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LotjaGi2g1v0067900.1

Overview

Field Value
Gene ID LotjaGi2g1v0067900
Transcript ID LotjaGi2g1v0067900.1
Lotus japonicus genome version Gifu v1.2
Description Disease resistance protein (TIR-NBS-LRR class), putative; TAIR: AT5G17680.1 disease resistance protein (TIR-NBS-LRR class); Swiss-Prot: sp|Q40392|TMVRN_NICGU TMV resistance protein N; TrEMBL-Plants: tr|A0A072V187|A0A072V187_MEDTR Disease resistance protein (TIR-NBS-LRR class), putative; Found in the gene: LotjaGi2g1v0067900
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr2:16121442..16130158) extracted from Lotus japonicus Gifu genome v1.2.

GAAAAGTTAATTTTTTTCAAAAAAGAAAGAAAGAATTATTGGTTCTTGAAGATGATTCCCACCCCATGTGGACAACTATT AAAACATTTTCCTCCAAATCATCACAGAAGTATTGGTGAGAACTCTCCCATTGACTGATATTGTTGGATCTGTGCAAGAT CTATTTTGCATCTGAACATCACTCTTTGAGTAACTTGGCCTCATTATTTTGTTTTCAGCAGGTGCTTCAACCTTAAACCA GCAGTCCCAGAGCCTTTCAATGGAAGATTGTACCCAAACCTCAAAATGGAAATATCAAGTTTTCTTGAGTTTTAGGGGAG AAGACACTCGCTTAGGTTTCACCGATCACTTATATGCAGCCTTGGTCCGCAAGAGTATAATAACTTTCAGAGATGATGAA GAACTTGACAGAGGTGAAGTCATCTCACAAAAACTCCTGCATGCAATTGAGGAGTCTCTTTCAGCAATTGTCATAATCTC CAAAAACTATGCTTCTTCAACTTGGTGTTTGGATGAGTTACTTAAAATTCTTGAATCCAAACACTTGTTGGGACAACAAG TATTTCCGATCTTCTATGGTGTGGATCCCTCTGATGTACGGAATCAGAGGGGAAGTTTTGCAGAAGCTTTTAAGAAACAT GAAGAAAAAGTTACAGAAAACAAAGAGAAGTTGCAAAAGTGGAGAGATGCGTTAAGAGAAGTAGCCAACTTGTCAGGGTG GGACTCTAAGGATCAGTAAGTGCATGCCATTGGTTATTGTTTTAGTTGCAAACATCATAGCACCTAGTTATGTTAACACT GGTGTGTAAAAATTGGTCTTATTCCTTTATATATGATTTTAATCCTTCAGTTGATCATTTTTGTTTTTGCTTTGGTTCTC TGCAGACATGAAACTGAACTCATTGAAGAAGTTGTTGCACAAGTATGGAAAAAACTAGAACTCAAATTCCCAACATATAA TGATGGACTTGTTGCAATTGACACTAGATTAAAAGATTTATATTCAATTTTGAAGCTAGGATCAGAGGATGTTCGTTTCA TAGGGATATGGGGCATGGGTGGGATAGGTAAAACAACTCTTGCTACTGCTTTCTTCAAGAAAATCAGAAGCCATTTTGAT GTTAGTTGCTTTATTTCCAATGTTAGAGAGGCCTCTGGGGAGAGAGACCAAGGACTGCTACAGTTGCAAAATAAAATTCT TTCTCATCTTAACATAAAAGGTATGGTCATTGAAACTTTAAGCGAAGGAAAGGACAGCTTAAGAAACCTTTTGTCGAACA AAAAAGTTCTACTTGTCCTTGATGATGTATGTTCTAAAACCCAACTTGAGAATTTGGCTGGAAACCAAGAATGGTTTGGT CAAGGGAGTAGAATTATTGTCACAACTAGGGATAAGCACCTGCTGATATCACATGCAGTATTGTTTGAAATTTATGAGAG TAAAATCTTAAATAAAAGTGAATCCTTTCTACTCTTTTGTGAAAAGGCATTCAAAATAAATGAACCTAAAGACGATTATC TGAAGTTGTCTCACAGTGTAGTGGAATATGCTGGAGGTCTTCCCTTGGCCCTTGAGGTGTTGGGTTCTTTTCTTTGTGGA AGAAGTTTATCGGATTGGGAAGATGCATTGATCAAGATTAAGAAAGTTCCACATGATGATATCCTAAACAAACTAAGAAT AAGCTATGACATGTTAGAAGATGAGCACAAGACCCTTTTTCTAGATATTGCCTGTTTTTTTAAGGGATGGTACAAACATA AAGTGATACAATTATTGGGCAGTTGCGGCCTTCATCCAACAGTTGGAATAAATGTTCTTATAGAAAAGTCTCTTCTAACT TTTGATGGAAGAGTTATTGGAATGCACGATCTGCTTGAAGAAATGGGTAAAACTGAAGTTTTTCTTGAATCTCCTAATGA TCCCGGTAGACGGAGTAGATTGTGGTCTCTAGAAGATATTGATCAAGTGCTGAGAAAGAATAAGGTAAGTGCTGTTTTTA ATGTGAAATTACTTTTTCTATATTTCATGTATCTTATGTTCGTTTTTATGAAAATTATTGTTTGTTAGGGATCTGAAATT GTTCAAGGTATAGTCTTGAAGTCATCACCGTCTAAGCTTTACGAAGCACATTGGGACCCTGAGGCCTTCTCAAAGATTTA TAATCTTAGATTACTTGTTGTATTGTGTGATATGCATCTTCCTCTAGGTCTGAAATGTCTTCCTAGCTCTCTGAAAGTTC TTATATGGTGGGGATATCCATTGAATACTCTACCACTTGAAGTTCAACTAGATGAGCTCGTTCACATACAAATGATCAAT AGTAAAGTTAAACAGCTTTGGAATGGAACTCAGGTATAAGAATTCTCAGTTATGAAGTTTCATATAAATTAATGTTATTA GGCCAGTGTTTTCAAATACTAACTAGTTTCTTATTTGTTTTCTTCAGTATTTTGGAAAGCTGAAAGTAATTGATTTAAGT AATTCCAAGGATCTACGCCAAACTCCAAATATCTCTGGAGTTCCTTACCTTGAAGAGTTGCATCTTAATCATTGTACAAA ACTTGATAAAGTTCACCAATCCATCGGACAACACAAAAAGCTCATGATATTAAACTTGATGGGTTGTGTAAATCTAAAAG CCCTACCAAGAAAGTTGGAAATGTGTTCCCTGAAAATGTTCCTTCTTTCTGACTGCCGAAACGTTGAAAGACTTCCTGAT TTTGGAGCAAACATGAAATCTGTCTCAGTGCTTAATTTAATGAATTGCACAAAACTTTTATGCCTTCCGAACAGCATTAG TAACCTGAAGTCTCTTAGAATTCTCAACATATCAGGATGTATAAAAGTTTGTTGCCTGCCAGATAATCTAAATCGAAACA AGGCTTTGGAGGATCTTGACTTGAGTAGAACTGCTGTTAGAGAATTGTATCCATCCCTACTTCAGTTGGGGAATCTTAAA AAGTTATCTTTCAAGGGATGCAGTGAGCCAGAATCTAACTCCAGCTGGGAGTTGCATCTTCCTTTTGGGCTTAAGTTCAG GTTTTCCTCCAATTTCGGGTTTTCCCCTGCTCTCACAGGCTTAAAATTTCCTCCTTCTATCTCAGGTCTTTCCTCATTAA CTGCTTTGGATTTAAGTTATTGCAATCTCACTGATTCTTCAATTCCTCCTGATATCGATTGCTTGTCGTCTTTGGAGAGA CTAATACTAAGTGGGAACAATTTTAGACGCCTACCTCTCTACTTTGCTAATCTTTCAAAGCTTCAATATCTCGAATTGGA AGATTGCCGACAACTTATATCCTTACCTGAGCTTCCAACACATGTACGCTTGTATGTATCAGATTCAGATGCAAAGAAGC CTAATTTATTAGATCCTGGAAAGATATGGAAGTTTTTTGAGTCAAGTGACCACGAGCTCTTTCAGTCACCTGTATCTCGG GTATGCGTTTCTTTATAGTATAAGTTATTTAAATACATCACATAAACCATTTGGCTAAATTATAGATTATGTTTTTTTCT AACTTGATGATTCATGATAGAACATTTAACATCATAATATCATTTCACTAATGTAGCCAACTTCATTTGGTGAGAAATGG CTGTGGTTTCTTTTTTCTGTATCTTTCTAACTTGATTCAGCATTAAAATAGCCACTTGTTATCTGTGATGTGTACATGGA TTTCTCCTAGTTTCGTTAATTATTACAAGAAATATCTCATTGTTACAGATGCTTGATTGGCCATGGACCAATCCTATGTA CGTGGAAGTCCCACCGTTAACTGACAGTAAGAATTTTTTTCCCATGGAGTCATCATATGTGTCAAAACTTGATACATTTG TATCAGTAACGGTAGGCATCCCTGATGATTGTCATTCAAGTGATTGGTGGGGAGTTTCTGTTTTGGTGGCCTTAGATGCT GGAGCTACGGATGAAGATCCTGTGGCGAAACAAATGCGCTTTTACTGGATCTTTGACTCACTAGAACCTGAAGATGACCC TTCATTATCTCTGGCCTCAGGTTCAACAGCAAATAATGACCTGTACCTTTTCACAATGGTAGTGAGTGGTGACTTTATAT ACATTCGACATCACCTAAGAGGGGACCAAAAGTGGAAACAACAATTATTTAGCAAGCATCGAAAGCCAGAGTTGAAAGAA AACAGTTTGGTGCGTTTCAAAGTTCAAGTGGGAGGGTGCAAGATAAGGAAGTGTGTGTGGCGTGTGTTGCGTGAGGAAGA TTTTGGTAAAGACTTGCAAAAGGTGAATAGCAGCAGTCAATCTTATACGACTCGTTCCCGGGGTCTGAGCAAACCAACCG TGGGTGAATTCCAGGGACAGGATGTAACTTCTTCGGACAAGCGGAATATTGAAAGATCCAATGACAACAACTTGATGGTA AGTAAAGATAAGAGTCTTAATTTTAGTGAGTTAGGCATATATGTGTGAAGAAGACATATGGAAGTTCCATTAAGAAGGGT GGGTAATATGAGGATAATCTAATTGTTAGAGATAGAAAGTTATAGAAGAAAATGACAGACTACATCATTAAGGATTAAAT GATTTATCACTTGACATGATTTATGAGAGAAGATTAAGATACTTTTTGACTTGTCTTGCAAAAGGTGAACAAAGGCCAAC CTGTTGAGACTTGTTCTGATTCTGAGCATTCCGATGGTCTGAACAAACCAACTATAGGTGAATTTAAGGGTGAGGATGTT ATTGCTTTGGATGAGCGGAACATTGAAAGATCTGATGCCAACAACAATTCGAAGGTAAGCAAGGAACCTTAAAAGTATGA TATCCCTGAATTTTGTGTTGTTTCCCGAAGTATCTTTGAGAGATATTAAGCTCAACGATGTGAAAAATGTAATGTTACTA GATCAATAGACTCATTACATATAGCAAGATATGATGCAACCCCTGAAGCTTAAAGGAGTTATATTTTTTTTTCCCAAATG TTTATTTATGCACATTTTTTTTTGGACCCAAAATTTGTCTTTAGAGAAGGCATTCAATCTCGGTACCTCATTCAATCTTG TTGCAGGGGAAATTGTTTCACAATATTAGACAAGGACTTGGTTTAAGCATGCTAGCTTTGATGGTAGGGACTGCAGTGTT CCTTTTTCCTAGGCAGGGATTCCACTTCAAACAGCACATTGCAACAAATGAGGACACTGCTAAACTATCAAAATCACGCT GGGCTTCGCATGGAACTGCATTTAAGGTCAATAAACCTCAATTGCAACAAATTCATAACAAATATGGAGGCAAGCGATTT TCTCTCTTAGTATACCAGCCACCAAGGACATTGTGTTTCTCTCGTAATTACTTTTCCTCTTACTTAACTAGACGCGGAAC ATTCTGCTCTTTATAGTTTCTTTATTTTTCATATGCTTCATTTATTTAATTGTAATGGGAACTTATAGGGAAGCTGACGT AGATTATTGTTTAGGTAAAAACATGTTAATATTTAATATATAGTTTGACAGTAGTATAATCTTTAAACTATACAGACTTC CATATGGGTAGTTTATTTAATTGTAATTAGTTTCTTTCATTCTCTGCACGGTTCTCTTCGTATCTAATTGTCATACTTAG ATTTGTAAGGGTGTGTGGTTTTTTTATGGTGAAAGATGGTAGTTTACTTTTTCATACATGTTCTTACTATTAGGGATGTA CCAAAATATATCTTGAAAATCGCTACTTGTTTTTAGTGAATGAGTCCTAGAATGTATTGAGCTCTATTCTTGTTTTTGCG CATGGAAATAATTGTTTCTTTCCAGAGAGAAAATGCTTTGAATTATGTTCTATCTTTCTGTTACACTGTACATTTGTTAG TGATATTAGTTTCCTTAATTTTTATTCCCCCCTGTCTTGAATGTAAAAGCAAATAATCATGAGTGAGTAACTTCCACACT TGTTATGAATTACTTTTTGGCCTTGGTTTTCTGAATTTGTTTTGCATTATGCCAGACTGTACTAGCAACCAATGGTGAAT AATTTGAAGACAAAGAGAGATAGGGTTCAAAAAAGAGAGAGATAGAGAGAGAATTCTGAATTGTAATCTTCTTCAAATTG TTTCCAATCTGAAATGTGTACACAGGACCTGTTTATATACAAGCTATTAAGTAGGTGAAAACAACAGAAGTTAGTTACTT TTGTAGCTAATTCAAAACAGAACCAGCATGAAGTAAAACACACTGAATCAAATACAGTCCTTTAACAAAATTTACTTATG CCTTTGGTCGTGAACAAGTTCACCTTAGTGCCAGTATTGGTAATATTCCCATGAAACTTAGCTTCTGAAAGAGAAAACTG TTGGTAAAATACCAATATCTACTCTTTTTCCTCTTGTATTGCGGGATTTTGGTGGCTGTTTTGACAGCATATGAACAGGT TTGTGATACTTATATATCATGGTAGAGGATACTATCTGGTTATATGCAGATAATGCTGTGTTTTAAATGTCTGAAATGAA TTACTGACATTTGTGTCTGAATCTGATATTGCTGTATCATTTGCTTCTCTTCATCTGGATGGTTAAATTTAACATTACTG CATGTGTTAGGGAACAAATGTGTATGGTTCCTTCTTTAGACAGAAATTCATCACAACCTGTTGGAACTAAAGAGAAGGGC ATGGGATATTGCAGTTTTGTCTACCCAATCAACACGCCCCCCCCCCCCCCCTCGCCCTACTCAGGTAGTTGATGAGAATC TGTTTATTTGTCTCTTATTATAGTTGAAGTGCGGCTGAACTGCTCCATCGTATCAGCTTTTTTAAATTGAACAAATTTGC GTTGTGCTCTTACCATTTATTTTTTTGCTGTATAATTCTTGGATTTTTAGAATAAAAATTTATGTCTTGAGTTAGTGTTA GGCCCCCTATTACTAAATTGTACCAAACGAGGTTCAGGGCATGAGCTGGGGTAGTTATTTCAGTTAGTTGGTCAATTAGT GGTTGTATTAGCTGGCAGTTTGTTTGGGGGGGGGGGGGGTTTCTGTCTTAAGAGATCACCTGGTTAGTTTGTACAGGTAT TTTGGAAATAGAATCCCACTAGGGAGAGTCTGGCCTTCTGGTGTAACCATTGTATAGAGTTGTGATTAATAAACTTTCTT CCATTCTTTCACTCAATTTAATTTTTCTGAGCAAAGTTCTACCAAATAACTCCAGTTTTAGAGCGTGTGTGCATAGGATG AGTGTTTTGAAGAGGATTTAATATGGGAGATGGTGGTGCAGATATAGAATTATTTGGTTGAAAAGTTGGTTTAAATATAG AACACGGTGTAGAAGAAACAGGAGCTGGTACGGGTGTGGGATTTACAATTGGATGCACTGCAGAAGTAGGAATGGAAGAT GAATGAGGCATAGAGACAGTCTTAGGAAAGCTTTCCTGCTAATCCTTGGAGCAGTACCTTTTTAAGTTCCGCATCTCTAC TCTTCTTGTCATATCTCTTATTATAGAAGCATGCACTCACACTCAAGAGACTCTTACCAAACGTAACGAGCTTGGGTAGC TTGGAGTGGATGAATTAATAATAGTCGAGTTTAAGTTAAAATGGTTTTGAAACGTGAAAGAAATCTTTGAAATTGATTGC AAAACTGGGAAAGGATGGTTTGTTGGATTGCAACTTGCAAGCATTGGTAACTCTATGGGATTGAGATCGTGAACAGGAAG GAGATTGAGCTAAAACATGACATGGCAAAATATTGCATAATAAAGAAAACAAATGACAATGCTACGGTGTGCATTGTTGA GAATTCAAGTGTGAGTGGGGTCCGACATTGGTTTAAATAAGTGAGATGAGAACTTTTTAAGAAATGTAACCCATAAACCC AATGTCTTAAGGTTTTATGTAAATATGTGACGTTGGTTCTCTTGGTGTCTTCACCCATGGACACCCATGGTCTCCCTAAC AAGTGGTATCAGAGTCGATGGTTTGTGTGACCATAGTGAATCCTTGTGTTGAAAGTCTTCCTCGTGGTGTGGTCAGAAAA CACGTCTCGTTGACAGCGTGGTGAAGTGAAGGACGACAAGTATGGATATTTATTAAGGGGAGCATGGTAATGTGGTAATT ACTGAAACTTGATGAGGAGAATGCTGATGATTCAAGTAAGTTAAAGTCTCACATTGGTTTTAGGTAAAAATGTAACATAA AATTCTCTGGTTGTGTTGTTTCCTCGGCTCATGGGCTCCCTCTGTCACATCTCCAAATTAATATAGATAAATTGATAGAT AGATTCCTCACTGAGTTCCACATTTTATGTTCCCGTTCATTTGAAAGTCATCTTCCTTAGCTCTTGTGAATGTATCGTGC AAATGTTGATACAACTGAATTCAAAAAATTGGCAATGCAGAGTTGAACATATAATAATAGGACCAACGTTGTCCAAATAC AGCAAAGTGTTGAGAGAAGCTTAAGAAGGATTCGCAAATAAAAGAAATCTTTACGAAGGTTTCAGAGTTGAAATAAGAGG ACAAGTCTCTATAACAAATTTGAGATATCAGCCTCCATGATTAGCTTAAAATGTAAGTCTTTATGGTGGATTCAAGATGC AGACTTCATAACTAGTTGAAGTTCCAAAGTTCAATCCAAGAAGAAAAATTTATAATTAGCTTGAAGGCAAGTATAATGGC TTAGTACAAAAGAAGGCTTGATTGACTTTTTTGAATACAGGCTTAAAGACCAATTCAAAGTGTAAACCTTCATGATC 

CDS sequence (LotjaGi2g1v0067900.1) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGGAAGATTGTACCCAAACCTCAAAATGGAAATATCAAGTTTTCTTGAGTTTTAGGGGAGAAGACACTCGCTTAGGTTT CACCGATCACTTATATGCAGCCTTGGTCCGCAAGAGTATAATAACTTTCAGAGATGATGAAGAACTTGACAGAGGTGAAG TCATCTCACAAAAACTCCTGCATGCAATTGAGGAGTCTCTTTCAGCAATTGTCATAATCTCCAAAAACTATGCTTCTTCA ACTTGGTGTTTGGATGAGTTACTTAAAATTCTTGAATCCAAACACTTGTTGGGACAACAAGTATTTCCGATCTTCTATGG TGTGGATCCCTCTGATGTACGGAATCAGAGGGGAAGTTTTGCAGAAGCTTTTAAGAAACATGAAGAAAAAGTTACAGAAA ACAAAGAGAAGTTGCAAAAGTGGAGAGATGCGTTAAGAGAAGTAGCCAACTTGTCAGGGTGGGACTCTAAGGATCAACAT GAAACTGAACTCATTGAAGAAGTTGTTGCACAAGTATGGAAAAAACTAGAACTCAAATTCCCAACATATAATGATGGACT TGTTGCAATTGACACTAGATTAAAAGATTTATATTCAATTTTGAAGCTAGGATCAGAGGATGTTCGTTTCATAGGGATAT GGGGCATGGGTGGGATAGGTAAAACAACTCTTGCTACTGCTTTCTTCAAGAAAATCAGAAGCCATTTTGATGTTAGTTGC TTTATTTCCAATGTTAGAGAGGCCTCTGGGGAGAGAGACCAAGGACTGCTACAGTTGCAAAATAAAATTCTTTCTCATCT TAACATAAAAGGTATGGTCATTGAAACTTTAAGCGAAGGAAAGGACAGCTTAAGAAACCTTTTGTCGAACAAAAAAGTTC TACTTGTCCTTGATGATGTATGTTCTAAAACCCAACTTGAGAATTTGGCTGGAAACCAAGAATGGTTTGGTCAAGGGAGT AGAATTATTGTCACAACTAGGGATAAGCACCTGCTGATATCACATGCAGTATTGTTTGAAATTTATGAGAGTAAAATCTT AAATAAAAGTGAATCCTTTCTACTCTTTTGTGAAAAGGCATTCAAAATAAATGAACCTAAAGACGATTATCTGAAGTTGT CTCACAGTGTAGTGGAATATGCTGGAGGTCTTCCCTTGGCCCTTGAGGTGTTGGGTTCTTTTCTTTGTGGAAGAAGTTTA TCGGATTGGGAAGATGCATTGATCAAGATTAAGAAAGTTCCACATGATGATATCCTAAACAAACTAAGAATAAGCTATGA CATGTTAGAAGATGAGCACAAGACCCTTTTTCTAGATATTGCCTGTTTTTTTAAGGGATGGTACAAACATAAAGTGATAC AATTATTGGGCAGTTGCGGCCTTCATCCAACAGTTGGAATAAATGTTCTTATAGAAAAGTCTCTTCTAACTTTTGATGGA AGAGTTATTGGAATGCACGATCTGCTTGAAGAAATGGGTAAAACTGAAGTTTTTCTTGAATCTCCTAATGATCCCGGTAG ACGGAGTAGATTGTGGTCTCTAGAAGATATTGATCAAGTGCTGAGAAAGAATAAGGGATCTGAAATTGTTCAAGGTATAG TCTTGAAGTCATCACCGTCTAAGCTTTACGAAGCACATTGGGACCCTGAGGCCTTCTCAAAGATTTATAATCTTAGATTA CTTGTTGTATTGTGTGATATGCATCTTCCTCTAGGTCTGAAATGTCTTCCTAGCTCTCTGAAAGTTCTTATATGGTGGGG ATATCCATTGAATACTCTACCACTTGAAGTTCAACTAGATGAGCTCGTTCACATACAAATGATCAATAGTAAAGTTAAAC AGCTTTGGAATGGAACTCAGTATTTTGGAAAGCTGAAAGTAATTGATTTAAGTAATTCCAAGGATCTACGCCAAACTCCA AATATCTCTGGAGTTCCTTACCTTGAAGAGTTGCATCTTAATCATTGTACAAAACTTGATAAAGTTCACCAATCCATCGG ACAACACAAAAAGCTCATGATATTAAACTTGATGGGTTGTGTAAATCTAAAAGCCCTACCAAGAAAGTTGGAAATGTGTT CCCTGAAAATGTTCCTTCTTTCTGACTGCCGAAACGTTGAAAGACTTCCTGATTTTGGAGCAAACATGAAATCTGTCTCA GTGCTTAATTTAATGAATTGCACAAAACTTTTATGCCTTCCGAACAGCATTAGTAACCTGAAGTCTCTTAGAATTCTCAA CATATCAGGATGTATAAAAGTTTGTTGCCTGCCAGATAATCTAAATCGAAACAAGGCTTTGGAGGATCTTGACTTGAGTA GAACTGCTGTTAGAGAATTGTATCCATCCCTACTTCAGTTGGGGAATCTTAAAAAGTTATCTTTCAAGGGATGCAGTGAG CCAGAATCTAACTCCAGCTGGGAGTTGCATCTTCCTTTTGGGCTTAAGTTCAGGTTTTCCTCCAATTTCGGGTTTTCCCC TGCTCTCACAGGCTTAAAATTTCCTCCTTCTATCTCAGGTCTTTCCTCATTAACTGCTTTGGATTTAAGTTATTGCAATC TCACTGATTCTTCAATTCCTCCTGATATCGATTGCTTGTCGTCTTTGGAGAGACTAATACTAAGTGGGAACAATTTTAGA CGCCTACCTCTCTACTTTGCTAATCTTTCAAAGCTTCAATATCTCGAATTGGAAGATTGCCGACAACTTATATCCTTACC TGAGCTTCCAACACATGTACGCTTGTATGTATCAGATTCAGATGCAAAGAAGCCTAATTTATTAGATCCTGGAAAGATAT GGAAGTTTTTTGAGTCAAGTGACCACGAGCTCTTTCAGTCACCTGTATCTCGGATGCTTGATTGGCCATGGACCAATCCT ATGTACGTGGAAGTCCCACCGTTAACTGACAGTAAGAATTTTTTTCCCATGGAGTCATCATATGTGTCAAAACTTGATAC ATTTGTATCAGTAACGGTAGGCATCCCTGATGATTGTCATTCAAGTGATTGGTGGGGAGTTTCTGTTTTGGTGGCCTTAG ATGCTGGAGCTACGGATGAAGATCCTGTGGCGAAACAAATGCGCTTTTACTGGATCTTTGACTCACTAGAACCTGAAGAT GACCCTTCATTATCTCTGGCCTCAGGTTCAACAGCAAATAATGACCTGTACCTTTTCACAATGGTAGTGAGTGGTGACTT TATATACATTCGACATCACCTAAGAGGGGACCAAAAGTGGAAACAACAATTATTTAGCAAGCATCGAAAGCCAGAGTTGA AAGAAAACAGTTTGGTGCGTTTCAAAGTTCAAGTGGGAGGGTGCAAGATAAGGAAGTGTGTGTGGCGTGTGTTGCGTGAG GAAGATTTTGGTAAAGACTTGCAAAAGGTGAATAGCAGCAGTCAATCTTATACGACTCGTTCCCGGGGTCTGAGCAAACC AACCGTGGGTGAATTCCAGGGACAGGATGTAACTTCTTCGGACAAGCGGAATATTGAAAGATCCAATGACAACAACTTGA TGGTGAACAAAGGCCAACCTGTTGAGACTTGTTCTGATTCTGAGCATTCCGATGGTCTGAACAAACCAACTATAGGTGAA TTTAAGGGTGAGGATGTTATTGCTTTGGATGAGCGGAACATTGAAAGATCTGATGCCAACAACAATTCGAAGGGGAAATT GTTTCACAATATTAGACAAGGACTTGGTTTAAGCATGCTAGCTTTGATGGTAGGGACTGCAGTGTTCCTTTTTCCTAGGC AGGGATTCCACTTCAAACAGCACATTGCAACAAATGAGGACACTGCTAAACTATCAAAATCACGCTGGGCTTCGCATGGA ACTGCATTTAAGGTCAATAAACCTCAATTGCAACAAATTCATAACAAATATGGAGGCAAGCGATTTTCTCTCTTAGTATA CCAGCCACCAAGGACATTGTGTTTCTCTCGTAATTACTTTTCCTCTTACTTAACTAGACGCGGAACATTCTGCTCTTTAT AG 

Protein sequence (LotjaGi2g1v0067900.1) extracted from Lotus japonicus Gifu v1.2 Proteins.

MEDCTQTSKWKYQVFLSFRGEDTRLGFTDHLYAALVRKSIITFRDDEELDRGEVISQKLLHAIEESLSAIVIISKNYASS TWCLDELLKILESKHLLGQQVFPIFYGVDPSDVRNQRGSFAEAFKKHEEKVTENKEKLQKWRDALREVANLSGWDSKDQH ETELIEEVVAQVWKKLELKFPTYNDGLVAIDTRLKDLYSILKLGSEDVRFIGIWGMGGIGKTTLATAFFKKIRSHFDVSC FISNVREASGERDQGLLQLQNKILSHLNIKGMVIETLSEGKDSLRNLLSNKKVLLVLDDVCSKTQLENLAGNQEWFGQGS RIIVTTRDKHLLISHAVLFEIYESKILNKSESFLLFCEKAFKINEPKDDYLKLSHSVVEYAGGLPLALEVLGSFLCGRSL SDWEDALIKIKKVPHDDILNKLRISYDMLEDEHKTLFLDIACFFKGWYKHKVIQLLGSCGLHPTVGINVLIEKSLLTFDG RVIGMHDLLEEMGKTEVFLESPNDPGRRSRLWSLEDIDQVLRKNKGSEIVQGIVLKSSPSKLYEAHWDPEAFSKIYNLRL LVVLCDMHLPLGLKCLPSSLKVLIWWGYPLNTLPLEVQLDELVHIQMINSKVKQLWNGTQYFGKLKVIDLSNSKDLRQTP NISGVPYLEELHLNHCTKLDKVHQSIGQHKKLMILNLMGCVNLKALPRKLEMCSLKMFLLSDCRNVERLPDFGANMKSVS VLNLMNCTKLLCLPNSISNLKSLRILNISGCIKVCCLPDNLNRNKALEDLDLSRTAVRELYPSLLQLGNLKKLSFKGCSE PESNSSWELHLPFGLKFRFSSNFGFSPALTGLKFPPSISGLSSLTALDLSYCNLTDSSIPPDIDCLSSLERLILSGNNFR RLPLYFANLSKLQYLELEDCRQLISLPELPTHVRLYVSDSDAKKPNLLDPGKIWKFFESSDHELFQSPVSRMLDWPWTNP MYVEVPPLTDSKNFFPMESSYVSKLDTFVSVTVGIPDDCHSSDWWGVSVLVALDAGATDEDPVAKQMRFYWIFDSLEPED DPSLSLASGSTANNDLYLFTMVVSGDFIYIRHHLRGDQKWKQQLFSKHRKPELKENSLVRFKVQVGGCKIRKCVWRVLRE EDFGKDLQKVNSSSQSYTTRSRGLSKPTVGEFQGQDVTSSDKRNIERSNDNNLMVNKGQPVETCSDSEHSDGLNKPTIGE FKGEDVIALDERNIERSDANNNSKGKLFHNIRQGLGLSMLALMVGTAVFLFPRQGFHFKQHIATNEDTAKLSKSRWASHG TAFKVNKPQLQQIHNKYGGKRFSLLVYQPPRTLCFSRNYFSSYLTRRGTFCSL 

Domain prediction

Data for domain prediction are obtained with InterProScan, and merged with InterPro data obtained from the EB-eye REST service.

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Domains

Sorting

Prediction algorithm Identifier Start End Length E-value InterPro ID
Phobius 1 1233 1233 -
Gene3D 5 176 172 1.5E-70
SUPERFAMILY 5 154 150 3.4E-43
PANTHER 6 1046 1041 1.8E-246
PANTHER 6 1046 1041 1.8E-246
ProSiteProfiles 10 151 142 27.98
Pfam 11 182 172 7.8E-48
SMART 11 151 141 1.0E-45
Coils 124 144 21 -
SUPERFAMILY 176 440 265 1.05E-63
Gene3D 177 337 161 8.3E-35
Pfam 205 412 208 1.1E-32
PRINTS 210 225 16 2.5E-24
PRINTS 287 301 15 2.5E-24
PRINTS 381 395 15 2.5E-24
SUPERFAMILY 417 521 105 1.77E-10
Gene3D 533 819 287 1.9E-28
SUPERFAMILY 545 814 270 1.63E-28
PRINTS 620 636 17 2.5E-24
SUPERFAMILY 757 912 156 3.69E-18
Gene3D 820 919 100 2.9E-18
SMART 841 865 25 42.0
SMART 866 888 23 0.71
MobiDBLite 1129 1159 31 -
MobiDBLite 1129 1198 70 -
MobiDBLite 1169 1192 24 -
Phobius 1234 1251 18 -
Phobius 1252 1333 82 -

Gene function (GO predictions)

GO predictions are based solely on the InterPro-to-GO mappings published by EMBL-EBI, which are in turn based on the mapping of predicted domains to the InterPro dataset. The InterPro-to-GO mapping was last updated on , while the GO metadata was last updated on .

GO term Namespace Name Definition Relationships
Molecular function Protein binding Interacting selectively and non-covalently with any protein or protein complex (a complex of two or more proteins that may include other nonprotein molecules).
Biological process Signal transduction The cellular process in which a signal is conveyed to trigger a change in the activity or state of a cell. Signal transduction begins with reception of a signal (e.g. a ligand binding to a receptor or receptor activation by a stimulus such as light), or for signal transduction in the absence of ligand, signal-withdrawal or the activity of a constitutively active receptor. Signal transduction ends with regulation of a downstream cellular process, e.g. regulation of transcription or regulation of a metabolic process. Signal transduction covers signaling from receptors located on the surface of the cell and signaling via molecules located within the cell. For signaling between cells, signal transduction is restricted to events at and within the receiving cell.
Molecular function ADP binding Interacting selectively and non-covalently with ADP, adenosine 5'-diphosphate.

Expression data

Expression pattern

Expression pattern of LotjaGi2g1v0067900.1, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.

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