Large-Scale Biogeographical Shifts of Abundance of Antibiotic Resistance Genes and Marine Bacterial Communities as Their Carriers along a Trophic Gradient

Author:

Dželalija Mia1ORCID,Fredotović Željana1ORCID,Udiković-Kolić Nikolina2,Kalinić Hrvoje3,Jozić Slaven4ORCID,Šamanić Ivica1ORCID,Ordulj Marin5ORCID,Maravić Ana1

Affiliation:

1. Department of Biology, Faculty of Science, University of Split, 21000 Split, Croatia

2. Division for Marine and Environmental Research, Ruđer Bošković Institute, 10002 Zagreb, Croatia

3. Department of Informatics, Faculty of Science, University of Split, 21000 Split, Croatia

4. Institute of Oceanography and Fisheries, 21000 Split, Croatia

5. University Department of Marine Studies, University of Split, 21000 Split, Croatia

Abstract

The role of marine environments in the global spread of antibiotic resistance still remains poorly understood, leaving gaps in the One Health-based research framework. Antibiotic resistance genes (ARGs) encoding resistance to five major antibiotic classes, including sulfonamides (sul1, sul2), tetracyclines (tetA, tetB), β-lactams (blaCTX-M, blaTEM blaVIM), macrolides (ermB, mphA), aminoglycosides (aac3-2), and integrase gene (intl1) were quantified by RT-qPCR, and their distribution was investigated in relation to environmental parameters and the total bacterial community in bottom layer and surface waters of the central Adriatic (Mediterranean), over a 68 km line from the wastewater-impacted estuary to coastal and pristine open sea. Seasonal changes (higher in winter) were observed for antibiotic resistance frequency and the relative abundances of ARGs, which were generally higher in eutrophic coastal areas. In particular, intl1, followed by blaTEM and blaVIM, were strongly associated with anthropogenic influence and Gammaproteobacteria as their predominant carriers. Water column stratification and geographic location had a significant influence on ARGs distribution in the oligotrophic zone, where the bacterial community exhibited a seasonal shift from Gammaproteobacteria in winter to Marine group II in summer.

Funder

Croatian Science Foundation

Publisher

MDPI AG

Subject

Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Computer Science Applications,Spectroscopy,Molecular Biology,General Medicine,Catalysis

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