Deep Sequencing of Influenza A Virus from a Human Challenge Study Reveals a Selective Bottleneck and Only Limited Intrahost Genetic Diversification

Abstract

Knowledge of influenza virus evolution at the point of transmission and at the intrahost level remains limited, particularly for human hosts. Here, we analyze a unique viral data set of next-generation sequencing (NGS) samples generated from a human influenza challenge study wherein 17 healthy subjects were inoculated with cell- and egg-passaged virus. Nasal wash samples collected from 7 of these subjects were successfully deep sequenced. From these, we characterized changes in the subjects' viral populations during infection and identified differences between the virus in these samples and the viral stock used to inoculate the subjects. We first calculated pairwise genetic distances between the subjects' nasal wash samples, the viral stock, and the influenza virus A/Wisconsin/67/2005 (H3N2) reference strain used to generate the stock virus. These distances revealed that considerable viral evolution occurred at various points in the human challenge study. Further quantitative analyses indicated that (i) the viral stock contained genetic variants that originated and likely were selected for during the passaging process, (ii) direct intranasal inoculation with the viral stock resulted in a selective bottleneck that reduced nonsynonymous genetic diversity in the viral hemagglutinin and nucleoprotein, and (iii) intrahost viral evolution continued over the course of infection. These intrahost evolutionary dynamics were dominated by purifying selection. Our findings indicate that rapid viral evolution can occur during acute influenza infection in otherwise healthy human hosts when the founding population size of the virus is large, as is the case with direct intranasal inoculation.

Document Details

Document Type
Pub Defense Publication
Publication Date
Dec 15, 2016
Source ID
10.1128/jvi.01657-16

Entities

People

  • Amy Ransier
  • Anthony S. Gilbert
  • Ashley Sobel Leonard
  • Christopher W Woods
  • David E. Wentworth
  • Gavin J.D. Smith
  • Geoffrey S Ginsburg
  • Katia Koelle
  • Micah T McClain
  • Rebecca A. Halpin
  • Robert Lambkin-Williams
  • Suman Ranjan Das
  • Timothy B Stockwell
  • Xudong Lin

Organizations

  • Duke University
  • Duke–NUS Medical School
  • J. Craig Venter Institute
  • National Institute of Allergy and Infectious Diseases
  • National Institute of General Medical Sciences
  • National Institutes of Health

Tags

Fields of Study

  • Biology

Readers

  • Immunology
  • Molecular Genetics

Technology Areas

  • Biotechnology