Characterization of a 2016-2017 Human Seasonal H3 Influenza A Virus Spillover Now Endemic to U.S. Swine.

Aditi Sharma1 Michael A Zeller1 Carine K Souza2 Tavis K Anderson2 Amy L Vincent2 Karen Harmon1 Ganwu Li1 Jianqiang Zhang1 Phillip C Gauger1
Affiliations 2 institutions
  1. Department of Veterinary Diagnostic and Production Animal Medicine, College of Veterinary Medicine, Iowa State Universitygrid.34421.30, Ames, Iowa, USA.
  2. Virus and Prion Research Unit, National Animal Disease Center, USDA-ARS, Ames, Iowa, USA.

Abstract

In 2017, the Iowa State University Veterinary Diagnostic Laboratory detected a reverse-zoonotic transmission of a human seasonal H3 influenza A virus into swine (IAV-S) in Oklahoma. Pairwise comparison between the recently characterized human seasonal H3 IAV-S (H3.2010.2) hemagglutinin (HA) sequences detected in swine and the most similar 2016-2017 human seasonal H3 revealed 99.9% nucleotide identity. To elucidate the origin of H3.2010.2 IAV-S, 45 HA and 27 neuraminidase (NA) sequences from 2017 to 2020 as well as 11 whole-genome sequences (WGS) were genetically characterized. Time to most recent common human ancestor was estimated between August and September 2016. The N2 NA was of human origin in all but one strain from diagnostic submissions with NA sequences, and the internal gene segments from WGS consisted of matrix genes originating from the 2009 pandemic H1N1 and another 5 internal genes of triple reassortant swine origin (TTTTPT). Pigs experimentally infected with H3.2010.2 demonstrated efficient nasal shedding and replication in the lungs, mild pneumonia, and minimal microscopic lung lesions and transmitted the virus to indirect contact swine. Antigenically, H3.2010.2 viruses were closer to a human seasonal vaccine strain, A/Hong Kong/4801/2014, than to the H3.2010.1 human seasonal H3 viruses detected in swine in 2012. This was the second sustained transmission of a human seasonal IAV into swine from the 2010 decade after H3.2010.1. Monitoring the spillover and detection of novel IAV from humans to swine may help vaccine antigen selection and could impact pandemic preparedness. IMPORTANCE H3.2010.2 is a new phylogenetic clade of H3N2 circulating in swine that became established after the spillover of a human seasonal H3N2 from the 2016-2017 influenza season. The novel H3.2010.2 transmitted and adapted to the swine host and demonstrated reassortment with internal genes from strains endemic to pigs, but it maintained human-like HA and NA. It is genetically and antigenically distinct from the H3.2010.1 H3N2 introduced earlier in the 2010 decade. Human seasonal IAV spillovers into swine become established in the population through adaptation and sustained transmission and contribute to the genetic and antigenic diversity of IAV circulating in swine. Continued IAV surveillance is necessary to detect emergence of novel strains in swine and assist with vaccine antigen selection to improve the ability to prevent respiratory disease in swine as well as the risk of zoonotic transmission.

Supporting text Virus Host Location
H3.2010.2 1 H3N2 7 human-to-swine spillover 1 influenza A virus 227 reverse zoonosis 38 swine 267 Influenza A Virus, H3N2 Subtype 48 Orthomyxoviridae Infections 228 Swine Diseases 153 Animals 1948 Humans 1440 Influenza A Virus, H1N1 Subtype 74 Neuraminidase 62 Phylogeny 805 Seasons 47 Swine 258 Vaccines 3

Evidence records

5 total
Transmission Evidence
1 records · 1 evidence types
Evidence type
1 records
OVE5525
Key finding

A human seasonal H3 influenza A virus was transmitted from humans into swine in Oklahoma in 2017.

Virus
Host
Location
Supporting text

In 2017, the Iowa State University Veterinary Diagnostic Laboratory detected a reverse-zoonotic transmission of a human seasonal H3 influenza A virus into swine (IAV-S) in Oklahoma.

Method
virus detection | genomic comparison | laboratory diagnostic testing
Study design
veterinary diagnostic detection of reverse-zoonotic event
Transmission direction
human-to-animal
Geographic raw
Oklahoma
Experimental Infection
1 records · 1 evidence types
Evidence type
1 records
OVE5528
Key finding

Pigs experimentally infected with H3.2010.2 transmitted the virus to indirect contact swine under controlled conditions.

Virus
Host
Location
Not specified
Supporting text

Pigs experimentally infected with H3.2010.2 demonstrated efficient nasal shedding and replication in the lungs, mild pneumonia, and minimal microscopic lung lesions and transmitted the virus to indirect contact swine.

Method
experimental inoculation | contact exposure | virological detection of shedding | pathological examination
Experimental system
animal transmission model involving experimentally inoculated pigs and indirect contact recipient pigs
Functional Mechanism
1 records · 1 evidence types
Evidence type
1 records
OVE5529
Key finding

After spillover from humans, the H3.2010.2 influenza A virus adapted to swine while retaining human-like HA and NA sequences, showing host-range adaptation without major antigenic shift.

Virus
Host
Not specified
Location
Not specified
Supporting text

The novel H3.2010.2 transmitted and adapted to the swine host and demonstrated reassortment with internal genes from strains endemic to pigs, but it maintained human-like HA and NA.

Genes or proteins
HA | NA
Mechanism types
host-range expansion | virulence adaptation | transmission fitness
Genomic Evolution
2 records · 2 evidence types
Evidence type
1 records
OVE5527
Key finding

The H3.2010.2 influenza A virus detected in U.S. swine was a reassortant containing matrix genes from 2009 pandemic H1N1 and five internal genes of triple reassortant swine origin.

Virus
Host
Not specified
Location
Not specified
Supporting text

The internal gene segments from WGS consisted of matrix genes originating from the 2009 pandemic H1N1 and another 5 internal genes of triple reassortant swine origin (TTTTPT).

Event type
reassortment
Genes or segments
matrix gene | five internal genes
Evidence type
1 records
OVE5526
Key finding

Phylogenetic comparison showed that the swine H3.2010.2 hemagglutinin sequence shares 99.9% nucleotide identity with the 2016–2017 human seasonal H3, indicating a common human ancestor in late 2016.

Virus
Host
Location
Not specified
Supporting text

Pairwise comparison between the recently characterized human seasonal H3 IAV-S (H3.2010.2) hemagglutinin (HA) sequences detected in swine and the most similar 2016-2017 human seasonal H3 revealed 99.9% nucleotide identity. Time to most recent common human ancestor was estimated between August and September 2016.

Genes or proteins
hemagglutinin (HA)
Analysis methods
pairwise comparison | phylogenetic analysis | time to most recent common ancestor estimation