Determination of Phylogroups, Pathotypes and Antibiotic Resistance Profiles of E. coli Isolates from Freshwater and Wastewater in the City of Panama
Gabriela A. Rodríguez Guevara, Emmanuel Michelangelli, Juan R. Medina-Sánchez, Fermín Mejía-Meléndez, Carmen Indira Espino, José E. Moreno P., Alex O. Martínez Torres, Jordi Querol-Audí

TL;DR
This study examines E. coli from Panama's water sources, finding antibiotic resistance and pathogenic strains in wastewater, highlighting risks of resistant bacteria spread.
Contribution
Identifies pathogenic and antibiotic-resistant E. coli strains in wastewater, emphasizing the role of treatment plants in spreading resistance.
Findings
18% of wastewater isolates belonged to pathogenic phylogroups D or B2.
WWTP isolates showed resistance to multiple broad-spectrum antibiotics.
Quinolone resistance gene qnrB19 was prevalent in river isolates.
Abstract
Untreated water bodies are critical ecological niches where environmental conditions can drive the adaptive evolution of bacterial populations, enabling them to acquire new traits such as antibiotic-resistance genes. Escherichia coli is typically a commensal bacterium but can evolve into a pathogenic form, known as Diarrheagenic E. coli, responsible for both intestinal and extraintestinal diseases. This study focuses on the characterization of E. coli isolates from water samples collected from the Matasnillo River and the influence of the Juan Díaz Wastewater Treatment Plant (WWTP). While isolates from the Matasnillo River were classified as commensal, 18% of the isolates from the WWTP belonged to either phylogroups D or B2. Pathotype analysis revealed the presence of Entero-Toxigenic and Entero-Hemorrhagic E. coli in the WWTP. Moreover, Matasnillo River isolates exhibited resistance…
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Taxonomy
TopicsVibrio bacteria research studies · Antibiotic Resistance in Bacteria · Escherichia coli research studies
