DOI: 10.1017/s0007485326101345 ISSN: 0007-4853

Knockout of odourant receptor co-receptor HvarOrco compromises reproductive fitness in the ladybird Hippodamia variegata

Xiaoxu Liu, Jiaoxin Xie, Haoyu Tang, Huaijing Liu, Adel Khashaveh, Huipeng Pan, Tinghui Liu, Yongjun Zhang

Abstract

The predatory ladybird, Hippodamia variegata , relies critically on olfaction for host location, oviposition site selection, and predator avoidance. Here, we employed CRISPR/Cas9-mediated genome editing to generate a stable, heritable odourant receptor co-receptor ( Orco ) knockout line ( HvarOrco − /− ). Electrophysiological assessment using electroantennogram (EAG) recordings revealed that homozygous mutants exhibited profound anosmia, with significantly attenuated responses to six key semiochemicals, including the aphid alarm pheromone E -β-farnesene. Consistent with these physiological deficits, Y-tube assays demonstrated a complete loss of behavioural attraction towards host-associated cues in both sexes. Crucially, we uncovered a severe fitness cost associated with Orco deficiency. Mating assays revealed a sexual dimorphism in reproductive behaviour: while mutant females mated successfully, HvarOrco −/− males exhibited a significant failure to initiate copulation. Furthermore, post-copulatory reproductive output was drastically compromised; mutant pairs showed a 68.4% reduction in fecundity (10.3 ± 0.51 vs. 32.6 ± 0.96 eggs/30d) and a 90.4% decline in egg hatchability (8% ± 2% vs. 83% ± 1%). These findings establish HvarOrco as a dual determinant of both ecological adaptation and reproductive success. Collectively, our study validates a robust CRISPR/Cas9-based functional genomics platform for this ecologically important family of natural enemies and highlights the need for further investigation into potential non-canonical roles of this conserved co-receptor in reproductive physiology.