Cellulosimicrobium cellulans J1

Kingdom

Bacillati

Phylum

Actinomycetota

Class

Actinomycetes

Order

Micrococcales

Family

Promicromonosporaceae

Genus

Cellulosimicrobium

Description

Cellulosimicrobium cellulans J1 is a mesophilic bacterium characterized by its optimal growth at moderate temperatures. This organism has been cataloged with a single replicon, indicating a streamlined genetic architecture that may contribute to its adaptability and efficiency in its ecological niche. The strain is documented under the accession number FXAA00000000.1, which serves as a reference for researchers seeking genomic information or further classification. As a member of the genus Cellulosimicrobium, C. cellulans J1 is known for its capability to degrade cellulose, an essential trait that allows it to play a significant role in the breakdown of plant material in various ecosystems. This cellulose-degrading ability not only aids in nutrient cycling but also contributes to the overall health of soil microbiomes and the decomposition process in natural environments. The mesophilic nature of C. cellulans J1 suggests that it thrives in conditions typical of soil and compost environments, where temperatures are generally moderate. This characteristic positions it well within terrestrial ecosystems, where organic matter decomposition is crucial for maintaining soil fertility and supporting plant growth. In summary, Cellulosimicrobium cellulans J1 exemplifies a key microbial player in the decomposition of cellulose in mesophilic environments, highlighting its ecological importance in nutrient cycling and ecosystem dynamics.

Taxonomy

KingdomBacillati
PhylumActinomycetota
ClassActinomycetes
OrderMicrococcales
FamilyPromicromonosporaceae
GenusCellulosimicrobium
SpeciesCellulosimicrobium cellulans
StrainJ1

Profile

Physiology
Gram staining propertiesNot Available
ShapeNot Available
MobilityNot Available
Flagellar presenceNot Available
Number of membranesNot Available
Ecology, Host, and Life Cycle
Oxygen requirementsNot Available
Optimal temperatureNot Available
Temperature rangemesophilic
HabitatNot Available
Biotic relationshipNot Available
Host(s)Not Available
Cell arrangementNot Available
SporulationNot Available
Energy sourceNot Available
PathogenicityNot Available

Genome Summary

Cellulosimicrobium cellulans J1 genome assembly, contig:

Gene Summary

Adenine Count

537697 bp

Thymine Count

537419 bp

Guanine Count

1586289 bp

Cytosine Count

1587416 bp

Genome Length

4249926 bp

Protein-coding Genes

3747 genes

Non-Coding Genes

58 genes

# of Chromosomes/Plasmids

1

Genes

NameLocus TagUniProt IDStrand OrientationGene Start/EndProtein Molecular Weight
siderophore synthetase componentSAMN02744115_01021Not AvailableNegative1151224 - 115365987204.8
lysine n6-hydroxylaseSAMN02744115_01022Not AvailableNegative1153656 - 115512253109.8
l-2,4-diaminobutyrate decarboxylaseSAMN02744115_01023Not AvailableNegative1155119 - 115670255191.5
thioredoxin reductase (nadph)SAMN02744115_01024Not AvailablePositive1156890 - 115856659943.9
cyclic nucleotide-binding domain-containing proteinSAMN02744115_01025Not AvailablePositive1158621 - 116013855278.3
hypothetical proteinSAMN02744115_01026Not AvailablePositive1160156 - 116046410801.1
5-methylcytosine-specific restriction endonuclease mcraSAMN02744115_01027Not AvailablePositive1160755 - 116122817754.4
predicted extracellular nucleaseSAMN02744115_01028Not AvailablePositive1161405 - 116254140787.4
rna polymerase sigma-70 factor, ecf subfamilySAMN02744115_01029Not AvailableNegative1162600 - 116294111440.6
rna polymerase sigma-70 factor, ecf subfamilySAMN02744115_01030Not AvailableNegative1163060 - 116394732454.7

Displaying genes 1021 – 1030 of 3805 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.