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                古力

                  发布时间: 2019-03-29   信息员:   

                 

                一、个人简况

                古力,男,1985年生,博士。20086月毕业于河南农业大学农学专业,获农学学士学位;20136月毕业于河南农业大学作物学专业,获农业推广专业硕士学位;20186月毕业于西藏大学生态学专业,获理学博士学位。现为宅男福利社_宅男影院_宅男的天堂_宅男在线电影_全免费观看三级作物科学学院农学系教师,兼任亚洲化感学会会员、中国资源生态学专业委员会会员。

                二、承担课程

                主要承担本科生《药用植物栽培学》、《特种经济植物栽培与利用》和《烟草生产学》等课程。

                三、研究领域和方向

                主要从事中药资源学和作物栽培学与耕作学的教学与科研工作。长期致力于特种经济植物次生代谢产物的化学生态学行为与品质形成机理研究。近年来,主持或参与国家自然科学基金项目、国家重点研发计划项目和国有大型企业有关中药资源学和烟草生产学领域科研课题10余项。分别在《International Journal of Molecular Sciences》、《Molecular Genetics and Genomics》、《Journal of Experimental Botany》和《BMC Plant Biology》等合作发表论文20余篇。

                 

                四、近期主要承担课题

                1.木质化介导的连作地黄块根膨大受阻的分子机制(81603243),主持。国家自然科学基金青年基金,20172019

                2.国家中药材产业技术体系建瓯综合试验站项目(CARS-21),参与。国家现代农业产业技术体系建设项目,20172020

                3.基于物种多样性的中药材生态农业研究与应用(2017YFC1700705),参与。国家重点研发计划课题,20182021

                4.连作地黄应答自毒物质的LRR-RLKs受体激酶鉴定与功能分析(81573538),参与。国家自然科学基金面上项目,20162019

                5.红景天甙生物合成依赖的酪氨酸代谢支路途经研究(81660628),参与。国家自然科学基金地区项目。

                6.红景天苷代谢途径关键基因家族的筛选与鉴定(YJS2016-1),主持。西藏大学农牧学院博士创新基金项目,20162018

                五、近期代表性论文

                1Li Gu, Weilie Zheng, Mingjie Li, Hong Quan, Jianming Wang, Fengji Wang, Wei Huang, Yunfang Wu, Xiaozhong Lan, Zhongyi Zhang. Integrated analysis of transcriptomic and proteomics data reveals the induction effects of rotenoid biosynthesis of Mirabilis himalaica caused by UV-B radiation [J]. International Journal of Molecular Sciences, 2018, 19(11), 3324.

                2Li Gu, Zhongyi Zhang, Hong Quan, Mingjie Li, Fangyu Zhao, Yuanjiang Xu, Jiang Liu, Man Sai, Weilie Zheng, Xiaozhong Lan. Integrated analysis of transcriptomic and metabolomic data reveals critical metabolic pathways involved in rotenoid biosynthesis in the medicinal plant Mirabilis himalaica [J]. Molecular Genetics and Genomics, 2018(293):635-647.

                3Li Gu, Lichun Xue, Qi Song, Fengji Wang, Huaqin He, Zhongyi Zhang. Classification of the fragrantstyles and evaluation of the aromatic quality of flue-cured tobacco leaves by machine-learning methods[J]. Journal of Bioinformatics and Computational Biology, 2016, 14(06):163-169.

                4Aiguo Chen#, Li Gu#, Mingjie Li, Na Xu, Fajie Feng, Guangliang Liu, Bao Zhang, Daping Gong, Junyi Zhang, Hongyan Liu, Zhongyi Zhang. Identification of Rehmannia glutinosa L. NB-ARC family proteins and their typical changes under consecutive monoculture stress[J]. Acta Physiologiae Plantarum, 2018, 40(5):95.

                5Mingjie Li, Yanhui Yang, Xinyu Li, Li Gu, Fengji Wang, Yunhe Tian, Fengqing Wang, Xiaoran Wang, Wenxiong Lin, Xinjian Chen, Zhongyi Zhang. Analysis of integrated multiple 'omics' datasets reveals the initiation and determination mechanisms of tuberous root formation in R. glutinosa[J]. Journal of Experimental Botany, 2015, 66(19).

                6Bao Zhang, Xuanzhen Li, Liuji Zhang, Li Gu, Fajie Feng, Mingjie Li, Fengji Wang, Wenxiong Lin, Zhongyi Zhang. Alleviatory effect of spent Pleurotus eryngii Quel substrate on replant problem of Rehmannia glutinosa Libosch[J]. International Journal of Phytoremediation, 2018, 20(1):61-67.

                7Mingjie Li, Yanhui Yang, Fajie Feng, Xinyu Li, Li Gu, Yunhe Tian, Jianming Wang, Jiankai Wang, Zhenfang Li, Aiguo Chen, Xinjian Chen, Zhongyi Zhang. SSR Development and Utilization with Rehmannia glutinosa Transcriptome[J]. International Journal of Agriculture and Biology, 2015. 10.17957/IJAB/15.0130.

                8Mingjie Li, Yanhui Yang, Fajie Feng, Bao Zhang, Shuqiang Chen, Chuyun Yang, Li Gu, Fengqing Wang, Junyi Zhang, Aiguo Chen, Wenxiong Lin, Xinjian Chen, Zhongyi Zhang. Differential proteomic analysis of replanted Rehmannia glutinosa roots by iTRAQ reveals molecular mechanisms for formation of replant disease[J]. BMC Plant Biology, 2017, 17(1):116.

                9Zhang Bao, Li Xuanzhen, Wang Fengqing, Li Mingjie, Zhang Junyi, Gu Li, Zhang Liuji, Tu Wanqian, Zhang Zhongyi. Assaying the potential autotoxins and microbial community associated with Rehmannia glutinosa, replant problems based on its ‘autotoxic circle’[J]. Plant and Soil, 2016, 407(1-2):307-322.

                10Yunhe Tian, Fajie Feng, Bao Zhang, Mingjie Li, Fengqing Wang, Li Gu, Aiguo Chen, Zhanjie Li, Wenbo Shan, Xiaoran Wang, Xinjian Chen, Zhongyi Zhang. Transcriptome analysis reveals metabolic alteration due to consecutive monoculture and abiotic stress stimuli in Rehamannia glutinosa, Libosch[J]. Plant Cell Reports, 2017, 36(6):859-875.

                六、联系方式

                1、邮箱:guli5101@163.comguli3101@fafu.edu.cn

                2、电话:182591667580591-86397815