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长期的石油污染会使两种不同土壤中的微生物群落发生类似变化。

Long-term oil contamination causes similar changes in microbial communities of two distinct soils.

作者信息

Liao Jingqiu, Wang Jie, Jiang Dalin, Wang Michael Cai, Huang Yi

机构信息

State Key Joint Laboratory of Environmental Simulation and Pollution Control, College of Environmental Sciences and Engineering, Peking University, No. 5 Yiheyuan Road, Beijing, Haidian District, 100871, People's Republic of China.

Department of Mechanical Science and Engineering, University of Illinois at Urbana-Champaign, 1206 W. Green, St., Urbana, IL, 61801, USA.

出版信息

Appl Microbiol Biotechnol. 2015 Dec;99(23):10299-310. doi: 10.1007/s00253-015-6880-y. Epub 2015 Aug 9.

Abstract

Since total petroleum hydrocarbons (TPH) are toxic and persistent in environments, studying the impact of oil contamination on microbial communities in different soils is vital to oil production engineering, effective soil management and pollution control. This study analyzed the impact of oil contamination on the structure, activity and function in carbon metabolism of microbial communities of Chernozem soil from Daqing oil field and Cinnamon soil from Huabei oil field through both culture-dependent techniques and a culture-independent technique-pyrosequencing. Results revealed that pristine microbial communities in these two soils presented disparate patterns, where Cinnamon soil showed higher abundance of alkane, (polycyclic aromatic hydrocarbons) PAHs and TPH degraders, number of cultivable microbes, bacterial richness, bacterial biodiversity, and stronger microbial activity and function in carbon metabolism than Chernozem soil. It suggested that complicated properties of microbes and soils resulted in the difference in soil microbial patterns. However, the changes of microbial communities caused by oil contamination were similar in respect of two dominant phenomena. Firstly, the microbial community structures were greatly changed, with higher abundance, higher bacterial biodiversity, occurrence of Candidate_division_BRC1 and TAO6, disappearance of BD1-5 and Candidate_division_OD1, dominance of Streptomyces, higher percentage of hydrocarbon-degrading groups, and lower percentage of nitrogen-transforming groups. Secondly, microbial activity and function in carbon metabolism were significantly enhanced. Based on the characteristics of microbial communities in the two soils, appropriate strategy for in situ bioremediation was provided for each oil field. This research underscored the usefulness of combination of culture-dependent techniques and next-generation sequencing techniques both to unravel the microbial patterns and understand the ecological impact of contamination.

摘要

由于总石油烃(TPH)在环境中具有毒性且持久存在,研究石油污染对不同土壤中微生物群落的影响对于石油生产工程、有效的土壤管理和污染控制至关重要。本研究通过依赖培养的技术和一种不依赖培养的技术——焦磷酸测序,分析了石油污染对大庆油田黑钙土和华北油田褐土微生物群落的结构、活性及碳代谢功能的影响。结果表明,这两种土壤中的原始微生物群落呈现出不同的模式,其中褐土在烷烃、(多环芳烃)PAHs和TPH降解菌的丰度、可培养微生物数量、细菌丰富度、细菌生物多样性以及碳代谢中的微生物活性和功能方面均高于黑钙土。这表明微生物和土壤的复杂特性导致了土壤微生物模式的差异。然而,石油污染引起的微生物群落变化在两个主要现象方面是相似的。首先,微生物群落结构发生了很大变化,表现为丰度更高、细菌生物多样性更高、出现了候选门类BRC1和TAO6、BD1-5和候选门类OD1消失、链霉菌占主导、烃降解菌群百分比更高以及氮转化菌群百分比更低。其次,碳代谢中的微生物活性和功能显著增强。基于这两种土壤中微生物群落的特征,为每个油田提供了合适的原位生物修复策略。本研究强调了依赖培养的技术与下一代测序技术相结合对于揭示微生物模式和理解污染的生态影响的有用性。

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