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首页> 外文期刊>Science of the total environment >Incorporation of inorganic mercury (Hg~(2+)) in pelagic food webs of ultraoligotrophic and oligotrophic lakes: The role of different plankton size fractions and species assemblages
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Incorporation of inorganic mercury (Hg~(2+)) in pelagic food webs of ultraoligotrophic and oligotrophic lakes: The role of different plankton size fractions and species assemblages

机译:无机汞(Hg〜(2+))在超营养和贫营养湖泊的中上层食物网中的掺入:不同浮游生物大小分数和物种组成的作用

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摘要

In lake food webs, pelagic basal organisms such as bacteria and phytoplankton incorporate mercury (Hg~(2+)) from the dissolved phase and pass the adsorbed and internalized Hg to higher trophic levels. This experimental investigation addresses the incorporation of dissolved Hg~(2+)by four plankton fractions (picoplankton: 0.2-2.7 μm; pico + nanoplankton: 0.2-20 μm; microplankton: 20-50μm; and mesoplankton: 50-200 μm) obtained from four Andean Patagonian lakes, using the radioisotope ~(197)Hg~(2+). Species composition and abundance were determined in each plankton fraction. In addition, morphometric parameters such as surface and biovolume were calculated using standard geometric models. The incorporation of Hg~(2+) in each plankton fraction was analyzed through three concentration factors: BCF (bioconcentration factor) as a function of cell or individual abundance, SCF (surface concentration factor) and VCF (volume concentration factor) as functions of individual exposed surface and biovolume, respectively. Overall, this investigation showed that through adsorption and internalization, pico + nanoplankton play a central role leading the incorporation of Hg~(2+) in pelagic food webs of Andean lakes. Larger planktonic organisms included in the micro- and mesoplankton fractions incorporate Hg~(2+) by surface adsorption, although at a lesser extent. Mixotrophic bacterivorous organisms dominate the different plankton fractions of the lakes connecting trophic levels through microbial loops (e.g., bacteria-nanoflagellates-crustaceans; bacte-ria-ciliates-crustaceans; endosymbiotic algae-ciliates). These bacterivorous organisms, which incorporate Hg from the dissolved phase and through their prey, appear to explain the high incorporation of Hg~(2+) observed in all the plankton fractions.
机译:在湖泊食物网中,诸如细菌和浮游植物之类的浮游基础生物将汞(Hg〜(2+))从溶解相中吸收出来,并使被吸收和内在化的汞传递到更高的营养水平。该实验研究解决了通过四个浮游生物级分(微浮游生物:0.2-2.7μm;微微浮游生物+纳米浮游生物:0.2-20μm;微浮游生物:20-50μm;和中浮游生物:50-200μm)掺入溶解的Hg〜(2+)的问题。使用放射性同位素〜(197)Hg〜(2+)从四个安第斯巴塔哥尼亚湖泊中提取。在每个浮游生物级分中确定物种组成和丰度。此外,使用标准几何模型计算表面和生物体积等形态计量参数。通过三个浓度因子分析了每个浮游生物级分中Hg〜(2+)的掺入:作为细胞或个体丰度的函数的BCF(生物富集因子),作为细胞或个体丰度的SCF(表面富集因子)和VCF(体积富集因子)分别暴露的表面和生物体积。总体而言,这项研究表明,通过吸附和内在化,皮克+纳米浮游生物在导致Hg〜(2+)掺入安第斯湖中上层食物网中起着核心作用。微浮游生物和中浮游生物级分中包含的较大的浮游生物通过表面吸附吸收Hg〜(2+),尽管程度较小。混养细菌性微生物占据着通过微生物环连接营养级的湖泊的不同浮游生物部分(例如细菌-纳米鞭毛-甲壳动物;细菌-鞭毛-纤毛-甲壳动物;共生藻类-纤毛)。这些细菌生物从溶解相通过猎物吸收Hg,似乎可以解释所有浮游生物组分中Hg〜(2+)的高吸收。

著录项

  • 来源
    《Science of the total environment》 |2014年第1期|65-73|共9页
  • 作者单位

    Laboratorio de Fotobiologia, Instituto de Investigaciones en Biodiversidad y Medioambiente (INIBIOMA, UNComahue-CONICET), Quintral 1250,8400 San Carlos de Bariloche,Rio Negro, Argentina;

    Laboratorio de Fotobiologia, Instituto de Investigaciones en Biodiversidad y Medioambiente (INIBIOMA, UNComahue-CONICET), Quintral 1250,8400 San Carlos de Bariloche,Rio Negro, Argentina;

    Laboratorio de Analisis por Activacion Neutronica, CAB, CNEA, Av. Bustillo Km 9.5,8400, San Carlos de Bariloche, Rio Negro, Argentina;

    United States Geological Survey, 345 Middlefield Rd./MS 480, Menlo Park, CA 94025, USA;

    Laboratorio de Fotobiologia, Instituto de Investigaciones en Biodiversidad y Medioambiente (INIBIOMA, UNComahue-CONICET), Quintral 1250,8400 San Carlos de Bariloche,Rio Negro, Argentina;

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

    Plankton; Size fractions; Hg~(2+) adsorption; Hg~(2+) internalization;

    机译:浮游生物尺寸分数;Hg〜(2+)吸附;Hg〜(2+)内部化;

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