Fate of antimicrobial resistance genes (ARG) and ARG carriers in struvite production process from human urine.

IF 1.9 4区 环境科学与生态学 Q4 ENGINEERING, ENVIRONMENTAL Journal of Environmental Science and Health Part A-toxic\/hazardous Substances & Environmental Engineering Pub Date : 2023-01-01 Epub Date: 2023-07-19 DOI:10.1080/10934529.2023.2235246
Nebiyat N Woldeyohannis, Adey F Desta
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Abstract

Struvite, a human urine-derived fertilizer types, is characterized by its low water solubility that renders it a slow-releasing eco-friendly fertilizer. Knowing the fate of antibiotic resistance genes in struvite is important since human urine carries microorganisms, viruses and mobilomes. In this study, urine samples were collected and struvite production was done using MgCl2. From the fresh, stored urine and struvite, DNA was extracted and metagenomic sequencing was done using Illumina HiSeqX. Metagenome-derived genome sequence analysis revealed the dominance of phages of Streptococcus, Bacillus and Escherichia, with nearly 50% abundance of streptococcus phage in fresh urine. Increased antibiotic resistance genes were found in the stored urine than in fresh and struvite samples. The top five resistance genes in all the three samples were to aminoglycosides, carbapenem, chloramphenicol, erythromycin and efflux pump, with key carrying pathogens including Acinetobacter, Aeromonas and Enterococcus. The identified families for carbapenem, aminoglycoside resistance and efflux pump were shown persistent in struvite with a shift in gene families. The detection of resistance-gene-laden mobilomes, including the last-resort antibiotics in the struvite sample, requires due attention before the implementation of struvite as fertilizer. Further optimization of the struvite production process with regard to the minimization of mobilomes is recommended.

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抗微生物耐药性基因(ARG)和ARG载体在人类尿液鸟粪石生产过程中的命运。
Struite是一种人类尿液来源的肥料,其特点是水溶性低,是一种缓释的环保肥料。了解鸟粪石中抗生素抗性基因的命运很重要,因为人类尿液携带微生物、病毒和移动体。在这项研究中,收集了尿液样本,并使用MgCl2生产鸟粪石。从新鲜储存的尿液和鸟粪石中提取DNA,并使用Illumina HiSeqX进行宏基因组测序。元基因组衍生的基因组序列分析显示,链球菌、芽孢杆菌和大肠杆菌的噬菌体占主导地位,新鲜尿液中的链球菌噬菌体丰度接近50%。与新鲜和鸟粪石样品相比,在储存的尿液中发现了更多的抗生素耐药性基因。三个样本中对氨基糖苷类、碳青霉烯类、氯霉素、红霉素和外排泵的抗性基因排名前五,主要携带病原体包括不动杆菌、气单胞菌和肠球菌。碳青霉烯类、氨基糖苷类耐药性和外排泵的已鉴定家族在鸟粪石中表现出持久性,基因家族发生了变化。在将鸟粪石用作肥料之前,需要对鸟粪石样品中携带抗性基因的移动体(包括最后的抗生素)进行检测。建议进一步优化鸟粪石生产工艺,尽量减少迁移率。
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来源期刊
CiteScore
4.10
自引率
4.80%
发文量
93
审稿时长
3.0 months
期刊介绍: 14 issues per year Abstracted/indexed in: BioSciences Information Service of Biological Abstracts (BIOSIS), CAB ABSTRACTS, CEABA, Chemical Abstracts & Chemical Safety NewsBase, Current Contents/Agriculture, Biology, and Environmental Sciences, Elsevier BIOBASE/Current Awareness in Biological Sciences, EMBASE/Excerpta Medica, Engineering Index/COMPENDEX PLUS, Environment Abstracts, Environmental Periodicals Bibliography & INIST-Pascal/CNRS, National Agriculture Library-AGRICOLA, NIOSHTIC & Pollution Abstracts, PubSCIENCE, Reference Update, Research Alert & Science Citation Index Expanded (SCIE), Water Resources Abstracts and Index Medicus/MEDLINE.
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