Thermoplasma acidophilum DSM 1728

RodNon-motileFacultative anaerobe

Kingdom

Methanobacteriati

Phylum

Thermoplasmatota

Class

Thermoplasmata

Order

Thermoplasmatales

Family

Thermoplasmataceae

Genus

Thermoplasma

Description

A thermoacidophilic archaeon, Thermoplasma is a fascinating microorganism whose study can give new insight into how extremophiles can live in such conditions missing some of the generic cell structure that other thermophilic's have. Protease and chaperone assemblies from Thermoplasma have helped illuminate the structure and function of their more complex eukaryotic homologues.The T. acidophilum genome consists of a single circular chromosome of 1,564,906 bp. No plasmids were detected through biochemical methods or DNA sequencing, but a 15.2kbp has previously been reported in other isolates. The genome for T. volcanium is composed of 1,584,804 bp. There has been apparent lateral gene transfer between T. acidophilum and Sulfolobus solfataricus mainly including protein degradation pathways and various transport proteins. These two microorganisms are phylogenetically distant with S. sulfolobus being a crenarchaeon, but they do share the same living environment. While Thermoplasma may share around 252 open reading frames (17%) with Sulfolobus, but surprisingly, no homologues of the genes that mediate sulphur respiration in Archaeoglobus (a fellow archaeon) were found. Instead, homologues of genes that mediate dissimilatory sulphur reduction in Salmonella typhimurium were present. Thermoplasma also contain proteins not present in other archaeal genome including Hta, an archaeal DNA-binding protein that is closely related to bacterial proteins and appear to substitute functionally for the missing histones.Thermoplasma live in extreme environments without a protective outer layer (S-layer, cell wall) and survive with only a plasma membrane. Not to mention they retain a near neutral cytoplasm. They have flagella and are motile, although it is unclear what structure can function as the stator for flagellar rotation. Thermoplasma can metabolize like Sulfolobus through glucose degradation which eventually leads to the TCA cycle. Thermoplasma contain several respiratory chain proteins such as electron transfer flavoproteins and cytochrome b homologues. They are also able to gain energy anaerobically, however, by sulfur respiration.Environments that have characteristics including a pH level between 0.5 - 4.0 with temperatures ranging from 55-60oC are where you can find Thermophiles. Optimum growth conditions are about pH 2 and 60oC. Strands have been isolated from self-heating coal refuse piles and solfatara fields. (From http://microbewiki.kenyon.edu/index.php/Thermoplasma) (MicrobeWiki: Thermoplasma)

Taxonomy

KingdomMethanobacteriati
PhylumThermoplasmatota
ClassThermoplasmata
OrderThermoplasmatales
FamilyThermoplasmataceae
GenusThermoplasma
SpeciesThermoplasma acidophilum
StrainDSM 1728

Profile

Physiology
Gram staining propertiesNot Available
ShapeRod
MobilityNo
Flagellar presenceYes
Number of membranes1
Ecology, Host, and Life Cycle
Oxygen requirementsFacultative anaerobe
Optimal temperature59
Temperature rangeThermophilic
HabitatSpecialized
Biotic relationshipFree living
Host(s)Not Available
Cell arrangementNot Available
SporulationNonsporulating
Energy sourceNot Available
PathogenicityNo

Genome Summary

Thermoplasma acidophilum DSM 1728

Accession NumberNC_002578.1

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

Not Available

Non-Coding Genes

Not Available

# of Chromosomes/Plasmids

1

Genes

NameLocus TagUniProtStrandCoordinatesMolecular Weight
glycine cleavage system aminomethyltransferase gcvtTA_RS00055Not Available+9573 - 1065240223.9
nad-dependent epimerase/dehydratase family proteinTA_RS00060Not Available-10713 - 1165134719.9
superoxide dismutaseTA_RS00065Not Available+12098 - 1271523800.1
n-glycosylase/dna lyaseTA_RS00070Not Available+12723 - 1333723691.4
dmt family transporterTA_RS00075Not Available-13330 - 1421732720.1
class i sam-dependent methyltransferaseTA_RS00080Not Available-14252 - 1482721794.2
Trna-leuNot AvailableNot Available+15028 - 15112Not Available
inorganic phosphate transporterTA_RS00090Not Available-15264 - 1615732050.1
duf47 family proteinTA_RS00095Not Available-16157 - 1683726012.1
marc family proteinTA_RS00100Not Available+16973 - 1761422981.9

Displaying genes 11 – 20 of 1602 in total

Pathways

0 pathways

No pathways found

No metabolic pathways have been associated with this bacterium yet.

Metabolites

64 records
Metabolite IDMetabolite nameStructureCAS number
BASm0000217alpha-ribazoleC14H18N2O4Chemical structure of alpha-ribazoleNot available
Average278.3037Da
Monoisotopic278.126657074Da
BASm0000377(S)-malateC4H4O5Chemical structure of (S)-malateNot available
Average132.0716Da
Monoisotopic132.005873238Da
BASm0000387(6R)-5,10-methylene-5,6,7,8-tetrahydrofolateC20H21N7O6Chemical structure of (6R)-5,10-methylene-5,6,7,8-tetrahydrofolateNot available
Average455.432Da
Monoisotopic455.1564286Da
BASm0000468D-galactono-1,5-lactoneC6H10O6Chemical structure of D-galactono-1,5-lactoneNot available
Average178.14Da
Monoisotopic178.047738052Da
BASm0001130L-rhamnono-1,4-lactoneC6H10O5Chemical structure of L-rhamnono-1,4-lactoneNot available
Average162.141Da
Monoisotopic162.052823422Da
BASm0001779orotateC5H3N2O4Chemical structure of orotateNot available
Average155.09Da
Monoisotopic155.0098302Da
BASm0001845nicotinateC6H4NO2Chemical structure of nicotinateNot available
Average122.1015Da
Monoisotopic122.0242034Da
BASm0001865diphosphateHO7P2Chemical structure of diphosphateNot available
Average174.95Da
Monoisotopic174.9213971Da
BASm0001988(R)-mevalonateC6H11O4Chemical structure of (R)-mevalonateNot available
Average147.1491Da
Monoisotopic147.0657338Da
BASm00021577-cyano-7-deazaguanineC7H5N5OChemical structure of 7-cyano-7-deazaguanineNot available
Average175.1475Da
Monoisotopic175.0494098Da

Displaying 1–10 of 64 metabolites