4.7 Article

Chemosensory Proteins Are Associated with Thiamethoxam and Spirotetramat Tolerance in Aphis gossypii Glover

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出版社

MDPI
DOI: 10.3390/ijms23042356

关键词

chemosensory protein; thiamethoxam; spirotetramat; Aphis gossypii; insecticide resistance

资金

  1. National Natural Science Foundation of China [31772188, 32072457]
  2. Talent Foundation of Jilin University [419080520317]

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In-depth research on chemosensory proteins (CSPs) revealed that CSPs play a crucial role in cotton aphids' resistance to pesticides. Functional verification of CSP1 and CSP4 in vivo and in vitro demonstrated that silencing CSPs through RNA interference significantly increased the sensitivity of resistant strains to corresponding pesticides. Transgenic Drosophila expressing CSPs exhibited varying tolerance mechanisms for different pesticides, indicating a potential role of overexpressed CSPs beyond pesticide resistance.
Chemosensory proteins (CSPs) are a class of transporters in arthropods. Deeper research on CSPs showed that CSPs may be involved in some physiological processes beyond chemoreception, such as insect resistance to pesticides. We identified two upregulated CSPs in two resistant strains of Aphis gossypii Glover. To understand their role in the resistance of aphids to pesticides, we performed the functional verification of CSP1 and CSP4 in vivo and in vitro. Results showed that the sensitivity of the thiamethoxam-resistant strain to thiamethoxam increased significantly with the silencing of CSP1 and CSP4 by RNAi (RNA interference), and the sensitivity of the spirotetramat-resistant strain to spirotetramat increased significantly with the silencing of CSP4. Transgenic Drosophila melanogaster expressing CSPs exhibited stronger resistance to thiamethoxam, spirotetramat, and alpha-cypermethrin than the control did. In the bioassay of transgenic Drosophila, CSPs showed different tolerance mechanisms for different pesticides, and the overexpressed CSPs may play a role in processes other than resistance to pesticides. In brief, the present results prove that CSPs are related to the resistance of cotton aphids to insecticides.

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