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Bacterial community composition and fhs profiles of low- and high-ammonia biogas digesters reveal novel syntrophic acetate-oxidising bacteria

机译:低氨和高氨沼气池的细菌群落组成和fhs谱揭示了新型的共生乙酸氧化细菌

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摘要

BackgroundSyntrophic acetate oxidation (SAO) is the predominant pathway for methane production in high ammonia anaerobic digestion processes. The bacteria (SAOB) occupying this niche and the metabolic pathway are poorly understood. Phylogenetic diversity and strict cultivation requirements hinder comprehensive research and discovery of novel SAOB. Most SAOB characterised to date are affiliated to the physiological group of acetogens. Formyltetrahydrofolate synthetase is a key enzyme of both acetogenic and SAO metabolism. The encoding fhs gene has therefore been identified as a suitable functional marker, using a newly designed primer pair. In this comparative study, we used a combination of terminal restriction fragment length polymorphism profiling, clone-based comparison, qPCR and Illumina amplicon sequencing to assess the bacterial community and acetogenic sub-community prevailing in high- and low-ammonia laboratory-scale digesters in order to delineate potential SAOB communities. Potential candidates identified were further tracked in a number of low-ammonia and high-ammonia laboratory-scale and large-scale digesters in order to reveal a potential function in SAO.
机译:背景乙酸乙酸盐氧化(SAO)是高氨厌氧消化过程中甲烷生产的主要途径。占据这一生态位和代谢途径的细菌(SAOB)知之甚少。系统发育的多样性和严格的栽培要求阻碍了新型SAOB的全面研究和发现。迄今为止,大多数特征性的SAOB都属于生乙酸素的生理学类别。甲酰基四氢叶酸合成酶是产乙酸和SAO代谢的关键酶。因此,已使用新设计的引物对将编码的fhs基因鉴定为合适的功能标记。在这项比较研究中,我们结合使用了末端限制性片段长度多态性分析,基于克隆的比较,qPCR和Illumina扩增子测序来评估高和低氨实验室规模消化池中普遍存在的细菌群落和产乙酸菌亚群落。为了描述潜在的SAOB社区。为了揭示SAO的潜在功能,在许多低氨和高氨实验室规模和大型消化池中进一步追踪了识别出的潜在候选物。

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