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Heavy metal driven co-selection of antibiotic resistance in soil and water bodies impacted by agriculture and aquaculture

机译:重金属驱动的农业和水产养殖对土壤和水体中抗生素抗性的共选

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摘要

The use of antibiotic agents as growth promoters was banned in animal husbandry to prevent the selection and spread of antibiotic resistance. However, in addition to antibiotic agents, heavy metals used in animal farming and aquaculture might promote the spread of antibiotic resistance via co-selection. To investigate which heavy metals are likely to co-select for antibiotic resistance in soil and water, the available data on heavy metal pollution, heavy metal toxicity, heavy metal tolerance, and co-selection mechanisms was reviewed. Additionally, the risk of metal driven co-selection of antibiotic resistance in the environment was assessed based on heavy metal concentrations that potentially induce this co-selection process. Analyses of the data indicate that agricultural and aquacultural practices represent major sources of soil and water contamination with moderately to highly toxic metals such as mercury (Hg), cadmium (Cd), copper (Cu), and zinc (Zn). If those metals reach the environment and accumulate to critical concentrations they can trigger co-selection of antibiotic resistance. Furthermore, co-selection mechanisms for these heavy metals and clinically as well as veterinary relevant antibiotics have been described. Therefore, studies investigating co-selection in environments impacted by agriculture and aquaculture should focus on Hg, Cd, Cu, and Zn as selecting heavy metals. Nevertheless, the respective environmental background has to be taken into account.
机译:畜牧业禁止使用抗生素作为生长促进剂,以防止选择和传播抗生素耐药性。但是,除抗生素剂外,用于动物养殖和水产养殖的重金属还可能通过共选促进抗生素耐药性的传播。为了研究哪种重金属可能会共同选择土壤和水中的抗生素耐药性,回顾了有关重金属污染,重金属毒性,重金属耐受性和共选机制的可用数据。另外,根据环境中可能导致该共选过程的重金属浓度评估了金属驱动的抗生素抗性共选风险。数据分析表明,农业和水产养殖方式是土壤和水污染的主要来源,其污染程度中等至剧毒,例如汞(Hg),镉(Cd),铜(Cu)和锌(Zn)。如果这些金属到达环境并积累到临界浓度,它们可能会触发抗生素抗性的共选。此外,已经描述了这些重金属与临床以及与兽医有关的抗生素的共选机制。因此,在农业和水产养殖影响的环境中进行共选研究的研究应集中在汞,镉,铜和锌作为重金属的选择上。然而,必须考虑各自的环境背景。

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