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周传恩
文章作者:        发布时间: 2015-10-29                 浏览次数: 1325

教育背景 
         起止时间         毕业院校         专业
  博士   2002.9–2007.6   山东大学         细胞生物学
  本科   1998.9–2002.7   太阳集团娱乐网址7777     生物技术
工作经历
  2013/07至今,山东大学,tyc澳门太阳集团城网址, 教授
  2011/12–2013/06,  美国Samuel Roberts Noble基金会,研究科学家
  2007/06–2011/12,  美国Samuel Roberts Noble基金会,博士后
科研方向
  1. 豆科植物复叶发育的分子机制
  2. 豆科植物叶片昼夜节律运动的分子机制
  3. 豆科植物种子发育的分子机制
主持课题
  1.2015-2019, 国家高层次人才
  2.2015-2019,复叶发育的分子调控网络研究,“973计划”青年科学家专题 ,首席科学家
  3..2014-2018,KNOXI/ARP调控单元在豆科模式植物蒺藜苜蓿复叶发育中的功能研究,国家自然基金面上项目
  4..2014-2015,蒺藜苜蓿复叶发育分子机制研究,山东大学重大计划组织培育项目
  5.2013-2017,蒺藜苜蓿复叶发育突变体的分离与鉴定,“齐鲁青年学者”资助项目
研究成果 
  1.Chuanen Zhou, Lu Han (co-first author), Guifen Li, Maofeng Chai, Chunxiang Fu, Xiaofei Cheng, Jiangqi Wen, Yuhong Tang and Zeng-Yu Wang* (2014). STM/BP-like KNOXI Is Uncoupled from ARP in the Regulation of Compound Leaf Development in Medicago truncatula. The Plant Cell 26:1464-1479
  2.Chunxiang Fu, Timothy Hernandez, Chuanen Zhou, Zeng-Yu Wang* (2014). Alfalfa (Medicago sativa L.). Methods in molecular biology (Clifton, N.J.) 1223:213-221
  3.Chuanen Zhou, Lu Han, Chunxiang Fu, Jiangqi Wen, Xiaofei Cheng, Jin Nakashima, Junying Ma, Yuhong Tang, Yang Tan, Million Tadege, Kirankumar S. Mysore, Guangmin Xia and Zeng-Yu Wang* (2013). The trans-acting short interfering RNA3 pathway and NO APICAL MERISTEM antagonistically regulate leaf margin development and lateral organ separation, as revealed by analysis of an argonaute7/lobed leaflet1 mutant in Medicago truncatula. The Plant Cell 25: 4845-4862
  4.Dian Guan, Nicola Stacey, Chengwu Liu, Jiangqi Wen, Kirankumar S. Mysore, Ivone Torres-Jerez,Tatiana Vernié, Million Tadege, Chuanen Zhou, Zeng-yu Wang, Michael K. Udvardi, Giles E.D. Oldroyd, and Jeremy D. Murray* (2013). Rhizobial Infection Is Associated with the Development of Peripheral Vasculature in Nodules of Medicago truncatula. Plant Physiology 162:107-115
  5.Chuanen Zhou, Lu Han, Chunxiang Fu, Maofeng Chai, Wenzheng Zhang, Guifen Li, Yuhong Tang and Zeng-Yu Wang* (2012). Identification and characterization of petiolule-like pulvinus mutants with abolished nyctinastic leaf movement in the model legume Medicago truncatula. New Phytologist 196: 92-100
  6.Chuanen Zhou, Wei Dong, Lu Han, Jiajie Wei, Li Jia, Yang Tan, Daying Zhi, Zeng-Yu Wang, Guangmin Xia* (2012). Construction of whole genome radiation hybrid panels and map of chromosome 5A of wheat using asymmetric somatic hybridization. PLoS ONE 7: e40214. doi:10.1371/journal.pone.0040214
  7.Chunxiang Fu, Ramanjulu Sunkar, Chuanen Zhou, Hui Shen, Ji-Yi Zhang, Jessica Matts, Jennifer Wolf, David G. J. Mann, C. Neal Stewart Jr, Yuhong Tang, Zeng-Yu Wang* (2012). Overexpression of miR156 in switchgrass (Panicum virgatum L.) results in various morphological alterations and leads to improved biomass production. Plant Biotechnology Journal 10: 443-452
  8.Chuanen Zhou, Lu Han, Chunyan Hou, Alessandra Metelli, Liying Qi, Million Tadege, Kirankumar S. Mysore, Zeng-Yu Wang* (2011) Developmental analysis of a Medicago truncatula smooth leaf margin1 mutant reveals context-dependent effects on compound leaf development. The Plant Cell 23: 2106-2124
  9.Chuanen Zhou, Lu Han (co-first author), Catalina Pislariu, Jin Nakashima, Chunxiang Fu, Qingzhen Jiang, Li Quan, Elison B.Blancaflor , Joseph H. Bouton, Michael Udvardi, Guangmin Xia, Zeng-Yu Wang* (2011) From model to crop: functional analysis of a STAY-GREEN gene in the model legume Medicago truncatula and effective use of the gene for alfalfa (M. sativa) improvement. Plant Physiology 157:1483-1496
  10.Chuanen Zhou, Lu Han, Zeng-Yu Wang* (2011) Potential but limited redundant roles of MtPIN4, MtPIN5 and MtPIN10/SLM1 in the development of Medicago truncatula. Plant Signaling & Behavior 6:1834-1836 (Cover Story)
  11.Lu Han, Chuanen Zhou (co-first author), Junying Shi, Daying Zhi, Guangmin Xia* (2009) Ginsenoside Rb1 in asymmetric somatic hybrid calli of Daucus carota with Panax quinquefolius. Plant Cell Reports 28: 627-638
  12.Jinyao Deng, Haifeng Cui, Daying Zhi, Chuanen Zhou, Guangmin Xia* (2007) Analysis of remote asymmetric somatic hybrids between common wheat and Arabidopsis thaliana. Plant Cell Reports 26:1233-1241
  13.Chuanen Zhou, Guangmin Xia, Daying Zhi, Ying Chen* (2006) Genetic characterization of asymmetric somatic hybrids between Bupleurum scorzonerifolium Willd. and Triticum aestivum L.: potential application to the study of the wheat genome. Planta 223: 714-724
  14.Cuiling Li, Guangmin Xia*, Fengning Xiang, Chuanen Zhou, Aixia Cheng (2004) Regeneration of asymmetric somatic hybrid plants from the fusion of two types of wheat with Russian wildrye. Plant Cell Reports 23: 461-467