March 2011

Journal

Complete genome sequences for the anaerobic, extremely thermophilic plant biomass-degrading bacteria Caldicellulosiruptor hydrothermalis, Caldicellulosiruptor kristjanssonii, Caldicellulosiruptor kronotskyensis, Caldicellulosiruptor owensenis, and Caldicellulosiruptor lactoaceticus

By:
Blumer-Schuette, Sara; Ozdemir, Inci; Mistry, Dhaval; Lucas, Susan; Lapidus, Alla; Cheng, Jan-Fang; Goodwin, Lynne; Pitluck, Samual; Land, Miriam L; Hauser, Loren J; Woyke, Tanja; Mikhailova, Natalia; Pati, Amrita; Kyrpides, Nikos; Ivanova, N; Detter, J; Walston Davenport, Karen; Han, Cliff; Adams, Michael; Kelly, Robert
Journal Name:
Journal of Bacteriology
Page Number:
1483-1484
Volume:
193
Issue Number:
6
Publication Date:
March 30, 2011
View DOI Listing:
https://doi.org/10.1128/JB.01515-10

Abstract

The genus Caldicellulosiruptor contains the most thermophilic, plant biomass-degrading bacteria isolated to date. Previously, genome sequences from three cellulolytic members of this genus were reported (C. saccharolyticus, C. bescii, and C. obsidiansis). To further explore the physiological and biochemical basis for polysaccharide degradation within this genus, five additional genomes were sequenced: C. hydrothermalis, C. kristjanssonii, C. kronotskyensis, C. lactoaceticus, and C. owensensis. Taken together, the seven completed and one draft-phase Caldicellulosiruptor genomes suggest that, while central metabolism is highly conserved, significant differences in glycoside hydrolase inventories and numbers of carbohydrate transporters exist, a finding which likely relates to variability observed in plant biomass degradation capacity.