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Influence of seasonality and pollution on the presence of antibiotic resistance genes and potentially pathogenic bacteria in a tropical urban river

dc.creatorBarrantes Jiménez, Kenia
dc.creatorMendoza Guido, Bradd
dc.creatorMorales Mora, Eric
dc.creatorRivera Montero, Luis César
dc.creatorMontiel Mora, José
dc.creatorChacón Jiménez, Luz
dc.creatorRojas Jiménez, Keilor
dc.creatorArias Andrés, María de Jesús
dc.date.accessioned2026-09-10T19:30:08Z
dc.date.issued2025-08-05
dc.description.abstractBackground/Objectives: This study examines how seasonality, pollution, and sample type (water and sediment) influence the presence and distribution of antibiotic resistance genes (ARGs), with a focus on antibiotic resistance genes (ARGs) located on plasmids (the complete set of plasmid-derived sequences, including ARGs) in a tropical urban river. Methods: Samples were collected from three sites along a pollution gradient in the Virilla River, Costa Rica, during three seasonal campaigns (wet 2021, dry 2022, and wet 2022). ARGs in water and sediment were quantified by qPCR, and metagenomic sequencing was applied to analyze chromosomal and plasmid-associated resistance profiles in sediments. Tobit and linear regression models, along with multivariate ordination, were used to assess spatial and seasonal trends. Results: During the wet season of 2021, the abundance of antibiotic resistance genes (ARGs) such as sul-1, intI-1, and tetA in water samples decreased significantly, likely due to dilution, while intI-1 and tetQ increased in sediments, suggesting particle-bound accumulation. In the wet season 2022, intI-1 remained low in water, qnrS increased, and sediments showed significant increases in tetQ, tetA, and qnrS, along with decreases in sul-1 and sul-2. Metagenomic analysis revealed spatial differences in plasmid-associated ARGs, with the highest abundance at the most polluted site (Site 3). Bacterial taxa also showed spatial differences, with greater plasmidome diversity and a higher representation of potential pathogens in the most contaminated site. Conclusions: Seasonality and pollution gradients jointly shape ARG dynamics in this tropical river. Plasmid-mediated resistance responds rapidly to environmental change and is enriched at polluted sites, while sediments serve as long-term reservoirs. These findings support the use of plasmid-based monitoring for antimicrobial resistance surveillance in aquatic systems.
dc.description.procedenceUCR::Vicerrectoría de Investigación::Unidades de Investigación::Ciencias de la Salud::Instituto de Investigaciones en Salud (INISA)
dc.description.procedenceUCR::Vicerrectoría de Docencia::Ciencias Básicas::Facultad de Ciencias::Escuela de Biología
dc.description.sponsorshipFogarty International Center/[grant number D43TW011403]/FIC/Estados Unidos
dc.description.sponsorshipIcahn School of Medicine at Mount Sinai/[]//Estados Unidos
dc.description.sponsorshipUniversidad Nacional/[project 0522-21]/UNA/Costa Rica
dc.description.sponsorshipConsejo Nacional de Rectores/[]/CONARE/Costa Rica
dc.description.sponsorshipEscuela de Biología/[111-C1455]/EB/Costa Rica
dc.description.sponsorshipEscuela de Biología/[111-C2650]/EB/Costa Rica
dc.identifier.citationhttps://www.mdpi.com/2079-6382/14/8/798
dc.identifier.codproyecto111-C1455
dc.identifier.codproyecto111-C2650
dc.identifier.doihttps://doi.org/10.3390/antibiotics14080798
dc.identifier.issn2079-6382
dc.identifier.urihttps://hdl.handle.net/10669/105111
dc.language.isoeng
dc.rightsacceso abierto
dc.sourceAntibiotics, 14(8), 1-24.
dc.subjectMetagenomics
dc.subjectPlasmidome
dc.subjectMobile genetic elements
dc.subjectEnvironmental microbiology
dc.subjectRiverine ecosystems
dc.subjectqPCR
dc.subjectPublic health
dc.titleInfluence of seasonality and pollution on the presence of antibiotic resistance genes and potentially pathogenic bacteria in a tropical urban river
dc.typeartículo

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