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Impact of Integrated Fish Farming on Antimicrobial Resistance in a Pond Environment

机译:池塘环境中综合养鱼对抗菌素耐药性的影响

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摘要

Integrated fish farming combines livestock production with fish farming. Animal manure is shed directly into a fish pond as fertilizer and supports the growth of photosynthetic organisms. The livestock, mainly chickens and pigs, is often fed feed containing growth promoters. In this study we investigated the impact of integrated fish farming on the levels of antimicrobial-resistant bacteria in a pond environment. One integrated broiler chicken-fish farm was studied for 2 months immediately after the start of a new fish production cycle. A significant increase over time in the resistance to six different antimicrobials was found for the indicator organism Acinetobacter spp. isolated from composite water-sediment samples. The initial resistance levels prior to the new production cycle were 1 to 5%. After 2 months the levels of resistance to oxytetracycline and sulfamethoxazole reached 100%, and the levels of resistance to ciprofloxacin were more than 80%. The long-term effects of resistance on integrated farming were studied on seven additional farms. The resistance levels were particularly high among Enterococcus spp. and were also high among Acinetobacter spp. isolated from water-sediment samples compared to the resistance levels at four control farms. In conclusion, integrated fish farming seems to favor antimicrobial-resistant bacteria in the pond environment. This could be attributed to the selective pressure of antimicrobials in the pond environment and/or to the introduction of antimicrobial-resistant bacteria from animal manure. Potential risks to human health were not addressed in this study and remain to be elucidated.
机译:综合鱼类养殖将畜牧生产与鱼类养殖结合起来。动物粪便作为肥料直接掉入鱼塘,并支持光合生物的生长。通常给牲畜(主要是鸡和猪)喂食含有生长促进剂的饲料。在这项研究中,我们调查了鱼类综合养殖对池塘环境中抗微生物细菌水平的影响。新的鱼类生产周期开始后,立即对一个综合肉鸡鸡场进行了为期两个月的研究。发现指示剂生物不动杆菌属对六种不同抗菌素的耐药性随时间的显着增加。从复合水沙样品中分离出来。在新生产周期之前的初始电阻水平为1-5%。 2个月后,对土霉素和磺胺甲恶唑的耐药水平达到100%,对环丙沙星的耐药水平超过80%。在另外七个农场上研究了抗药性对综合农业的长期影响。肠球菌中的抗性水平特别高。在不动杆菌属中也很高。与四个对照农场的抗药性水平相比,从水沉积物样品中分离出来。总之,在池塘环境中,综合养鱼似乎更倾向于抗微生物细菌。这可能归因于池塘环境中抗菌剂的选择性压力和/或归因于动物粪便中引入的抗微生物细菌。本研究未解决对人类健康的潜在风险,有待阐明。

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