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. 2023 Nov;79(11):4153-4161.
doi: 10.1002/ps.7611. Epub 2023 Jul 1.

Tethered-flight performance of thermally-acclimated pest fruit flies (Diptera: Tephritidae) suggests that heat waves may promote the spread of Bactrocera species

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Tethered-flight performance of thermally-acclimated pest fruit flies (Diptera: Tephritidae) suggests that heat waves may promote the spread of Bactrocera species

Kevin Malod et al. Pest Manag Sci. 2023 Nov.

Abstract

Background: Thermal history may induce phenotypic plasticity in traits that affect performance and fitness. One type of plastic response triggered by thermal history is acclimation. Because flight is linked to movement in the landscape, trapping and detection rates, and underpins the success of pest management tactics, it is particularly important to understand how thermal history may affect pest insect flight performance. We investigated the tethered-flight performance of Ceratitis capitata, Bactrocera dorsalis and Bactrocera zonata (Diptera: Tephritidae), acclimated for 48 h at 20, 25 or 30 °C and tested at 25 °C. We recorded the total distance, average speed, number of flight events and time spent flying during 2-h tests. We also characterized morphometric traits (body mass, wing shape and wing loading) that can affect flight performance.

Results: The main factor affecting most flight traits was body mass. The heaviest species, B. dorsalis, flew further, was faster and stopped less often in comparison with the two other species. Bactrocera species exhibited faster and longer flight when compared with C. capitata, which may be associated with the shape of their wings. Moreover, thermal acclimation had sex- and species-specific effects on flight performance. Flies acclimated at 20 °C stopped more often, spent less time flying and, ultimately, covered shorter distances.

Conclusion: Flight performance of B. dorsalis is greater than that of B. zonata and C. capitata. The effects of thermal acclimation are species-specific. Warmer acclimation temperatures may allow pest fruit flies to disperse further and faster. © 2023 The Authors. Pest Management Science published by John Wiley & Sons Ltd on behalf of Society of Chemical Industry.

Keywords: Tephritidae; flight performance; phenotypic plasticity; thermal history.

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References

REFERENCES

    1. Kellermann V, van Heerwaarden B and Sgrò CM, How important is thermal history? Evidence for lasting effects of developmental temperature on upper thermal limits in Drosophila melanogaster. Proceedings of the Royal Society B: Biological Sciences 284:20170447 (2017).
    1. Sgrò CM, Terblanche JS and Hoffmann AA, What can plasticity contribute to insect responses to climate change? Annu Rev Entomol 61:433-451 (2016).
    1. Chailleux A, Thiao DS, Diop S, Bouvery F, Ahmad S, Caceres-Barrios C et al., Understanding Bactrocera dorsalis trapping to calibrate area-wide management. Journal of Applied Entomology 145:831-840 (2021).
    1. Chidawanyika F and Terblanche JS, Costs and benefits of thermal acclimation for codling moth, Cydia pomonella (lepidoptera: Tortricidae): implications for pest control and the sterile insect release programme. Evolutionary Applications 4:534-544 (2011).
    1. Froerer KM, Peck SL, McQuate GT, Vargas RI, Jang EB and McInnis DO, Long-distance movement of Bactrocera dorsalis (Diptera: Tephritidae) in Puna, Hawaii: how far can they go? American Entomologist 56:88-95 (2010).

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