常兵,李银水,刘胜毅,张春雷,廖星.巨大芽孢杆菌A6对油菜根系分泌物所含有机酸和糖类的趋化性[J].中国油料作物学报,2011,33(04):416-419.
[30]张彪,黄军艳,刘胜毅,赵美霞,汪承刚,董彩华.大豆灰斑病菌菌丝块离体叶接种快速鉴定方法的建立[J].安徽农业科学,2011,39(21):12714-12718+12723.
[31]李振波,王琢玉,刘学群,覃瑞,黄军艳,董彩华,刘胜毅.甘蓝型油菜Bn19070的表达与同源基因At2g19070的amiRNAi研究[J].中国油料作物学报,2011,33(03):197-202+209.
[32]王琢玉,李振波,阳永学,黄军艳,董彩华,刘胜毅.油菜BnROP1同源基因沉默导致拟南芥雄性不育[J].中国油料作物学报,2011,33(01):1-8.
[33]胡小加,张明海,余常兵,谢立华,程雨贵,李银水,刘胜毅,方小平,张春雷,廖星.抑制油菜菌核萌发的真菌分离及其生防研究初报[J].中国油料作物学报,2010,32(04):567-570+576.
[34]胡小加,余常兵,李银水,刘胜毅,廖星.枯草芽孢杆菌Tu-100对油菜根系分泌物所含氨基酸的趋化性研究[J].土壤学报,2010,47(06):1243-1248.
[35]黄军艳,许李明,张学江,刘胜毅.人工microRNAs干扰At3A06基因增强了拟南芥对菌核病的敏感性[J].中国油料作物学报,2010,32(03):345-348.
[36]任秋红,黄军艳,毛晗,田保明,刘胜毅.甘蓝型油菜LOX2基因在MeJA、BTH和核盘菌诱导下的表达[J].河南农业科学,2010(07):22-25.
[37]柯涛,毛晗,惠丰立,董彩华,柴国华,刘胜毅.油料作物EST资源的生物信息学分析[J].生物信息学,2010,8(02):165-170+174.
[38]白泽涛,柴国华,石磊,许李明,汪承刚,郭学兰,董彩华,刘胜毅.油菜毛状体发育相关基因GLABRA2启动子的克隆与功能验证[J].农业生物技术学报,2010,18(02):210-217.
[39]李丹,黄军艳,张学江,刘学群,覃瑞,刘胜毅.拟南芥抗菌核病突变体275-7的初步研究[J].中国农业科技导报,2010,12(02):81-85.
[40]邓云娟,胡胜武,田保明,董彩华,刘胜毅.甘蓝型油菜双显性细胞核雄性不育系Shaan-GMS雄配子发育观察[J].中国油料作物学报,2010,32(01):1-5.
[41]刘海衡,胡胜武,刘胜毅,黄军艳,董彩华.油菜不同器官高质量总蛋白提取方法和双向电泳体系的优化[J].中国油料作物学报,2009,31(04):426-433.
[42]柴国华,付先虎,白泽涛,黄军艳,刘胜毅.植物内切β-1,4-葡聚糖酶基因研究进展[J].中国农业科技导报,2009,11(05):17-22.
[43]冀瑞琴,董祥柏,冯辉,高荣村,刘越英,刘胜毅.水杨酸途径中的防御基因在转草酸氧化酶基因油菜中的表达[J].植物生理学通讯,2009,45(07):677-680.
[44]李爱民,张永泰,蒋金金,刘胜毅,王幼平.白芥和甘蓝型油菜属间杂种后代菌核病抗性鉴定[J].中国油料作物学报,2009,31(02):249-252.
[45]冀瑞琴,董祥柏,冯辉,MARTIN Barbetti,高荣村,刘月英,刘胜毅.PDF1.2基因在转草酸氧化酶基因甘蓝型油菜中的表达[J].植物生理学通讯,2009,45(05):479-482.
[46]柴国华,白泽涛,蔡丽,郭学兰,张学江,石磊,董彩华,刘胜毅.油菜基因BnWRI1的克隆及RNAi对种子含油量的影响[J].中国农业科学,2009,42(05):1512-1518.
[47]许李明,黄军艳,刘学群,覃瑞,刘胜毅.甘蓝型油菜BnEIN3基因克隆及菌核病诱导表达[J].安徽农业科学,2009,37(14):6378-6380.
[48]许李明,黄军艳,刘学群,覃瑞,刘胜毅.甘蓝型油菜BnEIN3基因的克隆及菌核病诱导表达研究(英文)[J].Agricultural Science & Technology,2009,10(02):33-36.
[49]石磊,董彩华,白泽涛,郭学兰,柴国华,黄军艳,刘胜毅.白菜型油菜PABP5基因启动子的克隆及表达特性分析[J].分子植物育种,2009,7(02):341-346.
[50]胡小加,江木兰,刘胜毅,余常兵,张银波,廖星.枯草芽胞杆菌在油菜根茎叶的定殖动态和生防作用研究[J].中国油料作物学报,2009,31(01):61-64.
[51]王政,毛晗,董彩华,黄军艳,刘胜毅.甘蓝型油菜MAP激酶4的序列及其诱导表达分析[J].中国油料作物学报,2008,30(04):397-400+405.
[52]高荣村,于澄宇,李玮,张春宏,俞延军,刘胜毅,赵锁劳,胡胜武.油菜主要农艺性状的配合力及杂种优势分析[J].西北农业学报,2008(04):98-103.
[53]蔡丽,周必文,郭学兰,董彩华,胡小加,侯明生,刘胜毅.在中国环境条件下油菜花粉介导的除草剂抗性基因飘逸[J].科学通报,2008(13):1544-1551.
[54]程勇,邹崇顺,李云昌,李桂英,郑普英,张学昆,刘胜毅.甘蓝型油菜显性核雄性不育基因的AFLP标记鉴定[J].中国油料作物学报,2008(02):148-151+156.
[55]周锦,董彩华,刘学群,覃瑞,石磊,刘胜毅.GAPC和AT2G36580在油菜不同组织器官中的表达差异及其与雄性不育的关系[J].中国油料作物学报,2008(02):157-161.
[56]刘胜毅,刘仁虎,Akinwunmi O.Latunde-Dada,Hans J.Cools,Simon J.Foster,黄永菊,Bruce D.L.Fitt.黑胫病弱毒种和化学诱导剂诱导油菜对黑胫病抗性的比较研究[J].科学通报,2007(06):660-667.
[57]高荣村,董彩华,胡胜武,刘胜毅.拟南芥抗菌核病突变体的筛选[J].中国油料作物学报,2006(04):388-391+503.
[58]樊云芳,胡胜武,董彩华,郭学兰,刘胜毅.一种甘蓝型油菜双隐性细胞核雄性不育的细胞学观察[J].中国油料作物学报,2006(04):403-407.
[59]冀瑞琴,董彩华,高荣村,刘越英,刘胜毅.甲基茉莉酸、苯丙噻重氮、草酸诱导油菜对菌核病的抗性[J].中国油料作物学报,2006(02):184-188.
[60]刘胜毅,毛晗,苏震,董彩华,徐文英,冀瑞琴,郭学兰.油菜对菌核病和黑胫病的抗病机制分析[J].西北农林科技大学学报(自然科学版),2005(S1):256.
[61]刘胜毅,刘仁虎,Akinwunmi O Latunde-Dada,Hans Cools,Bruce D L Fitt,John A Lucas.黑胫病弱毒种Leptosphaeria biglobosa通过不同的信号途径诱导油菜抗性[J].西北农林科技大学学报(自然科学版),2005(S1):257.
[62]刘胜毅,张建坤,许泽永,何礼远,刘越英.甘蓝型油菜对核盘菌及其毒素的抗性遗传分析[J].植物保护学报,2005(01):43-47.
[63]刘胜毅,B.D.L.Fitt,刘仁虎,N.Evans,董彩华,黄永菊.油菜防卫素和草酸氧化酶基因的克隆与诱导表达水平研究[J].中国油料作物学报,2004(03):44-50.
[64]胡胜武,刘胜毅,于澄宇,郭学兰,赵惠贤,胡小加,路明,刘越英.甘蓝型油菜核不育材料Shaan-GMS不育基因的RAPD标记[J].中国油料作物学报,2003(03):7-9.
[65]刘胜毅,周必文,张建坤,郭学兰,许泽永,何礼远.甘蓝型油菜抗菌核病扩展的遗传分析[J].中国油料作物学报,2003(01):56-60.
[66]胡小加,刘胜毅,Daniel Roberts.产碱假单胞菌在油菜根圈定殖的动态和分布研究[J].中国油料作物学报,2002(04):56-58.
[67]胡小加,江木兰,刘胜毅,David Kuykendall.油菜菌核病拮抗菌的筛选及其基因克隆[J].农业生物技术学报,2002(01):39-40.
[68]张秀荣,程勇,刘胜毅,冯祥运,靳利民,靳巧玲,黄翠英,王自安,徐新福,孙梅英.芝麻抗茎点枯病及枯萎病种质的评价[J].中国油料作物学报,2001(04):24-28.
[69]刘胜毅,许泽永,何礼远.植物与病原菌互作和抗病性的分子机制[J].中国农业科学,1999(S1):94-102.
[70]胡小加,刘胜毅,张建坤,黄沁洁.油菜根际细菌的防病促生作用研究[J].中国农业科学,1999(S1):103-106.
[71]刘胜毅,周必文,潘家荣.油菜对毒素草酸的吸收代谢与抗性机理[J].植物病理学报,1998(01):34-38.
[72]熊秋芳,刘胜毅,李合生.抗、感菌核病油菜品种几种酶活性对草酸处理的响应[J].华中农业大学学报,1998(01):14-17.
[73]刘胜毅,周必文,余琦,周乐聪.草酸法筛选油菜抗菌核病材料的效果及其影响因素[J].植物保护学报,1998(01):56-60.
[74]刘胜毅,周必文,潘家荣,吴正卿.抗感菌核病油菜品种对草酸的吸收和转运差异[J].中国油料,1997(01):50-52.
[75]周乐聪,周必文,余琦,刘胜毅,夏汉鑫,陈祖佑.菌核净系列新农药防治油菜菌核病的效果及机理[J].农药,1994(03):40-42.
[76]刘胜毅,周必文,余琦,王超英.菌核菌生长和产生草酸的营养和环境条件研究[J].微生物学通报,1993(04):196-199.
[77]周必文,陈道炎,余琦,刘胜毅,杨建,王超英.油菜多抗性材料的鉴定与筛选[J].中国油料,1993(01):16-19.
[78]周必文,刘胜毅,陈道炎,余琦,杨建,王超英.油菜抗病毒病与过氧化物酶关系[J].中国油料,1992(02):54-56+85.
[79]刘胜毅.试论编辑劳动的创造性[J].编辑学刊,1988(01):18-22.
[80]Y. Viinikka ,余毓君 ,刘胜毅.黑麦中表现新着丝点活性染色体的鉴定[J].麦类作物学报,1987(05):15-17.
发表会议论文:
[1]姚圣黎,胡鸣,程晓晖,刘立江,黄军艳,刘胜毅,童超波. 基于三代和二代测序技术的甘蓝型油菜全转录组全景图解析[C]. 第十九届中国作物学会学术年会论文摘要集. 2020:209.
[2]钟雪,左蓉,刘杰,李祥,李艳,童超波,刘胜毅,白泽涛. 甘蓝型油菜TLP-Kinase基因的鉴定及其对核盘菌抗性的功能研究[C]. 中国植物病理学会2019年学术年会论文集. 2019:421.
[3]石美娟,左蓉,刘杰,赵传纪,何贻洲,李艳,高峰,李祥,刘越英,程晓辉,刘胜毅,白泽涛. 甘蓝型油菜BnTLP-PRP基因对核盘菌抗性的功能研究[C]. 中国植物病理学会2019年学术年会论文集. 2019:422.
[4]程晓晖,刘越英,黄军艳,刘胜毅. 油菜菌核病田间病圃抗性鉴定方法的建立与我国油菜新品种菌核病抗性鉴定[C]. 中国作物学会油料作物专业委员会第八次会员代表大会暨学术年会综述与摘要集. 2018:205.
[5]刘立江,郜丽霞,张益,程晓辉,张园园,童超波,黄军艳,刘胜毅. 基于重测序的甘蓝型油菜自然群体根肿病抗病评价及抗病位点鉴定[C]. 中国作物学会油料作物专业委员会第八次会员代表大会暨学术年会综述与摘要集. 2018:207.
[6]唐敏强,张园园,胡鸣,刘越英,程晓晖,童超波,黄军艳,刘胜毅. 甘蓝型油菜单体型图谱构建及株高性状全基因组关联分析[C]. 中国作物学会油料作物专业委员会第八次会员代表大会暨学术年会综述与摘要集. 2018:159.
[7]胡鸣,唐敏强,张园园,刘越英,程晓晖,黄军艳,童超波,刘胜毅. 甘蓝型油菜大片段序列丢失引起的结构变异及全基因组关联分析[C]. 中国作物学会油料作物专业委员会第八次会员代表大会暨学术年会综述与摘要集. 2018:181.
[8]白泽涛,何贻洲,黄军艳,程明星,曹慧慧,柯涛,刘胜毅. 甘蓝型油菜类甜蛋白基因家族成员的鉴定及起源分析[C]. 中国作物学会油料作物专业委员会第八次会员代表大会暨学术年会综述与摘要集. 2018:203.
[9]李艳,陈旺,刘胜毅,吴云锋. 长春花CrCBSX3基因的克隆及功能初探[C]. 中国植物病理学会2016年学术年会论文集.中国植物病理学会:中国植物病理学会,2016:448.
[10]程晓晖,任莉,黄军艳,方小平,刘胜毅. 小型无人机喷药防治油菜菌核病效果研究[C]. 中国植物病理学会2015年学术年会论文集.中国植物病理学会(Chinese Society for Plant Pathology):中国植物病理学会,2015:561.
[11]任莉,程雨贵,张明海,刘胜毅,陈坤荣,刘凡,季海雯,方小平. 油菜蕾薹期菌核病发生为害情况及其菌株特性研究[C]. 中国植物病理学会2012年学术年会论文集. 2012:31.
[12]黄金,黄军艳,柯涛,马向东,董彩华,刘胜毅. 油菜抗菌肽基因的快速筛选及活性检测[C]. 中国植物病理学会2012年学术年会论文集. 2012:528.
[13]程晓晖,刘越英,黄军艳,刘胜毅. 2005~2012年国家区试油菜品种对菌核病的抗性鉴定研究[C]. 中国植物病理学会2012年学术年会论文集. 2012:523.
[14]张彪,黄军艳,董彩华,赵美霞,汪承刚,刘胜毅. 大豆灰斑病抗性鉴定方法及转BnERF104大豆的灰斑病抗性研究[C]. 中国植物病理学会2011年学术年会论文集. 2011:434.
[15]程晓晖,刘越英,郭茂胜,黄军艳,郑在武,张凤启,周瑢,刘胜毅. 油菜菌核病为害损失估计和严重度与产量及产量构成成分关系研究[C]. 中国植物病理学会2011年学术年会论文集. 2011:507.
[16]胡小加,余常兵,李银水,刘胜毅,张春雷,廖星. 巨大芽孢杆菌对油菜根系分泌物所含有机酸和糖类的趋化性研究[C]. 中国植物营养与肥料学会2010年学术年会论文集. 2010:162-168.
[17]任莉,王婧,贾建光,何月秋,刘胜毅,方小平. 十字花科作物对根肿病的抗性能力初探[C]. 中国植物病理学会2010年学术年会论文集. 2010:565.
[18]张彪,黄军艳,董彩华,赵美霞,汪承刚,刘胜毅. 乙烯应答因子抗大豆灰斑病功能研究[C]. 中国植物病理学会2010年学术年会论文集. 2010:566.
[19]汪承刚,黄军艳,董彩华,刘胜毅. 油菜BnERF56基因通过乙烯和水杨酸信号途径调控对多种腐生真菌的抗性[C]. 中国植物病理学会2010年学术年会论文集. 2010:567.
[20]刘胜毅. 油菜对菌核病抗性反应分子网络解析[C]. 中国植物病理学会2010年学术年会论文集.中国植物病理学会(Chinese Society for Plant Pathology):中国植物病理学会,2010:568.
[21]李丹,黄军艳,张学江,赵美霞,刘胜毅. 初探细胞程序性死亡在拟南芥与核盘菌互作中的作用[C]. 基因开启未来:新时代的遗传学与科技进步——湖北省遗传学会第八次代表大会暨学术讨论会论文摘要汇编. 2009:33.
[22]黄军艳,许李明,张学江,刘胜毅. 人工microRNA干扰At3A06基因增强了拟南芥对菌核病的敏感性[C]. 基因开启未来:新时代的遗传学与科技进步——湖北省遗传学会第八次代表大会暨学术讨论会论文摘要汇编. 2009:57.
[23]刘胜毅. 油菜抗菌核病的特征与育种策略[C]. 基因开启未来:新时代的遗传学与科技进步——湖北省遗传学会第八次代表大会暨学术讨论会论文摘要汇编. 2009:74.
[24]柯涛,毛晗,董彩华,郭学兰,黄思良,刘胜毅. 油菜抗菌肽基因的生物信息学分析[C]. 湖北省遗传学会.基因开启未来:新时代的遗传学与科技进步——湖北省遗传学会第八次代表大会暨学术讨论会论文摘要汇编. 2009:176.
[25]魏芳,董绪燕,郭学兰,刘胜毅,陈洪. 油菜叶片受草酸侵染胁迫产生挥发物的富集及其生物学研究[C]. 中国植物保护学会植物化感作用专业委员会.中国第四届植物化感作用学术研讨会论文摘要集. 2009:50.
[26]刘胜毅. 油菜抗菌核病的特征与育种策略[C]. 中国植物病理学会.中国植物病理学会2009年学术年会论文集. 2009:176.
[27]黄军艳,许李明,张学江,刘胜毅. 人工microRNA干扰At3A06基因增强了拟南芥对菌核病的敏感性[C]. 中国植物病理学会.中国植物病理学会2009年学术年会论文集. 2009:439.
[28]李丹,黄军艳,张学江,赵美霞,刘胜毅. 初探细胞程序性死亡在拟南芥与核盘菌互作中的作用[C]. 中国植物病理学会2009年学术年会论文集. 2009:449.
[29]任秋红,黄军艳,田保明,刘胜毅. 油菜和拟南芥菌核病抗性相关基因的功能研究[C]. 中国植物病理学会.中国植物病理学会2009年学术年会论文集. 2009:468.
[30]张学江,黄军艳,王政,李丹,尹思佳,刘越英,刘胜毅. 活性氧积累与细胞死亡在油菜与菌核病互作中的重要作用[C]. 中国植物病理学会2009年学术年会论文集. 2009:499.
[31]柯涛,毛晗,董彩华,郭学兰,黄思良,刘胜毅. 油菜抗菌肽基因的生物信息学分析[C]. 中国植物病理学会2009年学术年会论文集. 2009:448.
[32]张学江,黄军艳,付浩,李丹,尹思佳,刘越英,刘胜毅. 过表达甘蓝型油菜BnNRR基因增强了油菜对菌核病的感病性[C]. 中国植物病理学会2009年学术年会论文集. 2009:498.
[33]胡小加,刘胜毅,江木兰,廖星. 不同剂型对油菜的促生和生防作用[C]. 中国土壤学会第十一届全国会员代表大会暨第七届海峡两岸土壤肥料学术交流研讨会论文集(上). 2008:177-180.
[34]付浩,冀瑞琴,张学江,刘胜毅. 甘蓝型油菜抗菌核病相关基因BNT19K4、BNF7A10、BNF5011的研究[C]. 中国植物病理学会2007年学术年会论文集. 2007:151-152.
[35]董祥柏,冀瑞琴,郭学兰,董彩华,陈洪,刘越英,胡琼,刘胜毅. 外源草酸氧化酶基因的表达加强了油菜病害防御基因转录和菌核病抗性[C]. 第十二届国际油菜大会论文集. 2007:135.
[36]刘胜毅,毛晗,董彩华,冀瑞琴,郭学兰,刘越英. 14549个甘蓝型油菜Unique ESTs分析和抗病相关特征基因(英文)[C]. 第十二届国际油菜大会论文集. 2007:1506-1508+157.
[37]胡胜武,于澄宇,赵惠贤,刘胜毅,王汉中. 甘蓝型油菜显性核不育材料Shaan-GMS的遗传及核不育的分子机制(英文)[C]. 第十二届国际油菜大会论文集. 2007:1517-1519+159.
[38]郭学兰,董彩华,Martin Barbetti,王德虎,刘胜毅. 核盘菌非寄主抗性的初步研究(英文)[C]. 第十二届国际油菜大会论文集. 2007:2213-2214+294.
[39]邹秋菊,郭学兰,刘胜毅,陈洪,赵元弟. 一种新型的微传感器的研制及其应用-在线活体监测油菜菌核病诱导的氧爆发(英文)[C]. 第十二届国际油菜大会论文集. 2007:2233-2235+298.
[40]刘胜毅,刘越英,Martin Barbetti,Phil Salisbury,付先虎,郭学兰,董彩华. 油菜菌核病抗性鉴定方法—装备喷雾系统的田间病圃法(英文)[C]. 第十二届国际油菜大会论文集. 2007:2349-2351+321.
[41]付浩,冀瑞琴,侯明生,Martin Barbetti,董彩华,刘越英,刘胜毅. 甲基茉莉酸、苯丙噻重氮和菌核病毒素草酸诱导了油菜对菌核病的抗性(英文)[C]. 第十二届国际油菜大会论文集. 2007:2352-2354+321.
[42]董祥柏,冀瑞琴,郭学兰,董彩华,陈洪,刘越英,胡琼,刘胜毅. 外源草酸氧化酶基因的表达加强了油菜病害防御基因转录和菌核病抗性[C]. 湖北省遗传学会、江西省遗传学会2006年学术年会暨学术讨论会论文摘要集. 2006:95.
[43]樊云芳,胡胜武,董彩华,郭学兰,刘胜毅. 甘蓝型油菜双隐性细胞核雄性不育的细胞学及育性相关基因的差异表达研究[C]. 湖北省遗传学会、江西省遗传学会2006年学术年会暨学术讨论会论文摘要集. 2006:99.
[44]高荣村,胡胜武,郭学兰,董彩华,刘胜毅. 拟南芥抗菌核病突变体的筛选[C]. 湖北省遗传学会、江西省遗传学会2006年学术年会暨学术讨论会论文摘要集. 2006:101.
[45]毛晗,董彩华,苏振,冀瑞琴,郭学兰,刘越英,刘胜毅. 14549个甘蓝型油菜Unique ESTs分析和抗病相关特征基因[C]. 湖北省遗传学会、江西省遗传学会2006年学术年会暨学术讨论会论文摘要集. 2006:104.
[46]郭学兰,董彩华,Martin Barbetti,王德虎,刘胜毅. 核盘菌非寄主抗性的初步研究[C]. 湖北省遗传学会、江西省遗传学会2006年学术年会暨学术讨论会论文摘要集. 2006:198.
[47]董祥柏,刘胜毅,郭学兰,董彩华,胡小加,刘越英. 转葡萄糖氧化酶和草酸氧化酶基因油菜加强防御反应基因的表达和对菌核病的抗性(英文)[C]. 2005植物分子育种国际学术研讨会论文集. 2005:136.
[48]郭学兰,胡小加,董彩华,刘越英,刘胜毅. 油菜菌核病生防细菌功能基因的克隆和转基因油菜的抗病性[C]. 2005植物分子育种国际学术研讨会论文集. 2005:145.
[49]刘胜毅,毛晗,苏震,董彩华,徐文英,冀瑞琴,郭学兰. 油菜抗病相关ESTs和抗病机制的初步分析[C]. 2005植物分子育种国际学术研讨会论文集. 2005:157.
[50]刘胜毅,毛晗,苏震,董彩华,徐文英,冀瑞琴,郭学兰. 油菜对菌核病和黑胫病的抗病机制分析[C]. 中国植物病理学会.中国植物病理学第七届青年学术讨论会论文集. 2005:264.
[51]刘胜毅,刘仁虎,Akinwunmi O Latunde-Dada,Hans Cools,Bruce D L Fitt,John A Lucas. 黑胫病弱毒种Leptosphaeria biglobosa通过不同的信号途径诱导油菜抗性[C]. 中国植物病理学会.中国植物病理学第七届青年学术讨论会论文集. 2005:265.
[52]刘胜毅,周必文,胡小加,郭学兰,董彩华,刘越英,董祥柏. 转基因油菜外源基因飘逸及其影响因素研究[C]. 第三届湖北湖南植保农药学术研讨会论文集. 2004:207-208.
[53]郭学兰,胡小加,董彩华,刘越英,刘胜毅. 油菜菌核病生防细菌功能基因的克隆和转基因油菜的抗病性[C]. 第三届湖北湖南植保农药学术研讨会论文集. 2004:209-210.
[54]郭学兰,胡小加,董彩华,刘越英,刘胜毅. 油菜菌核病生防细菌功能基因的克隆和转基因油菜的抗病性[C]. 湖北省遗传学会第七次代表大会暨学术讨论会论文摘要集. 2004:109.
[55]刘胜毅,周必文,胡小加,郭学兰,董彩华,刘越英,董祥柏. 转基因油菜外源基因飘逸及其影响因素研究[C]. 湖北省遗传学会第七次代表大会暨学术讨论会论文摘要集. 2004:110.