Suppr超能文献

亚速尔群岛蜜蜂中残翅病毒的起源、多样性及适应性进化:入侵螨的影响

Origins, diversity, and adaptive evolution of DWV in the honey bees of the Azores: the impact of the invasive mite .

作者信息

Lopes Ana R, Low Matthew, Martín-Hernández Raquel, Pinto M Alice, De Miranda Joachim R

机构信息

Centro de Investigação de Montanha (CIMO), Instituto Politécnico de Bragança, Campus de Santa Apolónia, Bragança 5300-253, Portugal.

Laboratório Associado para a Sustentabilidade e Tecnologia em Regiões de Montanha (SusTEC), Instituto Politécnico de Bragança, Campus de Santa Apolónia, Bragança 5300-253, Portugal.

出版信息

Virus Evol. 2024 Jul 15;10(1):veae053. doi: 10.1093/ve/veae053. eCollection 2024.

Abstract

Deformed wing virus (DWV) is a honey bee virus, whose emergence from relative obscurity is driven by the recent host-switch, adaptation, and global dispersal of the ectoparasitic mite (a highly efficient vector of DWV) to reproduction on honey bees (). Our study examines how varroa affects the continuing evolution of DWV, using the Azores archipelago, where varroa is present on only three out of the eight Islands, as a natural experimental system for comparing different evolutionary conditions and trajectories. We combined qPCR of 494 honey bee colonies sampled across the archipelago with amplicon deep sequencing to reveal how the DWV genetic landscape is altered by varroa. Two of the varroa-free Islands were also free of DWV, while a further two Islands were intriguingly dominated by the rare DWV-C major variant. The other four Islands, including the three varroa-infested Islands, were dominated by the common DWV-A and DWV-B variants. The varroa-infested Islands had, as expected, an elevated DWV prevalence relative to the uninfested Islands, but not elevated DWV loads, due the relatively high prevalence and loads of DWV-C on the varroa-free Islands. This establishes the Azores as a stable refuge for DWV-C and provides the most convincing evidence to date that at least some major strains of DWV may be capable of not just surviving, but actually thriving in honey bees in the absence of varroa-mediated transmission. We did not detect any change in DWV genetic diversity associated with island varroa status but did find a positive association of DWV diversity with virus load, irrespective of island varroa status.

摘要

变形翼病毒(DWV)是一种蜜蜂病毒,其从相对不为人知的状态中出现,是由外寄生螨(DWV的高效传播媒介)最近向蜜蜂繁殖的宿主转换、适应和全球扩散所驱动的。我们的研究利用亚速尔群岛作为一个自然实验系统,来比较不同的进化条件和轨迹,以此研究瓦螨如何影响DWV的持续进化。在亚速尔群岛的八个岛屿中,只有三个岛屿存在瓦螨。我们结合对群岛上494个蜂群进行的定量聚合酶链反应(qPCR)和扩增子深度测序,以揭示瓦螨如何改变DWV的遗传格局。其中两个没有瓦螨的岛屿也没有DWV,而另外两个岛屿有趣的是由罕见的DWV-C主要变体主导。包括三个有瓦螨的岛屿在内的其他四个岛屿,则由常见的DWV-A和DWV-B变体主导。正如预期的那样,有瓦螨的岛屿相对于没有瓦螨的岛屿,DWV流行率有所升高,但由于没有瓦螨的岛屿上DWV-C的流行率和载量相对较高,所以DWV载量并没有升高。这确立了亚速尔群岛是DWV-C的稳定避难所,并提供了迄今为止最有说服力的证据,表明至少一些主要的DWV毒株不仅能够存活,而且实际上在没有瓦螨介导传播的情况下,在蜜蜂中也能蓬勃发展。我们没有检测到与岛屿瓦螨状态相关的DWV遗传多样性的任何变化,但确实发现无论岛屿瓦螨状态如何,DWV多样性与病毒载量呈正相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1ec3/11306321/a2ecb97f99da/veae053f1.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验