首页> 外文会议>International Hydrogen Energy Forum(HYFORUM 2004) vol.2; 20040525-28; Beijing(CN) >Microbial Community Dynamics in Bio-Hydrogen Production Reactor Using Denaturing Gradient Gel Electrophoresis
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Microbial Community Dynamics in Bio-Hydrogen Production Reactor Using Denaturing Gradient Gel Electrophoresis

机译:变性梯度凝胶电泳技术在生物制氢反应器中微生物群落动力学

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To enhance the hydrogen production efficiency in the biological hydrogen producing reactor was one of the important issues for biotechnology of hydrogen production by fermentation. Anaerobic sludge of difference period in the continuous stirred tank reactor (CSTR) was obtained. After DNA extraction of sludge, the V3 region of 16S rDNA was PCR-amplified. The diversity and dynamics of microbial communities were investigated by denaturing gradient electrophoresis gel (DGGE). Population's dynamics were detected every other 7-day and were analyzed. Dominant populations and hydrogen production capacity in each stage are deferent. In the 8th day, dominant population of hydrogen producer changed a lot. The results indicated that a dominant bacterium belongs to family Ethonalogenbacterium Harbin that has a high hydrogen production rate. Cooperative effect of microbial population further suggested that hydrogen production efficiency was determined together by hydrogen producing bacterium and other population.
机译:在生物制氢反应器中提高制氢效率是发酵制氢生物技术的重要课题之一。获得了连续搅拌釜反应器(CSTR)中不同时期的厌氧污泥。 DNA提取污泥后,对16S rDNA的V3区进行PCR扩增。通过变性梯度电泳凝胶(DGGE)研究了微生物群落的多样性和动力学。每隔7天检测一次人口动态并进行分析。每个阶段的主要种群和制氢能力是不同的。在第8天,制氢者的主要人口发生了很大变化。结果表明,优势细菌属于产氢率高的哈尔滨产碱杆菌属。微生物种群的协同作用进一步表明,产氢效率是由产氢细菌和其他种群共同决定的。

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