Influenza A virus reassortment in mammals gives rise to genetically distinct within-host sub-populations
Ganti, K.; Bagga, A.; Carnaccini, S.; Ferreri, L. M.; Geiger, G.; Caceres, J.; Seibert, B. A.; Li, Y.; Wang, L.; Kwon, T.; Li, Y.; Morozov, I.; Ma, W.; Richt, J. A.; Perez, D. R.; Koelle, K.; Lowen, A. C.
Show abstract
Influenza A virus (IAV) genetic exchange through reassortment has the potential to accelerate viral evolution and has played a critical role in the generation of multiple pandemic strains. For reassortment to occur, distinct viruses must co-infect the same cell. The spatio-temporal dynamics of viral dissemination within an infected host therefore define opportunity for reassortment. Here, we used wild type and synonymously barcoded variant viruses of a pandemic H1N1 strain to examine the within-host viral dynamics that govern reassortment in guinea pigs, ferrets and swine. The first two species are well-established models of human influenza, while swine are a natural host and a frequent conduit for cross-species transmission and reassortment. Our results show reassortment to be pervasive in all three hosts but less frequent in swine than in ferrets and guinea pigs. In ferrets, tissue-specific differences in the opportunity for reassortment are also evident, with more reassortants detected in the nasal tract than the lower respiratory tract. While temporal trends in viral diversity are limited, spatial patterns are clear, with heterogeneity in the viral genotypes detected at distinct anatomical sites revealing extensive compartmentalization of reassortment and replication. Our data indicate that the dynamics of viral replication in mammals allow diversification through reassortment but that the spatial compartmentalization of variants likely shapes their evolution and onward transmission.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Influenza A virus undergoes compartmentalized replication in vivo dominated by stochastic bottlenecks 97%
- Polymerase mutations underlie early adaptation of H5N1 influenza virus to dairy cattle and other mammals. 96%
- The potential of H5N1 viruses to adapt to bovine cells varies throughout evolution 96%
Similar papers in this journal
- Evaluating the fitness of PA/I38T-substituted influenza A viruses with reduced baloxavir susceptibility in a competitive mixtures ferret model 96%
- A common pattern of influenza A virus single cell gene expression heterogeneity governs the innate antiviral response to infection 95%
- In vitro evolution of Remdesivir resistance reveals genome plasticity of SARS-CoV-2 95%
Similar papers in this journal
- Rapid dissemination and monopolization of viral populations in mice revealed using a panel of barcoded viruses 96%
- RSV F evolution escapes some monoclonal antibodies but does not strongly erode neutralization by human polyclonal sera 96%
- Within-host evolutionary dynamics and tissue compartmentalization during acute SARS-CoV-2 infection 95%
Similar papers in this journal
Similar papers in this journal
- Systems immunology of transcriptional responses to viral infection identifies conserved antiviral pathways across macaques and humans 95%
- Recurrent emergence and transmission of a SARS-CoV-2 Spike deletion H69/V70 95%
- Antibody evasion and receptor binding of SARS-CoV-2 LP.8.1.1, NB.1.8.1, XFG, and related subvariants 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.