Clermont Université, Université d'Auvergne, Laboratoire: Microorganismes Génome et Environnement, Clermont-Ferrand, France.
FEMS Microbiol Ecol. 2010 Dec;74(3):669-81. doi: 10.1111/j.1574-6941.2010.00982.x. Epub 2010 Nov 2.
The microbial community response during the oxygen biostimulation process of aged oil-polluted soils is poorly documented and there is no reference for the long-term monitoring of the unsaturated zone. To assess the potential effect of air supply on hydrocarbon fate and microbial community structure, two treatments (0 and 0.056 mol h⁻¹ molar flow rate of oxygen) were performed in fixed bed reactors containing oil-polluted soil. Microbial activity was monitored continuously over 2 years throughout the oxygen biostimulation process. Microbial community structure before and after treatment for 12 and 24 months was determined using a dual rRNA/rRNA gene approach, allowing us to characterize bacteria that were presumably metabolically active and therefore responsible for the functionality of the community in this polluted soil. Clone library analysis revealed that the microbial community contained many rare phylotypes. These have never been observed in other studied ecosystems. The bacterial community shifted from Gammaproteobacteria to Actinobacteria during the treatment. Without aeration, the samples were dominated by a phylotype linked to the Streptomyces. Members belonging to eight dominant phylotypes were well adapted to the aeration process. Aeration stimulated an Actinobacteria phylotype that might be involved in restoring the ecosystem studied. Phylogenetic analyses suggested that this phylotype is a novel, deep-branching member of the Actinobacteria related to the well-studied genus Acidimicrobium.
在老化油污染土壤的氧气生物刺激过程中,微生物群落的响应情况记录甚少,而且对于非饱和带的长期监测也没有参考。为了评估供气对烃类命运和微生物群落结构的潜在影响,在含有油污染土壤的固定床反应器中进行了两种处理(0 和 0.056 mol h⁻¹摩尔流速的氧气)。在氧气生物刺激过程中,连续 2 年监测微生物活性。使用双 rRNA/rRNA 基因方法测定处理前后 12 和 24 个月的微生物群落结构,这使我们能够描述推测为代谢活跃的细菌,从而为受污染土壤中群落的功能负责。克隆文库分析表明,微生物群落包含许多罕见的类群。这些从未在其他研究的生态系统中观察到过。在处理过程中,细菌群落从γ-变形菌门转移到放线菌门。在没有曝气的情况下,样品主要由与链霉菌相关的类群组成。属于八个优势类群的成员很好地适应了曝气过程。曝气刺激了一种可能参与恢复所研究生态系统的放线菌类群。系统发育分析表明,这个类群是一个新的、深分支的放线菌类群,与研究充分的嗜酸菌属有关。