Genomoviruses in Liver Samples of Molossus molossus Bats

Author:

Couto Roseane da Silva1,Abreu Wandercleyson Uchôa2ORCID,Rodrigues Luís Reginaldo Ribeiro3ORCID,Marinho Luis Fernando4ORCID,Morais Vanessa dos Santos5ORCID,Villanova Fabiola1ORCID,Pandey Ramendra Pati6ORCID,Deng Xutao7,Delwart Eric8ORCID,da Costa Antonio Charlys5ORCID,Leal Elcio1ORCID

Affiliation:

1. Laboratório de Diversidade Viral, Instituto de Ciências Biológicas, Universidade Federal do Pará, Belem 66075-000, PA, Brazil

2. Programa de Pos-Graduação REDE Bionorte, Polo Pará, Universidade Federal do Oeste do Pará, Santarém 68040-255, PA, Brazil

3. Laboratory of Genetics & Biodiversity, Institute of Educational Sciences, Universidade Federal do Oeste do Pará, Santarém 68040-255, PA, Brazil

4. University of Amazonia, Santarém 68040-255, PA, Brazil

5. Laboratory of Virology (LIM 52), Instituto de Medicina Tropical, Universidade de São Paulo, São Paulo 05403-000, SP, Brazil

6. School of Health Sciences & Technology, UPES University, Dehradun 248007, Uttarakhand, India

7. Vitalant Research Institute, San Francisco, CA 94143, USA

8. Department Laboratory Medicine, University of California San Francisco, San Francisco, CA 94143, USA

Abstract

CRESS-DNA encompasses a broad spectrum of viruses documented across diverse organisms such as animals, plants, diatoms, fungi, and marine invertebrates. Despite this prevalence, the full extent of these viruses’ impact on the environment and their respective hosts remains incompletely understood. Furthermore, an increasing number of viruses within this category lack detailed characterization. This investigation focuses on unveiling and characterizing viruses affiliated with the Genomoviridae family identified in liver samples from the bat Molossus molossus. Leveraging viral metagenomics, we identified seven sequences (MmGmV-PA) featuring a circular DNA genome housing two ORFs encoding replication-associated protein (Rep) and capsid protein (Cap). Predictions based on conserved domains typical of the Genomoviridae family were established. Phylogenetic analysis revealed the segregation of these sequences into two clades aligning with the genera Gemycirculavirus (MmGmV-06-PA and MmGmV-07-PA) and Gemykibivirus (MmGmV-01-PA, MmGmV-02-PA, MmGmV-03-PA, MmGmV-05-PA, and MmGmV-09-PA). At the species level, pairwise comparisons based on complete nucleotide sequences indicated the potential existence of three novel species. In summary, our study significantly contributes to an enhanced understanding of the diversity of Genomoviridae within bat samples, shedding light on previously undiscovered viral entities and their potential ecological implications.

Funder

Coordination for the Improvement of Higher Education Personnel—Brazil

HCFMUSP with funds donated by NUBANK under the #HCCOMVIDA scheme

Publisher

MDPI AG

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