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Effects of Low Temperature and Freeze-Thaw Cycles on Hydrocarbon Biodegradation in Arctic Tundra Soil

机译:低温和冻融循环对北极苔原土壤中烃类生物降解的影响

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摘要

Degradation of petroleum hydrocarbons was monitored in microcosms with diesel fuel-contaminated Arctic tundra soil incubated for 48 days at low temperatures (−5, 0, and 7°C). An additional treatment was incubation for alternating 24-h periods at 7 and −5°C. Hydrocarbons were biodegraded at or above 0°C, and freeze-thaw cycles may have actually stimulated hydrocarbon biodegradation. Total petroleum hydrocarbon (TPH) removal over 48 days in the 7, 0, and 7 and −5°C treatments, respectively, was 450, 300, and 600 μg/g of soil. No TPH removal was observed at −5°C. Total carbon dioxide production suggested that TPH removal was due to biological mineralization. Bacterial metabolic activity, indicated by RNA/DNA ratios, was higher in the middle of the experiment (day 21) than at the start, in agreement with measured hydrocarbon removal and carbon dioxide production activities. The total numbers of culturable heterotrophs and of hydrocarbon degraders did not change significantly over the 48 days of incubation in any of the treatments. At the end of the experiment, bacterial community structure, evaluated by ribosomal intergenic spacer length analysis, was very similar in all of the treatments but the alternating 7 and −5°C treatment.
机译:在微观环境中,用受柴油燃料污染的北极苔原土壤在低温(-5、0和7°C)下培养48天,以监测石油烃的降解。另一处理是在7和-5°C下交替孵育24小时。碳氢化合物在0°C或更高的温度下会被生物降解,而冻融循环实际上可能会促进碳氢化合物的生物降解。在7、0、7和-5°C处理下,经过48天的总石油烃(TPH)去除量分别为450、300和600μg/ g土壤。在-5℃下未观察到TPH去除。总二氧化碳产量表明,TPH去除是由于生物矿化。实验中间(第21天)的细菌代谢活性(以RNA / DNA比率表示)比开始时要高,这与测得的碳氢化合物去除量和二氧化碳生产活性一致。在任何处理中,在培养的48天中,可培养的异养菌和烃降解物的总数没有明显变化。在实验结束时,通过核糖体基因间间隔区长度分析评估的细菌群落结构在所有处理中都非常相似,但交替使用7和-5°C处理。

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