Gene Information Plasmid Coverage information Fosmid Coverage information Sequence |
Gene Information |
Locus tag | Svir_26930 |
Symbol | |
ID | 8388017 |
Type | CDS |
Is gene spliced | No |
Is pseudo gene | No |
Organism name | Saccharomonospora viridis DSM 43017 |
Kingdom | Bacteria |
Replicon accession | NC_013159 |
Strand | - |
Start bp | 2900299 |
End bp | 2903598 |
Gene Length | 3300 bp |
Protein Length | 1099 aa |
Translation table | 11 |
GC content | 67% |
IMG OID | 644976727 |
Product | glycosyl transferase |
Protein accession | YP_003134504 |
Protein GI | 257056672 |
COG category | [G] Carbohydrate transport and metabolism [M] Cell wall/membrane/envelope biogenesis |
COG ID | [COG0726] Predicted xylanase/chitin deacetylase [COG1215] Glycosyltransferases, probably involved in cell wall biogenesis |
TIGRFAM ID | |
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Plasmid Coverage information |
Num covering plasmid clones | 30 |
Plasmid unclonability p-value | 1 |
Plasmid hitchhiking | No |
Plasmid clonability | normal |
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Fosmid Coverage information |
Num covering fosmid clones | 24 |
Fosmid unclonability p-value | 0.938513 |
Fosmid Hitchhiker | No |
Fosmid clonability | normal |
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Sequence |
Gene sequence | ATGCGAATCC GGGGATCGTG GATCGTCGCG GGTGTGGTCG GCCTGCTGTT CGTCATGACG TTGCTCATCG CCGGCTGGAC CATGTCGGAG GTCGGCAACG ACGCCGAGCC GCAACGGGGA TTCGACAGCC AATCGAATGT CCCGAGCTCG GTGCTGAACG GTGGCACGCT CGTCCATGTC CAAGGTGATT CGGTGTCGTC CACGTCGATG CCGCCCCGAA CCGTGGCATT GACCTTCGAC GATGGTCCCG ATCCGGTGTG GACCCCCCAG ATCCTCGAAA TACTCGACAA ACACGACGTA CCCGCCACGT TCTTCGTGGT CGGCTCGATG GCCGCGCGTT ACCCGGACCT GGTCCGCAGC ATCCACGAAT CCGGTTCCGA ACTGGGGGTG CACACGTTCA CCCACCCCGA TCTCGCCCAG GTCTCCGCGT GGCGGGTGGA ACGCGAGCTG AACCAGACTC AGATGGCGCT CGCGGGAGCG GCCGGAGTGA CCACACGACT GTTCCGGCCC CCGTACTCGT CGACGACGGA GGCGCTCGAC AACCCCGCCT ACGACGTCGT GCGCCAAGCC GGGGAACTCG GCTACATCAG CGTGTTCAGT GACATCGACA GTGCCGACTG GCAGCGACCC GGGGTCGACG CCATCGTGCG CAACTCGATG CCGCCGAACG GGCAGGGTGG CGTGGTGCTG TTGCACGACG CCGGCGGTGA CCGATCGCAG ACGGTGGCCG CGCTCGACAT CCTCATCCCC CGCCTCAAGG AACAGGGCTA CCGGTTCAGC ACCATCGCCG ATGTCATCGG CGCCGACCGC GCCGATCCCG CCTCCACGGA GGACCGGGTG TCGGGCTCCG CGTTCGTCGC TGTGGTCAAT GGTGCTCTCG TCGTGGTGAG TGTGCTGAAA TGGCTGCTGG TCGCGGTGGG CGTACTCACG GTGCTCCGGC TGCTGTTGCT CGTCGTGGTG GCGGGCAGAC ACGCTGCCCG GCGCAGAGGC GCACGCTCTT GCTGGGGTCC GCCGGTCACC GAGCCGGTAT CGGTGATCGT GCCCGCGTAC AACGAGGCCG CCAACATCGA GGCCACCGTG AGATCAGCTG TCGCGAGTAC CCACCCGGTC GAGATCATCG TCGTCGACGA CGGGTCCACT GACGGTACCG CCGACCTCGT GGAAGGGCTC GGACTTTCGG GTGTTCGGGT ACTGCGTCGA CCGAACCGAG GGAAGGCCGC CGCGCTCAAC ACGGGGATCG CCGCCGCGTC GTACGACCTC ATCGTCATGG TCGACGGTGA CACCGTGTTC GAACCGAACA CGGTGCACGA ATTGGTGCAG CCGTTCGCCG ATCCGGAAGT CGGTGCGGTC TCGGGCAACG TCAAGATCGC CAACCGGGAG ACGTTGCTGG CACGACTGCA ACACATCGAA TACGTCGTCG GGTTCAATGT GGATCGACGT GTGCACGAGG TCATGCGTTC GATGCCGACC GTACCCGGTG CGGGTGGCGC GTTCCGACGT TCGGCGCTGC TTCAGGTGGG CGGTTTGAGC GCCCAGACCC TCGCCGAGGA CACCGACCTC ACCATCAGCA TCGGACGAGC CGGCTGGCGC ACGGTGTTCC AGGAGAAAGC GGTGACGTGG ACGGAGGCCC CGACCACCGT ACGCCAGCTG TGGCGACAGC GATTCCGCTG GACGTTCGGC ACGTTGCAGG CGTTGTGGAA ACACCGCAAG GCCATCGTCC AGCGTGGTGC CGCGGGTAGG GTGGGCCGAT TCGGCATGTT GCACGTGGTG TGTTTCCAGG TCCTGCTGCC CATGATCGCC CCGGTGATCG ACGTCTTCCT CGTCTACGGG GTGCTGTTCC TCGATCCGTG GACCACGGTG CTGCTCTGGC TGACCATGCT CGGCATACAG GCGGCCGCGG CCGCGTACGC GTTCCATCTG GACGGTGAAC GGAAGACGGT GTTGTGGTTG CTGCCCGCCC AGCAACTGAT CTACCGGCAA CTGATGTACG TGGTGTTGAT GCAATCGCTG GCCGCCGCCG CGTCGGGGGT TCGGGTGCGG TGGCAGCACA TGCGTCGTTC CGGGCTCACC CGGTTCCCGG CTGTTCAGGC CGCACAGAGT GTCCCGGCAC CGAGGACCGC CTCCGAGAAC ACGCAGGACG TCTCGGTATC GTCACCGGTC ACGCATGTCC CGTCCGGTTC GTCCGCCTCC GGAGGCCGGC GGAGCCGGGA ACGGTGGCTC GACGTCCTGC GGGCGGCGGC CTTGGGACGG GTGATGCTGT ACCACACGAT GGGATGGCCG TGGTTGAGCA TGGTGTTCCC CGCGATGGGG GTCATGTTCG CCGTCGGTGG TTCGTTGATG GCGCGATCGT TGGGGAACCA GCCGCCCGTG GACGTCGTCG GCAGGCGCAT CGTACGGCTG TTGCCGCCGC TGTGGGTGCT TGCCCTCGTG ATGGTGCCGT TGATGTTGGC GTTCGGCTGG AGCGCGGCCA CGGAGGAGAG TTGGGCCAGC GACGCGTTGC ACTGGCCGGA GCTCGCGCTG TGGATCTTCC CCGTTCTCGA TCCGCCGCAC AGCGATCTGG GCCTGGGCCG GGACGCGGCG ATCGTGCTGT GGTACGTGCG CGCCTATCTG TGGTTCGTGC TGTTGACCCC CCTGCTGCTG CGGCTGTTCC GTCGGTGGCC GCTCGTCACC ACGCTGACGC CTCTCGTCCT CGTCGCCTGT GACGCCGTGC TCGGCTCACC CCTGTCCGGG ATGGACGACG TGGGACAGGG GGTGCTGGAC TTCTGCACCT TCGGCGCCTG CTGGCTGCTC GGTTTCGCGC ATCGGGACGG GATGCTCACC CGAGCCCGCA TCGGGACGCT CGTGGTGACG TCGGTGCTGT TGATATCGGC GGGCTTGTGG TGGGCTGCGA CCCATCCGGC GTGGGGGTCT TACGACCTCA ACGAGATCCC GTTGGCGCAG GCGTTGGTGA GTGCGGGCTT CGTGCTCGTG GCGTTGCGGG TCTCGCCGGA GCTGCGGCTG CTCGACCGGG TGCCCGCGCT GAATCGGCTC GTCACCGTGC TCAACGCGCG GGCGGTCACG GTGTATCTGT GGCACAACGT GGCCATCTAC CTCGCCGCCT CGCTCATCCT GTGGTGGGGG GACTACTCAC AGGCGGAACA TCTCGCTGTG GCCGTGCTGT TGACGGCGGG CGCCGTGTTC CTGTTCGGGT GGGTGGAGGA TGTGGCGGCG CGACGGCGCA TCCGGATCCT TCCGGGGGCC CCGCCGAAAC CGAAACACGC CAGAACGCGC CTACGTAAGG CCAAGGTCGT CAGAGCCTGA
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Protein sequence | MRIRGSWIVA GVVGLLFVMT LLIAGWTMSE VGNDAEPQRG FDSQSNVPSS VLNGGTLVHV QGDSVSSTSM PPRTVALTFD DGPDPVWTPQ ILEILDKHDV PATFFVVGSM AARYPDLVRS IHESGSELGV HTFTHPDLAQ VSAWRVEREL NQTQMALAGA AGVTTRLFRP PYSSTTEALD NPAYDVVRQA GELGYISVFS DIDSADWQRP GVDAIVRNSM PPNGQGGVVL LHDAGGDRSQ TVAALDILIP RLKEQGYRFS TIADVIGADR ADPASTEDRV SGSAFVAVVN GALVVVSVLK WLLVAVGVLT VLRLLLLVVV AGRHAARRRG ARSCWGPPVT EPVSVIVPAY NEAANIEATV RSAVASTHPV EIIVVDDGST DGTADLVEGL GLSGVRVLRR PNRGKAAALN TGIAAASYDL IVMVDGDTVF EPNTVHELVQ PFADPEVGAV SGNVKIANRE TLLARLQHIE YVVGFNVDRR VHEVMRSMPT VPGAGGAFRR SALLQVGGLS AQTLAEDTDL TISIGRAGWR TVFQEKAVTW TEAPTTVRQL WRQRFRWTFG TLQALWKHRK AIVQRGAAGR VGRFGMLHVV CFQVLLPMIA PVIDVFLVYG VLFLDPWTTV LLWLTMLGIQ AAAAAYAFHL DGERKTVLWL LPAQQLIYRQ LMYVVLMQSL AAAASGVRVR WQHMRRSGLT RFPAVQAAQS VPAPRTASEN TQDVSVSSPV THVPSGSSAS GGRRSRERWL DVLRAAALGR VMLYHTMGWP WLSMVFPAMG VMFAVGGSLM ARSLGNQPPV DVVGRRIVRL LPPLWVLALV MVPLMLAFGW SAATEESWAS DALHWPELAL WIFPVLDPPH SDLGLGRDAA IVLWYVRAYL WFVLLTPLLL RLFRRWPLVT TLTPLVLVAC DAVLGSPLSG MDDVGQGVLD FCTFGACWLL GFAHRDGMLT RARIGTLVVT SVLLISAGLW WAATHPAWGS YDLNEIPLAQ ALVSAGFVLV ALRVSPELRL LDRVPALNRL VTVLNARAVT VYLWHNVAIY LAASLILWWG DYSQAEHLAV AVLLTAGAVF LFGWVEDVAA RRRIRILPGA PPKPKHARTR LRKAKVVRA
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