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农业沼气厂中丙酸降解菌群的分析。

Analysis of propionate-degrading consortia from agricultural biogas plants.

作者信息

Ahlert Stephan, Zimmermann Rita, Ebling Johannes, König Helmut

机构信息

Institute of Microbiology and Wine Research, Johannes Gutenberg University, Mainz, Germany.

出版信息

Microbiologyopen. 2016 Dec;5(6):1027-1037. doi: 10.1002/mbo3.386. Epub 2016 Jul 1.

Abstract

In order to investigate the propionate-degrading community of agricultural biogas plants, four propionate-degrading consortia (Ap1a, N12, G12, and Wp2a) were established from different biogas plants which were fed with renewable resources. The consortia were cultivated in a batch for a period of 2-4 years and then analyzed in an 8-week batch experiment for microbial succession during propionate degradation. Community shifts showed considerable propagation of Syntrophobacter sulfatireducens, Cryptanaerobacter sp./Pelotomaculum sp., and "Candidatus Cloacamonas sp." in the course of decreasing propionate concentration. Methanogenic species belonged mainly to the genera Methanosarcina, Methanosaeta, and Methanoculleus. Due to the prevalent presence of the syntrophic acetate-oxidizing species Tepidanaerobacter acetatoxydans and potentially autotrophic homoacetogenic bacteria (Moorella sp., Thermacetogenium sp.), a theoretical involvement of syntrophic acetate oxidation and autotrophic homoacetogenesis in stable and efficient propionate degradation was indicated. Considering theoretical Gibbs free energy values at different hydrogen partial pressures, it is noticeable that syntrophic acetate oxidation and autotrophic homoacetogenesis have the potential to counterbalance adverse hydrogen partial pressure fluctuations, stabilizing most probably continuous and stable propionate degradation.

摘要

为了研究农业沼气厂中丙酸降解菌群,从以可再生资源为原料的不同沼气厂中建立了四个丙酸降解菌群(Ap1a、N12、G12和Wp2a)。这些菌群在分批培养中培养2至4年,然后在为期8周的分批实验中分析丙酸降解过程中的微生物演替。随着丙酸浓度降低,群落变化显示硫酸还原互营杆菌、隐秘厌氧杆菌属/泥杆菌属和“候选克洛卡莫纳菌属”大量繁殖。产甲烷菌主要属于甲烷八叠球菌属、甲烷丝状菌属和甲烷袋状菌属。由于互营乙酸氧化菌嗜热厌氧杆菌和潜在自养同型产乙酸细菌(摩尔氏菌属、嗜热产乙酸菌属)普遍存在,表明互营乙酸氧化和自养同型产乙酸在稳定高效的丙酸降解中可能发挥作用。考虑到不同氢气分压下的理论吉布斯自由能值,值得注意的是,互营乙酸氧化和自养同型产乙酸有潜力抵消不利的氢气分压波动,很可能稳定丙酸的持续稳定降解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a362/5221444/2cb9c73c4c2c/MBO3-5-1027-g001.jpg

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