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Anaerobic Digestion of Renewable Biomass: Thermophilic Temperature Governs Methanogen Population Dynamics ▿ †

机译:可再生生物质的厌氧消化:嗜热温度控制产甲烷菌种群动态▿†

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摘要

Beet silage and beet juice were digested continuously as representative energy crops in a thermophilic biogas fermentor for more than 7 years. Fluorescence microscopy of 15 samples covering a period of 650 days revealed that a decrease in temperature from 60°C to 55°C converted a morphologically uniform archaeal population (rods) into a population of methanogens exhibiting different cellular morphologies (rods and coccoid cells). A subsequent temperature increase back to 60°C reestablished the uniform morphology of methanogens observed in the previous 60°C period. In order to verify these observations, representative samples were investigated by amplified rRNA gene restriction analysis (ARDRA) and fluorescence in situ hybridization (FISH). Both methods confirmed the temperature-dependent population shift observed by fluorescence microscopy. Moreover, all samples investigated demonstrated that hydrogenotrophic Methanobacteriales dominated in the fermentor, as 29 of 34 identified operational taxonomic units (OTUs) were assigned to this order. This apparent discrimination of acetoclastic methanogens contradicts common models for anaerobic digestion processes, such as anaerobic digestion model 1 (ADM1), which describes the acetotrophic Euryarchaeota as predominant organisms.
机译:甜菜青贮饲料和甜菜汁作为嗜热性沼气发酵罐中的代表性能源作物连续消化了7年以上。 15个样品的荧光显微镜检查涵盖了650天的时间,结果表明温度从60°C降至55°C,可以将形态上均一的古细菌种群(棒)转变为显示出不同细胞形态(棒和类球菌细胞)的产甲烷菌。随后温度回升至60°C,重新建立了在先前60°C期间观察到的产甲烷菌的均匀形态。为了验证这些观察结果,通过扩增的rRNA基因限制分析(ARDRA)和荧光原位杂交(FISH)研究了代表性样品。两种方法均证实了通过荧光显微镜观察到的温度依赖性种群迁移。此外,所有调查的样本均表明,在发酵罐中氢营养型甲烷菌占主导地位,因为已确定的34个可操作分类单位(OTU)中有29个已分配给该顺序。明显的对破乳产甲烷菌的区分与厌氧消化过程的通用模型相矛盾,例如厌氧消化模型1(ADM1),其将营养缺陷型Euryarchaeota描述为主要生物。

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