Draft genome sequence of Cellulomonas carbonis T26T and comparative analysis of six Cellulomonas genomes
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چکیده
منابع مشابه
Draft genome sequence of Cellulomonas carbonis T26T and comparative analysis of six Cellulomonas genomes
Most Cellulomonas strains are cellulolytic and this feature may be applied in straw degradation and bioremediation. In this study, Cellulomonas carbonis T26(T), Cellulomonas bogoriensis DSM 16987(T) and Cellulomonas cellasea 20108(T) were sequenced. Here we described the draft genomic information of C. carbonis T26(T) and compared it to the related Cellulomonas genomes. Strain T26(T) has a 3,99...
متن کاملCellulomonas carbonis sp. nov., isolated from coal mine soil.
A Gram-positive, aerobic, motile, rod-shaped bacterium, designated strain T26(T), was isolated from subsurface soil of Tianjin coal mine, China. Colonies were yellow-white, convex, circular, smooth and non-transparent on R2A agar. Phylogenetic analysis based on 16S rRNA gene sequences indicated that strain T26(T) was closely related to members of the genus Cellulomonas and a member of the genus...
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Cellulomonas flavigena (Kellerman and McBeth 1912) Bergey et al. 1923 is the type species of the genus Cellulomonas of the actinobacterial family Cellulomonadaceae. Members of the genus Cellulomonas are of special interest for their ability to degrade cellulose and hemicellulose, particularly with regard to the use of biomass as an alternative energy source. Here we describe the features of thi...
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Cellulomonas sp. strain B6 was isolated from a subtropical forest soil sample and presented (hemi)cellulose-degrading activity. We report here its draft genome sequence, with an estimated genome size of 4 Mb, a G+C content of 75.1%, and 3,443 predicted protein-coding sequences, 92 of which are glycosyl hydrolases involved in polysaccharide degradation.
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We present the genome of the cellulose-degrading Cellulomonas sp. strain FA1 isolated from an actively serpentinizing highly alkaline spring. Knowledge of this genome will enable studies into the molecular basis of plant material degradation in alkaline environments and inform the development of lignocellulose bioprocessing procedures for biofuel production.
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ژورنال
عنوان ژورنال: Standards in Genomic Sciences
سال: 2015
ISSN: 1944-3277
DOI: 10.1186/s40793-015-0096-8