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Updated: Mar 13, 2026

Identification of Olfactory Volatiles using Gas Chromatography-Multi-unit Recordings GCMR in the Insect Antennal Lobe
Published on: February 24, 2013
Structural and Functional Basis of Host-Volatile Binding by Antennal Odorant-Binding Proteins in the Codling Moth
Tengda Guo1,2, Yumeng Huang1, Xueqing Yang3
1State Key Laboratory of Agricultural and Forestry Biosecurity, MARA Key Lab of Surveillance and Management for Plant Quarantine Pests, College of Plant Protection, China Agricultural University, 100193 Beijing, China.
Abstract:
The codling moth (Cydia pomonella) is a major pest of fruit crops and relies on olfaction for host location and oviposition-related behaviors. Here, we prioritized two antennal-enriched odorant-binding proteins, CpomOBP9 and CpomOBP18, and characterized their roles in host-volatile recognition. Fluorescence competitive binding assays with 27 host-associated volatiles revealed ligand-biased binding profiles, with CpomOBP9 showing the highest affinity for pentyl hexanoate and CpomOBP18 preferentially binding α-farnesene. Structure-guided residue prioritization followed by site-directed mutagenesis identified key binding-pocket determinants, with Lys91 being essential for pentyl hexanoate binding to CpomOBP9 and Ile32, Leu35, Phe49, and Leu50 contributing critically to α-farnesene binding to CpomOBP18. RNA interference further supported in vivo function, as knockdown of each OBP significantly reduced Y-tube attraction and antennal electroantennogram (EAG) responses to the corresponding volatiles. Collectively, these results define a structural and functional framework for OBP-mediated host-volatile detection in C. pomonella and provide mechanistic insights relevant to developing and optimizing semiochemical-based monitoring and control tools.
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