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Franco, L. A. M.

Publications and source records attributed to Franco, L. A. M..

2 recordsLinked to original sources

Genomic Epidemiology of Canine Distemper Virus (CDV) in Neotropical Primates in Brazil Reveals Multiple Spillover Events and Convergent Evolution at Hemagglutinin Residue 519

Canine distemper virus (CDV; Morbillivirus canis) is a multi-host paramyxovirus primarily maintained in the order Carnivora. However, recent outbreaks in Neotropical primates suggest recurrent cross-species spillover into non-human primates. Between May and July 2022, seven marmosets (Callithrix penicillata) were found dead in urban and peri-urban areas of Montes Claros, Minas Gerais, Brazil. Viral metagenomic sequencing recovered two near complete CDV genomes directly from liver samples. Maximum likelihood and Bayesian phylogenetic analyses placed these genomes within the South American CDV lineage and supported at least three independent zoonotic introductions into Callithrix populations. Domestic dogs (Canis lupus familiaris) were inferred as the most likely source and the crab-eating fox (Cerdocyon thous) as a probable bridge host. Ancestral-state reconstruction identified a substitution at position 519 of the hemagglutinin (H) protein (R519I in the two primate clades and R519G in a singleton primate sequence). In silico modelling of the marmoset signaling lymphocytic activation molecule (SLAM) complex was consistent with a modest reorganisation of the receptor-binding head in the 519-substituted variants (ipTM = 0.82), generating a testable hypothesis that this residue may contribute to adaptation at the primate SLAM receptor interface and is associated with altered predicted docking orientation for the receptor. Together, these findings suggest that residue 519 is a candidate marker of CDV adaptation to Neotropical primates and emphasise the importance of integrating genomic surveillance with domestic dog vaccination efforts under a One Health framework to reduce the threat of CDV spillover to vulnerable wildlife populations.

genomics↗

Metagenomic enables the first detection of Trypanosoma sp. in Streblidae (Diptera: Hippoboscoidea) parasitizing bats in Sao Paulo, Brazil.

Bats play important ecological roles but also can carry various pathogens, including trypanosomatids. This study reports the first detection of Trypanosoma sp. in flies from the Streblidae family parasitizing Carollia perspicillata bats in a peri-urban fragment of the Atlantic Forest in Sao Paulo. Using shotgun metagenomics, we detected Trypanosoma sequences in half of the fly samples analyzed. Phylogenetic analysis showed these sequences belong to the Neobat 4 clade, previously reported in Carollia sp. bats. Although streblid flies ability to transmit Trypanosoma is still unknown, their close connection with bats means they might be used as a non-invasive way to monitor pathogens when bat sampling is difficult. More research is needed, but this work expands what we know about the Neobat 4 clades geographic distribution and parasite circulation in bats and their ectoparasites.

microbiology↗