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Microbial responses to selected pharmaceuticals in agricultural soils: Microcosm study on the roles of soil, treatment and time

机译:对农业土壤中所选药物的微生物反应:微观研究土壤,治疗和时间的作用

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摘要

Evaluating microbial responses to pharmaceuticals in agricultural soils is essential to improve our fundamental understanding of the fate of micropollutants and their potential implications for the environment and human health. In this study, we focused on the immediate (1 d), short- (13 d) and long-term effects (61 d) of pharmaceutical amendment on microbial communities in seven soils differing in physical chemical properties. Basal respiration was used to indicate microbial activity, while phospholipid fatty acids were used to determine microbial biomass and community structure. We identified four microbial responses to pharmaceutical amendment: stimulation, inhibition, stress and dormancy, which were highly significant in the short-term. The largest stimulatory effect accompanied by shifts in the microbial community structure towards fungi and G- bacteria was detected for sulfamethoxazole. The inhibitory effect was mainly observed for citalopram, irbesartan and pharmaceutical mixture in Cambisol Dystric with minor alterations in microbial community structure compare to a non-amended control. The stress effect was detected for all pharmaceuticals in Arenosol and Cambisol Haplic. While the dormancy effect was mainly observed in Chernozem Siltic for most of the pharmaceuticals. Microbial responses were highly dependent on the soil type, pharmaceutical compound and time, highlighting the importance to consider these parameters including a resilience of soil microbial communities to micropollutants within a long-term agricultural soil management.
机译:评估农业土壤中药物的微生物反应对于改善对微污染性命运的基本理解以及对环境和人类健康的潜在影响至关重要。在这项研究中,我们专注于在物理化学性质的7个土壤中的微生物群体的药物修正的直接(1 d),短(13d)和长期效应(61d)。基础呼吸用于表示微生物活性,而磷脂脂肪酸用于确定微生物生物量和群落结构。我们确定了对药物修正案的四种微生物反应:刺激,抑制,压力和休眠,在短期内非常重要。检测到磺胺甲氧唑的微生物群落结构中微生物群落结构变化的最大刺激效果。对于西酞普兰,赤素,厄贝沙坦和药物混合物中的抑制效果主要观察到Cambisol滴算中的微生物群落结构的少量改变,与未修正的对照进行比较。针对氨基酚和樟草草HAPLIC中的所有药物检测到应力效应。虽然休眠效应主要在Chernozem Siltic中观察到大部分药物。微生物反应高度依赖于土壤型,药物化合物和时间,突出了考虑这些参数的重要性,包括在长期农业土壤管理中对微核性的土壤微生物融合的可恢复性。

著录项

  • 来源
    《Soil Biology & Biochemistry》 |2020年第1期|共14页
  • 作者单位

    CAS Inst Soil Biol Biol Ctr Na Sadkach 7 Ceske Budejovice 37005 Czech Republic;

    CAS Inst Soil Biol Biol Ctr Na Sadkach 7 Ceske Budejovice 37005 Czech Republic;

    CAS Inst Soil Biol Biol Ctr Na Sadkach 7 Ceske Budejovice 37005 Czech Republic;

    Univ South Bohemia Ceske Budejovice Fac Sci Branisovska 31 Ceske Budejovice 37005 Czech Republic;

    Univ South Bohemia Ceske Budejovice Fac Fisheries &

    Protect Waters South Bohemian Res Ctr Aquaculture &

    Biodivers Hy Zatisi 728-2 Vodnany 38925 Czech Republic;

    Univ South Bohemia Ceske Budejovice Fac Fisheries &

    Protect Waters South Bohemian Res Ctr Aquaculture &

    Biodivers Hy Zatisi 728-2 Vodnany 38925 Czech Republic;

    Czech Univ Life Sci Fac Agrobiol Food &

    Nat Resources Kamycka 129 Prague 16521 6 Suchdol Czech Republic;

    CAS Inst Soil Biol Biol Ctr Na Sadkach 7 Ceske Budejovice 37005 Czech Republic;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 农业基础科学;
  • 关键词

    Emerging compounds; Micropollutants; Basal respiration; PLFA; Microbial biomass;

    机译:新兴化合物;微核性;基础呼吸;PLFA;微生物生物量;

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