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Noteworthy facts about a methane-producing microbial community processing acidic effluent from sugar beet molasses fermentation

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Noteworthy facts about a methane-producing microbial community processing acidic effluent from sugar beet molasses fermentation

학술지

PloS one

저자명

Chojnacka, Aleksandra; Szczę sny, Paweł; Błaszczyk, Mieczysław K.; Zielenkiewicz, Urszula; Detman, Anna; Salamon, Agnieszka; Sikora, Anna

초록

<P>Anaerobic digestion is a complex process involving hydrolysis, acidogenesis, acetogenesis and methanogenesis. The separation of the hydrogen-yielding (dark fermentation) and methane-yielding steps under controlled conditions permits the production of hydrogen and methane from biomass. The characterization of microbial communities developed in bioreactors is crucial for the understanding and optimization of fermentation processes. Previously we developed an effective system for hydrogen production based on long-term continuous microbial cultures grown on sugar beet molasses. Here, the acidic effluent from molasses fermentation was used as the substrate for methanogenesis in an upflow anaerobic sludge blanket bioreactor. This study focused on the molecular analysis of the methane-yielding community processing the non-gaseous products of molasses fermentation. The substrate for methanogenesis produces conditions that favor the hydrogenotrophic pathway of methane synthesis. Methane production results from syntrophic metabolism whose key process is hydrogen transfer between bacteria and methanogenic <I>Archaea</I>. High-throughput 454 pyrosequencing of total DNA isolated from the methanogenic microbial community and bioinformatic sequence analysis revealed that the domain <I>Bacteria</I> was dominated by <I>Firmicutes</I> (mainly <I>Clostridia</I>), <I>Bacteroidetes</I>, <I>&delta;</I>- and <I>&gamma;-Proteobacteria</I>, <I>Cloacimonetes</I> and <I>Spirochaetes</I>. In the domain <I>Archaea</I>, the order <I>Methanomicrobiales</I> was predominant, with <I>Methanoculleus</I> as the most abundant genus. The second and third most abundant members of the Archaeal community were representatives of the <I>Methanomassiliicoccales</I> and the <I>Methanosarcinales</I>. Analysis of the methanogenic sludge by scanning electron microscopy with Energy Dispersive X-ray Spectroscopy and X-ray diffraction showed that it was composed of small highly heterogeneous mineral-rich granules. Mineral components of methanogenic granules probably modulate syntrophic metabolism and methanogenic pathways. A rough functional analysis from shotgun data of the metagenome demonstrated that our knowledge of methanogenesis is poor and/or the enzymes responsible for methane production are highly effective, since despite reasonably good sequencing coverage, the details of the functional potential of the microbial community appeared to be incomplete.</P>

발행연도

2015

발행기관

Public Library of Science

라이선스

cc-by

ISSN

1932-6203

10

5

페이지

pp.e0128008

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1 2023-12-11

논문; 2015-05-22

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