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Biology subjects

da Rosa, A. R.

Publications and source records attributed to da Rosa, A. R..

2 recordsLinked to original sources

Viral metagenomics of synanthropic urban bats: a surveillance strategy for uncovering potentially zoonotic viruses

Bats are natural reservoirs for diverse viruses, including coronaviruses, filoviruses, and paramyxoviruses, many leading to zoonotic spillover events and demanding an integrated surveillance. Here, we present a framework that leverages Brazils rabies passive surveillance program to detect bat-borne viruses. Using an algorithm to select representative specimens from 2,422 bats collected across Sao Paulo state, we submitted 150 paired lung and intestine samples to nanopore metagenomic sequencing. We detected 98 viral contigs from 12 families of public health relevance, including Arenaviridae, Coronaviridae, and Paramyxoviridae. Notably, the approach identified a previously unknown filovirus in bats in the Americas, validating the frameworks capacity for epidemic preparedness. These findings reveal an undetected viral diversity and demonstrate how existing animal surveillance can monitor pathogen threats. Crucially, in a workshop involving multisectoral One Health experts in Brazil, this framework was validated as a scalable model for national expansion, adapted for low- and middle-income countries (LMICs). One-sentence summary lineThe study introduces a viral surveillance method using metagenomics in bats, offering a scalable, cost-effective model for operationalizing One Health surveillance, especially relevant to low- and middle-income countries.

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↗