Gene DvMF_2691 details

Gene Information       Plasmid Coverage information       Fosmid Coverage information       Sequence       

Gene Information

Locus tagDvMF_2691 
Symbol 
ID7174629 
TypeCDS 
Is gene splicedNo 
Is pseudo geneNo 
Organism nameDesulfovibrio vulgaris str. 'Miyazaki F' 
KingdomBacteria 
Replicon accessionNC_011769 
Strand
Start bp3404242 
End bp3405747 
Gene Length1506 bp 
Protein Length501 aa 
Translation table11 
GC content66% 
IMG OID643541223 
Productmannose-1-phosphate guanylyltransferase/mannose-6-phosphate isomerase 
Protein accessionYP_002437098 
Protein GI218887777 
COG category[G] Carbohydrate transport and metabolism
[M] Cell wall/membrane/envelope biogenesis 
COG ID[COG0662] Mannose-6-phosphate isomerase
[COG0836] Mannose-1-phosphate guanylyltransferase 
TIGRFAM ID[TIGR01479] mannose-1-phosphate guanylyltransferase/mannose-6-phosphate isomerase 


Plasmid Coverage information

Num covering plasmid clonesn/a 
Plasmid unclonability p-valuen/a 
Plasmid hitchhikingn/a 
Plasmid clonabilityn/a 
 

Fosmid Coverage information

Num covering fosmid clones63 
Fosmid unclonability p-value0.0450701 
Fosmid HitchhikerNo 
Fosmid clonabilitynormal 
 

Sequence

Gene sequence
ATGACCATAT CCCCCGCCAA CGCCGCTCCC ACCCCGCTCG ACCGCTGCCA TGCCGTCATC 
CTGGCGGGCG GGTCCGGCAC CCGGCTGTGG CCCCTTTCGC GCGCGTTGTT CCCCAAGCAG
CTGCTGGCCC TGAACGGCGA CCTTTCGCTG CTCCAGCAGA CCGTGCGCCG CGTACTCTCG
TTGTTCCCCC CCGAACGGGT GCACATCGTG ACCAACGAGG AGCACGTGTT CGAGGTGCGC
GCCCAGGCCC GTGCCCTGGA CGAACGGCTG GATACCCAGG TGCTGGCCGA GCCGGTGGGC
CGCAACACCC TGCCCGCCAT CCTGCTGGGC CTGGATGCTG CCATGAACGC TGCCACGGGC
ACCGCGGAAG CGGACGATGC CGCCCAGCCC CCCCTGCTGG CGGTGTTCCC GTCCGACCAC
CAGTTGCACG ACGAGGTCCG TTGGGGGGCC GCCGTCACGC GCGGGGCAGG CCTTGCCGCA
GAAGGATGGA CCGTCACCTT CGGGGTGCCG CCCACCACGC CGGAAACGGG CTACGGCTAC
ATCCGCCGGG GTGAACTTTT GTCAAACGCC AATGCCGCAG CGCAAGGCGC GGCCTTCGCC
GTGGACGGCT TCGTCGAAAA GCCGGACCTG GAAACCGCGC GCGGCTTTCT GCGCCAGGGC
ATGCATTTCT GGAACAGCGG CATGTTCGTG TTCAACGGCG GCGTGCTGCT GGCGGCGGTG
GAACGCTTTC AGCCAACGCT TGCCACATGG TGGACCACCC GCACGGATGC CAGCCTGGCC
CCCGGCATCC CGCTTACGCA CGGCTACTCC ACCCTGCCGT CCATATCCAT AGACTATGGC
ATCATGGAGC ACGTGGACCG CATCGCCGTG GTGGAGGCCG CCTTCGGCTG GGACGATCTG
GGCAGTTGGG AAGCGTTGTA CCGTCTGGGC GCCAAGGACG AACGCGGCTG CGTGATCCAG
GGCGACACCA TGGCGCTGGA CTGCGACGAC TGCCTGCTGC TCTCGCGCGG GGGCAAGCTG
GTGGCCATCG GACTTTCCAA CGTCATCGCC GTGCAGACCC GCGACGCCAC TCTCATCTGC
GCCAAGGACC AGGTGCAGCG GGTGAAGGAC GTGGTGGAGA AACTGAAGGC CGAAAAGAGT
CCGCTGGTGG ACGTGCACCT TACGGTGCGC CGCCCCTGGG GCAACTACAC GGTGCTCGAC
GAAGGCCCCG GGCGCAAGGT CAAGCGCATA GAGGTGAACC CCGGCGCGCG CCTGTCGCTG
CAAATGCACC ATCACCGCAG CGAGCACTGG GTGGTGGCGA AAGGTGCCGC GCTTGTGCAG
GTTGGCAACG AGGAACGCAC CCTGACCGAA AATGAATGGG TGGACATCCC GAAAGCCACC
CTTCATCGGT TAACCAATCC GGGTCGCATT CCTCTTGAAC TCATTGAAAT CCAAAGCGGT
CCGTATTTGG GCGAAGACGA CATCGTTCGC TTCGACGACG TCTACGGGCG CCGCAAGGAG
GGCTGA
 
Protein sequence
MTISPANAAP TPLDRCHAVI LAGGSGTRLW PLSRALFPKQ LLALNGDLSL LQQTVRRVLS 
LFPPERVHIV TNEEHVFEVR AQARALDERL DTQVLAEPVG RNTLPAILLG LDAAMNAATG
TAEADDAAQP PLLAVFPSDH QLHDEVRWGA AVTRGAGLAA EGWTVTFGVP PTTPETGYGY
IRRGELLSNA NAAAQGAAFA VDGFVEKPDL ETARGFLRQG MHFWNSGMFV FNGGVLLAAV
ERFQPTLATW WTTRTDASLA PGIPLTHGYS TLPSISIDYG IMEHVDRIAV VEAAFGWDDL
GSWEALYRLG AKDERGCVIQ GDTMALDCDD CLLLSRGGKL VAIGLSNVIA VQTRDATLIC
AKDQVQRVKD VVEKLKAEKS PLVDVHLTVR RPWGNYTVLD EGPGRKVKRI EVNPGARLSL
QMHHHRSEHW VVAKGAALVQ VGNEERTLTE NEWVDIPKAT LHRLTNPGRI PLELIEIQSG
PYLGEDDIVR FDDVYGRRKE G