Molossus molossus bats encompass at least two distinct genera of totivirus-like

Author:

Silva Couto Roseane da,Foro Ramos Endrya do Socorro,Abreu Wandercleyson Uchôa,Ribeiro Rodrigues Luis Reginaldo,Marinho Luis Fernando,Santos Morais Vanessa dos,Villanova Fabiola,Pandey Ramendra PatiORCID,Deng Xutao,Delwart Eric,da Costa Antonio Charlys,Leal ElcioORCID

Abstract

AbstractThe Totiviridae family of viruses has a unique genome consisting of double-stranded RNA with two open reading frames that encode the capsid protein (Cap) and the RNA-dependent RNA polymerase (RdRp). Most virions in this family are isometric in shape, approximately 40 nm in diameter, and lack envelope. There are five genera within this family, including Totivirus,Victorivirus, Giardiavirus, Leishmaniavirus, andTrichomonasvirus. WhileTotivirusandVictorivirusprimarily infect fungi,Giardiavirus, Leishmaniavirus, andTrichomonasvirusinfect diverse hosts, including protists, insects, and vertebrates. Recently, new totivirus-like species have been discovered in fish and plant hosts, and through metagenomic analysis, a novel totivirus-like virus (named Tianjin totivirus) has been isolated from bat guano. Interestingly, Tianjin totivirus causes cytopathic effects in insect cells but cannot grow in mammalian cells, suggesting that it infects insects consumed by insectivorous bats. In this study, we used next-generation sequencing and identified totivirus-like viruses in liver tissue fromMolossus molossusbats () in the Amazon region of Brazil. Comparative phylogenetic analysis based on the RNA-dependent RNA polymerase region revealed that the viruses identified in Molossus bats belong to two distinct phylogenetic clades, possibly comprising different genera within the Totiviridae family. Notably, the mean similarity between Tianjin totivirus and the totiviruses identified in Molossus bats is less than 18%. These findings suggest that the diversity of totiviruses in bats is more extensive than previously recognized and highlight the potential for bats to serve as reservoirs for novel toti-like viruses.

Publisher

Cold Spring Harbor Laboratory

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