Genomic characterization of H6N1 avian influenza viruses from wild birds and domestic ducks in the republic of Korea and Mongolia (2022-2024).

Kyuyoung Lee1 Se-Hee An2 Gyeong-Beom Heo2 Youn-Jeong Lee2 Kwang-Nyeong Lee2 Yong-Myung Kang3
Affiliations 3 institutions
  1. College of Veterinary Medicine, Kyungpook National University, 80 Daehak-ro, Daegu, 41566, Republic of Korea.
  2. Animal and Plant Quarantine Agency, 177 Hyeoksin 8-ro, Gimcheon-si, Gyeongsangbuk-do, 39660, Republic of Korea.
  3. College of Veterinary Medicine, Kyungpook National University, 80 Daehak-ro, Daegu, 41566, Republic of Korea. [email protected].

Abstract

Avian influenza viruses (AIVs) pose a continuous threat to global poultry production and animal health, maintained largely within wild bird reservoirs and dispersed along migratory flyways. Among these, the low-pathogenic H6N1 subtype circulates widely across East Asia and is a key subject of genomic surveillance. In this study, we characterized the hemagglutinin (HA) and neuraminidase (NA) gene segments of seven H6N1 viruses isolated from 9,206 wild bird fecal samples across 10 key breeding habitats in Mongolia (April-October, 2022-2024) and evaluated their genetic relationships with seven H6N1 strains isolated from fecal samples of wild birds (n = 7,419) and domestic ducks (n = 79,386) in the Republic of Korea (ROK) between September 2023 and April 2024 using Bayesian phylogenetic analyses. All analyzed isolates belonged to the Northeast Asian lineage, primarily diverging into two regional subclades around 2016-2017 (time to the most recent common ancestor [tMRCA]: HA, Dec 2017; NA, Nov 2016). Both HA and NA phylogenies exhibited a ladder-like topology structured across distinct geographical regions, indicating localized variant generation and turnover. Comparable evolutionary rates and restricted reassortment between HA and NA segments underscore strong co-adaptation driven by functional balance between HA receptor binding and NA enzymatic activity. Despite the substantial geographical distance between Mongolia and the ROK, these H6N1 isolates demonstrated close genetic connectivity within the Northeast Asian lineage (Bayes factor > 100). Their surface gene diversification was primarily shaped by antigenic drift alongside restricted regional intra- and inter-clade reassortment. Given the continuous evolutionary dynamics of surface glycoproteins, sustained transboundary monitoring across wild waterfowl and poultry populations is warranted to track regional H6N1 variants.

Supporting text Virus Host Location
Animals, Wild 187 Birds 212 Ducks 81 Influenza A virus 186 Influenza in Birds 341 Animals 1948 Feces 113 Genome, Viral 317 Genomics 32 Hemagglutinin Glycoproteins, Influenza Virus 180 Mongolia 3 Neuraminidase 62 Phylogeny 805 Republic of Korea 27 Viral Proteins 152

Evidence records

6 total
Zoonotic Surveillance
2 records · 1 evidence types
Evidence type
2 records
OVE11919
Key finding

Seven H6N1 avian influenza viruses were isolated from wild bird fecal samples in Mongolia during 2022–2024.

Virus
Host
Natural host
Location
Not specified
Supporting text

seven H6N1 viruses isolated from 9,206 wild bird fecal samples across 10 key breeding habitats in Mongolia (April-October, 2022-2024)

Sample type
fecal samples
OVE11920
Key finding

H6N1 viruses were isolated from fecal samples of wild birds and domestic ducks in the Republic of Korea between September 2023 and April 2024.

Virus
Host
Natural host
Location
Not specified
Supporting text

seven H6N1 strains isolated from fecal samples of wild birds (n = 7,419) and domestic ducks (n = 79,386) in the Republic of Korea (ROK) between September 2023 and April 2024

Sample type
fecal samples
Functional Mechanism
1 records · 1 evidence types
Evidence type
1 records
OVE11924
Key finding

H6N1 viruses show HA–NA co-adaptation consistent with a functional balance between HA receptor binding and NA enzymatic activity.

Virus
Host
Not specified
Location
Not specified
Supporting text

Comparable evolutionary rates and restricted reassortment between HA and NA segments underscore strong co-adaptation driven by functional balance between HA receptor binding and NA enzymatic activity.

Genes or proteins
HA | NA
Receptors
receptor
Mechanism types
receptor binding | host-range expansion | transmission fitness
Genomic Evolution
3 records · 1 evidence types
Evidence type
3 records
OVE11922
Key finding

H6N1 viruses from Mongolia and the Republic of Korea show strong phylogeographic connectivity within the Northeast Asian lineage (Bayes factor > 100).

Virus
Host
Not specified
Location
Not specified
Supporting text

Despite the substantial geographical distance between Mongolia and the ROK, these H6N1 isolates demonstrated close genetic connectivity within the Northeast Asian lineage (Bayes factor > 100).

Analysis methods
phylogeographic analysis | Bayes factor support
OVE11921
Key finding

H6N1 HA and NA genes from Mongolia and the Republic of Korea cluster in the Northeast Asian lineage and diverged into two regional subclades around 2016–2017 with ladder-like, geographically structured phylogenies.

Virus
Host
Not specified
Location
Not specified
Supporting text

All analyzed isolates belonged to the Northeast Asian lineage, primarily diverging into two regional subclades around 2016-2017 (time to the most recent common ancestor [tMRCA]: HA, Dec 2017; NA, Nov 2016). Both HA and NA phylogenies exhibited a ladder-like topology structured across distinct geographical regions, indicating localized variant generation and turnover.

Genes or proteins
HA | NA
Analysis methods
Bayesian phylogenetic analyses | tMRCA estimation | phylogenetic topology analysis
OVE11923
Key finding

H6N1 surface gene evolution is driven mainly by antigenic drift with restricted regional intra- and inter-clade reassortment, indicating HA–NA co-adaptation.

Virus
Host
Not specified
Location
Not specified
Supporting text

Comparable evolutionary rates and restricted reassortment between HA and NA segments underscore strong co-adaptation driven by functional balance between HA receptor binding and NA enzymatic activity. Their surface gene diversification was primarily shaped by antigenic drift alongside restricted regional intra- and inter-clade reassortment.

Genes or proteins
HA | NA
Analysis methods
comparative genomic analysis | phylogenetic analysis