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Dias, Y. J.

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

3 recordsLinked to original sources

Genomics insights reveal multi-year maintenance of a new Deltacoronavirus infecting Seabirds from the Cagarras Island Archipelago Natural Monument, Brazil

Previous studies have identified various pathogens in seabirds, notably coronaviruses (CoVs) and influenza A viruses (IAVs), due to their potential to cause significant morbidity and mortality. The Cagarras Island Archipelago Natural Monument, located near Rio de Janeiro, Brazil, serves as nesting site for two species, the magnificent frigatebird (Fregata magnificens) and the brown booby (Sula leucogaster). Despite its ecological importance, no prior studies have investigated viral infections in these species, which share habitat interfaces with densely populated human areas. To address this gap, we sampled and tested seabirds for CoVs and IAVs from January 2022 to April 2024. Birds were captured and identified by species, age, and sex. Oropharyngeal and cloacal swabs, as well as blood samples, were collected. Viral RNA was extracted using the QIAamp Viral RNA Mini Kit, and the presence of IAVs was screened via real-time RT-PCR, while CoVs were screened using semi-nested RT-PCR. Sanger and metatranscriptomic sequencing were performed to identify viral strains and assess phylogenetic relationships. Of the 153 seabirds sampled, CoVs were detected in 6 individuals (9.1%) of F. magnificens and 16 individuals (18.4%) of S. leucogaster. No IAVs were found in either oropharyngeal or cloacal swabs, and all serum samples were negative for the presence of antibodies against the virus. We recovered two full deltacoronavirus genomes and eight additional draft genomes from S. leucogaster samples obtained from distinct sampling expeditions and additional enteroviruses, passeriviruses, and picornaviruses. Phylogenetic analysis revealed that the detected CoVs are closely related to avian deltacoronaviruses from environmental samples of S. leucogaster in the Sao Pedro and Sao Paulo Archipelago, indicating potential viral exchange between these seabird populations living at these distant islands. Moreover, multiple detections in different individuals at different time points are associated with specific Spike NTD deletions that have been shown to accumulate in immune escape lineages, supporting the long-term maintenance through new infections and reinfection of this virus in these bird populations. This is the first detection of CoVs in F. magnificens, highlighting their circulation in marine ecosystems. Further research is needed to understand the ecological and epidemiological implications, including potential cross-species transmission.

microbiology↗

Detection and full genome sequencing of a Deltacoronavirus and other bird associated viruses from feces of the kelp gull (Larus dominicanus) sampled at the South Shetland Islands Antarctica.

Bird species are known to be the main reservoir of a range of respiratory viruses such as Influenza, Newcastle and Coronaviruses. Migratory birds are particularly important for the maintenance and long distance spread of the virus to wild bird and poultry species but eventually to mammal species as well. Antarcticas pristine environment and wildlife is of immense biological value, but the spread of such deadly viruses pose a substantial threat to the regions fragile ecosystems. To investigate the presence of respiratory viruses in the region we sampled feces of different wild migratory birds at various localities in the South Shetland Islands in the Antarctic summer of 2023 and screened them for coronaviruses (CoVs) and influenza A virus (IAV). Viral screening was performed by the conventional pancoronavirus RT-PCR protocol (CoVs), by quantitative one-step real-time RT-PCR (IAVs) followed by metatranscriptomic sequencing of positive samples. During January and February of 2023, we collected and examined a total of 243 fecal samples representing Stercorarius spp (N=5), Larus dominicanus (N=16), Phalacrocorax bransfieldensis (N=3), Pygoscelis adeliae (N=19), Pygoscelis antarcticus (N=38), Pygoscelis papua (N=139), Pygoscelis spp (N=23). All tested samples were negative for influenza A and one sample from the colony of L. dominicanus at Keller Peninsula, King George Island, tested positive for CoVs. Metatranscriptomic sequencing recovered a full deltaCoV genome. Nucleotide and amino acid distance analysis revealed that the deltacoronavirus detected belongs to subgenus Buldecovirus and to the novel wild bird deltaCoV clade previously identified infecting Antarctica penguins. The identified deltaCov is most closely related to a deltacoronavirus previously identified 2014 in P. papua penguin sampled at Isla Kopaitik, Base OHiggin suggesting a potential cross species transmission. The presence of CoVs in Antarctic migratory seabirds raises concerns about their impact on the wild bird population in Antarctica and their potential role in virus dispersion through intra and intercontinental migratory routes. These findings contribute valuable insights into virus dynamics among seabird populations, laying the groundwork for future investigations in this field and warning of the importance of viral surveillance on the Antarctic fauna. RepositoriesThe raw reads were submitted to NCBI Sequence Read Archive (SRA) database and are available under project number: PRJNA1160912 and Run Accessions: SRR30664529 and SRR30664530. Impact statementThis study provides insights into the presence of respiratory viruses, specifically coronaviruses (CoVs), in Antarctic seabirds. By detecting a novel wild bird deltacoronavirus in gulls population in the South Shetland Islands, our research contributes to the growing body of literature on viral transmission in remote ecosystems. The findings highlight the potential of migratory birds to act as reservoirs and vectors of viruses in the Antarctic region and underscores the urgent need for continued viral surveillance.

genomics↗

EEfinder, a tool for identification of bacterial and viral endogenized elements in eukaryotic genomes

Horizontal transfer is a phenomenon of genetic material transmission between species with no parental relationship. It has been characterized among several major branches of life, including among prokaryotes, viruses and eukaryotes. Genetic elements derived from horizontal transfer are known as Endogenous Bacterial Elements and Endogenous Viral Elements. Endogenous elements characterization provides a snapshot of past host-pathogen interactions and coevolution as well as a reference sequence information to remove false positive results from viral metagenomic studies. However, there is a current lack of standardized tools for endogenous elements identification, which hinder comparative studies and reproducibility within this field. Here we describe EEfinder, a new tool for identification and classification of endogenous elements derived from horizontal transfer. The tool was developed to include six standard steps performed in this type of analysis: data cleaning, pairwise alignment, filtering candidate elements, taxonomy assignment, merging of truncated elements and flanks extraction. We evaluated the sensitivity of EEfinder to identify endogenous elements through comparative analysis using data from the literature and showed that EEfinder can systematically identify endogenous elements with bacterial/viral origin.

bioinformatics↗