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处理猪粪的厌氧推流式生物反应器中的细菌群落动态

Bacterial community dynamics in an anaerobic plug-flow type bioreactor treating swine manure.

作者信息

Roy Caroline S, Talbot Guylaine, Topp Edward, Beaulieu Carole, Palin Marie-France, Massé Daniel I

机构信息

Dairy and Swine Research and Development Centre, Agriculture and Agri-Food Canada, 2000 College Street, Sherbrooke, QC J1M 0C8, Canada.

出版信息

Water Res. 2009 Jan;43(1):21-32. doi: 10.1016/j.watres.2008.09.034. Epub 2008 Oct 8.

Abstract

A plug-flow type anaerobic reactor consisting of eight sequential compartments was used to study shifts in a bacterial community adapted to degrade swine manure at 25 degrees C. The investigation was carried out during the first 6 months of reactor operation. The reactor successfully separated the hydrolysis/acidogenesis stage from the methanogenesis stage. Bacterial 16S rDNA- and rRNA-based fingerprints obtained through amplicon length heterogeneity PCR (LH-PCR) were analyzed with a view to characterizing the bacterial community structure and the metabolically active community, respectively. Multivariate statistical tools showed that the rDNA-based fingerprints described a more temporal than compartmentalized distribution of similar bacterial communities. By contrast, the rRNA-based multivariate analyses described a distribution that was linked more to reactor performance parameters, especially during short time periods. Diversity indices calculated from fingerprint data were used to assess overall diversity shifts. The decrease in rRNA-based diversity observed through the reactor compartments was greater than the decrease in rDNA-based diversity. This finding indicates that the analysis of metabolically active bacteria diversity was more discriminative than the analysis based on the mere presence of bacteria. The observed decrease in diversity suggests that the bacterial community became specialized in degrading less diversified substrates through the compartments. All these findings suggest that rRNA-based analyses are more appropriate for monitoring reactor performance.

摘要

使用一个由八个串联隔室组成的推流式厌氧反应器,在25摄氏度下研究适应降解猪粪的细菌群落的变化。该研究在反应器运行的前6个月进行。该反应器成功地将水解/产酸阶段与产甲烷阶段分开。通过扩增子长度异质性PCR(LH-PCR)获得的基于细菌16S rDNA和rRNA的指纹图谱,分别用于表征细菌群落结构和代谢活跃群落。多变量统计工具表明,基于rDNA的指纹图谱描述的是相似细菌群落的时间分布而非隔室分布。相比之下,基于rRNA的多变量分析描述的是一种与反应器性能参数更相关的分布,尤其是在短时间内。根据指纹数据计算的多样性指数用于评估整体多样性变化。通过反应器隔室观察到的基于rRNA的多样性下降大于基于rDNA的多样性下降。这一发现表明,对代谢活跃细菌多样性的分析比仅基于细菌存在的分析更具区分性。观察到的多样性下降表明,细菌群落通过隔室变得专门用于降解多样性较低的底物。所有这些发现表明,基于rRNA的分析更适合监测反应器性能。

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