抵抗性
基因组
微生物群
抗生素耐药性
康蒂格
地表水
生物
生物多样性
基因组
生态学
遗传学
细菌
基因
环境科学
环境工程
整合子
作者
Xinyang Huang,Magaly Toro,Angélica Reyes-Jara,Andrea I. Moreno‐Switt,Aiko D. Adell,Celso José Bruno de Oliveira,Raquel Regina Bonelli,Sebastián Gutiérrez,Francisca P. Álvarez,Alan Douglas de Lima Rocha,Gabriela Bergiante Kraychete,Zhao Chen,Christopher J. Grim,Eric J. Brown,Rebecca Bell,Jianghong Meng
出处
期刊:Water Research
[Elsevier BV]
日期:2024-08-04
卷期号:264: 122208-122208
被引量:10
标识
DOI:10.1016/j.watres.2024.122208
摘要
Surface water ecosystems are intimately intertwined with anthropogenic activities and have significant public health implications as primary sources of irrigation water in agricultural production. Our extensive metagenomic analysis examined 404 surface water samples from four different geological regions in Chile and Brazil, spanning irrigation canals (n = 135), rivers (n = 121), creeks (n = 74), reservoirs (n = 66), and ponds (n = 8). Overall, 50.25 % of the surface water samples contained at least one of the pathogenic or contaminant bacterial genera (Salmonella: 29.21 %; Listeria: 6.19 %; Escherichia: 35.64 %). Furthermore, a total of 1,582 antimicrobial resistance (AMR) gene clusters encoding resistance to 25 antimicrobial classes were identified, with samples from Brazil exhibiting an elevated AMR burden. Samples from stagnant water sources were characterized by dominant Cyanobacteriota populations, resulting in significantly reduced biodiversity and more uniform community compositions. A significant association between taxonomic composition and the resistome was supported by a Procrustes analysis (p < 0.001). Notably, regional signatures were observed regarding the taxonomic and resistome profiles, as samples from the same region clustered together on both ordinates. Additionally, network analysis illuminated the intricate links between taxonomy and AMR at the contig level. Our deep sequencing efforts not only mapped the microbial landscape but also expanded the genomic catalog with newly characterized metagenome-assembled genomes (MAGs), boosting the classification of reads by 12.85 %. In conclusion, this study underscores the value of metagenomic approaches in surveillance of surface waters, enhancing our understanding of microbial and AMR dynamics with far-reaching public health and ecological ramifications.
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