李传友-中国科学院大学-UCAS


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李传友-中国科学院大学-UCAS
[中文]
[English]
招生信息
教育背景
工作经历
教授课程
专利与奖励
出版信息
科研活动
指导学生
实验室网页链接
基本信息
李传友 男 博导 中国科学院遗传与发育生物学研究所电子邮件: cyli@genetics.ac.cn通信地址: No.1 West Beichen Road, Chaoyang District邮政编码: 100101
研究领域
1.以番茄为模式系统研究植物对昆虫抗性反应的分子机理
 以番茄为模式系统,以经典的蛋白酶抑制剂为抗性标记基因,通过筛选抗性缺失突变体鉴定并分离植物对昆虫的抗性反应信号传导途径中的重要基因。目前已筛选到的番茄突变体主要分为两类:一类对系统素的识别发生了缺陷;另一类是JA的生物合成或信号传导发生了缺陷。采用图位克隆的方法成功地从番茄基因组中分离了控制JA合成的两个基因Spr2和JL1,目前正在进行生物学功能的研究。以茉莉酸合成突变体spr2和茉莉酸识别突变体jai1为材料,采用嫁接实验证明,在植物系统性抗性反应中进行长距离运输的信号分子是JA而不是传统认为的系统素,系统素的作用在于调控JA的生物合成。这是对本领域现有工作模型的重要修正。过量表达系统素前体基因(Prosystemin)的转基因番茄(35S::PS)组成型地表达高水平的抗性相关蛋白,表明在35S::PS植物中受伤反应始终处于开启的状态。目前我们正在以35S::PS为基础材料大规模筛选系统素/茉莉酸途径的抑制子突变。对更多突变体的表型分析、相应基因的分离和功能研究将会为最终阐明植物对昆虫抗性反应的遗传机理奠定基础。在此基础上通过对抗性信号传导途径中关键基因的遗传工程操作提高植物对昆虫的抗性。该项研究的长远目标是建立一种依靠植物自身的抗性因而是对环境友好的、可持续的控制农业害虫的策略。
2.以拟南芥为模式研究茉莉酸与生长素互作调控植物生长发育和抗逆反应的分子机制
茉莉酸在植物的生长发育和抗逆反应两个方面都具有重要调控作用。我们的研究表明茉莉酸的这些生理功能是通过与其它植物激素的相互作用实现的。我们以拟南芥根系发育为模式研究茉莉酸与生长素互作协调植物的生长发育和抗性反应的分子基础。
招生信息
招生专业
071007-遗传学071009-细胞生物学085238-生物工程
招生方向
植物功能基因组学,植物分子遗传学植物细胞生物学植物分子遗传学
教育背景
1996-09--1999-07 中国科学院遗传研究所 博士1991-09--1994-07 山东农业大学 硕士1987-09--1991-07 山东农业大学 学士
学历
-- 研究生
学位
-- 博士
工作经历
工作简历
2003-07~现在, 中国科学院遗传与发育生物学研究所, 研究员1999-09~2003-07,Michigan State University DOE-Plant Research Labor, 博士后1994-09~1996-07,山东农业大学, 讲师
社会兼职
2015-01-01-2019-12-31,中国植物生理与植物分子生物学会第十一届理事会植物激素生物学专业委员会, 副主任2015-01-01-今,Annals of Botany, 编委2014-01-01-今,中国农业科学院植物保护研究所第七届学术委员会, 委员2012-01-01-2018-12-31,蔬菜种质改良北京市重点实验室学术委员会, 委员2012-01-01-今,农业基因资源与生物技术北京市重点实验室学术委员会, 委员2012-01-01-今,Molecular Plant, 编委2012-01-01-今,Plant Molecular Biology, 副主编2011-01-01-今,Journal of Plant Science and Molecular Breeding, 编委2011-01-01-今,植物学报, 编委2010-01-01-今,Frontiers in Plant Physiology, 编委2009-01-01-今,遗传, 编委2005-01-01-今,农业虫鼠害综合治理国家重点实验室学术委员会, 委员
教授课程
分子遗传学信号转导
专利与奖励
奖励信息
(1)&nbsp中青年科技创新领军人才,&nbsp部委级,&nbsp2014(2)&nbsp“朱李月华”优秀教师奖,&nbsp,&nbsp院级,&nbsp2011(3)&nbsp益海嘉里优秀导师,&nbsp,&nbsp研究所(学校),&nbsp2011
专利成果
( 1 )&nbsp一种与抗虫相关蛋白及其编码基因与应用,&nbsp发明,&nbsp2013,&nbsp第 1 作者,&nbsp专利号: ZL201110002809.4( 2 )&nbsp植物根生长发育相关蛋白及其编码基因与应用,&nbsp发明,&nbsp2012,&nbsp第 1 作者,&nbsp专利号: ZL200810104082.9( 3 )&nbsp与植物生物量相关的蛋白及其编码基因与应用,&nbsp发明,&nbsp2013,&nbsp第 1 作者,&nbsp专利号: ZL201110136903.9( 4 )&nbsp一个番茄抗虫相关基因及其编码蛋白与应用,&nbsp发明,&nbsp2008,&nbsp第 1 作者,&nbsp专利号: ZL200510008609.4( 5 )&nbsp植物茉莉酸信号传导调控蛋白及其编码基因与应用,&nbsp发明,&nbsp2012,&nbsp第 1 作者,&nbsp专利号: ZL200810239224.2( 6 )&nbsp植物ABA信号传导调控蛋白及其编码基因与应用,&nbsp发明,&nbsp2011,&nbsp第 1 作者,&nbsp专利号: ZL200810104077.8( 7 )&nbsp植物抗逆相关蛋白及其编码基因与应用,&nbsp发明,&nbsp2012,&nbsp第 1 作者,&nbsp专利号: ZL201019114048.4( 8 )&nbsp来自水稻的与株型相关基因及其编码蛋白与应用,&nbsp发明,&nbsp2010,&nbsp第 1 作者,&nbsp专利号: ZL200610144197.1( 9 )&nbsp与植物株型相关蛋白及其编码基因,&nbsp发明,&nbsp2013,&nbsp第 1 作者,&nbsp专利号: ZL201010168639.2( 10 )&nbsp一种与株型相关和/或与产量相关蛋白及其编码基因与应用,&nbsp发明,&nbsp2013,&nbsp第 1 作者,&nbsp专利号: ZL201010168600.0( 11 )&nbsp番茄LOXD基因在调控植物抗性中的应用,&nbsp发明,&nbsp2015,&nbsp第 1 作者,&nbsp专利号: 201210328324.9
出版信息
发表论文
[1] Lin, Lihao, Du, Minmin, Li, Shuyu, Sun, Chuanlong, Wu, Fangming, Deng, Lei, Chen, Qian, Li, Chuanyou. Mediator complex subunit MED25 physically interacts with DST to regulate spikelet number in rice. JOURNAL OF INTEGRATIVE PLANT BIOLOGY[J]. 2022, 64(4):&nbsp871-883, http://apps.webofknowledge.com/CitedFullRecord.do?product=UA&colName=WOS&SID=5CCFccWmJJRAuMzNPjj&search_mode=CitedFullRecord&isickref=WOS:000777967800001.[2] Chunpeng An, Lei Deng, Huawei Zhai, Yanrong You, Fangming Wu, Qingzhe Zhai, Alain Goossens, Chuanyou Li. Regulation of jasmonate signaling by reversible acetylation of TOPLESS in Arabidopsis. Molecular Plant[J]. 2022, 15(8):&nbsp1329-1346, http://dx.doi.org/10.1016/j.molp.2022.06.014.[3] Jiajie Lian, Hongyu Han, Xizhan Chen, Qian Chen, Jiuhai Zhao, Chuanyou Li. Stemphylium lycopersici Nep1-like Protein (NLP) Is a Key Virulence Factor in Tomato Gray Leaf Spot Disease. Journal of Fungi[J]. 2022, 8(518):&nbsphttps://doaj.org/article/c37c5e82f9934faa8655ec32f4fc8ad4.[4] Tao, Han, Miao, Huiying, Chen, Lili, Wang, Mengyu, Xia, Chuchu, Zeng, Wei, Sun, Bo, Zhang, Fen, Zhang, Shuqun, Li, Chuanyou, Wang, Qiaomei. WRKY33-mediated indolic glucosinolate metabolic pathway confers resistance against Alternaria brassicicola in Arabidopsis and Brassica crops. JOURNAL OF INTEGRATIVE PLANT BIOLOGY[J]. 2022, 64(5):&nbsp1007-1019, http://dx.doi.org/10.1111/jipb.13245.[5] Tianxia Yang, Muhammad Ali, Lihao Lin, Ping Li, Hongju He, Qiang Zhu, Chuanlong Sun, Ning Wu, Xiaofei Zhang, Tingting Huang, Chang-Bao Li, Chuanyou Li, Lei Deng. Recoloring tomato fruit by CRISPR/Cas9-mediated multiplex gene editing. Horticulture Research[J]. 2022, 8: uhac214-, [6] Du, Minmin, Daher, Firas Bou, Liu, Yuanyuan, Steward, Andrew, Tillmann, Molly, Zhang, Xiaoyue, Wong, Jeh Haur, Ren, Hong, Cohen, Jerry D, Li, Chuanyou, Gray, William M. Biphasic control of cell expansion by auxin coordinates etiolated seedling development. SCIENCE ADVANCES[J]. 2022, 8(2):&nbsphttp://dx.doi.org/10.1126/sciadv.abj1570.[7] Tu, Tianli, Zheng, Shuangshuang, Ren, Panrong, Meng, Xianwen, Zhao, Jiuhai, Chen, Qian, Li, Chuanyou. Coordinated cytokinin signaling and auxin biosynthesis mediates arsenate-induced root growth inhibition. PLANT PHYSIOLOGY[J]. 2021, 185(3):&nbsp1166-1181, http://dx.doi.org/10.1093/plphys/kiaa072.[8] Liu, Haoran, Liu, Lihong, Liang, Dongyi, Zhang, Min, Jia, Chengguo, Qi, Mingfang, Liu, Yuanyuan, Shao, Zhiyong, Meng, Fanliang, Hu, Songshen, Yin, Yanhai, Li, Chuanyou, Wang, Qiaomei. SlBES1 promotes tomato fruit softening through transcriptional inhibition of PMEU1. ISCIENCE[J]. 2021, 24(8):&nbsphttp://dx.doi.org/10.1016/j.isci.2021.102926.[9] Sun, Chuanlong, Deng, Lei, Du, Minmin, Zhao, Jiuhai, Chen, Qian, Huang, Tingting, Jiang, Hongling, Li, ChangBao, Li, Chuanyou. A Transcriptional Network Promotes Anthocyanin Biosynthesis in Tomato Flesh. MOLECULAR PLANT[J]. 2020, 13(1):&nbsp42-58, http://lib.cqvip.com/Qikan/Article/Detail?id=7101218364.[10] Zhai, Qingzhe, Deng, Lei, Li, Chuanyou. Mediator subunit MED25: at the nexus of jasmonate signaling. CURRENT OPINION IN PLANT BIOLOGYnull. 2020, 57: 78-86, http://dx.doi.org/10.1016/j.pbi.2020.06.006.[11] Wu, Fangming, Deng, Lei, Zhai, Qingzhe, Zhao, Jiuhai, Chen, Qian, Li, Chuanyou. Mediator Subunit MED25 Couples Alternative Splicing of JAZ Genes with Fine-Tuning of Jasmonate Signaling. PLANT CELL[J]. 2020, 32(2):&nbsp429-448, https://www.webofscience.com/wos/woscc/full-record/WOS:000519597000012.[12] Sun, Wenjing, Han, Hongyu, Deng, Lei, Sun, Chuanlong, Xu, Yiran, Lin, Lihao, Ren, Panrong, Zhao, Jiuhai, Zhai, Qingzhe, Li, Chuanyou. Mediator Subunit MED25 Physically Interacts with PHYTOCHROME INTERACTING FACTOR4 to Regulate Shade-Induced Hypocotyl Elongation in Tomato. PLANT PHYSIOLOGY[J]. 2020, 184(3):&nbsp1549-1562, https://www.webofscience.com/wos/woscc/full-record/WOS:000585840800028.[13] Zhai, Huawei, Zhang, Xiaoyue, You, Yanrong, Lin, Lihao, Zhou, Wenkun, Li, Chuanyou. SEUSS integrates transcriptional and epigenetic control of root stem cell organizer specification. EMBO JOURNAL[J]. 2020, 39(20):&nbsphttp://dx.doi.org/10.15252/embj.2020105047.[14] Hang Wang, Shuyu Li, Yan’an Li, Yiran Xu, Yunhao Wang, Ruoxi Zhang, Wenjing Sun, Qian Chen, Xiu-jie Wang, Chuanyou Li, Jiuhai Zhao. MED25 connects enhancer-promoter looping and MYC2-dependent activation of jasmonate signaling. Nature Plants[J]. 2019, [15] Yuanyuan Liu, Minmin Du, Lei Deng, Jiafang Shen, Mingming Fang, Qian Chen, Yanhui Lu, Qiaomei Wang, Chuanyou Li, Qingzhe Zhai. MYC2 Regulates the Termination of Jasmonate Signaling via an Autoregulatory Negative Feedback Loop OPEN. The Plant Cell. 2019, 31(1):&nbsp106-127, https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6391702/.[16] 李传友. LEUNIG_HOMOLOG mediates jasmonate-dependent transcriptional activation in cooperation with the coactivators HAC1 and MED25.. Plant Cell. 2019, [17] Zhang, Xiaoyue, Zhou, Wenkun, Chen, Qian, Fang, Mingming, Zheng, Shuangshuang, Scheres, Ben, Li, Chuanyou. Mediator subunit MED31 is required for radial patterning of Arabidopsis roots. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA[J]. 2018, 115(24):&nbspE5624-E5633, https://www.webofscience.com/wos/woscc/full-record/WOS:000434933400023.[18] Deng, Lei, Wang, Hang, Sun, Chuanlong, Li, Qian, Jiang, Hongling, Du, Minmin, Li, ChangBao, Li, Chuanyou. Efficient generation of pink-fruited tomatoes using CRISPR/Cas9 system. JOURNAL OF GENETICS AND GENOMICS. 2018, 45(1):&nbsp51-54, http://dx.doi.org/10.1016/j.jgg.2017.10.002.[19] Du, Minmin, Zhao, Jiuhai, Tzeng, David T W, Liu, Yuanyuan, Deng, Lei, Yang, Tianxia, Zhai, Qingzhe, Wu, Fangming, Huang, Zhuo, Zhou, Ming, Wang, Qiaomei, Chen, Qian, Zhong, Silin, Li, ChangBao, Li, Chuanyou. MYC2 Orchestrates a Hierarchical Transcriptional Cascade That Regulates Jasmonate-Mediated Plant Immunity in Tomato. PLANT CELL[J]. 2017, 29(8):&nbsp1883-1906, https://www.webofscience.com/wos/woscc/full-record/WOS:000409474300010.[20] An, Chunpeng, Li, Lin, Zhai, Qingzhe, You, Yanrong, Deng, Lei, Wu, Fangming, Chen, Rong, Jiang, Hongling, Wang, Hang, Chen, Qian, Li, Chuanyou. Mediator subunit MED25 links the jasmonate receptor to transcriptionally active chromatin. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA[J]. 2017, 114(42):&nbspE8930-E8939, http://dx.doi.org/10.1073/pnas.1710885114.[21] Li, Chuanyou, Li, Jiayang, Chong, Kang, Harter, Klaus, Lee, Youngsook, Leung, Jeffrey, Martinoia, Enrico, Matsuoka, Makoto, Offringa, Remko, Qu, Lijia, Schroeder, Julian, Zhao, Yunde. Toward a Molecular Understanding of Plant Hormone Actions. MOLECULAR PLANT. 2016, 9(1):&nbsp1-3, http://lib.cqvip.com/Qikan/Article/Detail?id=668400041.[22] Qingzhe Zhai, Xin Zhang, Fangming Wu, Hailong Feng, Lei Deng, Li Xu, Min Zhang, Qiaomei Wang, Chuanyou Li. Transcriptional Mechanism of Jasmonate Receptor COI1-Mediated Delay of Flowering Time in Arabidopsis OPEN. The Plant Cell. 2015, 27(10):&nbsp2814-2828, https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4682329/.[23] Du, Minmin, Zhai, Qingzhe, Deng, Lei, Li, Shuyu, Li, Hongshuang, Yan, Liuhua, Huang, Zhuo, Wang, Bao, Jiang, Hongling, Huang, Tingting, Li, ChangBao, Wei, Jianing, Kang, Le, Li, Jingfu, Li, Chuanyou. Closely Related NAC Transcription Factors of Tomato Differentially Regulate Stomatal Closure and Reopening during Pathogen Attack. PLANT CELL[J]. 2014, 26(7):&nbsp3167-3184, http://dx.doi.org/10.1105/tpc.114.128272.[24] Yan, Liuhua, Zhai, Qingzhe, Wei, Jianing, Li, Shuyu, Wang, Bao, Huang, Tingting, Du, Minmin, Sun, Jiaqiang, Kang, Le, Li, ChangBao, Li, Chuanyou. Role of Tomato Lipoxygenase D in Wound-Induced Jasmonate Biosynthesis and Plant Immunity to Insect Herbivores. PLOS GENETICS[J]. 2013, 9(12):&nbsphttp://dx.doi.org/10.1371/journal.pgen.1003964.[25] Zhai, Qingzhe, Yan, Liuhua, Tan, Dan, Chen, Rong, Sun, Jiaqiang, Gao, Liyan, Dong, MengQiu, Wang, Yingchun, Li, Chuanyou. Phosphorylation-Coupled Proteolysis of the Transcription Factor MYC2 Is Important for Jasmonate-Signaled Plant Immunity. PLOS GENETICS[J]. 2013, 9(4):&nbsphttp://dx.doi.org/10.1371/journal.pgen.1003422.[26] Sun, Jiaqiang, Qi, Linlin, Li, Yanan, Zhai, Qingzhe, Li, Chuanyou. PIF4 and PIF5 Transcription Factors Link Blue Light and Auxin to Regulate the Phototropic Response in Arabidopsis. PLANT CELL[J]. 2013, 25(6):&nbsp2102-2114, http://dx.doi.org/10.1105/tpc.113.112417.[27] Sun, Jiaqiang, Qi, Linlin, Li, Yanan, Chu, Jinfang, Li, Chuanyou. PIF4-Mediated Activation of YUCCA8 Expression Integrates Temperature into the Auxin Pathway in Regulating Arabidopsis Hypocotyl Growth. PLOS GENETICS[J]. 2012, 8(3):&nbsphttps://doaj.org/article/3f14448f14c247e19c9d114faad79ffb.[28] 李传友. The Arabidopsis Mediator subunit MED25 differentially regulates jasmonate and ABA signalings through interacting with MYC2 and ABI5. 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Chen, Bingtang, Han, Bin, Feng, Qi, Fan, Danlin, Wang, Ying, Ling, Hongqing, Xue, Yongbiao, Ware, Doreen, McCombie, W Richard, Lippman, Zachary B, Chia, JerMing, Jiang, Ke, Pasternak, Shiran, Gelley, Laura, Kramer, Melissa, Anderson, Lorinda K, Chang, SongBin, Royer, Suzanne M, Shearer, Lindsay A, Stack, Stephen M, Rose, Jocelyn K C, Xu, Yimin, Eannetta, Nancy, Matas, Antonio J, McQuinn, Ryan, Tanksley, Steven D, Camara, Francisco, Guigo, Roderic, Rombauts, Stephane, Fawcett, Jeffrey, Van de Peer, Yves, Zamir, Dani, Liang, Chunbo, Spannagl, Manuel, Gundlach, Heidrun, Bruggmann, Remy, Mayer, Klaus, Jia, Zhiqi, Zhang, Junhong, Ye, Zhibiao, Bishop, Gerard J, Butcher, Sarah, LopezCobollo, Rosa, Buchan, Daniel, Filippis, Ioannis, Abbott, James, Dixit, Rekha, Singh, Manju, Singh, Archana, Pal, Jitendra Kumar, Pandit, Awadhesh, Singh, Pradeep Kumar, Mahato, Ajay Kumar, Dogra, Vivek, Gaikwad, Kishor, Sharma, Tilak Raj, Mohapatra, Trilochan, Singh, Nagendra Kumar, Causse, Mathilde, Rothan, Christophe, Schiex, Thomas, Noirot, Celine, Bellec, Arnaud, Klopp, Christophe, Delalande, Corinne, Berges, Helene, Mariette, Jerome, Frasse, Pierre, Vautrin, Sonia, Zouine, Mohamed, Latche, Alain, Rousseau, Christine, Regad, Farid, Pech, JeanClaude, Philippot, Murielle, Bouzayen, Mondher, Pericard, Pierre, Osorio, Sonia, Fernandez del Carmen, Asuncion, Monforte, Antonio, Granell, Antonio, FernandezMunoz, Rafael, Conte, Mariana, Lichtenstein, Gabriel, Carrari, Fernando, De Bellis, Gianluca, Fuligni, Fabio, Peano, Clelia, Grandillo, Silvana, Termolino, Pasquale, Pietrella, Marco, Fantini, Elio, Falcone, Giulia, Fiore, Alessia, Giuliano, Giovanni, Lopez, Loredana, Facella, Paolo, Perrotta, Gaetano, Daddiego, Loretta, Bryan, Glenn, Orozco, Modesto, Pastor, Xavier, Torrents, David, van Schriek, Keygene N V Marco G M, Feron, Richard M C, van Oeveren, Jan, de Heer, Peter, daPonte, Lorena, JacobsOomen, Saskia, Cariaso, Mike, Prins, Marcel, van Eijk, Michiel J T, Janssen, Antoine, van Haaren, Mark J J, Jo, SungHwan, Kim, Jungeun, Kwon, SukYoon, Kim, Sangmi, Koo, DalHoe, Lee, Sanghyeob, Hur, CheolGoo, Clouser, Christopher, Rico, Alain, Hallab, Asis, Gebhardt, Christiane, Klee, Kathrin, Joecker, Anika, Warfsmann, Jens, Goebel, Ulrike, Kawamura, Shingo, Yano, Kentaro, Sherman, Jamie D, Fukuoka, Hiroyuki, Negoro, Satomi, Bhutty, Sarita, Chowdhury, Parul, Chattopadhyay, Debasis, Datema, Erwin, Smit, Sandra, Schijlen, Eliog W M, van de Belt, Jose, van Haarst, Jan C, Peters, Sander A, van Staveren, Marjo J, Henkens, Marleen H C, Mooyman, Paul J W, Hesselink, Thamara, van Ham, Roeland C H J, Jiang, Guoyong, Droege, Marcus, Choi, Doil, Kang, ByungCheol, Kim, Byung Dong, Park, Minkyu, Kim, Seungill, Yeom, SeonIn, Lee, YongHwan, Choi, YangDo, Li, Guangcun, Gao, Jianwei, Liu, Yongsheng, Huang, Shengxiong, FernandezPedrosa, Victoria, Collado, Carmen, Zuniga, Sheila, Wang, Guoping, Cade, Rebecca, Dietrich, Robert A, Rogers, Jane, Knapp, Sandra, Fei, Zhangjun, White, Ruth A, Thannhauser, Theodore W, Giovannoni, James J, Angel Botella, Miguel, Gilbert, Louise, Gonzalez, Ramon, Goicoechea, Jose Luis, Yu, Yeisoo, Kudrna, David, Collura, Kristi, Wissotski, Marina, Wing, Rod, Schoof, Heiko, Meyers, Blake C, Gurazada, Aishwarya Bala, Green, Pamela J, Mathur, Saloni, Vyas, Shailendra, Solanke, Amolkumar U, Kumar, Rahul, Gupta, Vikrant, Sharma, Arun K, Khurana, Paramjit, Khurana, Jitendra P, Tyagi, Akhilesh K, Dalmay, Tamas, Mohorianu, Irina, Walts, Brandon, Chamala, Srikar, Barbazuk, W Brad, Li, Jingping, Guo, Hui, Lee, TaeHo, Wang, Yupeng, Zhang, Dong, Paterson, Andrew H, Wang, Xiyin, Tang, Haibao, Barone, Amalia, Chiusano, Maria Luisa, Ercolano, Maria Raffaella, DAgostino, Nunzio, Di Filippo, Miriam, Traini, Alessandra, Sanseverino, Walter, Frusciante, Luigi, Seymour, Graham B, Elharam, Mounir, Fu, Ying, Hua, Axin, Kenton, Steven, Lewis, Jennifer, Lin, Shaoping, Najar, Fares, Lai, Hongshing, Qin, Baifang, Qu, Chunmei, Shi, Ruihua, White, Douglas, White, James, Xing, Yanbo, Yang, Keqin, Yi, Jing, Yao, Ziyun, Zhou, Liping, Roe, Bruce A, Vezzi, Alessandro, DAngelo, Michela, Zimbello, Rosanna, Schiavon, Riccardo, Caniato, Elisa, Rigobello, Chiara, Campagna, Davide, Vitulo, Nicola, Valle, Giorgio, Nelson, David R, De Paoli, Emanuele, Szinay, Dora, de Jong, Hans H, Bai, Yuling, Visser, Richard G F, Lankhorst, Rene M Klein, Beasley, Helen, McLaren, Karen, Nicholson, Christine, Riddle, Claire, Gianese, Giulio, Tomato Genome Consortium. 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科研活动
科研项目
( 1 )&nbsp生长素调控植物维管发育的分子基础 , 主持, 国家级, 2008-01--2011-12( 2 )&nbsp以番茄为模式研究植物对腐生型病原菌的防御机制, 主持, 国家级, 2010-01--2014-12( 3 )&nbsp茉莉酸调控根发育的分子机理, 主持, 国家级, 2011-01--2013-12( 4 )&nbsp茉莉酸调控根干细胞维持的分子机理, 主持, 国家级, 2014-01--2015-12( 5 )&nbsp植物根尖干细胞维持的转录调控机理, 主持, 国家级, 2014-01--2018-12( 6 )&nbsp植物根干细胞形成与可塑性调控的分子机制, 主持, 国家级, 2015-01--2019-06( 7 )&nbsp抗病虫关键基因克隆和功能验证, 主持, 国家级, 2008-01--2015-12( 8 )&nbsp植物对昆虫侵害免疫反应的信号转导机理, 主持, 部委级, 2014-07--2019-06( 9 )&nbsp植物抗病虫基因的分离与功能验证, 主持, 国家级, 2016-01--2020-12( 10 )&nbsp植物对昆虫免疫反应的信号转导机理, 主持, 部委级, 2014-01--2019-12
参与会议
(1)Jasmonate/auxin inter-plays in regulating root meristem activity 第一届国际植物干细胞会议 2016-06-08(2)Genetic dissection of systemin/jasmonate-mediated systemic defense signaling in tomato 第十二届国际茄科生物学会议 2015-10-25(3)“Mediator-ing" jasmonate-signaled plant immunity 2015年美国植物病理学会年度会议 2015-08-01(4)Transcriptional mechanism of jasmonate-signaled delay of flowering time in Arabidopsis 第二届国际油菜素甾醇会议 翟庆哲 2015-05-19(5)Phosphorylation-coupled proteolysis of the transcription factor MYC2 is important for jasmonate-signaled plant immunity 第八届蛋白组学国际会议 翟庆哲 2014-11-18(6)Genetic dissection of systemin/jasmonate-mediated systemic defense signaling in tomato 第十一届国际茄科生物学大会 闫留华 2014-11-02(7)Jasmonate-auxin interplays in regulating root stem cell niche maintenance of higher plants 全国植物生物学大会 周文焜 2014-09-11(8)Closely-related NAC transcription factors of tomato differentially regulate stomatal closure and re-opening during pathogen attack 中国植物生理与植物分子生物学学会第十一次会员代表大会暨全国学术年会 杜敏敏 2014-08-05
指导学生
已指导学生刘芳 01 19180 郑文光 01 19180 梁文星 01 19180 齐静 01 19180 李红美 01 19180 许莹修 01 19180 赵久海 01 19180 张小莉 01 19180 李淑钰 01 19180 陈谦 01 19180 张洁 01 19180 翟庆哲 01 19180 陈蓉 01 19180 闫留华 01 19180 周文焜 01 19180 祁林林 01 19180 王航 01 19180 李林 01 19180 刘世双 02 63228 张默靖 02 19181 现指导学生李延安 01 19181 黄倬 01 19180 安春鹏 01 19180 张潇月 01 19181 由艳荣 01 19181 朱强 02 19180 周科 01 19180 孙传龙 01 19180 张潇斐 01 19181 翟华伟 01 19181
实验室网页链接
http://sourcedb.genetics.cas.cn/zw/zjrck/200907/t20090721_2130986.html
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