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在受汽油污染的缺氧地下水中,对在不锈钢表面形成的以固氮弧菌-纤发菌为主的细菌生物膜进行多相分析。

Polyphasic analysis of an Azoarcus-Leptothrix-dominated bacterial biofilm developed on stainless steel surface in a gasoline-contaminated hypoxic groundwater.

作者信息

Benedek Tibor, Táncsics András, Szabó István, Farkas Milán, Szoboszlay Sándor, Fábián Krisztina, Maróti Gergely, Kriszt Balázs

机构信息

Regional University Center of Excellence in Environmental Industry, Szent István University, Páter K. u. 1, Gödöllő, 2100, Hungary.

Department of Environmental Safety and Ecotoxicology, Szent István University, Páter K. u. 1, Gödöllő, 2100, Hungary.

出版信息

Environ Sci Pollut Res Int. 2016 May;23(9):9019-35. doi: 10.1007/s11356-016-6128-0. Epub 2016 Jan 29.

Abstract

Pump and treat systems are widely used for hydrocarbon-contaminated groundwater remediation. Although biofouling (formation of clogging biofilms on pump surfaces) is a common problem in these systems, scarce information is available regarding the phylogenetic and functional complexity of such biofilms. Extensive information about the taxa and species as well as metabolic potential of a bacterial biofilm developed on the stainless steel surface of a pump submerged in a gasoline-contaminated hypoxic groundwater is presented. Results shed light on a complex network of interconnected hydrocarbon-degrading chemoorganotrophic and chemolitotrophic bacteria. It was found that besides the well-known hydrocarbon-degrading aerobic/facultative anaerobic biofilm-forming organisms (e.g., Azoarcus, Leptothrix, Acidovorax, Thauera, Pseudomonas, etc.), representatives of Fe(2+)-and Mn(2+)-oxidizing (Thiobacillus, Sideroxydans, Gallionella, Rhodopseudomonas, etc.) as well as of Fe(3+)- and Mn(4+)-respiring (Rhodoferax, Geobacter, Magnetospirillum, Sulfurimonas, etc.) bacteria were present in the biofilm. The predominance of β-Proteobacteria within the biofilm bacterial community in phylogenetic and functional point of view was revealed. Investigation of meta-cleavage dioxygenase and benzylsuccinate synthase (bssA) genes indicated that within the biofilm, Azoarcus, Leptothrix, Zoogloea, and Thauera species are most probably involved in intrinsic biodegradation of aromatic hydrocarbons. Polyphasic analysis of the biofilm shed light on the fact that subsurface microbial accretions might be reservoirs of novel putatively hydrocarbon-degrading bacterial species. Moreover, clogging biofilms besides their detrimental effects might supplement the efficiency of pump and treat systems.

摘要

抽提处理系统被广泛用于受烃污染的地下水修复。尽管生物污垢(在泵表面形成堵塞性生物膜)在这些系统中是一个常见问题,但关于此类生物膜的系统发育和功能复杂性的信息却很少。本文介绍了在浸没于汽油污染的缺氧地下水中的泵的不锈钢表面形成的细菌生物膜的分类群、物种以及代谢潜力的广泛信息。结果揭示了一个由相互关联的烃降解化学有机营养菌和化学无机营养菌组成的复杂网络。研究发现,除了众所周知的形成需氧/兼性厌氧生物膜的烃降解微生物(如偶氮弧菌属、纤发菌属、嗜酸菌属、陶厄氏菌属、假单胞菌属等)外,生物膜中还存在铁(Ⅱ)和锰(Ⅱ)氧化菌(如硫杆菌属、嗜铁氧化菌属、嘉利翁氏菌属、红假单胞菌属等)以及铁(Ⅲ)和锰(Ⅳ)呼吸菌(如红环菌属、地杆菌属、磁螺菌属、硫单胞菌属等)的代表菌株。从系统发育和功能角度揭示了β-变形菌在生物膜细菌群落中的优势地位。对间位裂解双加氧酶和苄基琥珀酸合酶(bssA)基因的研究表明,在生物膜中,偶氮弧菌属、纤发菌属、动胶菌属和陶厄氏菌属的物种很可能参与了芳烃的固有生物降解。对生物膜的多相分析揭示了一个事实,即地下微生物聚集体可能是新型潜在烃降解细菌物种的储存库。此外,堵塞性生物膜除了有有害影响外,可能还会提高抽提处理系统的效率。

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