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首页> 外文期刊>The Science of the Total Environment >A multi-omics based ecological analysis of coastal marine sediments from Gladstone, in Australia's Central Queensland, and Heron Island, a nearby fringing platform reef
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A multi-omics based ecological analysis of coastal marine sediments from Gladstone, in Australia's Central Queensland, and Heron Island, a nearby fringing platform reef

机译:基于多组学的澳大利亚沿海昆士兰州格拉德斯通和附近边缘平台礁海鹭岛沿海海洋沉积物的生态分析

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摘要

The impact of anthropogenic factors arising from point and non-point pollution sources at a multi commodity marine port and its surrounding ecosystems were studied using sediment samples collected from a number of onshore (Gladstone Harbour and Facing Island) and offshore (Heron Island and Fitzroy Reefs) sites in Australia's Central Queensland Sediment samples were analyzed for trace metals, organic carbon, polycydic aromatic hydrocarbons (PAH), emerging chemicals of concern (ECC) and sterols. Similarly, the biological and biochemical interaction between the reef and its environment was analyzed by the multi-omic tools of next-generation sequencing characterization of the bacterial community and microbial community metabolic profiling. Overall, the trace elements were observed at the lower end of the Australian environmental guideline values at the offshore sites, while higher values were observed for the onshore locations Nickel and copper were observed above the high trigger value threshold at the onshore sites. The levels of PAH were below limits of detection across all sites. However, some of the ECC and sterols were observed at higher concentrations at both onshore and offshore locations, notably, the cholesterol family sterols and 17α-ethynylestradiol. Multi-omic analyses also indicated possible thermal and photo irradiation stressors on the bacterial communities at all the tested sites. The observed populations of γ-proteobacteria were found in combination with an increased pool of fatty acids that indicate fatty acid synthesis and utilisation of the intermediates of the shikimate pathways. This study demonstrates the value of applying a multi-omics approach for ecological assessments, in which a more detailed assessment of physical and chemical contaminants and their impact on the community bacterial biome is obtained.
机译:利用从多个陆上(格莱斯顿港和面对岛)和近海(赫伦岛和菲茨罗伊礁)收集的沉积物样本,研究了多商品海港及其周围生态系统中点和非点污染源引起的人为因素的影响。分析了澳大利亚中部昆士兰沉积物样本中的痕量金属,有机碳,多环芳烃(PAH),关注的新兴化学品(ECC)和固醇。类似地,通过下一代群落细菌鉴定和微生物群落代谢谱分析的多组学工具,分析了珊瑚礁与其环境之间的生物和生化相互作用。总体而言,在离岸地点的澳大利亚环境准则值较低端观察到了痕量元素,而在陆上地点的镍和铜高于陆上地点的高触发值阈值,观察到了较高的痕量元素。在所有站点中,PAH的水平均低于检测极限。但是,在陆上和海上地点都观察到了一些较高浓度的ECC和固醇,特别是胆固醇家族固醇和17α-乙炔雌二醇。多组学分析还表明,在所有测试点的细菌群落上可能存在热应激和光辐射应激源。发现观察到的γ-变形杆菌种群与增加的脂肪酸库结合,表明脂肪酸合成和the草酸途径中间体的利用。这项研究证明了采用多组学方法进行生态评估的价值,其中可以更详细地评估物理和化学污染物及其对社区细菌生物群落的影响。

著录项

  • 来源
    《The Science of the Total Environment》 |2017年第31期|842-853|共12页
  • 作者单位

    CSIRO Land & Water, Ecosciences Precinct, Dutton Park, OLD 4102, Australia;

    CSIRO Oceans & Atmosphere, Ecosciences Precinct, Dutton Park, OLD 4102, Australia;

    CSIRO Land & Water, Ecosciences Precinct, Dutton Park, OLD 4102, Australia,Faculty of Science, Engineering and Technology, Swinburne University of Technology, Hawthorn, VIC 3122, Australia;

    CSIRO Land & Water, Ecosciences Precinct, Dutton Park, OLD 4102, Australia;

    CSIRO Land & Water, Waite Campus, Urrbrae, SA 5064, Australia;

    Australian Centre for Research on Separation Science, School of Applied Sciences, RMIT University, Melbourne, VIC 3001, Australia;

    CSIRO Land & Water, Ecosciences Precinct, Dutton Park, OLD 4102, Australia;

    Biotechnology Institute, University of Minnesota, St. Paul MN, United States;

    Biotechnology Institute, University of Minnesota, St. Paul MN, United States;

    Faculty of Science, Engineering and Technology, Swinburne University of Technology, Hawthorn, VIC 3122, Australia;

    CSIRO Oceans & Atmosphere, Ecosciences Precinct, Dutton Park, OLD 4102, Australia;

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

    Metabolomics; Metagenomics; Chemometrics; Hormones; Environmental health;

    机译:代谢组学元基因组学;化学计量学激素;环境卫生;

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