Authors
Fan Lü, Ariane Bize, Alain Guillot, Véronique Monnet, Céline Madigou, Olivier Chapleur, Laurent Mazéas, Pinjing He, Théodore Bouchez
Publication date
2014/1
Journal
The ISME journal
Volume
8
Issue
1
Pages
88-102
Publisher
Oxford University Press
Description
Cellulose is the most abundant biopolymer on Earth. Optimising energy recovery from this renewable but recalcitrant material is a key issue. The metaproteome expressed by thermophilic communities during cellulose anaerobic digestion was investigated in microcosms. By multiplying the analytical replicates (65 protein fractions analysed by MS/MS) and relying solely on public protein databases, more than 500 non-redundant protein functions were identified. The taxonomic community structure as inferred from the metaproteomic data set was in good overall agreement with 16S rRNA gene tag pyrosequencing and fluorescent in situ hybridisation analyses. Numerous functions related to cellulose and hemicellulose hydrolysis and fermentation catalysed by bacteria related to Caldicellulosiruptor spp. and Clostridium thermocellum were retrieved, indicating their key role in the cellulose-degradation process …
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