首页> 外文期刊>Chemosphere >Inorganic mercury (Hg~(2+)) accumulation in autotrophic and mixotrophic planktonic protists: Implications for Hg trophodynamics in ultraoligotrophic Andean Patagonian lakes
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Inorganic mercury (Hg~(2+)) accumulation in autotrophic and mixotrophic planktonic protists: Implications for Hg trophodynamics in ultraoligotrophic Andean Patagonian lakes

机译:自养和混养浮游生物中无机汞(Hg〜(2+))的积累:对超寡营养的安第斯巴塔哥尼亚湖泊中汞营养动力学的影响

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摘要

Microbial assemblages are typical of deep ultraoligotrophic Andean Patagonian lakes and comprise picoplankton and protists (phytoflagellates and mixotrophic ciliates), having a central role in the C cycle, primary production and in the incorporation of dissolved inorganic mercury (Hg2+) into lake food webs. In this study we evaluated the mechanisms of Hg2+ incorporation in hetero- and autotrophic bacteria, in the autotrophic dinoflagellate (Gymnodinium paradoxum) and in two mixotrophic ciliates (Stentor araucanus and Ophrydium naumanni) dominating the planktonic microbial assemblage. The radioisotope Hg-197 was used to trace the Hg2+ incorporation in microbiota. Hg uptake was analyzed as a function of cell abundance (BCF: bioconcentration factor), cell surface (SCF: surface concentration factor) and cell volume (VCF: volume concentration factor). Overall, the results obtained showed that these organisms incorporate substantial amounts of dissolved Hg2+ passively (adsorption) and actively (bacteria consumption or attachment), displaying different Hg internalization and therefore, varying potential for Hg transfer. Surface area and quality, and surface:volume ratio (S:V) control the passive uptake in all the organisms. Active incorporation depends on bacteria consumption in the mixotrophic ciliates, or on bacteria association to surface in the autotrophic dinoflagellate. Hg bioaccumulated by pelagic protists can be transferred to higher trophic levels through plankton and fish feeding, regenerated to the dissolved phase by excretion, and/or transferred to the sediments by particle sinking. In ultraoligotrophic Andean Patagonian lakes, picoplankton and planktonic protists are key components of lake food webs, linking the pelagic and benthic Hg pathways, and thereby playing a central role in Hg trophodynamics. (C) 2018 Elsevier Ltd. All rights reserved.
机译:微生物群落是深超营养型安第斯巴塔哥尼亚湖泊的典型特征,由微浮游植物和原生生物(鞭毛藻和混养纤毛虫)组成,它们在碳循环,初级生产以及将溶解的无机汞(Hg2 +)掺入湖泊食物网中起着核心作用。在这项研究中,我们评估了Hg2 +掺入异养和自养细菌,自养鞭毛藻(Gymnodinium paradoxum)和两种混合营养纤毛虫(Stentor araucanus和Ophrydium naumanni)中的作用机理,这些细菌主导了浮游微生物群。放射性同位素Hg-197用于追踪微生物群中的Hg2 +掺入。根据细胞丰度(BCF:生物浓缩因子),细胞表面(SCF:表面浓缩因子)和细胞体积(VCF:体积浓缩因子)来分析汞的吸收。总体而言,获得的结果表明,这些生物体被动地(吸附)和主动地(细菌消耗或附着)掺入了大量溶解的Hg2 +,表现出不同的Hg内在化,因此,Hg转移的潜力也不同。表面积和质量以及表面积:体积比(S:V)控制所有生物体的被动摄入。主动掺入取决于混合营养型纤毛虫中细菌的消耗,或取决于自养性鞭毛藻中细菌与表面的缔合。可通过浮游生物和鱼类饲养将浮游生物原生生物累积的汞转移到较高的营养水平,通过排泄再生为溶解相,和/或通过颗粒沉降转移到沉积物中。在超贫营养的安第斯巴塔哥尼亚湖泊中,微微浮游生物和浮游生物是湖泊食物网的关键组成部分,它们联系了上层和底栖汞的途径,因此在汞的营养动力学中起着核心作用。 (C)2018 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Chemosphere》 |2018年第5期|223-231|共9页
  • 作者单位

    UNComahue, Grp Ecol Sistemas Acuat Escala Paisaje, CONICET, Inst Invest Biodiversidad & Medioambiente INIBIOM, Quintral 1250, RA-8400 San Carlos De Bariloche, Rio Negro, Argentina;

    UNComahue, Grp Ecol Sistemas Acuat Escala Paisaje, CONICET, Inst Invest Biodiversidad & Medioambiente INIBIOM, Quintral 1250, RA-8400 San Carlos De Bariloche, Rio Negro, Argentina;

    UNComahue, Grp Ecol Sistemas Acuat Escala Paisaje, CONICET, Inst Invest Biodiversidad & Medioambiente INIBIOM, Quintral 1250, RA-8400 San Carlos De Bariloche, Rio Negro, Argentina;

    CNEA, Ctr Atom Bariloche, Lab Anal Activac Neutron, Ave Bustillo Km 9-5, RA-8400 San Carlos De Bariloche, Rio Negro, Argentina;

    UNComahue, Grp Ecol Sistemas Acuat Escala Paisaje, CONICET, Inst Invest Biodiversidad & Medioambiente INIBIOM, Quintral 1250, RA-8400 San Carlos De Bariloche, Rio Negro, Argentina;

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

    Mercury; Microbial loop; Auto- and mixotrophic protists; Passive and active uptake;

    机译:汞;微生物回路;自养生物和营养型生物;被动和主动吸收;

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