Distribution and driving factors of antibiotic resistance genes in treated wastewater from different types of livestock farms

牲畜 厚壁菌 生物 废水 兽医学 放线菌门 肉鸡 抗生素耐药性 细菌 生物技术 食品科学 微生物学 生态学 环境科学 环境工程 抗生素 16S核糖体RNA 医学 遗传学
作者
Tao Chen,Shiyu Zhang,Run Zhu,Minxing Zhao,Yu Zhang,Yan Wang,Xindi Liao,Yinbao Wu,Jiandui Mi
出处
期刊:Science of The Total Environment [Elsevier]
卷期号:849: 157837-157837 被引量:39
标识
DOI:10.1016/j.scitotenv.2022.157837
摘要

Treated wastewater from livestock farms is an important reservoir for antibiotic resistance genes (ARGs), and is a main source of ARGs in the environment. However, the distribution and driving factors of ARGs in treated wastewater from different types of livestock farms are rarely reported. In this study, treated wastewater from 69 large-scale livestock farms of different types, including broiler, layer, and pig farms, was collected, and 11 subtypes of ARGs, 2 mobile genetic elements (MGEs) and bacterial community structure were analyzed. The results revealed detection rates of NDM-1 and mcr-1 of 90 % and 43 %, respectively, and the detection rates of other ARGs were 100 %. The relative abundance of ARGs, such as tetA, tetX and strB, in broiler farms was significantly higher than that in layer farms, but the bacterial α diversity was significantly lower than that in other farm types. Furthermore, although the treatment process had a greater impact on the physicochemical properties of the treated wastewater than the livestock type, livestock type was the main factor affecting the bacterial community in the treated wastewater. The analysis of potential host bacteria of ARGs revealed significant differences in the host bacteria of ARGs in treated wastewater from different types of livestock farms. The host bacteria of ARGs in broiler farms mainly belonged to Actinobacteria, layer farms mainly belonged to Proteobacteria, and pig farms mainly belonged to Firmicutes. Additionally, redundancy analysis showed that the distribution of ARGs may have resulted from the combination of multiple driving factors in different types of livestock farms, among which tnpA and NH4+-N were the main influencing factors. This study revealed multiple driving factors for the distribution of typical ARGs in treated wastewater from different types of livestock farms, providing basic data for the prevention and control of ARG pollution in agricultural environments.
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