Pseudodesulfovibrio aespoeensis Aspo-2

curved/spiralanaerobic

Kingdom

Pseudomonadati

Phylum

Thermodesulfobacteriota

Class

Desulfovibrionia

Order

Desulfovibrionales

Family

Desulfovibrionaceae

Genus

Pseudodesulfovibrio

Description

Pseudodesulfovibrio aespoeensis Aspo-2 is a Gram-negative, anaerobic bacterium characterized by its curved or spiral shape. This organism has a single replicon, which contributes to its genetic stability and replication efficiency. Its genome is accessible under the accession number NC_014844.1, providing a resource for further genetic and functional studies. The anaerobic nature of Pseudodesulfovibrio aespoeensis Aspo-2 suggests that it thrives in environments devoid of oxygen, likely playing a role in sulfate reduction processes. These bacteria are often found in deep-sea sediments, hydrothermal vents, or other anoxic environments where they contribute to biogeochemical cycles. The specific ecological role of Pseudodesulfovibrio aespoeensis Aspo-2 may include the degradation of organic matter and the cycling of sulfur compounds, which is significant for maintaining the balance in its native ecosystem. Understanding the traits and behaviors of Pseudodesulfovibrio aespoeensis Aspo-2 can provide insights into the functioning of anaerobic microbial communities and their contributions to nutrient cycling in extreme environments. The study of such organisms is crucial for comprehending the complexities of microbial ecology and the potential applications in bioremediation and bioenergy production, where anaerobic processes are essential.

Taxonomy

KingdomPseudomonadati
PhylumThermodesulfobacteriota
ClassDesulfovibrionia
OrderDesulfovibrionales
FamilyDesulfovibrionaceae
GenusPseudodesulfovibrio
SpeciesPseudodesulfovibrio aespoeensis
StrainAspo-2

Profile

Physiology
Gram staining propertiesGram-negative
Shapecurved/spiral
MobilityNot Available
Flagellar presenceNot Available
Number of membranesNot Available
Ecology, Host, and Life Cycle
Oxygen requirementsanaerobic
Optimal temperatureNot Available
Temperature rangeNot Available
HabitatNot Available
Biotic relationshipNot Available
Host(s)Not Available
Cell arrangementNot Available
SporulationNot Available
Energy sourceNot Available
PathogenicityNot Available

Genome Summary

Pseudodesulfovibrio aespoeensis Aspo-2, complete sequence.

Gene Summary

Adenine Count

678431 bp

Thymine Count

680236 bp

Guanine Count

1132931 bp

Cytosine Count

1137511 bp

Genome Length

3629109 bp

Protein-coding Genes

3239 genes

Non-Coding Genes

168 genes

# of Chromosomes/Plasmids

1

Genes

NameLocus TagUniProt IDStrand OrientationGene Start/EndProtein Molecular Weight
hypothetical proteinDAES_RS03760Not AvailablePositive836459 - 83782948109.1
hypothetical proteinDAES_RS03765Not AvailableNegative837900 - 83846920313.2
pyridoxal phosphate-dependent aminotransferaseDAES_RS03770Not AvailablePositive838687 - 83983541634.1
trar/dksa family transcriptional regulatorDAES_RS03775Not AvailablePositive839832 - 84016712510.0
signal recognition particle proteinDAES_RS03780Not AvailablePositive840554 - 84205955055.0
30s ribosomal protein s16DAES_RS03785Not AvailablePositive842152 - 8423919057.18
kh domain-containing proteinDAES_RS03790Not AvailablePositive842476 - 8427098500.45
ribosome maturation factor rimmDAES_RS03795Not AvailablePositive842893 - 84349221673.1
trna (guanosine(37)-n1)-methyltransferase trmdDAES_RS03800Not AvailablePositive843489 - 84478447415.9
50s ribosomal protein l19DAES_RS03805Not AvailablePositive844816 - 84516613513.4

Displaying genes 851 – 860 of 3407 in total

Pathways

0 pathways

No pathways found

No metabolic pathways have been associated with this bacterium yet.

Metabolites

2 records
Metabolite IDMetabolite nameStructureCAS number
BASm0014032Acetic acidC2H4O2Chemical structure of Acetic acid64-19-7
Average60.052Da
Monoisotopic60.021129372Da
BASm0014039L-Lactic acidC3H6O3Chemical structure of L-Lactic acid79-33-4
Average90.0779Da
Monoisotopic90.031694058Da

Displaying 1–2 of 2 metabolites

Health Effects

No health effects information available for this bacterium.