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首页> 外文期刊>Biology and Fertility of Soils >Influence of difloxacin-contaminated manure on microbial community structure and function in soils
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Influence of difloxacin-contaminated manure on microbial community structure and function in soils

机译:地氟沙星污染的肥料对土壤微生物群落结构和功能的影响

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Difloxacin (DIF) belongs to the fluoroquinolones, a frequently detected group of antibiotics in the environment. It is excreted in pig manure to a large extent and may consequently reach soils in potentially effective concentrations via manuring. The aim of this study was to assess the effects of DIF-spiked manure on microbial communities and selected functions in soils in a microcosm experiment up to 1 month after application. To test a dose dependency of the effects, three different concentrations of DIF (1, 10 and 100 mg/kg of soil) were used. Microcosms with application of pure manure, as well as untreated microcosms served as control. The addition of pure manure resulted in an increase of microbial biomass and soil respiration as well as a reduced bacteria/fungi ratio. Due to the fast and strong immobilisation of DIF, effects of the antbiotic compound were only visible up to 8 days after application (microbial biomass; respiration; potential denitrification; ratio of bacteria/fungi). As expected these short-term effects resulted in reduced potential denitrification rates as well as a reduced bacteria/fungal ratio in the treatments were DIF has been applied. Surprisingly, microbial biomass values as well as respiration rates were increased by DIF application. Other parameters like nitrate and ammonium content in soil were not influenced by DIF application at any time point. Long-term effects (32 days after application) were only visible for the potential nitrification rates. For those parameters that were influenced by the DIF application a clear dose dependency could not be described.
机译:地氟沙星(DIF)属于氟喹诺酮类,氟喹诺酮类是在环境中经常检测到的一组抗生素。它在猪粪中大量排泄,因此可能通过粪便以潜在有效浓度到达土壤。这项研究的目的是在施用后长达1个月的微观实验中评估掺DIF肥料对土壤微生物群落和所选功能的影响。为了测试效果的剂量依赖性,使用了三种不同浓度的DIF(1、10和100 mg / kg土壤)。施用纯肥的缩微以及未处理的缩微作为对照。纯粪肥的添加导致微生物生物量和土壤呼吸的增加,以及细菌/真菌比率的降低。由于DIF的快速而牢固的固定,抗生素化合物的作用仅在施用后长达8天可见(微生物生物量;呼吸作用;潜在的反硝化作用;细菌/真菌的比率)。如预期的那样,这些短期影响导致使用DIF的治疗中潜在的反硝化率降低以及细菌/真菌比率降低。令人惊讶的是,通过DIF施用,微生物生物量值和呼吸速率增加。其他参数(如土壤中的硝酸盐和铵含量)在任何时间都不受DIF施加的影响。长期影响(施用后32天)仅对潜在的硝化速率可见。对于那些受DIF应用影响的参数,无法描述明确的剂量依赖性。

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