Review paper

Pheromones and semiochemicals with potential use in management of citrus pests

Levi-Zada, Anat

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Entomologia Generalis Volume 43 Number 4 (2023), p. 733 - 749

published: Oct 10, 2023
published online: May 3, 2023
manuscript accepted: Mar 23, 2023
final revised version received: Mar 2, 2023
manuscript revision requested: Jan 24, 2023
manuscript received: Dec 19, 2022

DOI: 10.1127/entomologia/2023/1946

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Abstract

The Citrus genus includes eight flowering shrub and tree species with numerous varieties that bear fruits (oranges, limes, lemons, mandarins, kumquats, grapefruits, among others). Due to a long history of extensive citrus cultivation around the world, insect pest species have emerged, including moths (Lepidoptera), sucking bugs (Hemiptera), beetles (Coleoptera), and flies (Diptera). About 50 important species in these four orders are known to use pheromones and other semiochemicals. These volatiles have potential for use in management strategies, such as early detection, monitoring local population levels, mass trapping, lure-and-kill, mating disruption, and push-pull. Successful management of major citrus pest moths (Phyllocnistis citrella, Thaumatotibia leucotreta, Epiphyas postvittana), scales/mealybugs (Aonidiella aurantii, Planococcus citri), and fruit flies (Ceratitis capitate, Anastrepha ludens and several Bactrocera spp.) is currently achieved using plant- and insect-derived semiochemicals. Other aspects of the chemical ecology of citrus pest insects and their management are discussed, such as a trap-lure’s effective attraction radius, sequential SPME-GCMS analysis for semiochemical identification, volatile complexity of fruit flies, and unique-structured mealybug sex pheromones. While pheromones have proven to be useful in detection and monitoring of many citrus pests, progress on other management methods (mating disruption, mass-trapping, lure-and-kill, and push-pull) has been challenging due to the complexity of variables required for success. These variables are species-specific and include semiochemical syntheses, stability, blend efficacy, dosages, and field distributions as well as implementation with dispensers and traps that balance costs and efficiency.

Keywords

Attractant • repellent • orchard • monitoring • pest control