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Metal resistant bacteria on gold particles: Implications of how anthropogenic contaminants could affect natural gold biogeochemical cycling

机译:金颗粒上的金属耐药细菌:人为污染物如何影响自然金生物地球化学循环的含义

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摘要

In Earth's near-surface environments, gold biogeochemical cycling involves gold dissolution and precipitation processes, which are partly attributed to bacteria. These biogeochemical processes as well as abrasion (via physical transport) are known to act upon gold particles, thereby resulting in particle transformation including the development of pure secondary gold and altered morphology, respectively. While previous studies have inferred gold biogeochemical cycling from gold particles obtained from natural environments, little is known about how metal contamination in an environment could impact this cycle. Therefore, this study aims to infer how potentially toxic metal contaminants could affect the structure and chemistry of gold particles and therefore the biogeochemical cycling of gold. In doing so, river sediments and gold particles from the De Kaap Valley, South Africa, were analysed using both microanalytical and molecular techniques. Of the metal contaminants detected in the sediment, mercury can chemically interact with gold particles thereby directly altering particle morphology and "erasing" textural evidence indicative of particle transformation. Other metal contaminants (including mercury) indirectly affect gold cycling by exerting a selective pressure on bacteria living on the surface of gold particles. Particles harbouring gold-tolerant bacteria with diverse metal resistant genes, such as Arthrobacter sp. and Pseudomonas sp., contained nearly two times more secondary gold relative to particles harbouring bacteria with less gold-tolerance. In conclusion, metal contaminants can have a direct or indirect effect on gold biogeochemical cycling in natural environments impacted by anthropogenic activity.
机译:在地球近表面环境中,黄金生物地球化学循环涉及金溶出和沉淀过程,其部分归因于细菌。已知这些生物地球化学方法以及磨损(通过物理传输)作用于金颗粒,从而导致颗粒转化,包括纯二次金和改变形态的发展。虽然先前的研究推断从自然环境获得的金颗粒中推断出金生物地球化学循环,但关于环境中的金属污染可能影响这一循环的情况毫无疑问。因此,本研究旨在推断出潜在的有毒金属污染物可能影响金颗粒的结构和化学,因此是金的生物地球化学循环。通过微量分子和分子技术,分析了南非德克普谷的河流沉积物和金粒子。在沉积物中检测到的金属污染物,汞可以与金颗粒化学相互作用,从而直接改变颗粒形态和“擦除”表示颗粒转化的纹理证据。其他金属污染物(包括汞)间接地影响金循环,通过施加在金颗粒表面上的细菌上发挥选择性压力。含有多种金属抗性基因的耐金耐金细菌的颗粒,例如花杆菌SP。和假单胞菌SP。,相对于患有细菌的颗粒,含有近两倍的二次金,含有较少的金耐受性。总之,金属污染物可以对受到人为活性影响的自然环境中的金生物地球化学循环有直接或间接影响。

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  • 来源
    《The Science of the Total Environment》 |2020年第jul20期|138698.1-138698.14|共14页
  • 作者单位

    School of Biological Sciences The University of Adelaide Adelaide South Australia 5005 Australia CSIRO Land and Water Environmental Contaminant Mitigation and Technologies PMB2 Glen Osmond South Australia 5064 Australia;

    Monash University Clayton Victoria 3800 Australia;

    Monash University Clayton Victoria 3800 Australia;

    Bioinformatics Hub School of Biological Sciences The University of Adelaide Adelaide South Australia 5005 Australia;

    University of Pretoria Pretoria 0001 South Africa;

    University of Pretoria Pretoria 0001 South Africa;

    Bioinformatics Hub School of Biological Sciences The University of Adelaide Adelaide South Australia 5005 Australia Davies Research Centre School of Animal & Veterinary Sciences The University of Adelaide Adelaide South Australia 5005 Australia;

    School of Biological Sciences The University of Adelaide Adelaide South Australia 5005 Australia Bioinformatics Hub School of Biological Sciences The University of Adelaide Adelaide South Australia 5005 Australia;

    School of Biological Sciences The University of Adelaide Adelaide South Australia 5005 Australia CSIRO Land and Water Environmental Contaminant Mitigation and Technologies PMB2 Glen Osmond South Australia 5064 Australia;

    School of Biological Sciences The University of Adelaide Adelaide South Australia 5005 Australia CSIRO Land and Water Environmental Contaminant Mitigation and Technologies PMB2 Glen Osmond South Australia 5064 Australia;

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

    South Africa; Geomicrobiology; Au biogeochemistry; Bacterial genome; Placer Au; Mercury; Contaminated sediment;

    机译:南非;地貌生理学;Au Biogeochemisty;细菌基因组;赌布奥卢;汞;受污染的沉积物;

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