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首页> 外文期刊>Journal of Basic Microbiology: An International Journal on Morphology, Physiology, Genetics, and Ecology of Microorganisms >Molecular diversity of mesophilic and thermophilic bacteria in a membrane bioreactor determined by fluorescent in situ hybridization with mxaF- and rRNA-targeted probes.
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Molecular diversity of mesophilic and thermophilic bacteria in a membrane bioreactor determined by fluorescent in situ hybridization with mxaF- and rRNA-targeted probes.

机译:膜生物反应器中嗜温和嗜热细菌的分子多样性是通过与mxaF和rRNA靶向探针进行荧光原位杂交确定的。

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摘要

An evaluation of the efficiency of treatment of kraft mill foul condensates in a membrane bioreactor was carried out in the laboratory. Efficiency and rate of methanol removal were quantified at operating temperatures of 35, 45 and 55 degrees C. The structure of the bacterial community present in the reactor biomass at the different operating temperatures was evaluated by in situ hybridization of the biomass samples with fluorescently-labelled probes (FISH) targeting the Eubacteria, the alpha, beta and gamma subclasses of the Proteobacteria, the low G + C content Gram-positive bacteria (Bacillus spp.), while community function was evaluated by in situ hybridization with a methanol dehydrogenase gene (mxaF) probe. Methanol removal efficiency decreased from 99.4 to 92%, and removal rate from 2.69 mg MeOH/l x min to 2.49 mg MeOH/l x min when the operating temperature was increased from 35 to 55 degrees C. This decrease in methanol removal was accompanied by a decrease (from 58% to 42%) in the relative proportion of cells that hybridized with the mxaF probe. The relative proportion of Bacillus spp. increased from 5 to 20% while the proportion of members of the alpha subclass of Proteobacteria decreased from 16% to 6% when the bioreactor operating temperature was raised from 35 to 55 degrees C. The relative proportions of bacteria belonging to the beta (22-25%) and gamma (18-20%) subclasses of the Proteobacteria remained relatively constant regardless of operating temperature. Proteobacteria (alpha, beta and gamma subclasses) and Bacillus spp. represented 61, 67 and 71% of the Eubacteria in the biomass sampled at 35, 45 and 55 degrees C, respectively. The FISH technique was shown to be an efficient method for detection of both structural and functional changes in the bacterial communities that could be related to efficiency of methanol removal in a membrane bioreactor operating at different temperatures.
机译:在实验室中对膜生物反应器中牛皮纸磨机冷凝水的处理效率进行了评估。在35、45和55摄氏度的操作温度下对甲醇的去除效率和速率进行了定量。通过将生物质样品与荧光标记的原位杂交,评估了在不同操作温度下反应器生物质中细菌群落的结构。针对真细菌,Proteobacteria的α,β和γ亚类,低G + C含量的革兰氏阳性细菌(芽孢杆菌)的探针(FISH),而群落功能通过与甲醇脱氢酶基因的原位杂交来评估( mxaF)探针。当操作温度从35摄氏度增加到55摄氏度时,甲醇去除效率从99.4%降低到92%,去除率从2.69 mg MeOH / lx min降低到2.49 mg MeOH / lx min。与mxaF探针杂交的细胞的相对比例(从58%到42%)。芽孢杆菌的相对比例。当生物反应器的工作温度从35摄氏度升高到55摄氏度时,变形杆菌的α亚类成员的比例从5%增加到20%。属于β(22-无论操作温度如何,变形杆菌的25%)和γ(18-20%)亚类都保持相对恒定。变形杆菌(α,β和γ亚类)和芽孢杆菌属。分别代表在35、45和55摄氏度下采样的生物质中真细菌的61%,67%和71%。结果表明,FISH技术是检测细菌群落结构和功能变化的有效方法,这可能与在不同温度下运行的膜生物反应器中甲醇去除效率有关。

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