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新型载体对社区的连锁影响:受瓦螨感染的蜜蜂将新兴的 DWV-B 溢出到野生熊蜂中。

Knock-on community impacts of a novel vector: spillover of emerging DWV-B from Varroa-infested honeybees to wild bumblebees.

机构信息

Centre for Ecology and Conservation, University of Exeter, Penryn Campus, Penryn, TR11 9FE, UK.

Department of Biosciences, University of Exeter, Streatham Campus, Exeter, EX4 4QD, UK.

出版信息

Ecol Lett. 2019 Aug;22(8):1306-1315. doi: 10.1111/ele.13323. Epub 2019 Jun 12.

Abstract

Novel transmission routes can directly impact the evolutionary ecology of infectious diseases, with potentially dramatic effect on host populations and knock-on effects on the wider host community. The invasion of Varroa destructor, an ectoparasitic viral vector in Western honeybees, provides a unique opportunity to examine how a novel vector affects disease epidemiology in a host community. This specialist honeybee mite vectors deformed wing virus (DWV), an important re-emerging honeybee pathogen that also infects wild bumblebees. Comparing island honeybee and wild bumblebee populations with and without V. destructor, we show that V. destructor drives DWV prevalence and titre in honeybees and sympatric bumblebees. Viral genotypes are shared across hosts, with the potentially more virulent DWV-B overtaking DWV-A in prevalence in a current epidemic. This demonstrates disease emergence across a host community driven by the acquisition of a specialist novel transmission route in one host, with dramatic community level knock-on effects.

摘要

新的传播途径可能会直接影响传染病的进化生态学,对宿主种群产生潜在的巨大影响,并对更广泛的宿主群落产生连锁反应。西方蜜蜂的外寄生病毒载体瓦螨的入侵,为研究一种新的媒介如何影响宿主群落中的疾病流行病学提供了一个独特的机会。这种专门的蜜蜂螨传播变形翅膀病毒(DWV),这是一种重要的新兴蜜蜂病原体,也感染野生熊蜂。通过比较有和没有瓦螨的岛屿蜜蜂和野生熊蜂种群,我们表明,瓦螨会导致蜜蜂和同域熊蜂中的 DWV 流行率和滴度增加。病毒基因型在宿主之间共享,具有潜在更高毒力的 DWV-B 在当前流行中超过了 DWV-A 的流行率。这表明,一种专门的新型传播途径在一个宿主中的获得,导致了整个宿主群落的疾病出现,产生了巨大的社区级连锁反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7d81/6852581/bef63eb293cd/ELE-22-1306-g001.jpg

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