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分枝杆菌属菌株KMS在大麦根际对芘的矿化作用

Pyrene mineralization by Mycobacterium sp. strain KMS in a barley rhizosphere.

作者信息

Child R, Miller C D, Liang Y, Sims R C, Anderson A J

机构信息

Department of Biology, Utah State University, Logan, UT 84322, USA.

出版信息

J Environ Qual. 2007 Jul 17;36(5):1260-5. doi: 10.2134/jeq2007.0008. Print 2007 Sep-Oct.

Abstract

To determine whether the soil Mycobacterium isolate KMS would mineralize pyrene under rhizosphere conditions, a microcosm system was established to collect radioactive carbon dioxide released from the labeled polycyclic aromatic hydrocarbon. Microcosms were designed as sealed, flow-through systems that allowed the growth of plants. Experiments were conducted to evaluate mineralization of 14C-labeled pyrene in a sand amended with the polycyclic aromatic hydrocarbons degrading Mycobacterium isolate KMS, barley plants, or barley plants with roots colonized by isolate KMS. Mineralization was quantified by collecting the 14CO2 produced from 14C-labeled pyrene at intervals during the 10-d incubation period. Roots and foliar tissues were examined for 14C incorporation. Mass balances for microcosms were determined through combustion of sand samples and collection and quantification of 14CO2 evolved from radiolabeled pyrene. No pyrene mineralization was observed in the sterile control systems. Greater release of 14CO2 was observed in the system with barley colonized by KMS than in microcosms containing just the bacterium inoculum or sterile barley plants. These findings suggest that phytostimulation of polycyclic aromatic hydrocarbons mineralization could be applied in remediation schemes.

摘要

为了确定土壤中分离出的分枝杆菌KMS在根际条件下是否会使芘矿化,建立了一个微观系统来收集标记的多环芳烃释放出的放射性二氧化碳。微观系统被设计成密封的、流通式系统,以利于植物生长。进行实验以评估在添加了多环芳烃降解分枝杆菌分离株KMS的沙子、大麦植株或根部被分离株KMS定殖的大麦植株中,14C标记芘的矿化情况。在10天的培养期内,通过定期收集14C标记芘产生的14CO2来量化矿化情况。检测根和叶组织中14C的掺入情况。通过燃烧沙子样品以及收集和量化放射性标记芘释放出的14CO2来确定微观系统的质量平衡。在无菌对照系统中未观察到芘矿化现象。与仅含有细菌接种物或无菌大麦植株的微观系统相比,在根部被KMS定殖的大麦系统中观察到更多的14CO2释放。这些发现表明,多环芳烃矿化的植物刺激作用可应用于修复方案中。

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