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Dezordi, F.

Publications and source records attributed to Dezordi, F..

2 recordsLinked to original sources

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↗

Highly pathogenic avian influenza H5N1 virus infections in pinnipeds and seabirds in Uruguay: a paradigm shift to virus transmission in South America

The highly pathogenic avian influenza viruses of the clade 2.3.4.4b have caused unprecedented deaths in South American wild birds, poultry, and marine mammals. In September 2023, pinnipeds and seabirds appeared dead on the Uruguayan Atlantic coast. Sixteen influenza virus strains were characterized by real-time reverse transcription PCR and genome sequencing in samples from sea lions (Otaria flavescens), fur seals (Arctocephalus australis), and terns (Sterna hirundinacea). Phylogenetic and ancestral reconstruction analysis showed that these strains have pinnipeds as the most likely ancestral host, representing a recent introduction of the clade 2.3.4.4b in Uruguay. The Uruguayan and closely related strains from Peru (sea lions) and Chile (sea lions and a human case) carry mammalian adaptative residues 591K and 701N in the viral polymerase basic protein 2 (PB2). Our findings suggest that the clade 2.3.4.4b strains in South America may have spread from mammals to mammals and seabirds, revealing a new transmission route.

microbiology↗