Progressive Adaptation of Subtype H6N1 Avian Influenza Virus in Taiwan Enhances Mammalian Infectivity, Pathogenicity, and Transmissibility.

Zuoyi Zheng1,2 Xifeng Chen1 Rutian Zheng1 Zhigang Yan1 Long Li1 Rirong Chen1,2 Lifeng Li2 Yongmei Liu2 Yi Guan1,2 Huachen Zhu1,2
Affiliations 2 institutions
  1. Guangdong-Hong Kong Joint Laboratory of Emerging Infectious Diseases, Joint Laboratory for International Collaboration in Virology and Emerging Infectious Diseases (Key Laboratory of Ministry of Education), Joint Institute of Virology (Shantou University-The University of Hong Kong), Shantou University Medical College, Shantou University, Shantou 515063, China.
  2. State Key Laboratory of Emerging Infectious Diseases (SKLEID), School of Public Health, Li Ka Shing Faculty of Medicine, The University of Hong Kong, Hong Kong SAR, China.

Abstract

The interspecies transmission of avian influenza viruses remains a significant public health concern. H6 viruses have gained attention following the first human infection by a chicken-origin H6N1 virus (A/Taiwan/02/2013, Hu/13), highlighting their zoonotic potential. To understand the evolutionary trajectory and mammalian adaptation of this Taiwan lineage, we compared two avian isolates (A/Chicken/Taiwan/CF19/2009, Ck/09; A/Chicken/Taiwan/2267/2012, Ck/12) and Hu/13 in vitro and in vivo. Hu/13 exhibited enhanced replication in MDCK cells, producing larger plaques and higher viral titers than Ck/09 and Ck/12. In BALB/c mice, Hu/13 demonstrated the highest pathogenicity and mortality, followed by Ck/12, while Ck/09 induced minimal morbidity. Hu/13 and Ck/12 replicated efficiently in respiratory tissues, eliciting robust cytokine responses and severe pulmonary lesions. In ferrets, Hu/13 showed relatively efficient transmission, infecting all direct physical-contact and two out of three airborne-contact ferrets, whereas Ck/09 failed to transmit. Histopathology confirmed escalating lung pathology from Ck/09 to Ck/12 and Hu/13. Whole-genome sequencing identified adaptive mutations in Hu/13 during ferret replication, though no canonical mammalian-adaptive changes (e.g., PB2-E627K or HA-Q226L) were detected. These findings demonstrate progressive mammalian adaptation, replication efficiency, and transmissibility within the Taiwan H6N1 lineage. Enhanced surveillance is crucial to monitor mammalian-adaptive mutations, informing pandemic preparedness and public health strategies.

Supporting text Virus Host Location
airborne transmission 3 contact transmission 2 H6 subtype 3 interspecies transmission 51 spillover 105 zoonotic influenza 2 Adaptation, Physiological 33 Influenza A virus 186 Influenza in Birds 341 Orthomyxoviridae Infections 228 Animals 1948 Chickens 146 Dogs 176 Female 289 Ferrets 79 Humans 1440 Influenza, Human 286 Lung 65 Madin Darby Canine Kidney Cells 36 Mice 253 Mice, Inbred BALB C 73 Taiwan 3 Virulence 108 Virus Replication 191

Evidence records

5 total
Experimental Infection
3 records · 3 evidence types
Evidence type
1 records
OVE9337
Key finding

In BALB/c mice, the Hu/13 strain of subtype H6N1 avian influenza virus caused the highest pathogenicity and mortality, whereas Ck/12 caused intermediate disease and Ck/09 produced minimal morbidity.

Virus
Host
Location
Not specified
Supporting text

In BALB/c mice, Hu/13 demonstrated the highest pathogenicity and mortality, followed by Ck/12, while Ck/09 induced minimal morbidity.

Method
mouse infection experiment | clinical observation | mortality assessment
Experimental system
BALB/c mouse infection model
Evidence type
1 records
OVE9338
Key finding

The human H6N1 isolate Hu/13 replicated efficiently in MDCK cells, producing larger plaques and higher viral titers than the chicken isolates Ck/09 and Ck/12.

Virus
Host
Location
Not specified
Supporting text

Hu/13 exhibited enhanced replication in MDCK cells, producing larger plaques and higher viral titers than Ck/09 and Ck/12.

Method
cell infection assay | plaque formation measurement | viral titration
Sample type
cell culture plaques | viral titer measurements
Experimental system
Madin-Darby Canine Kidney (MDCK) cell culture assay
Evidence type
1 records
OVE9339
Key finding

Hu/13 subtype H6N1 avian influenza virus transmitted efficiently among ferrets, infecting all direct-contact and two of three airborne-contact animals under controlled experimental conditions.

Virus
Host
Location
Not specified
Supporting text

In ferrets, Hu/13 showed relatively efficient transmission, infecting all direct physical-contact and two out of three airborne-contact ferrets, whereas Ck/09 failed to transmit.

Method
controlled ferret co-housing experiment | virological monitoring of recipient ferrets | infection confirmation by virus detection
Experimental system
ferret contact and airborne transmission model
Functional Mechanism
2 records · 1 evidence types
Evidence type
2 records
OVE9342
Key finding

A chicken‑origin H6N1 influenza virus (A/Taiwan/02/2013, Hu/13) caused the first documented human infection, confirming an animal‑to‑human spillover event.

Virus
Host
Location
Supporting text

H6 viruses have gained attention following the first human infection by a chicken‑origin H6N1 virus (A/Taiwan/02/2013, Hu/13), highlighting their zoonotic potential.

Mechanism types
host adaptation | adaptive mutation
OVE9341
Key finding

Whole-genome sequencing revealed that the H6N1 avian influenza virus strain Hu/13 acquired adaptive mutations during replication in ferrets, indicating molecular adaptation to mammalian hosts.

Virus
Host
Not specified
Location
Not specified
Supporting text

Whole-genome sequencing identified adaptive mutations in Hu/13 during ferret replication, though no canonical mammalian-adaptive changes (e.g., PB2-E627K or HA-Q226L) were detected.

Genes or proteins
PB2 | HA
Mutations
PB2-E627K | HA-Q226L (absent)
Mechanism types
replication adaptation | host-range expansion