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Characterization of the resistome in manure soil and wastewater from dairy and beef production systems

机译:表征乳制品和牛肉生产系统中肥料土壤和废水中的抵抗力

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摘要

It has been proposed that livestock production effluents such as wastewater, airborne dust and manure increase the density of antimicrobial resistant bacteria and genes in the environment. The public health risk posed by this proposed outcome has been difficult to quantify using traditional microbiological approaches. We utilized shotgun metagenomics to provide a first description of the resistome of North American dairy and beef production effluents, and identify factors that significantly impact this resistome. We identified 34 mechanisms of antimicrobial drug resistance within 34 soil, manure and wastewater samples from feedlot, ranch and dairy operations. The majority of resistance-associated sequences found in all samples belonged to tetracycline resistance mechanisms. We found that the ranch samples contained significantly fewer resistance mechanisms than dairy and feedlot samples, and that the resistome of dairy operations differed significantly from that of feedlots. The resistome in soil, manure and wastewater differed, suggesting that management of these effluents should be tailored appropriately. By providing a baseline of the cattle production waste resistome, this study represents a solid foundation for future efforts to characterize and quantify the public health risk posed by livestock effluents.
机译:已经提出,诸如废水,空气中的尘埃和粪便之类的牲畜生产废水增加了环境中抗微生物细菌和基因的密度。提议的结果所带来的公共卫生风险很难用传统的微生物学方法来量化。我们利用shot弹枪宏基因组学对北美乳制品和牛肉生产废水的抵抗力组进行了首次描述,并确定了显着影响该抵抗力组的因素。我们从饲养场,牧场和奶牛场的34个土壤,粪肥和废水样本中确定了34种抗药性机制。在所有样品中发现的大多数抗性相关序列属于四环素抗性机制。我们发现,牧场样品所包含的抗性机制明显少于乳牛场和育肥场样品,而且乳业运营的抵抗力与育肥场明显不同。土壤,粪便和废水中的电阻率有所不同,这表明应适当调整这些废水的管理。通过提供牛生产废料抵抗力的基线,该研究为表征和量化畜禽粪便造成的公共健康风险的未来工作奠定了坚实的基础。

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