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首页> 外文期刊>Environmental Pollution >Species-specific isotope tracking of mercury uptake and transformations by pico-nanoplankton in an eutrophic lake
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Species-specific isotope tracking of mercury uptake and transformations by pico-nanoplankton in an eutrophic lake

机译:富养殖湖中微微纳米克洛克氏植物的汞摄取和转化的物种特异性同位素跟踪

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摘要

The present study aims to explore the bioaccumulation and biotic transformations of inorganic (iHg) and monomethyl mercury (MMHg) by natural pico-nanoplankton community from eutrophic lake Soppen, Switzerland. Pico-nanoplankton encompass mainly bacterioplankton, mycoplankton and phytoplankton groups with size between 0.2 and 20 mu m. Species-specific enriched isotope mixture of (199)iHg and (MMHg)-M-201 was used to explore the accumulation, the subcellular distribution and transformations occurring in natural pico-nanoplankton sampled at 2 different depths (6.6 m and 8.3 m). Cyanobacteria, diatoms, cryptophyta, green algae and heterotrophic microorganisms were identified as the major groups of pico-nanoplankton with diatoms prevailing at deeper samples. Results showed that pico-nanoplankton accumulated both iHg and MMHg preferentially in the cell membrane/organelles, despite observed losses. The ratios between the iHg and MMHg concentrations measured in the membrane/organelles and cytosol were comparable for iHg and MMHg. Pico-nanoplankton demethylate added (MMHg)-M-201 (similar to 4 and 12% per day depending on cellular compartment), although the involved pathways are to further explore. Comparison of the concentrations of (201)iHg formed from (MMHg)-M-201 demethylation in whole system, medium and whole cells showed that 82% of the demethylation was biologically mediated by pico-nanoplankton. No significant methylation of iHg by pico-nanoplankton was observed. The accumulation of iHg and MMHg and the percentage of demethylated MMHg correlated positively with the relative abundance of diatoms and heterotrophic microorganisms in the pico-nanoplankton, the concentrations of TN, Mg2+, NO3-, NO2-, NH4+ and negatively with the concentrations of DOC, K+, Na+, Ca2+, SO42-. Taken together the results of the present field study confirm the role of pico-nanoplankton in Hg bioaccumulation and demethylation, however further research is needed to better understand the underlying mechanisms and interconnection between heterotrophic and autotrophic microorganisms.
机译:本研究旨在探讨生物蓄积性和富营养化湖泊Soppen,瑞士无机(IHG)和单汞(毫米汞柱)自然微微微型浮游生物群落的生物转化。微微微型浮游生物涵盖主要浮游细菌,mycoplankton和浮游植物基团与尺寸之间在0.2和20微米。种特异性富集的(199)和洲际(毫米汞柱)-M-201的同位素混合物用于探索的积累,亚细胞分布和转换在2个不同的深度(6.6米和8.3米)采样天然微微微型浮游生物发生。蓝藻,硅藻,隐藻,绿藻和异养微生物被确定为微微微型浮游生物的主要群体与硅藻在更深的样品为准。结果表明:在细胞膜/细胞器积累既洲际和毫米汞柱优选的是微微微型浮游生物,尽管观察到的损失。在膜/细胞器和细胞溶胶测定的洲际和毫米汞柱浓度之间的比率为用于洲际和毫米汞柱媲美。微微微型浮游生物去甲基加入(毫米汞柱)-M-201(类似于根据细胞区室每天4和12%),但所涉及的途径是进一步探讨。 (201)的IHG从(毫米汞柱)形成的浓度变化的比较-M-201在去甲基化整个系统,介质和全细胞表明,去甲基化的82%的生物利用微微微型浮游生物介导的。观察到由微微微型浮游生物IHG的无显著甲基化。 IHG和毫米汞柱的积累和去甲基化毫米汞柱的百分比与在微微微型浮游生物硅藻和异养微生物的相对丰度正相关,TN,Mg2 +的,NO3-,NO2-,NH4 +和负DOC的浓度的浓度,K +,钠离子,钙离子,SO42-。总之,本场研究证实微微微型浮游生物的汞生物蓄积性和去甲基化作用的结果,但是还需要进一步研究,以更好地了解异养自养微生物之间的内在机制和互连。

著录项

  • 来源
    《Environmental Pollution》 |2021年第11期|117771.1-117771.10|共10页
  • 作者单位

    Univ Geneva Fac Sci Dept FA Forel Environm & Aquat Sci Earth & Enviro Environm Biogeochem & Ecotoxicol Uni Carl Vogt Bvd Carl Vogt 66 CH-1211 Geneva 4 Switzerland;

    Univ Pau & Pays Adour UPPA E2S CNRS IPREM Inst Sci Analytiques & Phys Chim Environm Pau France;

    Univ Geneva Fac Sci Dept FA Forel Environm & Aquat Sci Earth & Enviro Environm Biogeochem & Ecotoxicol Uni Carl Vogt Bvd Carl Vogt 66 CH-1211 Geneva 4 Switzerland;

    Univ Pau & Pays Adour UPPA E2S CNRS IPREM Inst Sci Analytiques & Phys Chim Environm Pau France;

    Univ Geneva Fac Sci Dept FA Forel Environm & Aquat Sci Earth & Enviro Environm Biogeochem & Ecotoxicol Uni Carl Vogt Bvd Carl Vogt 66 CH-1211 Geneva 4 Switzerland;

    Univ Pau & Pays Adour UPPA E2S CNRS IPREM Inst Sci Analytiques & Phys Chim Environm Pau France;

    Univ Pau & Pays Adour UPPA E2S CNRS IPREM Inst Sci Analytiques & Phys Chim Environm Pau France;

    Univ Geneva Fac Sci Dept FA Forel Environm & Aquat Sci Earth & Enviro Environm Biogeochem & Ecotoxicol Uni Carl Vogt Bvd Carl Vogt 66 CH-1211 Geneva 4 Switzerland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Natural pico-nanoplankton; Inorganic mercury; Methylmercury; Enriched stable isotopes; Eutrophic lake; Biotic transformations;

    机译:天然微微纳米克洛克顿;无机汞;甲基汞;富含稳定同位素;Eutrophic Lake;生物转换;

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