Influenza A viruses (IAV) can dramatically alter both genotype and phenotype at a rapid rate as a product of co-infection and reassortment Avian IAV exhibit high levels of phylogenetic incongruence, suggesting high levels of reassortment in the virus reservoir. Using a natural-experimental system, we reconstructed relationships amongst 92 viruses across 15 subtypes from 10 Mallards in an autumn season. Phylogenetic analyses estimated that 56% of the isolated viruses were reassorted. Network analysis demonstrated different patterns of reassortment and limited exchange of segments between primary and secondary infections. No clear patterns of linkage between segments were found, and patterns within a season were likely the consequence of cont...
The genetic material of influenza A virus consists of eight negative-sense RNA segments. Under suita...
<p>Influenza A virus is a major source of morbidity and mortality, annually resulting in over 9000 d...
The structured coalescent allows inferring migration patterns between viral subpopulations from gene...
Influenza A viruses (IAV) can dramatically alter both genotype and phenotype at a rapid rate as a pr...
AbstractInfluenza A viruses (IAV) can dramatically alter both genotype and phenotype at a rapid rate...
The emergence of novel influenza A viral lineages to which there is limited or no immunity remains a...
Background: The segmented RNA genome of avian Influenza viruses (AIV) allows genetic reassortment be...
We characterise the evolutionary dynamics of influenza infection described by viral sequence data co...
This thesis explores the evolution of avian influenza A viruses (IAV), as well as host-pathogen inte...
This thesis explores the evolution of avian influenza A viruses (IAV), as well as host-pathogen inte...
1. Biological diversity has long been used to measure ecological health. While evidence exists from ...
© 2017 Dr. Sanja TrifkovicThe segmented nature of the influenza genome allows the virus to undergo r...
<div><p>Understanding the evolutionary dynamics of influenza viruses is essential to control both av...
The segmented nature of the influenza virus genome allows reassortment between coinfecting viruses. ...
Large outbreaks of zoonotic influenza A virus (IAV) infections may presage an influenza pandemic. Ho...
The genetic material of influenza A virus consists of eight negative-sense RNA segments. Under suita...
<p>Influenza A virus is a major source of morbidity and mortality, annually resulting in over 9000 d...
The structured coalescent allows inferring migration patterns between viral subpopulations from gene...
Influenza A viruses (IAV) can dramatically alter both genotype and phenotype at a rapid rate as a pr...
AbstractInfluenza A viruses (IAV) can dramatically alter both genotype and phenotype at a rapid rate...
The emergence of novel influenza A viral lineages to which there is limited or no immunity remains a...
Background: The segmented RNA genome of avian Influenza viruses (AIV) allows genetic reassortment be...
We characterise the evolutionary dynamics of influenza infection described by viral sequence data co...
This thesis explores the evolution of avian influenza A viruses (IAV), as well as host-pathogen inte...
This thesis explores the evolution of avian influenza A viruses (IAV), as well as host-pathogen inte...
1. Biological diversity has long been used to measure ecological health. While evidence exists from ...
© 2017 Dr. Sanja TrifkovicThe segmented nature of the influenza genome allows the virus to undergo r...
<div><p>Understanding the evolutionary dynamics of influenza viruses is essential to control both av...
The segmented nature of the influenza virus genome allows reassortment between coinfecting viruses. ...
Large outbreaks of zoonotic influenza A virus (IAV) infections may presage an influenza pandemic. Ho...
The genetic material of influenza A virus consists of eight negative-sense RNA segments. Under suita...
<p>Influenza A virus is a major source of morbidity and mortality, annually resulting in over 9000 d...
The structured coalescent allows inferring migration patterns between viral subpopulations from gene...