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De Bruyn, L.

Publications and source records attributed to De Bruyn, L..

2 recordsLinked to original sources

Detection and characterisation of alpha- and betacoronaviruses in rodents and bats from Germany, France, Belgium and Ireland

Recent zoonotic coronavirus outbreaks have sparked an interest in understanding coronaviruses circulating in animal reservoirs. While bats are recognised as major reservoirs for these viruses, coronaviruses have also been detected in a wide range of terrestrial small mammals, particularly rodents. However, coronavirus diversity in these mammals, specifically in Europe, is still poorly characterised. In this study, we detected and characterised coronaviruses in terrestrial small mammals and bats from Belgium, France, Germany, and Ireland. We screened tissue samples from rodents and shrews and environmental bat guano using pan-coronavirus real-time and conventional PCRs, with positive results confirmed by sanger sequencing. Among 2667 bat and 1152 terrestrial mammal samples, we detected 59 positive samples, 36 from bats and 23 from rodents, from which we recovered 60 coronavirus sequences, spanning both Alphacoronavirus and Betacoronavirus lineages. Through next generation sequencing we identified one Pipistrellus pygmaeus bat guano sample carrying two distinct alphacoronaviruses, representing Nyctacovirus and Pedacovirus subgenera. Among rodents, most coronavirus-positive samples originated from a zoo in Belgium, where several CoV lineages co-circulated. The identified rodent coronaviruses clustered among previously described rodent-associated lineages, some of which also include human and other mammal-derived coronavirus sequences. Consistent with previous studies, we found sarbecoviruses in horseshoe bats (particularly Rhinolophus ferrumequinum and R. hipposideros) and merbecoviruses in Plecotus auritus bats, and these viruses are distantly related to the human coronaviruses of the respective families. Similar to bat coronaviruses, some rodent coronaviruses strains seemed to be association with specific rodent species. In conclusion, our study enhances the understanding of coronaviruses in rodents and bats, revealing potential hotspots for these viruses and their implication for human and animal health. These findings underscore the necessity for continued surveillance of coronaviruses in wildlife reservoirs to mitigate future zoonotic spillover risks.

microbiology↗

First report of astroviruses in Tanzanian bats

Emerging and re-emerging infectious diseases have posed significant global health threats, with many attributed to zoonotic RNA viruses. These pathogens can, under some conditions, cross species barriers, facilitating transmission from animal hosts to humans. Bats, characterised by unique physiological and ecological features, and remarkable species diversity, are recognized to host numerous viruses with cross-species transmission potential. This study aimed to investigate the presence of RNA viruses from a broad diversity of Tanzanian bats while valorising archived biological samples. RNA was extracted from 125 samples (28 faeces and 97 oral swabs) of 17 bat species, followed by PCR amplification targeting five distinct viral genera (Filovirus, Coronavirus, Hantavirus, Paramyxovirus and Astrovirus). Overall, 1.6 % (3/125) of the samples from two bat species (Scotophilus dinganii and Miniopterus fraterculus) tested positive for astrovirus, with the coinfection of one bat with two AstV strains. No samples tested positive for Filovirus, Coronavirus, Hantavirus and Paramyxovirus. Phylogenetic analysis based on RNA-dependent RNA polymerase sequences revealed these sequences are respectively clustering with astroviruses detected in other bat species from the genus Scotophilus from East Asia and with astroviruses detected in Miniopterus bats from Africa and Asia. Altogether, these results are the first report of astroviruses in Tanzanian bats.

molecular biology↗