The incidence of antibiotic resistance within and beyond the agricultural ecosystem: A concern for public health
Распространённость устойчивости к антибиотикам в пределах сельскохозяйственной экосистемы и за её пределами: проблема общественного здравоохранения
2020-07-25
SCID: 54.1/eewqn43m
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agricultural ecosystemantibiotic resistance genesantimicrobial resistanceaquaculture-animal-manure-soil-water-plant nexusenvironmental resistance detection
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Abstract (AI)
The agricultural ecosystem creates a platform for the development and dissemination of antimicrobial resistance, which is promoted by the indiscriminate use of antibiotics in the veterinary, agricultural, and medical sectors. This results in the selective pressure for the intrinsic and extrinsic development of the antimicrobial resistance phenomenon, especially within the aquaculture-animal-manure-soil-water-plant nexus. The existence of antimicrobial resistance in the environment has been well documented in the literature. However, the possible transmission routes of antimicrobial agents, their resistance genes, and naturally selected antibiotic-resistant bacteria within and between the various niches of the agricultural environment and humans remain poorly understood. This study, therefore, outlines an overview of the discovery and development of commonly used antibiotics; the timeline of resistance development; transmission routes of antimicrobial resistance in the agro-ecosystem; detection methods of environmental antimicrobial resistance determinants; factors involved in the evolution and transmission of antibiotic resistance in the environment and the agro-ecosystem; and possible ways to curtail the menace of antimicrobial resistance.
Key Findings
1
Antibiotic resistance is especially relevant across the interconnected aquaculture–animal manure–soil–water–plant nexus.
2
Controlling antimicrobial resistance requires addressing factors that drive its evolution and dissemination throughout the agro-ecosystem.
3
Environmental antimicrobial resistance is well documented, but transmission routes among agricultural niches and humans remain poorly understood.
4
The agricultural ecosystem promotes antimicrobial resistance through indiscriminate antibiotic use in veterinary, agricultural, and medical sectors.
5
The study reviews antibiotic discovery, resistance-development timelines, resistance transmission pathways, environmental detection methods, evolutionary factors, and mitigation strategies.
Research Object
Antimicrobial resistance within and beyond the agricultural ecosystem, including the aquaculture–animal manure–soil–water–plant nexus and its links to humans
Research Subject
The transmission routes, environmental determinants, evolutionary drivers, and mitigation of antibiotic resistance across agricultural niches and between the agro-ecosystem and humans
Publication Details
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2020-07-25
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