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Pathogenicity island markers in commensal and uropathogenic Escherichia coli isolates
1Microbiology Department, Hospital Vall d'Hebron, Universitat Autònoma de Barcelona, Barcelona, Spain.
Abstract:
Uropathogenic isolates of Escherichia coli (UPEC) contain blocks of DNA, termed pathogenicity islands (PAIs), that contribute to their virulence. Two multiplex PCR assays were developed to detect eight PAI markers among 50 commensal E. coli and 100 UPEC isolates. In total, 40% of commensal isolates and 93% of UPEC carried PAIs. Despite this difference, the distribution of various PAIs showed the same pattern in both groups, with the most prevalent being PAI IV(536) (38% commensal vs. 89% UPEC), followed by PAI I(CFT073) (26% vs. 73%), PAI II(CFT073) (14% vs. 46%), PAI II(J96) (8% vs. 34%), PAI I(536) (8% vs. 33%) and PAI II(536) (4% vs. 20%). PAI III(536) was detected only in UPEC (2%), while PAI I(J96) was not detected in any isolate. Although the mean number of PAIs per isolate was higher among UPEC (2.97) than in commensal (0.98) isolates, there were no statistical differences among group B2 E. coli from the two origins; however, commensal isolates from groups D and B1 appeared to be less virulent than pathogenic isolates. Regardless of their phylogenetic group, nearly all the commensal and UPEC isolates with the same number of PAIs had the same PAI combinations. Although group B2 E. coli are uncommon among commensal intestinal flora, they are highly virulent when present, suggesting that the intestinal flora may act as a reservoir for bacteria that can cause urinary tract infection.
Insights
Uropathogenic Escherichia coli (UPEC) possess pathogenicity islands (PAIs) that enhance virulence. Most UPEC and many commensal E. coli carry PAIs, with intestinal flora potentially serving as a reservoir for UPEC.
Area of Science:
- Microbiology
- Genetics
- Infectious Diseases
Background:
- Uropathogenic Escherichia coli (UPEC) are a significant cause of urinary tract infections.
- Pathogenicity islands (PAIs) are mobile genetic elements that confer virulence traits to bacteria.
- Understanding PAI distribution in UPEC and commensal E. coli is crucial for infection control.
Purpose of the Study:
- To develop and apply multiplex PCR assays for detecting eight PAI markers.
- To compare the prevalence and distribution of PAIs in UPEC and commensal E. coli isolates.
- To investigate the role of phylogenetic groups and PAI combinations in E. coli virulence.
Main Methods:
- Development of two multiplex PCR assays.
- Detection of eight PAI markers in 50 commensal and 100 UPEC isolates.
- Analysis of PAI prevalence, distribution, and combinations across different E. coli groups.
Main Results:
- 93% of UPEC and 40% of commensal E. coli harbored PAIs.
- PAI IV(536) was the most prevalent PAI in both groups.
- Commensal isolates from groups D and B1 showed lower virulence than pathogenic isolates, despite similar PAI patterns within groups.
Conclusions:
- The intestinal flora may act as a reservoir for UPEC.
- PAI carriage and combinations are key factors in E. coli virulence.
- Group B2 E. coli, though uncommon commensals, are highly virulent and associated with UTIs.
Related Concept Videos
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