Gene PSPTO_3035 details

Gene Information       Plasmid Coverage information       Fosmid Coverage information       Sequence       

Gene Information

Locus tagPSPTO_3035 
Symbolpgm 
ID1184692 
TypeCDS 
Is gene splicedNo 
Is pseudo geneNo 
Organism namePseudomonas syringae pv. tomato str. DC3000 
KingdomBacteria 
Replicon accessionNC_004578 
Strand
Start bp3411577 
End bp3413223 
Gene Length1647 bp 
Protein Length548 aa 
Translation table11 
GC content61% 
IMG OID637394396 
Productphosphoglucomutase, alpha-D-glucose phosphate-specific 
Protein accessionNP_792830 
Protein GI28870211 
COG category[G] Carbohydrate transport and metabolism 
COG ID[COG0033] Phosphoglucomutase 
TIGRFAM ID[TIGR01132] phosphoglucomutase, alpha-D-glucose phosphate-specific 


Plasmid Coverage information

Num covering plasmid clones
Plasmid unclonability p-value0.0367886 
Plasmid hitchhikingNo 
Plasmid clonabilitynormal 
 

Fosmid Coverage information

Num covering fosmid clonesn/a 
Fosmid unclonability p-valuen/a 
Fosmid Hitchhikern/a 
Fosmid clonabilityn/a 
 

Sequence

Gene sequence
ATGAGTCTCA GTCCTTTCGC CGGCAAGCTG GCACCTGCGC AGTTACTGGT AGATATTCCG 
AGACTGGTCA CCGCTTATTA CACCGGCCAG CCTGATGCAT CAGTGCCGAC CCAGCGCGTT
GCCTTCGGCA CTTCCGGGCA TCGCGGCACC TCGTTCGAGC TGGGCTTCAA CGAATGGCAC
GTGCTGGCTA TCAGCCAGGC CATCTGTCTG TACCGCAAGG CCAACGGCAT CGACGGCCCG
TTGTTTCTGG GTGCTGACAC CCATGCGCTG TCCACGCCAG CCGCTGCCAC CGCGCTTGAA
GTGCTGGCTG CCAATGGCGT GCAGGTGATG ATCTCCGAAG GTGACGAGTA CACGCCAACG
CCTGCGGTGT CTCACGCGAT CATCTGTTAC AACCGTGGCC GCACGTCCGG GCTGGCTGAC
GGCATCGTCA TTACCCCGTC GCACAACCCG CCGCAAAGCG GTGGCTTCAA GTACAACCCG
CCCAACGGCG GCCCGGCCGA CAGCGATATC ACCAAGTGGA TCGAGAACAA GGCCAACGAA
CTGCTGGCCG ATAAGGTCGT CGGCGTTTCG CGCATCAGCC ATGAAAAAGC CTTGCGTGCC
GACACCACGC ACCGCCATGA CTACGTCAAT AGCTACGTCG CTGACCTGAA GAACGTCATC
GATCTGGACG CCATCCGCGA TTCAGGTTTG CGTCTGGGTG TCGATCCGCT GGGCGGGGCA
GGGGTCAATT ACTGGTCGGC GATCGGCGAG CATTACGGCC TGAATCTGGA TGTGGTCAAC
AAATTTGTCG ACCCCACGTT CCGTTTCATG ACCGTTGACT GGGACGGCCA GATCCGTATG
GATCCTTCCT CCAGCCACGC GATGCAGAGC CTGATCGGCC TCAAGGATCG TTATCAGGTG
GCGTTTGCCT GTGACCCGGA CCACGACCGT CACGGTATCG TCACCCCGAC CGGCGGTTTG
ATGACGCCCA ACAGCTACCT CGCCGTGTCC ATCGACTATC TGTTTCAGAA CCGCCCTGAC
TGGCGCGCTG ATGCCGCGGT CGGCAAGACC GTGGTCAGCA GCGGCATGAT TGACCGTGTG
GCCGCACGTC TGGGCCGACG CCTGTACGAA GTACCGGTCG GCTTCAAGTA CTTCGCTCAG
GGGCTGTTCG AGGGTTCGCT GGGCTTCGGC GGTGAAGAAA GTGCCGGTGC TTCGTTCCTG
CGTCGCGATG GTTCGGTGTG GACCACCGAC AAGGACGGCC TGATTCCGGC ATTGCTGGCG
GCAGAAATGA CCGCACGCAC CGGTCGCGAC CCGAGCCAGA TCTACAAGAC CATGATCGAT
GAGCTTGGCG AGCCGTTCTC GACCCGCGTC GATGCCAAGG CCAACCCGCA GCAGAAGGCG
CTGCTGAGCA AGCTGTCGCC AGAGCAGGTC ACGTCCACCG AATTGGCCGG CGAGCCGATC
CAGCAGGTGC TCAGCAATGC GCCGGGCAAT GACCAGGCGT TCGGCGGCGT GAAAGTCATG
ACCGAAAACG GCTGGTTTGC AGCGCGCCCG TCGGGCACTG AGGACATCTA CAAGATCTAC
GCCGAAAGCT TTGTCAGCGA AGATCACCTC AAGCGCCTGG TGGCAGAGGC TCAGGTATTG
GTGGACGGGG CGATTTCGCC GAAGTAA
 
Protein sequence
MSLSPFAGKL APAQLLVDIP RLVTAYYTGQ PDASVPTQRV AFGTSGHRGT SFELGFNEWH 
VLAISQAICL YRKANGIDGP LFLGADTHAL STPAAATALE VLAANGVQVM ISEGDEYTPT
PAVSHAIICY NRGRTSGLAD GIVITPSHNP PQSGGFKYNP PNGGPADSDI TKWIENKANE
LLADKVVGVS RISHEKALRA DTTHRHDYVN SYVADLKNVI DLDAIRDSGL RLGVDPLGGA
GVNYWSAIGE HYGLNLDVVN KFVDPTFRFM TVDWDGQIRM DPSSSHAMQS LIGLKDRYQV
AFACDPDHDR HGIVTPTGGL MTPNSYLAVS IDYLFQNRPD WRADAAVGKT VVSSGMIDRV
AARLGRRLYE VPVGFKYFAQ GLFEGSLGFG GEESAGASFL RRDGSVWTTD KDGLIPALLA
AEMTARTGRD PSQIYKTMID ELGEPFSTRV DAKANPQQKA LLSKLSPEQV TSTELAGEPI
QQVLSNAPGN DQAFGGVKVM TENGWFAARP SGTEDIYKIY AESFVSEDHL KRLVAEAQVL
VDGAISPK