首页> 外文期刊>Environmental toxicology and chemistry >SULFATE REDUCTION, MOLECULAR DIVERSITY, AND COPPER AMENDMENT EFFECTS IN BACTERIAL COMMUNITIES ENRICHED FROM SEDIMENTS EXPOSED TO COPPER MINING RESIDUES
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SULFATE REDUCTION, MOLECULAR DIVERSITY, AND COPPER AMENDMENT EFFECTS IN BACTERIAL COMMUNITIES ENRICHED FROM SEDIMENTS EXPOSED TO COPPER MINING RESIDUES

机译:沉积于铜矿渣中的沉积物中富集的细菌群落中的硫酸盐还原,分子多样性和铜修正效应

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摘要

Sulfate-reducing bacterial communities from coastal sediments with a long-term exposure to copper (Cu)-mining residues were studied in lactate enrichments. The toxicity of excess copper may affect sulfate-reducing bacterial communities. Sulfate reduction was monitored by sulfate and organic acid measurements. Molecular diversity was analyzed by 16S rRNA, dissimilatory sulfate reduction dsrAB, and Cu translocating phospho-type adenosine triphosphatases (P-ATPases) cop-like gene sequence profiling. The influence of Cu amendment was tested in these enrichments. Results showed fast sulfate reduction mostly coupled to incomplete organic carbon oxidation and partial sulfate reduction inhibition due to copper amendment. The 16S rRNA clonal libraries analysis indicated that δ- and γ-Proteobacteria and Cytophaga-Flexibacter-Bacteroides dominated the enrichments. The dsrAB libraries revealed the presence of Desulfobacteraceae and Desulfovibrionaceae families-related sequences. Copper produced significant shifts (i.e., a decrease in the relative abundance of sulfate-reducing microorganisms) in the enriched bacterial community structure as determined by terminal-restriction fragment length polymorphism (T-RFLP) profiling and multivariate analyses. Clonal libraries of cop-like sequences showed low richness in the enriched microbial communities, and a strong effect of copper on its relative abundance. Novel Cu-P_(IB)-ATPase sequences encoding Cu resistance were detected. The present study indicates that Cu does not significantly affect sulfate reduction and genetic diversity of taxonomic and dissimilatory sulfate-reduction molecular markers. However, the diversity of Cu resistance genetic determinants was strongly modified by this toxic metal.
机译:在乳酸富集中,研究了沿海沉积物中长期暴露于铜(Cu)残留物中的硫酸盐还原细菌群落。过量铜的毒性可能会影响减少硫酸盐的细菌群落。通过硫酸盐和有机酸的测量监测硫酸盐的还原。分子多样性进行了分析,通过16S rRNA,异化硫酸盐还原dsrAB,和铜易位的磷酸型腺苷三磷酸酶(P-ATPases)cop样基因序列分析。在这些富集中测试了铜修正的影响。结果表明,快速硫酸盐还原主要与不完全的有机碳氧化和铜修正引起的部分硫酸盐还原抑制有关。 16S rRNA克隆文库分析表明,δ-和γ-变形杆菌和细胞吞噬-弯曲杆菌-拟杆菌属占主导地位。 dsrAB文库揭示了脱硫杆菌科和脱硫弧菌科相关序列的存在。通过末端限制性片段长度多态性(T-RFLP)分析和多变量分析确定,铜在富集的细菌群落结构中产生了重大变化(即减少硫酸盐还原的微生物的相对丰度)。 cop-like序列的克隆文库在富集的微生物群落中显示出较低的富集度,并且铜对其相对丰度具有很强的影响。检测到编码Cu抗性的新的Cu-P_(IB)-ATPase序列。本研究表明,铜不会显着影响硫酸盐还原和分类学和异化硫酸盐还原分子标记的遗传多样性。然而,这种有毒金属强烈改变了Cu抗性遗传决定因素的多样性。

著录项

  • 来源
    《Environmental toxicology and chemistry》 |2010年第2期|p.256-264|共9页
  • 作者单位

    Departamento de Genetica Molecular y Microbiologia, Millennium Nucleus on Microbial Ecology and Environmental Microbiology and Biotechnology (EMBA), Center for Advanced Studies in Ecology and Biodiversity (CASEB), Facultad de Ciencias Biologicas, Pontificia Universidad Catolica de Chile,Santiago, Chile Facultad de Ingenieria y Ciencia, Universidad Adolfo Ibanez, Santiago, Chile;

    Departamento de Genetica Molecular y Microbiologia, Millennium Nucleus on Microbial Ecology and Environmental Microbiology and Biotechnology (EMBA), Center for Advanced Studies in Ecology and Biodiversity (CASEB), Facultad de Ciencias Biologicas, Pontificia Universidad Catolica de Chile,Santiago, Chile Facultad de Ingenieria y Ciencia, Universidad Adolfo Ibanez, Santiago, Chile;

    Departamento de Genetica Molecular y Microbiologia, Millennium Nucleus on Microbial Ecology and Environmental Microbiology and Biotechnology (EMBA), Center for Advanced Studies in Ecology and Biodiversity (CASEB), Facultad de Ciencias Biologicas, Pontificia Universidad Catolica de Chile,Santiago, Chile Facultad de Ingenieria y Ciencia, Universidad Adolfo Ibanez, Santiago, Chile;

  • 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

    sulfate reduction; coastal sediments; sulfate-reducing bacteria; copper; molecular diversity;

    机译:硫酸盐还原沿海沉积物;硫酸盐还原菌;铜;分子多样性;
  • 入库时间 2022-08-17 13:32:13

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