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Nasopulmonary Mites (Acari: Halarachnidae) As Potential Vectors of Bacterial Pathogens, Including Streptococcus Phocae, in Marine Mammals

Overview
Journal PLoS One
Date 2022 Jun 16
PMID 35709209
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Abstract

Nasopulmonary mites (NPMs) of the family Halarachnidae are obligate endoparasites that colonize the respiratory tracts of mammals. NPMs damage surface epithelium resulting in mucosal irritation, respiratory illness, and secondary infection, yet the role of NPMs in facilitating pathogen invasion or dissemination between hosts remains unclear. Using 16S rRNA massively parallel amplicon sequencing of six hypervariable regions (or "16S profiling"), we characterized the bacterial community of NPMs from 4 southern sea otters (Enhydra lutris nereis). This data was paired with detection of a priority pathogen, Streptococcus phocae, from NPMs infesting 16 southern sea otters and 9 California sea lions (Zalophus californianus) using nested conventional polymerase chain reaction (nPCR). The bacteriome of assessed NPMs was dominated by Mycoplasmataceae and Vibrionaceae, but at least 16 organisms with pathogenic potential were detected as well. Importantly, S. phocae was detected in 37% of NPM by nPCR and was also detected by 16S profiling. Detection of multiple organisms with pathogenic potential in or on NPMs suggests they may act as mechanical vectors of bacterial infection for marine mammals.

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References
1.
Hubert J, Erban T, Kamler M, Kopecky J, Nesvorna M, Hejdankova S . Bacteria detected in the honeybee parasitic mite Varroa destructor collected from beehive winter debris. J Appl Microbiol. 2015; 119(3):640-54. DOI: 10.1111/jam.12899. View

2.
Ruhnke H, Madoff S . Mycoplasma phocidae sp. nov., isolated from harbor seals (Phoca vitulina L.). Int J Syst Bacteriol. 1992; 42(2):211-4. DOI: 10.1099/00207713-42-2-211. View

3.
Nesvorna M, Bittner V, Hubert J . The Mite Tyrophagus putrescentiae Hosts Population-Specific Microbiomes That Respond Weakly to Starvation. Microb Ecol. 2018; 77(2):488-501. DOI: 10.1007/s00248-018-1224-y. View

4.
Henton M, Zapke O, BASSON P . Streptococcus phocae infections associated with starvation in Cape fur seals. J S Afr Vet Assoc. 2000; 70(2):98-9. DOI: 10.4102/jsava.v70i2.763. View

5.
Lima-Barbero J, Diaz-Sanchez S, Sparagano O, Finn R, de la Fuente J, Villar M . Metaproteomics characterization of the alphaproteobacteria microbiome in different developmental and feeding stages of the poultry red mite (De Geer, 1778). Avian Pathol. 2019; 48(sup1):S52-S59. DOI: 10.1080/03079457.2019.1635679. View