Synechococcus sp. CC9605

Gram-negativeCocciNon-motileFacultative

Kingdom

Bacillati

Phylum

Cyanobacteriota

Class

Cyanophyceae

Order

Synechococcales

Family

Synechococcaceae

Genus

Synechococcus

Description

Marine unicellular cyanobacteria of the synechococcus group occupy an important position at the base of the marine food chain. They are abundant in the world's oceans and as a result are one of the most numerous genomes on earth. They have the ability to acquire major nutrients and trace metals from the submicromolar concentrations found in the oligotrophic open seas and their light-harvesting apparatus is uniquely adapted to the spectral quality of light in the ocean.A third of the open ocean isolates of synechococcus possess a unique type of swimming motility not seen in any other type of microorganism, they propel themselves through seawater at speeds of up to 25 mm/sec despite their lack of external propelling devices. They do not use their motility to respond to light gradients, but instead to respond to extremely small gradients of nitrogenous compounds.Synechococcus sp. strain WH8102 is a motile strain that can be grown in both natural and artificial seawater liquid media as well as on plates and is amenable to biochemical and genetic manipulation. The availability of the complete sequence of the genome of synechococcus WH8102 will provide insights not only into the unique adaptations of this cyanobacterial group to the marine environment, including mechanisms of nutrient and metal transport, chemotaxis, motility, and viral interactions but also into what factors might be ultimately important in controlling primary productivity in the oceans.Marine synechococcus spp. coexist with the other abundant unicellular marine cyanobacterial group, prochlorococcus . A major difference between the synechococcus and prochlorococcus groups lies in their light-harvesting apparatus, with synechococcus utilizing chlorophyll A, and prochlorococcus relying on divinyl chlorophylls A and B. A comparative analysis of their genomes should allow insights not only into the evolution of light-harvesting complexes, but also into cyanobacterial diversification in the oceans, including adaptations to different marine niches.Marine unicellular cyanobacteria are responsible for an estimated 20-40% of chlorophyll biomass and carbon fixation in the oceans.(From http://www.ebi.ac.uk/2can/genomes/bacteria.html) (BacMap)

Taxonomy

KingdomBacillati
PhylumCyanobacteriota
ClassCyanophyceae
OrderSynechococcales
FamilySynechococcaceae
GenusSynechococcus
SpeciesSynechococcus sp. CC9605
StrainCC9605

Profile

Physiology
Gram staining propertiesNegative
ShapeCocci
MobilityNo
Flagellar presenceYes
Number of membranes2
Image of Synechococcus sp. CC9605
Ecology, Host, and Life Cycle
Oxygen requirementsFacultative
Optimal temperatureNot Available
Temperature rangeMesophilic
HabitatAquatic
Biotic relationshipFree living
Host(s)Not Available
Cell arrangementSingles
SporulationNot Available
Energy sourcePhotosynthetic - Photoautotroph
PathogenicityNo

Genome Summary

Synechococcus sp. CC9605

Accession NumberNC_007516.1

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

2792 genes

Non-Coding Genes

55 genes

# of Chromosomes/Plasmids

1

Genes

NameLocus TagUniProtStrandCoordinatesMolecular Weight
dna polymerase iii subunit betaSYNCC9605_RS00015Not Available+231 - 138841167.9
hypothetical proteinSYNCC9605_RS00020Not Available+1390 - 214528516.5
phosphoribosylformylglycinamidine synthase subunit purlSYNCC9605_RS00025Not Available+2186 - 449280335.7
amidophosphoribosyltransferaseSYNCC9605_RS00030Not Available+4554 - 601154124.4
dna gyrase/topoisomerase iv subunit aSYNCC9605_RS00035Not Available-6019 - 848790039.3
tetratricopeptide repeat proteinSYNCC9605_RS00040Not Available-8533 - 939631816.2
trna epoxyqueuosine(34) reductase quegSYNCC9605_RS00045Not Available-9434 - 1039936456.4
hpsj family proteinSYNCC9605_RS00050Not Available+10436 - 1108322721.9
duf502 domain-containing proteinSYNCC9605_RS00055Not Available+11134 - 1186826803.0
transcription antitermination factor nusbSYNCC9605_RS00060Not Available+11872 - 1250723578.1

Displaying genes 1 – 10 of 2847 in total

Pathways

0 pathways

No pathways found

No metabolic pathways have been associated with this bacterium yet.

Metabolites

66 records
Metabolite IDMetabolite nameStructureCAS number
BASm00002512-dehydropantoateC6H9O4Chemical structure of 2-dehydropantoateNot available
Average145.1333Da
Monoisotopic145.050083776Da
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
BASm00007164-methylsulfanyl-2-oxobutanoateC5H7O3SChemical structure of 4-methylsulfanyl-2-oxobutanoateNot available
Average147.17Da
Monoisotopic147.012138839Da
BASm0001717fumarateC4H2O4Chemical structure of fumarateNot available
Average114.0563Da
Monoisotopic113.9953086Da
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
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 66 metabolites