論文專著:

發表英文論文 :
[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.
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[2]李玉博,劉勝毅,張景景,賈冬艷.基于Zadoff-Chu矩陣的最優碼本構造方法[J].通信學報,2020,41(03):112-119.
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[5]程明星,童超波,程曉暉,劉越英,劉立江,柴國華,黃軍艷,劉勝毅.甘藍型油菜作圖群體親本基因組及性狀QTL密集區變異特點[J].中國油料作物學報,2017,39(04):427-436.
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[9]馬小艮,于景印,唐敏強,張鳳啟,董彩華,童超波,黃軍艷,劉勝毅.不同菌核病抗性甘藍型油菜中BnVRN2基因的克隆與表達[J].中國油料作物學報,2015,37(06):735-743.
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[13]劉勝毅.中外科學家攜手破譯油菜多倍體基因組[J].基層農技推廣,2015,3(04):66.
[14]周晏秋,覃瑞,劉勝毅,李剛,黃軍艷,董彩華,程曉暉,劉虹,童超波.中華獼猴桃基因組可變剪接事件鑒定及分析[J].中國科學:生命科學,2015,45(03):289-300.
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[20]季海雯,任莉,陳坤榮,徐理,劉凡,孫超超,李俊,劉勝毅,方小平.油菜根腫病病原主要生理小種和品種抗病性鑒定[J].中國油料作物學報,2013,35(03):301-306.
[21]劉玲彥,董彩華,程曉暉,劉越英,黃軍艷,劉勝毅.2009-2012年全國區域試驗冬油菜品種菌核病抗性評價[J].中國油料作物學報,2013,35(03):331-333+340.
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[4]程曉暉,劉越英,黃軍艷,劉勝毅. 油菜菌核病田間病圃抗性鑒定方法的建立與我國油菜新品種菌核病抗性鑒定[C]. 中國作物學會油料作物專業委員會第八次會員代表大會暨學術年會綜述與摘要集. 2018:205.
[5]劉立江,郜麗霞,張益,程曉輝,張園園,童超波,黃軍艷,劉勝毅. 基于重測序的甘藍型油菜自然群體根腫病抗病評價及抗病位點鑒定[C]. 中國作物學會油料作物專業委員會第八次會員代表大會暨學術年會綜述與摘要集. 2018:207.
[6]唐敏強,張園園,胡鳴,劉越英,程曉暉,童超波,黃軍艷,劉勝毅. 甘藍型油菜單體型圖譜構建及株高性狀全基因組關聯分析[C]. 中國作物學會油料作物專業委員會第八次會員代表大會暨學術年會綜述與摘要集. 2018:159.
[7]胡鳴,唐敏強,張園園,劉越英,程曉暉,黃軍艷,童超波,劉勝毅. 甘藍型油菜大片段序列丟失引起的結構變異及全基因組關聯分析[C]. 中國作物學會油料作物專業委員會第八次會員代表大會暨學術年會綜述與摘要集. 2018:181.
[8]白澤濤,何貽洲,黃軍艷,程明星,曹慧慧,柯濤,劉勝毅. 甘藍型油菜類甜蛋白基因家族成員的鑒定及起源分析[C]. 中國作物學會油料作物專業委員會第八次會員代表大會暨學術年會綜述與摘要集. 2018:203.
[9]李艷,陳旺,劉勝毅,吳云鋒. 長春花CrCBSX3基因的克隆及功能初探[C]. 中國植物病理學會2016年學術年會論文集.中國植物病理學會:中國植物病理學會,2016:448.
[10]程曉暉,任莉,黃軍艷,方小平,劉勝毅. 小型無人機噴藥防治油菜菌核病效果研究[C]. 中國植物病理學會2015年學術年會論文集.中國植物病理學會(Chinese Society for Plant Pathology):中國植物病理學會,2015:561.
[11]任莉,程雨貴,張明海,劉勝毅,陳坤榮,劉凡,季海雯,方小平. 油菜蕾薹期菌核病發生為害情況及其菌株特性研究[C]. 中國植物病理學會2012年學術年會論文集. 2012:31.
[12]黃金,黃軍艷,柯濤,馬向東,董彩華,劉勝毅. 油菜抗菌肽基因的快速篩選及活性檢測[C]. 中國植物病理學會2012年學術年會論文集. 2012:528.
[13]程曉暉,劉越英,黃軍艷,劉勝毅. 2005~2012年國家區試油菜品種對菌核病的抗性鑒定研究[C]. 中國植物病理學會2012年學術年會論文集. 2012:523.
[14]張彪,黃軍艷,董彩華,趙美霞,汪承剛,劉勝毅. 大豆灰斑病抗性鑒定方法及轉BnERF104大豆的灰斑病抗性研究[C]. 中國植物病理學會2011年學術年會論文集. 2011:434.
[15]程曉暉,劉越英,郭茂勝,黃軍艷,鄭在武,張鳳啟,周瑢,劉勝毅. 油菜菌核病為害損失估計和嚴重度與產量及產量構成成分關系研究[C]. 中國植物病理學會2011年學術年會論文集. 2011:507.
[16]胡小加,余常兵,李銀水,劉勝毅,張春雷,廖星. 巨大芽孢桿菌對油菜根系分泌物所含有機酸和糖類的趨化性研究[C]. 中國植物營養與肥料學會2010年學術年會論文集. 2010:162-168.
[17]任莉,王婧,賈建光,何月秋,劉勝毅,方小平. 十字花科作物對根腫病的抗性能力初探[C]. 中國植物病理學會2010年學術年會論文集. 2010:565.
[18]張彪,黃軍艷,董彩華,趙美霞,汪承剛,劉勝毅. 乙烯應答因子抗大豆灰斑病功能研究[C]. 中國植物病理學會2010年學術年會論文集. 2010:566.
[19]汪承剛,黃軍艷,董彩華,劉勝毅. 油菜BnERF56基因通過乙烯和水楊酸信號途徑調控對多種腐生真菌的抗性[C]. 中國植物病理學會2010年學術年會論文集. 2010:567.
[20]劉勝毅. 油菜對菌核病抗性反應分子網絡解析[C]. 中國植物病理學會2010年學術年會論文集.中國植物病理學會(Chinese Society for Plant Pathology):中國植物病理學會,2010:568.
[21]李丹,黃軍艷,張學江,趙美霞,劉勝毅. 初探細胞程序性死亡在擬南芥與核盤菌互作中的作用[C]. 基因開啟未來:新時代的遺傳學與科技進步——湖北省遺傳學會第八次代表大會暨學術討論會論文摘要匯編. 2009:33.
[22]黃軍艷,許李明,張學江,劉勝毅. 人工microRNA干擾At3A06基因增強了擬南芥對菌核病的敏感性[C]. 基因開啟未來:新時代的遺傳學與科技進步——湖北省遺傳學會第八次代表大會暨學術討論會論文摘要匯編. 2009:57.
[23]劉勝毅. 油菜抗菌核病的特征與育種策略[C]. 基因開啟未來:新時代的遺傳學與科技進步——湖北省遺傳學會第八次代表大會暨學術討論會論文摘要匯編. 2009:74.
[24]柯濤,毛晗,董彩華,郭學蘭,黃思良,劉勝毅. 油菜抗菌肽基因的生物信息學分析[C]. 湖北省遺傳學會.基因開啟未來:新時代的遺傳學與科技進步——湖北省遺傳學會第八次代表大會暨學術討論會論文摘要匯編. 2009:176.
[25]魏芳,董緒燕,郭學蘭,劉勝毅,陳洪. 油菜葉片受草酸侵染脅迫產生揮發物的富集及其生物學研究[C]. 中國植物保護學會植物化感作用專業委員會.中國第四屆植物化感作用學術研討會論文摘要集. 2009:50.
[26]劉勝毅. 油菜抗菌核病的特征與育種策略[C]. 中國植物病理學會.中國植物病理學會2009年學術年會論文集. 2009:176.
[27]黃軍艷,許李明,張學江,劉勝毅. 人工microRNA干擾At3A06基因增強了擬南芥對菌核病的敏感性[C]. 中國植物病理學會.中國植物病理學會2009年學術年會論文集. 2009:439.
[28]李丹,黃軍艷,張學江,趙美霞,劉勝毅. 初探細胞程序性死亡在擬南芥與核盤菌互作中的作用[C]. 中國植物病理學會2009年學術年會論文集. 2009:449.
[29]任秋紅,黃軍艷,田保明,劉勝毅. 油菜和擬南芥菌核病抗性相關基因的功能研究[C]. 中國植物病理學會.中國植物病理學會2009年學術年會論文集. 2009:468.
[30]張學江,黃軍艷,王政,李丹,尹思佳,劉越英,劉勝毅. 活性氧積累與細胞死亡在油菜與菌核病互作中的重要作用[C]. 中國植物病理學會2009年學術年會論文集. 2009:499.
[31]柯濤,毛晗,董彩華,郭學蘭,黃思良,劉勝毅. 油菜抗菌肽基因的生物信息學分析[C]. 中國植物病理學會2009年學術年會論文集. 2009:448.
[32]張學江,黃軍艷,付浩,李丹,尹思佳,劉越英,劉勝毅. 過表達甘藍型油菜BnNRR基因增強了油菜對菌核病的感病性[C]. 中國植物病理學會2009年學術年會論文集. 2009:498.
[33]胡小加,劉勝毅,江木蘭,廖星. 不同劑型對油菜的促生和生防作用[C]. 中國土壤學會第十一屆全國會員代表大會暨第七屆海峽兩岸土壤肥料學術交流研討會論文集(上). 2008:177-180.
[34]付浩,冀瑞琴,張學江,劉勝毅. 甘藍型油菜抗菌核病相關基因BNT19K4、BNF7A10、BNF5011的研究[C]. 中國植物病理學會2007年學術年會論文集. 2007:151-152.
[35]董祥柏,冀瑞琴,郭學蘭,董彩華,陳洪,劉越英,胡瓊,劉勝毅. 外源草酸氧化酶基因的表達加強了油菜病害防御基因轉錄和菌核病抗性[C]. 第十二屆國際油菜大會論文集. 2007:135.
[36]劉勝毅,毛晗,董彩華,冀瑞琴,郭學蘭,劉越英. 14549個甘藍型油菜Unique ESTs分析和抗病相關特征基因(英文)[C]. 第十二屆國際油菜大會論文集. 2007:1506-1508+157.
[37]胡勝武,于澄宇,趙惠賢,劉勝毅,王漢中. 甘藍型油菜顯性核不育材料Shaan-GMS的遺傳及核不育的分子機制(英文)[C]. 第十二屆國際油菜大會論文集. 2007:1517-1519+159.
[38]郭學蘭,董彩華,Martin Barbetti,王德虎,劉勝毅. 核盤菌非寄主抗性的初步研究(英文)[C]. 第十二屆國際油菜大會論文集. 2007:2213-2214+294.
[39]鄒秋菊,郭學蘭,劉勝毅,陳洪,趙元弟. 一種新型的微傳感器的研制及其應用-在線活體監測油菜菌核病誘導的氧爆發(英文)[C]. 第十二屆國際油菜大會論文集. 2007:2233-2235+298.
[40]劉勝毅,劉越英,Martin Barbetti,Phil Salisbury,付先虎,郭學蘭,董彩華. 油菜菌核病抗性鑒定方法—裝備噴霧系統的田間病圃法(英文)[C]. 第十二屆國際油菜大會論文集. 2007:2349-2351+321.
[41]付浩,冀瑞琴,侯明生,Martin Barbetti,董彩華,劉越英,劉勝毅. 甲基茉莉酸、苯丙噻重氮和菌核病毒素草酸誘導了油菜對菌核病的抗性(英文)[C]. 第十二屆國際油菜大會論文集. 2007:2352-2354+321.
[42]董祥柏,冀瑞琴,郭學蘭,董彩華,陳洪,劉越英,胡瓊,劉勝毅. 外源草酸氧化酶基因的表達加強了油菜病害防御基因轉錄和菌核病抗性[C]. 湖北省遺傳學會、江西省遺傳學會2006年學術年會暨學術討論會論文摘要集. 2006:95.
[43]樊云芳,胡勝武,董彩華,郭學蘭,劉勝毅. 甘藍型油菜雙隱性細胞核雄性不育的細胞學及育性相關基因的差異表達研究[C]. 湖北省遺傳學會、江西省遺傳學會2006年學術年會暨學術討論會論文摘要集. 2006:99.
[44]高榮村,胡勝武,郭學蘭,董彩華,劉勝毅. 擬南芥抗菌核病突變體的篩選[C]. 湖北省遺傳學會、江西省遺傳學會2006年學術年會暨學術討論會論文摘要集. 2006:101.
[45]毛晗,董彩華,蘇振,冀瑞琴,郭學蘭,劉越英,劉勝毅. 14549個甘藍型油菜Unique ESTs分析和抗病相關特征基因[C]. 湖北省遺傳學會、江西省遺傳學會2006年學術年會暨學術討論會論文摘要集. 2006:104.
[46]郭學蘭,董彩華,Martin Barbetti,王德虎,劉勝毅. 核盤菌非寄主抗性的初步研究[C]. 湖北省遺傳學會、江西省遺傳學會2006年學術年會暨學術討論會論文摘要集. 2006:198.
[47]董祥柏,劉勝毅,郭學蘭,董彩華,胡小加,劉越英. 轉葡萄糖氧化酶和草酸氧化酶基因油菜加強防御反應基因的表達和對菌核病的抗性(英文)[C]. 2005植物分子育種國際學術研討會論文集. 2005:136.
[48]郭學蘭,胡小加,董彩華,劉越英,劉勝毅. 油菜菌核病生防細菌功能基因的克隆和轉基因油菜的抗病性[C]. 2005植物分子育種國際學術研討會論文集. 2005:145.
[49]劉勝毅,毛晗,蘇震,董彩華,徐文英,冀瑞琴,郭學蘭. 油菜抗病相關ESTs和抗病機制的初步分析[C]. 2005植物分子育種國際學術研討會論文集. 2005:157.
[50]劉勝毅,毛晗,蘇震,董彩華,徐文英,冀瑞琴,郭學蘭. 油菜對菌核病和黑脛病的抗病機制分析[C]. 中國植物病理學會.中國植物病理學第七屆青年學術討論會論文集. 2005:264.
[51]劉勝毅,劉仁虎,Akinwunmi O Latunde-Dada,Hans Cools,Bruce D L Fitt,John A Lucas. 黑脛病弱毒種Leptosphaeria biglobosa通過不同的信號途徑誘導油菜抗性[C]. 中國植物病理學會.中國植物病理學第七屆青年學術討論會論文集. 2005:265.
[52]劉勝毅,周必文,胡小加,郭學蘭,董彩華,劉越英,董祥柏. 轉基因油菜外源基因飄逸及其影響因素研究[C]. 第三屆湖北湖南植保農藥學術研討會論文集. 2004:207-208.
[53]郭學蘭,胡小加,董彩華,劉越英,劉勝毅. 油菜菌核病生防細菌功能基因的克隆和轉基因油菜的抗病性[C]. 第三屆湖北湖南植保農藥學術研討會論文集. 2004:209-210.
[54]郭學蘭,胡小加,董彩華,劉越英,劉勝毅. 油菜菌核病生防細菌功能基因的克隆和轉基因油菜的抗病性[C]. 湖北省遺傳學會第七次代表大會暨學術討論會論文摘要集. 2004:109.
[55]劉勝毅,周必文,胡小加,郭學蘭,董彩華,劉越英,董祥柏. 轉基因油菜外源基因飄逸及其影響因素研究[C]. 湖北省遺傳學會第七次代表大會暨學術討論會論文摘要集. 2004:110.