bioRxiv Science⌕ Search

Biology subjects

Siegers, J. Y.

Publications and source records attributed to Siegers, J. Y..

2 recordsLinked to original sources

Discovery of a Novel Coltivirus in a Newly Identified Bat Bug Species (Heteroptera: Cimicidae) in Cambodia

Bats and their ectoparasites are significant reservoirs and potential vectors of emerging zoonotic pathogens, yet the viral diversity within bat-associated arthropods remains poorly characterized. This study reports the identification of a novel coltivirus (order Reovirales), provisionally designated Stricticimex coltivirus (SCCV), in a newly described bat bug species, Stricticimex phnomsampovensis, collected from cave-dwelling wrinkle-lipped free-tailed bats (Mops plicatus) in Cambodia. Metagenomic sequencing and phylogenetic analysis revealed that SCCV clusters within the Coltivirus genus, showing closest similarity to Tai Forest Reovirus (TFRV) previously isolated from African bats. SCCV was detected in 18.4% of examined bat bugs and successfully isolated in VeroE6 cells, with replication confirmed in multiple mammalian cell lines. The discovery of SCCV extends the known diversity and geographic range of Coltivirus and highlights bat ectoparasites as overlooked hosts of potentially zoonotic viruses. These findings underscore the importance of integrated One Health surveillance targeting both bats and their ectoparasites to better assess the risk of pathogen spillover in biodiverse regions with high human-animal contact. Author SummaryIn this study, we identify a novel Coltivirus, named Stricticimex coltivirus (SCCV), in a newly described bat bug species collected from cave-dwelling bats in Cambodia. Using metagenomic sequencing and phylogenetic analysis, we find that SCCV is closely related to Tai Forest Reovirus, previously identified in African bats. We successfully isolated the virus in mammalian cell lines, suggesting potential to infect vertebrate hosts. This discovery not only expands the known diversity of Coltiviruses, but also underscores the role of bat ectoparasites as underexplored reservoirs of potentially zoonotic viruses. Our findings emphasize the importance of integrated One Health surveillance efforts targeting both bats and their ectoparasites to better assess the risk of virus spillover in regions where human and wildlife habitats overlap.

microbiology↗

Detection and Phylogenetic Analysis of Highly Pathogenic A/H5N1 Avian Influenza Clade 2.3.4.4b Virus in Chile, 2022

Since the emergence of the Highly Pathogenic Avian Influenza H5N1 goose/Guangdong (Gs/GD) lineage in China in 1996, these viruses have spread globally. This includes the recent introduction of the Gs/GD lineage 2.3.4.4b in the Americas in 2021, which has affected both wild and domestic bird populations causing high mortality. Since November 2022, reports of mortality in wild birds in numerous South American countries along the Pacific Migratory Flyway have been attributed to this lineage. Through an ongoing longitudinal avian influenza virus (AIV) surveillance, we determined that AIV prevalence remained below 1% in the Lluta river wetland from August through October 2022. However, there was a significant increase in prevalence to 2.6% and 11.7% in November and December respectively, coinciding with the arrival of migratory birds from the Northern Hemisphere. Of the AIV RT-qPCR positive environmental feces samples 7 were identified as A/H5. Sequencing of the COI gene demonstrated that the H5 positive samples were obtained from Peruvian pelican (n=1), Franklins gull (n=1), Gray gull (n=1), Elegant tern (n=2) and Black skimmer (n=2). Full genomes were obtained from 3 samples and the putative cleavage site composition of the HA was polybasic REKRRKR/GLF for all. Phylogenetic analysis of the samples revealed them to belong to the H5 2.3.4.4b clade, closely related to isolates obtained in Peru in late November. The emergence of H5 clade 2.3.4.4b in South America has an immediate impact on public health, animal production and wildlife, hence increased active surveillance is warranted.

genetics↗