Co-occurrence of heavy metals and antibiotics resistance in bacteria isolated from metal-polluted soil

环丙沙星 抗生素耐药性 微生物学 肠杆菌 抗生素 细菌 磺胺甲恶唑 假单胞菌 生物 亚胺培南 兽医学 环境化学 化学 大肠杆菌 医学 基因 生物化学 遗传学
作者
Oluwarotimi John Joseph,Gbemisola Elizabeth Ogunleye,Kubrat Abiola Oyinlola,Augustina I. Balogun,Damilola Tolulope Olumeko
出处
期刊:Environmental analysis, health and toxicology (Online) [The Korean Society of Environmental Health and Toxicology]
卷期号:38 (4): e2023024-e2023024 被引量:1
标识
DOI:10.5620/eaht.2023024
摘要

The indiscriminate deposition of metal-containing substances into the environment contributes significantly to high concentrations of metals in the soil resulting in resistance to metals and consequentially to antibiotics by inherent microbes which may eventually spread to other pathogenic microbes thereby elevating disease burden due to antibiotic resistance. The study aimed at determining the co-occurrence of resistance of bacteria isolated from metal-contaminated soil to heavy metals and subsequently, antibiotics. Metal-tolerant bacteria were randomly isolated from top soils from a battery waste site using the pour plate method. Selected isolates were identified using biochemical tests, then, subjected to elevating supplemented concentrations of different metal salts at 100-500 μg/mL to determine the minimum inhibitory concentration. Isolates tolerant to minimum three metals up to 400 μg/mL were subjected to Sulfamethoxazole-trimethoprim (25 μg), Imipenem (10 μg), Amoxicillin (30 μg), Ciprofloxacin (10 μg) and Tigecycline (15 μg) and observations interpreted using the guiding principle of the Clinical and Laboratory Standards Institute. Metal concentrations in the soils exceeded permissible limits. In total, 16 isolates were selected and identified as Proteus sp. (1), Pseudomonas spp. (5), Enterobacter spp. (2), Klebsiella spp. (2), Escherichia spp. (3), Raoultella spp. (2) and Rahnella sp. (1). Thirteen (81.25 %) of all isolates showed multi-resistance to the metals and seven exhibited multidrug-resistance, with 4 (57.1 %) showing resistance to three different classes of antibiotics and 3 (42.9 %) showed resistance to four antibiotic classes. Heavy metal-tolerant bacteria isolated from this study possess co-selection potentials as they showed resistance to different metals and antibiotics classes which is a concern to public health.

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