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Faecal carriage of ESBL-producing Escherichia coli in a remote region of Niger

Jacquier, H.; Assao, B.; Chau, F.; Guindo, O.; Condamine, B.; Magnan, M.; Bridier-Nahmias, A.; Sayingoza-Makombe, N.; Moumouni, A.; Page, A.-L.; Langendorf, C.; Coldiron, M.; Denamur, E.; de Lastours, V.

2022-07-08 microbiology
10.1101/2022.07.07.499258 bioRxiv
Show abstract

ObjectiveWhole genome sequencing (WGS) of extended-spectrum {beta}-lactamase-producing Escherichia coli (ESBL-E. coli) in developing countries is lacking. Here we describe the population structure and molecular characteristics of ESBL-E. coli faecal isolates in rural Southern Niger. MethodsStools of 383 healthy participants were collected among which 92.4% were ESBL-E. coli carriers; 90 of these ESBL-E. coli containing stools (109 ESBL-E. coli isolates) were further analysed by WGS, using short- and long-reads. ResultsMost isolates belonged to the commensalism-adapted phylogroup A (83.5%), with high clonal diversity. The blaCTX-M-15 gene was the major ESBL determinant (98.1%), chromosome-integrated in approximately 50% of cases, in multiple integration sites. When plasmid-borne, blaCTX-M-15 was found in IncF (57.4%) and IncY plasmids (26.2%). Closely related plasmids were found in different genetic backgrounds. Genomic environment analysis of blaCTX-M-15 in closely related strains argued for mobilisation between plasmids or from plasmid to chromosome. ConclusionsMassive prevalence of community faecal carriage of CTX-M-15-producing E. coli was observed in a rural region of Niger due to the spread of highly diverse A phylogroup commensalism-adapted clones, with frequent chromosomal integration of blaCTX-M-15. Plasmid spread was also observed. These data suggest a risk of sustainable implementation of ESBL in community faecal carriage.

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