Genomic epidemiology and antimicrobial resistance profile of Shigella isolated from diarrhoea diseases in under-five children in Blantyre, Malawi

Antimicrobial resistance (AMR) in Shigella is rising globally, complicating shigellosis management. Whole-genome sequence analysis (WGSA) has advanced our understanding of AMR and transmission dynamics, yet contemporary whole-genome sequencing data from Shigella in sub-Saharan Africa remain scarce. In this study, we applied WGSA to 27 Shigella isolates collected from children presenting with diarrhoea at Ndirande Health Centre in Malawi (2022–2023), as part of the Enterics for Global Health Shigella surveillance study. Serotyping, AMR profiling and phylogenetic analysis revealed Shigella sonnei as the dominant serogroup, with distinct genetic clustering relative to global reference strains among S. sonnei , Shigella flexneri and Shigella boydii . We identified 16 AMR genes linked to ten antimicrobial classes with qnrS1 and qnrB19 genes conferring resistance to fluoroquinolone, alongside IncFIB(K) and IncFII plasmid replicon markers. Importantly, no azithromycin resistance determinants were detected both genotypically and phenotypically, providing baseline evidence that warrants continued surveillance of current first-line treatment. However, the detection of fluoroquinolone resistance genes with plasmid replicon markers in the absence of phenotypic resistance might indicate a silent reservoir with epidemic potential. This is the first contemporary Shigella data from a large-scale diarrhoea disease surveillance study in Malawi, providing essential baseline information for guiding antibiotic treatment and future vaccine development efforts, contributing to the efforts to combat shigellosis in Malawi and other similar regions.

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Publication Details

Journal
Microbial Genomics
Published
2026-09-11
DOI
https://doi.org/10.1099/mgen.0.001838
Primary Topic
Escherichia coli research studies
Type
article
Field-Weighted Citation Impact
0.00

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article

Genomic epidemiology and antimicrobial resistance profile of Shigella isolated from diarrhoea diseases in under-five children in Blantyre, Malawi

Charlotte E. Chong, Grace Thandekire Sibande, J. W. Cornick, Kate S Baker et al.
Microbial Genomics
Escherichia coli research studies
article

Genomic epidemiology and antimicrobial resistance profile of Shigella isolated from diarrhoea diseases in under-five children in Blantyre, Malawi

Charlotte E. Chong, Grace Thandekire Sibande, J. W. Cornick, Kate S Baker, Victor Maiden, Anmol Kiran, Mary Charles, Belson Kutambe
article en

Abstract

Antimicrobial resistance (AMR) in Shigella is rising globally, complicating shigellosis management. Whole-genome sequence analysis (WGSA) has advanced our understanding of AMR and transmission dynamics, yet contemporary whole-genome sequencing data from Shigella in sub-Saharan Africa remain scarce. In this study, we applied WGSA to 27 Shigella isolates collected from children presenting with diarrhoea at Ndirande Health Centre in Malawi (2022–2023), as part of the Enterics for Global Health Shigella surveillance study. Serotyping, AMR profiling and phylogenetic analysis revealed Shigella sonnei as the dominant serogroup, with distinct genetic clustering relative to global reference strains among S. sonnei , Shigella flexneri and Shigella boydii . We identified 16 AMR genes linked to ten antimicrobial classes with qnrS1 and qnrB19 genes conferring resistance to fluoroquinolone, alongside IncFIB(K) and IncFII plasmid replicon markers. Importantly, no azithromycin resistance determinants were detected both genotypically and phenotypically, providing baseline evidence that warrants continued surveillance of current first-line treatment. However, the detection of fluoroquinolone resistance genes with plasmid replicon markers in the absence of phenotypic resistance might indicate a silent reservoir with epidemic potential. This is the first contemporary Shigella data from a large-scale diarrhoea disease surveillance study in Malawi, providing essential baseline information for guiding antibiotic treatment and future vaccine development efforts, contributing to the efforts to combat shigellosis in Malawi and other similar regions.

Microbial GenomicsVol. 12(9)
University of Liverpool (GB), University College Cork (IE), Malawi-Liverpool-Wellcome Trust Clinical Research Programme (MW), Genomics England (GB)
Wellcome Trust
Good health and well-being
Openalex Percentile: Top 12%
Escherichia coli research studies
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