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Transgenerational interactions between pesticide exposure and warming in a vector mosquito

机译:媒介蚊虫接触农药和变暖之间的跨代相互作用

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While transgenerational plasticity may buffer ectotherms to warming and pesticides separately, it remains unknown how combined exposure to warming and pesticides in the parental generation shapes the vulnerability to these stressors in the offspring. We studied the transgenerational effects of single and combined exposure to warming (4°C increase) and the pesticide chlorpyrifos on life‐history traits of the vector mosquito Culex pipiens . Parental exposure to a single stressor, either warming or the pesticide, had negative effects on the offspring: parental exposure to both warming and the pesticide resulted in an overall lower offspring survival, and a delayed offspring metamorphosis. Parental exposure to a single stressor did, however, not alter the vulnerability of the offspring to the same stressor in terms of survival. Parental pesticide exposure resulted in larger offspring when the offspring experienced the same stressor as the parents. Within both the parental and offspring generations, warming made the pesticide more toxic in terms of survival. Yet, this synergism disappeared in the offspring of parents exposed to both stressors simultaneously because in this condition, the pesticide was already more lethal at the lower temperature. Our results indicate that transgenerational effects will not increase the ability of this vector species to deal with pesticides in a warming world. Bifactorial transgenerational experiments are crucial to understand the combined impact of warming and pesticides across generations, hence to assess the efficacy of vector control in a warming world.
机译:尽管跨代可塑性可能会分别阻止外加温和杀虫剂对变暖的影响,但尚不清楚的是,父母代对变暖和杀虫剂的综合暴露如何影响后代对这些应激源的脆弱性。我们研究了单次和联合暴露于变暖(升高4°C)和农药毒死rif对媒介蚊子库蚊的生活史特征的跨代影响。父母暴露于单一的应激因素(变暖或农药)对后代有负面影响:父母暴露于变暖和农药会导致总体后代存活率降低,并延迟后代变态。然而,父母在单一应激源下的暴露并没有改变后代在相同应激源下的生存能力。当后代承受与父母相同的压力时,父母接触农药会导致更大的后代。在父母和后代中,变暖使农药在生存方面更具毒性。然而,这种协同作用在同时暴露于两个应激源的父母的后代中消失了,因为在这种情况下,农药在较低的温度下已经具有更大的致死性。我们的结果表明,在变暖的世界中,跨代效应不会增加这种媒介物种处理农药的能力。双因子跨代实验对于了解变暖和农药跨代的综合影响,从而评估在变暖世界中媒介控制的功效至关重要。

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