WEI ZHANG
张 维
CURRICULUM VITAE
个人简历
联系方式
电话:15523270198
教育经历
2014.10-2016.09 美国佛罗里达大学 博士(联合培养)
2013.09-2016.12 重庆大学,博士(联合培养)
2010.09-2013.07 重庆大学,研究生
2006.09-2010.07 海南大学,本科
工作经历
2021.01-至今贵州大学 特聘教授、副教授
2017.09-2020.12重庆大学讲师
2017.01-2017.09美国佛罗里达大学 博士后
学术兼职
2025年11月——至今 中国农学会农业产业分会第一届委员会 委员
2023年8月——至今 中国农业生物技术学会微生物生物技术分会 理事
2026年5月——至今 Exploration 青年编委
2025年8月——至今 农业工程学报 青年编委
2023年8月——至今 Integrative Zoology 青年编委
2023年8月——至今 菌物学报 编委
2021年1月——至今 Frontiers in Physiology 评审编辑
2020年7月——至今 Frontiers in Microbiology 评审编辑
个人简介
长期从事世界性重大农业害虫的灾变机理、绿色防控与高效综合治理研究。基础研究方面,聚焦重要农业害虫,系统开展微生物或植物源农药与害虫的互作机制解析;立足微生物-植物-昆虫生态互作理论,深入探索病虫害综合治理的理论基础。应用研究方面,针对蔬菜与粮食作物害虫,致力于高效生物源农药及其缓控释制剂的研发,以及害虫综合治理。以第一作者或通讯作者身份发表SCI论文三十余篇,先后主持国家自然科学基金项目3项、牵头“贵州辣椒绿色可持续生成关键技术攻关”等省部级各类项目7项。所指导的多名学生荣获国家奖学金,并有多人留校或前往985大学继续攻读博士学位。
教学工作
主讲本科生普通生物学、蛋白质组学、农药毒理学、植物生物防治课程;研究生昆虫化学生态学、植物营养诊断技术、农药药理学等课程。
研究方向
1. 农业害虫灾变机理研究;
2. 农业害虫与生防(微生物、植物)因子的互作(行为/免疫)机制研究;
3. 基于现代生物技术的害虫高效综合治理。
科研项目
贵州省科技创新平台项目,黔科合平台CXPTXM(2025)026,贵州辣椒绿色可持续生产关键技术攻关,2026/01-2029/12,1000万元,主持。
国家自然科学基金面上基金,32472644,基于杀虫真菌的活细胞农药递送系统及其作用机制研究,2025/01-2028/12,50万元,主持。
国家自然科学基金地区基金,32160666,绿僵菌激活飞蝗嗅觉蛋白抑制寄主天然免疫的机制研究,2022/01-2025/12,35万元,主持。
贵州省科技支撑项目,黔科合支撑〔2022〕一般239,昆虫病原真菌防控草地贪夜蛾的关键技术与应用示范,2022/04-2025/03,100万元,主持。
国家自然科学基金青年基金,32001961,红火蚁肢解白僵菌感染致死尸体的巢清洁行为诱导机制,2021/01-2023/12,24万,主持。
重庆市基础研究与前沿探索专项(自然科学基金),昆虫病原真菌释放挥发性物质调节寄主天然免疫的机制研究,2019/12-2020/12,10万元,主持。
中国博士后科学基金第12批特别资助(站中),2019T120812,绿僵菌通过飞蝗嗅觉蛋白解除寄主早期防卫的分子机制,2019/1-2020/12,15万,主持。
重庆市博士后科研项目特别资助,XmT2018064,尸体肢解行为在红火蚁社会免疫中的作用及其调控机制研究,2019/1-2020/12,5万元,主持。
中国博士后科学基金第62批面上资助,2017M622974,气味结合蛋白在调节昆虫清洁行为中的作用和机制研究,2018/1-2019/12,5万元,主持。
代表性论著
Zhang, W., Mohamed, A., Eleftherianos, I., Chen, Z., Wen, T. C., Sandaruwan, K., ... & Smagghe, G. (2026). Environmental microbes as modulators of plant volatile landscapes: Implications for plant–insect chemical communication. Trends in Microbiology.
[2] Zhang, W., Sarabandi, M., & Kumar, V. (2026). Formicitoxins: membrane-targeting antifungal peptides from carpenter ant venoms. Trends in Molecular Medicine.
[3] Zhang, W., Eleftherianos, I., Mohamed, A., Smagghe, G., Chakkalakkal, G. J., Al-Akeel, R., ... & Renault, D. (2026). Evolution, multifunctionality, and agricultural potential of insect microbiomes and the holobiont concept. The ISME Journal, 20(1), wrag137.
[4] Zhang, W., Chen, X., Eleftherianos, I., Mohamed, A., Bastin, A., & Keyhani, N. O. (2024). Crosstalk between immunity and behavior: insights from entomopathogenic fungi and their insect hosts. FEMS Microbiology Reviews, fuae003.
[5] Zhang, W.*, Xie, M., Eleftherianos, I., Mohamed, A., Cao, Y., Song, B., Zang, L., Jia, C., Bian, J., Keyhani NO & Xia, Y. (2023). An odorant binding protein is involved in counteracting detection-avoidance and Toll-pathway innate immunity. Journal of Advanced Research, 48, 1-16.
[6] Jia, C., Mohamed, A., Al-Akeel, R., Tian, W., Li, X., Lou, Y., ... & Zhang, W. (2026). Metarhizium anisopliae infection-associated metabolites act upon LmOBP2 to suppress locust feeding. Pesticide Biochemistry and Physiology, 107288.
[7] Zhang, W., Toprak, U., Mohamed, A., Chakkalakkal, G. J., Eleftherianos, I., & Smagghe, G. (2026). RNAi-based biopesticides: from gene silencing to biosafety. Entomologia Generalis.
[8]Huang, X, Mohamed, A, Dou, N, ... Zhang W.*. Octenol acts as a fumigant for Solenopsis invicta, disrupting cuticular fatty acid synthesis and behavioral pathways Octenol acts as a fumigant for Solenopsis invicta, disrupting cuticular fatty acid synthesis and behavioral pathways[J]. Entomologia Generalis, 2025, 45(6).
[9] Zhang, W., Stelinski, L. L., Mohamed, A., Wang, G., Tettamanti, G., Chen, M., ... & Zhao, Q. (2024). Unlocking agro‐ecosystem sustainability: exploring the bottom‐up effects of microbes, plants, and insect herbivores. Integrative Zoology.
[10] Ma, M., Luo, J., Li, C., Eleftherianos, I., Zhang, W.*, & Xu, L. (2024). A life-and-death struggle: interaction of insects with entomopathogenic fungi across various infection stages. Frontiers in Immunology, 14, 1329843.
[11] Gu, M., Tian, J., Lou, Y., Ran, J., Mohamed, A., Keyhani N., Jaronski S., Wang G., Chen X., Zang, L., Zhang, W.* (2023) Efficacy of Metarhizium rileyi granules for the control of Spodoptera frugiperda and its synergistic effects with chemical pesticide, sex pheromone and parasitoid. Entomologia Generalis, 1211-1219.
[12] Zhang, W.*, Jia, C., Zang, L. S., Gu, M., Zhang, R., Eleftherianos, I., & Mohamed, A. A. (2023). Entomopathogenic fungal-derived metabolites alter innate immunity and gut microbiota in the migratory locust. Journal of Pest Science, 1-20.
[13] Zhang, W., Smagghe, G., Mohamed, A., Al-Akeel, R. K., Alkhaibari, A. M., Alharbi, H. M., ... & Keyhani, N. O. (2026). Secondary metabolites as multifunctional molecular weapons: New mechanistic insights into how entomopathogenic fungi suppress insect immunity. Journal of Invertebrate Pathology, 108626.
[14] Jiang, Z, Mohamed, A, Kandegama, WMWW, Zhang W.* Phytochemistry as a Multidimensional Interface in Insect-Plant Interactions. Integr Zool. 2025.
[15] Wang, G., Ran, J., Jia, C. ... Zhang W.* Developmental transcriptomics reveals stage-specific immune gene expression profiles in Spodoptera frugiperda. Sci Rep, 2025, 15, 25044.
[16] Zhang W.*, Chen, X., Tian, J., Schal, C., Mohamed, A., Zang, L.S., Xia, Y., Keyhani, N.O. An odorant-binding protein functions in fire ant social immunity interfacing with innate immunity. Open Biol. 2025 Feb;15(2):240254.
[17] Chen, X., Wang, G., Zang, L. S., Ali, A., Krishnan, N., Paredes-Montero, J. R., Zhang, W.*, ... & Mohamed, A. (2024). Transcriptomic insights on impaired survival and enhanced pesticide susceptibility following knockdown of Syntaxin5 in Locusta migratoria. Pesticide Biochemistry and Physiology, 106227.
[18] Lou, Y., Wang, G., Zhang, W.*, & Xu, L. (2024). Adaptation strategies of insects to their environment by collecting and utilizing external microorganisms. Integrative Zoology.
[19] Jia, C., Mohamed, A., Cattaneo, A. M., Huang, X., Keyhani, N. O., Gu, M., ... & Zhang, W.* (2023). Odorant-Binding Proteins and Chemosensory Proteins in Spodoptera frugiperda: From Genome-Wide Identification and Developmental Stage-Related Expression Analysis to the Perception of Host Plant Odors, Sex Pheromones, and Insecticides. International Journal of Molecular Sciences, 24(6), 5595.
[20] Zhang, R., Zhao, Q., Keyhani, N. O., Lei, X. F., Liu, C. H., Al Dhafer, H. M., ... Zhang, W.*& Mohamed, A. (2024). Biocontrol performance and mass production potential of the larval endoparasitoid Campoletis chlorideae Uchida (Hymenoptera: Ichneumonidae) against the fall armyworm, Spodoptera frugiperda (JE Smith) (Lepidoptera: Noctuidae). Egyptian Journal of Biological Pest Control, 34(1), 44.
[21] Eleftherianos, I.*, Mohamed, A. A.*, Tettamanti, G.*, & Zhang, W.* (2023). Insect behavioral adaptations and immune responses to stress. Frontiers in Physiology, 14, 1244589.
[22] Zhang, W., Tettamanti, G., Bassal, T., Heryanto, C., Eleftherianos, I., & Mohamed, A. (2021). Regulators and signalling in insect antimicrobial innate immunity: functional molecules and cellular pathways. Cellular Signalling, 83, 110003.
[23] Zhang, W., Ortiz-Urquiza, A., & Keyhani, N. O. (2021). Altered expression of chemosensory and odorant binding proteins in response to fungal infection in the red imported fire ant, Solenopsis invicta. Frontiers in Physiology, 12, 212.
[24] Zhang, W.*, Keyhani, N. O., Zhang, H., Cai, K., & Xia, Y. (2020). Inhibitor of apoptosis1 gene as a potential target for pest control and its involvement in immune regulation during fungal infection. Pest Management Science, 76(5), 1831-1840.
[25] Zhang, W., Zheng, X., Chen, J., Keyhani, N. O., Cai, K., & Xia, Y. (2020). Spatial and temporal transcriptomic analyses reveal locust initiation of immune responses to Metarhizium acridum at the pre-penetration stage. Developmental & Comparative Immunology, 104, 103524.
[26] Eleftherianos, I.#, Zhang, W.#, Mohamed, A., Al‐Akeel, R. K., Alkhaibari, A. M., Keyhani, N., & Smagghe, G. (2026). Microbiome‐mediated chemical communication in insects: Implications for pest management. Pest Management Science.
[27] Wanchoo, A. #, Zhang, W. #, Ortiz-Urquiza, A., Boswell, J., Xia, Y., & Keyhani, N. O. (2020). Red imported fire ant (Solenopsis invicta) chemosensory proteins are expressed in tissue, developmental, and caste-specific patterns. Frontiers in Physiology, 1308.
[28] 张维, 彭国雄, 夏玉先. 昆虫病原真菌防控草地贪夜蛾的现状, 问题与展望[J]. 中国生物防治学报, 2019, 35(5): 674.
发明专利
张维,顾买群,一种莱氏绿僵菌及其颗粒剂和在防治草地贪夜蛾中的应用,授权日期:2025.09;
张维、黄小华,1-辛烯-3-醇在防治红火蚁中的应用,授权日期:2025.11;
张维,王光敏,一种基于气味结合蛋白 LmOBP2 的飞蝗取食抑制剂及其应用,申请日期:2026.07;
Wei Zhang, 3-OL IN PREVENTING ANDCONTROLLING SOLENOPSIS INVICTABURENS, PCT, 2026.03
奖励/荣誉情况
2023年,贵州省科技创新人才团队,贵州省科学技术厅;
2020年,重庆英才创新创业团队,杀虫真菌资源挖掘及应用研究创新团队,6/8。
2023年,筑创荟大学生创新创业大赛暨华为开发者&鲲鹏应用创新贵州区域赛,“绿将军——创新绿色综合防控体系”银奖,1/4;
2023年,挑战杯全国大学生课外学术科技作品竞赛,“绿将军”省赛三等奖,1/3;
2021年,第七届中国国际“互联网+”大学生创新创业大赛铜奖,智慧飞鹰——西南山地植保无人机领航者,8/10;
2021年,贵州省第七届中国国际“互联网+”大学生创新创业大赛金奖,智慧飞鹰——西南山地植保无人机领航者,8/10;