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Winter fruit contribution to the performance of the invasive fruit fly Drosophila suzukii under different thermal regimes
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作者 Jordy Larges Gwenaëlle Deconninck +7 位作者 Romain Ulmer vincent foray Nathalie Le Bris Marion Chorin HervéColinet Olivier Chabrerie Patrice Eslin Aude Couty 《Insect Science》 2026年第1期377-395,共19页
Polyphagous insect species develop using multiple host plants.Often considered beneficial,polyphagy can also be costly as host nutritional quality may vary.Drosophila suzukii(Matsumura)is an invasive species that can ... Polyphagous insect species develop using multiple host plants.Often considered beneficial,polyphagy can also be costly as host nutritional quality may vary.Drosophila suzukii(Matsumura)is an invasive species that can develop on numerous fruit species over the annual cycle.Here,we assessed the contribution of winter-available fruit to the development of seasonal populations of D.suzukii,under fluctuating late winter/early spring temperature regimes.We infested an artificial diet and three suitable fruit species available in winter/early spring(Aucuba japonica,Elaeagnus×submacrophylla,Viscum album)with D.suzukii larvae under three temperature regimes:constant 20℃,fluctuating controlled regime of 8-15℃(12 h of light at 8℃ and 12 h of dark at 15℃),and uncontrolled outdoor regime during spring.As expected,fly performance was impaired by early spring-like environmental conditions,whatever the development diet,and the winter fruit were suboptimal diets compared to the artificial diet,whatever the thermal regime.However,under cold fluctuating temperature regimes,the ranking of fruit supporting the best performance changed,highlighting the occurrence of physiological trade-offs.Winter-acclimated females preferentially oviposited in A.japonica and/or E.×submacrophylla,whatever the thermal regime,which does not support the preference-performance hypothesis.This finding is also discussed in the context of D.suzukii management strategies. 展开更多
关键词 life history traits OVERWINTERING polyphagy preference-performance hypothesis thermal fluctuations trade-off
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