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成果及论文

[1] 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.

 

[2] Zhang, W.*, Xie, M., Eleftherianos, I., Mohamed, A., Cao, Y., Song, B., Zang, L., Jia, C., Bian, J., & 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.

 

[3] 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.

 

[4] 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.

 

[5] 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.

 

[6] 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.

 

[7] Ma, M., Luo, J., Li, C., Zhang, W.*, & Xu, L*. A life-and-death struggle: interaction of insects with entomopathogenic fungi across various infection stages. (2023). Frontiers in Immunology, 14, 1329843.

 

[8] Eleftherianos, I.*, Mohamed, A. A.*, Tettamanti, G.*, & Zhang, W.* (2023). Insect behavioral adaptations and immune responses to stress. Frontiers in Physiology, 14, 1244589.

 

[9] 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.

 

[10] 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.

 

[11] 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.

 

[12] Zhang, W., Chen, J., Keyhani, N. O., Jin, K., Wei, Q., & Xia, Y. (2017). Central nervous system responses of the Oriental migratory, Locusta migratoria manilensis, to fungal infection. Scientific Reports, 7(1), 1-14.

 

[13]  Zhang, W., Wanchoo, A., Ortiz-Urquiza, A., Xia, Y., & Keyhani, N. O. (2016). Tissue, developmental, and caste-specific expression of odorant binding proteins in a eusocial insect, the red imported fire ant, Solenopsis invicta. Scientific Reports, 6(1), 1-16.

 

[14] Zhang, W., Chen, J., Keyhani, N. O., Zhang, Z., Li, S., & Xia, Y. (2015). Comparative transcriptomic analysis of immune responses of the migratory locust, Locusta migratoria, to challenge by the fungal insect pathogen, Metarhizium acridum. BMC Genomics, 16(1), 1-21.

 

[15] Zhang, W., & Xia, Y. (2014). ER type I signal peptidase subunit (LmSPC 1) is essential for the survival of Locusta migratoria manilensis and affects moulting, feeding, reproduction and embryonic development. Insect Molecular Biology, 23(3), 269-285.

 

[16] 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.

 

[17] Eleftherianos, I., Zhang, W., Heryanto, C., Mohamed, A., Contreras, G., Tettamanti, G., Wink, M., & Bassal, T. (2021). Diversity of insect antimicrobial peptides and proteins-A functional perspective: A review. International Journal of Biological Macromolecules, 191, 277-287.


[18] Eleftherianos, I., Heryanto, C., Bassal, T., Zhang, W., Tettamanti, G., & Mohamed, A. (2021). Haemocytemediated immunity in insects: Cells, processes and associated components in the fight against pathogens and parasites. Immunology, 164(3), 401-432.

 

[19] Xie, J., Li, S., Zhang, W., & Xia, Y. (2019). RNAiknockdown of the Locusta migratoria nuclear export factor protein results in insect mortality and alterations in gut microbiome. Pest Management Science, 75(5), 1383-1390.


[20] 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.