Draft genome sequence of Dethiosulfovibrio salsuginis DSM 21565T an anaerobic, slightly halophilic bacterium isolated from a Colombian saline spring
A bacterium belonging to the phylum Synergistetes , genus Dethiosulfovibrio was isolated in 2007 from a saline spring in Colombia. Dethiosulfovibrio salsuginis USBA 82 T ( DSM 21565 T = KCTC 5659 T ) is a mesophilic, strictly anaerobic, slightly halophilic, Gram negative bacterium with a diderm cell...
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Veröffentlicht in: | Standards in genomic sciences 2017-12, Vol.12 (1), p.1-9, Article 86 |
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Zusammenfassung: | A bacterium belonging to the phylum
Synergistetes
, genus
Dethiosulfovibrio
was isolated in 2007 from a saline spring in Colombia.
Dethiosulfovibrio salsuginis
USBA 82
T
(
DSM 21565
T
= KCTC 5659
T
)
is a mesophilic, strictly anaerobic, slightly halophilic, Gram negative bacterium with a diderm cell envelope. The strain ferments peptides, amino acids and a few organic acids. Here we present the description of the complete genome sequencing and annotation of the type species
Dethiosulfovibrio salsuginis
USBA 82
T
. The genome consisted of 2.68 Mbp with a 53.7% G + C
.
A total of 2609 genes were predicted and of those, 2543 were protein coding genes and 66 were RNA genes. We detected in USBA 82
T
genome six
Synergistetes
conserved signature indels (CSIs), specific for
Jonquetella, Pyramidobacter
and
Dethiosulfovibrio
. The genome of
D. salsuginis
contained, as expected, genes related to amino acid transport, amino acid metabolism and thiosulfate reduction. These genes represent the major gene groups of
Synergistetes
, related with their phenotypic traits, and interestingly, 11.8% of the genes in the genome belonged to the amino acid fermentation COG category. In addition, we identified in the genome some ammonification genes such as nitrate reductase genes. The presence of proline operon genes could be related to de novo synthesis of proline to protect the cell in response to high osmolarity. Our bioinformatics workflow included antiSMASH and BAGEL3 which allowed us to identify bacteriocins genes in the genome. |
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ISSN: | 1944-3277 1944-3277 |
DOI: | 10.1186/s40793-017-0303-x |