Evidence for the Involvement of the Chemosensory Protein AgosCSP5 in Resistance to Insecticides in the Cotton Aphid, Aphis gossypii
It has been speculated that insect chemosensory proteins (CSPs) may have additional roles beyond olfaction. In this study, the phylogenetic and genomic analyses of the CSPs of the cotton aphid, Aphis gossypii, revealed the presence of gene gain-and-loss among different aphid field populations. Differential expressions of eight CSP genes were demonstrated after treatments with insecticides of different modes of action. The expression of AgosCSP5 was significantly upregulated by the insecticide treatments in a dose-dependent manner. The Drosophila flies overexpressing AgosCSP5 were significantly less susceptible to the insecticides, omethoate, imidacloprid and cypermethrin but not to deltamethrin and tau-fluvalinate, compared with control flies. The transgenic Drosophila flies exhibited an LC50 resistance ratio of 2.6 to omethoate, compared with control flies. Likewise, the mortality of the transgenic flies to imidacloprid and cypermethrin was significantly lower than that of the control flies (p < 0.01). Homology modelling, molecular docking and dynamic simulation supported the interactions and revealed a higher stability of AgosCSP5/insecticide complexes than AgosCSP5/semiochemical complexes. Our study demonstrates for first time the in vivo evidence for the involvement of CSP genes in insecticide resistance of crop insect pests and provides new insights of the newly discovered CSP-mediated insect resistance mechanism to insecticides.
| Item Type | Article |
|---|---|
| Open Access | Gold |
| Additional information | (This article belongs to the Section Insect Physiology, Reproduction and Development) Funding: This work was funded by The National Natural Science Foundation of China (Program No. 31901894), Hainan Provincial Natural Science Foundation of China (Program No. 320RC489), Program of Introducing Talents to Chinese Universities (111 Program No. D20023) and the Global Challenge Research Fund (GCRF-IAA) of the Biotechnology Research Council of the UK (BBSRC) to J.-J.Z. |
| Keywords | Chemosensory protein, Pesticide resistance, Insect pest management |
| Date Deposited | 05 Dec 2025 10:29 |
| Last Modified | 19 Dec 2025 14:54 |


