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Brooks, J. P., Adeli, A., & McLaughlin, M. R. (2014). Microbial ecology, bacterial pathogens, and antibiotic resistant genes in swine manure wastewater as influenced by three swine management systems. Water Res, 57, 96–103.
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Chen, B., Liang, X., Nie, X., Huang, X., Zou, S., & Li, X. (2015). The role of class I integrons in the dissemination of sulfonamide resistance genes in the Pearl River and Pearl River Estuary, South China. J Hazard Mater, 282, 61–67.
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He, Y., & He, X. (2016). Molecular Design and Genetic Optimization of Antimicrobial Peptides Containing Unnatural Amino Acids against Antibiotic-Resistant Bacterial Infections. Biopolymers, 106(5), 746–756.
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Lin, H., Sun, W., Zhang, Z., Chapman, S. J., Freitag, T. E., Fu, J., et al. (2016). Effects of manure and mineral fertilization strategies on soil antibiotic resistance gene levels and microbial community in a paddy-upland rotation system. Environ Pollut, 211, 332–337.
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Lin, H., Sun, W., Zhang, Z., Chapman, S. J., Freitag, T. E., Fu, J., et al. (2016). Effects of manure and mineral fertilization strategies on soil antibiotic resistance gene levels and microbial community in a paddy-upland rotation system. Environ Pollut, 211, 332–337.
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Luby, E. M., Moorman, T. B., & Soupir, M. L. (2016). Fate and transport of tylosin-resistant bacteria and macrolide resistance genes in artificially drained agricultural fields receiving swine manure. Sci Total Environ, 550, 1126–1133.
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Peng, S., Wang, Y., Zhou, B., & Lin, X. (2015). Long-term application of fresh and composted manure increase tetracycline resistance in the arable soil of eastern China. Sci Total Environ, 506-507, 279–286.
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Sengeløv, G. (2003). Bacterial antibiotic resistance levels in Danish farmland as a result of treatment with pig manure slurry. Environment International, 28(7), 587–595.
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Zhou, X., Qiao, M., Wang, F. - H., & Zhu, Y. - G. (2017). Use of commercial organic fertilizer increases the abundance of antibiotic resistance genes and antibiotics in soil. Environ Sci Pollut Res Int, 24(1), 701–710.
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