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Community dynamics of cellulose‐adapted thermophilic bacterial consortia

Stephanie A. Eichorst; Patanjali Varanasi; Vatalie Stavila; Marcin Zemla; Manfred Auer; Seema Singh; Blake A. Simmons; Steven W. Singer
Environmental Microbiology · Vol. 15, Issue 9 · pp. 2573-2587 · 2013

Abstract

Summary Enzymatic hydrolysis of cellulose is a key process in the global carbon cycle and the industrial conversion of biomass to biofuels. In natural environments, cellulose hydrolysis is predominately performed by microbial communities. However, detailed understanding of bacterial cellulose hydrolysis is primarily confined to a few model isolates. Developing models for cellulose hydrolysis by mixed microbial consortia will complement these isolate studies and may reveal new mechanisms for cellulose deconstruction. Microbial communities were adapted to microcrystalline cellulose under aerobic, thermophilic conditions using green waste compost as the inoculum to study cellulose hydrolysis in a microbial consortium. This adaptation selected for three dominant taxa – the F irmicutes, B acteroidetes and T hermus . A high‐resolution profile of community development during the enrichment demonstrated a community transition from F irmicutes to a novel B acteroidetes population that clusters in the C hitinophagaceae family. A representative strain of this population, strain NYFB , was successfully isolated, and sequencing of a nearly full‐length 16S rRNA gene demonstrated that it was only 86% identical compared with other validated strains in the phylum B acteroidetes . Strain NYFB grew well on soluble polysaccharide substrates, but grew poorly on insoluble polysaccharide substrates. Similar communities were observed in companion thermophilic enrichments on insoluble wheat arabinoxylan, a hemicellulosic substrate, suggesting a common model for deconstruction of plant polysaccharides. Combining observations of community dynamics and the physiology of strain NYFB , a cooperative successional model for polysaccharide hydrolysis by the F irmicutes and B acteroidetes in the thermophilic cellulolytic consortia is proposed.

Bibliographic Information

JournalEnvironmental Microbiology
PublisherWiley
Publication Date2013-09-01
Publication Year2013
Volume15
Issue9
Pages2573-2587
Document TypeJournal Article
Print ISSN1462-2912
eISSN1462-2920
DOI10.1111/1462-2920.12159
SubjectMicrobial Ecology

Access Information

NARA Access Coverage1999-01-01~Current
Journal Homepagehttps://onlinelibrary.wiley.com/loi/14622920
Publisher PageOpen Publisher Page
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