Gene Information Plasmid Coverage information Fosmid Coverage information Sequence |
Gene Information |
Locus tag | BT9727_2136 |
Symbol | sbcC |
ID | 2857474 |
Type | CDS |
Is gene spliced | No |
Is pseudo gene | No |
Organism name | Bacillus thuringiensis serovar konkukian str. 97-27 |
Kingdom | Bacteria |
Replicon accession | NC_005957 |
Strand | + |
Start bp | 2213974 |
End bp | 2217063 |
Gene Length | 3090 bp |
Protein Length | 1029 aa |
Translation table | 11 |
GC content | 35% |
IMG OID | 637513561 |
Product | exonuclease SbcC |
Protein accession | YP_036463 |
Protein GI | 49477636 |
COG category | [L] Replication, recombination and repair |
COG ID | [COG0419] ATPase involved in DNA repair |
TIGRFAM ID | [TIGR00618] exonuclease SbcC |
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Plasmid Coverage information |
Num covering plasmid clones | 15 |
Plasmid unclonability p-value | 0.142558 |
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 | ATGAGACCGA TCCAGCTTAT TATGACGGCA TTTGGCCCAT ATAAACAGAA AGAAGTAATT GATTTTGACG ATCTGGGAGA GCATCGTATT TTCGCCATTT CTGGGAACAC GGGCGCTGGA AAGACAACGA TTTTTGATGC GATTTGTTAT GTGTTATATG GTGAGGCAAG CGGAGAAGAA CGAAGTGATA CGAGCATGCT CCGCAGTCAA TTTGCTGATG ATAATGTGTA TACAAGCGTA GAACTAACTT TTCAGTTAAA AGGGAAACGT TATGAAATAA AACGACAACT TGGGCATAAA AAACAAGGGA ATAAGACGAT TACGGGACAT GCGGTAGAAT TATATGAAGT AATTGATGAA GAGAAGGTTC CGGCTGTTGA TCGTTTTCAT GTAACGGATG TAAATAAAAA AGTAGAAGAT TTAATTGGTT TAAGTAAACA TCAATTTAGC CAAATTGTTA TGTTACCCCA AGGGGAATTC CGAAAACTAT TAACATCTGA GACAGAAAAT AAAGAAGAGA TTTTACGTCG TATTTTTAAA ACAGATCGTT ATAAGTTAAT GCGTGAGTTA CTTGATCAAA AACGAAAACA ATGGAAAGAC GTCTTACAAG AAAAGCAGAA AGAGCGAGAG TTATACTTCC GTAATGTTTT TAAATTACCA ATCCGTGATG GAGCAATATT AGAGACTTTA GTGGAACAAG AGCATGTAAA TACGCATCAA GTAGTAGAAG CATTAGAACA AGAAACAGCT GTGTATAAGG CAGAGGTTGA GCAATTACAA GTAGAACAAG ATGTTCAAAC GAAGCAATTA AAGGATGCTG AAACACGTTT TCACGCGGCG AAGTCTGTAA ATGAGAAATT TATAGATTTA CAACAAAAGA ATGAGAAATA TAATACTTTA CAAGAAAATC GTACAGTTAT TGAAATGAAA GAAACATCTT TTAAGCGTGC GGAACAAGCA AAGCGCTTAT TACCATTTGA ACAATGGCAC GAAGAAGCGA TGCAAAATGA GCAGAAAGCT GAAAGTTTGT TAAAACAAAT TATCGCCAAA AAAGAAAATA TAATGACTAA TTTTGAACTT GCTCAGGAGA AATATGAAGT AGTAAAGAAT AAAGAATCTG AGAGAGAAAA TGTCAAAAAA CTTGTTCAAA GATTAGAAGA ATTACAACCG ATTATTGCAT CATTAGCTGA GAAACAGCTG AATTTACAAA ATGCAGAAAT TCAAATCGGA AAATTAAAAG AAAGTATGCA AAACTTAGAT CGACAATTAG AAGAGCATAC AAATCAAAAA CAGCTAATGA CTGGTGAATT ACAGCAATTA GAGCGAGCGC TTGAACAATA TGTAGATAAA GTAGAAGAAC TAACGAATAT GCGAGAAGAT GCAAAAGTTT TAAAGCAAGC ATATGATGTA TGGCAAGAAA AACAAAAATT CGAGAAAGAA AAAGAAGCAG CATATAGTAA GATGCAATTG GCAGTTAACG CATATGAAAA TATGGAACGC CGCTGGTTAA GTGAACAAGC TGGTATATTG GCTCTTCATC TACATGATGG TGAATCTTGT CCAGTATGTG GTAGTACGAC CCATCCGAAA AAAGCTACAG AGCAAAGTGG TGCGATCGAT GAAAACGAGT TAAATGGTTT AAGAGATAAG AAGAATATTG CTGAAAAATT ACATGTTCAG TTAGAGGAGA AATGGAATTT CTATCATCAT CAATATGAAC AAGTAATAGA AGAGGTTAAG AAGCGAGGCT ACCAATCGGA AGAATTAGTT GAAACATATA GTGCGCTTGT TCAAAAAGGA AAACAATTAG CAACTGAAGT GAATACGTTA AAAGCTAGTG AAGAAACGCG TAAGCAAATA GCTGTGAAAA TAAAAAGCGT AGAAGAAAAA GTAGATGCAC TTCAGAAACA AAAACGTGAA GTAGAAACAG AGCAGCACCG TATCGAAATG GATTGTATGC AGCTGCGTAC GTCATATGAA CATGATAAGA AAAACATTCC TGAAAACTTA CAAACAGTAC AAGCTTGGAA AGTTCAATTT GACCAAGCTA TGCATGAACT CAAATTAATG GAGGACGAAT GGAAGAAAGT GCAGGAAGCA TATCAACATT TGCAAAACGA AAATATACGT ATTCAAGCAG AACAGGAAGG TGCTACTAAT CAATTTGAAA GTGCAAAATT GAAGAAAGAA GAGACTTTCA CGCGCTTTAT GAAAGAACTT GAGCAGAGCG GATTTACAGA TCAATCTACG TATAAAGAAG CTAAATTAAG TGATGCTGAG ATGGAATTAA TACAAAAAGA AATTCAAAGC TATTATTCAT CTCTCGAAGT ACTTGCGAAA CAAATTGAAG AGTTACATGT TGAATTAAAA GATAAAGGGT ATATGGATAT TACAGCGTTA GGTGAACACA TTAAAGAACT AGAAATTAAC CTTGATATCA TAAAAGAAAA ACGTCAACGT GCGCAAAATG CGGTAACATA TATTTCCGAT CTCCATGAAA ATATTAGACG TATTGATGAG CAAATTCATG AGGAAGAAAA AGCGTTCCAA GAACTTGTTG ACTTATATGA AGTAATGAAA GGTGATAACG AAAGCCGTAT ATCATTTGAA CGTTACATCT TAATTGAGTA TTTAGAACAA ATTGTTCAAA TTGCAAACGA ACGATTACGT AAATTATCAA ATGGACAATT TTATTTAAAA CGAAGTGAAC GAGTTGAAAA AAGAAATCGT CAAAGTGGAT TAGGTCTAGA TGTATACGAC GCATACACAG GCCAAACACG CGATGTAAAA ACATTATCTG GCGGCGAGAA ATTTAATGCA TCGCTTTGCT TAGCGCTCGG AATGGCAGAC GTCATTCAAG CATATGAAGG TGGTATATCC ATCGAAACGA TGTTTATCGA TGAAGGATTT GGTTCATTAG ATGAGGAGTC ATTAACAAAA GCAGTAGACG CCTTAATTGA CTTACAAAAA TCAGGCCGAT TTATCGGTGT CATTTCACAC GTTCAAGAGC TGAAAAACGC AATGCCAGCT GTTTTAGAAG TAACGAAACA GAAGGATGGA TGTAGTCAGA CGAGGTTTGT GGTAAAGTAA
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Protein sequence | MRPIQLIMTA FGPYKQKEVI DFDDLGEHRI FAISGNTGAG KTTIFDAICY VLYGEASGEE RSDTSMLRSQ FADDNVYTSV ELTFQLKGKR YEIKRQLGHK KQGNKTITGH AVELYEVIDE EKVPAVDRFH VTDVNKKVED LIGLSKHQFS QIVMLPQGEF RKLLTSETEN KEEILRRIFK TDRYKLMREL LDQKRKQWKD VLQEKQKERE LYFRNVFKLP IRDGAILETL VEQEHVNTHQ VVEALEQETA VYKAEVEQLQ VEQDVQTKQL KDAETRFHAA KSVNEKFIDL QQKNEKYNTL QENRTVIEMK ETSFKRAEQA KRLLPFEQWH EEAMQNEQKA ESLLKQIIAK KENIMTNFEL AQEKYEVVKN KESERENVKK LVQRLEELQP IIASLAEKQL NLQNAEIQIG KLKESMQNLD RQLEEHTNQK QLMTGELQQL ERALEQYVDK VEELTNMRED AKVLKQAYDV WQEKQKFEKE KEAAYSKMQL AVNAYENMER RWLSEQAGIL ALHLHDGESC PVCGSTTHPK KATEQSGAID ENELNGLRDK KNIAEKLHVQ LEEKWNFYHH QYEQVIEEVK KRGYQSEELV ETYSALVQKG KQLATEVNTL KASEETRKQI AVKIKSVEEK VDALQKQKRE VETEQHRIEM DCMQLRTSYE HDKKNIPENL QTVQAWKVQF DQAMHELKLM EDEWKKVQEA YQHLQNENIR IQAEQEGATN QFESAKLKKE ETFTRFMKEL EQSGFTDQST YKEAKLSDAE MELIQKEIQS YYSSLEVLAK QIEELHVELK DKGYMDITAL GEHIKELEIN LDIIKEKRQR AQNAVTYISD LHENIRRIDE QIHEEEKAFQ ELVDLYEVMK GDNESRISFE RYILIEYLEQ IVQIANERLR KLSNGQFYLK RSERVEKRNR QSGLGLDVYD AYTGQTRDVK TLSGGEKFNA SLCLALGMAD VIQAYEGGIS IETMFIDEGF GSLDEESLTK AVDALIDLQK SGRFIGVISH VQELKNAMPA VLEVTKQKDG CSQTRFVVK
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