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昆虫学系

澳门新浦新京5197(中国)有限公司

彭跃进

作者: 发表时间:2023-10-16 访问次数:

  

  姓名:彭跃进

  职称 讲师

  专业:微生物学

  邮箱2021053@ynau.edu.cn


n 教育及工作经历

u 2016-09 2021-06, 浙江大学, 微生物学, 博士

u 2015-09 2016-06, 西南大学, 微生物学, 其他

u 2011-09 2015-06, 曲靖师范学院, 生物技术, 学士

n 研究方向

u 昆虫病原真菌的致病机制及害虫生物防治

n 奖励与荣誉

u 云南省兴滇池英才支持计划——青年人才(培养期2022-2027年)

u 澳门新浦新京51972022年优秀辅导员

n 研究项目

u 云南省科技厅, 基础研究专项-面上项目, 云南省白僵菌属毒力因子CFEM7的铁适应性进化机制的研究, 202201AT070976, 2023-01-01 2025-12-31, 10万元, 在研, 主持

u 云南省教育厅, 科学研究基金项目-基础研究类, 昆虫病原真菌莱氏绿僵菌的高效遗传转化体系的建立, 2023Y0902, 2023-03-012025-02-28, 2万元, 在研, 主持

n 代表性论文

u Peng YJ, Wang JJ, Lin HY, Ding JL, Feng MG, Ying SH*. HapX, an indispensable bZIP transcription factor for iron acquisition, regulates infection initiation by orchestrating conidial oleic acid homeostasis and cytomembrane functionality in mycopathogen Beauveria bassiana. mSystems, 2020, 5: e00695-20.

u Peng YJ, Ding JL, Feng MG, Ying SH. Glc8, a regulator of protein phosphatase type 1, mediates oxidation tolerance, asexual development and virulence in Beauveria bassiana, a filamentous entomopathogenic fungus. Current Genet. 2018 Aug 16.

u Peng YJ, Ding JL, Lin HY, Feng MG, Ying SH. A virulence-related lectin traffics into eisosome and contributes to functionality of cytomembrane and cell-wall in the insect-pathogenic fungus Beauveria bassiana, Fungal Biology.

u Peng YJ, Hou J, Zhang H, Lei JH, Lin HY, Ding JL, Feng MG, Ying SH. Systematic contributions of CFEM domain-containing proteins to iron acquisition are essential for interspecies interaction of the filamentous pathogenic fungus Beauveria bassiana. Environ Microbiol. 2022.

u Peng YJ, Zhang H, Feng MG, Ying SH. SterylAcetyl Hydrolase 1 (BbSay1) Links Lipid Homeostasis to Conidiogenesis and Virulence in the Entomopathogenic Fungus Beauveria bassiana. J Fungi . 2022 Mar 11;8(3):292.

u Peng YJ, Wen SH, Wang G, Zhang X, Di T, Du GZ, Chen B, Zhang LM. Reconstruction of gut bacteria in Spodoptera frugiperda infected by Beauveria bassiana affects the survival of host pest. J. Fungi 2023, 9, 906.

u Xue R, Du G, Chen C, Chen B, Peng YJ*. "Oleic acid improves the conidial production and quality of Metarhizium rileyi as a biocontrol agent." Biocontrol science and technology. 2023 6;1-14.

u 庞继鑫,肖关丽,杜广祖,陈斌,彭跃进*.一株罹病草地贪夜蛾成虫莱氏绿僵菌的分离鉴定及其致病力[J].中国生物防治学报, 2023, 39(02):331-339.DOI:10.16409/j.cnki.2095-039x.2022.11.029.