Eubacterium ventriosum

Gram-positiveAnaerobe

Kingdom

Bacillati

Phylum

Bacillota

Class

Clostridia

Order

Eubacteriales

Family

Eubacteriaceae

Genus

Eubacterium

Description

Eubacterium ventriosum is a Gram-positive, rod-shaped microbe that thrives in a temperature range of mesophilic, typically between 25-40°C. As a chemoheterotroph, it is able to derive its energy from the oxidation of organic compounds. Specifically, it utilizes glucose as its primary energy source, which is converted into adenosine triphosphate (ATP) through cellular respiration. As a microbe that inhabits various body sites, E. ventriosum can be found in all possible species, including the human body, where it is part of the normal flora. Its ability to thrive in such a wide range of environments is due to its exceptional flexibility in terms of energy production and oxygen preference. As an aerotolerant anaerobe, E. ventriosum can survive in the presence of oxygen, but it does not require it for growth. This unique characteristic allows it to coexist with other microorganisms that thrive in oxygen-rich environments, while also being able to withstand conditions without oxygen. Its ability to produce ATP through fermentation, in addition to its oxidative phosphorylation, further underscores its versatility. Physiologically, E. ventriosum is capable of producing a range of compounds that contribute to its ecological success. It can produce acids, such as lactic acid and acetic acid, which help to maintain the pH balance of its environment. Additionally, it can produce enzymes that break down complex polymers, allowing it to access energy-rich substrates. Furthermore, studies have shown that E. ventriosum plays a crucial role in human health, particularly in the gut microbiome. Its ability to catabolize complex carbohydrates and produce short-chain fatty acids (SCFAs) contributes to the maintenance of a healthy gut. The SCFAs produced by E. ventriosum serve as an energy source for the host and can also help to regulate the immune system. In conclusion, Eubacterium ventriosum is a remarkable microbe that has adapted to thrive in a wide range of environments, from the human gut to other body sites and beyond. Its unique combination of characteristics, including its ability to survive in the presence of oxygen, produce a range of compounds, and contribute to human health, make it an important and fascinating microbe to study.

Taxonomy

KingdomBacillati
PhylumBacillota
ClassClostridia
OrderEubacteriales
FamilyEubacteriaceae
GenusEubacterium
SpeciesEubacterium ventriosum
StrainNo strain

Profile

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

Genome Summary

Eubacterium ventriosum

Accession NumberQSFO00000000.1

Gene Summary

Adenine Count

Not Available

Thymine Count

Not Available

Guanine Count

Not Available

Cytosine Count

Not Available

Genome Length

Not Available

Protein-coding Genes

2280 genes

Non-Coding Genes

91 genes

# of Chromosomes/Plasmids

1

Genes

NameLocus TagUniProtStrandCoordinatesMolecular Weight
Putative methyltransferaseDW929_07330Not Available+1592721 - 159318517988.8
hypothetical proteinDW929_07335Not Available+1593400 - 159368410721.6
hypothetical proteinDW929_07340Not Available+1593733 - 159422118975.0
Hypothetical proteinDW929_07345Not Available+1594352 - 159469313190.7
Terminase small subunitDW929_07350Not Available+1594724 - 159532022205.3
Putative terminase large subunit proteinDW929_07355Not Available+1595313 - 159670453345.4
Spp1 family portal proteinDW929_07360Not Available+1596718 - 159814854554.0
Putative head morphogenesis proteinDW929_07365Not Available+1598138 - 159978463083.6
hypothetical proteinDW929_07370Not Available+1600001 - 16001927632.15
Hypothetical proteinDW929_07375Not Available+1600256 - 160097827062.7

Displaying genes 31 – 40 of 2371 in total

Pathways

0 pathways

No pathways found

No metabolic pathways have been associated with this bacterium yet.

Metabolites

190 records
Metabolite IDMetabolite nameStructureCAS number
BASm0000237(R)-4'-phosphopantothenateC9H18NO8PChemical structure of (R)-4'-phosphopantothenateNot available
Average299.2149Da
Monoisotopic299.0770031Da
BASm00002512-dehydropantoateC6H9O4Chemical structure of 2-dehydropantoateNot available
Average145.1333Da
Monoisotopic145.050083776Da
BASm0000377(S)-malateC4H4O5Chemical structure of (S)-malateNot available
Average132.0716Da
Monoisotopic132.005873238Da
BASm0000503L-rhamnoseC6H12O5Chemical structure of L-rhamnose3615-41-6
Average164.1565Da
Monoisotopic164.0684735Da
BASm0000989GlycerolC3H8O3Chemical structure of Glycerol56-81-5
Average92.0938Da
Monoisotopic92.04734412Da
BASm0001035indole-3-pyruvateC11H8NO3Chemical structure of indole-3-pyruvate35656-49-6
Average202.1861Da
Monoisotopic202.0504181Da
BASm0001167triphosphateO10P3Chemical structure of triphosphate14127-68-5
Average252.9153Da
Monoisotopic252.8704308Da
BASm00011795-hydroxyisourateC5H4N4O4Chemical structure of 5-hydroxyisourateNot available
Average184.1097Da
Monoisotopic184.0232546Da
BASm0001661Cu(2+)CuChemical structure of Cu(2+)7440-50-8
Average63.546Da
Monoisotopic62.929601079Da
BASm00022412-demethylmenaquinone-8C50H70O2Chemical structure of 2-demethylmenaquinone-8Not available
Average703.0896Da
Monoisotopic702.5375815Da

Displaying 1–10 of 190 metabolites