Contamination of antibiotic resistance genes (ARGs) in a typical marine aquaculture farm: source tracking of ARGs in reared aquatic organisms

Haochang Su, Xiao-juan Hu, Linglong Wang, Wujie Xu, Yu Xu, Guo-liang Wen, Zhuo-jia Li, Yucheng Cao
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引用次数: 20

Abstract

Abstract Although the prevalence and concentrations of antibiotic resistance genes (ARGs) in aquaculture is receiving increasing scientific interest, there is little understanding of the direct sources and dissemination pathways of ARGs in marine aquaculture-reared organisms. This study investigated the dynamics of ARGs and the bacterial community throughout the rearing period in a typical marine aquaculture farm in South China. The results demonstrated that sul1 and qnrD were predominant in the sediment, and qnrD and qnrA were predominant in the intestinal tracts of shrimps. Network analysis showed that the chemical oxygen demand, total organic carbon, dissolved organic carbon, suspended solids, and total phosphorus were positively correlated with the predominant ARGs. The results of the network and source tracking analyses indicate that environmental factors and the bacterial community may drive the dissemination of ARGs dissemination in the environment and in shrimp reared by marine aquaculture, and sediment is the most direct and important medium in this dissemination. These results aid in improving our understanding of the sources, level, and dissemination of ARGs in marine aquaculture.
典型海洋养殖场抗生素耐药基因污染:养殖水生生物抗生素耐药基因来源追踪
尽管水产养殖中抗生素耐药基因(ARGs)的流行和浓度正受到越来越多的科学关注,但人们对ARGs在海洋水产养殖生物中的直接来源和传播途径知之甚少。本研究调查了华南典型海产养殖场养殖期间ARGs和细菌群落的动态变化。结果表明,沉积物中以sul1和qnrD为主,肠道中以qnrD和qnrA为主。网络分析表明,化学需氧量、总有机碳、溶解有机碳、悬浮物和总磷与主要ARGs呈显著正相关。网络和源头跟踪分析结果表明,环境因素和细菌群落可能驱动ARGs在环境和海洋养殖对虾中的传播,而沉积物是这种传播最直接和最重要的媒介。这些结果有助于提高我们对海洋水产养殖中ARGs的来源、水平和传播的理解。
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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