2017International AgrophysicsOpen access

Methanogenic community composition in an organic waste mixture in an anaerobic bioreactor

Agata Gryta, Karolina Oszust, Małgorzata Brzezińska, Krzysztof Ziemiński, Nina Bilińska-Wielgus, Magdalena Frąc

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Abstract

Abstract The aim of the study was to elucidate the substantial relationship between the compositions of methanogen community that assembles in the anaerobic digester mass and link it to methane production activity. The results of the metagenomic studies were used to evaluate how the methanogen structure changes during an anaerobic digestion process under various waste retention times (21, 23, 25, 29, 33, 39, 47 and 61 days). Phylogenetically coherent populations of methanogens were assessed by 16S rRNA gene next-generation sequencing and terminal restriction fragment length polymorphism fingerprinting of a specific molecular marker, themcrAgene. The results indicated multiple phylogenetically diverse methanogen populations associated with the various steps of anaerobic digestion. The stages of the anaerobic digestion process and waste retention times determine the microbial composition. The most dominant and acclimated microbial communities in all samples belonged to the generaMethanosaetaandMethanobacterium.The methane yield was consistent with the results of the microbial community structure, which indicated that acetotrophicMethanosaetawas the most active and most important during the methanogenic stage.

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Abstract The aim of the study was to elucidate the substantial relationship between the compositions of methanogen community that assembles in the anaerobic digester mass and link it to methane production activity. The results of the metagenomic studies were used to evaluate how the methanogen structure changes during an anaerobic digestion process under various waste retention times (21, 23, 25, 29, 33, 39, 47 and 61 days). Phylogenetically coherent populations of methanogens were assessed by 16S rRNA gene next-generation sequencing and terminal restriction fragment length polymorphism fingerprinting of a specific molecular marker, themcrAgene. The results indicated multiple phylogenetically diverse methanogen populations associated with the various steps of anaerobic digestion. The stages of the anaerobic digestion process and waste retention times determine the microbial composition. The most dominant and acclimated microbial communities in all samples belonged to the generaMethanosaetaandMethanobacterium.The methane yield was consistent with the results of the microbial community structure, which indicated that acetotrophicMethanosaetawas the most active and most important during the methanogenic stage.

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Available abstract

Abstract The aim of the study was to elucidate the substantial relationship between the compositions of methanogen community that assembles in the anaerobic digester mass and link it to methane production activity. The results of the metagenomic studies were used to evaluate how the methanogen structure changes during an anaerobic digestion process under various waste retention times (21, 23, 25, 29, 33, 39, 47 and 61 days). Phylogenetically coherent populations of methanogens were assessed by 16S rRNA gene next-generation sequencing and terminal restriction fragment length polymorphism fingerprinting of a specific molecular marker, themcrAgene. The results indicated multiple phylogenetically diverse methanogen populations associated with the various steps of anaerobic digestion. The stages of the anaerobic digestion process and waste retention times determine the microbial composition. The most dominant and acclimated microbial communities in all samples belonged to the generaMethanosaetaandMethanobacterium.The methane yield was consistent with the results of the microbial community structure, which indicated that acetotrophicMethanosaetawas the most active and most important during the methanogenic stage.

Key concepts: Methanogen, Methanosaeta, Methanobacterium, Anaerobic digestion, Methanosarcina, Biology, Terminal restriction fragment length polymorphism, Metagenomics

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