Abstract
<jats:p>Campylobacter jejuni is a leading foodborne cause of gastroenteritis, but genomic surveillance remains uneven across Africa. A recent East Africa study combined whole-genome sequencing and antimicrobial susceptibility testing for Campylobacter isolates from humans with diarrhea in Kenya and poultry in Tanzania, showing high sequence-type diversity and substantially higher multidrug resistance in poultry. We extended this regional evidence by analyzing 1,013 publicly available C. jejuni genomes, including 718 African and 295 non-African comparator genomes, with standardized assembly, genotyping, phylogenomics, pangenome reconstruction, antimicrobial resistance, virulence, and mobile-element profiling. African genomes were geographically concentrated but genetically diverse, included globally distributed and regionally enriched lineages, and showed an open pangenome dominated by low-frequency gene families. Resistance and virulence determinants were unevenly distributed by region and lineage. These findings place African C. jejuni diversity within a global evolutionary framework and support expanded, integrated One Health genomic surveillance.</jats:p>