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1.
Bioinformatics ; 32(6): 929-31, 2016 03 15.
Artigo em Inglês | MEDLINE | ID: mdl-26576653

RESUMO

UNLABELLED: JSpecies Web Server (JSpeciesWS) is a user-friendly online service for in silico calculating the extent of identity between two genomes, a parameter routinely used in the process of polyphasic microbial species circumscription. The service measures the average nucleotide identity (ANI) based on BLAST+ (ANIb) and MUMmer (ANIm), as well as correlation indexes of tetra-nucleotide signatures (Tetra). In addition, it provides a Tetra Correlation Search function, which allows to rapidly compare selected genomes against a continuously updated reference database with currently about 32 000 published whole and draft genome sequences. For comparison, own genomes can be uploaded and references can be selected from the JSpeciesWS reference database. The service indicates whether two genomes share genomic identities above or below the species embracing thresholds, and serves as a fast way to allocate unknown genomes in the frame of the hitherto sequenced species. AVAILABILITY AND IMPLEMENTATION: JSpeciesWS is available at http://jspecies.ribohost.com/jspeciesws SUPPLEMENTARY INFORMATION: Supplementary data are available at Bioinformatics online. CONTACT: mrichter@ribocon.com.


Assuntos
Genoma , Células Procarióticas , Sequência de Bases , Computadores , Genômica , Internet
2.
Environ Microbiol ; 18(12): 4610-4627, 2016 12.
Artigo em Inglês | MEDLINE | ID: mdl-27768819

RESUMO

The marine flavobacterium Zobellia galactanivorans DsijT was isolated from a red alga and by now constitutes a model for studying algal polysaccharide bioconversions. We present an in-depth analysis of its complete genome and link it to physiological traits. Z. galactanivorans exhibited the highest gene numbers for glycoside hydrolases, polysaccharide lyases and carbohydrate esterases and the second highest sulfatase gene number in a comparison to 125 other marine heterotrophic bacteria (MHB) genomes. Its genome contains 50 polysaccharide utilization loci, 22 of which contain sulfatase genes. Catabolic profiling confirmed a pronounced capacity for using algal polysaccharides and degradation of most polysaccharides could be linked to dedicated genes. Physiological and biochemical tests revealed that Z. galactanivorans stores and recycles glycogen, despite loss of several classic glycogen-related genes. Similar gene losses were observed in most Flavobacteriia, suggesting presence of an atypical glycogen metabolism in this class. Z. galactanivorans features numerous adaptive traits for algae-associated life, such as consumption of seaweed exudates, iodine metabolism and methylotrophy, indicating that this bacterium is well equipped to form profitable, stable interactions with macroalgae. Finally, using statistical and clustering analyses of the MHB genomes we show that their carbohydrate catabolism correlates with both taxonomy and habitat.


Assuntos
Metabolismo dos Carboidratos , Flavobacteriaceae/metabolismo , Ecossistema , Flavobacteriaceae/genética , Genoma Bacteriano , Glicosídeo Hidrolases/genética , Glicosídeo Hidrolases/metabolismo , Polissacarídeo-Liases/genética , Polissacarídeo-Liases/metabolismo , Polissacarídeos/metabolismo
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