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Comparative analysis of hydrogen-producing bacterial biofilms and granular sludge formed in continuous cultures of fermentative bacteria

机译:发酵菌连续培养过程中产氢细菌生物膜与颗粒污泥的比较分析

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摘要

A system for biohydrogen production was developed based on long-term continuous cultures grown on sugar beet molasses in packed bed reactors. In two separate cultures, consortia of fermentative bacteria developed as biofilms on granitic stones. In one of the cultures, a granular sludge was also formed. Metagenomic analysis of the microbial communities by 454-pyrosequencing of amplified 16S rDNA fragments revealed that the overall biodiversity of the hydrogen-producing cultures was quite small. The stone biofilm from the culture without granular sludge was dominated by Clostridiaceae and heterolactic fermentation bacteria, mainly Leuconostocaeae. Representatives of the Leuconostocaeae and Enterobacteriaceae were dominant in both the granules and the stone biofilm formed in the granular sludge culture. The culture containing granular sludge produced hydrogen significantly more effectively than that containing only the stone biofilm: 5.43 vs. 2.8molH_2/mol sucrose from molasses, respectively. The speculations that lactic acid bacteria may favor hydrogen production are discussed.
机译:基于在填充床反应器中在甜菜糖蜜上生长的长期连续培养物,开发了用于生产生物氢的系统。在两种不同的文化中,发酵细菌的聚生体发展为花岗石上的生物膜。在一种培养物中,还形成了颗粒污泥。通过扩增的16S rDNA片段的454-焦磷酸测序对微生物群落的元基因组学分析表明,产氢培养物的总体生物多样性非常小。来自培养物的无颗粒污泥的石头生物膜主要由梭菌科和杂乳酸发酵细菌(主要是白粘菌科)控制。白粉病和肠杆菌科的代表在颗粒污泥培养中形成的颗粒和结石生物膜中占主导地位。与仅含石质生物膜的培养物相比,含颗粒污泥的培养物产生氢气的效率更高:分别从糖蜜中提取5.43 vs. 2.8molH_2 / mol蔗糖。讨论了乳酸菌可能有助于产氢的推测。

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