[Spatial and Temporal Distribution of Antibiotic Resistance Genes in Different River Sediments in Typical Cities: A Case Study of Shijiazhuang].

Q2 Environmental Science Huanjing Kexue/Environmental Science Pub Date : 2024-06-08 DOI:10.13227/j.hjkx.202306088
Bo Zhao, Yuan-Meng Song, Meng-Qi Lu, Yin-Hu Bai, Hao-da Chen, Sai Gao, Lin-Jing Wang, Lu-Lu Zhang, Jian-Sheng Cui
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引用次数: 0

Abstract

Rivers are important reservoirs of antibiotic resistance genes (ARGs). However, most current studies have focused on the temporal and spatial distribution, and data on the differences in the species and abundance of ARGs between urban and rural rivers is still lacking for certain areas. In view of this, two rural rivers and three urban rivers were selected in Shijiazhuang City. In both December 2020 and April 2021, sediments were collected at 15 sampling sites. Metagenomic sequencing technology was used to compare the differences in temporal-spatial variation for ARGs in sediments. The results showed that:① 162 and 79 ARGs were detected in urban (4 776 ±4 452) and rural rivers (1 043 ±632), respectively. The abundance and species of ARGs in urban rivers were higher than those in rural rivers. ② The relative abundances of sulfonamide (SAs,27 %), aminoglycoside (AGs,26 %), and multidrug (MDs,15 %) ARGs had the highest abundance in urban rivers, whereas the relative abundance of MDs ARGs was highest in rural rivers (65 %). On the whole, the complexity of ARGs in urban rivers was higher than that in rural rivers. ③ There was a significant positive correlation between SAs, AGs, MDs, tetracycline, phenicol, macrolides-lincosamids-streptogramins (MLS), β-lactams, and diaminopyrimidine ARGs in urban rivers (P < 0.01); however, there was a significant negative correlation between glycopeptide ARGs and all types of ARGs (P < 0.05 and P < 0.01). There was a significant positive correlation between MDs and SAs ARGs in rural rivers (P < 0.05), but there was a significant negative correlation between amino aminocoumarin, peptide, rifamycin, and fosfomycin ARGs (P < 0.05 and P < 0.01). ④ For the temporal variation in urban rivers, 162 ARGs (4 776 ±4 452) and 148 ARGs (5 673 ±5 626) were detected in December and April, respectively. For the temporal variation in rural rivers, 79 species (1 043 ±632) and 46 species (467 ±183) were detected in December and April, respectively. ⑤ RDA analysis results showed that the spatial-temporal distributions of ARGs in urban and rural rivers were different. Correlation analysis showed that the ARGs in urban rivers were significantly correlated with the number of industrial enterprises, whereas the ARGs in rural rivers were significantly correlated with the output value of animal husbandry. In general, this study identified the main influencing factors for ARGs in different rivers and provided data support for ARGs risk management in different rivers.

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[典型城市不同河流沉积物中抗生素耐药基因的时空分布:以石家庄为例]。
河流是抗生素耐药基因(ARGs)的重要贮藏地。然而,目前的研究大多集中在时间和空间分布上,在某些地区仍缺乏城乡河流之间 ARGs 的种类和丰度差异的数据。有鉴于此,我们在石家庄市选择了两条农村河流和三条城市河流。分别于 2020 年 12 月和 2021 年 4 月在 15 个采样点采集了沉积物。利用元基因组测序技术比较了沉积物中 ARGs 的时空变异差异。结果表明:①城市河流(4 776 ±4 452)和农村河流(1 043 ±632)分别检测到162个和79个ARGs。城市河流中 ARGs 的丰度和种类均高于农村河流。在城市河流中,磺胺类(SAs,27%)、氨基糖苷类(AGs,26%)和多药类(MDs,15%)ARGs的相对丰度最高,而在农村河流中,多药类ARGs的相对丰度最高(65%)。总体而言,城市河流中 ARGs 的复杂程度高于农村河流。城市河流中的 SAs、AGs、MDs、四环素、苯酚、大环内酯类-林可霉素-链霉素(MLS)、β-内酰胺类和二氨基嘧啶类 ARGs 之间存在明显的正相关(P < 0.01);但糖肽类 ARGs 与所有类型的 ARGs 之间存在明显的负相关(P < 0.05 和 P < 0.01)。农村河流中的 MDs 和 SAs ARGs 之间存在明显的正相关(P < 0.05),但氨基香豆素、肽、利福美辛和磷霉素 ARGs 之间存在明显的负相关(P < 0.05 和 P < 0.01)。在城市河流的时间变化中,12 月和 4 月分别检测到 162 个 ARGs(4 776 ±4 452)和 148 个 ARGs(5 673 ±5 626)。在农村河流的时间变化中,12 月和 4 月分别检测到 79 种(1 043 ±632)和 46 种(467 ±183)。⑤ RDA 分析结果表明,城市和农村河流中 ARGs 的时空分布不同。相关分析表明,城市河流中的 ARGs 与工业企业数量显著相关,而农村河流中的 ARGs 与畜牧业产值显著相关。总之,本研究确定了不同河流 ARGs 的主要影响因素,为不同河流 ARGs 风险管理提供了数据支持。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Huanjing Kexue/Environmental Science
Huanjing Kexue/Environmental Science Environmental Science-Environmental Science (all)
CiteScore
4.40
自引率
0.00%
发文量
15329
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