Coronavirus Detection in Bats Captured on the Deforestation Arc of Mato Grosso, Brazil.

Matheus Augusto Calvano Cosentino1 Victor Wanderkoke1 Francimeire Fernandes Ferreira2 Sergio Gomes Silva3 Mirela D'arc1 André Felipe Andrade Dos Santos1
Affiliations 3 institutions
  1. Laboratório de Diversidade e Doenças Virais, Universidade Federal do Rio de Janeiro, Rio de Janeiro, Brazil.
  2. Coordenadoria Técnica da Unidade de Vigilância de Zoonoses, Secretaria Municipal de Saúde de Cuiabá, Mato Grosso, Brazil.
  3. Departamento de Ecologia Do Instituto Federal Do Mato Grosso (IFMT), Mato Grosso, Brazil.

Abstract

Coronaviruses (CoV) are RNA viruses associated with enteric and respiratory diseases and known for their emergence potential in humans and other mammals. CoVs originate from zoonotic transmission, in which bats are natural reservoirs. Previous studies suggest that CoV diversity is positively correlated with bat diversity, whereas anthropogenic influence can increase prevalence in bat hosts. The present study investigates the presence of CoVs in bats in the Amazon-Cerrado transition region in the state of Mato Grosso, Brazil. In total, 57 individuals were captured, belonging to 17 species in 7 subfamilies and 4 families. Among the captured bats in the region, the most abundant species were Carollia perspicillata (24.6%; 14/57), C. brevicauda (17.5%; 10/57), and Phyllostomus hastatus (10.5%; 6/57). Bat sampling richness evidenced a diversity pattern consistent with fragmented forests. A total of 16 faecal samples were collected and tested for CoV infection, with 2 positive samples sequenced (12.5%; 95% CI 3.49-36.02). Phylogenetic analyses characterised the CoVs found as divergent sequences within distinct branches of American Alphacoronavirus lineages previously reported. The RdRp phylogenetic tree exhibited biome-associated structuring as well as multiple bat host species within the clades, indicating a wide distribution within hosts and biomes. Nevertheless, further studies are necessary to ascertain the relationship between CoV spatial dynamics and the role of the Brazilian Amazon-Cerrado transition zone, where deforestation increases human-bat contact and access its spillover potential risk.

Supporting text Virus Host Location
Coronaviridae 17 molecular detection 5 phylogenetics 29 RT‐PCR 2 Chiroptera 371 Coronavirus 92 Coronavirus Infections 171 Animals 1948 Brazil 50 Conservation of Natural Resources 4 Feces 113 Phylogeny 805

Evidence records

2 total
Zoonotic Surveillance
1 records · 1 evidence types
Evidence type
1 records
OVE10573
Key finding

Coronavirus RNA was detected and sequenced from bat faecal samples collected in the Amazon‑Cerrado transition region of Mato Grosso, Brazil.

Virus
Host
Location
Supporting text

The present study investigates the presence of CoVs in bats in the Amazon-Cerrado transition region in the state of Mato Grosso, Brazil. A total of 16 faecal samples were collected and tested for CoV infection, with 2 positive samples sequenced (12.5%; 95% CI 3.49-36.02).

Method
testing for CoV infection | sequencing | phylogenetic analysis
Sample type
faecal samples
Geographic raw
Amazon-Cerrado transition region | Mato Grosso, Brazil
Country inferred
BRA
Genomic Evolution
1 records · 1 evidence types
Evidence type
1 records
OVE10574
Key finding

Phylogenetic analysis of coronavirus sequences from bats in Brazil showed they form divergent branches within American Alphacoronavirus lineages, with tree structuring by biome and multiple bat hosts represented in clades.

Virus
Host
Location
Not specified
Supporting text

Phylogenetic analyses characterised the CoVs found as divergent sequences within distinct branches of American Alphacoronavirus lineages previously reported. The RdRp phylogenetic tree exhibited biome-associated structuring as well as multiple bat host species within the clades, indicating a wide distribution within hosts and biomes.

Genes or proteins
RdRp
Analysis methods
phylogenetic analysis | phylogenetic tree