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首页> 外文期刊>Journal of environmental sciences >Vertical response of microbial community and degrading genes to petroleum hydrocarbon contamination in saline alkaline soil
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Vertical response of microbial community and degrading genes to petroleum hydrocarbon contamination in saline alkaline soil

机译:微生物群落与降解基因在盐水碱土中降解基因的垂直响应

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A column microcosm was conducted by amending crude oil into Dagang Oilfield soil to simulate the bioremediation process. The dynamic change of microbial communities and metabolic genes in vertical depth soil from 0 to 80 cm were characterized to evaluate the petroleum degradation potential of indigenous microorganism. The influence of environmental variables on the microbial responds to petroleum contamination were analyzed. Degradation extent of 42.45% of n-alkanes (C8-C40) and 34.61% of 16 Sigma PAH were reached after 22 weeks. Relative abundance of alkB, nah, and phe gene showed about 10-fold increment in different depth of soil layers. Result of HTS profiles demonstrated that Pseudomonas, Marinobacter and Lactococcus were the major petroleum-degrading bacteria in 0-30 and 30-60 cm depth of soils. Fusarium and Aspergillus were the dominant oil-degrading fungi in the 0-60 cm depth of soils. In 60-80 cm deep soil, anaerobic bacteria such as Bacteroidetes, Lactococcus, and Alcanivorax played important roles in petroleum degradation. Redundancy analysis (RDA) and correlation analysis demonstrated that petroleum hydrocarbons (PHs) as well as soil salinity, clay content, and anaerobic conditions were the dominant effect factors on microbial community compositions in 0-30, 30-60, and 6080 cm depth of soils, respectively. (C) 2019 The Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences. Published by Elsevier B.V.
机译:通过修改原油进入大港油田土壤来进行柱微观,以模拟生物化方法。垂直深度土壤中微生物群落和代谢基因的动态变化的特征在于评价土着微生物的石油降解潜力。分析了环境变量对微生物响应石油污染的影响。 22周后,达到42.45%N-烷烃(C8-C40)和34.61%的16.61%的降解程度。相对丰度的ALKB,NAH和PHE基因在不同的土层中显示出约10倍的增量。 HTS型材的结果证明,假单胞菌,乳腺和乳乳杆菌是0-30和30-60cm的土壤中的主要石油降解细菌。镰刀菌和曲霉是0-60厘米的土壤中占优势的油脂降解真菌。在60-80厘米的深处土壤中,厌氧细菌如菌斑,乳杆菌和嗜酸剂在石油降解中起重要作用。冗余分析(RDA)和相关分析证明了石油烃(pH)以及土壤盐度,粘土含量和厌氧条件是0-30,30-60和6080cm深度的微生物群落组合物上的显性效应因子土壤分别。 (c)2019中国科学院生态环境科学研究中心。 elsevier b.v出版。

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