Mating history shapes Wolbachia ‐induced cytoplasmic incompatibility and female fitness in an insect pest

BACKGROUND: Maternally transmitted endosymbionts like Wolbachia and Cardinium are common in arthropods including many pest species. By inducing cytoplasmic incompatibility (CI), they can support sustainable pest management via population-suppression or replacement strategies. However, models underlying these approaches often neglect female remating and the pre- and post-copulatory mechanisms that influence sperm use and compatibility. In many species, females mate multiple times and may encounter both compatible and incompatible males, potentially altering CI expression and endosymbiont spread. We therefore tested how remating and mating order affect CI and reproductive fitness in Kelly's citrus thrips, Pezothrips kellyanus, a haplodiploid citrus pest naturally carrying either Cardinium alone (C) or both Cardinium and Wolbachia (CW). RESULTS: We found that CI depended strongly on mating history. When a C female first mated with an incompatible CW male, CI was strong, and a second mating with a compatible C male only restored approximately 21% of female offspring production. Conversely, when a C female first mated with a compatible C male and then with an incompatible CW male, CI was substantially weaker, consistent with first-male sperm precedence. Female fitness also varied with mating history; C females mated twice with CW males had the lowest fecundity, highest embryonic and post-embryonic mortality, and shortest survival. CONCLUSION: First-male sperm precedence limits restoration of female offspring production by a compatible mating following an incompatible mating. This may increase the fitness costs of accepting incompatible males in hosts with pre-copulatory mate discrimination. More broadly, remating and mate sequence can alter CI strength, affecting models of endosymbiont spread and endosymbiont-based pest management. © 2026 The Author(s). Pest Management Science published by John Wiley & Sons Ltd on behalf of Society of Chemical Industry.

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Publication Details

Journal
Pest Management Science
Published
2026-09-01
DOI
https://doi.org/10.1002/ps.71265
Primary Topic
Insect symbiosis and bacterial influences
Type
article
Field-Weighted Citation Impact
0.00

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article

Mating history shapes Wolbachia ‐induced cytoplasmic incompatibility and female fitness in an insect pest

Alihan Katlav, Geraldine Tilden, James M. Cook, Markus Riegler et al.
Pest Management Science
Insect symbiosis and bacterial influences
article

Mating history shapes Wolbachia ‐induced cytoplasmic incompatibility and female fitness in an insect pest

Alihan Katlav, Geraldine Tilden, James M. Cook, Markus Riegler, Amir H. Tourani
article en

Abstract

BACKGROUND: Maternally transmitted endosymbionts like Wolbachia and Cardinium are common in arthropods including many pest species. By inducing cytoplasmic incompatibility (CI), they can support sustainable pest management via population-suppression or replacement strategies. However, models underlying these approaches often neglect female remating and the pre- and post-copulatory mechanisms that influence sperm use and compatibility. In many species, females mate multiple times and may encounter both compatible and incompatible males, potentially altering CI expression and endosymbiont spread. We therefore tested how remating and mating order affect CI and reproductive fitness in Kelly's citrus thrips, Pezothrips kellyanus, a haplodiploid citrus pest naturally carrying either Cardinium alone (C) or both Cardinium and Wolbachia (CW). RESULTS: We found that CI depended strongly on mating history. When a C female first mated with an incompatible CW male, CI was strong, and a second mating with a compatible C male only restored approximately 21% of female offspring production. Conversely, when a C female first mated with a compatible C male and then with an incompatible CW male, CI was substantially weaker, consistent with first-male sperm precedence. Female fitness also varied with mating history; C females mated twice with CW males had the lowest fecundity, highest embryonic and post-embryonic mortality, and shortest survival. CONCLUSION: First-male sperm precedence limits restoration of female offspring production by a compatible mating following an incompatible mating. This may increase the fitness costs of accepting incompatible males in hosts with pre-copulatory mate discrimination. More broadly, remating and mate sequence can alter CI strength, affecting models of endosymbiont spread and endosymbiont-based pest management. © 2026 The Author(s). Pest Management Science published by John Wiley & Sons Ltd on behalf of Society of Chemical Industry.

Pest Management Science
Western Sydney University (AU)
Australian Government
Gender equality
Openalex Percentile: Top 11%
Insect symbiosis and bacterial influences
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