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Effects of chronic copper exposure on fluvial systems: Linking structural and physiological changes of fluvial biofilms with the in-stream copper retention

机译:长期暴露于铜对河流系统的影响:将河流生物膜的结构和生理变化与河内铜保留联系起来

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摘要

Long-term metal exposure is known to be responsible for a large variety of structural and functional changes in periphyton communities which allow these communities to adapt to metal-polluted conditions. This study aimed to link the changes that chronic copper (Cu) exposure causes on the structure and physiology of fluvial biofilms with the efficiency of the river systems in retaining phosphate and Cu. The effects of a chronic Cu exposure on the structure, physiology and induction of Cu tolerance of the community were evaluated by comparing this community with a non-exposed one. Results showed that periphyton chronically exposed to Cu had lower algal biomass, higher proportion of green algae, lower proportion of brown algae, and higher EPS content per unit of biomass than the un-exposed community. In addition, the chronically-exposed community showed a Cu content (both total and intracellular Cu content) ten times higher than the un-exposed community. While in-stream phosphate retention was not markedly influenced by chronic Cu exposure; Cu retention was clearly reduced, as was shown by a reduction in Cu retention efficiency (Cu-S_w) and demand (Cu-Vf). The chronically-exposed periphyton, in spite of having high intracellular Cu concentration, showed similar photosynthetic efficiency than the un-exposed community and showed a higher Cu tolerance. It indicated that this community was acclimatized to Cu exposure and that this acclimatization was probably linked to the ability to detoxify and immobilize metals. These observations suggest that the fate of Cu in fluvial ecosystems will be influenced by the exposure history of the system. The results from this study indicate that metals will travel longer distances in metal-polluted streams compared to pristine systems having effects on water quality farther downstream.
机译:众所周知,长期暴露于金属是导致浮游植物群落结构和功能发生各种变化的原因,这使这些群落能够适应金属污染的条件。这项研究旨在将长期暴露于铜(Cu)对河流生物膜的结构和生理的变化与河流系统保留磷酸盐和铜的效率联系起来。通过将该社区与未暴露的社区进行比较,评估了长期暴露于Cu对社区的结构,生理学和诱导的Cu耐性的影响。结果表明,与未暴露的群落相比,长期暴露于Cu的浮游生物具有较低的藻类生物量,较高的绿藻比例,较低的褐藻比例以及较高的单位生物量EPS含量。另外,长期暴露的群落显示的铜含量(总含量和细胞内的铜含量)比未暴露的群落高十倍。长期的铜暴露并未明显影响河内磷酸盐的保留。铜保留率明显降低,如铜保留效率(Cu-S_w)和需求量(Cu-Vf)降低所表明。尽管细胞内的铜浓度较高,但长期暴露的附生植物仍表现出与未暴露的群落相似的光合作用效率,并表现出更高的铜耐受性。它表明该社区已经适应了铜暴露,并且这种适应可能与金属解毒和固定化的能力有关。这些观察结果表明,河流生态系统中Cu的命运将受到系统暴露史的影响。这项研究的结果表明,与对下游下游水质有影响的原始系统相比,金属在金属污染的河流中的传播距离更长。

著录项

  • 来源
    《Science of the total environment》 |2009年第19期|5274-5282|共9页
  • 作者

    A. Serra; H. Guasch;

  • 作者单位

    Department of Environmental Sciences, Institute of Aquatic Ecology, Faculty of Sciences, University of Girona (UdG), Campus Montilivi, 17071 Girona, Spain;

    Department of Environmental Sciences, Institute of Aquatic Ecology, Faculty of Sciences, University of Girona (UdG), Campus Montilivi, 17071 Girona, Spain;

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

    periphyton; Cu chronic exposure; Cu retention; rivers; spiraling;

    机译:浮游生物铜长期暴露;铜保留河流螺旋状;
  • 入库时间 2022-08-17 13:57:32

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