Literature DB >> 30176486

Functional biodiversity and plasticity of methanogenic biomass from a full-scale mesophilic anaerobic digester treating nitrogen-rich agricultural wastes.

J Ruiz-Sánchez1, M Guivernau1, B Fernández1, J Vila2, M Viñas1, V Riau1, F X Prenafeta-Boldú3.   

Abstract

The effect of ammonia on methanogenic biomass from a full-scale agricultural digester treating nitrogen-rich materials was characterized in batch activity assays subjected to increasing concentrations of total ammonia N. Acetotrophic and methanogenic profiles displayed prolonged lag phases and reduced specific activity rates at 6.0 gN-TAN L-1, though identical methane yields were ultimately reached. These results agreed with the expression levels of selected genes from bacteria and methanogenic archaea (qPCR of 16S rRNA and mrcA cDNA transcripts). Compound-specific isotope analysis of biogas indicated that ammonia exposure was associated to a transition in methanogenic activity from acetotrophy at 1.0 gN-TAN L-1 to intermediate and complete hydrogenotrophy at 3.5 and 6.0 gN-TAN L-1. Such pattern matched the results of 16S-Illumina sequencing of genes and transcripts in that predominant methanogens shifted, along with increasing ammonia, from the obligate acetotroph Methanosaeta to the hydrogenotrophic Methanoculleus and the poorly understood methylotrophic Methanomassiliicoccus. The underlying bacterial community structure remained rather stable but, at 6.0 gN-TAN L-1, the expression level increased considerably for a number of ribotypes that are related to potentially syntrophic genera (e.g. Clostridium, Bellilinea, Longilinea, and Bacteroides). The predominance of hydrogenotrophy at high ammonia levels clearly points to the occurrence of the syntrophic acetate oxidation (SAO), but known SAO bacteria were only found in very low numbers. The potential role of the identified bacterial and archaeal taxa with a view on SAO and on stability of the anaerobic digestion process under ammonia stress has been discussed.
Copyright © 2018 Elsevier B.V. All rights reserved.

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Keywords:  Active microbiome; Ammonia; Anaerobic-digestion; C-isotopic biogas fractionation; Syntrophic-acetate-oxidation (SAO)

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Year:  2018        PMID: 30176486     DOI: 10.1016/j.scitotenv.2018.08.165

Source DB:  PubMed          Journal:  Sci Total Environ        ISSN: 0048-9697            Impact factor:   7.963


  1 in total

1.  Treatment of the Supernatant of Anaerobically Digested Organic Fraction of Municipal Solid Waste in a Demo-Scale Mesophilic External Anaerobic Membrane Bioreactor.

Authors:  Antonio Giménez-Lorang; José Ramón Vázquez-Padín; Cecilia Dorado-Barragán; Gloria Sánchez-Santos; Sandra Vila-Armadas; Xavier Flotats-Ripoll
Journal:  Front Bioeng Biotechnol       Date:  2021-04-12
  1 in total

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