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Weight of evidence evaluation of a network of adverse outcome pathways linking activation of the nicotinic acetylcholine receptor in honey bees to colony death

机译:将蜜蜂中烟碱型乙酰胆碱受体的激活与菌落死亡相关联的不良结局途径网络的证据评估的权重

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摘要

Ongoing honey bee (Apis mellifera) colony losses are of significant international concern because of the essential role these insects play in pollinating crops. Both chemical and non-chemical stressors have been implicated as possible contributors to colony failure; however, the potential role(s) of commonly-used neonicotinoid insecticides has emerged as particularly concerning. Neonicotinoids act on the nicotinic acetylcholine receptors (nAChRs) in the central nervous system to eliminate pest insects. However, mounting evidence indicates that neonicotinoids also may adversely affect beneficial pollinators, such as the honey bee, via impairments on learning and memory, and ultimately foraging success. The specific mechanisms linking activation of the nAChR to adverse effects on learning and memory are uncertain. Additionally, clear connections between observed impacts on individual bees and colony level effects are lacking. The objective of this review was to develop adverse outcome pathways (AOPs) as a means to evaluate the biological plausibility and empirical evidence supporting (or refuting) the linkage between activation of the physiological target site, the nAChR, and colony level consequences. Potential for exposure was not a consideration in AOP development and therefore this effort should not be considered a risk assessment. Nonetheless, development of the AOPs described herein has led to the identification of research gaps which, for example, may be of high priority in understanding how perturbation of pathways involved in neurotransmission can adversely affect normal colony functions, causing colony instability and subsequent bee population failure. A putative AOP network was developed, laying the foundation for further insights as to the role of combined chemical and non-chemical stressors in impacting bee populations. Insights gained from the AOP network assembly, which more realistically represents multi-stressor impacts on honey bee colonies, are promising toward understanding common sensitive nodes in key biological pathways and identifying where mitigation strategies may be focused to reduce colony losses.
机译:由于这些昆虫在授粉作物中起着至关重要的作用,因此持续的蜜蜂(蜜蜂)种群的损失是引起国际关注的重大问题。化学应激源和非化学应激源均可能与菌落衰竭有关。然而,已经普遍关注的是新烟碱类杀虫剂的潜在作用。新烟碱对中枢神经系统的烟碱乙酰胆碱受体(nAChRs)起作用,以消除害虫。然而,越来越多的证据表明,新烟碱类药物也可能通过损害学习和记忆力,最终导致觅食成功,从而对有益的授粉媒介(例如蜜蜂)产生不利影响。将nAChR的激活与对学习和记忆的不良影响联系起来的具体机制尚不确定。此外,在观察到的对蜜蜂的影响与菌落水平影响之间缺乏明确的联系。这篇综述的目的是开发不良结局途径(AOP),以评估生物学上的合理性和支持(或反驳)生理靶位点激活,nAChR和菌落水平后果之间联系的经验证据。在AOP的开发中不考虑潜在的接触风险,因此不应将这种努力视为风险评估。尽管如此,本文描述的AOP的发展已导致研究空白的确定,例如,在理解神经传递途径的扰动如何会对正常的菌落功能产生不利影响,引起菌落不稳定和随后的蜜蜂种群衰竭方面,可以优先考虑研究差距。 。建立了推定的AOP网络,为进一步了解化学和非化学应激源组合在影响蜜蜂种群中的作用奠定了基础。从AOP网络大会获得的见解更现实地代表了对蜜蜂群体的多应激因素影响,它们有望了解关键生物途径中常见的敏感节点,并确定缓解策略可能集中在减少群体损失上。

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