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Human migration activities drive the fluctuation of ARGs: Case study of landfills in Nanjing, eastern China

机译:人类移民活动推动了args的波动:中国东部南京垃圾填埋场案例研究

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摘要

Landfills are perfect sites to study the effect of human migration on fluctuation of antibiotic resistance genes (ARGs) as they are the final destination of municipal waste. For example, large-scale human migration during the holidays is often accompanied by changes in waste dumping having potential effects on ARG abundance. Three landfills were selected to examine fluctuation in the abundance of fifteen ARGs and Intl1 genes for 14 months in Nanjing, eastern China. Mass human migration, the amount of dumped waste and temperature exerted the most significant effects on bimonthly fluctuations of ARG levels in landfill sites. As a middle-sized cosmopolitan city in China, millions of college students and workers migrate during holidays, contributing to the dramatic increases in waste production and fluctuation in ARG abundances. In line with this, mass migration explained most of the variation in waste dumping. The waste dumping also affected the bioaccessibility of mixed-compound pollutants that further positively impacted the level of ARGs. The influence of various bioaccessible compounds on ARG abundance followed the order: antibiotics>nutrients>metals>organic pollutants. Concentrations of bioaccessible compounds were more strongly correlated with ARG levels compared to total compound concentrations. Improved waste classification and management strategies could thus help to decrease the amount of bioaccessible pollutants leading to more effective control for urban ARG dissemination.
机译:垃圾掩埋场是研究人类迁移对抗生素抗性基因(ARG)波动影响的理想场所,因为它们是城市垃圾的最终目的地。例如,在假日期间大规模的人类迁徙常常伴随着废物倾倒的变化,这可能对ARG的丰度产生潜在影响。在中国东部的南京,选择了三个垃圾填埋场以检查15个ARG和Intl1基因在14个月内的丰度波动。大规模的人类迁徙,倾倒的废物量和温度对垃圾填埋场中ARG水平的双月波动影响最大。作为中国的一个中型国际都会,数百万的大学生和工人在假日期间移徙,导致废物产生的急剧增加和ARG含量的波动。与此相应,大规模迁移解释了废物倾倒的大部分变化。废物倾倒还影响了混合化合物污染物的生物可及性,进一步对ARGs水平产生了积极影响。各种生物可利用化合物对ARG丰度的影响顺序为:抗生素>营养素>金属>有机污染物。与总化合物浓度相比,生物可及化合物的浓度与ARG水平的相关性更高。因此,改进的废物分类和管理策略可以帮助减少生物可接触污染物的数量,从而更有效地控制城市ARG的传播。

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