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污水处理厂中的非细菌性微生物群落:被低估的病原体潜在来源。

Nonbacterial Microflora in Wastewater Treatment Plants: an Underappreciated Potential Source of Pathogens.

机构信息

Institute of Environmental Science and Research, Christchurch, New Zealand.

出版信息

Microbiol Spectr. 2023 Jun 15;11(3):e0048123. doi: 10.1128/spectrum.00481-23. Epub 2023 May 24.

Abstract

Wastewater treatment plants (WWTPs) receive and treat large volumes of domestic, industrial, and urban wastewater containing pathogenic and nonpathogenic microorganisms, chemical compounds, heavy metals, and other potentially hazardous substances. WWTPs play an essential role in preserving human, animal, and environmental health by removing many of these toxic and infectious agents, particularly biological hazards. Wastewater contains complex consortiums of bacterial, viral, archaeal, and eukaryotic species, and while bacteria in WWTP have been extensively studied, the temporal and spatial distribution of nonbacterial microflora (viruses, archaea, and eukaryotes) is less understood. In this study, we analyzed the viral, archaeal, and eukaryotic microflora in wastewater throughout a treatment plant (raw influent, effluent, oxidation pond water, and oxidation pond sediment) in Aotearoa (New Zealand) using Illumina shotgun metagenomic sequencing. Our results suggest a similar trend across many taxa, with an increase in relative abundance in oxidation pond samples compared to influent and effluent samples, except for archaea, which had the opposite trend. Additionally, some microbial families, such as bacteriophages and Apicomplexa alveolates, appeared largely unaffected by the treatment process, with their relative abundance remaining stable throughout. Several groups encompassing pathogenic species, such as , Cryptococcus and , were identified. If present, these potentially pathogenic species could be a threat to human and animal health and agricultural productivity; therefore, further investigation is warranted. These nonbacterial pathogens should be considered when assessing the potential for vector transmission, distribution of biosolids to land, and discharge of treated wastewater to waterways or land. Nonbacterial microflora in wastewater remain understudied compared to their bacterial counterparts despite their importance in the wastewater treatment process. In this study, we report the temporal and spatial distributions of DNA viruses, archaea, protozoa, and fungi in raw wastewater influent, effluent, oxidation pond water, and oxidation pond sediments by using shotgun metagenomic sequencing. Our study indicated the presence of groups of nonbacterial taxa which encompass pathogenic species that may have potential to cause disease in humans, animals, and agricultural crops. We also observed higher alpha diversity in viruses, archaea, and fungi in effluent samples than in influent samples. This suggests that the resident microflora in the wastewater treatment plant may be making a greater contribution to the diversity of taxa observed in wastewater effluent than previously thought. This study provides important insights to better understand the potential human, animal, and environmental health impacts of discharged treated wastewater.

摘要

污水处理厂(WWTP)接收并处理大量的生活、工业和城市废水,其中含有致病和非致病微生物、化学化合物、重金属和其他潜在有害物质。WWTP 通过去除许多这些有毒和传染性物质,特别是生物危害,在保护人类、动物和环境健康方面发挥着重要作用。废水中含有复杂的细菌、病毒、古菌和真核生物群落,虽然 WWTP 中的细菌已经得到了广泛的研究,但非细菌微生物(病毒、古菌和真核生物)的时空分布了解得较少。在这项研究中,我们使用 Illumina shotgun 宏基因组测序分析了新西兰奥克兰的一个污水处理厂(原水进水、出水、氧化塘水和氧化塘底泥)中的病毒、古菌和真核微生物群落。我们的结果表明,许多分类群的趋势相似,与进水和出水样本相比,氧化塘样本中的相对丰度增加,除了古菌,其趋势相反。此外,一些微生物家族,如噬菌体和顶复门原生动物,似乎在很大程度上不受处理过程的影响,其相对丰度在整个过程中保持稳定。一些包含致病物种的菌群,如Cryptococcus 和,被鉴定出来。如果存在,这些潜在的致病物种可能对人类和动物健康以及农业生产力构成威胁;因此,有必要进行进一步的调查。在评估媒介传播的潜力、生物固体向土地的分布以及处理后的废水向水道或土地的排放时,应考虑这些非细菌病原体。尽管非细菌微生物在废水处理过程中很重要,但与细菌相比,它们的研究仍不够充分。在这项研究中,我们通过 shotgun 宏基因组测序报告了 raw 废水进水、出水、氧化塘水和氧化塘底泥中的 DNA 病毒、古菌、原生动物和真菌的时空分布。我们的研究表明,存在包含可能对人类、动物和农业作物造成疾病的致病物种的非细菌分类群。我们还观察到,与进水样本相比,出水样本中的病毒、古菌和真菌的 alpha 多样性更高。这表明,污水处理厂中的常驻微生物可能对废水出水中观察到的分类群多样性做出了比以前认为的更大的贡献。这项研究为更好地了解排放处理后的废水对人类、动物和环境健康的潜在影响提供了重要的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/58bd/10269893/702e5e11a658/spectrum.00481-23-f001.jpg

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