Pseudozobellia thermophila

rodaerobic

Kingdom

Pseudomonadati

Phylum

Bacteroidota

Class

Flavobacteriia

Order

Flavobacteriales

Family

Flavobacteriaceae

Genus

Pseudozobellia

Description

Pseudozobellia thermophila is a Gram-negative, rod-shaped bacterium characterized by its aerobic metabolism and non-spore-forming nature. This microorganism is optimally adapted to thrive at a temperature of 25.0°C, indicating a preference for moderate thermal environments. Its Gram-negative status suggests the presence of a thin peptidoglycan layer surrounded by an outer membrane, which is typical for this group of bacteria and may influence its interactions with the surrounding environment. As an aerobic organism, Pseudozobellia thermophila requires oxygen for growth and metabolism, which may limit its habitat to well-oxygenated niches. The combination of its morphological traits and growth conditions suggests that this bacterium could play a significant role in the microbial ecology of environments where these conditions prevail, such as in marine or freshwater ecosystems where organic matter decomposition occurs. The absence of sporulation indicates that Pseudozobellia thermophila relies on alternative survival strategies in response to environmental stressors. This may include the ability to rapidly adapt to changes in nutrient availability or fluctuations in oxygen levels. Understanding the metabolic pathways and ecological roles of Pseudozobellia thermophila can provide insights into its potential contributions to biogeochemical cycles, particularly in oxygen-rich environments where it may participate in the degradation of organic substrates.

Taxonomy

KingdomPseudomonadati
PhylumBacteroidota
ClassFlavobacteriia
OrderFlavobacteriales
FamilyFlavobacteriaceae
GenusPseudozobellia
SpeciesPseudozobellia thermophila
StrainNo strain

Profile

Physiology
Gram staining propertiesGram-negative
Shaperod
Mobilitymotile
Flagellar presenceNot Available
Number of membranesNot Available
Ecology, Host, and Life Cycle
Oxygen requirementsaerobic
Optimal temperature25
Temperature rangemesophilic
HabitatNot Available
Biotic relationshipNot Available
Host(s)Not Available
Cell arrangementNot Available
Sporulationnon-spore-forming
Energy sourceNot Available
PathogenicityNot Available

Genome Summary

Pseudozobellia thermophila strain DSM 19858 genome assembly,

Gene Summary

Adenine Count

1326377 bp

Thymine Count

1335592 bp

Guanine Count

1186892 bp

Cytosine Count

1181715 bp

Genome Length

5036817 bp

Protein-coding Genes

4176 genes

Non-Coding Genes

54 genes

# of Chromosomes/Plasmids

1

Genes

NameLocus TagUniProt IDStrand OrientationGene Start/EndProtein Molecular Weight
hypothetical proteinSAMN04488513_10982Not AvailablePositive4259549 - 425997416298.9
uncharacterized conserved protein ybjt, contains nad(p)-binding and duf2867 domainsSAMN04488513_10983Not AvailablePositive4259999 - 426142654289.3
glycine betaine transporterSAMN04488513_10984Not AvailablePositive4261476 - 426295454710.8
thymidylate synthaseSAMN04488513_10985Not AvailablePositive4263148 - 426397231430.5
methane oxygenase pmoaSAMN04488513_10986Not AvailableNegative4264042 - 426510939505.8
protein of unknown functionSAMN04488513_10987Not AvailableNegative4265193 - 426581923518.5
ergothioneine biosynthesis protein egtbSAMN04488513_10988Not AvailablePositive4265946 - 426710645803.7
dimethylhistidine n-methyltransferaseSAMN04488513_10989Not AvailablePositive4267144 - 426812137132.3
nucleotidyltransferaseSAMN04488513_10990Not AvailablePositive4268176 - 426845710599.5
glycogen recognition site of amp-activated protein kinaseSAMN04488513_10991Not AvailableNegative4268555 - 426885411026.2

Displaying genes 3521 – 3530 of 4230 in total

Pathways

0 pathways

No pathways found

No metabolic pathways have been associated with this bacterium yet.

Metabolites

0 records
Metabolite IDMetabolite nameStructureCAS number
No metabolites foundTry different search terms or mass values.

Displaying 0 metabolites

Health Effects

No health effects information available for this bacterium.