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Microbial Community Analyses in Biogas Reactors by Molecular Methods

机译:沼气反应器中微生物群落的分子方法分析

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Successful biogas production is based on stable or adaptable microbial community structure and activity which depends on type of substrate used and several physico-chemical conditions in the bioreactor. Monitoring those and the dynamics of rnicrobiota is important for planning and optimizing the biogas process, avoiding critical points and reaching the maximum methane yield. Methanogens are extremely difficult to study with culture-based methods. Molecular methods for microbial community structure analysis in biogas reactors, which offer qualitative and quantitative information on bacterial and archaeal species and their microbial community changes, and causes for process instability are surveyed in this review. For comparative studies semi-quantitative, rapid and cheap techniques like T-RFLP, DGGE and TGGE are used. More laborious and expensive techniques with high-throughput like semi-quantitative FISH and DNA microar-rays and also quantitative techniques like qPCR and sequencing are used for phylogenetic analysis. Technique type adequacy for certain study depends on what information is needed and on several advantages and disadvantages every technique possesses.
机译:成功产生沼气的基础是稳定或适应性强的微生物群落结构和活性,其结构和活性取决于所用底物的类型以及生物反应器中的几种物理化学条件。监测这些微生物和动态微生物对于规划和优化沼气工艺,避免临界点并达到最大甲烷产量非常重要。用基于文化的方法很难研究产甲烷菌。本文综述了沼气反应器中微生物群落结构分析的分子方法,该方法提供了有关细菌和古细菌物种及其微生物群落变化的定性和定量信息,以及过程不稳定的原因。为了进行比较研究,使用了半定量,快速且廉价的技术,例如T-RFLP,DGGE和TGGE。具有更高通量的更费力且昂贵的技术(例如半定量FISH和DNA微射线)以及定量技术(例如qPCR和测序)被用于系统发育分析。某些研究的技术类型是否适当取决于所需的信息以及每种技术所具有的优点和缺点。

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