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Qian, Xun; Gu, Jie; Sun, Wei; Wang, Xiao-Juan; Su, Jian-Qiang; Stedfeld, Robert
Journal of hazardous materials, 02/2018, Letnik: 344Journal Article
Display omitted •109 ARGs were detected in manure and compost from chicken, bovine and pig farms.•Chicken and pig manure had higher ARG diversity and abundance than bovine manure.•Composting was better at reducing ARGs in chicken manure than pig and bovine manure.•There was widespread co-occurrence of ARGs and MGEs in animal manure.•MGEs, heavy metal, and total nitrogen may explain differences among various manure. Aerobic composting is used widely for animal manure recycling, and it may reduce the amount of antibiotic resistance genes (ARGs) that enter the environment. We sampled three types of animal (bovine, chicken, and pig) manure and the corresponding composts from 12 large-scale farms, and tested multiple ARGs and mobile genetic elements (MGEs) by high-throughput qPCR. A total of 109 ARGs were detected in the manure and compost samples, thereby demonstrating that both are important ARG reservoirs. The diversity and abundance of ARGs were significantly higher in chicken and pig manure than bovine manure, but industrial composting was more efficient at reducing the ARGs in chicken manure than pig and bovine manure. Composting universally reduced some ARGs, but inconsistently influenced other ARGs from different types of animal manures. Network analysis detected the widespread co-occurrence of ARGs and MGEs. floR, ermF, catB3, aac(6′)-lb(akaaacA4), and aadA were identified as suitable indicator genes for estimating the total abundance of ARGs. Our results suggest that different animal species had significant effects on the diversity, abundance, and persistence of ARGs, where the abundance of transposons, heavy metal concentration, total nitrogen level, and the dosage and duration of exposure to antibiotics may explain these differences.
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JCR | SNIP | JCR | SNIP | JCR | SNIP | JCR | SNIP |
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in: SICRIS
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