Genetic and Molecular Characterization of Avian Influenza A(H9N2) Viruses from Live Bird Markets (LBM) in Senegal.

Mamadou Malado Jallow1,2 Moussa Moise Diagne1 Marie Henriette Dior Ndione1 Mamadou Aliou Barry3 Ndiendé Koba Ndiaye1 Davy Evrard Kiori1 Marie Pedapa Mendy1 Déborah Goudiaby1 Gamou Fall1 Malick Fall2 Ndongo Dia1
Affiliations 3 institutions
  1. Département de Virologie, Institut Pasteur de Dakar, Dakar BP 220, Senegal.
  2. Département de Biologie Animale, Faculté des Sciences et Techniques, Université Cheikh Anta DIOP de Dakar, Dakar BP 206, Senegal.
  3. Unité d'Epidémiologie des Maladies Infectieuses, Institut Pasteur de Dakar, Dakar BP 220, Senegal.

Abstract

Despite extensive experience with influenza surveillance in humans in Senegal, there is limited knowledge about the actual situation and genetic diversity of avian influenza viruses (AIVs) circulating in the country, hindering control measures and pandemic risk assessment. Therefore, as part of the "One Health" approach to influenza surveillance, we conducted active AIV surveillance in two live bird markets (LBMs) in Dakar to better understand the dynamics and diversity of influenza viruses in Senegal, obtain genetic profiles of circulating AIVs, and assess the risk of emergence of novel strains and their transmission to humans. Cloacal swabs from poultry and environmental samples collected weekly from the two LBMs were screened by RT-qPCR for H5, H7, and H9 AIVs. Subsequently, a subset of H9-positive samples was selected for whole sequencing. From December 2023 to October 2024, 499 samples were tested, and AIV was detected in 58.3% of them. Among these, A/H9N2 was the only subtype detected in both markets, with a detection rate of 47.7% (82/172) in Thiaroye and 35.3% (42/119) in Tilene, resulting in an overall positivity rate of 42.6% (124/291). Genome sequencing of 22 A/H9N2 isolates, including 11 poultry drinking water samples, 7 carcass wash water samples, 3 fecal samples, and 1 cloacal swab, yielded 7 complete and 15 partial genomic sequences. Phylogenetic analyses of the resulting sequences showed that the A/H9N2 isolates obtained in this study formed a monophyletic cluster and were closely related to the Senegalese human strain (A/Senegal/0243/2019) identified through the national influenza sentinel surveillance program. These strains were also closely related to the A/H9N2 viruses of the G1 lineage circulating in neighboring countries, suggesting cross-border transmission. The A/H9N2 strains carried the low pathogenicity RSSR/GLF motif at the HA cleavage site and possessed several key amino acid mutations, including HA-I155T and HA-Q226L, which are associated with human host adaptation, PB2-T105V, PB2-A661T, and PB2-A588V, which are linked to the human-to-human transmission and increased polymerase activity, NS2-T14M, NS2-M100I, NS1-I106M, NS1-V222M, NS1-E223A, NS1-I226V, NS1-E227G, and NS1-P228S, which are known to alter virulence (increased or reduced) in humans or mice, and M2-S31N, which promotes drug resistance. Seven potential N-glycosylation sites were predicted in the HA protein and six in the NA protein. The selection pressure analysis revealed that the A/H9N2 isolates were primarily under neutral evolution or purifying selection pressure. Overall, our findings highlight the potential for cross-species transmission of Senegalese A/H9N2 viruses, emphasizing the need for sustained monitoring of these viruses in both animal and human populations.

Supporting text Virus Host Location
avian influenza viruses 5 genetic 2 H9N2 27 live bird markets 5 Senegal 4 surveillance 60 Epidemiological Monitoring 27 Genome, Viral 317 Influenza A Virus, H9N2 Subtype 71 Influenza in Birds 341 Animals 1948 Birds 212 Drug Resistance, Viral 5 Hemagglutinins 24 Humans 1440 Influenza, Human 286 Phylogeny 805 Prevalence 62 Senegal 3 Sequence Analysis, Protein 9 Viral Zoonoses 65 Virulence Factors 9

Evidence records

7 total
Zoonotic Surveillance
2 records · 2 evidence types
Evidence type
1 records
OVE8845
Key finding

Infectious A/H9N2 virus was isolated from poultry and environmental live bird market samples in Senegal, yielding 22 distinct isolates used for genomic sequencing.

Virus
Host
Location
Not specified
Supporting text

Genome sequencing of 22 A/H9N2 isolates, including 11 poultry drinking water samples, 7 carcass wash water samples, 3 fecal samples, and 1 cloacal swab, yielded 7 complete and 15 partial genomic sequences.

Sample type
drinking water | carcass wash water | feces | cloacal swab
Evidence type
1 records
OVE8844
Key finding

Avian influenza A/H9N2 virus was detected by RT‑qPCR in poultry and environmental samples from two live bird markets in Dakar, Senegal during 2023–2024 surveillance.

Virus
Host
Location
Supporting text

Cloacal swabs from poultry and environmental samples collected weekly from the two LBMs were screened by RT‑qPCR for H5, H7, and H9 AIVs. From December 2023 to October 2024, 499 samples were tested, and AIV was detected in 58.3% of them. Among these, A/H9N2 was the only subtype detected in both markets, with a detection rate of 47.7% (82/172) in Thiaroye and 35.3% (42/119) in Tilene, resulting in an overall positivity rate of 42.6% (124/291).

Method
RT‑qPCR | whole genome sequencing
Sample type
cloacal swabs | environmental samples
Geographic raw
Dakar | Thiaroye | Tilene | Senegal
Country inferred
SEN
Functional Mechanism
3 records · 1 evidence types
Evidence type
3 records
OVE8847
Key finding

A/H9N2 viruses from Senegal contained HA-I155T and HA-Q226L mutations that are associated with human host adaptation.

Virus
Host
Not specified
Location
Not specified
Supporting text

The A/H9N2 strains carried the low pathogenicity RSSR/GLF motif at the HA cleavage site and possessed several key amino acid mutations, including HA-I155T and HA-Q226L, which are associated with human host adaptation.

Genes or proteins
HA
Mutations
I155T | Q226L
Mechanism types
host-range expansion | receptor binding
OVE8848
Key finding

A/H9N2 viruses harbored PB2-T105V, PB2-A588V, and PB2-A661T substitutions linked to human-to-human transmission and increased polymerase activity.

Virus
Host
Not specified
Location
Not specified
Supporting text

The A/H9N2 strains carried the low pathogenicity RSSR/GLF motif at the HA cleavage site and possessed several key amino acid mutations, including PB2-T105V, PB2-A661T, and PB2-A588V, which are linked to the human-to-human transmission and increased polymerase activity.

Genes or proteins
PB2
Mutations
T105V | A588V | A661T
Mechanism types
replication adaptation | transmission fitness
OVE8850
Key finding

The M2-S31N substitution in A/H9N2 Senegal strains promotes drug resistance.

Virus
Host
Not specified
Location
Not specified
Supporting text

The A/H9N2 strains carried the low pathogenicity RSSR/GLF motif at the HA cleavage site and possessed several key amino acid mutations, including M2-S31N, which promotes drug resistance.

Genes or proteins
M2
Mutations
S31N
Mechanism types
replication adaptation
Genomic Evolution
2 records · 1 evidence types
Evidence type
2 records
OVE8846
Key finding

Phylogenetic analysis showed that Senegal A/H9N2 poultry isolates formed a monophyletic cluster closely related to a Senegalese human strain (A/Senegal/0243/2019) and to G1 lineage viruses from neighboring countries, indicating regional evolution and possible cross-border transmission.

Virus
Host
Location
Not specified
Supporting text

Phylogenetic analyses of the resulting sequences showed that the A/H9N2 isolates obtained in this study formed a monophyletic cluster and were closely related to the Senegalese human strain (A/Senegal/0243/2019) identified through the national influenza sentinel surveillance program. These strains were also closely related to the A/H9N2 viruses of the G1 lineage circulating in neighboring countries, suggesting cross-border transmission.

Genes or proteins
whole genome
Analysis methods
phylogenetic analysis
OVE8851
Key finding

Phylogenetic analysis revealed Senegalese avian influenza A/H9N2 isolates closely related to a human strain, indicating potential animal-to-human spillover in Senegal.

Virus
Host
Location
Supporting text

Phylogenetic analyses of the resulting sequences showed that the A/H9N2 isolates obtained in this study formed a monophyletic cluster and were closely related to the Senegalese human strain (A/Senegal/0243/2019) identified through the national influenza sentinel surveillance program.

Analysis methods
RT-qPCR screening | whole genome sequencing | phylogenetic analysis