Related Experiment Video
Updated: May 6, 2026

Generation of Recombinant Influenza Virus from Plasmid DNA
Published on: August 4, 2010
The role of genomics in tracking the evolution of influenza A virus
Alice Carolyn McHardy1, Ben Adams
1Computational Genomics and Epidemiology, Max Planck Institute for Informatics, Saarbruecken, Germany. mchardy@mpi-inf.mpg.de
Abstract:
Influenza A virus causes annual epidemics and occasional pandemics of short-term respiratory infections associated with considerable morbidity and mortality. The pandemics occur when new human-transmissible viruses that have the major surface protein of influenza A viruses from other host species are introduced into the human population. Between such rare events, the evolution of influenza is shaped by antigenic drift: the accumulation of mutations that result in changes in exposed regions of the viral surface proteins. Antigenic drift makes the virus less susceptible to immediate neutralization by the immune system in individuals who have had a previous influenza infection or vaccination. A biannual reevaluation of the vaccine composition is essential to maintain its effectiveness due to this immune escape. The study of influenza genomes is key to this endeavor, increasing our understanding of antigenic drift and enhancing the accuracy of vaccine strain selection. Recent large-scale genome sequencing and antigenic typing has considerably improved our understanding of influenza evolution: epidemics around the globe are seeded from a reservoir in East-Southeast Asia with year-round prevalence of influenza viruses; antigenically similar strains predominate in epidemics worldwide for several years before being replaced by a new antigenic cluster of strains. Future in-depth studies of the influenza reservoir, along with large-scale data mining of genomic resources and the integration of epidemiological, genomic, and antigenic data, should enhance our understanding of antigenic drift and improve the detection and control of antigenically novel emerging strains.
Related Concept Videos
Viral Mutations
Genomics
Evolutionary Relationships through Genome Comparisons
Modern Molecular Taxonomy
Evolution of Microbial Genome
Influenza

