Ticks and tick-borne microbes identified through passive and active surveillance in Alaska.

IF 2.1 3区 农林科学 Q1 ENTOMOLOGY
Micah B Hahn, Andrias Hojgaard, Gale Disler, William George, Amanda Droghini, Renate Schlaht, Lance A Durden, Sarah Coburn, Robert Gerlach, Rebecca J Eisen
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Abstract

Rapid environmental change in Alaska and other regions of the Arctic and sub-Arctic has raised concerns about increasing human exposure to ticks and the pathogens they carry. We tested a sample of ticks collected through a combination of passive and active surveillance from humans, domestic animals, and wildlife hosts in Alaska for a panel of the most common tick-borne pathogens in the contiguous United States to characterize the diversity of microbes present in this region. We tested 189 pooled tick samples collected in 2019-2020 for Borrelia spp., Anaplasma spp., Ehrlichia spp., and Babesia spp. using a multiplex PCR amplicon sequencing assay. We found established populations of Ixodes angustus Neumann (Acari: Ixodidae), Ixodes uriae White (Acari: Ixodidae), and Haemaphysalis leporispalustris Packard (Acari: Ixodidae) in Alaska, with I. angustus found on a variety of hosts including domestic companion animals (dogs and cats), small wild mammals, and humans. Ixodes angustus were active from April through October with peaks in adult and nymphal activity observed in summer months (mainly July). Although no known human pathogens were detected, Babesia microti-like parasites and candidatus Ehrlichia khabarensis were identified in ticks and small mammals. The only human pathogen detected (B. burgdorferi s.s.) was found in a tick associated with a dog that had recently traveled to New York, where Lyme disease is endemic. This study highlights the value of a combined passive and active tick surveillance system to detect introduced tick species and pathogens and to assess which tick species and microbes are locally established.

阿拉斯加通过被动和主动监测发现的蜱虫和蜱传微生物。
阿拉斯加和北极及亚北极其他地区的快速环境变化引发了人们对人类接触蜱虫及其携带的病原体增加的担忧。我们测试了通过被动和主动监测从阿拉斯加的人类、家畜和野生动物宿主身上采集的蜱虫样本,以确定美国本土最常见的蜱传病原体,从而表征该地区微生物的多样性。我们使用多重PCR扩增子测序法对2019-2020年收集的189份合并蜱虫样本进行了Borrelia spp.、Anaplasma spp.、Ehrlichia spp.和Babesia spp.检测。我们在阿拉斯加发现了已建立的硬蜱(蜱科:硬蜱科)、白硬蜱(硬蜱科:软蜱科)和麻风血蜱(蜱属:硬蜱)种群,硬蜱分布在各种宿主上,包括家养伴侣动物(狗和猫)、小型野生哺乳动物和人类。硬蜱在4月至10月活跃,成虫和若虫活动在夏季(主要是7月)达到峰值。虽然没有检测到已知的人类病原体,但在蜱虫和小型哺乳动物中发现了微小巴贝斯虫样寄生虫和卡氏埃立克体念珠菌。唯一检测到的人类病原体(B.burgdorferi s.s.)是在一只最近去过纽约的狗的蜱虫中发现的,那里是莱姆病的流行地。这项研究强调了被动和主动相结合的蜱虫监测系统的价值,该系统可以检测引入的蜱虫物种和病原体,并评估哪些蜱虫种类和微生物是当地建立的。
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来源期刊
CiteScore
4.60
自引率
14.30%
发文量
207
审稿时长
3-8 weeks
期刊介绍: Journal of Medical Entomology is published bimonthly in January, March, May, July, September, and November. The journal publishes reports on all phases of medical entomology and medical acarology, including the systematics and biology of insects, acarines, and other arthropods of public health and veterinary significance. In addition to full-length research articles, the journal publishes Reviews, interpretive articles in a Forum section, Short Communications, and Letters to the Editor.
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