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Drone exposure to the systemic insecticide Fipronil indirectly impairs queen reproductive potential

机译:无人机暴露于系统杀虫剂非那诺胺间接削弱了女王的生殖潜能

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摘要

A species that requires sexual reproduction but cannot reproduce is doomed to extinction. The important increasing loss of species emphasizes the ecological significance of elucidating the effects of environmental stressors, such as pesticides, on reproduction. Despite its special reproductive behavior, the honey bee was selected as a relevant and integrative environmental model because of its constant and diverse exposure to many stressors due to foraging activity. The widely used insecticide Fipronil, the use of which is controversial because of its adverse effects on honey bees, was chosen to expose captive drones in hives via syrup contaminated at 0.1 μg/L and gathered by foragers. Such environmental exposure led to decreased spermatozoa concentration and sperm viability coupled with an increased sperm metabolic rate, resulting in drone fertility impairment. Subsequently, unexposed queens inseminated with such sperm exhibited fewer spermatozoa with lower viability in their spermatheca, leaving no doubt about the detrimental consequences for the reproductive potential of queens, which are key for colony sustainability. These findings suggest that pesticides could contribute to declining honey bee populations through fertility impairment, as exemplified by Fipronil. More broadly, reproductive disorders should be taken into consideration when investigating the decline of other species.
机译:需要有性繁殖但不能繁殖的物种注定要灭绝。物种不断增加的重要损失强调了阐明环境胁迫因素(例如农药)对繁殖的影响的生态意义。尽管蜜蜂具有特殊的繁殖行为,但由于其觅食活动对多种应激源的持续不断和多样的暴露,因此蜜蜂被选为相关的综合环境模型。广泛使用的杀虫剂Fipronil因其对蜜蜂的不良影响而引起争议,因此被选择通过被0.1μg/ L污染的糖浆暴露在蜂巢中的圈养无人机,并被觅食者收集。这种环境暴露导致精子浓度和精子活力降低,同时精子代谢率提高,从而导致无人机的生育能力受损。随后,用这种精子授精的未暴露的皇后表现出较少的精子,其精子中的活力较低,这毫无疑问对皇后的繁殖潜力产生了有害影响,这对于殖民地的可持续性至关重要。这些发现表明,杀虫剂可能会通过生育力受损而导致蜜蜂数量下降,如菲普罗尼所证明的那样。更广泛地说,在调查其他物种的衰退时,应考虑生殖障碍。

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