Pseudomonas sp. ENNP23

Kingdom

Pseudomonadati

Phylum

Pseudomonadota

Class

Gammaproteobacteria

Order

Pseudomonadales

Family

Pseudomonadaceae

Genus

Pseudomonas

Description

Pseudomonas sp. ENNP23 is characterized by having a single replicon, indicating a streamlined genetic structure typical of many Pseudomonas species. This trait may contribute to its adaptability and efficiency in various environments. The organism is cataloged under the accession number LYSP00000000.1, which serves as a unique identifier for its genomic data. Pseudomonas species are known for their metabolic versatility, which allows them to thrive in diverse ecological niches, including soil, water, and plant surfaces. While specific metabolic capabilities of Pseudomonas sp. ENNP23 are not detailed in the provided traits, the general adaptability of the genus suggests it may possess a range of functions that enable it to utilize different carbon sources and survive under varying environmental conditions. The presence of a single replicon can also suggest a streamlined genome, which could enhance the organism's ability to adapt to fluctuating environments by allowing for more efficient regulation of gene expression. This adaptability is crucial for survival in competitive ecosystems where resources may be limited. In summary, Pseudomonas sp. ENNP23, with its single replicon and the potential for metabolic versatility, likely plays a significant role in its ecological niche, possibly contributing to nutrient cycling and interactions within microbial communities. Understanding its genetic and metabolic potential can provide insights into its ecological functions and applications in bioremediation or agriculture.

Taxonomy

KingdomPseudomonadati
PhylumPseudomonadota
ClassGammaproteobacteria
OrderPseudomonadales
FamilyPseudomonadaceae
GenusPseudomonas
SpeciesPseudomonas sp. ENNP23
StrainNo strain

Profile

Physiology
Gram staining propertiesNot Available
ShapeNot Available
MobilityNot Available
Flagellar presenceNot Available
Number of membranesNot Available
Image of Pseudomonas sp. ENNP23
Image source: Wikipedia/Wikimedia
Ecology, Host, and Life Cycle
Oxygen requirementsNot Available
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

Pseudomonas sp. ENNP23 contig00131, whole genome shotgun sequence.

Gene Summary

Adenine Count

993867 bp

Thymine Count

948774 bp

Guanine Count

1867695 bp

Cytosine Count

1961836 bp

Genome Length

5772172 bp

Protein-coding Genes

5090 genes

Non-Coding Genes

0 genes

# of Chromosomes/Plasmids

1

Genes

NameLocus TagUniProt IDStrand OrientationGene Start/EndProtein Molecular Weight
glycosyl transferaseA9G05_24690Not AvailablePositive5412187 - 541311935307.0
histidine ammonia-lyaseA9G05_24695Not AvailablePositive5413100 - 541464155941.3
thioesteraseA9G05_24700Not AvailablePositive5414634 - 541505916231.7
hypothetical proteinA9G05_24705Not AvailablePositive5415056 - 541566422315.0
hybrid sensor histidine kinase/response regulatorA9G05_24715Not AvailableNegative5417328 - 541954180900.6
amino acid abc transporter substrate-binding proteinA9G05_24720Not AvailableNegative5419538 - 542044934367.3
dna-binding response regulatorA9G05_24725Not AvailableNegative5420452 - 542118027299.8
amino acid permeaseA9G05_24730Not AvailableNegative5421360 - 542275750156.9
hypothetical proteinA9G05_24735Not AvailableNegative5422812 - 542422151775.1
helix-turn-helix transcriptional regulatorA9G05_24740Not AvailablePositive5424371 - 542517729799.8

Displaying genes 4821 – 4830 of 5090 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.