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Anaerobic cellulolytic microbial communities decomposing the biomass of Anabaena variabilis

机译:厌氧纤维素分解微生物群落分解Anabaena Variabilis的生物量

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摘要

Four previously isolated methanogenic anaerobic consortia, which were originally cultivated on a cellulose-containing substrate (filter paper), were used as inocula for the anaerobic conversion of the biomass of Anabaena variabilis into biogas at 55A degrees C. The cumulative methane yield in the biogas produced by the most active consortia reached 64%. However, the biotransformation was only efficient in the course of the single inoculation and pretreatment of the cyanobacterial biomass by its concentration and freeze-thawing. The DGGE analysis of the structure of the selected microbial consortia, cultivated on the filter paper, revealed qualitative variations in the biodiversity of predominant Bacteria, showing differences in band number and intensity. The composition of methanogenic Archaea in these consortia was similar, with the presence of the genera Methanoculleus and Methanosarcina. The efficiency of the microbial consortia selection, and the role of the various microbial trophic groups in bioconversion of the substrates, such as cellulose and the biomass of phototrophic microorganisms are discussed.
机译:以前的四个孤立的甲状腺嗜酸性聚焦,其最初在含纤维素的基质(滤纸)上培养,用作Inecula,用于在55A℃下将Anabaena Variabilis的生物量转化为沼气的厌氧转化为沼气中的累积甲烷产量由最活跃的联盟产生的产生达到64%。然而,通过其浓度和冷冻解冻,生物转化在单一接种和预处理的过程中仅有效。在滤纸上培养的所选微生物联盟结构的DGGE分析,揭示了主要细菌的生物多样性的定性变化,显示了带数和强度的差异。这些联盟中的甲基甲基古代的组成是相似的,存在于属甲蛋白和甲蛋白酶的存在相似。讨论了微生物结合选择的效率,以及各种微生物营养基团在衬底的生物转化中的作用,例如纤维素和光养微生物的生物质。

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