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基于海洋细菌 Alcanivorax borkumensis 菌株 SK2 开发用于检测长链烷烃生物利用度的生物报告测定法。

Development of bioreporter assays for the detection of bioavailability of long-chain alkanes based on the marine bacterium Alcanivorax borkumensis strain SK2.

机构信息

Department of Fundamental Microbiology, University of Lausanne, 1015 Lausanne, Switzerland.

出版信息

Environ Microbiol. 2011 Oct;13(10):2808-19. doi: 10.1111/j.1462-2920.2011.02552.x. Epub 2011 Sep 5.

DOI:10.1111/j.1462-2920.2011.02552.x
PMID:21895911
Abstract

Long-chain alkanes are a major component of crude oil and therefore potentially good indicators of hydrocarbon spills. Here we present a set of new bacterial bioreporters and assays that allow to detect long-chain alkanes. These reporters are based on the regulatory protein AlkS and the alkB1 promoter from Alcanivorax borkumensis SK2, a widespread alkane degrader in marine habitats. Escherichia coli cells with the reporter construct reacted strongly to octane in short-term (6 h) aqueous suspension assays but very slightly only to tetradecane, in line with what is expected from its low water solubility. In contrast, long-term assays (up to 5 days) with A. borkumensis bioreporters showed strong induction with tetradecane and crude oil. Gel-immobilized A. borkumensis reporter cells were used to demonstrate tetradecane and crude oil bioavailability at a distance from a source. Alcanivorax borkumensis bioreporters induced fivefold more rapid and more strongly when allowed physical contact with the oil phase in standing flask assays, suggesting a major contribution of adhered cells to the overall reporter signal. Using the flask assays we further demonstrated the effect of oleophilic nutrients and biosurfactants on oil availability and degradation by A. borkumensis. The fluorescence signal from flask assays could easily be captured with a normal digital camera, making such tests feasible to be carried out on, e.g. marine oil responder vessels in case of oil accidents.

摘要

长链烷烃是原油的主要成分,因此是烃类溢油的潜在良好指示物。在这里,我们提出了一系列新的细菌生物报告器和测定法,可用于检测长链烷烃。这些报告器基于来自海洋生境中广泛存在的烷烃降解菌 Alcanivorax borkumensis SK2 的调节蛋白 AlkS 和 alkB1 启动子。带有报告基因构建体的大肠杆菌细胞在短期(6 h)水悬浮测定中对辛烷强烈反应,但仅对十四烷反应非常微弱,这与低水溶性的预期相符。相比之下,用 A. borkumensis 生物报告器进行的长期测定(长达 5 天)显示出与十四烷和原油的强烈诱导。固定化凝胶 A. borkumensis 报告细胞用于证明在远离源的地方存在十四烷和原油的生物利用度。在静置瓶测定中,当允许与油相物理接触时,Alcanivorax borkumensis 生物报告器诱导的速度更快、强度更高,这表明附着细胞对整个报告信号有很大的贡献。使用瓶测定,我们进一步证明了亲油性营养素和生物表面活性剂对 A. borkumensis 油可用性和降解的影响。来自瓶测定的荧光信号可以很容易地用普通数码相机捕捉,因此在发生石油事故时,此类测试可在海洋石油响应船上进行。

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