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Synergistic Parasite-Pathogen Interactions Mediated by Host Immunity Can Drive the Collapse of Honeybee Colonies

机译:宿主免疫介导的协同寄生虫-病原体相互作用可导致蜜蜂菌落的崩溃

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摘要

The health of the honeybee and, indirectly, global crop production are threatened by several biotic and abiotic factors, which play a poorly defined role in the induction of widespread colony losses. Recent descriptive studies suggest that colony losses are often related to the interaction between pathogens and other stress factors, including parasites. Through an integrated analysis of the population and molecular changes associated with the collapse of honeybee colonies infested by the parasitic mite Varroa destructor, we show that this parasite can de-stabilise the within-host dynamics of Deformed wing virus (DWV), transforming a cryptic and vertically transmitted virus into a rapidly replicating killer, which attains lethal levels late in the season. The de-stabilisation of DWV infection is associated with an immunosuppression syndrome, characterized by a strong down-regulation of the transcription factor NF-κB. The centrality of NF-κB in host responses to a range of environmental challenges suggests that this transcription factor can act as a common currency underlying colony collapse that may be triggered by different causes. Our results offer an integrated account for the multifactorial origin of honeybee losses and a new framework for assessing, and possibly mitigating, the impact of environmental challenges on honeybee health.
机译:蜜蜂的健康以及间接的全球作物生产受到多种生物和非生物因素的威胁,这些因素在引起广泛的菌落丧失中起着不明确的作用。最近的描述性研究表明,菌落的丧失通常与病原体和其他应激因素(包括寄生虫)之间的相互作用有关。通过对与寄生螨Varroa破坏物侵染的蜜蜂菌落崩溃有关的种群和分子变化的综合分析,我们表明该寄生虫可以破坏变形翼病毒(DWV)的宿主内部动力学的稳定性,从而转化为隐性然后将病毒垂直传播到快速复制的杀手,该杀手在本赛季后期达到致命水平。 DWV感染的不稳定与免疫抑制综合症有关,其特征是转录因子NF-κB的强烈下调。 NF-κB在宿主对一系列环境挑战的反应中居于中心地位,表明该转录因子可以作为菌落崩溃的共同货币,这可能是由不同原因触发的。我们的结果为蜜蜂损失的多因素根源提供了一个综合说明,并提供了一个新的框架来评估并可能减轻环境挑战对蜜蜂健康的影响。

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