Presence and diversity of Chlamydiae bacteria in Spinturnix myoti, an ectoparasite of bats

Chlamydia spp. and Chlamydia-like organisms are able to infect vertebrates such as mammals, reptiles and birds, but also arthropods and protozoans. Since they have been detected in bats and bat feces, we expected Chlamydiae bacteria to also be present in the mite Spinturnix myoti, an ectoparasite of...

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Main Authors: Thiévent Kevin, Szentiványi Tamara, Aeby Sébastien, Glaizot Olivier, Christe Philippe, Greub Gilbert
Format: Article
Language:English
Published: EDP Sciences 2020-01-01
Series:Parasite
Subjects:
Online Access:https://www.parasite-journal.org/articles/parasite/full_html/2020/01/parasite200054/parasite200054.html
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spelling doaj-05165e6bd4c545919de7134bb86a5dcb2021-04-02T19:02:45ZengEDP SciencesParasite1776-10422020-01-01275410.1051/parasite/2020052parasite200054Presence and diversity of Chlamydiae bacteria in Spinturnix myoti, an ectoparasite of batsThiévent Kevin0Szentiványi TamaraAeby Sébastien1Glaizot OlivierChriste Philippe2Greub Gilbert3https://orcid.org/0000-0001-9529-3317Center for Research on Intracellular Bacteria (CRIB), Institute of Microbiology, University Hospital Center and University of LausanneCenter for Research on Intracellular Bacteria (CRIB), Institute of Microbiology, University Hospital Center and University of LausanneDepartment of Ecology and Evolution, University of LausanneCenter for Research on Intracellular Bacteria (CRIB), Institute of Microbiology, University Hospital Center and University of LausanneChlamydia spp. and Chlamydia-like organisms are able to infect vertebrates such as mammals, reptiles and birds, but also arthropods and protozoans. Since they have been detected in bats and bat feces, we expected Chlamydiae bacteria to also be present in the mite Spinturnix myoti, an ectoparasite of mouse-eared bats (Myotis spp.). The prevalence of Chlamydiales in 88 S. myoti was 57.95% and significantly depended on bat host species. In addition, the prevalence was significantly different between bat species living in sympatry or in allopatry. While there was uninterpretable sequencing for 16 samples, eight showed best BLAST hit identities lower than 92.5% and thus corresponded to new family-level lineages according to the established taxonomy cut-off. The four remaining sequences exhibited best BLAST hit identities ranging from 94.2 to 97.4% and were taxonomically assigned to three different family-level lineages, with two of them belonging to the Parachlamydiaceae, one to the Simkaniaceae, and one to the Chlamydiaceae. These results highlighted for the first time the presence of Chlamydia-like organisms and the possible zoonotic origin of Chlamydia sp. in S. myoti ectoparasites of bats, and therefore suggest that these ectoparasites may play a role in maintaining and/or transmitting members of the Chlamydiae phylum within Myotis spp. bat populations. Our results further highlight that the wide diversity of bacteria belonging to the Chlamydiae phylum is largely underestimated.https://www.parasite-journal.org/articles/parasite/full_html/2020/01/parasite200054/parasite200054.htmlchlamydiaemitesbatsvectorepidemiologyphylogenetic analysis
collection DOAJ
language English
format Article
sources DOAJ
author Thiévent Kevin
Szentiványi Tamara
Aeby Sébastien
Glaizot Olivier
Christe Philippe
Greub Gilbert
spellingShingle Thiévent Kevin
Szentiványi Tamara
Aeby Sébastien
Glaizot Olivier
Christe Philippe
Greub Gilbert
Presence and diversity of Chlamydiae bacteria in Spinturnix myoti, an ectoparasite of bats
Parasite
chlamydiae
mites
bats
vector
epidemiology
phylogenetic analysis
author_facet Thiévent Kevin
Szentiványi Tamara
Aeby Sébastien
Glaizot Olivier
Christe Philippe
Greub Gilbert
author_sort Thiévent Kevin
title Presence and diversity of Chlamydiae bacteria in Spinturnix myoti, an ectoparasite of bats
title_short Presence and diversity of Chlamydiae bacteria in Spinturnix myoti, an ectoparasite of bats
title_full Presence and diversity of Chlamydiae bacteria in Spinturnix myoti, an ectoparasite of bats
title_fullStr Presence and diversity of Chlamydiae bacteria in Spinturnix myoti, an ectoparasite of bats
title_full_unstemmed Presence and diversity of Chlamydiae bacteria in Spinturnix myoti, an ectoparasite of bats
title_sort presence and diversity of chlamydiae bacteria in spinturnix myoti, an ectoparasite of bats
publisher EDP Sciences
series Parasite
issn 1776-1042
publishDate 2020-01-01
description Chlamydia spp. and Chlamydia-like organisms are able to infect vertebrates such as mammals, reptiles and birds, but also arthropods and protozoans. Since they have been detected in bats and bat feces, we expected Chlamydiae bacteria to also be present in the mite Spinturnix myoti, an ectoparasite of mouse-eared bats (Myotis spp.). The prevalence of Chlamydiales in 88 S. myoti was 57.95% and significantly depended on bat host species. In addition, the prevalence was significantly different between bat species living in sympatry or in allopatry. While there was uninterpretable sequencing for 16 samples, eight showed best BLAST hit identities lower than 92.5% and thus corresponded to new family-level lineages according to the established taxonomy cut-off. The four remaining sequences exhibited best BLAST hit identities ranging from 94.2 to 97.4% and were taxonomically assigned to three different family-level lineages, with two of them belonging to the Parachlamydiaceae, one to the Simkaniaceae, and one to the Chlamydiaceae. These results highlighted for the first time the presence of Chlamydia-like organisms and the possible zoonotic origin of Chlamydia sp. in S. myoti ectoparasites of bats, and therefore suggest that these ectoparasites may play a role in maintaining and/or transmitting members of the Chlamydiae phylum within Myotis spp. bat populations. Our results further highlight that the wide diversity of bacteria belonging to the Chlamydiae phylum is largely underestimated.
topic chlamydiae
mites
bats
vector
epidemiology
phylogenetic analysis
url https://www.parasite-journal.org/articles/parasite/full_html/2020/01/parasite200054/parasite200054.html
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