Fitness Inference from Short-Read Data: Within-Host Evolution of a Reassortant H5N1 Influenza Virus.

Christopher J R Illingworth1
Affiliations 1 institutions
  1. Department of Genetics, University of Cambridge, Cambridge, United Kingdom [email protected].

Abstract

We present a method to infer the role of selection acting during the within-host evolution of the influenza virus from short-read genome sequence data. Linkage disequilibrium between loci is accounted for by treating short-read sequences as noisy multilocus emissions from an underlying model of haplotype evolution. A hierarchical model-selection procedure is used to infer the underlying fitness landscape of the virus insofar as that landscape is explored by the viral population. In a first application of our method, we analyze data from an evolutionary experiment describing the growth of a reassortant H5N1 virus in ferrets. Across two sets of replica experiments we infer multiple alleles to be under selection, including variants associated with receptor binding specificity, glycosylation, and with the increased transmissibility of the virus. We identify epistasis as an important component of the within-host fitness landscape, and show that adaptation can proceed through multiple genetic pathways.

Supporting text Virus Host Location
fitness landscape 1 influenza 61 linkage disequilibrium 2 selection 1 within-host evolution 2 Genetic Fitness 5 Adaptation, Physiological 33 Alleles 4 Animals 1948 Biological Evolution 28 Evolution, Molecular 176 Ferrets 79 Hemagglutinin Glycoproteins, Influenza Virus 180 Humans 1440 Influenza A Virus, H5N1 Subtype 300 Influenza, Human 286 Linkage Disequilibrium 1 Models, Genetic 6 Orthomyxoviridae Infections 228 Reassortant Viruses 103 Selection, Genetic 23

Evidence records

1 total
Genomic Evolution
1 records · 1 evidence types
Evidence type
1 records
OVE2161
Key finding

Within-host evolution of a reassortant H5N1 influenza virus in ferrets showed multiple adaptive genetic pathways shaped by epistasis.

Virus
Host
Location
Not specified
Supporting text

In a first application of our method, we analyze data from an evolutionary experiment describing the growth of a reassortant H5N1 virus in ferrets. We identify epistasis as an important component of the within-host fitness landscape, and show that adaptation can proceed through multiple genetic pathways.

Analysis methods
haplotype evolution modeling | hierarchical model-selection | fitness landscape inference from short-read genome sequence data