Gene Information Plasmid Coverage information Fosmid Coverage information Sequence |
Gene Information |
Locus tag | Acid345_0185 |
Symbol | |
ID | 4073072 |
Type | CDS |
Is gene spliced | No |
Is pseudo gene | No |
Organism name | Candidatus Koribacter versatilis Ellin345 |
Kingdom | Bacteria |
Replicon accession | NC_008009 |
Strand | + |
Start bp | 195158 |
End bp | 198535 |
Gene Length | 3378 bp |
Protein Length | 1125 aa |
Translation table | 11 |
GC content | 60% |
IMG OID | 637982185 |
Product | diguanylate cyclase with GAF sensor |
Protein accession | YP_589264 |
Protein GI | 94967216 |
COG category | [T] Signal transduction mechanisms |
COG ID | [COG2206] HD-GYP domain |
TIGRFAM ID | [TIGR00254] diguanylate cyclase (GGDEF) domain [TIGR00277] uncharacterized domain HDIG |
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Plasmid Coverage information |
Num covering plasmid clones | 15 |
Plasmid unclonability p-value | 1 |
Plasmid hitchhiking | No |
Plasmid clonability | normal |
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Fosmid Coverage information |
Num covering fosmid clones | 7 |
Fosmid unclonability p-value | 0.161564 |
Fosmid Hitchhiker | No |
Fosmid clonability | normal |
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Sequence |
Gene sequence | ATGGAACCCC TATTGGCAGG CACCGTCTTT GTTCCAGGGC TCGTCGCCCT CGCGTTCCTG CTCGTCTTCG CGTATCTCCA GCGCCAATCC TCCGAACGGT ATTTCCATAG CTGGCAGTGG TTCTGGTTCG CCAACACCGC TTACTACGCA CTCGTTGCGG TGGCCGACAC TCACCCCAAG ATTCCAGCCT ATGCCTCGTT GGCTCACACC GCTGAAATCT GTGGAGCGGT CGCGCTCTTT GTTTCCGCTC GATCCTTCGC GAAGACCGAA CCTCCTGCGT GGACCAAGTA CCTCGTTCTT TGCGCCCTCA TTTATTGGAC AGCCCTCCAC GCCATCCCGC CACTAAGGGT CATGGTTCGG CCGTACCTGC ACGCGTGGAT CGCTGTTCTC GTCGTGCTGT TACTCGCCAC CATGGAGTAC GCGCGCGTTG CCTATCAGCG CGACTCCGCC GGCCTTCGCT GGATGACTGC ATCCACCGCC CTTTGGATTG TTATGCAGGC CGGCAAGGAA ATTCCGCCGT CCTTGCTCGT CGGACGCTAT CTCCATCGCG GATCCGAGTA CCTCGAAATC ATGCCGTTGC TCCTGCTCGG TACGGCGATG GTGGTTGTGC TCTTTGACGA CGAACGTCGC GCCATCCAGG AAAACGCGCT GGCATTTTCT TCGCTCGATA TCGATCCCAC CACGCCGGTC ACGCGCGAAC AGATTCAACC CAGCATCGAA AGCCTCCTCA CCCGGTTCAT GAGTCTCCTG CGTCTCGAGC AGGCGGTGCT CTACGTCTCC GAGCCTTGGC GCGGCAGTGT GCCTTCGGTC GCCCGCGGTT TCTCGCCGGA TTTCATCACC CGGCTCGAGG TCCAGAACGC CGGCGACTAT CTCGCCGACA TCGCTTTCCG CCGTGGCGGC ATCCTGAGCA TTCACTCGCT CAAGGAACTG CAAGGGCCCA TGCGTTCCGC TGCCCACCCC GGATTGACCT CGTTGGTCAA CACACTGAAG GAAGAAAACA TCTCGCGGTT CAGTGCCGTC TGTCTTCAGA CGCGCGAGCG CAACATGGGT GTCGTCATCT TCCCCCACGG CAAGCGCCAT GCCTTCAGTG CCAGCCGCCT GCGTCTTCTT TTATCGGTCA GCATGCAGAT GGGCATGACG CTCGAGAACT ACCTGCTGGT TCACGACGCT CATAGGCGAA CCAAAGAATT CGAACTGCTC ACGCAGATCG GTCAGGTCAT CAGTTCGCGC CTCGATCCCG ACGAAGTTCT CGCCGCCGTG CATCGCGAAC TCGGACGTCT GTTCGACACC AGCAACTTCT ACGTGGCCTT CCTGGAAGGC TTGGAGCTTC GCTACGAGTT CGAAACCGTC GGCGCTATTC GTCAGCCCCG GCGTTCACGG AGGTCGAAGA ACGGTCTCAG CGATTTCGTC ATCCGTACCG GCCAGCCAAT CCTGATTCGC TCGGACATGA AGCGCGTCAG CCAGCGTCTC GGCATCGAGC CCAGCTCGCA TCCGGCGAAG TGCTTCATCG GCGTGCCCAT CCGCATTGGC GCCGTCAGTG TCGGCGTTGT TGCCGCGCTG AACTTCGATC GCGAATTTGT TTATGAGCAG CGCGACGTCG AAGTCCTCGC CACCGCTGCC GGACAGGTCG CTGTTGCGAT TGAGAACGCG CGCATGTTCG CGCACGAACA ACGTCGCGCT CGCTATCTCT CGTTCTTGAA CAACGTTTCG CAGACGGCCA TCTCCAGCCA GAACGCCGAG GAGATGCTCA GCGAAATCGT TGGCCAGATC CAGAAGAACT TTAATTACGA CCACATCGGC ATCGGAATTC TCGACTACGC CACCAAGGAA ATCGAAATCA AAGCCGAAGC CGGCACCACA GCGCATGCGA AGGGCAAGCG CGTCGCGCTC GGCGTCGGTG TGCTCGGTCG CGTTGCACGC ACCGGCGACA CTTCCCTGGT TCAAGATACT GCCGCCACGC ATCTCGCAGG CATTCTGCCC GATTCGCGTT CTGCTCTCTG TATCCCCATC ACCTACGCCG AGCAGTTGCT CGGCGTGCTC AACATCGAGA GCCGCCGCGA AAACGCCTTC ACGGAAGAAG ACACGCTGCT CCTGCGGACG CTCGCTGACT TGCTCGCCAC CGCGCTGCAC AACGCCTTTG TCTTCCAGAA AATGCAGCAG CAGTCCATTA CAGACGCGCT CACCGGCAGC AAGACGCGCC GTTACTTCCT GGAAGCTCTG CAATCAGAAT GGAAGCGCGC CTCGCGTTCC ACGCGACCGT TCTCGGTGGT GATGATCGAC CTCGACAAGT TCAAGCAGGT CAACGACACC ATGGGCCATC TCGAGGGCGA TCTCGTGCTC GCTCGCATTG CGCGCCTGCT CGAACAGAAA TGCCGCCAGT CGAATGTGGT TGCCCGCTTC GGCGGCGATG AGTTTGTCAT CCTCATGCCA GAAACCGGTG TCGACCAGGC CCAGATTCTC GCCGAACGCC TACGCCTCTG GATCGCGACC GATCCGATGC TGAGCGAGCA CCAGATCACC GGCAGCTTCG GCGTTGCGAC TTATCCCATT CACGGCTCTT CGGTCGAAGA CATCATGCGC GTGGCTGATG CCGGCATGTA TGTCTCCAAG CATGCTGGCG GCAACAAGGT CGCCACCGCC GACGAATTCA TCGACGGCCA GAACACCTCC GTCCAACGTC AGTTGATCAG CGCTTACGTC GAAGGTTTCC TCCAGCGTGA ACACTATGGT CCCGAATACA CATCCGAACT CGTCAGTGCA TTGAAGAAGT TTTCTGAGAA CGAAGCTGAG GGCAAGCGCG AAGTCATGAT GGACGCCATC CTCGCGCTCA ATCGTGCGAG TGAATCGCGT GAGCTCTTCG CCTCCGGACA CGGTGAGCAG GTCGCGCGCA CTGCGGAAAT CATCGCCCGC GAATTAGGAA TTGGTGGGCA AGATATTCAG GACCTCATCT TCGCCGCGCG CATTCACGAC GTCGGCAAGA TCGTCGTCCC GGAGAAGATC CTCAACAAAC CGGCGATGCT GACCGAAGAC GAGCACTATC TCGTCGCCAT GCACGCCAAC GTCGGCGCCG AGATTATCGA CGCCATCCCC GACGCCCAGC ACATTCGCCA GATGGTTCGC CATCACCACG AGGCCTTCGA TGGCTCCGGC TATCCCGACG GTCTCAAGGG CGAACAGATC CCGCTCTACG CGCGCATCAT CTCCGTCGCC GAGGCCTACG TCTCGATGAT GGTCGACCGC TCCTACCGCG CCGCCCGCAG CCAGGCCGAC GCCGTCCGCG AACTCGAAAG CCGCAGCGGC TCGCAGTTCG ATGGCATGCT GGTGAGAATC CTAATTCGCC AGTTCAAGGC CGAAAGAGCG GCGCAAGGGA ACGACTAG
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Protein sequence | MEPLLAGTVF VPGLVALAFL LVFAYLQRQS SERYFHSWQW FWFANTAYYA LVAVADTHPK IPAYASLAHT AEICGAVALF VSARSFAKTE PPAWTKYLVL CALIYWTALH AIPPLRVMVR PYLHAWIAVL VVLLLATMEY ARVAYQRDSA GLRWMTASTA LWIVMQAGKE IPPSLLVGRY LHRGSEYLEI MPLLLLGTAM VVVLFDDERR AIQENALAFS SLDIDPTTPV TREQIQPSIE SLLTRFMSLL RLEQAVLYVS EPWRGSVPSV ARGFSPDFIT RLEVQNAGDY LADIAFRRGG ILSIHSLKEL QGPMRSAAHP GLTSLVNTLK EENISRFSAV CLQTRERNMG VVIFPHGKRH AFSASRLRLL LSVSMQMGMT LENYLLVHDA HRRTKEFELL TQIGQVISSR LDPDEVLAAV HRELGRLFDT SNFYVAFLEG LELRYEFETV GAIRQPRRSR RSKNGLSDFV IRTGQPILIR SDMKRVSQRL GIEPSSHPAK CFIGVPIRIG AVSVGVVAAL NFDREFVYEQ RDVEVLATAA GQVAVAIENA RMFAHEQRRA RYLSFLNNVS QTAISSQNAE EMLSEIVGQI QKNFNYDHIG IGILDYATKE IEIKAEAGTT AHAKGKRVAL GVGVLGRVAR TGDTSLVQDT AATHLAGILP DSRSALCIPI TYAEQLLGVL NIESRRENAF TEEDTLLLRT LADLLATALH NAFVFQKMQQ QSITDALTGS KTRRYFLEAL QSEWKRASRS TRPFSVVMID LDKFKQVNDT MGHLEGDLVL ARIARLLEQK CRQSNVVARF GGDEFVILMP ETGVDQAQIL AERLRLWIAT DPMLSEHQIT GSFGVATYPI HGSSVEDIMR VADAGMYVSK HAGGNKVATA DEFIDGQNTS VQRQLISAYV EGFLQREHYG PEYTSELVSA LKKFSENEAE GKREVMMDAI LALNRASESR ELFASGHGEQ VARTAEIIAR ELGIGGQDIQ DLIFAARIHD VGKIVVPEKI LNKPAMLTED EHYLVAMHAN VGAEIIDAIP DAQHIRQMVR HHHEAFDGSG YPDGLKGEQI PLYARIISVA EAYVSMMVDR SYRAARSQAD AVRELESRSG SQFDGMLVRI LIRQFKAERA AQGND
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