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Metagenomic characterization of Acinetobacter in rivers reveals health-related risks, ecological functions, and underrepresented genomic diversity


Abstract

Bacteria in the genus Acinetobacter are widespread in environmental systems. While some studies have raised concerns about health threats posed by environmental strains, others found their potential for bioremediation. This dual nature makes it valuable to resolve the genomic landscape of this genus. By conducting a large-scale meta-analysis of 1,253 river metagenomes, we demonstrated the prevalence of Acinetobacter in water and sediment, with species composition differing between the two habitats and A. lwoffii and A. tandoii being the most prevalent, respectively. We identified numerous species harboring resistance genes against 10 antibiotic classes, 22 biocide classes, and seven metals, together with genes related to 20 categories of virulence factors. Most species harbored genes associated with biogeochemical processes, and some encoded genes related to the degradation of persistent organic pollutants and hydrocarbons. We also recovered 296 metagenome-assembled genomes belonging to 38 species, 36 of which harbored resistance-related genes and ecological functional genes, suggesting potential links between resistance dissemination and ecological functions. Various metagenome-assembled genomes revealed metabolic, resistance, and other functional gene categories that were absent from currently available reference genomes, expanding the known genomic repertoire of multiple Acinetobacter species and highlighting the importance of environmental genomes for improving current reference collections. These findings highlight the ecological roles of Acinetobacter in rivers, but we should be aware of their health threats associated with antimicrobial resistance.

Subjects

  • Computational biology and bioinformatics
  • Ecology
  • Environmental sciences
  • Genetics
  • Microbiology

Acknowledgements

This work was supported by the National Natural Science Foundation of China (U22A20604 and 42307359). Dr. Gao thanks the Youth S&T Talent Support Programme of Guangdong Provincial Association for Science and Technology (SKXRC2025008) and the Guangdong Province for Higher Education Youth Innovation Talent Project (2023KQNCX019). Ms. Zheng thanks the Project supported by SCNU Training Program of Innovation for Entrepreneurship Undergraduates (202529012).

Funding

Project supported by SCNU Training Program of Innovation for Entrepreneurship Undergraduates,202529012,National Natural Science Foundation of China,42307359,U22A20604,Youth S&T Talent Support Programme of Guangdong Provincial Association for Science and Technology,SKXRC2025008,Guangdong Province for Higher Education Youth Innovation Talent Project,2023KQNCX019.

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Fang-Zhou Gao.

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Zheng, JY., Gao, FZ. & Ying, GG. Metagenomic characterization of Acinetobacter in rivers reveals health-related risks, ecological functions, and underrepresented genomic diversity.
Sci Rep (2026). https://doi.org/10.1038/s41598-026-62738-2

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  • DOI: https://doi.org/10.1038/s41598-026-62738-2

Keywords


  • Acinetobacter
  • River ecosystems
  • Metagenomics
  • Functional genomic diversity
  • Antimicrobial resistance
  • Ecological functions


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