Coinfection of Chickens with H9N2 and H7N9 Avian Influenza Viruses Leads to Emergence of Reassortant H9N9 Virus with Increased Fitness for Poultry and a Zoonotic Potential.

Sushant Bhat1 Joe James2 Jean-Remy Sadeyen1 Sahar Mahmood2 Holly J Everest2 Pengxiang Chang1 Sarah K Walsh2 Alexander M P Byrne2 Benjamin Mollett2 Fabian Lean2 Joshua E Sealy1 Holly Shelton1 Marek J Slomka2 Sharon M Brookes2 Munir Iqbal1
Affiliations 2 institutions
  1. Avian Influenza Group, The Pirbright Institutegrid.63622.33, Woking, United Kingdom.
  2. Virology Department, Animal & Plant Health Agency, Weybridge, United Kingdom.

Abstract

An H7N9 low-pathogenicity avian influenza virus (LPAIV) emerged in 2013 through genetic reassortment between H9N2 and other LPAIVs circulating in birds in China. This virus causes inapparent clinical disease in chickens, but zoonotic transmission results in severe and fatal disease in humans. To examine a natural reassortment scenario between H7N9 and G1 lineage H9N2 viruses predominant in the Indian subcontinent, we performed an experimental coinfection of chickens with A/Anhui/1/2013/H7N9 (Anhui/13) virus and A/Chicken/Pakistan/UDL-01/2008/H9N2 (UDL/08) virus. Plaque purification and genotyping of the reassortant viruses shed via the oropharynx of contact chickens showed H9N2 and H9N9 as predominant subtypes. The reassortant viruses shed by contact chickens also showed selective enrichment of polymerase genes from H9N2 virus. The viable "6+2" reassortant H9N9 (having nucleoprotein [NP] and neuraminidase [NA] from H7N9 and the remaining genes from H9N2) was successfully shed from the oropharynx of contact chickens, plus it showed an increased replication rate in human A549 cells and a significantly higher receptor binding to α2,6 and α2,3 sialoglycans compared to H9N2. The reassortant H9N9 virus also had a lower fusion pH, replicated in directly infected ferrets at similar levels compared to H7N9 and transmitted via direct contact. Ferrets exposed to H9N9 via aerosol contact were also found to be seropositive, compared to H7N9 aerosol contact ferrets. To the best of our knowledge, this is the first study demonstrating that cocirculation of H7N9 and G1 lineage H9N2 viruses could represent a threat for the generation of novel reassortant H9N9 viruses with greater virulence in poultry and a zoonotic potential. IMPORTANCE We evaluated the consequences of reassortment between the H7N9 and the contemporary H9N2 viruses of the G1 lineage that are enzootic in poultry across the Indian subcontinent and the Middle East. Coinfection of chickens with these viruses resulted in the emergence of novel reassortant H9N9 viruses with genes derived from both H9N2 and H7N9 viruses. The "6+2" reassortant H9N9 (having NP and NA from H7N9) virus was shed from contact chickens in a significantly higher proportion compared to most of the reassortant viruses, showed significantly increased replication fitness in human A549 cells, receptor binding toward human (α2,6) and avian (α2,3) sialic acid receptor analogues, and the potential to transmit via contact among ferrets. This study demonstrated the ability of viruses that already exist in nature to exchange genetic material, highlighting the potential emergence of viruses from these subtypes with zoonotic potential.

Supporting text Virus Host Location
avian influenza viruses 5 coinfection 15 ferrets 79 genetic reassortment 4 H7N9 27 H9N2 27 H9N9 1 poultry 130 virus transmission 4 zoonosis 116 Coinfection 15 Influenza A Virus, H7N9 Subtype 87 Influenza A Virus, H9N2 Subtype 71 Influenza in Birds 341 Reassortant Viruses 103 Animals 1949 Chickens 146 Ferrets 79 Humans 1441 Influenza, Human 286 Phylogeny 805 Poultry 112

Evidence records

4 total
Zoonotic Surveillance
2 records · 1 evidence types
Evidence type
2 records
OVE5531
Key finding

Viable H9N9 virus was isolated by plaque purification from oropharyngeal samples of contact chickens after coinfection with H7N9 and H9N2.

Virus
Host
Location
Not specified
Supporting text

Plaque purification and genotyping of the reassortant viruses shed via the oropharynx of contact chickens showed H9N2 and H9N9 as predominant subtypes.

Sample type
oropharyngeal samples
OVE5532
Key finding

Viable H9N2 virus was recovered through plaque purification from oropharyngeal samples of contact chickens following co-infection.

Virus
Host
Location
Not specified
Supporting text

Plaque purification and genotyping of the reassortant viruses shed via the oropharynx of contact chickens showed H9N2 and H9N9 as predominant subtypes.

Sample type
oropharyngeal samples
Experimental Infection
1 records · 1 evidence types
Evidence type
1 records
OVE5534
Key finding

The reassortant H9N9 virus replicated efficiently in experimentally infected ferrets at levels comparable to H7N9, demonstrating susceptibility of ferrets to H9N9 infection.

Virus
Host
Location
Not specified
Supporting text

The reassortant H9N9 virus also had a lower fusion pH, replicated in directly infected ferrets at similar levels compared to H7N9 and transmitted via direct contact.

Method
direct infection of ferrets | replication assay | viral titration or detection in infected animals
Experimental system
animal infection model (ferret challenge experiment)
Functional Mechanism
1 records · 1 evidence types
Evidence type
1 records
OVE5533
Key finding

The reassortant H9N9 virus, carrying polymerase genes from H9N2, showed enhanced replication in human A549 cells, lower HA fusion pH, and increased binding to both α2,6- and α2,3-linked sialic acid receptors compared to its parental H9N2 virus.

Virus
Host
Not specified
Location
Not specified
Supporting text

The viable '6+2' reassortant H9N9 ... showed an increased replication rate in human A549 cells and a significantly higher receptor binding to α2,6 and α2,3 sialoglycans compared to H9N2. The reassortant H9N9 virus also had a lower fusion pH.

Genes or proteins
polymerase genes | HA | NA | NP
Receptors
α2,6 sialoglycan | α2,3 sialoglycan
Host factors
human A549 cells
Mechanism types
receptor binding | host entry | replication adaptation | host-range expansion