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首页> 外文期刊>FEMS Microbiology Ecology >Composition and dynamics of biostimulated indigenous oil-degrading microbial consortia from the Irish, North and Mediterranean Seas: A mesocosm study
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Composition and dynamics of biostimulated indigenous oil-degrading microbial consortia from the Irish, North and Mediterranean Seas: A mesocosm study

机译:来自爱尔兰,北海和地中海的经生物刺激的土著石油降解微生物菌群的组成和动力学:中观研究

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摘要

Diversity of indigenous microbial consortia and natural occurrence of obligate hydrocarbon-degrading bacteria (OHCB) are of central importance for efficient bioremediation techniques. To investigate the microbial population dynamics and composition of oil-degrading consortia, we have established a series of identical oil-degrading mesocosms at three different locations, Bangor (Menai Straits, Irish Sea), Helgoland (North Sea) and Messina (Messina Straits, Mediterranean Sea). Changes in microbial community composition in response to oil spiking, nutrient amendment and filtration were assessed by ARISA and DGGE fingerprinting and 16Sr RNA gene library analysis. Bacterial and protozoan cell numbers were quantified by fluorescence microscopy. Very similar microbial population sizes and dynamics, together with key oil-degrading microorganisms, for example, Alcanivorax borkumensis, were observed at all three sites; however, the composition of microbial communities was largely site specific and included variability in relative abundance of OHCB. Reduction in protozoan grazing had little effect on prokaryotic cell numbers but did lead to a decrease in the percentage of A. borkumensis 16S rRNA genes detected in clone libraries. These results underline the complexity of marine oil-degrading microbial communities and cast further doubt on the feasibility of bioaugmentation practices for use in a broad range of geographical locations.
机译:对于有效的生物修复技术而言,土著微生物群落的多样性和专性碳氢化合物降解细菌(OHCB)的自然存在是至关重要的。为了研究石油降解联合体的微生物种群动态和组成,我们在三个不同的地点,班戈(Menai Straits,爱尔兰海),Helgoland(北海)和墨西拿(Messina Straits),建立了一系列相同的石油降解中观。地中海)。通过ARISA和DGGE指纹图谱以及16Sr RNA基因文库分析评估了响应加油,养分改良和过滤的微生物群落组成的变化。细菌和原生动物的细胞数量通过荧光显微镜定量。在这三个地点都观察到了非常相似的微生物种群大小和动态,以及主要的降解石油的微生物,例如Alcanivorax borkumensis。但是,微生物群落的组成在很大程度上是特定地点的,并且包括OHCB相对丰度的变化。减少原生动物放牧对原核细胞数量几乎没有影响,但确实导致克隆文库中检测到的A. borkumensis 16S rRNA基因百分比降低。这些结果强调了海洋石油降解微生物群落的复杂性,并进一步质疑了生物强化方法在广泛的地理位置使用的可行性。

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