Affiliation:
1. Department of Microbiology, Mercy University Hospital, T12 WE28 Cork, Ireland
2. Department of Biological Sciences, Munster Technological University, T12 P928 Cork, Ireland
Abstract
Molecular diagnostics has the potential to revolutionise the field of clinical microbiology. Microbial identification and nomenclature have, for too long, been restricted to phenotypic characterisation. However, this species-level view fails to wholly account for genetic heterogeneity, a result of lateral gene transfer, mediated primarily by mobile genetic elements. This genetic promiscuity has helped to drive virulence development, stress adaptation, and antimicrobial resistance in several important bacterial pathogens, complicating their detection and frustrating our ability to control them. We argue that, as clinical microbiologists at the front line, we must embrace the molecular technologies that allow us to focus specifically on the genetic elements that cause disease rather than the bacterial species that express them. This review focuses on the evolution of microbial taxonomy since the introduction of molecular sequencing, the role of mobile genetic elements in antimicrobial resistance, the current and emerging assays in clinical laboratories, and the comparison of phenotypic versus genotypic analyses. In essence, it is time now to refocus from species to genes as part of a new diagnostic paradigm.
Reference69 articles.
1. Prinzi, A.M., and Moore, N.M. (2023). Change of plans: Overview of bacterial taxonomy, recent changes of medical importance, and potential areas of impact. Open Forum Infectious Diseases, Oxford University Press.
2. Microbial nomenclature: A list of names and origins;Berger;Diagn. Microbiol. Infect. Dis.,1987
3. Taxonomy and nomenclature of bacteria with clinical and scientific importance: Current concepts for pharmacists and pharmaceutical scientists;Acta Pharm. Hung.,2019
4. Global burden of bacterial antimicrobial resistance in 2019: A systematic analysis;Murray;Lancet,2022
5. Aspects of excessive antibiotic consumption and environmental influences correlated with the occurrence of resistance to antimicrobial agents;Bungau;Curr. Opin. Environ. Sci. Health,2021