Teredinibacter turnerae T7901

Gram-negativeRodMotileAerobe

Kingdom

Pseudomonadati

Phylum

Pseudomonadota

Class

Gammaproteobacteria

Order

Cellvibrionales

Family

Cellvibrionaceae

Genus

Teredinibacter

Description

Teredinibacter turnerae (strain ATCC 39867 / T7901) is a cellulolytic and diazotrophic Gram-negative bacterium isolated from the gills of woodboring marine bivalves Bankia gouldi of the family Teredinidae (shipworms). This species are shown to coexist with other as yet uncultivated bacteria as a component of an intracellular endosymbiotic bacterial consortium within specialized cells (bacteriocytes) of the gill epithelium. It displays an unusual combination of properties, being the only aerobic bacterium known to grow with cellulose and dinitrogen, respectively, as its sole carbon and nitrogen sources. The cellulolytic and diazotrophic capabilities of T. turnerae suggested two potential roles for this bacterium in the shipworm symbiosis. The first is to produce enzymes that may assist the host in degrading carbohydrate components of woody plant materials (cellulose, hemicellulose, and pectin). Shipworms are the only marine animals known to grow and reproduce normally with wood as their sole source of particulate food. The second is to provide a source of fixed nitrogen to supplement the host's nitrogen deficient diet of wood. T. turnerae genome is notable for containing an unusually large number of protein domains involved in the degradation of complex polysaccharides, including glycoside hydrolases (GH), carbohydrate esterases (CE), pectin lyases (PL), and carbohydrate binding modules (CBM). However, in contrast to S. degradans, which is a generalist capable of degrading more than 10 types of plant, algal, animal and fungal polysaccharides, the T. turnerae genome lacks enzyme systems for degradation of common marine polysaccharides including agar, alginate, and fucoidan and has only comparatively sparse representation of chitinase (two vs. seven in S. degradans) and laminarinase (six vs. ten in S. degradans) genes. Enzymes for degradation of the fungal polysaccharide pullulan are also absent in T. turnerae. Instead, the gene content of the T. turnerae genome suggests a high degree of specialization for degrading polysaccharides associated with woody plant materials, including cellulose, xylan, mannan, galactorhamnan and pectin. The genome of T. turnerae revealed a complete set of nitrogen fixation genes (nif) organized in three main clusters. The first cluster contains nitrogenase accessory and regulatory genes including nifQ, nifBAL, and the electron transport complex genes rnfABCDGE. The second cluster contains the structural nitrogenase genes encoded by the nifHDKT operon. The third cluster contains genes nifENX whose gene products function to synthesize nitrogenase molydenum-iron cofactors, as well as nifUSVPWZM whose gene products also function in nitrogen fixation. In addition to genes involved in nitrogen fixation, about 40 genes in the genome of T. turnerae are predicted to function in nitrogen assimilation. The majority of these are dedicated to urea metabolism and transport. The genome of T. turnerae is also of interest as an example of the range of adaptations associated with intracellular endosymbionts of eukaryotes. A characteristic suite of genomic modifications, including reduced genome size, skewed %G+C, elevated mutation rates and loss of genes of core metabolism, are identified through analysis of genomes of a number of obligate intracellular symbionts. However, this is not the case for T. turnerae, which stands as an example of a bacterium that is observed in nature only as an endosymbiont, but that can be cultivated in vitro in a simple defined medium without added vitamins or growth factors. (Adaptated from PMID:19568419). (HAMAP: TERTT)

Taxonomy

KingdomPseudomonadati
PhylumPseudomonadota
ClassGammaproteobacteria
OrderCellvibrionales
FamilyCellvibrionaceae
GenusTeredinibacter
SpeciesTeredinibacter turnerae
StrainT7901

Profile

Physiology
Gram staining propertiesNegative
ShapeRod
MobilityYes
Flagellar presenceYes
Number of membranes2
Image of Teredinibacter turnerae T7901
Ecology, Host, and Life Cycle
Oxygen requirementsAerobe
Optimal temperature32
Temperature rangeMesophilic
HabitatHostAssociated
Biotic relationshipSymbiotic
Host(s)Lyrodus pedicellatus
Cell arrangementNot Available
SporulationNot Available
Energy sourceChemoheterotroph
PathogenicityNo

Genome Summary

Teredinibacter turnerae T7901

Accession NumberNC_012997.1

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

4085 genes

Non-Coding Genes

60 genes

# of Chromosomes/Plasmids

1

Genes

NameLocus TagUniProtStrandCoordinatesMolecular Weight
AttlNot AvailableNot Available+1474083 - 1474094Not Available
Site-specific recombinaseTERTU_RS06310Not Available-1474364 - 147534136502.9
Repressor protein cTERTU_RS06315Not Available-1475464 - 147583514244.7
Rha family transcriptional regulatorTERTU_RS06320Not Available+1475940 - 14761437560.33
Hypothetical proteinTERTU_RS06335Not Available+1476663 - 147828861224.8
hypothetical proteinTERTU_RS06340Not Available+1478453 - 147886614513.0
hypothetical proteinTERTU_RS06345Not Available+1478854 - 147928515537.2
Structural protein p9TERTU_RS06350Not Available+1479272 - 147992224383.0
hypothetical proteinTERTU_RS21960Not Available+1480071 - 14802445934.37
Major capsid protein p2TERTU_RS06355Not Available+1480254 - 148107530095.9

Displaying genes 1 – 10 of 4145 in total

Pathways

0 pathways

No pathways found

No metabolic pathways have been associated with this bacterium yet.

Metabolites

55 records
Metabolite IDMetabolite nameStructureCAS number
BASm0000237(R)-4'-phosphopantothenateC9H18NO8PChemical structure of (R)-4'-phosphopantothenateNot available
Average299.2149Da
Monoisotopic299.0770031Da
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
BASm0001779orotateC5H3N2O4Chemical structure of orotateNot available
Average155.09Da
Monoisotopic155.0098302Da
BASm0001865diphosphateHO7P2Chemical structure of diphosphateNot available
Average174.95Da
Monoisotopic174.9213971Da
BASm0001921(S)-3-methyl-2-oxopentanoateC6H9O3Chemical structure of (S)-3-methyl-2-oxopentanoate1460-34-0
Average129.1339Da
Monoisotopic129.0551692Da
BASm00021577-cyano-7-deazaguanineC7H5N5OChemical structure of 7-cyano-7-deazaguanineNot available
Average175.1475Da
Monoisotopic175.0494098Da
BASm0002243S-methyl-5'-thioinosineC11H14N4O4SChemical structure of S-methyl-5'-thioinosineNot available
Average298.32Da
Monoisotopic298.0735761Da
BASm0002305(S)-2-ethyl-2-hydroxy-3-oxobutanoateC6H9O4Chemical structure of (S)-2-ethyl-2-hydroxy-3-oxobutanoateNot available
Average145.135Da
Monoisotopic145.0506324Da
BASm0002307(2R,3R)-2,3-dihydroxy-3-methylpentanoateC6H11O4Chemical structure of (2R,3R)-2,3-dihydroxy-3-methylpentanoateNot available
Average147.1491Da
Monoisotopic147.06573384Da

Displaying 1–10 of 55 metabolites