Department of Environmental Engineering, Technical University of Denmark, Kgs. Lyngby, DK 2800, Denmark.
Department of Biology, University of Padua, Via U. Bassi 58/b, 35121 Padova, Italy.
Bioresour Technol. 2015 Jan;176:56-64. doi: 10.1016/j.biortech.2014.10.126. Epub 2014 Nov 1.
The anaerobic digestion process is often inhibited by alteration of substrates and/or organic overload. This study aimed to elucidate changes of microbial ecology in biogas reactors upon radical changes of substrates and to determine their importance to process imbalance. For this reason, continuously fed reactors were disturbed with pulses of proteins, lipids and carbohydrates and the microbial ecology of the reactors were characterized by 16S rRNA gene sequencing before and after the imposed changes. The microbial composition of the three reactors, initially similar, diverged greatly after substrate change. The greatest increase in diversity was observed in the reactor supplemented with carbohydrates and the microbial community became dominated by lactobacilli, while the lowest corresponded to the reactor overfed with proteins, where only Desulfotomaculum showed significant increase. The overall results suggest that feed composition has a decisive impact on the microbial composition of the reactors, and thereby on their performance.
厌氧消化过程常常受到基质改变和/或有机负荷过高的抑制。本研究旨在阐明在基质发生剧烈变化时沼气反应器中微生物生态学的变化,并确定它们对工艺失衡的重要性。为此,连续进料的反应器受到蛋白质、脂质和碳水化合物脉冲的干扰,并在施加变化前后通过 16S rRNA 基因测序来描述反应器中的微生物生态学。三个反应器的微生物组成最初相似,但在基质改变后差异很大。在补充碳水化合物的反应器中观察到最大的多样性增加,微生物群落主要由乳杆菌主导,而在蛋白质过量的反应器中则最低,只有脱硫梭菌显示出明显增加。总体结果表明,进料组成对反应器中的微生物组成有决定性影响,从而对其性能有决定性影响。