Carbohydrate Hydrolytic Potential and Redundancy of an Anaerobic Digestion Microbiome Exposed to Acidosis, as Uncovered by Metagenomics

Author:

Bertucci Marie12,Calusinska Magdalena1,Goux Xavier1,Rouland-Lefèvre Corinne3,Untereiner Boris1,Ferrer Pau1,Gerin Patrick A.2,Delfosse Philippe1

Affiliation:

1. Environmental Research and Innovation Department, Luxembourg Institute of Science and Technology, Belvaux, Luxembourg

2. Laboratory of Bioengineering, Earth and Life Institute, Applied Microbiology, Université Catholique de Louvain, Louvain-la-Neuve, Belgium

3. Institute of Ecology and Environmental Sciences, Research Institute Development, Sorbonne Universités, Bondy, France

Abstract

The enzymatic hydrolysis of lignocellulosic biomass is mainly driven by the action of carbohydrate-active enzymes. By characterizing the gene profiles at the different stages of the anaerobic digestion experiment, we showed that the microbiome retains its hydrolytic functional redundancy even during severe acidosis, despite significant changes in taxonomic composition. By analyzing reconstructed bacterial genomes, we demonstrate that Bacteroidetes hydrolytic gene diversity likely favors the abundance of this phylum in some anaerobic digestion systems. Further, we observe genetic redundancy within the Bacteroidetes group, which accounts for the preserved hydrolytic potential during acidosis. This work also uncovers new polysaccharide utilization loci involved in the deconstruction of various biomasses and proposes the model of acetylated glucomannan degradation by Bacteroidetes . Acetylated glucomannan-enriched biomass is a common substrate for many industries, including pulp and paper production. Using naturally evolved cocktails of enzymes for biomass pretreatment could be an interesting alternative to the commonly used chemical pretreatments.

Funder

Fonds National de la Recherche Luxembourg

Publisher

American Society for Microbiology

Subject

Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology

Reference79 articles.

1. Pain BF, Hepherd RQ. 1985. Anaerobic digestion of livestock wastes, p 9—14. In Pain BF, Hepherd RQ (ed), Anaerobic digestion of farm waste. NIRD technical bulletins. NIRD, Reading, United Kingdom.

2. Perspectives for anaerobic digestion;Ahring BK;Adv Biochem Eng Biotechnol,2003

3. Transfer of a static PCA-MSPC model from a steady-state anaerobic reactor to an independent anaerobic reactor exposed to organic overload

4. Microbial community dynamics in replicate anaerobic digesters exposed sequentially to increasing organic loading rate, acidosis, and process recovery

5. The Microbiology of Anaerobic Digesters

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