2025/08/29 by Sylvain Benhamou, Chrystèle Jouve, Isabelle Rahioui +6 · 1 voice
Agricultural and Biological Sciences · #Insect Pest Control Strategies #Insect and Pesticide Research #Insect-Plant Interactions and Control
paper · doi:10.1016/j.indcrop.2025.121791
openalex publication_date 2025/08/29 · openalex created_date 2025/10/10 · openalex updated_date 2026/07/22
Sap-feeding hemipteran pests, such as aphids, cause significant yield losses and remain difficult to control sustainably, as conventional insecticides face increasing limitations due to resistance development and growing concern over human and environmental health. Plant essential oils (EOs) constitute a promising, eco-friendly alternative. However, their large-scale application is constrained by poor field stability and high production costs. These limitations may be mitigated through improved formulation and efficacy optimization, therefore reducing the amount of EO required for effective pest management. In this study, we investigated the repellent activity of binary and ternary blends of basil ( Ocimum basilicum L.), Chinese cinnamon ( Cinnamomum cassia (L.) J. Presl), and spearmint ( Mentha spicata L.) EOs, incorporated into a polybutylene succinate co-adipate (PBSA) biopolymer matrix, against the pea aphid Acyrthosiphon pisum Harris. Applying a conceptual framework derived from mixture toxicology, we found that both the M. spicata–O. basilicum binary blend and the ternary combination exhibited strong synergistic interactions, resulting in an 8- to 24-fold increase in repellent potency compared to individual oils. Further exploration of different M. spicata–O. basilicum ratios led to additional improvements in blend efficiency. When tested on other sap-feeding hemipteran species, this optimized blend also demonstrated interspecific repellency. Our results support the rational design of EO-based bio-repellent blends as sustainable tools for pest management.