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Virulence, antimicrobial and heavy metal tolerance, and genetic diversity of Vibrio cholerae recovered from commonly consumed freshwater fish | SpringerLink
The seventh pandemic of cholera in Europe revisited by microbial genomics | Nature Communications
Virulence, antimicrobial and heavy metal tolerance, and genetic diversity of Vibrio cholerae recovered from commonly consumed freshwater fish | SpringerLink
Frontiers | Surveillance and Genomics of Toxigenic Vibrio cholerae O1 From Fish, Phytoplankton and Water in Lake Victoria, Tanzania | Microbiology
Pathogen of the Month: Vibrio cholerae, the Causative Agent of Cholera - GIDEON - Global Infectious Diseases and Epidemiology Online Network
Virulence, antimicrobial and heavy metal tolerance, and genetic diversity of Vibrio cholerae recovered from commonly consumed freshwater fish | SpringerLink
Cholera toxin gene (ctx) detected in fish isolates using PCR at 167 bp.... | Download Scientific Diagram
Using Harpoon-Like Appendages, Bacteria 'Fish' for New DNA - The New York Times
Using Harpoon-Like Appendages, Bacteria 'Fish' for New DNA - The New York Times
Environmental Role of Pathogenic Traits in Vibrio cholerae | Journal of Bacteriology
Evolution, distribution and genetics of atypical Vibrio cholerae – A review - ScienceDirect
TropicalMed | Free Full-Text | An Update on Cholera Immunity and Current and Future Cholera Vaccines | HTML
Genomic insights into Vibrio cholerae O1 responsible for cholera epidemics in Tanzania between 1993 and 2017
PDF) Transmission and Toxigenic Potential of Vibrio cholerae in Hilsha Fish (Tenualosa ilisha) for Human Consumption in Bangladesh
Vibrio cholerae - Wikipedia
Three transmission events of Vibrio cholerae O1 into Lusaka, Zambia | BMC Infectious Diseases | Full Text
Vibrio cholerae - Wikipedia
Frontiers | Surveillance and Genomics of Toxigenic Vibrio cholerae O1 From Fish, Phytoplankton and Water in Lake Victoria, Tanzania | Microbiology
Virulence, antimicrobial and heavy metal tolerance, and genetic diversity of Vibrio cholerae recovered from commonly consumed freshwater fish | SpringerLink
cAMP Receptor Protein Controls Vibrio cholerae Gene Expression in Response to Host Colonization | mBio
PDF) 📄 Virulence, antimicrobial and heavy metal tolerance, and genetic diversity of Vibrio cholerae recovered from commonly consumed freshwater fish