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Hernandez-Mora, G.

Publications and source records attributed to Hernandez-Mora, G..

2 recordsLinked to original sources

Infection of neotropical non-human primates with bat deltaviruses

Background & Aims: The origin of hepatitis D virus (HDV) and related deltaviruses remains elusive. Contrarily, hepatitis B virus, HDV's helper virus, and related hepadnaviruses display long-term association with primates. Current data suggest cross-order host shifts as a common mechanism in deltavirus ecology, but corroborative evidence is lacking. Here, we aimed to elucidate the genealogy of primate deltaviruses. Methods: We screened 961 non-human primate (NHP) liver specimens obtained in Brazil between 2017-2023 for deltaviruses and hepadnaviruses. Complete deltaviral genomes were obtained via overlapping nested RT-PCR, cloned, expressed in vitro and analyzed via immunoblot and immunofluorescence analysis. Anti-deltaviral antibodies in NHP and vampire bats were detected via immunofluorescence analysis. Results: We detected deltaviruses in two NHP. Complete deltaviral genomes exhibited common features including high self-complementarity, genomic and antigenomic ribozymes, and a delta antigen open reading frame. NHP deltaviruses were phylogenetically related to viruses found in common vampire bats. The NHP deltaviruses replicated in vitro without the expression of a large delta antigen. We did not detect anti-deltaviral antibodies in NHP sera (0/249), in contrast to sera from common vampire bats (7/112; 6.2%, 95% CI: 1.8-10.7), indicating viral circulation in bats. Ancestral state reconstruction suggested a bat origin of NHP deltaviruses. Targeted screening excluded a coinfecting hepadnavirus in the deltavirus-positive animals but led to the discovery of a hepadnavirus, corroborating a non-recent introduction of hepadnaviruses into the primate stem-lineage. Conclusions: Our data are consistent with deltaviral cross-order host shifts and suggestive of the susceptibility of primates to reservoir-bound deltaviruses, lending credibility to a zoonotic origin of HDV.

microbiology↗

Origins and evolutionary trajectories of morbilliviruses in Neotropical bats

Bats are important reservoirs of paramyxoviruses, yet their role in the evolutionary origins of morbilliviruses like measles and rinderpest viruses remains unclear. Investigating wild bats (38/1,629 RT-PCR positive) and non-human primates (NHP, 13/1,370 RT-PCR-positive) from Latin America coupled with data mining, we identified six divergent morbilliviruses. High morbillivirus concentrations in bat organs and morbillivirus RNA staining in NHP livers suggested systemic infection. Of 117 vampire bats, 35.9% had neutralizing antibodies against a primary vampire bat morbillivirus isolate, suggesting frequent survived infections. Usage of bat, but not human, CD150 for cell entry and partial cross-neutralization of bat-associated morbillivirus by heterologous sera suggested conserved entry and antigenicity. Macro-evolutionary reconstructions revealed a predominant role of Neotropical bats during morbilliviral diversification, including bat-associated host shifts into Mexican pigs and Brazilian NHPs. These data argue for increased surveillance, experimental risk assessments, vaccine development, and intervention strategies to cease future outbreaks of previously reservoir-bound morbilliviruses.

microbiology↗