Spatial distribution of some microbial trophic groups in a plug-flow-type anaerobic bioreactor treating swine manure

甲烷菌 生物 甲烷八叠球菌 产甲烷 产酸作用 生物反应器 厌氧消化 微生物学 肥料 厚壁菌 食品科学 植物 生物化学 生态学 16S核糖体RNA 甲烷 基因
作者
Guylaine Talbot,Caroline Roy,Edward Topp,Martin Kalmokoff,Stephen P.J. Brooks,Carole Beaulieu,Marie‐France Palin,Daniel I. Massé
出处
期刊:Water Science and Technology [Pergamon Press]
卷期号:61 (5): 1147-1155 被引量:11
标识
DOI:10.2166/wst.2010.014
摘要

Anaerobic digestion of swine manure is carried out by a consortium of microbial species, including volatile fatty acid (VFA) producers, VFA-degraders and methanogens. The distribution of five phylogenetic groups within a plug-flow-type anaerobic bioreactor consisting of eight serially-connected tanks was examined through the sequential digestion of swine manure. Quantification was carried out using reverse transcription real-time PCR (RT-Q-PCR) assays targeting the 16S rRNA of Clostridium (cluster XIVa), Peptostreptococcus, Syntrophomonas, Methanosaeta, and Methanosarcina spp. The VFA producers Peptostreptococcus spp. and Clostridium spp. were found predominantly in compartments where hydrolysis/acidogenesis took place. The spatial distribution of the aceticlastic methanogens, Methanosaeta and Methanosarcina, within the bioreactor was not correlated with methanogenic activity. In contrast the VFA-degrading genus Syntrophomonas spp. was more abundant in compartments with elevated methanogenic activity. Multivariate statistical analyses of the RT-Q-PCR data have provided new insights into our understanding of how the various trophic groups were distributed within this bioreactor system. While the distribution of clostridia, peptostreptococci and Syntrophomonas corresponded to their known metabolic functions, aceticlastic methanogens were not apparently linked to the methanogenesis stage occurring in latter compartments, suggesting that hydrogenotrophic methanogens were the primary methane generators in this bioreactor. However, aceticlastic methanogens could be involved in compartments related to the hydrolysis/acidogenesis stage.
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