Dyella marensis

rodaerobic

Kingdom

Pseudomonadati

Phylum

Pseudomonadota

Class

Gammaproteobacteria

Order

Lysobacterales

Family

Rhodanobacteraceae

Genus

Dyella

Description

Dyella marensis is a Gram-negative, rod-shaped bacterium that exhibits an aerobic metabolism, thriving optimally at a temperature of 32.0°C. This species belongs to the broader class of bacteria characterized by their rod-like morphology and oxygen-dependent respiration, which suggests a potential adaptability to environments with sufficient oxygen availability. The Gram-negative nature of Dyella marensis indicates the presence of a thin peptidoglycan layer surrounded by an outer membrane, a feature that typically confers resistance to certain antibiotics and influences its interaction with the surrounding environment. The optimal growth temperature of 32.0°C suggests that Dyella marensis may inhabit moderate thermal niches, which could include various aquatic environments or soils where temperatures remain stable. Given its aerobic requirement, Dyella marensis likely plays a role in biogeochemical cycles, particularly those involving carbon and nitrogen, as aerobic bacteria are essential for the degradation of organic matter and nutrient cycling in ecosystems. This bacterium's metabolic characteristics may also suggest potential applications in bioremediation strategies, where aerobic microorganisms are employed to degrade pollutants in oxygen-rich environments. Thus, Dyella marensis exemplifies a group of microorganisms that contribute significantly to ecosystem dynamics and nutrient recycling processes in their respective habitats.

Taxonomy

KingdomPseudomonadati
PhylumPseudomonadota
ClassGammaproteobacteria
OrderLysobacterales
FamilyRhodanobacteraceae
GenusDyella
SpeciesDyella marensis
StrainNo strain

Profile

Physiology
Gram staining propertiesGram-negative
Shaperod
MobilityNot Available
Flagellar presenceNot Available
Number of membranesNot Available
Ecology, Host, and Life Cycle
Oxygen requirementsaerobic
Optimal temperature32
Temperature rangemesophilic
HabitatNot Available
Biotic relationshipNot Available
Host(s)Not Available
Cell arrangementNot Available
SporulationNot Available
Energy sourceNot Available
PathogenicityNot Available

Genome Summary

Dyella marensis strain UNC178MFTsu3.1 genome assembly, contig:

Gene Summary

Adenine Count

817704 bp

Thymine Count

823699 bp

Guanine Count

1687148 bp

Cytosine Count

1676076 bp

Genome Length

5005584 bp

Protein-coding Genes

4271 genes

Non-Coding Genes

121 genes

# of Chromosomes/Plasmids

1

Genes

NameLocus TagUniProt IDStrand OrientationGene Start/EndProtein Molecular Weight
arac-type dna-binding proteinSAMN02799615_02056Not AvailableNegative2288777 - 228968834015.1
two-component system, ompr family, kdp operon response regulator kdpeSAMN02799615_02057Not AvailableNegative2290810 - 229150525836.3
two-component system, ompr family, sensor histidine kinase kdpdSAMN02799615_02058Not AvailableNegative2291505 - 229415996562.0
k+-transporting atpase atpase c chainSAMN02799615_02059Not AvailableNegative2294382 - 229496020026.3
putative beta-barrel porin-2, ompl-like. bbp2SAMN02799615_02060Not AvailableNegative2294971 - 229643754893.5
hypothetical proteinSAMN02799615_02061Not AvailableNegative2296500 - 22966916658.75
k+-transporting atpase atpase b chainSAMN02799615_02062Not AvailableNegative2296717 - 229878973161.9
k+-transporting atpase atpase a chainSAMN02799615_02063Not AvailableNegative2298810 - 230061263048.7
uncharacterized conserved protein ybap, trab familySAMN02799615_02064Not AvailablePositive2301039 - 230206736653.3
23s rrna pseudouridine2457 synthaseSAMN02799615_02065Not AvailableNegative2302107 - 230264019746.8

Displaying genes 2091 – 2100 of 4392 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.