Department of Microbiology and Virology, Faculty of Biology, University of Havana, Havana, Cuba.
Microbiology and Environmental Technologies Section, Water Research Institute, University of Granada, Granada, Spain.
Microb Ecol. 2023 Dec 13;87(1):14. doi: 10.1007/s00248-023-02325-4.
Cold environments are the most widespread extreme habitats in the world. However, the role of wastewater treatment plants (WWTPs) in the cryosphere as hotspots in antibiotic resistance dissemination has not been well established. Hence, a snapshot of the resistomes of WWTPs in cold environments, below 5 °C, was provided to elucidate their role in disseminating antibiotic resistance genes (ARGs) to the receiving waterbodies. The resistomes of two natural environments from the cold biosphere were also determined. Quantitative PCR analysis of the aadA, aadB, ampC, bla, bla, dfrA1, ermB, fosA, mecA, qnrS, and tetA(A) genes indicated strong prevalences of these genetic determinants in the selected environments, except for the mecA gene, which was not found in any of the samples. Notably, high abundances of the aadA, ermB, and tetA(A) genes were found in the influents and activated sludge, highlighting that WWTPs of the cryosphere are critical hotspots for disseminating ARGs, potentially worsening the resistance of bacteria to some of the most commonly prescribed antibiotics. Besides, the samples from non-disturbed cold environments had large quantities of ARGs, although their ARG profiles were highly dissimilar. Hence, the high prevalences of ARGs lend support to the fact that antibiotic resistance is a common issue worldwide, including environmentally fragile cold ecosystems.
寒冷环境是世界上分布最广泛的极端生境。然而,废水处理厂(WWTPs)作为抗药性传播热点在冰冻圈中的作用尚未得到充分证实。因此,本研究提供了一个在 5°C 以下的寒冷环境中 WWTP 耐药组的快照,以阐明它们在将抗生素抗性基因(ARGs)传播到受纳水体中的作用。本研究还确定了两个来自寒冷生物圈的自然环境的耐药组。定量 PCR 分析表明,在选定的环境中,除 mecA 基因未在任何样本中发现外,aadA、aadB、ampC、bla、bla、dfrA1、ermB、fosA、mecA、qnrS 和 tetA(A) 这些遗传决定因素在这些环境中具有很强的普遍性。值得注意的是,aadA、ermB 和 tetA(A) 基因在进水和活性污泥中的丰度很高,这突出表明,冰冻圈中的 WWTPs 是传播 ARGs 的关键热点,可能会使细菌对一些最常用的抗生素产生耐药性。此外,来自未受干扰的寒冷环境的样本中含有大量的 ARGs,尽管它们的 ARG 图谱有很大的不同。因此,高普遍性的 ARGs 支持这样一个事实,即抗生素耐药性是一个全球性的普遍问题,包括环境脆弱的寒冷生态系统。