Department of Chemistry, Western Kentucky University, Bowling Green, KY, USA.
Food Animal Environmental Systems Research, USDA-ARS, Bowling Green, KY, USA.
J Environ Sci Health B. 2020;55(2):135-147. doi: 10.1080/03601234.2019.1667190. Epub 2019 Sep 25.
We investigated the anaerobic degradation of tetracycline antibiotics (tetracycline [TC], oxytetracycline [OTC] and chlortetracycline [CTC]) in swine, cattle, and poultry manures. The manures were anaerobically digested inside polyvinyl chloride batch reactors for 64 days at room temperature. The degradation rate constants and half-lives of the parent tetracyclines were determined following first-order kinetics. For CTC the fastest degradation rate was observed in swine manure (k = 0.016 ± 0.001 d; half-life = 42.8 days), while the slowest degradation rate was observed in poultry litter (k = 0.0043 ± 0.001 d; half-life = 161 days). The half-lives of OTC ranged between 88.9 (cattle manure) and 99.0 days (poultry litter), while TC persisted the longest of the tetracycline antibiotics studied with half-lives ranging from 92.4 days (cattle manure) to 330 days (swine manure). In general, the tetracyclines were found to degrade faster in cattle manure, which had the lowest concentrations of organic matter and metals as compared to swine and poultry manures. Our results demonstrate that tetracycline antibiotics persist in the animal manure after anaerobic digestion, which can potentially lead to emergence and persistence of antibiotic resistant bacteria in the environment when anaerobic digestion byproducts are land applied for crop production.
我们研究了四环素抗生素(四环素[TC]、土霉素[OTC]和金霉素[CTC])在猪、牛和家禽粪便中的厌氧降解。粪便在室温下于聚氯乙烯批式反应器中进行厌氧消化 64 天。采用一级动力学确定母体四环素的降解速率常数和半衰期。对于 CTC,在猪粪中观察到最快的降解速率(k=0.016±0.001 d;半衰期=42.8 d),而在禽粪中观察到最慢的降解速率(k=0.0043±0.001 d;半衰期=161 d)。OTC 的半衰期在 88.9(牛粪)和 99.0 天(禽粪)之间,而 TC 是研究的四环素抗生素中半衰期最长的,范围从 92.4 天(牛粪)到 330 天(猪粪)。一般来说,与猪和家禽粪便相比,在牛粪中,四环素抗生素的降解速度更快,因为牛粪中的有机物和金属浓度最低。我们的结果表明,在动物粪便进行厌氧消化后,四环素抗生素仍然存在,当厌氧消化副产物用于作物生产时,这可能导致环境中抗生素抗性细菌的出现和持续存在。