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首页> 外文期刊>Science of the total environment >Long-term effects of decabromodiphenyl ether on denitrification in eutrophic lake sediments: Different sensitivity of six-type denitrifying bacteria
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Long-term effects of decabromodiphenyl ether on denitrification in eutrophic lake sediments: Different sensitivity of six-type denitrifying bacteria

机译:Degabromodhenyl醚对富营养化湖泊沉积物中脱氮的长期影响:不同六型硝化细菌的敏感性

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摘要

The widespread use of polybrominated diphenyl ethers inevitably results in their increased release into natural waters and subsequent deposition in sediments. However, their long-term effects on the bacteria participating in each step of denitrification in eutrophic lake sediments are still unknown. Here, we conducted a one-year microcosm experiment to determine the long-term effects of decabromodiphenyl ether (BDE-209), at low (2 mg kg~(-1) dry weight) and high (20 mg kg~(-1) dry weight) contamination levels, on six-type denitrifying bacteria and their activities in sediments collected from Taihu Lake, a typical eutrophic lake in China. At the end of the experiment, sediment denitrifying reductase activities were inhibited by BDE-209 at both levels, with the greatest inhibition seen for nitric oxide reductase activity. The higher nitrate concentration in the contaminated sediments was attributed to the inhibition of nitrate reductase activities. The abundances of six-type denitrifying genes (narG, napA, nirK, nirS, norB, and nosZ) significantly decreased under high BDE-209 treatment, and narG and napA genes were more sensitive to the toxicity of BDE-209. The results from pyrosequencing showed that BDE-209, at either treatment concentration, decreased the six-type denitrifying bacterial diversities and altered their community composition. This shift of six-type denitrifying bacterial communities might also be driven by the debrominated products concentrations of BDE-209 and variations in sediment inorganic nitrogen concentrations. In particular, some genera from phylum Proteobacteria such as Pseudomonas, Cupriavidus, and Azoarcus were decreased significantly because of BDE-209 and its debrominated products.
机译:多溴二苯醚的广泛使用不可避免地导致它们增加进入天然水的释放和随后在沉积物中的沉积。然而,他们对参与富营养化湖沉积物中的每一步的细菌的长期影响仍然未知。在此,我们进行了一年的微观微观实验,以确定Decabromodhenyl醚(BDE-209)的长期效果,低(2mg kg〜(-1)干重)和高(20mg kg〜(-1 )干重)污染水平,在六型反硝化细菌及其在中国的典型富营养化湖中从太湖湖收集的沉积物中。在实验结束时,BDE-209在两种水平下抑制了沉积物反硝化还原酶活性,并且对于一氧化氮还原酶活性,具有最大的抑制。受污染的沉积物中较高的硝酸盐浓度归因于抑制硝酸还原酶活性。在高BDE-209治疗下,六型反硝化基因(Narg,NaPa,Nirk,Nirs,NoSz和NoSz)的丰度显着降低,并且芽孢杆菌和纳帕基因对BDE-209的毒性更敏感。焦肌序列的结果表明,在治疗浓度下,BDE-209降低了六型反硝化细菌多样性,并改变了其群落组成。六型反硝化细菌群落的这种偏移也可能由BDE-209的脱溴产物浓度和沉积物无机氮浓度的变化驱动。特别是,由于BDE-209及其脱溴产物,来自PhymoConas,upsoMogona和抑郁症和氮杂神经组织的一些属的属性显着下降。

著录项

  • 来源
    《Science of the total environment 》 |2021年第20期| 145147.1-145147.10| 共10页
  • 作者单位

    Key Laboratory of Integrated Regulation and Resource Department on Shallow Lakes Ministry of Education College of Environment Hohai University 1 Xikang Road Nanjing 210098 PR China;

    Key Laboratory of Integrated Regulation and Resource Department on Shallow Lakes Ministry of Education College of Environment Hohai University 1 Xikang Road Nanjing 210098 PR China;

    Key Laboratory of Integrated Regulation and Resource Department on Shallow Lakes Ministry of Education College of Environment Hohai University 1 Xikang Road Nanjing 210098 PR China;

    Key Laboratory of Integrated Regulation and Resource Department on Shallow Lakes Ministry of Education College of Environment Hohai University 1 Xikang Road Nanjing 210098 PR China;

    Key Laboratory of Integrated Regulation and Resource Department on Shallow Lakes Ministry of Education College of Environment Hohai University 1 Xikang Road Nanjing 210098 PR China;

    Key Laboratory of Integrated Regulation and Resource Department on Shallow Lakes Ministry of Education College of Environment Hohai University 1 Xikang Road Nanjing 210098 PR China;

    School of Ecology Sun Yat-sen University Guangzhou 510275 PR China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Bacterial community composition; Denitrifying bacteria; Decabromodiphenyl ether; Denitrifying reductase activity; Eutrophic lake sediments;

    机译:细菌群落组成;脱硝基细菌;Decabromodhenyl醚;反硝化还原酶活性;Eutrophic湖泊沉积物;

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