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王海燕 教授


 
姓      名 : 王海燕
出生年月 : 1977-07

籍      贯 : 河北遵化

职      称 : 教授

毕业院校 :河北农业大学

学      位 : 博士
办公电话 : 0312-7528500
联系邮箱 : ndwanghaiyan@163.com
办公地点 :务实楼1322

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详细介绍

教育与工作简历

1996年9月~2000年6月:河北农业大学植物保护专业,大学本科

2000年9月~2003年6月:河北农业大学植物病理学,硕士研究生

2003年9月~2006年6月:河北农业大学植物病理学,博士研究生

2015年3月-2016年3月加拿大农业与农业食品部萨斯卡通研究所做访问学者

2019年7月:受中澳青年科学家交流项目资助赴澳大利亚进行短期交流。

2006年7月至今,河北农业大学植物保护学院讲师、副教授、教授

研究领域

植物与病原菌互作

社会兼职

国家自然科学基金评审专家; Crop Journal、PLOS One、分子植物育种、麦类作物学报、河北农业大学学报青年编委;植物保护学会会员;河北省“三区”科技人员;雄安新区农业创新驿站首席专家;河北省保定市顺平县科技小院首席专家。

教学工作

植物保护专业负责人,普通植物病理学教育教学团队负责人。

主讲《普通植物病理学》、《植物病害诊断》、《植物保护研究进展》等课程。获得河北农业大学教学成果二等奖2项,发表教学论文6篇,参编教材2部。指导本科生获得国家级创新创业奖励4项。

科研工作

5年,先后在国内外学术期刊发表科研论文90余篇,其中在PLOS Genetics、Frontiers in Plant Science、Crop JournalMolecular Plant Pathology 等SCI收录期刊发表论文20篇;获得省级二等奖1项,三等奖1项,保定市科技进步一等奖2项;申请国家专利4项;主持国家自然科学基金2项,河北省自然科学基金3项,河北省重点研发项目1项,教育厅项目1项;参加国家自然科学基金2项,其他国家级课题2项。培养硕士研究生15名,目前在读硕士生9名,博士生3名。2名硕士生获得河北省优秀毕业生,1名博士生获得国家奖学金,1名硕士生获得国家奖学金,5名硕士生获得河北省优秀硕士学位论文。

代表性论文:

(1) Cui Z, Wu W, Fan F, Wang F, Liu D, Di D and Wang H*. Transcriptome analysis of Lr19-virulent mutants provides clues for the AvrLr19 of Puccinia triticina. Frontiers in Microbiology. 14:1062548. 2023, doi: 10.3389/fmicb.2023.1062548

(2) Sun X, Yuan S, Shen S, Geng H, Liu J, Cui Z, Wang F, Wei G, Liu D, Wang H*. First report of rust caused by Tranzschelia discolor on peach leaves in Shenzhou, China. Plant Disease, 2022.

(3) Wang F, Shen S, Zhao C, Cui Z, Meng L, Wu W, Liu D, Wang H*. TaPR1 interacts with TaTLP1 via the αIV helix to be involved in wheat defense to Puccinia triticina through the CAPE1 motif. Frontiers in Plant Science, 2022, 13:874654. doi: 10.3389/fpls.2022.874654.

(4) Zhang Y, Geng H, Cui Z, Wang H*, Liu D. Functional analysis of wheat NAC transcription factor, TaNAC069, in regulating resistance of wheat to leaf rust fungus. Frontiers in Plant Science, 2021, 12:604797. doi: 10.3389/fpls.2021.604797.

(5) Cui Z, Liang F, Zhang J, Wang F, Liu D, Wang H*. Transgenic expression of TaTLP1, a thaumatin-like protein gene, reduces susceptibility to common root rot and leaf rust in wheat, The Crop Journal, 2021, 9: 1214-1218.

(6) Wang F, Yuan S, Wu W, Yang Y, Cui Z, Wang H*, Liu D. TaTLP1 interacts with TaPR1 to contribute to wheat defense responses to leaf rust fungus. PLOS Genetics, 2020, 16(7): e1008713. 10.1371/journal.pgen.1008713.

(7) Liang F, Du X, Zhang J, Li X, Wang F, Wang H*, Liu D. Wheat TaLr35PR2 gene is required for Lr35-mediated adult plant resistance against leaf rust fungus. Functional Plant Biology, 2020, 47(1): 26-37.

(8) Zhang J, Wang F, Liang F, Zhang Y, Ma L, Wang H*, Liu D. Functional analysis of a pathogenesis-related thaumatin-like protein gene TaLr35PR5 from wheat induced by leaf rust fungus. BMC Plant Biology, 2018, 18: 76.

(9) Ma L, Djavaheri M, Wang H, Larkan N J., Haddadi P, Beynon E, Gropp G, Borhan M. H. Leptosphaeria maculans effector protein AvrLm1 modulates plant immunity by enhancing MAP Kinase 9 phosphorylation. iScience, 2018, 3: 177–191.

(10) Zhang Y, Yan H, Wei X, Zhang J, Wang H*, Liu D. Expression analysis and functional characterization of a pathogen-induced thaumatin-like gene in wheat conferring enhanced resistance to Puccinia triticina. Journal of Plant Interactions, 2017, 12 (1): 332-339.

(11) Li X, Zhang Y, Zhang W, Wang H*, Liu D. Expression profiles of pathogenesis-related gene, TaLr35PR1, as it relate to Lr35-mediated adult plant leaf rust resistance, Plant Molecular Biology Reporter, 2016, 34: 1127–1135.

(12) Gao L, Wang S, Zhang Y, Li X, Wang H*, Liu D. Identification and characterization of a β-1, 3-glucanase gene, TcLr19Glu, involved in wheat resistance against Puccinia triticina, Journal of Plant Biochemistry and Biotechnology, 2016, 25 (3): 319-326.

(13) Haddadi P, Ma L, Wang H, Borhan M. H. Genome-wide transcriptomic analyses provide insights into the lifestyle transition and effector repertoire of Leptosphaeria maculans during the colonization of Brassica napus seedlings. Molecular Plant Pathology, 2016, 17 (8): 1196-1210.

(14) Gao L, Wang S, Li X, Wei X, Zhang Y, Wang H*, Liu D. Expression and functional analysis of a pathogenesis-related protein 1 gene, TcLr19PR1, involved in wheat resistance agasinst leaf rust fungus. Plant Molecular Biology Reporter, 2015, 33: 797–805.

(15) Li X, Gao L, Zhang W, Liu J, Zhang Y, Wang H*, Liu D. Characteristic expression of wheat PR5 gene in response to infection by the leaf rust pathogen, Puccinia triticina, Journal of Plant Interactions, 2015, 10 (1): 132-141.

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