Long-Term Monitoring of Influenza A Viruses in Wild Waterfowl: Evidence from the Lake Baikal Basin (2018-2024).

Nikita Kasianov1 Kirill Sharshov1,2 Anastasiya Derko1 Nikita Dubovitskiy1,2 Junki Mine3 Yuko Uchida3 Evgeniya Badmaeva4 Lopson Bazarov5 Marina Gulyaeva1 Arina Loginova1 Maxim Grigoriev1,2 Daria Kasianova1 Tatiana Murashkina1 Ivan Sobolev1 Sachin Kumar6 Wen Wang7 Jianjun Chen8 Alexander Shestopalov1
Affiliations 8 institutions
  1. Federal Research Center of Fundamental and Translational Medicine, Novosibirsk 630060, Russia.
  2. Institute of Medicine and Medical Technologies, Novosibirsk State University, Novosibirsk 630090, Russia.
  3. Division of Transboundary Animal Disease, National Institute of Animal Health, Tsukuba 305-0856, Japan.
  4. Institute of Natural Sciences, Dorji Banzarov Buryat State University, Ulan-Ude 670000, Russia.
  5. Federal State Budgetary Institution "Tunkinsky National Park", Kyren 671010, Russia.
  6. Department of Biosciences and Bioengineering, Indian Institute of Technology Guwahati, Guwahati 781039, India.
  7. State Key Laboratory of Plateau Ecology and Agriculture, Qinghai University, Xining 810016, China.
  8. State Key Laboratory of Virology and Biosafety, Wuhan Institute of Virology, Chinese Academy of Sciences, Wuhan 430071, China.

Abstract

Wild waterfowl constitute the primary natural reservoir of influenza A viruses, and wetlands at the convergence of major migratory flyways serve as critical hubs for viral genetic exchange. Baikal Siberia, situated at the intersection of the East African-West Asian, Central Asian, and East Asian-Australasian flyways, represents a unique yet understudied region in this context. Here we report the results of long-term virological surveillance of wild birds in the Lake Baikal basin conducted between 2018 and 2024. A total of 1036 cloacal swab samples from 28 bird species were screened, yielding 42 influenza A virus isolates belonging to 12 HA/NA subtype combinations: H1N1, H3N1, H3N2, H3N5, H3N6, H3N8, H4N6, H6N1, H6N2, H6N3, H6N8, and H12N5. Among the detected subtypes, H6 viruses-identified with four distinct neuraminidase combinations (N1, N2, N3, N8)-are of particular public health relevance owing to their documented capacity for dual-receptor binding and potential for zoonotic transmission to mammals, including humans. Full-genome sequencing followed by cluster analysis of internal gene segments identified 16 distinct segment constellations, indicating extensive reassortment. BLAST searches against the GISAID database revealed closest genetic relatives in Mongolia, South Korea, Japan, China, and Western Siberia, with more distant links to Bangladesh, Europe, and a possible intercontinental connection via the Pacific flyway. Maximum-likelihood phylogenetic analysis of the HA and NA segments confirmed that all isolates belong to the Eurasian genetic lineage, yet they are distributed across multiple clades rather than forming a single monophyletic group, reflecting the role of Buryatia as a mixing zone for genetically diverse viral populations. These findings substantially expand the understanding of influenza A virus ecology in the Lake Baikal basin and underscore the importance of continued surveillance at this key migratory crossroads in Northern Asia.

Supporting text Virus Host Location
avian influenza virus 59 Buryatia 1 epidemiological surveillance 1 Eurasian lineage 1 full-genome sequencing 1 Lake Baikal 1 migratory flyways 1 phylogenetic analysis 66 reassortment 36 wild waterfowl 1

Evidence records

4 total
Zoonotic Surveillance
2 records · 2 evidence types
Evidence type
1 records
OVE11866
Key finding

Influenza A virus was successfully isolated 42 times from cloacal swabs of wild birds in the Lake Baikal basin, spanning 12 HA/NA subtype combinations.

Virus
Host
Context pending
Location
Not specified
Supporting text

Here we report the results of long-term virological surveillance of wild birds in the Lake Baikal basin conducted between 2018 and 2024. A total of 1036 cloacal swab samples from 28 bird species were screened, yielding 42 influenza A virus isolates belonging to 12 HA/NA subtype combinations: H1N1, H3N1, H3N2, H3N5, H3N6, H3N8, H4N6, H6N1, H6N2, H6N3, H6N8, and H12N5.

Sample type
cloacal swab
Evidence type
1 records
OVE11869
Key finding

Phylogenetic patterns from wild waterfowl in the Lake Baikal basin indicate Buryatia acts as a mixing zone for genetically diverse influenza A virus populations.

Virus
Host
Location
Supporting text

Wild waterfowl constitute the primary natural reservoir of influenza A viruses, and wetlands at the convergence of major migratory flyways serve as critical hubs for viral genetic exchange. Maximum-likelihood phylogenetic analysis of the HA and NA segments confirmed that all isolates belong to the Eurasian genetic lineage, yet they are distributed across multiple clades rather than forming a single monophyletic group, reflecting the role of Buryatia as a mixing zone for genetically diverse viral populations.

Method
maximum-likelihood phylogenetic analysis of HA and NA | full-genome sequencing | cluster analysis of internal gene segments | BLAST searches against the GISAID database
Sample type
cloacal swab
Geographic raw
Buryatia | Lake Baikal basin
Genomic Evolution
2 records · 2 evidence types
Evidence type
1 records
OVE11867
Key finding

Full-genome analysis of influenza A viruses from wild birds in the Lake Baikal basin revealed 16 distinct internal gene segment constellations, indicating extensive reassortment among isolates.

Virus
Host
Not specified
Location
Not specified
Supporting text

Full-genome sequencing followed by cluster analysis of internal gene segments identified 16 distinct segment constellations, indicating extensive reassortment.

Event type
reassortment
Genes or segments
internal gene segments
Evidence type
1 records
OVE11868
Key finding

Maximum-likelihood phylogenies of HA and NA place all Lake Baikal influenza A virus isolates in the Eurasian lineage but dispersed across multiple clades, indicating diverse evolutionary origins.

Virus
Host
Context pending
Location
Not specified
Supporting text

Maximum-likelihood phylogenetic analysis of the HA and NA segments confirmed that all isolates belong to the Eurasian genetic lineage, yet they are distributed across multiple clades rather than forming a single monophyletic group.

Genes or proteins
HA | NA
Analysis methods
Maximum-likelihood phylogenetic analysis | BLAST searches