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April 3, 2026PLOS Global Public Health0 citationsOpen Access

Genomic diversity of diarrheagenic multidrug-resistant Escherichia coli across asymptomatic children and livestock in Nairobi, Kenya

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NONoah O. OkumuJJJohn JumaSOSamuel O. Oyola

Key Points

  • The aim is to explore the genomic characteristics and antibiotic resistance of diarrheagenic E. coli in community settings.
  • Sequenced 77 multidrug-resistant isolates from children, livestock, and food.
  • Conducted phylogenetic and network analyses to assess genetic diversity and resistance patterns.
  • Profiled virulence-associated genes and compared prevalence between children and livestock.
  • Identified high-risk lineages ST69 and ST131 largely present among children.
  • Isolates predominantly carried extended-spectrum β-lactamase genes, indicating resistance to multiple antibiotics.
  • Children had more virulence-associated genes (mean 6.4) compared to livestock (mean 4.2), showing significant differences.

Abstract

Diarrheagenic Escherichia coli represents a critical public health threat, yet their genomic characteristics in community settings remain poorly described. We sequenced 77 multidrug-resistant isolates from children (n = 59), livestock (n = 17), and food (n = 1) in peri-urban Nairobi, Kenya. Phylogenetic analysis revealed polyphyletic diversity across phylogroups and sequence types without host-specific clustering. We detected high-risk lineages ST69 (n = 5) and ST131 (n = 2) among children. Nearly all isolates carried extended-spectrum β-lactamase genes, including bla CTX-M-15 and bla OXA-1 , with resistance spanning nine antibiotic classes. Network analysis revealed a stable multidrug-resistance cluster ( bla TEM-1B , aph(3)-Ib , aph(6)-Id , sul2 , tetA ) shared across hosts. Virulence-associated gene profiling showed 34 enteric-associated determinants, with children’s isolates carrying significantly more genes than livestock (mean 6.4 vs. 4.2, p = 0.001). The presence of virulent, multidrug-resistant lineages in apparently healthy community carriers highlights a potential reservoir of multidrug-resistant diarrheagenic-associated pathogenic potential outside hospitals. These findings underscore urgent need for genomic surveillance, stewardship and WASH to interrupt transmission of high-risk E. coli clones.

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Cite This Study

Okumu et al. (2026) studied this question.

synapsesocial.com/papers/69cf5de95a333a821460c040https://doi.org/10.1371/journal.pgph.0005644
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