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Enrichment of Denitrifying Methane-Oxidizing Microorganisms Using Up-Flow Continuous Reactors and Batch Cultures

机译:使用上游连续反应器和分批培养技术富集反硝化甲烷氧化微生物

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摘要

Denitrifying anaerobic methane oxidizing (DAMO) microorganisms were enriched from paddy field soils using continuous-flow and batch cultures fed with nitrate or nitrite as a sole electron acceptor. After several months of cultivation, the continuous-flow cultures using nitrite showed remarkable simultaneous methane oxidation and nitrite reduction and DAMO bacteria belonging to phylum NC10 were enriched. A maximum volumetric nitrite consumption rate of 70.4±3.4 mg-N·L−1·day−1 was achieved with very short hydraulic retention time of 2.1 hour. In the culture, about 68% of total microbial cells were bacteria and no archaeal cells were detected by fluorescence in situ hybridization. In the nitrate-fed continuous-flow cultures, 58% of total microbial cells were bacteria while archaeal cells accounted for 7% of total cell numbers. Phylogenetic analysis of pmoA gene sequence showed that enriched DAMO bacteria in the continuous-flow cultivation had over 98% sequence similarity to DAMO bacteria in the inoculum. In contrast, for batch culture, the enriched pmoA gene sequences had 89–91% sequence similarity to DAMO bacteria in the inoculum. These results indicate that electron acceptor and cultivation method strongly affect the microbial community structures of DAMO consortia.
机译:使用连续流和分批培养物,以硝酸盐或亚硝酸盐为唯一电子受体,从稻田土壤中富集反硝化厌氧甲烷氧化(DAMO)微生物。培养数月后,使用亚硝酸盐的连续流培养显示出显着的同时甲烷氧化和亚硝酸盐还原,属于门NC10的DAMO细菌富集。在很短的水力停留时间为2.1小时的情况下,最大的亚硝酸盐体积消耗率为70.4±3.4 mg-N·L -1 ·天 -1 。在培养物中,大约68%的微生物细胞是细菌,通过荧光原位杂交未检测到古细菌细胞。在硝酸盐喂养的连续流培养物中,细菌总数占58%,古细菌细胞占总数的7%。对pmoA基因序列的系统进化分析表明,在连续流培养中富集的DAMO细菌与接种物中的DAMO细菌具有超过98%的序列相似性。相反,对于分批培养,富集的pmoA基因序列与接种物中的DAMO细菌具有89–91%的序列相似性。这些结果表明电子受体和培养方法强烈影响DAMO财团的微生物群落结构。

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