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Effects of sunlight, microbial activity, and temperature on the declines of antibiotic lincomycin in freshwater and saline aquaculture pond waters and sediments

机译:阳光,微生物活性和温度对淡水和盐水养殖池水和沉积物中抗生素林霉素下降的影响

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The residues of lincomycin (LIN), an antibiotic administered to aquatic animals, are often detected in aquatic environments. This study investigated effects of three environmental factors, sunlight, microbial activity, and temperature, on declines of spiked LIN in waters and sediment slurry samples collected from freshwater tilapia (Oreochromis mossambicus) and marine shrimp (Litopenaeus vannamei) culture ponds. The results showed that sunlight, temperature, and microbial activity all accelerated LIN transformation in the water and slurry samples. In matrixes of all water and slurry samples, LIN transformation was significantly faster under light conditions [half-life (t1/2)?=?24–53?days] than under dark conditions (t1/2?=?154–2897?days). Microbial activity also accelerated LIN transformation; the t1/2 of LIN was shorter after nonsterile treatment (t1/2?=?12–809?days) than after sterile treatment (t1/2?=?154–2897?days). Moreover, LIN transformation was faster at 28?°C (t1/2?=?18–38?days) than at 20 and 12?°C (t1/2?=?34 and 462?days, respectively) in both slurry samples. The results revealed that LIN transformation in aquaculture pond water and sediment was either slow or stagnant. Sunlight, microbial activity, and temperature can accelerate LIN transformation to reduce LIN residue levels.
机译:在水生环境中经常检测到施用于水生动动物的抗生素的林霉素(LIN)的残留物。本研究研究了三种环境因素,阳光,微生物活动和温度的影响,从淡水罗非鱼(Oreochromis Mossambicus)和海洋虾(Litopenaeus Vannamei)培养池中的水域和沉积物浆液样本中尖刺林的下降。结果表明,阳光,温度和微生物活性在水和浆料样品中均加速林转化。在所有水和浆料样品的基质中,在暗条件下,林转化显着更快[半衰期(T1 / 2)吗?=?24-53?天](T1 / 2?=?154-2897?天)。微生物活性也加速林转化;林的T1 / 2在无菌治疗后(T1 / 2?= 12-809→日)较短(T1 / 2?= 154-2897?天)。此外,林转化在28Ω°C(T1 / 2?= 18-38℃)时比20和12?°C(T1 / 2?= 34和462)在两个浆液中更快样品。结果表明,水产养殖池塘水和沉积物中的林转化是缓慢或停滞的。阳光,微生物活性和温度可以加速林转化,以减少林残留水平。

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