首页> 外文期刊>Fresenius Environmental Bulletin >MOLECULAR DETECTION AND MICROCALORIMETRIC ANALYSIS OF SOIL MICROBIAL COMMUNITY ALONG AN OIL CONTAMINATION GRADIENT
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MOLECULAR DETECTION AND MICROCALORIMETRIC ANALYSIS OF SOIL MICROBIAL COMMUNITY ALONG AN OIL CONTAMINATION GRADIENT

机译:污染油梯度下土壤微生物群落的分子检测和微量热分析

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摘要

To better understand the microbial diversity and activity under crude oil contamination, denaturing gradient gel electrophoresis fingerprinting, real-time PCR and micro-calorimetric analysis were applied in this study. Principal component analysis (PCA) was performed to detect the greatest contributors to variation among oil-contaminated soil samples. Furthermore, Pearson's correlation was adopted to determine correlations among microbial diversity, microbial activity and geochemical factors. It found that microbial diversity index (H) showed a decrease along the oil contamination gradient, while the abundance of bacteria and actinobacteria also presented a decreasing trend in the range from 4.1×10~7 to 1.4 × 10~5 copies g~(-1) and from 1.1×10~6 to 1.6×10~3 copies g~(10), respectively. And Proteo-bacteria, Actinobacteria, Chloroflexi, and Acidobacteria were the dominant bacteria in the most contaminated soil. Crude oil, organic matter, soil available nitrogen and phosphorus were found to be the vital factors influencing the microbial community structure. PCA analysis indicated that crude oil contamination could lead to the imbalance of soil ecosystem. Our work offers an insight into microbial diversity and activity in oil-contaminated soils, providing potential applicable information for environmental assessment.
机译:为了更好地了解原油污染下的微生物多样性和活性,本研究采用变性梯度凝胶电泳指纹图谱,实时PCR和微量量热分析。进行了主成分分析(PCA),以检测造成油污的土壤样品之间差异最大的因素。此外,采用皮尔逊相关性确定微生物多样性,微生物活性和地球化学因素之间的相关性。发现微生物多样性指数(H)随油污梯度的增加而降低,细菌和放线菌的丰度也呈下降趋势,范围从4.1×10〜7到1.4×10〜5拷贝g〜(- 1)和从1.1×10〜6到1.6×10〜3个副本g〜(10)。在污染最严重的土壤中,变形杆菌,放线菌,绿弯曲菌和酸性细菌是优势细菌。原油,有机质,土壤有效氮和磷是影响微生物群落结构的重要因素。 PCA分析表明,原油污染可能导致土壤生态系统失衡。我们的工作提供了对石油污染土壤中微生物多样性和活性的深刻见解,为环境评估提供了潜在的适用信息。

著录项

  • 来源
    《Fresenius Environmental Bulletin》 |2015年第2期|451-459|共9页
  • 作者单位

    School of Civil & Environmental Engineering, and National International Cooperation Base on Environment and Energy, University of Science and Technology Beijing, 30 Xueyuan Road, Haidian District, 100083 Beijing, P.R. China,School of Resources and Environment, Anqing Normal University, 128 Linghu south Road, Anqing 246011, P.R. China;

    School of Civil & Environmental Engineering, and National International Cooperation Base on Environment and Energy, University of Science and Technology Beijing, 30 Xueyuan Road, Haidian District, 100083 Beijing, P.R. China;

    School of Civil & Environmental Engineering, and National International Cooperation Base on Environment and Energy, University of Science and Technology Beijing, 30 Xueyuan Road, Haidian District, 100083 Beijing, P.R. China;

    School of Civil & Environmental Engineering, and National International Cooperation Base on Environment and Energy, University of Science and Technology Beijing, 30 Xueyuan Road, Haidian District, 100083 Beijing, P.R. China;

    School of Civil & Environmental Engineering, and National International Cooperation Base on Environment and Energy, University of Science and Technology Beijing, 30 Xueyuan Road, Haidian District, 100083 Beijing, P.R. China;

    CNR-Institute for Ecosystem Study, Via Moruzzi 1, 56124 Pisa, Italy;

    Department of Chemistry, Hong Kong Baptist University, 224 Waterloo Road, Kowloon Tong, Hong Kong SAR, P.R. China;

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

    Oil contamination; Microbial diversity; Microbial activity; Microcalorimetry; PCA;

    机译:油污染;微生物多样性;微生物活性微量量热法PCA;

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