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Updated: Aug 23, 2026

Characterization of a Pathogenic Escherichia coli Strain Derived from Oreochromis spp. Farms Using Whole-Genome Sequencing
Published on: December 23, 2022
Vancomycin-resistant Enterococcus faecium isolates causing hospital outbreaks in northern Italy belong to the
Maria Grazia Bonora1, Marco Ligozzi, Maria De Fatima
1Microbiology Section, Department of Pathology, University of Verona, Verona, Italy.
Abstract:
Multilocus sequence typing (MLST) was used to obtain insights into the genetic relationships between 14 vancomycin-resistant Enterococcus faecium (VREF) isolates from humans (hospitalized patients, 5 strains) and nonhuman sources (meat and poultry, 9 strains) in northern Italy over the period 1993-2001. The typing scheme (Homan et al., 2002, J. Clin. Microb., 40:1963-1971) based on seven housekeeping genes--adk (adenylate kinase), atpA (ATP synthase, alpha subunit), ddl (D-alanine-D-alanine ligase), gyd (glyceraldehyde-3-phosphate dehydrogenase), gdh (glucose-6-phosphate dehydrogenase), purK (phosphoribosylaminoimidazole carboxylase ATPase subunit), and pstS (phosphate ATP-binding cassette transporter)--was used. In the 14 VREF analyzed, the number of unique alleles ranged from 1 (gyd) to 8 (atpA). Isolates from hospitalized patients were defined by the unique allele purK 1. Nine sequence types (STs) were identified. All of the epidemic strains isolated over the period 2000-2001 showed identical or closely related pulsed-field gel electrophoresis (PFGE) patterns and clustered in the same ST78. These strains shared six of the seven alleles with the strain CA20 representative of the 1993-1999 outbreaks, which PFGE indicated as being unrelated to those of the recent outbreaks. MLST confirmed the unrelatedness of human and nonhuman strains already detected by PFGE. All isolates clustered in three main genetic lineages: group A comprised two of the three isolates from meat; group C the human strains of all outbreaks and one poultry strain; and group B four of the five poultry strains and one meat strain. All human strains carried the esp gene and clustered in the C1 sublineage that has been described as having emerged recently worldwide.
Insights
Genetic analysis of vancomycin-resistant Enterococcus faecium (VREF) using multilocus sequence typing (MLST) revealed distinct human and nonhuman strain lineages. Human VREF strains, including epidemic isolates, clustered separately and carried the esp gene, indicating specific genetic traits.
Area of Science:
- Microbiology
- Genetics
- Epidemiology
Background:
- Vancomycin-resistant Enterococcus faecium (VREF) poses a significant threat in healthcare settings.
- Understanding the genetic diversity and transmission routes of VREF is crucial for effective control strategies.
Purpose of the Study:
- To investigate the genetic relationships among VREF isolates from human and nonhuman sources in northern Italy.
- To determine the genetic relatedness of epidemic VREF strains and their origins.
Main Methods:
- Multilocus sequence typing (MLST) was employed, analyzing seven housekeeping genes (adk, atpA, ddl, gyd, gdh, purK, pstS).
- Pulsed-field gel electrophoresis (PFGE) was used for comparison with MLST data.
- Isolates were sourced from hospitalized patients (n=5) and nonhuman sources like meat and poultry (n=9) between 1993-2001.
Main Results:
- Nine distinct sequence types (STs) were identified among the 14 VREF isolates.
- Epidemic strains from 2000-2001 clustered in ST78, closely related to earlier outbreak strains (CA20).
- MLST confirmed the genetic distinctness of human and nonhuman VREF strains, with human isolates forming a specific lineage (Group C1) carrying the esp gene.
Conclusions:
- MLST effectively differentiated VREF isolates, revealing distinct genetic lineages associated with human and nonhuman sources.
- Human VREF strains, particularly epidemic ones, belong to a specific genetic lineage (C1) with the esp gene, suggesting a potential clonal expansion.
- The findings highlight the importance of source tracking and understanding VREF transmission dynamics.
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