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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Vertical distribution of microbial community and metabolic pathway in a methanogenic propionate degradation bioreactor
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Vertical distribution of microbial community and metabolic pathway in a methanogenic propionate degradation bioreactor

机译:微生物群和甲状腺丙酸甲酸盐降解生物反应器中微生物群落和代谢途径的垂直分布

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摘要

The methanogenic propionate degradation consortia were enriched in a propionate-fed semi-continuous bioreactor. The microbial community shift with depth, the microbial network and its correlation with metabolic pathway were also investigated. The results demonstrated that the maximum organic loading rate (OLR) of the reactor was 2.5 g propionic acid (HPr) L-1 d(-1) with approximately 1.20 LL-1 d(-1) of volumetric methane production (VMP). The organisms in the enrichment were spanning 36 bacterial phyla and 7 archaeal orders. Syntrophobacter, the main Hpr oxidizer in the digester, dominated bacteria with relative abundance changing from 63% to 37% with depth. The predominant methanogens shift from hydrogenotrophic Methanoculleus (similar to 60%) at the upper liquid layer to acetoclastic Methanothrix (similar to 51%) at the lower sediment layer in the bioreactor. These methanogens syntrophically support Syntrophobacter by degrading HPr catabolism by-products (H-2 and acetate). Other bacteria could scavenge anabolic products (carbohydrate and protein) presumably derived from detrital biomass produced by the HPr-degrading community.
机译:甲烷丙酸丙酸酯降解结合在丙酸酯喂养的半连续生物反应器中富集。还研究了微生物群落改变深度,微生物网络及其与代谢途径的相关性。结果表明,反应器的最大有机加载速率(OLR)为2.5g丙酸(HPR)L-1d(-1),其中大约1.20ll-1d(-1)体积甲烷生产(VMP)。富集中的生物跨越36个细菌植物和7个古序命令。 Syntrophocacter,Digester中的主要HPR氧化剂,具有相对丰度的主导细菌随深度的63%变为37%。在生物反应器中,在上液体层的下液层的乙酰致培养基(类似于60%)的乙酰型甲烷纤维(类似于51%)的主要甲烷转化为生物反应器中的乙酰旋转性甲蛋白(类似于51%)。这些甲烷酮通过降解HPR分解代谢副产物(H-2和醋酸)来溶解同步杆菌。其他细菌可以清除由HPR降解群落产生的滴乳生物量衍生的合成代谢产物(碳水化合物和蛋白质)。

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