Substantial viral and bacterial diversity at the bat–tick interface

Author:

Ortiz-Baez Ayda Susana1,Jaenson Thomas G. T.2,Holmes Edward C.1,Pettersson John H.-O.341ORCID,Wilhelmsson Peter56

Affiliation:

1. Sydney Institute for Infectious Diseases, School of Medical Sciences, the University of Sydney, Sydney, New South Wales 2006, Australia

2. Department of Organismal Biology, Evolutionary Biology Centre, Uppsala University, SE-752 36, Uppsala, Sweden

3. Clinical Microbiology and Hospital Hygiene, Uppsala University Hospital, 75237 Uppsala, Sweden

4. Zoonosis Science Center, Department of Medical Biochemistry and Microbiology, University of Uppsala, SE-751 23 Uppsala, Sweden

5. Department of Biomedical and Clinical Sciences, Division of Inflammation and Infection, Linköping University, SE-581 83 Linköping, Sweden

6. Department of Clinical Microbiology, Region Jönköping County, SE-553 05 Jönköping, Sweden

Abstract

Ticks harbour a high diversity of viruses, bacteria and protozoa. The soft tick Carios vespertilionis (Argasidae) is a common ectoparasite of bats in the Palearctic region and is suspected to be vector and reservoir of viruses and other microbial species in bat populations, some of which may act as zoonotic agents for human disease. The Soprano pipistrelle (Pipistrellus pygmaeus, Vespertilionidae) is widely distributed in Europe, where it can be found inside or close to human habitation. We used meta-transcriptomic sequencing to determine the RNA virome and common microbiota in blood-fed C. vespertilionis ticks collected from a Soprano pipistrelle bat roosting site in south-central Sweden. Our analyses identified 16 viruses from 11 virus families, of which 15 viruses were novel. For the first time in Sweden we identified Issuk-Kul virus, a zoonotic arthropod-borne virus previously associated with outbreaks of acute febrile illness in humans. Probable bat-associated and tick-borne viruses were classified within the families Nairoviridae, Caliciviridae and Hepeviridae, while other invertebrate-associated viruses included members of the Dicistroviridae, Iflaviridae, Nodaviridae, Partitiviridae, Permutotetraviridae, Polycipiviridae and Solemoviridae. Similarly, we found abundant bacteria in C. vespertilionis, including genera with known tick-borne bacteria, such as Coxiella spp. and Rickettsia spp. These findings demonstrate the remarkable diversity of RNA viruses and bacteria present in C. vespertilionis and highlight the importance of bat-associated ectoparasite surveillance as an effective and non-invasive means to track viruses and bacteria circulating in bats and ticks.

Funder

Svenska Forskningsrådet Formas

Vetenskapsrådet

Australian Research Council

Innovation and Technology Commission

Forskningsrådet i Sydöstra Sverige

Publisher

Microbiology Society

Subject

General Medicine

Reference92 articles.

1. Nuclear (18S-28S rrna) and mitochondrial genome markers of carios (carios) vespertilionis (argasidae) support carios latreille, 1796 as a lineage embedded in the ornithodorinae: re-classification of the carios sensu klompen and oliver;Mans;Ticks Tick Borne Dis,1993

2. Argas vespertilionis (Latreille, 1796) (Figs. 8 and 9)

3. Argasid Ticks of Palearctic Bats: Distribution, Host Selection, and Zoonotic Importance

4. Bats and ticks: host selection and seasonality of bat-specialist ticks in eastern Europe

5. First Record of a Suspected Human-Pathogenic Borrelia Species in Populations of the Bat Tick Carios vespertilionis in Sweden

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