Submission Results
Sequence Name: Not Available
GenBank Accession Number: VIWB01000021.1
GenInfo (GI) Number: 0000000000
Download Results: VIWB01000021.1.PHASTER.zip
gi|00000000|ref|VIWB01000021.1| Bacillus thuringiensis strain 1230 Ga0365425_121, whole genome 72344, gc%: 33.67%
Download summary as .txt file: summary.txt file_download
Total: 1 prophage regions have been identified, of which 0 regions are intact, 1 regions are incomplete, and 0 regions are questionable.
Region | Region Length | Completeness | Score | # Total Proteins | Region Position | Most Common Phage | GC % | Details |
---|---|---|---|---|---|---|---|---|
1 | 25.9Kb | incomplete | 10 | 17 | 42416-68377 info_outline | PHAGE_Bacill_PfEFR_4_NC_048641(4) | 33.57% | Show info_outline |
>1 42416-68377 GTAGATTTTCATAAAACTACGTAGGCGGGGCGGCGGCCATTCCCATTCCTCGCATATCGT CCTCCTTCAACATCGGCCCATCATTCGCCTTCCACTCATTCCTACACATCTATATATCCA CCTATATCACAACTCTACGCCCTGTCTAGCCACGCCCATATGTCTCCGCATATCCCCGCA ATGTCCTGGCCCTGGAATCCCACAAGCCAAAAAGAAAACACCTCAAGCTAGAATCCCCTA TTGCTTGTTTGTATTGTTCTCATATATAATTGCGGTACACAATTTTTAGGACAAAGGAGT ATATAAACATGACTTGGGAATTTTCCGTTGATGTTTTCCTTGCTGATCTGTTAAAACATG GCCGCAAATCTTCCACCGTTAAACAATACCGCTACGATCTCACCCTTTTCACATCATGGA TTCAGAAATACGTCAAATTACCTCCAGAATCGTTTTTTCATTCTTTTGATGCAAATATAT TAGAAAGATACTTAAAAGCTCTTAAAAAGGAACGTGGAGCGTCGATTTCTAATATCAAGC GTGTACGAGGCATTCTGATTAACTTTTTACAATTTCATGGTGTGGCCCAGGATTTAAAAA GTGATGTCTCCCCTCCTGGACTAACATCTAAACACTTTGCATCGGACAAAGAAATTAAAA AGCTATTCCGCGTCATGCGTAGTTATAACGGGTTAACCGACTACCAGGCGTCAGGAAGAA AGTTTATTCTGGAACGTAACCTTTTATTGATCCACTTCATGTTAGATTATGGGCTATCTA TCCAGGACATTCTCACGCTATCCATGCATGATATACACTTTGGGACAAATACGATTACCC CAGGAGGGCTACACGCCCACAAACGATCCATCACCCTTTCAAAAGAACATATAAAACTTG CCTTATCGTATTACAACAAGATTCCTAATCTTGTTAGACCGCGCCAACAAACGGGCGACC CCTTCTTTGTGGCGTTTGATTTCGGCCCGCAAACATTCCGCTGGGACTATGAAAACGATC AACCCGCCGCTTTAACTCGAATCGCTGTACAACGCATGTTACAAAAAGAAGTAAAACGTG CTGAAATCCATGTAACGCCAACTATGCTACGTAACCGTTTTATACTAAATGCGCTACAGA ATGGCATGAAGCCCTTTGAAATTAAAGCGTTTTTGGGATTAAAAAGCGTTGAGGCCCTGC ATAGATACGTTCAATTCTGGAATAAACAGCAGTAAAAAGAAGACCAAACTAGAACAAATC TAGTTTGGTCTTCTTTTTATTTTAAATTCAGTAATAATTGCCTTTTTTACATCACTATAA AATACCATTATCAGCATTCCCAATATAGTTATAAATAAAGAAAGTCCTTCAATGCCAATA AATATCCCTATAAATATAAGAACAATACCTATGAAAAAGCCAAAATCATTTTCATTTTCA TCATCTTCACACTCATCCTTATCCTTTTTATTTAACTCCTCTCTAGCATCCTCTGATCCC TTTATTAACTCATCAATTGTTACTTCATATAATTCACTAAGTAAAATCAAATTATCAATA TCAGGATAACTTTTATTGCTCTCCCATTTATAAACAGCTTGTCTAGTCACTCCAACCTTT CGAGCCACATCTTCTTGTGAAAAGCTTTTTGATTCACGAAACCTTTTCAATTGAGAACCT AAATTCATATTATTCACCTCTAATAAATCATTACATATAAACCCCTAATCAATAAAGAAA CCATTAATATAATACATGTAAACTAATGGTTCACATATTTAAGCTCTTACTAAATTACCT TCCATATTCAATTAACACAATATTATCAGGAACTAAAAAAGAATCCCATAAATATAAGAA TATTTTTTATCTTTAATTTAATGTAAAATTAGTATGGTATTTGTTTTATGAAAAAAGTGA TGATAAAACGTAGTTAGAAGTAATTGATTTGAAAAAATTAATTTTATTGTTTTTATTAAT TATATTGAGTTTAAATATTACAGGGTGTTTCAATAATACGGCGATACTAGATAAACCTAA ATCTTCAGCATCTGCTACGGTTAAATGTATTAATAAAGCATGGTATAAAAAACATAAATT ATGTAATAGTTTCTTAGGAAAACGATTATTTGTTAATCATAATATACATGTGTTATAAAT AAATTCTCTAAAACTACCTAAAAAAGGCTATCAGCAATGATGGTCTTTTTTAGGTTGGTG AAATTGCACTAGTATGATAGGTGTTAACTAGCGTAAAGAAGTGCCACAATCGGCTTTGGC TAACTGCTACGAAAGCTCATGTCATTGCTAACGTTTGCAGTTAATCATCCACAGTTAGGG TGGACTCCATAGATTGCGAGTAAATGCCACACCCCTTAACAATTTGTTAGGGGCTTTTTT ATACATCCAACAAAATATGACAAAAATGATGTAACTGAATCTGTTATTATGTTCTAGAAA TCTTACATTTATATATTTTAGGGATGAAGTGGATTTATCTAAGAATTAATTACGAGAGCA CTCGAAAGGGTGCTTCTGGTTTGCCTAAATCAACAAGTATTCTCAGGAGGAAAAACGCAT AAAAAAACCAATGTTTAAACATTGGTTTTTTTAGGTGATTACTTCTCCAATTGTCATAGT AGGGGGCAATTAAAAGTGTACGTTTGCACATAAATTAGACACATTCTAGCCGATTCCCTG TACGTTAAGCGATCGGCTATTATCATTCTAGGGAGACCGCCAGCATTTCGGAAAAAAACT ACGCTAAAAGTAGACAAAGTTTTATGCAAAAAATAGGGAGACATAGGGAAGCCAAAAGGC GCTCTAGAATAGGAATGTATAAAATCATGCATAACGTTATAGAAAACAACAAAGGCGAAT CCCTACTCTCAGAAGGGATTCGCCTTTGTCCTTGCTACTGATAATAGGACGTTATGTTAA CCAAGTGTGTATAGAATATACATTGATTTTCACTTTTGAATTTTACAATTCTGTTATACA GGGGTAGAAAGATATTATAATTAATTTGTTTTAAAATAAGTAGAGGATTATAAAGTGTGT TCGATTTTTGGCCAAGTCCTATATGTCTTATCCTTTGGAGGAAATATGCTTAAAGATAAT TTTAAAATTAGTAATATTCCCACTGTTTTATGGGGAAATAAGAGTGAAAAAATTTTTATT GCAGTACATGGAAATATGTCAAATAAAGAAGATGCAGTTATTGAAATGTTAGCTGAAGAA GCCAATCGAAAAGGTTATCAAGTATTAAGCTTTGATTTACCTGAGCATGGAGAAAGAATA AATGATAATACTCCTTGCAAAGTACAGTTTTGTGTTAATGAATTATCTATAGTTATGAAT TACGCAAAAGAACATTGGAAAGAGGTAAGTGTGTTTGCATGTAGTATGGGAGCTTATTTT AGCCTTTTAGCCTATCAAAATGATGTGTTAGAAAAGGCATTATTTTTATCACCAGTAGTT AATATGGAACGAATTATAGAAAATATGATGAAATGGTTTAATGTAACACCAGAGCTTTTG CAAAAAGAAATGACTATAGAAACACCTGTTGGTCAAAAGTTATATTGGGATTATTTATGC TATGTAAAAGAACATCCTATTAATATGTGGAATACAGATACATATATTATGTATGGAGCC AAGGATGAACTGTGCGAATTTGAAATTATTAACTATTTTACAAAAAAACATCATTGTGAA TTAGAAGTCATGGAAACAGGTGAACATTATTTTCATACTGAAGAGCAGTTAAAGGTATTT AAACAGTGGTTACACAAACATATCGATTAACAAAATTGTTATTAAAGAGAAGATGTTAAA CTACTGAGAAATATATTTGAATTATTTACTTCCGCTAACGAGAATTATGTAAATAAAAAA GCCCTGTTGCAAACAAAAACAGGGCTTTTTCAAACTATTCCATACAAGTACTACTAGCTT AAAAGTTTTATATATTATTATTTTTTAAATGGTGGTAAATATTTTGTTGGGTCTACACGT TCACCATGAAGTTTATCTGTTCTTACTTCTAAGTGGAGATGATTGCCTGTCGCTTGTCCT GTTTTACCAACTTCTCCTATTTTTTGGCCCGCCTCTACCGTTTCATCTTTCTTCACTGAC ATCTTACTCATATGAGCATACAAAGTATAAAGTTTCTTTTTATTATAAGTATGCTCAACA ACTACTACATTACCATAACTAGTGAATCCATTATCTTTACTTCCAAATCCAGCAAAGACT ACTTTACCAGATTGAACAGCATCTATTCTTGTCCCTTGTGGTGCTGCAAAATCAAAACCT TTATGTACTCTCCCCTTCTTTTCATCTAAATTATACGGATCGGTAGAAGTTACTTTTTTC ATATCTATAGGCATCTTCGCTATATCTTTAAATTCTGATTCCTTGACTGCAGTATTGATT TCGGACTTCACCGAATCATAATCCGGTGATTCAGCAAATGCATTTCCACTAACCGAGAAT AATAAACCTGTTGCTAAGGTACTTACTATCATTTTCTTAAACATAATTAATCCCCCTTGG ATATCTTTATAAGTTACACAATAAATATATCACTTTTATAAAATTTTTTAATATTTTGAA TTTTTATAAATATTTATTTAAATTTTAGTAATATTTGGATTCTATTTTATCAATTAGAAA ATAGAGGGTTGTCAGAAAGCGTGTAAAACCACATACAAATCCAATTTAATTAATGATAAA TTGAACTACCTTAACTTTAACTTCGATTAAAACGAGGGATTCCTAAGTAAAGAGTTCTAT TAAACTCTAATTTATTGACTATCTCCGTAGTTTTTTGTGGTTAGAAGCCTTATCACTTGA TTGTATAAGGAAAATCTTCTACCGAAAAAAAGAAAAGATACAAATACATTGTGAACAACG CATAAATATCAATTAAAGTTAACAATAAATTTATTGTTAACTTTAATTGATATTTAGAAA TTAAAATAACATAAAATCCTTATTTTTATAGATAATATCGACATTTTTATTTGTTAACTT ATTTAAAAAATACACTTCCAATAATGCTAAAAAAATGTTATCTTGTTAACAAGATAACTA AAGGAGTGAATAGTTAATGAAAATTACTATGATGAATAAGGATTCTGGTAACTCACTTGA TATGAACTTAATTGATGGTTTCTATATCGAAACTCCTACAAACGTAGTAGAAATCAGTAA AGATGAAGCTGACTCTCATTTTGTAGCAACCATTACTAATCCTAAAGAATTATTATCTCG CCTACTTATTTCAACAACAATCCCAGGAGAAGACACTGAACGATTCTTCTTAGTTGGCGA CGAAGCTGGAAAACATGCATTAGCTAACAATCATGTCAATAAACTCCATGATAAAATTAC AAGTCCTATCCCTTACGTAATGTTTTTATCAGCTGTTTCTTTCTATCATGCTATTAATGA AACTCGCGAATCGGATGATAATACAGTTGAAATTGAATATTTCCAAACAATGTTACCTAT ATGGTTATTAAAACGAACAGCCAAATTTAGTGAAGCCCAAAATGCAATGGCGGAACGATT TGCTGGAGAGCATGAAGTTACAATACATACACCAGGAATGGAAAAAACATTAAAAATAAC TGTAGAAAAGGCAACTTGTCGTATCGAAGGAGAAATTGCACGTTTAGCAATTAAAAAGAA TTTTGAATTAGAAGATCGTGAAGAGGCAAGACAATTCGATAACAACGATACAGTACTTGT TGATATTGGCGGCGGAACGATTGATTTAGTATTATCACCAGCCGGTTTAAAATCACCTAA GAACCGTGATTCAATGCAACCAATAGACAAATTATCTTATCTATCTCACATTGAAAAATT AAGAAAAGAAAAGTTCCTAGAAAAATTCTCTGATTTACGTTCATTTGAAACATTTATAGT GAATAATTTCCAAAAACCAAAAATGGAATTAGTTGATGGAAACACTGGCCAGCGTGTAGA TTTAACGGACAAAATTCGTTCTTCCTTAAAAGAGTTTGCTAAGTTTCTAATTTTAAAAAT CCAAGATGTAATGCCTGCACCAGCTGATAAAGTTTATAAATATGTTTATTTCGGTGGTGT TGCCCCAATACTAGAAACTAGCATTCATGAAGTCATTGAAGAAATGTATGGAGCCGAAAT TGCTCAAGCAAATCATATTTTCTTACCAGATTCACGCAAATTAAATTTATATGGTCTTGA AGTAAAAAGTCGTGGCGAAATGCTGCAAAAGACAGAAAAATAAGTATAGCCAGAAAGGAG GAGCCGCATTATGGGGCGTACCAAAAAGACCGAGAAACAAACAGTCTTTGGACTTCGAAC AGATCACATGAGCGAAGAAGTTTATACTCACCTTGAGCAAAAAGCACGCTCAAAAAAGCT TGCAACTTATATTATTCAATTAGTTGAACAAGACTTAGCACAAAAAGAGCCCTTTGATGC AAAAAAAGAACTTCTAAAAGTCTCAAAAAATCAAGAACAAATGATGAACGCTATAAAACA AATTACACAAACCATTTCAGATCTCCAGGTGGCTCCTGTATCTGCTGTTCTTATGCAAAG CGATGATAATACCCATAATTCCCTGGCAGACGATTTATTAAAAGACGTAGGTCAAATGGG ACAATTAATAACTAATACCAACATTACAGGATCATTAGATGAAGACGATTTAGAAGATCC AGATTTCTAAAACAAAAAGAGTTGCTGTCATATGAGCAACTCTTTTTGTTTTGTATAAAC TTAAAATATCCCAAATAATTTCTTCCTTTTGGGTTCTTGGTTAGACATATCAGCTTTAGC GTTGATTTTTTCTAATTCCGTCATAATAAGATCAAGTTTCTTTTCTAATTCCTGATTTTT TTTACGTTCCGCTTCAAGCTCTTGTTTAAATAAATCATTGCTTTGTCGTTCAATTTCAAG TTCTTTTCGAAAACCTATAAATTCAGTCTTGATATCTTCTAAGAAATTTCTAATTTCACT CGATATGGATTGTAGCGCGTATTGCTCTTCTTCACTCTGAGGCCTTGTCACAGCAACTTC CGAACGCGCTACACCCTGTGTCGCACGGGAATGCTGTGTCATCAACACGCTAACAGCGTG ATTCAACGAAACCTTAGTTTTTTCTCTAATCTCTTTTAAAGTATTAAAAACTGTTACATC ATCAGCATGATACAGTCTTGTATCGCCATCTTTATTAAATTCATAGCCTTGTTTTTCGAG TTCTAAGCTATATTTTCTGATTGTACTTTCTGCTAGATTGGTGACACGGGAGACATCTAT TGTTTTTAAATACACTTCACTTACAACATCATCTCTTCTCTCCATTCAACCACCTCCATT ATAGTATCGCTACACTCTTACCACAGTATTATTTTACTAATCCTTAATACTCATTGTACA CTTTTTATCCCACTTGAAAGCAAGTTTTTTATCTCTCAATTCCTGCTTAATACTTGCAAG GGAATCCCATGGCGCTCCGTATTATTTTCTATTAGTCTTCGCTTTAGCTACTCAGCATAC CTGTATCAATACTATAGCACCCATTAATTTTGATCTTTGTTATAGGGATCCCTAATTTCA TTTAATTACTCTGTTAATTCCTAGAGTACCTTTTTCTGTCTTCCCATTACTTTAGTTTAT TCTTTAACAACCACGCATTCACCTTGTGCTATAGCATTGATATACTCTTAAAACGAGATT TGGATGAAATGCGCGAATCACAAAAACTTATTACAACCACCTAAGAACAAAAACAAGGAT TCTGGTCTAGGTTCTTTTCAAGAAATAAAGACGTATGATGGAGTTTTTCATCATACGTCT TATTCCTGTTCTAACATAACAAAACCGGTTTCTTTAGAAGGTTCTATCCCTAATTCATTT AATATTGCCACCAACAAAAGTATTTGTTTTTCAAACCCATTATTGAATGCAATGTCAGTA ATACGAATCACTTTCCATCCATTTGTTTTCATGTATTTATCCCGTCTACTGTCTCGTTTG ATTCCTTCTGGTGTTCGATGAAAAGGCCCATCAATCTCTACGTCTATTTTTAAACCATTT GGGGCAAAAAATGCAAAATCTAACTTGAAACGCTTATTAGGTACTTTATATTGTACAGTT GGATAATAACCTTTAAATCGCAATGCATCATATACTCGCTTTTCTAATTTGTTAGAGCAT TTCACCCTTTGTGAATCATTATTAGGGTTATAAGTAGATGATGGAGTGAGAATTTGTGCC AAAAGAAAAAATATAATTGTGCAACCCAATACAACGAATAAACCTGTCATCTTTTCACAC TCCAATAAAAAGTTTTAAGTTAATGCTCAAAACGTAATATACCCAAACCCTTTCTATATA TCCTTTTCCAACTACATATCTTATACAAATAAAACAAAGCTGTCTTTTTTTATGTTCTTT AGATATAGATTAAGTTGAATCTTTTGGGAAAGTGCTTTGCAAAGATTTGTTGTATGATGC GTAAGTCAAATCTTTGCATTGTATGTATACCTCATTCCAAGTGAAATTATCAATAAATCG TTCGTGTAAATACTCTATGAATCTCGTTCTCTTGTATTTTACTTAAATTTAAGTTGAATT GAATTGTATATGAATTTAACTTCCTGTCCATAATTGTAAATAAAAAAATAAGGACAGGAG AGTGAGATAAATGTTTTTCCGCAAAAATAGAACTAAATTAAAAAAATGGTTAGATCGGCA AGGAATCGAACAACAGGAACTAGCCAAAAAGTCGAAGGTTTCTGTTCAAACCATCAGTAA AGCATGTAGAGATACAGATTATATCCCCAAACCTGAAATCATGAAAAAACTATTAAATGC TATTAGAAAAATTGATCCTTACGCCAAAATCAATGACTTTTGGGATATGTAAAAAGCACA AGAAACAGTATCTTGTGCTTTCATAATTTTACTTTGACTGAACCTACTTGAACCGAAATG TCTTTAGGTTGCTGTACTTGTGCAAGAAAATGCTGAATAGAGGGCGCTTGAAAAATACGA AAGTTAGAACTAGAGATTGGATATTTGAGGTCAGTAAGGATTAAAAGAGAGGGAAATACC ATATTATGTTTTGGTTGCCACGATTCTTTTTTCCATTCCATGCTACGAAAATACGATTCA TAACGTTTTATTTTCGTTTGGATCGTAGCCTTATTATAGATGGAGTTCTGGACTTCTATA AAAAATGGACTTTTACGCCAAATGGTAAATATATCGGGTTCCATATAACCTTTCTTATAC TTAGGTTCTACTTGAAATATCTTCGGTCTTTCGGTTCGTAATAACTGCTTATATACATCT ACAATCGCTAAAAAATGACGTATCTTTTGGCTTCCTTTACGAATGGTATTTGGATAAGGA AAATACACGTATGGACGTTGTGATGTATCTACATCAATATATCCTTCGCGGCTTAATCGC TTTGTAACAGTATTACAGCATGTTACTGCATTTTTAACATTTCTAAAATGAAGATCAATA ATATCATCACGCGACATACATCTAAATTGTTGTAAATGGCATATAATTTGCTTATCTCTA TTCGTTAGCATCATCTAACACCCCAAAGATTTTATCTTCTCGATACTCTGACTCTTCCTT CTTTACACTTTGCTCTTTAGATAAACGATACGGTTCTATTATTTCTTTTGCCTGGTCCAA TGCCAAAAAAGGAGCCTGCACCTTTTTTAAACCATCTAATTTTAAAATCATTTGGCCCGA TTGACTTAAATTTTCTGATCCAGGCGTCCCCACAATGTTACTGTTAATTAAGTCTGCACA TTTAAAGCCCATTCTTACCGTCAAATTGAGCTTTAACTTACCATCCAGTATTTTTGCATC TGGACGTTGCATACTTAGCATGAGGAAGATACCAAGCGATCTGCCGACAGCTGATATTTT TTCTATTATGGTGACACATTCCTTTTCGTCCTGTAGCATTGCTACTTCATCAATGGCAAT AAAAATATAGGGTAAGGGTTTATCTTTTGTTATTTGATTGTATTCATCAATATGACCCAG CTCATATTCTTCCATTAACTTTCTTCTATGCAATACCTCTTTCCACAATTTTGATAACAT ACTTGTCATTTCATGTTCTTCCATGCAAACATACTTTACGTGCTTCACTCTTCTTAAAAA ATGAAACTCTGAATTTTTTAAATCCCCCAGGTACAAATGTAAATGCTCTGGTGACATATG TTGGATTAATGTGGCTAAAATTACGCGCACCATACTACTTTTTCCGCTTCCTGTTTCTCC CGCAATTAGTAAATGAGGTGTATTTGAATCAACCATATCATACACAATTGTATTTCCGAA TTGGTCCCGTCCTACTACCACAGGAAGACGATACGGTTTTAATAATGGTTGCCATTGTTT ATAACTGTAATCGTAAGGCTGTAAACTTGCATTAGAATGAAATACATGGAGTACGAACTT TTTAATAGTACCTTCCATCATTAGATTTTCACCTAGTATTTGCTGAAAACAGAACCATTT CTTATGAATTTGAGCTGGATCAACGCCATTAGGTAGTGTAAAAGTGTACCGTACACTTTC CTTTCCTTCGTATACATCATGAATCGTAGGATAAATGGGGACCTTTCCACCTCGTGTCAT GTGCTCATCATATAGCTTCGCTTTCTTAAATACTTCTTCTAACTGATATTTATATTTTTT CTTTTTTAACCATCCTTTCATTAGTAACCCTCCTTATAACATGAGTAAAATGCGAATAAA CGCATAACCAATGAACCCAATCCCTCCAATTCTTACACCGTAATACAGACCATTAGAAAG GAGATTGGATGCAAAAACATAATCATTTCGTACTAAGTATTTTTCCAACAAAACAGCTCC AATTGTAAGGCCGCCTACTATTCCCAGGGCTACATACGTATGAATAAGTGGTGATGACAT ATGAAAAAATGCGAATGGACTAATAGGGCCAATGCTATATATTTTTGTTTGCTTTTTCTT CTTATAAGATTGGTCCATAAAGGCTTGAAAAGAAATTGTTTCTTTTCGCTTTAGCATGTT TCCCCTCCTAAAAAAAGAATATCGTTAACAAATTTGGTATCCAGTCCAAAACAAAACATA TACAATCTAACACCATATGAGAGGTATTCTTAATGAGTTCAAATGCATCAACAGGTACAT GTGTTATGAAACTCGCAAGTTCGTCTAGCAACTTTCGCATTTCTTGTGCTGTACTGCCTA ATGGTTCAGTCAGATACCAACTAATCCACCTATATAAGAAATCTGTTGTATCCGTTGTAC TCATTGCATTTTGATTGAGCGCATCCCACCCGCACATAATTTCGTTTGTTGAACTTCCAC ACCATTCTGTAATTTCTTTCACATTTCGAAATTGCAGACTAGGTATGTTGTTCCATCCTC TCGTTAGATCATCCCTCAAATAATATTTAATTTGATTACCAATAATCTCATAAGAATTAT TCATTGTTCCTCCTACTATAAACAAAACTCAAAATCCCCTAAAAACATGTGCCGATCGAG GATTTCTTTTGATAGTACTATCATGATAGATTCTTTGGTTATCAGGTTGATATCAACTTT GGTAATTGCTTTGGTAAAGAATATGTATCACTGATTGTCTGATATGCAATTTTTGATCTT GTCTTGCAAATAAACCTTGCTATCGTCCCAAATTCACAAACTTTAATGATACAATATAAG AGGAATTTTAAATCAATTCAGAAAATAGAGGAGGGAACAACTATGTCACTTCTACAGCAA CATTTTGAAGAAAGAAGAGAATACGTTTTCAATCGTCTTAAACAACCCGAATACATGGAA AGAAGTATAGAAAAAGTTCGTCAAGCTCAAAAAGAGATTAAAAATACAGTACGAACAATT AAAGATTTATTACTCCTGGATAAAACAACTGATCCTTGTTTACCAGAAGTTGCTCAATTT TCTCTTCAGCACATTATTAATTCCGAGTCGTTTGAGAATGTCAAAAAACTTGTTCCATCC TCTATGAAAAAATTAAGTGAAAAAGAACGCGCAAAAGTGTTAGATGAAACATTAAGCGTA GCAAACCAAGTCATGAATTTAGAACGTACTGTTTTTATCATGATGTTTAATGCAAAAGAA AAAATCCTCATGGATTCTTATAAGAAGAAGCGTAGATCACAAATAGAACTTCATTATGAT GTTGCTGACAAAGAAGGATTTGACAAAGCGTTTTATGAAGAACGTATTGATTCATTACGA AATGACATTCGTGTGATTTCTTTCAAAAAGCTATGTGAGAATGAACCCGCACCAGAGGAC TTAGAACTATTCCAACAACGTTATGAAACAATTGTTTTGCCAAAGATACAAGAAATTGTT TCCCTAATTGAACCAAGTTTAGTAGATATAGACGTATTTTTAAATCCTGTTATCGAATAT GGTGTAGGAGACATCACCTTAGATGAAATGATTCAAAAACTACACAAAAACCTTTCTTTA TTTCACGAATTATCAAAGGTTGAATATTGCCCAACAGTTGAACTAACAGTAAAAGAATAT GTATTCTTAGAAGCTATGAACCGTTCCAAAGAAGGAGAGGAGTTGCAACCATCTAAATGA TGCATACAAAAGGAAATTTTTATCATTTTACATATAATAAGATAACCACATAGTCCATAT AACGGATGCTACATAGGGAATCTTTTAGTGTATCGCCAAGATACAACATAAAAGGAGGGG AACAAAATGATTCAACTTACAGTAAAAGGTCAGCCTTCTCATATTCGTCATTTAGCTCAT GATCCGGAATATCTATTTGCGATAGAATTCCATGATCTTACAAAACAGACGACATATATT AATAAAGAAAAATGTTCAGTTAAAGTAACAACTCTGGTTCATGCAGAACAATGGAATCGA TTATTACAGATGATTGCAGAAGGGGGAGATACATTAGCTGAAGCCAATGAAATTATACTG GAAGGAAAGATGGAACACACACCTGAGGAGGTGTATACTTTCGCACCTATCCATATTATG TACCGCTCTCATTCACAACAGAAACAGGAAGAAATTGAATCCGAAGTACATGAGAAAAAG TCAAAAAGGGTAGCTTCAAATACTAAGCCCACTGTATCTAAGCGTGTGGAACAACTACAT GCAAAATACGATGGGGTTTGTCAAAAATGTGGACAGCGATGTGATAAGCGGGTCGTGTCT ATCAAAAAAATACAATCCAAAATGGGGATTGTTTGTCCAGATTGCAAAAATGGAACAACA TTTTTAATTACAGAAGTGAAGGATCAGTTACAACAAGAGCTTCTTCAACAAAATTTATTT TCTAGAGAACAGGAAATTCTATCTTATTTTCAAAATTTTTGTTCTCAATTCGCACTTGTA AAGCATGAGGAAACATATCGTATATATTGGTCATGGGAAACGAAACAAATATATAGAAAA GTCTATGTTTCAAACGAGGGTACTATATATAAAGTTAAACTAAACGCAGGGGGAATTTGT ATTCCTTCAAAATTTACCACTCACATTACTATCAAAGAAAATACATTTCGAGTGTTCCAT CCAACCACGGAAATGCGGATGGATAGAATCAGAGCATTATCAGATGCGCAGAAGGCAAGT ATTGGAGAAGAAGAAATTGAAAAACAAATTCAATACTACAAGGATAAGAAAGAATTCTCA GAAAAAATTATTGTTAAACAAGCAGAGAACTCGAAACGATATCAAGTATTATCTGGATTT ACAGCCTATCAAGCTGCAAAGAAGATTAAGCCTAAACATATCTATGATTAAAGTACATCA ACTACATCCTGCAACAAGCGGTTTGAGAAGAGCTCGAGAATTCAATTTGAGAAAAATGAA TTAATTTTTTAATAATGATATATGATTGTATTTATCTGAGAAATAGGGAGGGAATTATAG GATGCAAAAACAGCAGTTATTTGATTTACAAGAAGGAGATTGTATATATGTGTATTCTGG GGGACATTTAGAAGCGCAAGGAAGATATATAGGTGTAATAAAAGATAAAAATGAATCCTT TTTATGTTGGAGAAAACATAATGGAAATGAGGTATACACAAATTTAAATGGAATTAGGGG TATGTGTAGCAATGGAACCAAATCACGCAATAAGTATTAGCGGACATTCATTTTAAGGAT TATTTCGTATATTAGTGGACATAAAATAGCTATTTGTAATGACTTAATGTCCGCTAATGA TACTTATAGGACATTACCAGTAAAATATGCTTTTGATCTTTTTACAAAACTGAACTTTTC TGTTTCATAAGAATGAAAATGTATCTAAATCTAAACGATTTTCTTATAAAAAGTGCATTT TTATCATTTCTGATGTCCGCTAATGCTTGTTGCGTTATCCTGTTCCATTGCTACACAAAG GCCTAGTAGGGCTAGGAATGGCGTCTGAGGCATCAGCAGGGCCAGCTCCCGCTCTAACTT CTTTACATGTAGTAAAAGTTGAATCAGAACTGGGTGGGGTAGAATATGTAAGCCCGAATA ATCTTAGTACGATTAAGGATCATGGAGGAAGTTACCTATACATTTATACAAGGGAAATGG GATATGGGCACCTTCCTTTCGCTAAAATGAATGGCGAGAAAGCAAAAGAGGTTTCTTCCA CAATGATAGATGTAAATGGGGATCGTATTATAGATGGATGGGAGCGAAAATGGGATGTAT CGGGTAATCAAAGTGGGAGATTTGAATATGAAAATACTTCCACGAACTATCCTTGGAATA AAATGTATACAGCATTAAATATTAAATAAAAAATGCATTGTTTGTTGATGAGTATAGAGA GAATTAAATTTTAGAATGTTCAGAATGCATATTATCAATTTACTGTAGATTCTAATTATG TAAAACTAGAACCAAGATGAATGTTTCTTTAAAACTTACCCCTAATAAAGATTTAAAGAA AATTTTGTTTTCGTCATCATCAAGAAGGAAGCCAATTTCTATACAAATTGGCTTCTTTTG AATCCCTACTCTTTTTTATTCCTTATTTTAACACATTTCCAACATTTGTATAGAATATAA TCCTGAAAATTCAGACTAGATGACTCGTTTTGATGAGAACAAATGTAGGATTGTTTGGGC GTAAAGGATAGACCGAGCCAAATGGGATACATGCAATCTGCTTTCCGAAAGCGTTGTCAT ATCCAGTATAATAAAGATAACGATTATACTGAGGGGATTGGAATTATGAATAAAAGAGAA ACGAGAATTCGTATTTTAGATTTGCAGGATCAATATTGCATGGGGTGCAAGCACTATAAT GGGGTACGAACATATTGTATGGACGATTGTAAAATTGGAAAAGAACTATATCAATTAGGA ACAGGCTTGATTGGTGATGAAAAGGATCAGAAACGGAAAGTAAAAATGAAGTGGGATTCT GTTTGTCAACAGGCGCTCTTGTTAAGAAGTAAAGGATATACCTATCAAAAAATTGCAAAC CAATTAGGATGTCATGCGAGTAGTTTACGTAAACAGCTCCATCAACGTGGACTGTAAAGA TATCAATTAAAATGAGGTGAACGCAACATGAGGGTAGTTGCGAAAAAAGTACAAATGCTA CGCTTACAGGAGAAGCGTAATAAGCATGAGGAAAATATAGAAGCAGCTTGTGCCGAACAG CTCAAAATAAAAAGAGAGTGTATCGAACTAGAAAAAAATATAGCGAAAAAACGATCCCAA AAGGTACAAACGACAGAAGAAAAATGGGATGAAAAATGTAATCAAGCCGTACAATTATTT AATCAAGGAATGGAATATCCAACTATTGCAAAAAAAGTGGGATGTAATGTGAGTAGTTTG TATAGAGAGCTTAAGAAACGTGACTTACTACAAATGCCAAAGCAAGTAGCACCGTGTAAA TCAGTAAAGGCCCCTATCATACCACCACAAACAAAAAAATCAAAGTTTGAACGATATAAA GAATACTATATGTATAGATAGAAAAATGAATATCCACATGGTAATGTATCTAAATTGGGA ATACTCAATTGTTACAATAAAATCATACTCTGCCTATAAATCAAGAACTTTAAACAAACG TTTGATTAAAAAATCGGTTCTGTTACAAAGTTTTTTAAATGAAGCTAAACTGTAAGAAAA ATGTGTTGAGGAGAATGGTACATGGGATATTTTAAAGGGAAACAATTCAAAAAAGATATT ATTTTGGTAGCCGTTTTTCTTTAAGTTATCGTGATGTATCTGAAATTCTGAAAGAACGGG GCGTTTCCGTTCACCCAACAACAATCATGCGATATACAAACAAAAGAGAAGTCACATTCC AGACTTCTCTTTTTCAACGTGCAAGGAATTACAGAAGTTATTCAGAACCGCTTAAACGAT AACTATATTTTGCAAACGAGTTGGTGTTTTTTCAAACTTTGCAACAGAACCCTTTTTCGT ATACAATACAACTTTTTGTGATAAAACTTACTTTTTTGTTTCTATATAGTACACGTATTA AATGAGTCGTGTGAATATGATTCATTAACATAACAGTTCACCATATGAATAAATATTTGA AGATAATTTCATTTTATCAAAATATCCAAATTTAATATAGTCTTGTTTTTACTATACAAT AAATACTAAACTTATATATATAAGTTAAAGAATAGAAAAGGGGACTCTTATGAATAAAAA AGTTTTAACAGCTTTAGCATTAAGTATTCCCGTATTCATTTCAACAGGAAATATGGCTAG TACTCAGATCAATACCCAGCTAACATAAGTACAGGAAATACAGATTCACAAAAACTATTA AATTATCAATAGTAAAGAAAACAAGTTGGGTTTCAAGTTGTAAATATTGAAACAGCAATT AGAGAATCTATTCTAGTTTATGTAAAGTATATGCATGGATTTGGGGAAAGTACTAGTCCA CGTGTAATTATTAATGATATCAAGTTAATGGATGTAGAAGGAAAATACATGGATCCAGAG TATCCAATTCAGTCTAAATTAATTAGCAGAGGAGCTGAGAAGTTAGTCCAATCTATAGAA GAAGATATATATAATGATCCCCCTTCAGCTGAACTAACAAAATCACATACATTTCAACAC GCCGTATCTAATGCGTCTACTCTAACAAAATCTATTACATATAGCCATAAAGGTGGCGTG AAGTTTACTTATAAAGCAACAATAAACCTGATAGGCGCTGATTCAGAAGTTGGTGGTGAA GTATCCTATGAATATACAAAGTCTAATCAAGAGGGCACATCGGATTCAAAGACATTTTCA AAACATTTAGTTCAACTGCATCTGCAAAACTACAATCTATGTCAAGAGCGAAATTAGTTT CAAATGTATATACTTATCCTGCAATATATGAAATTAAAAACCGTAGCTTTTTTACCGGTT CTGTTCAGTTTTCATATGTATTATCTACCACCCCTAATAAAGTGGAAACAAAAACAGTAT CCTTATATGAATTATTTACGAGAACAGATTATCCAACAAGAGATAGCATTGCTGAGAGAT ATCATATGTGGTCACAGACATTTTGGAAGCCAGAAAGTGGAGAAGCTGTGCAAGCTCTTT TATTTGAAGGGACTTCCATCTTAAATATTGACGAAACATACCGCACAGAAACCTGTTTAA AAGCTATAAAAAGTATGTAATATATTGTAGATTAGGGATTTCTTTATTATCCTTAAAGTT ACACGGCAAAAACTTTTCCAGCTATTCAGGCCTAGTGACAGAAGAGCTGTACTTATGAAT AGTAAAAACATGTAAAAAAGAATGGGTTTTGGAAACAGAACTAAGCATGAATACAATCCA TTGCAATGTCATCACCTGTTACAATATATTTCTTTTGCAGTACTATACACAGGACAACGG AGGAAATGAGATGCGGAACTTCTTTGAAGAGACATACATAAATATCAATTTCAAAAGAGA ATTCATACAGCTCATTAGTGATATTAGCGAATATAGGGGTAAGTTATCCGTTTACCAATC ACAAAAACATTCGACATTACATCATTTGGAAAAGAACATCCTACTTCAATATATGATAAA CTTCACCACGATGTACCAAGATATACGTGTTCCGAATACAAGAGTAAAAGAACTATTATT AAACGATTTCCCACCTCAAACAACAAAAGAAGACGCTGTGTATTGCTACTATCAAACGCT TTCTCTCGTACACCAAACTTTCGACACGCTATCCATTAGCCCGGAAACCATTCAAGAATT GCATTTCCAGTTACTACATTATAGTACCTCGGATAGCGGGAAATGGCGTCAAAAGAAATT TCTGATTCCCGGGATGCCAGCATACGAGGGACATATCAGTAGTTATCGACTTCTTCCACA TGAGCAAGTTCCACAATCTGTAAAAGAATTATGTGAGCAATATAACGCGTTACGTGCCAA TAAAGACATGCATGCCCTTCCATTAATTGCCCGCTTTATTTTAAACTTTTACTGTATCGT CCCTTTTGATCAAGGGAATGGAAGATTGGCTATCCTATTACTGCATTTATTATTACTACA GAATGGGTATACGTTTATAAAATATATATGTTTAGACAAATATATAAAAAAGAACGAATC AACTTATTACGAATCTATTTATCAATCTTCTGCGAATTGGTACTACAGCGAACATAATAT TAGCTTCTGGTTAAAAAGCTTATTAACGATACTAGTAGAAGGATATCAAGACTTGAATCA AATACTATTGGGTTCTATAGATAAGCAGACAAAAGCGCAACGAATTAAGCGCTATATTCT GCAGCAAACAGACACATTTACACGAGAGGATATTCGCGGAGTCTATCCAGACGTGGCTGA GAGTACAATTAGTACAGCTTTTGCTGCTTTACAACATTCCGGTCATATTAAGCTTATCTC AAAAGGAAGAACCGCAAAGTGGATACAAGTTCACCATTTAGATTAATTAGAGGGATGCAA CTGCCCATCCATTTAAAGAGCATTACTACCACTAAATAAAAAACACTCTATTCGTTCTAG AAAATTAACTATATAGGAAGCTTACACATTATAAAAAGAAAATATAAAACTCTTACATTC TCTTGCTTTAAAATATAATAAATTTGTGTCAATTCTTATCCCATATTCTCTTTTTTAATC AAAATCATAGTATTTTTTCTAGGATTTCACAACGTTTAAAGTAGAAATAAAACAGTTTCA AGTGAGAAATGAGTTTAAATAAGCGATTATTCATTATTTAATCTGAAAGTTGAGATAATT AGCGAAGGAAGCTATCATAATACATGTAGATATTATTCATTTAAGTGTTCTGAATTGGAT CATTTAAAATGTTATATATCATAATTGAAAAGGGAGATGAAAATAATGAAAAAGAAACAA AGAATGATCGTAGCCGCAGCCATGGCAGCCACATTAGCTACAGGTGCATTGCCTACTACA TCAGCGTTTGCTGCAGAAACACAAGCTCCTATCCAACAACAAGAGTTACAAATGGGTATT CAACCGTTCGCACAGAGTAATTTAGAAACAGCAGTTAAGGCTGCCTTATATGGTCCGGAA GTCAAAAAAATAAAAGTATTTGAGCATGAATTTAATGTGAAACCAATTGAAGTGGTAGAT TTAGGTGGCGGGAAAAAATATGTGAAAGGACAAATTTCTCATCATTTAAGTTTCCGCCCA GATGATCAATTGTATTATGATTTTACAGTGAAAGACGGAGAAGTAATGGGTACGCCTCAA TATCATATTGATAGAGGTGGTTTAACACCATTTGCAGCGCCTCTTTTATCAATCATTGCT GCATATAATGGCATTCCAGTTAATCCAAATGATTTAAACACACTTGGTCAACAGATTGGA AAAGTAATTGATGGAAGCTGGGAACATGCAGCACAATCTATTGCTACTGTAGTTAGTCTA AGTTTTAATGAGAAGTAGATTTTTATCGGGATTTAATTGATGCGAAAACAGGCCTAAATA TTCTTACAGAGGGTGCTGCTCAGAAGTAGCCCTTTTATAATAAATGATGAAACGAATGCA TCTCAGTTTTTAATATGTTAACCAATCCTCTTCAGATGCATGAACCAATTTACCATTGTA TGTCATAAAATAGGAGTCTTGTTTAAGACTTCTGTTTTGTTTGTATAAAAATAAGTACTT CGATTTCATTTTAAAATCCATAAGGGATACAATTAAACACACTACTCCCTCAAAATTTCA AAGAATCGCTCCCCCTATAAATATTTATAATAAGATATTCATTTTATGAGATTATTCACC TTAAAAAAGGAGAGATAGCATGAGGAAAGTCTTAAAAAGAAGCATTCTTACTTGTTTAAC ATTGGCAAGTTTATGTACTACTACTGTATTTGCGGATAGTCACCCCGGTTATTCATATGA ACCCAATATAGGCTATCAAAATTCAACATGGATGTCAGAATTAGAGGATTCGAAAAATAT AAGCGAACTATCTATTCCAGGGACTCACGGTTCAATGGCTTTACATGGAGCAAGTGTTTT TGATGAAAATCTGACTAGGAATCAAACTATGAACTTATCCCAGCAATTAAATTCAGGTAT TCGCTATGTAGACATGCGAGTGAAACGTGTTAAGGATTCATTTGCAATGCATCATGGAAT TGTTTATCAAAAAGCAATGTTTGAAGATGTATTAAAAGAGACCATTCAATTTTTAAGAGA TCATCCGAAAGAAACGATTTTAATGCGTTTAAAAGAAGACACTGACCCTGAAAATCGCTC ACTATCATTCGAACAAATATTTAAAAATTATAAAGATCGAAATGCTTCTTATTTTTGGAA CCCAAATTCTGTATCATCTTCAGAAAGAAATAATCCAAAATTAGGAGATGTCCGAGGAAA AATTGTACTATTACAAAATTTCACAGCATCTCAAGAATACGGTATAAATTATGATTCTTT ATATACCCAAGATAAGTTTGAAGTTGGTATTGGACCAAACGGAATCTATGATAAATGGAA TTCAGTGAAAGCCCATCTTCTACAAGCGAATAATAACTCGAAAAATGGGAAAATCTATCT AAACCATTTTAGTGGTACGGGAGGAGGATTAGCGGTATTAACTAATTTTTATCCTTGGTT TGTTGCAAGTGGAAAAGAAAGTAGAAATACAAATAGCAATCAAAAGCTGATTCAAACAAA TGCAACAAATGAATGGGCAGATTTCCCTCGTGGTATAAATGGACAAGTATTTTATGGTGG AATGAACACTATGGGAACTGATTTTATACAAAAAAGTGGGATGAATCATGTTGGTATTAT CGCCGCTGATTTTCCTGGACCAGGTTTAATAGATAGTATTATTCAATTAAATGGAATAAA TTTAAATAAAAAGAATAATTAATTCCTAAAATTAGATTCACCTTACAAATGTTGGCTTGT GTGCATATCAATTAACTGAAGACTGTTCACTACCTAAATGTACAAAAGGTACCTGATGCA TAAAAAGAGGAGGACAGATTCCTAGACAGAGCCTAATAATTAAAAATACGTTCAAATAAA AGGGTTCACTATTTATAGCGAATCCTTCTGTTTTTGTGCAAATAATGACGAATCAAACGT TTGTTTAAACATTACGGCATGGATGTACCCTGTTTAACATGTATAATAGCAACCCCACCC TATCAAGGGAATCCCCTTAACAGGTATTACGTCTTCGCCAAATTTTGCAAGACCCGTTTA GGAAATCGAGAGGGATGCAAACGTCTCTGCTGTTCTTTCTATATAATAGGAAGAAACTCA ATTATCCTTTCTCTACATGGCATTCTTTTTTATCGACATGTTTTGTATTTTCTTGCGCTT CATATTCTTTTACTAACTTGTAAAAAGAAGAACGCTTTATATCATATTTTCTCATCACTC CGACCGCCGTAATCTTTCCAGATTGCCATGCCTCATATGCCTCAATAAATTGCTCCGTAA TTTGTACCGGTGGTCTTCCTATATGTTTCCCGTGCTTCTTTGCTAATGCAATCCCTTCTG CTTGTCGTTGTTTGATATCATTCCTTTCTTTTTCTGCAAAGGCAGAAAGAATGGTAAGAG TTGCTTTTTGTACAGCCTGTTGAATGATATCATTTGTACTTTCTCCACTATAATTCACAT TAATAAAAGGCTCTTTAATAAATTGTAAATTAATTTGCTGTTGTTCGTAATATCTAAATT CTTCTAGCACATCGTTCATGCTACGACCTAATCTTGTTAAGGAATCAAAAATAATGGTAT CACCCGTACGAGCTAATCGTTTTAGCATTTGATAATTTTCTCTCTTCATATTCTTACCAG ACTGCTTATCAATAAAAATATCCCGATCTTCTATCCCAAGACATTTCATATTTTCAATCT GGCGTTCTTCGTTTTGGTCTTTACTGGAAACTCTGACATATCCAAACTTTTTATATTGCA ATTCCTTCACCTCAACCACAATTATATCTCATTCACGTCTGTAAAGGTATATAAAAATTA AAGACATCTGTAAAATGAAAACGCAACTTTTATGGATGCGGTTTTCCCTATGTTTCTATG AATCTGTAAAAGTACACCTTTACGAACTACTAGATTTATTCTTCGCTTAAAAGAAACATC ACCATAAAAAGAAAATTGTACGTTAAGGAAGTTTTTTACATGAAAAAGATTATTCTTTTT ATAGTGTTTTTTAATCCTAACTAGAAATTATTTATCAATATCTATCTAGGAAGAAATTTG GAGGTATTTGTAAAAAGAAAAAGAATGTTTATAATTGCTAGATAAAAAAATTACAAATGT AGGAGGATGTTAAAATGGAAAAAACAATGATGGTAGGTACAACAAATATGATGATGTCTA TGGAAAAAATGATGTGTGAAATGAAGTGTATGAAGATGATGATGAACAACATGATGCAAA TGAATGTAAACATGGATAAAGCTATGGTTAATACAATGCATGAATGTGATGAAATGATGA CTTCTACTATGTCTATGATGAAAGCTATGAAAGAGAAATGTTGTTAAAACATATTGGTAT TCCATTCCGTATAGCACATGGTCTTCTATATGGCTTTTAGCTGTCATATATGAATGTACA TTTGCATTTTATTTCTTAGAAGACGGGTCAATATTGACCGTCTTTTTCGTTTGTAGACCT CACCTGAGGTAAGGTAACATCGCCATCAAGCTAAGGGGGACAAAACATAGCAATGTGTAA AACCCTTTTTGTAGTGCTTCAATAAAAAGAGCTTTATTAAAAAATGGAACAATCAAATAG AAGCGAAGAAACAAAAAAATCGAATATGGCCTTTGTGTAGCAATGGAACAGGATAACGCA ACAAGCATTAGCGGACATCAGAAATGATAAAAATGCACTTTTTATAAGAAAATCGTTTAG ATTTAGATACATTTTCATTCTTATGAAACAGAAAAGTTCAGTTTTGTAAAAAGATCAAAA GCATATTTTACTGGTAATGTCCTATAAGTATCATTAGCGGACATTAAGTCATTACAAATA GCTATTTTATGTCCACTAATATACGAAATAATCCTTAAAATGAATGTCCGCTAATACTTA TTGCGTGATTTGGTTCCATTGCTACACATACCCCATATTCTTCAGAAGTATATTAGACTT GCAAAGTTAGAAGGATTTAGTGCCCATGATTTAAGGCATCGCTTTGGTTATGTGATGGCT GAACGCACACCATTACATCGTCTTGCACAAATTATGGGACACGATAACTTGAATACCACG ATGATTTATGTAAGAGCTACACAAGAAGATTTACAGGGAGAAGTAGAAAAGATTGCCTGG AACTAAAGAATGCACATCATCCTACTCATTTGGTCATGTGATACAAACTAAGAATTGTAA CAGGAGGAACAAGGGTTATGCCTGTAGATTTTTTAACACCTGAACAAGAAGAAAAATATG GTTGTTTTTGTGACACTCCAACATCAGAGCAGTTAGCAAAATATTTTTGGTTAGATGATA CAGACAAAGAACTGATATGGAATCGTCGTGGAGAGCATAATCAACTTGGTTTCGCTGTTC AATTAGGAACCGTTAGGTTCTTAGGAACATTTTTATCTGATCCTACAAATGTACCACAAT CGGTTATTACATATATGGCAAATCAACTTCATCTAGATGCTCAAAGCTTTTCTCGTTATC GAAATAAACGAAGTCAGTGGGATCAAATGCAAGAGATACGTTCTGTTTATGGATATAAAA ACTTTACAGATAAATCAACACATTGGCGATTCATCAGATGGCTATATGCACGTGCTTGGC TATATAATGAACGACCAAGTGTCTTATTTGATTTAGCAACAGCACGATGTATCGAACAAA AAATTTTACTACCTGGTGTATCTGTATTAACAAGGCTAGTATCAACGGTTCGTGATCGTT CAGCAGAAAATATATGGAAAAAGCTCTCTAGTCTTCCGGATAATGTTCAGAAAAAACAAT TAGAAAATCTTCTTCAGATAGATCAAAAAACAAAGAAAACGTATTTAGAGCGTCTAAGTA ATCCCCCTGTTACGATTAGTGTTACGGGCATTAAGAATACGCTGATTCGTTTACAAGAGC TTCGTCAATTGAACACTGAAAATTGGGATATGTCTAGAATTCCTTCGAAAAGATTACAAC AATTCGCTCGTCACACAGTCGCTGTTAGAGCACAAGCAATTGCTAGAATGCCCGATCAAC GACGTATGGCTATGTTAGTTGCATTTGCTAAAATGTATACACAAAGTGCTCAGGATGATG TCATTGATATTTTTGATAGATATTTAACAGATTTATTTGCTAAGACATATCGAAAGGAAC AAAAAGAACGTCTTCGTACAATTAAGGATTTAGATAAGGCAGCGCGCCAATTACGGGAAG CTTGTGTAATATTATTAGAACATACGGATCCTTCTATCCATCCAAAAACGGCAGTGTTTG AAAAAATCTCAGAAAAGGATTTGATACAAGCTGTCCAAATTGTTGATTCACTCACCTATT CACCAAATCAAACACTAGCCTATTCAGGATTGTTACAACATTATGGCACAATCCGAAAAT TTCTTCCTTTACTCATGGAAGAAATTGAATTACAAGCAACGCCTGCTGGATTACCCATCT TGCAAGCATGGAATTTTGTAAAAGAGCATGGGAAATCCAATAAGAAAAGATGGAAAAATG CTCCTCTTGCCGGTTTGAATGCAAATTGGTCTAAGGTTGTAATTGATAAAGATTCCGGAA CTGTAAATCATCGAGCATATACGTTTTGGATGCTCGAACAAGTATTAGAAGCTTTGCACC GACACGATCTATATATAGTAGGAAGTGAAAAATATGGGGACCTTCGCGCACAATTATTAC AAGGCGAAGAATGGAAAAGTATTCGCCCTAGTATTCTTCGCTCATTAGACTGGTCAATAG ATTCTTATGAATCATTGACACCGTTAAAAGAAGAGTTAGAGAAAACTTATCATCAAGTCA TTGAGAATTGGGAGAATAATCCTGCGGTGCAAATAGACACATTTGCAGGTAAAGAGAGAA TTGTTTTGACACCTTTAGACAAACAACCAGAACCTGAATCACTACAAAAACTAAAACAAC AAATACATACGATGTTGCCAAATATAGATATTCCTCAATTATTACTCGAAGTAAATCGTT GGACGGGATTTATGGATGGTTTTCGACATATTAGTGAGGCTAAATCCAGAATTAACGAGT TACCTATAAGTATCTGTGCATTGCTTATATCTCAAGCATGCAATATCGGGTTAAGACCTT TAGTTCAAGATGGGGTTCCTTCATTAGAACGTGATCGTCTTACATGGATTGAACAAAATT ATTTTCGTGCAGAAACACTTTCAGAATCAAACGCGAAACTTG
Region | 1 |
Region Length | 25.9Kb |
Completeness(score) | incomplete(10) |
Specific Keyword | NA |
Region Position | 42416-68377 |
# tRNA | 0 |
# Total Proteins | 17 |
# Phage Hit Proteins | 10 |
# Hypothetical Proteins | 6 |
Phage + Hypothetical Protein % | 94.1% |
# Bacterial Proteins | 1 |
Attachment Site | yes |
# Phage Species | 7 |
Most Common Phage Name(hit genes count) | PHAGE_Bacill_PfEFR_4_NC_048641(4) PHAGE_Bacill_BceA1_NC_048628(4) PHAGE_Bacill_PfEFR_5_NC_031055(3) PHAGE_Bacill_vB_BceS_MY192_NC_048633(3) PHAGE_Bacill_BtCS33_NC_018085(2) PHAGE_Staphy_SpaA1_NC_018277(2) PHAGE_Bacill_vB_BtS_B83_NC_048762(2) PHAGE_Bacill_IEBH_NC_011167(2) PHAGE_Bacill_SPbeta_NC_001884(2) PHAGE_Bacill_phiCM3_NC_023599(1) PHAGE_Microc_Ma_LMM01_NC_008562(1) PHAGE_Mycoba_ShiVal_NC_028674(1) PHAGE_Burkho_AH2_NC_018283(1) PHAGE_Plankt_PaV_LD_NC_016564(1) PHAGE_Bacill_Waukesha92_NC_025424(1) PHAGE_Clostr_phiCDHM19_NC_028996(1) PHAGE_Bacill_1_NC_009737(1) PHAGE_Microc_MaMV_DC_NC_029002(1) PHAGE_Bacill_vB_BtS_BMBtp14_NC_048640(1) PHAGE_Clostr_phiCD119_NC_007917(1) |
First Most Common Phage # | 3 |
First Most Common Phage % | 23.52% |
GC % | 33.57% |
Region: | The number assigned to the region. |
Region Length: | The length of the sequence of that region (in bp). |
Completeness: | A prediction of whether the region contains a intact or incomplete prophage based on the above criteria. |
Specific Keyword: | The specific phage-related keyword(s) found in protein name(s) in the region. |
Region Position: | The start and end positions of the region on the bacterial chromosome. |
# tRNA: | The number of tRNA genes present in the region. |
# Total Proteins: | The number of ORFs present in the region. |
# Phage Hit Proteins: | The number of proteins in the region with matches in the phage protein database. |
# Hypothetical Proteins: | The number of hypothetical proteins in the region without a match in the database. |
Phage + Hypothetical Protein %: | The combined percentage of phage proteins and hypothetical proteins in the region. |
# Bacterial Proteins: | The number of proteins in the region with matches in the nrfilt database. |
Attachment Site: | The putative phage attachment site. |
# Phage Species: | The number of different phages that have similar proteins to those in the region. |
Most Common Phage: | The phage(s) with the highest number of proteins most similar to those in the region. |
First Most Common Phage #: | The highest number of proteins in a phage most similar to those in the region. |
First Most Common Phage %: | The percentage of proteins in # Phage Hit Proteins that are most similar to the Most Common Phage proteins. |
GC %: | The percentage of GC nucleotides of the region. |
Questionable (score 70-90)
Incomplete (score < 70)
Region: | The number assigned to the region. |
Region Length: | The length of the sequence of that region (in bp). |
Completeness: | A prediction of whether the region contains a intact or incomplete prophage based on the above criteria. |
Score: | The score of the region based on the above criteria. |
# Total Proteins: | The number of ORFs present in the region. |
Region Position: | The start and end positions of the region on the bacterial chromosome. |
Most Common Phage: | The phage(s) with the highest number of proteins most similar to those in the region. |
GC %: | The percentage of GC nucleotides of the region. |
Criteria for scoring prophage regions (as intact, questionable, or incomplete):
Method 1:
- If the number of certain phage organism in this table is more than or equal to 100% of the total number of CDS of the region, the region is marked with total score 150. If less than 100%, method 2 and 3 will be used.
- If the number of certain phage organism in this table is more than 50% of the total number of CDS of the region, that phage organism is considered as the major potential phage for that region; the percentage of the total number of that phage organism in this table in the total number of proteins of the region is calculated and then multipled by 100; the percentage of the length of that phage organism in this table in the length of the region is calculated and then multipled by 50 (phage head's encapsulation capability is considered).
- If any of the specific phage-related keywords (such as 'capsid', 'head', 'integrase', 'plate', 'tail', 'fiber', 'coat', 'transposase', 'portal', 'terminase', 'protease' or 'lysin') are present, the score will be increased by 10 for each keyword found.
- If the size of the region is greater than 30 Kb, the score will be increased by 10.
- If there are at least 40 proteins in the region, the score will be increased by 10.
- If all of the phage-related proteins and hypothetical proteins constitute more than 70% of the total number of proteins in the region, the score will be increased by 10.
If the region's total score is less than 70, it is marked as incomplete; if between 70 to 90, it is marked as questionable; if greater than 90, it is marked as intact.
gi|00000000|ref|VIWB01000021.1| Bacillus thuringiensis strain 1230 Ga0365425_121, whole genome 72344, gc%: 33.67%
Download details as .txt file: detail.txt file_download
Hits against Bacterial Database or GenBank File
Region 1, total 19 CDS
# | CDS Position | BLAST Hit | E-Value | Sequence |
---|---|---|---|---|
1 | 42416..42428 | attL | 0.0 | Showinfo_outline |
2 | 42724..43650 | PHAGE_Bacill_vB_BtS_BMBtp14_NC_048640: hypothetical protein; FHW38_12149; phage(gi100010) | 6.61e-89 | Showinfo_outline |
3 | complement(43675..44103) | PHAGE_Bacill_SPbeta_NC_001884: putative SPbeta phage repressor; FHW38_12150; phage(gi9630190) | 5.93e-09 | Showinfo_outline |
4 | 45470..46225 | hypothetical protein; FHW38_12151 | 0.0 | Showinfo_outline |
5 | complement(46393..46959) | PHAGE_Microc_MaMV_DC_NC_029002: lysozyme/metalloendopeptidase; FHW38_12152; phage(gi971764820) | 8.13e-22 | Showinfo_outline |
6 | 47532..48698 | PHAGE_Bacill_vB_BtS_B83_NC_048762: u-spanin; FHW38_12153; phage(gi100032) | 3.75e-124 | Showinfo_outline |
7 | 48726..49145 | hypothetical protein; FHW38_12154 | 0.0 | Showinfo_outline |
8 | complement(49196..49780) | hypothetical protein; FHW38_12155 | 0.0 | Showinfo_outline |
9 | complement(50275..50745) | uncharacterized protein DUF559; FHW38_12156 | 0.0 | Showinfo_outline |
10 | 51126..51347 | PHAGE_Bacill_BceA1_NC_048628: hypothetical protein; FHW38_12157; phage(gi100025) | 4.08e-16 | Showinfo_outline |
11 | complement(51376..52029) | PHAGE_Bacill_PfEFR_4_NC_048641: hypothetical protein; FHW38_12158; phage(gi100029) | 1.85e-100 | Showinfo_outline |
12 | complement(52013..53176) | PHAGE_Bacill_BceA1_NC_048628: hypothetical protein; FHW38_12159; phage(gi100027) | 0.0 | Showinfo_outline |
13 | complement(53189..53512) | PHAGE_Bacill_PfEFR_4_NC_048641: hypothetical protein; FHW38_12160; phage(gi100027) | 2.73e-44 | Showinfo_outline |
14 | complement(53523..53939) | PHAGE_Bacill_PfEFR_4_NC_048641: hypothetical protein; FHW38_12161; phage(gi100026) | 1.61e-62 | Showinfo_outline |
15 | 54218..55075 | hypothetical protein; FHW38_12162 | 0.0 | Showinfo_outline |
16 | 55202..56266 | hypothetical protein; FHW38_12163 | 0.0 | Showinfo_outline |
17 | 56397..56615 | hypothetical protein; FHW38_12164 | 0.0 | Showinfo_outline |
18 | 56893..57264 | PHAGE_Burkho_AH2_NC_018283: hypothetical protein; FHW38_12165; phage(gi399529078) | 4.13e-14 | Showinfo_outline |
19 | 68377..68389 | attR | 0.0 | Showinfo_outline |
>42416..42428
GTAGATTTTCATA
>42724..43650
BacillusthuringiensisMTWEFSVDVFLADLLKHGRKSSTVKQYRYDLTLFTSWIQKYVKLPPESFFHSFDANILERYLKALKKERGASISNIKRVRGILINFLQFHGVAQDLKSDVSPPGLTSKHFASDKEIKKLFRVMRSYNGLTDYQASGRKFILERNLLLIHFMLDYGLSIQDILTLSMHDIHFGTNTITPGGLHAHKRSITLSKEHIKLALSYYNKIPNLVRPRQQTGDPFFVAFDFGPQTFRWDYENDQPAALTRIAVQRMLQKEVKRAEIHVTPTMLRNRFILNALQNGMKPFEIKAFLGLKSVEALHRYVQFWNKQQ
>complement(43675..44103)
BacillusthuringiensisMNLGSQLKRFRESKSFSQEDVARKVGVTRQAVYKWESNKSYPDIDNLILLSELYEVTIDELIKGSEDAREELNKKDKDECEDDENENDFGFFIGIVLIFIGIFIGIEGLSLFITILGMLIMVFYSDVKKAIITEFKIKRRPN
>45470..46225
BacillusthuringiensisMCSIFGQVLYVLSFGGNMLKDNFKISNIPTVLWGNKSEKIFIAVHGNMSNKEDAVIEMLAEEANRKGYQVLSFDLPEHGERINDNTPCKVQFCVNELSIVMNYAKEHWKEVSVFACSMGAYFSLLAYQNDVLEKALFLSPVVNMERIIENMMKWFNVTPELLQKEMTIETPVGQKLYWDYLCYVKEHPINMWNTDTYIMYGAKDELCEFEIINYFTKKHHCELEVMETGEHYFHTEEQLKVFKQWLHKHID
>complement(46393..46959)
BacillusthuringiensisMFKKMIVSTLATGLLFSVSGNAFAESPDYDSVKSEINTAVKESEFKDIAKMPIDMKKVTSTDPYNLDEKKGRVHKGFDFAAPQGTRIDAVQSGKVVFAGFGSKDNGFTSYGNVVVVEHTYNKKKLYTLYAHMSKMSVKKDETVEAGQKIGEVGKTGQATGNHLHLEVRTDKLHGERVDPTKYLPPFKK
>47532..48698
BacillusthuringiensisMKITMMNKDSGNSLDMNLIDGFYIETPTNVVEISKDEADSHFVATITNPKELLSRLLISTTIPGEDTERFFLVGDEAGKHALANNHVNKLHDKITSPIPYVMFLSAVSFYHAINETRESDDNTVEIEYFQTMLPIWLLKRTAKFSEAQNAMAERFAGEHEVTIHTPGMEKTLKITVEKATCRIEGEIARLAIKKNFELEDREEARQFDNNDTVLVDIGGGTIDLVLSPAGLKSPKNRDSMQPIDKLSYLSHIEKLRKEKFLEKFSDLRSFETFIVNNFQKPKMELVDGNTGQRVDLTDKIRSSLKEFAKFLILKIQDVMPAPADKVYKYVYFGGVAPILETSIHEVIEEMYGAEIAQANHIFLPDSRKLNLYGLEVKSRGEMLQKTEK
>48726..49145
BacillusthuringiensisMGRTKKTEKQTVFGLRTDHMSEEVYTHLEQKARSKKLATYIIQLVEQDLAQKEPFDAKKELLKVSKNQEQMMNAIKQITQTISDLQVAPVSAVLMQSDDNTHNSLADDLLKDVGQMGQLITNTNITGSLDEDDLEDPDF
>complement(49196..49780)
BacillusthuringiensisMERRDDVVSEVYLKTIDVSRVTNLAESTIRKYSLELEKQGYEFNKDGDTRLYHADDVTVFNTLKEIREKTKVSLNHAVSVLMTQHSRATQGVARSEVAVTRPQSEEEQYALQSISSEIRNFLEDIKTEFIGFRKELEIERQSNDLFKQELEAERKKNQELEKKLDLIMTELEKINAKADMSNQEPKRKKLFGIF
>complement(50275..50745)
BacillusthuringiensisMTGLFVVLGCTIIFFLLAQILTPSSTYNPNNDSQRVKCSNKLEKRVYDALRFKGYYPTVQYKVPNKRFKLDFAFFAPNGLKIDVEIDGPFHRTPEGIKRDSRRDKYMKTNGWKVIRITDIAFNNGFEKQILLLVAILNELGIEPSKETGFVMLEQE
>51126..51347
BacillusthuringiensisMFFRKNRTKLKKWLDRQGIEQQELAKKSKVSVQTISKACRDTDYIPKPEIMKKLLNAIRKIDPYAKINDFWDM
>complement(51376..52029)
BacillusthuringiensisMMLTNRDKQIICHLQQFRCMSRDDIIDLHFRNVKNAVTCCNTVTKRLSREGYIDVDTSQRPYVYFPYPNTIRKGSQKIRHFLAIVDVYKQLLRTERPKIFQVEPKYKKGYMEPDIFTIWRKSPFFIEVQNSIYNKATIQTKIKRYESYFRSMEWKKESWQPKHNMVFPSLLILTDLKYPISSSNFRIFQAPSIQHFLAQVQQPKDISVQVGSVKVKL
>complement(52013..53176)
BacillusthuringiensisMKGWLKKKKYKYQLEEVFKKAKLYDEHMTRGGKVPIYPTIHDVYEGKESVRYTFTLPNGVDPAQIHKKWFCFQQILGENLMMEGTIKKFVLHVFHSNASLQPYDYSYKQWQPLLKPYRLPVVVGRDQFGNTIVYDMVDSNTPHLLIAGETGSGKSSMVRVILATLIQHMSPEHLHLYLGDLKNSEFHFLRRVKHVKYVCMEEHEMTSMLSKLWKEVLHRRKLMEEYELGHIDEYNQITKDKPLPYIFIAIDEVAMLQDEKECVTIIEKISAVGRSLGIFLMLSMQRPDAKILDGKLKLNLTVRMGFKCADLINSNIVGTPGSENLSQSGQMILKLDGLKKVQAPFLALDQAKEIIEPYRLSKEQSVKKEESEYREDKIFGVLDDANE
>complement(53189..53512)
BacillusthuringiensisMLKRKETISFQAFMDQSYKKKKQTKIYSIGPISPFAFFHMSSPLIHTYVALGIVGGLTIGAVLLEKYLVRNDYVFASNLLSNGLYYGVRIGGIGFIGYAFIRILLML
>complement(53523..53939)
BacillusthuringiensisMNNSYEIIGNQIKYYLRDDLTRGWNNIPSLQFRNVKEITEWCGSSTNEIMCGWDALNQNAMSTTDTTDFLYRWISWYLTEPLGSTAQEMRKLLDELASFITHVPVDAFELIKNTSHMVLDCICFVLDWIPNLLTIFFF
>54218..55075
BacillusthuringiensisMSLLQQHFEERREYVFNRLKQPEYMERSIEKVRQAQKEIKNTVRTIKDLLLLDKTTDPCLPEVAQFSLQHIINSESFENVKKLVPSSMKKLSEKERAKVLDETLSVANQVMNLERTVFIMMFNAKEKILMDSYKKKRRSQIELHYDVADKEGFDKAFYEERIDSLRNDIRVISFKKLCENEPAPEDLELFQQRYETIVLPKIQEIVSLIEPSLVDIDVFLNPVIEYGVGDITLDEMIQKLHKNLSLFHELSKVEYCPTVELTVKEYVFLEAMNRSKEGEELQPSK
>55202..56266
BacillusthuringiensisMIQLTVKGQPSHIRHLAHDPEYLFAIEFHDLTKQTTYINKEKCSVKVTTLVHAEQWNRLLQMIAEGGDTLAEANEIILEGKMEHTPEEVYTFAPIHIMYRSHSQQKQEEIESEVHEKKSKRVASNTKPTVSKRVEQLHAKYDGVCQKCGQRCDKRVVSIKKIQSKMGIVCPDCKNGTTFLITEVKDQLQQELLQQNLFSREQEILSYFQNFCSQFALVKHEETYRIYWSWETKQIYRKVYVSNEGTIYKVKLNAGGICIPSKFTTHITIKENTFRVFHPTTEMRMDRIRALSDAQKASIGEEEIEKQIQYYKDKKEFSEKIIVKQAENSKRYQVLSGFTAYQAAKKIKPKHIYD
>56397..56615
BacillusthuringiensisMQKQQLFDLQEGDCIYVYSGGHLEAQGRYIGVIKDKNESFLCWRKHNGNEVYTNLNGIRGMCSNGTKSRNKY
>56893..57264
BacillusthuringiensisMASEASAGPAPALTSLHVVKVESELGGVEYVSPNNLSTIKDHGGSYLYIYTREMGYGHLPFAKMNGEKAKEVSSTMIDVNGDRIIDGWERKWDVSGNQSGRFEYENTSTNYPWNKMYTALNIK
>68377..68389
GTAGATTTTCATA
Questionable (score 70-90)
Incomplete (score < 70)
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ORF Start: 42416
ORF Stop: 42428
Strand: Forward
Protein Sequence: GTAGATTTTCATA
Homolog/Ortholog Species: Attachment site
Homolog/Ortholog Protein: attL
Homolog/Ortholog E-Value: N/A
ORF Start: 42724
ORF Stop: 43650
Strand: Forward
Protein Sequence: MTWEFSVDVFLADLLKHGRKSSTVKQYRYDLTLFTSWIQKYVKLPPESFFHSFDANILERYLKALKKERGASISNIKRVRGILINFLQFHGVAQDLKSDVSPPGLTSKHFASDKEIKKLFRVMRSYNGLTDYQASGRKFILERNLLLIHFMLDYGLSIQDILTLSMHDIHFGTNTITPGGLHAHKRSITLSKEHIKLALSYYNKIPNLVRPRQQTGDPFFVAFDFGPQTFRWDYENDQPAALTRIAVQRMLQKEVKRAEIHVTPTMLRNRFILNALQNGMKPFEIKAFLGLKSVEALHRYVQFWNKQQ
Homolog/Ortholog Species: Hypothetical protein
Homolog/Ortholog Protein: FHW38_12149, hypothetical protein, phage(gi100010), PHAGE_Bacill_vB_BtS_BMBtp14_NC_048640
Homolog/Ortholog E-Value: 6.61e-89
ORF Start: 43675
ORF Stop: 44103
Strand: Backward
Protein Sequence: MNLGSQLKRFRESKSFSQEDVARKVGVTRQAVYKWESNKSYPDIDNLILLSELYEVTIDELIKGSEDAREELNKKDKDECEDDENENDFGFFIGIVLIFIGIFIGIEGLSLFITILGMLIMVFYSDVKKAIITEFKIKRRPN
Homolog/Ortholog Species: Phage-like protein
Homolog/Ortholog Protein: FHW38_12150, putative SPbeta phage repressor, phage(gi9630190), PHAGE_Bacill_SPbeta_NC_001884
Homolog/Ortholog E-Value: 5.93e-09
ORF Start: 45470
ORF Stop: 46225
Strand: Forward
Protein Sequence: MCSIFGQVLYVLSFGGNMLKDNFKISNIPTVLWGNKSEKIFIAVHGNMSNKEDAVIEMLAEEANRKGYQVLSFDLPEHGERINDNTPCKVQFCVNELSIVMNYAKEHWKEVSVFACSMGAYFSLLAYQNDVLEKALFLSPVVNMERIIENMMKWFNVTPELLQKEMTIETPVGQKLYWDYLCYVKEHPINMWNTDTYIMYGAKDELCEFEIINYFTKKHHCELEVMETGEHYFHTEEQLKVFKQWLHKHID
Homolog/Ortholog Species: Hypothetical protein
Homolog/Ortholog Protein: FHW38_12151, hypothetical protein
Homolog/Ortholog E-Value: N/A
ORF Start: 46393
ORF Stop: 46959
Strand: Backward
Protein Sequence: MFKKMIVSTLATGLLFSVSGNAFAESPDYDSVKSEINTAVKESEFKDIAKMPIDMKKVTSTDPYNLDEKKGRVHKGFDFAAPQGTRIDAVQSGKVVFAGFGSKDNGFTSYGNVVVVEHTYNKKKLYTLYAHMSKMSVKKDETVEAGQKIGEVGKTGQATGNHLHLEVRTDKLHGERVDPTKYLPPFKK
Homolog/Ortholog Species: Phage-like protein
Homolog/Ortholog Protein: FHW38_12152, lysozyme/metalloendopeptidase, phage(gi971764820), PHAGE_Microc_MaMV_DC_NC_029002
Homolog/Ortholog E-Value: 8.13e-22
ORF Start: 47532
ORF Stop: 48698
Strand: Forward
Protein Sequence: MKITMMNKDSGNSLDMNLIDGFYIETPTNVVEISKDEADSHFVATITNPKELLSRLLISTTIPGEDTERFFLVGDEAGKHALANNHVNKLHDKITSPIPYVMFLSAVSFYHAINETRESDDNTVEIEYFQTMLPIWLLKRTAKFSEAQNAMAERFAGEHEVTIHTPGMEKTLKITVEKATCRIEGEIARLAIKKNFELEDREEARQFDNNDTVLVDIGGGTIDLVLSPAGLKSPKNRDSMQPIDKLSYLSHIEKLRKEKFLEKFSDLRSFETFIVNNFQKPKMELVDGNTGQRVDLTDKIRSSLKEFAKFLILKIQDVMPAPADKVYKYVYFGGVAPILETSIHEVIEEMYGAEIAQANHIFLPDSRKLNLYGLEVKSRGEMLQKTEK
Homolog/Ortholog Species: Phage-like protein
Homolog/Ortholog Protein: FHW38_12153, u-spanin, phage(gi100032), PHAGE_Bacill_vB_BtS_B83_NC_048762
Homolog/Ortholog E-Value: 3.75e-124
ORF Start: 48726
ORF Stop: 49145
Strand: Forward
Protein Sequence: MGRTKKTEKQTVFGLRTDHMSEEVYTHLEQKARSKKLATYIIQLVEQDLAQKEPFDAKKELLKVSKNQEQMMNAIKQITQTISDLQVAPVSAVLMQSDDNTHNSLADDLLKDVGQMGQLITNTNITGSLDEDDLEDPDF
Homolog/Ortholog Species: Hypothetical protein
Homolog/Ortholog Protein: FHW38_12154, hypothetical protein
Homolog/Ortholog E-Value: N/A
ORF Start: 49196
ORF Stop: 49780
Strand: Backward
Protein Sequence: MERRDDVVSEVYLKTIDVSRVTNLAESTIRKYSLELEKQGYEFNKDGDTRLYHADDVTVFNTLKEIREKTKVSLNHAVSVLMTQHSRATQGVARSEVAVTRPQSEEEQYALQSISSEIRNFLEDIKTEFIGFRKELEIERQSNDLFKQELEAERKKNQELEKKLDLIMTELEKINAKADMSNQEPKRKKLFGIF
Homolog/Ortholog Species: Hypothetical protein
Homolog/Ortholog Protein: FHW38_12155, hypothetical protein
Homolog/Ortholog E-Value: N/A
ORF Start: 50275
ORF Stop: 50745
Strand: Backward
Protein Sequence: MTGLFVVLGCTIIFFLLAQILTPSSTYNPNNDSQRVKCSNKLEKRVYDALRFKGYYPTVQYKVPNKRFKLDFAFFAPNGLKIDVEIDGPFHRTPEGIKRDSRRDKYMKTNGWKVIRITDIAFNNGFEKQILLLVAILNELGIEPSKETGFVMLEQE
Homolog/Ortholog Species: Non phage-like protein
Homolog/Ortholog Protein: FHW38_12156, uncharacterized protein DUF559
Homolog/Ortholog E-Value: N/A
ORF Start: 51126
ORF Stop: 51347
Strand: Forward
Protein Sequence: MFFRKNRTKLKKWLDRQGIEQQELAKKSKVSVQTISKACRDTDYIPKPEIMKKLLNAIRKIDPYAKINDFWDM
Homolog/Ortholog Species: Hypothetical protein
Homolog/Ortholog Protein: FHW38_12157, hypothetical protein, phage(gi100025), PHAGE_Bacill_BceA1_NC_048628
Homolog/Ortholog E-Value: 4.08e-16
ORF Start: 51376
ORF Stop: 52029
Strand: Backward
Protein Sequence: MMLTNRDKQIICHLQQFRCMSRDDIIDLHFRNVKNAVTCCNTVTKRLSREGYIDVDTSQRPYVYFPYPNTIRKGSQKIRHFLAIVDVYKQLLRTERPKIFQVEPKYKKGYMEPDIFTIWRKSPFFIEVQNSIYNKATIQTKIKRYESYFRSMEWKKESWQPKHNMVFPSLLILTDLKYPISSSNFRIFQAPSIQHFLAQVQQPKDISVQVGSVKVKL
Homolog/Ortholog Species: Hypothetical protein
Homolog/Ortholog Protein: FHW38_12158, hypothetical protein, phage(gi100029), PHAGE_Bacill_PfEFR_4_NC_048641
Homolog/Ortholog E-Value: 1.85e-100
ORF Start: 52013
ORF Stop: 53176
Strand: Backward
Protein Sequence: MKGWLKKKKYKYQLEEVFKKAKLYDEHMTRGGKVPIYPTIHDVYEGKESVRYTFTLPNGVDPAQIHKKWFCFQQILGENLMMEGTIKKFVLHVFHSNASLQPYDYSYKQWQPLLKPYRLPVVVGRDQFGNTIVYDMVDSNTPHLLIAGETGSGKSSMVRVILATLIQHMSPEHLHLYLGDLKNSEFHFLRRVKHVKYVCMEEHEMTSMLSKLWKEVLHRRKLMEEYELGHIDEYNQITKDKPLPYIFIAIDEVAMLQDEKECVTIIEKISAVGRSLGIFLMLSMQRPDAKILDGKLKLNLTVRMGFKCADLINSNIVGTPGSENLSQSGQMILKLDGLKKVQAPFLALDQAKEIIEPYRLSKEQSVKKEESEYREDKIFGVLDDANE
Homolog/Ortholog Species: Hypothetical protein
Homolog/Ortholog Protein: FHW38_12159, hypothetical protein, phage(gi100027), PHAGE_Bacill_BceA1_NC_048628
Homolog/Ortholog E-Value: 0.0
ORF Start: 53189
ORF Stop: 53512
Strand: Backward
Protein Sequence: MLKRKETISFQAFMDQSYKKKKQTKIYSIGPISPFAFFHMSSPLIHTYVALGIVGGLTIGAVLLEKYLVRNDYVFASNLLSNGLYYGVRIGGIGFIGYAFIRILLML
Homolog/Ortholog Species: Hypothetical protein
Homolog/Ortholog Protein: FHW38_12160, hypothetical protein, phage(gi100027), PHAGE_Bacill_PfEFR_4_NC_048641
Homolog/Ortholog E-Value: 2.73e-44
ORF Start: 53523
ORF Stop: 53939
Strand: Backward
Protein Sequence: MNNSYEIIGNQIKYYLRDDLTRGWNNIPSLQFRNVKEITEWCGSSTNEIMCGWDALNQNAMSTTDTTDFLYRWISWYLTEPLGSTAQEMRKLLDELASFITHVPVDAFELIKNTSHMVLDCICFVLDWIPNLLTIFFF
Homolog/Ortholog Species: Hypothetical protein
Homolog/Ortholog Protein: FHW38_12161, hypothetical protein, phage(gi100026), PHAGE_Bacill_PfEFR_4_NC_048641
Homolog/Ortholog E-Value: 1.61e-62
ORF Start: 54218
ORF Stop: 55075
Strand: Forward
Protein Sequence: MSLLQQHFEERREYVFNRLKQPEYMERSIEKVRQAQKEIKNTVRTIKDLLLLDKTTDPCLPEVAQFSLQHIINSESFENVKKLVPSSMKKLSEKERAKVLDETLSVANQVMNLERTVFIMMFNAKEKILMDSYKKKRRSQIELHYDVADKEGFDKAFYEERIDSLRNDIRVISFKKLCENEPAPEDLELFQQRYETIVLPKIQEIVSLIEPSLVDIDVFLNPVIEYGVGDITLDEMIQKLHKNLSLFHELSKVEYCPTVELTVKEYVFLEAMNRSKEGEELQPSK
Homolog/Ortholog Species: Hypothetical protein
Homolog/Ortholog Protein: FHW38_12162, hypothetical protein
Homolog/Ortholog E-Value: N/A
ORF Start: 55202
ORF Stop: 56266
Strand: Forward
Protein Sequence: MIQLTVKGQPSHIRHLAHDPEYLFAIEFHDLTKQTTYINKEKCSVKVTTLVHAEQWNRLLQMIAEGGDTLAEANEIILEGKMEHTPEEVYTFAPIHIMYRSHSQQKQEEIESEVHEKKSKRVASNTKPTVSKRVEQLHAKYDGVCQKCGQRCDKRVVSIKKIQSKMGIVCPDCKNGTTFLITEVKDQLQQELLQQNLFSREQEILSYFQNFCSQFALVKHEETYRIYWSWETKQIYRKVYVSNEGTIYKVKLNAGGICIPSKFTTHITIKENTFRVFHPTTEMRMDRIRALSDAQKASIGEEEIEKQIQYYKDKKEFSEKIIVKQAENSKRYQVLSGFTAYQAAKKIKPKHIYD
Homolog/Ortholog Species: Hypothetical protein
Homolog/Ortholog Protein: FHW38_12163, hypothetical protein
Homolog/Ortholog E-Value: N/A
ORF Start: 56397
ORF Stop: 56615
Strand: Forward
Protein Sequence: MQKQQLFDLQEGDCIYVYSGGHLEAQGRYIGVIKDKNESFLCWRKHNGNEVYTNLNGIRGMCSNGTKSRNKY
Homolog/Ortholog Species: Hypothetical protein
Homolog/Ortholog Protein: FHW38_12164, hypothetical protein
Homolog/Ortholog E-Value: N/A
ORF Start: 56893
ORF Stop: 57264
Strand: Forward
Protein Sequence: MASEASAGPAPALTSLHVVKVESELGGVEYVSPNNLSTIKDHGGSYLYIYTREMGYGHLPFAKMNGEKAKEVSSTMIDVNGDRIIDGWERKWDVSGNQSGRFEYENTSTNYPWNKMYTALNIK
Homolog/Ortholog Species: Hypothetical protein
Homolog/Ortholog Protein: FHW38_12165, hypothetical protein, phage(gi399529078), PHAGE_Burkho_AH2_NC_018283
Homolog/Ortholog E-Value: 4.13e-14
ORF Start: 68377
ORF Stop: 68389
Strand: Forward
Protein Sequence: GTAGATTTTCATA
Homolog/Ortholog Species: Attachment site
Homolog/Ortholog Protein: attR
Homolog/Ortholog E-Value: N/A
Terminase
Portal Protein
Coat Protein
Tail Shaft
Integrase
Phage-like Protein
Other
Transposase
Plate Protein
tRNA
Download data as .txt file: png_input file_download