Journal Article
Phylogeographic analysis of Staphylococcus nepalensis reveals global occurrence of antimicrobial-resistant lineages carrying the sal(E) resistance gene
Johana Becerra; Isabella Gaião; Roberta Almeida Vincenzi; Davi Gabriel Salustiano Merighi; Felipe Vásquez-Ponce; Santiago Justo Arevalo; Jesus Pariona; Gregory Melocco; Fernanda Esposito; Fabio Rodrigues; Nilton Lincopan
Molecular Biology Reports · Vol. 53, Issue 1 · 2026
Abstract
Background Staphylococcus nepalensis is an emerging species first described in 2003 from the respiratory tract of goats in Nepal. We report the identification of S. nepalensis of a hypersaline lagoon in Brazil, along with in-depth phylogeographical and resistome analysis of publicly available genomes. Methods and results During a local survey from hypersaline aquatic environments in Rio de Janeiro, Brazil, two staphylococcal strains were recovered, designated as COLB and AM1. These isolates were subjected to antimicrobial susceptibility testing, genomic sequencing, and comprehensive phylogenomic analyses. Genomic analysis confirmed the taxonomic identity of COLB and AM1 as S. nepalensis. Both isolates harbored the sal (E) conferring resistance to pleuromutilins and streptogramin A, whereas tet (K) conferring to tetracyclines. Additionally, AM1 carried lnu (A), consistent with the reduced susceptibility to clindamycin (MIC = 2 µg/mL) relative to COLB. Genes associated with arsenic and copper tolerance, and the replicons rep7a and rep19c , were confirmed. Phylogenomic analysis indicated that COLB and AM1 were clonally related (1 cgSNP-difference) but distinct from global isolates. Phylogeographic analysis revealed wide geographic occurrence, with some lineages carrying blaZ and mecA associated with beta-lactamase production and methicillin resistance, respectively. Strikingly, sal (E) is conserved across all S. nepalensis genomes. Conclusions The findings confirm the presence of S. nepalensis in South America as early as 2016 and documented among available genomes from environmental, human, and animal-associated sources. Furthermore, reveal the circulation of some lineages carrying clinically relevant antimicrobial genes, underscoring the importance of accurate species identification and continuous genomic surveillance and potential One Health relevance.