ggKbase home page

08E140C01_z5_2013_Ig3399_v2_scaffold_4090_1

Organism: 08E140C01_Z5_2013_Ig3399_Hor_167_2013_Myxococcales_66_8

near complete RP 45 / 55 MC: 5 BSCG 45 / 51 MC: 5 ASCG 13 / 38 MC: 1
Location: comp(3..7613)

Top 3 Functional Annotations

Value Algorithm Source
Ig domain protein group 2 domain protein n=1 Tax=Acidobacterium sp. (strain MP5ACTX9) RepID=E8WZ70_ACISM similarity UNIREF
DB: UNIREF100
  • Identity: 31.6
  • Coverage: 999.99
  • Bit_score: 809
  • Evalue 1.00e-230
  • rbh
Ig domain protein, group 2 domain protein similarity KEGG
DB: KEGG
  • Identity: 37.2
  • Coverage: 999.99
  • Bit_score: 747
  • Evalue 1.90e-212
  • rbh
Ig domain protein, group 2 domain protein {ECO:0000313|EMBL:ACH63789.1}; TaxID=388396 species="Bacteria; Proteobacteria; Gammaproteobacteria; Vibrionales; Vibrionaceae; Aliivibrio.;" source="Vibrio fischeri (strain MJ11).;" similarity UNIPROT
DB: UniProtKB
  • Identity: 37.2
  • Coverage: 999.99
  • Bit_score: 747
  • Evalue 8.60e-212

Lists

This feature is not on any list.

Notes

This feature has no notes.

Taxonomy

Aliivibrio fischeri → Aliivibrio → Vibrionales → Gammaproteobacteria → Proteobacteria → Bacteria

Sequences

DNA sequence
Length: 7611
ATGACTCAACCATTTGCCCATTGGTCGACACTCACGCGACTGCTCGTAGGACTCTTATTACTCGTACTCCCGCTGGGAGGCATGGCATGCGGAGGGGGCGACGATGACACCCCCTCGACCGGCACTACCCTGAAGTCCATCACGGTCAGCCCTGCCACCGCCAACGTGGCGGTCGGCTCCACCCAGCAGTTCGCCGTCAACGGCGTCTACAGCGATGGCAAGACCAAGGCCGTCACCACCGGGGTTACCTGGACTTCCAGCACCACCACCGTGGCGACCATCAACACCTCCGGCCTCGCGACCGCGGTAGCCGATGGCACCACGACCATCACGGCCACCGTCGGAAAGCTCAAGGCCACCGCCACGCTCACGGTCATCACCAAGGCCCTCACGGGCATCCAGGTGACCCCTGCGTCCGCTTCCATCGGCGTAGGTACGACCCAGCAGTACGCGGCGACCGCGAACTACAACGACGGGACCACCACCGACGTGACCGCGAGCGCGACTTGGTCGTCTTCGGAAATGGCTACCGCCACCATCAGCGCCACCGGCCTTGCCTCCGGCGTTGCGGCGGGAACCTCGACCATCTCCGCCACGTTCGAGACGGTGACCGGAACCGCGATCCTCACCGTGACCGACAACGCCATGACGGGCATCGTCGTGGCCCCGGCCACTGCGTCGATCCCGGCTGGCGCCACCCAGGAATTCACTGCGACGGCAGAGTACGCCGACGGCACCACGCAAGACGTGACCGCCGAGGTGACCTGGACCTCCTCGGACACCGAGGTGGCCACGATGGCTGACGAGACGGCCACCGGCGTCGCGGTAGGGACTGCGACCATCACGGCCGCCCACGCGGCGTCCGGCATGTCCGGCACCGCCGAGCTGACCGTCACCGACGCGGTCGTCACTTCGCTTCAGGTCACGCCCGCCACTGAGGACGCGATCGTAGGCGGACCGGACGTCGAGTTCACCGCCACGGCGATCTACTCCGATGGCGCCAGCGTGGACGTGACGGACACGGCGACCTGGACCTCCAGCGATGACACCATCGCCACCGTTGCCGCTGGCGTAGCCACCGGTATCGGCGCAGGCGTGGCCACCATCACCGCCGAGTTCGACGGCGAGGAAGCCACAGCTGAGCTCACGGTGAGCGTCGCCGTCCTCGACAGCATCGTCGTCGAGCCCGCGACCGATTCCATCCCTGCGGGCACCACGCTGCAGTACACAGCGACCGGCAACTACAACAACGGAACCACGCAGGACCTGACCACCACGGTCGACTGGGTGTCGTCCGACACGGCCGTTGCCACCATCACGGCTGGAGGCCTGGCCGCAGGCGTTGCCGCTGGCACGACCACCATCACCGCGACGCACAACGGCGTGTCGGGTACGGCTGCCCTTACCGTCACGTCGGTCGTGCTGGACTCGATCCAGATCACGCCTCCCAACGCCACCATCGCGGCGGGAACCACGCAAGCTTACACGGCCCTCGGAACCTACTCCGACGGCAGCGTGGTCGACATCTCCGGCCTGGTGTCGTGGACCTCGTCGGCCACCGCGGTAGCGACGATCACTGGCGGTTTGGCCACCGGCGTGGCTCCTGGCACTGCCACGATTTCTGCCACCTACCAGACCATCACGTCCAACGCGGCTACGCTCCTCGTCATCAATGCCGTTCCGACCGGCGTGACCGTGACATGTGACCCGACCTCGATCGTCATCGGCAACACTTCGCAGTGCACCGCGATGGCGGCCTACAGCGACGGGTCGAGCCTGAACGTCACCCTCAATGCGACGTGGACCACGAGCAGCGCGGCGATCGCGTCCGTCACTCAGGCGGGCTTGGTCGCAGGCGTGAGCGCCGGAGCGGCGACCATCACGGCCACGTTCCAGACCTTCTCTGGAAACGCGACGGTCAACGTCTCCGCTGCGGTTCTGCAGACCATTCAGGTCACCCCCACGAACCCCTCCATTCCCTTGGGGGCGAACCAGCAGTTCGTGGCGACCGGTCTGTACAACGACGGGAGCACCCAGGTAATCACCACCACGGTGAATTGGGTATCGAGCGCTCCCACGGTGGCGACGATCAACGCCGCCGGGCTGGCGACCTCCGTGTCCGCCGGACCCACCACCATCGCGGCGAGCCTCTCTGGGATCACCGGATCCACGACCTTGACCGTGACGCCGGCGACACTCGAGTCGATCGAGATCGAGCCGACCAGCGCGCTGATTGCCATTGGCGGCACGCGTGCTTTCACGGCGACGGGCGTGTACTCGGACACCAGCACCCAGGTGTTGACCAACCTCGTCAGCTGGACGTCCAGCTCCACGGCTGTCGCGACGATCACTTCGGCTGGCCTCGCGACCGGCGTTGCGAACGGCACGACGAACATCACAGCGACGTACCAGGGCGTGACTTCCAACACGGCCGTGCTTGCGGTATCCGGCAAGACCCTGACGGGTGTGGCCGTGTCCTGTACGCCGACCTCCATCGCGGCCGGCACCACCTCTCAGTGCACGGCGACCGCATCGTACAGTGACCTCTCGAGCGAGAACGTCACGTCGAGCGCCTCGTGGGCGTCGAGCAACAACGCTTTCGCCACCGTGACCCAGCTTGGTGTGGTGACGGGCGTTGCGGTCGGCGCTCCGACCATTACGGCGACCTACCAGACCCAGTCGGGCTCGGCCACCGTCACGGTGACCGCCGCTCTGCTGGAGTCCATCGCCATTACCCCGCTCGCCCCGTCCATCGCGCTGGGCAACACCCAGCAGTTCCAGGCGGTGGGGCACTACTCGAACAGCACTACGCAGACCATCACCACGCAGGTCACGTGGGCATCGTCGGCGCCAGCTCGTGCGACGATCTCCAACGCGGCAGGATCTCATGGTCTGGCTACCTCCGTGTCTGTTGGCACGACGAACATCACCGCGAGCCTAGGGGCGATCACGTCCAACACGGCGGTCCTTTCCGTGACCACCGCGACGCTGACGGCCATCCAGGTATTGCCTGCGAGCCCGACCGTTCCGGCCGGCTTCCAGCAGCAATTCACGGCCCGTGGCGTGTACTCGGACAACACCACGGCGGACCTGACCGCCGACCCGCTCGTTTCTTTCTCGAGCGGCACCGTCACGGTCGCGACGATTTCGAACGCGGCCGCCACCAAGGGTCTTGCCAGCACGCTCATCGCCGGGACGTCCGTGATCACGGCCACCCGGGGGACCTTGAGTGGCACGACCACCCTGACCGTGTCCAACGCCACGCTGACGAGCATCGCGGTGACCCCTGGCACCCAGACCACCCAGGTCGGTTCCACGGTGCCCTACACCGCGACCGGTACGTTCAGCAACAACACCACGATGAACATCACCACGCAGGCCGCGTGGACCGTGTCGCCTACGGGCACGGGTGTGACGATTGGCGCTGCCACGGGCATCGCCACCATCGCCGCCAACGCCACGCCGAACCCGTACACCGTTCGCGCCACCGTGGGCGCCGTGTTCGGCAACGCGACGTTGACCGTGGTCCAGCCGCTGACCCTGCAGTCGATCCAGGTGCGGTATCGCCTTTCCTTCGGCGACTTCGAGACCAACCCATTCTCGTACGGCTGGGCCATGCCCGAGAACGAGACTCTTCAAGCCATCGCGGTGGGGACGTACTCGGACGGACTGAATCCCCCCGTCGAGCAGGACATCACGGCGCTCGTAACATGGGTGAGCACCAACACGACCTGCTTCACCATGAGCAACGTCCTTGCTACCAAGGGGCTCATGACTGCGACCGCCAACGTGCCAGGGGGTGCGGGCGCCTGCTACGGAGAAGTCTACGCGTCCCTCAATGCCGTGGATGGCATCAACTACATGAACGTGGTTGATCCGAGCCTCTGCCCCGAGTCTCCAAACCTTATCGTGCTCGCACCCTGGGCCATCCCTGACGGACCAGGCTGGCGGATCTACAAGGGTCAGGAGACCCAGAGCGTTGCTCTCGTTGAGTACGGTGGCGCCTGCACTTCGTTTGCCGGCGCTTGGGAGGTGACCCTGTCGCCGAACACGACCTGGACGTCAAGCGTCCCGGGCGTGGCGACAGTGAACTCCACGGGCGTGGTGACGGCGTCGAACAACCCGGCGTCTCCCTACACGTCCACGATCACCGCCACGCACACCAGGCCCGGCTACACGGGTACCGGCAACTACCTGCTTACGGTGACCAATGCGTGTATCGAGTCGATCAGCGTGTCGCCGCAGAACCCCACCCTTCCGAGAGGCCTCAAGCAGCCGCTCGAGGTGACGGCGGTTTTCAGCGACGGTTCGCAGGAAGTGTACAACTACCTGAACCCGGGTCCGCTCACCATCCAGCAGTGCGGCCCCTGGGTTACCGGCCCCTGCACGCCCTCCACGGCGTTTACGGTCGGGAACGCGGGCATCGTCGAAGCGAGTCCGACGGTCACGGGCACCGGGAGGGTTGACGTTCTCGTCAACGCTCTGGCCTGTGACTCCGCAAACTCGCCCACGGCTTCCACCAACATCACGGTGAACAGTGCCACCATCACTGGCGTTGCTGTCGCCCCTGCGTCGCTCTCGCTTGCCAAGGGCGGGACCGGTCAGCTCACGGCGACCGGCACCTATAGCGACAACTCGCAGCACAACGTCAACCTCATCGCGAACTGGAGCACGAGCGCCGGTAGCATCGCGACAGTCGGGACGACGCAGGCTGATGCGGGTCTCGTCACCGCTTCCCTTGCCAACGAGGGCAACGCGGTCATCTCGGCGCGGGTCGGCACCTTCACCGGCTCGTCCGCGGTGACGGTTTCTGGCTGCACGCTCCAGAGCCTCGCTGTGAGCCTGGGCTCACCTTTCACTTGTGGCGGCGCCCCCTACAACCCGGGCACCCCGCCGACCGGTGGGCAGCCCTACCCCGTGGGGATCAACATCCCCCTGGCTGTGACGGCCACCTACGCGGGCGGTTGCGCTCCGGCGGACGTGACGAGCCAGGTCACCTGGCAGAGCAGTCTCGGAGCCATCGCGGTTGCCAACGGCTTCGCGCGGACGAACGGCTCCACGGGCGGTTCGGTCGCCACCGTCACGGCCTCGATCGGCTCCGTGAGCGGCAGCATCCTCCTGGCATCCTCCGCGCAGACGCTCGCCGCGAACCTCACGGTTGCCCCGGCGTCCTTCCTGATTCCCAATGCTGGAACCCAGCAGTTCACTGCCAGTGGGACCTTCGCCACGGCCGGTGCCTGCGACCTGCTGGGCAACGTGGTCAACTGGAGCGCTGCTCCGGGGACCCTCCTCACCATCAACGCCAACGGCCGCGCCACCGGCGCCGCCACCGGCTCCGGTAGCGCTACGGTCACCGCGACCTACGCTCCCGACACCTCCAGAACGGGTACCGTCGCCGGTACGGTGGGTGGTGCAACCTGCGTCGAGGCCCTTGTGATCGACTCCGTTCCCACCAACGCGACGATCCCGGTCGGAAGCAGCGTGGACTTCAGGGCACGGTGGCGTTACGGCAACGGAAGCTACTCTGCCGCCATCGACACCGACGTGGCCTGGAGCATCGTGTCTCAGGCTCCTGCAGGCACGCTGGGCGCTCCCAATGCCAGCGGCGTCTTCGCGGGTCTCCTCCCCGGGACCGCCACCATCCGTGCGTTCCGGACCTCCCCGACTACCTGCACGTCGACCACTCCCGTCGACTTCGCGGTGACGGCGCCCGTGACGGTTGTTCCGTCGAGCCTGGCGACCATCACCATTCACTGCGACGACAACATCGTGGGGAACCAGATCCCCGTCAACGTCCGTGGCGCTTGCCGTGCCGAAGGATTCGACGGAAATGGTCAGCTCATCGGCGACATCACCGAAGACCTGAACTGGGCCGCCACGGGCCAGGCGTCCGTGAACAACACCGCAGGCACCAAGGGTGACATCACCGCTGGCGCCGCTGCCGGATCCGCCATCATTCGCGTGGAGAAGCTTGGATCGACCCCGCTCATCTTCGATGAGCAGATCCTCCAGGTGCTGCCGGGCTCGGCCCTTCAGTCCGTCGCCATCGCGCCCGCCACCAAGACCCTGCCCGTCGGCTACGGCGAACAGTACGTCGCCACCGGCAACTACACCGGTGGCCTCGTGTTCGACCTCACCGACGCGGTCGGCATCGAGTGGCGTTGCTGCACCAACAACTCCGCGACCTGCGTGGCTGCCACCAACTGCAGCATCACGGGCTCCGGCTTCATCACGCCGACGTCCGCCACGCCTGCCACGGTCTACCCGATCGTCAGGCTCGGCACCTCGAGCAGCACGCACGCCACCCTCACCATCAGCACCCAGGCGCTGACCGCCATCACGGTCAATCGCCTCGGTACTCCTCTCGGCGCTGCCACCAACATGGTGCTGGGCGAGGACGCCCAGTTCCAGGCGATGGGCATGTTCGGTGCGCTCGGTCCCTACGACATCACCGAGACGGTCAACTGGTCGACCTCCATCGGAGGCTACATCGCGGTGAGCAACACGGTCGGCTCGAAGGGGCTCGCAACGGCAACGGCTGTTACGCCCTCGGGAACGACCATCGAGATCCGAGCCAACAACGTCACCCCCGCCGTGCAGGGTGTCTACGCCAACCCGTTGGCAGTCATCAACAAGTGCATCGACGGCATCACCCTGAGCGCCAACACCACGTCCGCTCCGTCGGGCCTCGGCGTGCGCTTCCAGGTCACCGCGTCCTACTCAGACAATACCTCGGGCACGATCACGCAGAACCCGAGCATCCTCTGGGATTCGGACTACACCCCCGCCCTCGGCAACCCCACCCAGTGCGGTGGCGCTGCCGAAGGTCTGCCCTGCATCTTCTACGCAGGCACGCCCGGCCAGTCGTCGTTCATCACCGCCAGCATCGTTGGGTGTGGCGGCGAGACCTTCGACGACACCCTCCTCGTGTCGGTCAACAACGCGACCCTCACGGGCATCACCGTCGCGCCGAGCTCGACGAACCTGCCCAAGGGCCAGACGACCCAGTTCACGGCCACGGCGAACTACTCCAACAACACGTCCTTCGACGTGACCACTGACCCGGTGCAGACAACCTGGTCCTCCGCGGACACGGCTGTGGCCACGGTCGAGCTTCCCAAGGGGACAGCGAGGGCGAGCACCACGAACTTCGGCTCGACCTCCATCATCGCGAACTACTACGGCGCAACCGACTTCGGTACGGTCAATGTGGTGGACGAGGTGCTCGTGGACATCAGGGCCTATGCCCTCCAGATGATCCCGTCGGCCGGGCCTTCCTGTCCGAACTTCGACACGGTTCCTCCCACCATCAACACCGACTGGGCGGACCCCTGGATCCAGATGGGATTCCAGCTGCCGGCCGGCGGCTACAAGTCCAGGGTTCGCGCCCAGGGCATCTACTCCGATGGCACTAGGCGTGACATCACGGGTAGCGTGACCTGGACGTCCTCCACCGGAGGCGTGGCGACCGTGGTCGGCGGACTCGTGGAAACTGGCGCCACCGCGGGTACCACTACCCTCCGAGCTGCTGTGGGAGCCATCGGTGACGACATCATCCTCAACACCTCGGCGTCGACCCTCAGCGCAGTGAACGTGGTGCCGAATGGCGGG
PROTEIN sequence
Length: 2537
MTQPFAHWSTLTRLLVGLLLLVLPLGGMACGGGDDDTPSTGTTLKSITVSPATANVAVGSTQQFAVNGVYSDGKTKAVTTGVTWTSSTTTVATINTSGLATAVADGTTTITATVGKLKATATLTVITKALTGIQVTPASASIGVGTTQQYAATANYNDGTTTDVTASATWSSSEMATATISATGLASGVAAGTSTISATFETVTGTAILTVTDNAMTGIVVAPATASIPAGATQEFTATAEYADGTTQDVTAEVTWTSSDTEVATMADETATGVAVGTATITAAHAASGMSGTAELTVTDAVVTSLQVTPATEDAIVGGPDVEFTATAIYSDGASVDVTDTATWTSSDDTIATVAAGVATGIGAGVATITAEFDGEEATAELTVSVAVLDSIVVEPATDSIPAGTTLQYTATGNYNNGTTQDLTTTVDWVSSDTAVATITAGGLAAGVAAGTTTITATHNGVSGTAALTVTSVVLDSIQITPPNATIAAGTTQAYTALGTYSDGSVVDISGLVSWTSSATAVATITGGLATGVAPGTATISATYQTITSNAATLLVINAVPTGVTVTCDPTSIVIGNTSQCTAMAAYSDGSSLNVTLNATWTTSSAAIASVTQAGLVAGVSAGAATITATFQTFSGNATVNVSAAVLQTIQVTPTNPSIPLGANQQFVATGLYNDGSTQVITTTVNWVSSAPTVATINAAGLATSVSAGPTTIAASLSGITGSTTLTVTPATLESIEIEPTSALIAIGGTRAFTATGVYSDTSTQVLTNLVSWTSSSTAVATITSAGLATGVANGTTNITATYQGVTSNTAVLAVSGKTLTGVAVSCTPTSIAAGTTSQCTATASYSDLSSENVTSSASWASSNNAFATVTQLGVVTGVAVGAPTITATYQTQSGSATVTVTAALLESIAITPLAPSIALGNTQQFQAVGHYSNSTTQTITTQVTWASSAPARATISNAAGSHGLATSVSVGTTNITASLGAITSNTAVLSVTTATLTAIQVLPASPTVPAGFQQQFTARGVYSDNTTADLTADPLVSFSSGTVTVATISNAAATKGLASTLIAGTSVITATRGTLSGTTTLTVSNATLTSIAVTPGTQTTQVGSTVPYTATGTFSNNTTMNITTQAAWTVSPTGTGVTIGAATGIATIAANATPNPYTVRATVGAVFGNATLTVVQPLTLQSIQVRYRLSFGDFETNPFSYGWAMPENETLQAIAVGTYSDGLNPPVEQDITALVTWVSTNTTCFTMSNVLATKGLMTATANVPGGAGACYGEVYASLNAVDGINYMNVVDPSLCPESPNLIVLAPWAIPDGPGWRIYKGQETQSVALVEYGGACTSFAGAWEVTLSPNTTWTSSVPGVATVNSTGVVTASNNPASPYTSTITATHTRPGYTGTGNYLLTVTNACIESISVSPQNPTLPRGLKQPLEVTAVFSDGSQEVYNYLNPGPLTIQQCGPWVTGPCTPSTAFTVGNAGIVEASPTVTGTGRVDVLVNALACDSANSPTASTNITVNSATITGVAVAPASLSLAKGGTGQLTATGTYSDNSQHNVNLIANWSTSAGSIATVGTTQADAGLVTASLANEGNAVISARVGTFTGSSAVTVSGCTLQSLAVSLGSPFTCGGAPYNPGTPPTGGQPYPVGINIPLAVTATYAGGCAPADVTSQVTWQSSLGAIAVANGFARTNGSTGGSVATVTASIGSVSGSILLASSAQTLAANLTVAPASFLIPNAGTQQFTASGTFATAGACDLLGNVVNWSAAPGTLLTINANGRATGAATGSGSATVTATYAPDTSRTGTVAGTVGGATCVEALVIDSVPTNATIPVGSSVDFRARWRYGNGSYSAAIDTDVAWSIVSQAPAGTLGAPNASGVFAGLLPGTATIRAFRTSPTTCTSTTPVDFAVTAPVTVVPSSLATITIHCDDNIVGNQIPVNVRGACRAEGFDGNGQLIGDITEDLNWAATGQASVNNTAGTKGDITAGAAAGSAIIRVEKLGSTPLIFDEQILQVLPGSALQSVAIAPATKTLPVGYGEQYVATGNYTGGLVFDLTDAVGIEWRCCTNNSATCVAATNCSITGSGFITPTSATPATVYPIVRLGTSSSTHATLTISTQALTAITVNRLGTPLGAATNMVLGEDAQFQAMGMFGALGPYDITETVNWSTSIGGYIAVSNTVGSKGLATATAVTPSGTTIEIRANNVTPAVQGVYANPLAVINKCIDGITLSANTTSAPSGLGVRFQVTASYSDNTSGTITQNPSILWDSDYTPALGNPTQCGGAAEGLPCIFYAGTPGQSSFITASIVGCGGETFDDTLLVSVNNATLTGITVAPSSTNLPKGQTTQFTATANYSNNTSFDVTTDPVQTTWSSADTAVATVELPKGTARASTTNFGSTSIIANYYGATDFGTVNVVDEVLVDIRAYALQMIPSAGPSCPNFDTVPPTINTDWADPWIQMGFQLPAGGYKSRVRAQGIYSDGTRRDITGSVTWTSSTGGVATVVGGLVETGATAGTTTLRAAVGAIGDDIILNTSASTLSAVNVVPNGG