Gene Dvul_1930 details

Gene Information       Plasmid Coverage information       Fosmid Coverage information       Sequence       

Gene Information

Locus tagDvul_1930 
Symbol 
ID4664430 
TypeCDS 
Is gene splicedNo 
Is pseudo geneNo 
Organism nameDesulfovibrio vulgaris DP4 
KingdomBacteria 
Replicon accessionNC_008751 
Strand
Start bp2248273 
End bp2250201 
Gene Length1929 bp 
Protein Length642 aa 
Translation table11 
GC content66% 
IMG OID639820171 
Productaconitate hydratase 
Protein accessionYP_967373 
Protein GI120602973 
COG category[C] Energy production and conversion 
COG ID[COG1048] Aconitase A 
TIGRFAM ID[TIGR01342] aconitate hydratase, putative, Aquifex type 


Plasmid Coverage information

Num covering plasmid clones
Plasmid unclonability p-value0.221002 
Plasmid hitchhikingNo 
Plasmid clonabilitynormal 
 

Fosmid Coverage information

Num covering fosmid clones
Fosmid unclonability p-value0.0834672 
Fosmid HitchhikerNo 
Fosmid clonabilitynormal 
 

Sequence

Gene sequence
ATGCCCCTGA ACCAGACCCA GAAGATCATC AAGGCCCATC TCGTGCACGG CGACATGGCA 
CCCGGTGCCC CCATTGCCCT GCGCATCGAC CAGACCCTCA CGCAGGACGC CACGGGGACC
ATGGCGTACC TTCAGTTCGA GGCCATGGGG GTGGACAGGG TGCGCACCGA CCTTTCGGTG
AGCTACGTCG ATCACAACAC CCTGCAGATG GGCTTCCGCA ATGCGGACGA CCATCGCTTT
CTTCGCACAG TGGCGGCCCG GCACGGCATA GTCTTCTCCG CCCCCGGCAA CGGCATCTGT
CACCAGTTGC ATCTCGAGAA CTTCGCCCGT CCCGGCGCGA CCCTTGTCGG TTCCGACAGC
CATACGCCCA CAGCCGGTGG CATCGGCGCC CTGGCCATGG GTGCCGGTGG CCTTTCCGTC
GCTCTCTCCA TGGCGGGCGA GCCCTACACC ATCACCATGC CCAAGGTCGT CAACGTTCGG
CTTGAAGGCC GCCTGACGGG ATGGGCCGCC GCCAAGGACG TGATCCTGCA TCTGCTTGGC
CTGCTCACCG TCAAGGGCGG CGTGGGGCGC GTGTTCGAAT ACACCGGCCC CGGTGTGGCG
ACCCTCAGCG TCCCCGAACG GGCGACCATC ACCAACATGG GGGCTGAACT GGGAGCCACG
ACATCCATCT TCCCCAGCGA TGAAAGCACC CGCGCCTTCC TCGCGGCCAT GGGGCGCGAG
GCCGACTGGC AGCCGCTCGC CGCCGACGCC GGTGCCGTCT ACGACGAGGA GGTCGTCATC
GACCTCTCGC AACTGGAGCC TCTGGTCGCC ACGCCGCACA TGCCCGACAG GGTCGTCACC
GTGGCATCGC TGGCGGGGCT CAAGGTCGAT CAGGTGGCCA TAGGTTCCTG CACCAACTCG
TCCTATGCCG ACCTCAAGAG CGTAGCGCAG GTCGTCGCCG GACGGCGCGT CGACTCCACC
ACCGACTGCA TGATCTCGCC CGGCTCCAAG CAGGTGCTGC GGATGCTCGC CACCGAAGGC
TTGCTCGAAC CCCTGCTCGA CGCCGGTATC CGCATGCTGG AGTGCACCTG CGGTCCCTGT
ATCGGCATGG GCGGTTCGCC GGTATCCGGG GGCGTGAGCG TACGTACCTT CAACCGCAAT
TTCGAAGGGC GCAGCGGCAC CAAGGATGCA GGCGTGTACC TCGCCAGCCC CCTCACGGCG
GCGATGGTGG CCCTGCATGG CGGGTTCACC GACCCCGCCA CATGGGGAGA AGCCCCGGCG
GTGCCCGAAC TTCCTGCCGA TGTGCCCTCC ATCCGGCATC TCTTCGTCTT TCCCCCGGAG
GACGGTTCGC AGGTCGAGGT GCAGCGCGGC CCCAACATCG TGGCCCTGCA AACCTTTGAG
GGGCTGCCCG ACAGGCTTGA CGCCGAAGTG GTCATCAGGC TTGGGGATGA CATCACCACC
GACCACATCA TGCCTGCCGG TGCGGAGATA ACGGCCCTGC GGTCCAATGT GCCTGCCATC
TCGCGCCATG TCTTCGGACG TGTGGATGCG GACTTCGTGA AGCGCGCCGA AGCGGCGGCC
AACGGCGTCA TCGTCGCCGG AGAGAACTAC GGGCAGGGCT CCAGCCGCGA ACACGCGGCC
CTCGCCCCCC GTCATCTCGG CATCAGGGCT GTCATCGCCA AGTCGCTTGC CCGCATCCAT
CGCGCCAATC TCGTGAACTT CGGTATTCTC CCGCTCATCC TCGTGGACAA GGGGGATTAT
GAACGCCTTG AGCAGGGCGG CAACGTGACC ATTCCCGTTG CGGACATCAT CGCCGGAGGC
GAATGCGCGG TTGCGCTGGC AGACGGCGGT TCCGTCCGTG TCCGGAACGA TTTGACGGTG
GACGAATTGG AGATTATTCG AGCGGGCGGA CTCCTCAACT ACGTCCGCAA TGCGAGAACG
CGCGGCTAG
 
Protein sequence
MPLNQTQKII KAHLVHGDMA PGAPIALRID QTLTQDATGT MAYLQFEAMG VDRVRTDLSV 
SYVDHNTLQM GFRNADDHRF LRTVAARHGI VFSAPGNGIC HQLHLENFAR PGATLVGSDS
HTPTAGGIGA LAMGAGGLSV ALSMAGEPYT ITMPKVVNVR LEGRLTGWAA AKDVILHLLG
LLTVKGGVGR VFEYTGPGVA TLSVPERATI TNMGAELGAT TSIFPSDEST RAFLAAMGRE
ADWQPLAADA GAVYDEEVVI DLSQLEPLVA TPHMPDRVVT VASLAGLKVD QVAIGSCTNS
SYADLKSVAQ VVAGRRVDST TDCMISPGSK QVLRMLATEG LLEPLLDAGI RMLECTCGPC
IGMGGSPVSG GVSVRTFNRN FEGRSGTKDA GVYLASPLTA AMVALHGGFT DPATWGEAPA
VPELPADVPS IRHLFVFPPE DGSQVEVQRG PNIVALQTFE GLPDRLDAEV VIRLGDDITT
DHIMPAGAEI TALRSNVPAI SRHVFGRVDA DFVKRAEAAA NGVIVAGENY GQGSSREHAA
LAPRHLGIRA VIAKSLARIH RANLVNFGIL PLILVDKGDY ERLEQGGNVT IPVADIIAGG
ECAVALADGG SVRVRNDLTV DELEIIRAGG LLNYVRNART RG