TY - JOUR
T1 - Functional Characterization of a Female-Biased Chemoreceptor of the Codling Moth (Cydia pomonella) Responding to Aldehydes and Other Volatile Compounds
AU - Cattaneo, Alberto Maria
AU - Kwadha, Charles A.
AU - Pullmann-Lindsley, Heidi
AU - Erdei, Anna L.
AU - Pitts, R. Jason
AU - Walker III, William B.
N1 - Publisher Copyright:
© The Author(s) 2025.
PY - 2025
Y1 - 2025
N2 - With the advent of semiochemical-based control strategies used to mitigate damage of agricultural pest moths, many studies have focused on the function of male-specific putative pheromone receptors (PRs). In this investigation, we instead isolated, heterologously expressed, and functionally characterized a female-biased candidate PR, CpomOR22, from the codling moth, Cydia pomonella. Using transgenic Drosophila melanogaster for single sensillum recording (SSR) and gas-chromatographic SSR, we tested both synthetic ligands and various apple headspace extracts, identifying saturated and unsaturated aldehydes (nonanal, decanal, undecanal, dodecanal; (Z)-4-undecenal and (Z)-6-undecenal) among the most active ligands. Parallel experiments expressing CpomOR22 in Xenopus oocytes confirmed the binding of nonanal, decanal and undecanal and revealed lactones (gamma-undecalactone and delta-dodecalactone) and several carboxylic acids as additional active compounds. The renowned ecological importance of aldehydes for the codling moth and the potential for newly identified ligands, such as lactones, may inform innovative control strategies based on novel semiochemicals to interfere with the female-specific chemosensory systems of this insect.
AB - With the advent of semiochemical-based control strategies used to mitigate damage of agricultural pest moths, many studies have focused on the function of male-specific putative pheromone receptors (PRs). In this investigation, we instead isolated, heterologously expressed, and functionally characterized a female-biased candidate PR, CpomOR22, from the codling moth, Cydia pomonella. Using transgenic Drosophila melanogaster for single sensillum recording (SSR) and gas-chromatographic SSR, we tested both synthetic ligands and various apple headspace extracts, identifying saturated and unsaturated aldehydes (nonanal, decanal, undecanal, dodecanal; (Z)-4-undecenal and (Z)-6-undecenal) among the most active ligands. Parallel experiments expressing CpomOR22 in Xenopus oocytes confirmed the binding of nonanal, decanal and undecanal and revealed lactones (gamma-undecalactone and delta-dodecalactone) and several carboxylic acids as additional active compounds. The renowned ecological importance of aldehydes for the codling moth and the potential for newly identified ligands, such as lactones, may inform innovative control strategies based on novel semiochemicals to interfere with the female-specific chemosensory systems of this insect.
KW - Cydia pomonella chemoreceptors
KW - Gas-chromatography-coupled SSR (GC-SSR)
KW - Heterologous expression
KW - Single sensillum recording (SSR)
KW - Transgenic Drosophila melanogaster
KW - Xenopus oocytes
KW - Cydia pomonella chemoreceptors
KW - Gas-chromatography-coupled SSR (GC-SSR)
KW - Heterologous expression
KW - Single sensillum recording (SSR)
KW - Transgenic Drosophila melanogaster
KW - Xenopus oocytes
UR - https://res.slu.se/id/publ/140985
U2 - 10.1007/s10886-025-01579-1
DO - 10.1007/s10886-025-01579-1
M3 - Journal article
C2 - 40000511
AN - SCOPUS:85219207743
SN - 0098-0331
VL - 51
JO - Journal of Chemical Ecology
JF - Journal of Chemical Ecology
IS - 2
M1 - 28
ER -