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A critical review on the antimicrobial resistance, antibiotic residue and metagenomics‐assisted antimicrobial resistance gene detection in freshwater aquaculture environment

机译:淡水养殖环境中抗菌素耐药性、抗生素残留和宏基因组学辅助抗菌素耐药基因检测的综述

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摘要

Abstract The emergence of antimicrobial resistance is one of the major challenges addressed by the aquaculture industry in recent years. Bacterial resistance to antibiotics is mainly due to the rampant prophylactic use of antibiotics in fish farms. The persistent nature of antibiotics in the system ultimately leads to the development of resistance in environmental bacteria; consequently, resistance can be transmitted to pathogenic and human commensal bacteria via horizontal gene transfer. Increased attention has been paid to antibiotic resistance in aquatic environments due to its significant threat to human health. High‐throughput genomic technologies can be used for metagenomic surveillance of antibiotic resistance determinants in environmental bacteria. Continuous monitoring programmes and timely detection of resistant pathogens are unavoidable to curb antimicrobial resistance dissemination in the aquaculture system. The present review focuses on different sources of antimicrobial resistance in aquaculture systems, the current status of antimicrobial use, antimicrobial resistance in ornamental and food fish of freshwater systems, molecular mechanisms involved in resistance development, antibiotic residue in the aquaculture environment and metagenomics‐based detection of antimicrobial resistance in the aquaculture environment.
机译:摘要 抗菌素耐药性的出现是近年来水产养殖业面临的主要挑战之一。细菌对抗生素的耐药性主要是由于养鱼场猖獗地预防性使用抗生素。抗生素在系统中的持久性最终导致环境细菌产生耐药性;因此,耐药性可以通过水平基因转移传播给致病菌和人类共生菌。由于抗生素耐药性对人类健康的重大威胁,水生环境中的抗生素耐药性越来越受到关注。高通量基因组技术可用于环境细菌中抗生素耐药性决定簇的宏基因组监测。持续监测计划和及时发现耐药性病原体对于遏制抗微生物药物耐药性在水产养殖系统中的传播是不可避免的。本综述重点关注水产养殖系统中抗微生物药物耐药性的不同来源、抗微生物药物使用的现状、淡水系统观赏鱼和食用鱼的抗微生物药物耐药性、耐药性发展所涉及的分子机制、水产养殖环境中的抗生素残留以及基于宏基因组学的水产养殖环境中抗微生物药物耐药性的检测。

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