
吴志文,博士,助教
2014年9月-2018年6月,安徽农业大学,植物保护学院,植物保护专业,学士;
2018年9月-2020年6月,南京农业大学,植物保护学院,资源利用与植物保护专业,硕士;
2020年9月-2024年8月,南京农业大学,植物保护学院,农药学,博士。
2024年10月-至今,安徽科技学院任教。
主讲课程:
植物化学保护、植物保护学
研究方向:
除草剂毒理与杂草抗药性
代表性论文:
[1] Yang, F#., Wu, Z#., Fida, M., Cheng, R., Shi, Y., Chai, K., & Bi, Y. (2026). Assessment of Digitaria sanguinalis resistance to metamifop and screening of alternative herbicides in dry direct-seeded rice fields of eastern China. Weed Research, 66(1).
[2] Chai, K., Cheng, R., Shi, Y., Fida, M., Liu, W., Wu, Z., & Bi, Y. (2025). Seed germination ecology and herbicide sensitivity of Aeschynomene indica L.: implications for integrated management in paddy fields. Agronomy, 15(12).
[3] Shi, Y#., Wu, Z#., Cheng, R., Zhang, L., Guo, X., Li, X., & Bi, Y. (2025). The Trp-574-Leu mutations together with enhanced metabolism contribute to cross-resistance to ALS inhibiting herbicides in Fimbristylis littoralis. Pesticide Biochemistry and Physiology, 210, 106385.
[4] Peng, Z., Yuan, Z., Jin, Y., Chen, F., Wu, Z., & Hou, Y. (2026). Multidrug Resistance in Fusarium incarnatum from Maize Stalk Rot: Molecular Mechanisms and Fitness Characterization. Journal of agricultural and food chemistry, 74(10), 8333–8342.
[5] Peng, Z., Yuan, Z., Jin, Y., Chen, F., Wu, Z., & Hou, Y. (2025). A new point mutation (E198T) in β2-tubulin confers resistance to carbendazim in Fusarium incarnatum. Pesticide biochemistry and physiology, 213, 106533.
[6] Wu, Z., Chen, F., Zhang, L., Zhou, M., & Hou, Y. (2024). Cytochrome c oxidase influences pyraclostrobin sensitivity in Fusarium graminearum by regulating FgAox through transcription factors FgAod2 and FgAod5. Journal of Agricultural and Food Chemistry, 72(33), 18412–18422.
[7] Wu, Z., Cai, X. W., Mao, X., Zhou, M., & Hou, Y. (2024). Sensitivity and resistance risk analysis of Didymella bryoniae populations to fluopyram. Journal of Integrative Agriculture, 23(7), 2306–2317.
[8] Wu, Z., Mao, X., Wu, L., Cai, X. W., Bi, C., Zhou, M., & Hou, Y. (2023). Molecular and biological characterization of lab-induced benzovindiflupyr-resistant mutants of Didymella bryoniae. Crop Protection, 169, 106269.
[9] Wu, L#., Wu, Z#., Zhao, F., Hahn, M., Zhou, M., & Hou, Y. (2022). Activity and cell toxicology of fluazinam on Fusarium graminearum. Pesticide Biochemistry and Physiology, 188, 105253.
[10] Mao, X#., Wu, Z#., Zhao, F., Yang, X., Zhou, M., & Hou, Y. (2024). Bioactivity and resistance risk of fluxapyroxad, a novel SDHI fungicide, in Didymella bryoniae. Plant Disease, 108(3), 658–665.
[11] Mao, X., Wu, Z., Bi, C., Wang, J., Zhao, F., Gao, J., Zhou, M., & Hou, Y. (2020). Molecular and biochemical characterization of pydiflumetofen resistant mutants of Didymella bryoniae. Journal of Agricultural and Food Chemistry, 68, 9120–9130.
[12] Mao, X., Wu, Z., Chen, F., Zhou, M., & Hou, Y. (2022). FfCOX17 is involved in fumonisins production, growth, asexual reproduction, and fungicide sensitivity in Fusarium fujikuroi. Toxins, 14(7).
电子信箱:zhiwenwu1994@163.com