Meng_2022_Sci.Total.Environ_805_150373

Reference

Title : Acute warming increases pesticide toxicity more than transgenerational warming by reducing the energy budget - Meng_2022_Sci.Total.Environ_805_150373
Author(s) : Meng S , Tran TT , Van Dinh K , Delnat V , Stoks R
Ref : Sci Total Environ , 805 :150373 , 2022
Abstract :

There is increasing awareness that the toxicity of pesticides can to a large extent be modulated by warming, and that temporal exposure scenarios may strongly affect the impact of two stressors. Nevertheless, we lack information on how the exposure duration to warming may shape pesticide toxicity under warming. Furthermore, despite that bioenergetic responses have the potential to generate mechanistic insights in how toxicants interact with warming, this has been understudied in ecotoxicology. To investigate whether warming duration modifies pesticide toxicity, mosquito larvae were exposed to a control temperature at 20 degreesC or three warming treatments at 24 degreesC (acute, developmental and transgenerational warming), and to four pesticide treatments (solvent control, and three chlorpyrifos concentrations) in a full factorial design. Chlorpyrifos increased mortality, growth rate and the energy consumed, and reduced the AChE (acetylcholinesterase) activity, the energy available, and the net energy budget (estimated as cellular energy allocation). The warming treatments did not affect mortality, AChE activity, and the energy consumed. However, acute warming increased the growth rate and decreased the energy available, while both acute and developmental warming decreased the cellular energy allocation. A first key finding was that the lethal and sublethal effects of chlorpyrifos were less strong under warming because of a higher degradation in the medium under warming. A second key finding was that, among the warming treatments, the pesticide toxicity was more increased under acute warming than under transgenerational warming. This could be explained by the negative impact of acute warming but not transgenerational warming on the net energy budget. The results in this study provide mechanistic insights that the exposure duration to warming can play an important role in modulating the impact of pesticides under warming. Therefore, including ecologically relevant temporal scenarios of exposure to warming is important in ecotoxicological studies.

PubMedSearch : Meng_2022_Sci.Total.Environ_805_150373
PubMedID: 34818764

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Citations formats

Meng S, Tran TT, Van Dinh K, Delnat V, Stoks R (2022)
Acute warming increases pesticide toxicity more than transgenerational warming by reducing the energy budget
Sci Total Environ 805 :150373

Meng S, Tran TT, Van Dinh K, Delnat V, Stoks R (2022)
Sci Total Environ 805 :150373