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Leveraging genomes and metagenome-assembled genomes unveils novel diversity and transmission between public transport and clinical settings in Acinetobacter

Created on 01 Oct 2026

Authors

Lopez-Sanchez, R., Aguilar-Vera, A., Castillo-Ramirez, S.

Abstract

The molecular epidemiology of Acinetobacter, which is almost exclusively culture-dependent, has centered mainly on clinical isolates of A. baumannii. Yet, this overlooks sources not amenable to microbial culture and many non-A. baumannii species. Here, by analysing metagenomic projects from public transport systems worldwide, we show that metagenome-assembled genomes (MAGs) are highly relevant for assessing the unrecognized diversity of Acinetobacter. We recovered 839 Acinetobacter MAGs, with 269 being high-quality MAGs. The high-quality MAGs were across more than 20 well-defined Acinetobacter species; however, five species (A. nosocomilalis, A. ursingii, A. radioresistens, A. schindleri, and A. variabilis) had the most MAGs. Pangenome and phylogenetic diversity analyses of 685 genomes plus the 269 high-quality MAGs from those 5 species showed that MAGs are an important source of both lineage and gene diversity. Also, FST analyses and genome phylogenies show that for some species there is no genetic differentiation between MAGs and clinical isolates, implying transmission between hospitals and public transport settings. In addition to finding the antibiotic resistance genes (ARGs) in MAGs, we implemented an ad hoc strategy (leveraging the use of genomes) to recover considerably more ARGs. PCoA and PERMANOVA analyses show that, whereas in A. nosocomialis and A. ursingii, the ARG profiles of MAGs and clinical genomes are different, in A. radioresistens and A. schindleri, the ARG profiles are not different. Finally, some clinically important ARGs, such as sul1 and sul2, aadA, and blaOXA23, were found in all or some of the 5 species. Our study shows how combining MAGs and regular genomes is a powerful strategy for better appraising the genomic diversity (including the resistome) of Acinetobacter. On a broader level, our study showcases the importance of MAGs for genomic surveillance of man-made environments with clear public health implications.

Preprint server: bioRxiv
The authors list and abstract were imported from bioRxiv on 01 Oct 2026.

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