Co-Selection of Resistance to Antibiotics, Biocides and Heavy Metals, and Its Relevance to Foodborne Pathogens
Коселекция устойчивости к антибиотикам, биоцидным препаратам и тяжёлым металлам и её значение для возбудителей пищевых инфекций
2015-11-13
SCID: 54.1/yzv77xdx
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antibiotic resistance co-selectionbiocidesfoodborne pathogensheavy metalshorizontal gene transfer
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Abstract (AI)
Concerns have been raised in recent years regarding co-selection for antibiotic resistance among bacteria exposed to biocides used as disinfectants, antiseptics and preservatives, and to heavy metals (particularly copper and zinc) used as growth promoters and therapeutic agents for some livestock species. There is indeed experimental and observational evidence that exposure to these non-antibiotic antimicrobial agents can induce or select for bacterial adaptations that result in decreased susceptibility to one or more antibiotics. This may occur via cellular mechanisms that are protective across multiple classes of antimicrobial agents or by selection of genetic determinants for resistance to non-antibiotic agents that are linked to genes for antibiotic resistance. There may also be relevant effects of these antimicrobial agents on bacterial community structure and via non-specific mechanisms such as mobilization of genetic elements or mutagenesis. Notably, some co-selective adaptations have adverse effects on fitness in the absence of a continued selective pressure. The present review examines the evidence for the significance of these phenomena, particularly in respect of bacterial zoonotic agents that commonly occur in livestock and that may be transmitted, directly or via the food chain, to human populations.
Key Findings
1
Biocides and heavy metals may influence resistance through changes in bacterial community structure, mobilization of genetic elements, and nonspecific mutagenesis.
2
Co-selection may arise through cross-protective cellular mechanisms or genetic linkage between resistance determinants for non-antibiotic agents and antibiotics.
3
Exposure to biocides and heavy metals can experimentally and observationally select bacterial adaptations that decrease susceptibility to one or more antibiotics.
4
Some co-selected resistance adaptations impose fitness costs when the corresponding selective pressure is absent.
5
The review evaluates the significance of these phenomena for zoonotic bacteria associated with livestock and transmission to humans through direct contact or the food chain.
Research Object
Bacterial zoonotic foodborne pathogens occurring in livestock and transmissible to humans through direct contact or the food chain
Research Subject
Co-selection and persistence of resistance to antibiotics, biocides, and heavy metals, including the cellular, genetic, ecological, and fitness-related mechanisms underlying decreased antibiotic susceptibility
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2015-11-13
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