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富氏切叶蚁兵蚁感染变形病毒后,翅膀出现畸形,活动能力也受到影响。

Solenopsis richteri (Hymenoptera: Formicidae) alates infected with deformed wing virus display wing deformity with altered mobility.

机构信息

Biological Control of Pests Research Unit, USDA-ARS, Stoneville, MS, 38776, USA.

Genomics and Bioinformatics Research Unit, 141 Experiment Station Road, Stoneville, MS, 38776, USA.

出版信息

Naturwissenschaften. 2024 Sep 20;111(5):47. doi: 10.1007/s00114-024-01934-4.

Abstract

Deformed wing virus (DWV) has long been identified as a critical pathogen affecting honeybees, contributing to colony losses through wing deformities, neurological impairments, and reduced lifespan. Since DWV also affects other pollinators, it poses a significant threat to global pollination networks. While honeybees have been the focal point of DWV studies, emerging research indicates that this RNA virus is not host-specific but rather a generalist pathogen capable of infecting a wide range of insect species, including other bee species such as bumblebees and solitary bees, as well as wasps and ants. This expands the potential impact of DWV beyond honeybees to broader ecological communities. The black imported fire ant, Solenopsis richteri, is an economically important invasive ant species. In this study, we describe deformed wing (DW) symptoms in S. richteri. DW alates were found in three of nine (33%) laboratory colonies. The symptoms ranged from severely twisted wings to a single crumpled wing tip. Additionally, numerous symptomatic alates also displayed altered mobility, ranging from an ataxic gait to an inability to walk. Viral replication of DWV was confirmed using a modified strand-specific RT-PCR. Our results suggest that S. richteri can be an alternative host for DWV, expanding our understanding of DWV as a generalist pathogen in insects. However, additional research is required to determine whether DWV is the etiological agent responsible for DW syndrome in S. richteri.

摘要

变形翅膀病毒(DWV)长期以来被认为是一种严重影响蜜蜂的病原体,它会导致蜜蜂翅膀畸形、神经损伤和寿命缩短,从而导致蜂群损失。由于 DWV 还会影响其他传粉媒介,因此它对全球传粉网络构成了重大威胁。虽然蜜蜂一直是 DWV 研究的重点,但新的研究表明,这种 RNA 病毒并非宿主特异性,而是一种能够感染多种昆虫物种的泛生病原体,包括大黄蜂和独居蜂等其他蜜蜂物种以及胡蜂和蚂蚁。这将 DWV 的潜在影响从蜜蜂扩展到更广泛的生态群落。红火蚁,Solenopsis richteri,是一种具有重要经济意义的入侵蚂蚁物种。在这项研究中,我们描述了红火蚁中变形翅膀(DW)的症状。在 9 个实验室群体中的 3 个(33%)中发现了 DW 有翅个体。症状范围从翅膀严重扭曲到单个翅膀尖端褶皱。此外,许多有症状的有翅个体也表现出运动能力改变,从共济失调步态到无法行走。使用改良的链特异性 RT-PCR 确认了 DWV 的病毒复制。我们的研究结果表明,红火蚁可以作为 DWV 的替代宿主,这扩大了我们对 DWV 作为昆虫泛生病原体的理解。然而,需要进一步的研究来确定 DWV 是否是导致 S. richteri 变形翅膀综合征的病原体。

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