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Published on: June 14, 2024
Pathogenicity islands and the evolution of microbes
1Institut für Molekulare Infektionsbiologie, Universität Würzburg, D-97070 Würzburg, Germany. j.hacker@mail.uni-wuerzburg.de
Abstract:
Virulence factors of pathogenic bacteria (adhesins, toxins, invasins, protein secretion systems, iron uptake systems, and others) may be encoded by particular regions of the prokaryotic genome termed pathogenicity islands. Pathogenicity islands were first described in human pathogens of the species Escherichia coli, but have recently been found in the genomes of various pathogens of humans, animals, and plants. Pathogenicity islands comprise large genomic regions [10-200 kilobases (kb) in size] that are present on the genomes of pathogenic strains but absent from the genomes of nonpathogenic members of the same or related species. The finding that the G+C content of pathogenicity islands often differs from that of the rest of the genome, the presence of direct repeats at their ends, the association of pathogenicity islands with transfer RNA genes, the presence of integrase determinants and other mobility loci, and their genetic instability argue for the generation of pathogenicity islands by horizontal gene transfer, a process that is well known to contribute to microbial evolution. In this article we review these and other aspects of pathogenicity islands and discuss the concept that they represent a subclass of genomic islands. Genomic islands are present in the majority of genomes of pathogenic as well as nonpathogenic bacteria and may encode accessory functions which have been previously spread among bacterial populations.
Insights
Pathogenicity islands are large DNA regions in bacterial genomes encoding virulence factors. These islands, acquired via horizontal gene transfer, are key to microbial evolution and pathogenicity.
Area of Science:
- Microbiology
- Genomics
- Bacterial Pathogenesis
Background:
- Pathogenicity islands are distinct genomic regions found in pathogenic bacteria.
- They encode crucial virulence factors like toxins and adhesins.
- First identified in Escherichia coli, they are now recognized across diverse pathogens.
Purpose of the Study:
- To review the characteristics and origins of pathogenicity islands.
- To discuss their role as a subclass of genomic islands.
- To explore their contribution to bacterial evolution and adaptation.
Main Methods:
- Comparative genomics to identify unique genomic regions in pathogens.
- Analysis of G+C content, repeat sequences, and gene mobility markers.
- Review of existing literature on pathogenicity islands and genomic islands.
Main Results:
- Pathogenicity islands are large (10-200 kb), present in pathogens but absent in nonpathogenic relatives.
- Distinctive features include differing G+C content, direct repeats, tRNA association, and mobility genes.
- Evidence strongly suggests horizontal gene transfer as their origin.
Conclusions:
- Pathogenicity islands are acquired via horizontal gene transfer, driving microbial evolution.
- They represent a significant subclass of genomic islands.
- Understanding pathogenicity islands is crucial for comprehending bacterial virulence and adaptation.
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