Gene Information Plasmid Coverage information Fosmid Coverage information Sequence |
Gene Information |
Locus tag | Rxyl_2853 |
Symbol | |
ID | 4115830 |
Type | CDS |
Is gene spliced | No |
Is pseudo gene | No |
Organism name | Rubrobacter xylanophilus DSM 9941 |
Kingdom | Bacteria |
Replicon accession | NC_008148 |
Strand | + |
Start bp | 2858878 |
End bp | 2860629 |
Gene Length | 1752 bp |
Protein Length | 583 aa |
Translation table | 11 |
GC content | 71% |
IMG OID | 638037623 |
Product | glyoxylate carboligase |
Protein accession | YP_645577 |
Protein GI | 108805640 |
COG category | [R] General function prediction only |
COG ID | [COG3960] Glyoxylate carboligase |
TIGRFAM ID | [TIGR00118] acetolactate synthase, large subunit, biosynthetic type [TIGR01504] glyoxylate carboligase |
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Plasmid Coverage information |
Num covering plasmid clones | 5 |
Plasmid unclonability p-value | 0.0172907 |
Plasmid hitchhiking | No |
Plasmid clonability | normal |
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Fosmid Coverage information |
Num covering fosmid clones | n/a |
Fosmid unclonability p-value | n/a |
Fosmid Hitchhiker | n/a |
Fosmid clonability | n/a |
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Sequence |
Gene sequence | ATGGCCCGGA TGGGCGTGAT GGACGCGGTG GTGAAGGTGC TCGAGGACGA GGGCGTCGAG GTGGCCTTCG GGGTCCCGGG GGCGGCGATC CTGCCGCTGT ACAAGGCCCT CAGCAAGTCC CGCCGGATAA GGCACTACTC CGTGCGGCAC GAGGAGGGCG GCACGCACGC GGCCGACGGG TACGCGCGGG TCACGGGCAG GGTCGGGGTC AACATCGGGA CCAGCGGCCC CGCCGGCACT AACATGATCA CGGGCCTCTA CACCGCGATG GCCGACTCCA TCCCGATGGT CTGCATCACC GGGCAGGCCC CCACGGGCGT GCTGCACAAG GAGGCCTTCC AGGCGGTGGA CATCGTGGAG ATCGCCCGCC CGGTGACCAA GTGGGCCGTG CAGGTCAAAG AGCCCGCCCA GCTCGTCTGG ACCTTCCGGG AGGCGTTCCG GATCGCGCGG GAGGGACGCC CGGGCCCGGT GCTCGTGGAC CTGCCGCTCG ACGTTCAGAG GTCCCCCCTC GAGGTGGACT TCGACCCCCG CCGCGACGGC CCGCTCCCCT TCGAGAGGCC GGCGCCCGGC TCCGGGGCCA TCCGCGAGGC GCTCGCCATG ATCCTCGCCG CCGAGCGCCC CATCCTCATG CCCGGCGGCG GGGTCATCCT CGCCGGCGCC TCGGAGGAGC TCGTCGAGCT CGCCGAGTAC CTGCAGGTCC CCGTGAGCCC CACCTACATG GGGAAGGGCG CTATCCCGGA GGACCACCCC CTCTACATGG GGACCGTCGG CATCCAGACC AGCCAGCGCT ACGCCAACGC CCTCTTCCTG GAGAGCGACC TGGTCGTCGG GATCGGCAAC CGCTGGGCCG AGCGCCACAC CGGAGACCTC GACGTCTACC GGGGGAACAG GAAGTTCGTG CACATAGACA TAGACCCCCG CCAGATCGGG CGCGTCTTCC CGCCGGACCT CGGCATCGTC TCCGACGCGA AGCTCGCCCT CCGGGCCCTC CTCGAGGCGG CCTGGGCCAC CACCCCGCCG CGCGAGCCCG GACCCTGGGT GCGGCGGGTG GAGGAGCTGC GCTCCACGCT GCTGCGCAGG GACGACTTCG ACAGCGCGCC CGTAAAGCCC CAGCGCGTCT TCCGGGAGCT GAACGAGTTC TTCGACGAGG ACACCATCTT CGTGACCGCC ATCGGGCTCT ACCAGATCTT CTCCGGCCAG TTCCAGAAGA CCTACAGGCC CCGCCACTAC CTGTGCTGCG GGCAGGCGGG CCCGCTGGGC TGGGAGGTCC CGGCCTGCCT CGGGGCCAAG CTCGGCCGGC CCGAGAAGCT CGTCGTCGGC GTGGTGGGCG ACTACTCCTT CCAGTTCCTC ATGGAGGAGG TCGCCGTCGC CGCCCAGTAC CGCGTCCCCT ACGTCCTGGT GATGATCAAC AACGCCTACA TGGGCCTGAT CCGGCAGGGC GAGCTGCCCT ACGGCATGAA CTTCGCGGTC GACCTCGGCT ACAGCGGCCC CGAGAGCGAG TACGGCATAG ACCACGTGGG TATCATGGAG GCCATGGGGG CCCTGGGACG CCGGGTGAGG CGGCCCGAGG AGATAAGGGA CGCCCTCCGC TGGGCGGTGC GCGCCAGCGA GGAGCGGCGC GTGCCGGCGC TCGTGGAGGT GATGGTCGAG CGGGAGACCA ACGCGGCGAT GGGCCCCTCC ATAGACAAGA TCCGGGAGTA CGAGCCGGTG TTGGACCGCC TCCCGGCGGC CCAGGCGGCG GAAGGGAGCT AG
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Protein sequence | MARMGVMDAV VKVLEDEGVE VAFGVPGAAI LPLYKALSKS RRIRHYSVRH EEGGTHAADG YARVTGRVGV NIGTSGPAGT NMITGLYTAM ADSIPMVCIT GQAPTGVLHK EAFQAVDIVE IARPVTKWAV QVKEPAQLVW TFREAFRIAR EGRPGPVLVD LPLDVQRSPL EVDFDPRRDG PLPFERPAPG SGAIREALAM ILAAERPILM PGGGVILAGA SEELVELAEY LQVPVSPTYM GKGAIPEDHP LYMGTVGIQT SQRYANALFL ESDLVVGIGN RWAERHTGDL DVYRGNRKFV HIDIDPRQIG RVFPPDLGIV SDAKLALRAL LEAAWATTPP REPGPWVRRV EELRSTLLRR DDFDSAPVKP QRVFRELNEF FDEDTIFVTA IGLYQIFSGQ FQKTYRPRHY LCCGQAGPLG WEVPACLGAK LGRPEKLVVG VVGDYSFQFL MEEVAVAAQY RVPYVLVMIN NAYMGLIRQG ELPYGMNFAV DLGYSGPESE YGIDHVGIME AMGALGRRVR RPEEIRDALR WAVRASEERR VPALVEVMVE RETNAAMGPS IDKIREYEPV LDRLPAAQAA EGS
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