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LotjaGi2g1v0180300.4

Overview

Field Value
Gene ID LotjaGi2g1v0180300
Transcript ID LotjaGi2g1v0180300.4
Related isoforms 7
Lotus japonicus genome version Gifu v1.2
Description Disease resistance protein (TIR-NBS-LRR class); TAIR: AT5G17680.1 disease resistance protein (TIR-NBS-LRR class); Swiss-Prot: sp|Q40392|TMVRN_NICGU TMV resistance protein N; TrEMBL-Plants: tr|A0A151RK91|A0A151RK91_CAJCA TMV resistance protein N; Found in the gene: LotjaGi2g1v0180300
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr2:60218880..60230278) extracted from Lotus japonicus Gifu genome v1.2.

CCACCTCTTTTTATTTCTACCTCTCTTATCTTATCATTCATCACATTATGCATCCATATCAAGGAGACTTGTGCTTTTCA TCTCATGATAAGATCTCAACTCACATGAAAACAATACAATAAAAGAAGAAGCTGAGTCTACTGTTTTTAAGATGTTTGAT ATTTTAGGTCCAAAAATCTCCCTAGCTAGTCTCCACCCACACTGAAGCTGCTCTCAACCCTTAATTTTTTTAAAGATTTG TATTATCAAAATTCAAAGAAGAAAGAAAAAGATGGTGTTAAGAAGAGAAGTGAGAGATAAGAAGAGAAAGATAGTGAAAA TGAGATGTGAATGAATCAAAACAATTCATAATGGAAAGAAAAGAAAAGGAAACAGCTTATTCTTATTGCCTAAGCCACAA AAATAAGAATGCATGGGGTCCTATCATTAAGAAAAATTGAAAAACAATGAGACTGTTGCATAATTAACCAGGCTTAGATA TAGATATTTTCTACAATGTATATAAGTATAAAGCGTGTGAAGAGAAGAGACCAAGTATGATGACAGTGATAAAGGTCAAC AATTTCCTGTAAATTTCTACCATGACTGGCAGGCAGGTCAAGCAAGTTAGTAGCATAATAATACAATAACGCAAGAGTAA ATGGTGCTGGGCCTGGTGGCATTCCTTTCTTGACTTTTACTTGATTTAAATGGTAGCACTCATTCCAAGTGGGATCACTT CAACAACTACAAAAACAAGCATGGGGTCCAATCATAAAGAAAAATTGAAAAACAAGGAGAGACAGACTGTTACATGCTTT AATAAGTGACTAGTCTTGGAACTCAATAATTCCAAGCTGCACCTTCGTATATATTTCTTGACACTTCTTTTTAGGATCTA TATATGAAATCCCTTTCCCCTTTAATTTTGTCTTTTATAAATCTCATGTGCATTTTGGCACTACCATAAATGCAACAAAT AGGTTTCTCATATAAAAAAGACATTTTGATGTTTTTAAAGAATGGATCTGGATCAATATTAGAGAGTACGTTGAGCACGG ATTACTGAATCTCAATATTGGACTTAACTCACATTTAATTTTATTACGAGCAGAGAAAAAAAAAAACATAAATCTTGAAG AAATAAGGATACAGTAACTTGTGTGTATAAGTGCACCTGATGTATATGCTATTGCTTGAATGCTAAGATCTATAGATAGA AAGGCTTGCATTATTCCTTCAAATTTAACCATGTAATTGCTTGCTGATTTTTAAGCCTCATAATGTAATCCACTTATTTC CATGTTTGATTACTGTATTTTCAGTGGTGTCAACATTTAACACATACCTGTTCTATCTGATCTCCTAAATTTAGAAGACC TTTCATTGGTAAAATAGAAAAAATAGAAAGGGACACACAGGCGAAATATTGAAGACCATTGGTAAAAGCAAGAAAAAATA TGCTTGAAAACTTGAACAGTTAAATTTTGTCAATGTATTGCTCAGGCTTATCATACAATTCTTTGTACCTATTTGAAAAT AAAATTTCATTTAGTTACTGAGTTGGGGAATTTAAACAAACTTCTGTTCTCTGAGTAGGGGTGAGAGTAGAGCGAACTAC TGATAGAGAGGTCTAAGACCTAGCCTAACAAGATCAAATTAATTAATAGACAACTTAATTTTTTTTGTTTGACAAAAAAA AATGACCAAAACTTTTTCAAAAGTCTATTTAGTTAAAAGGGATTATAACACTCAAATTTCAGTGAGATAGTCATGGACTA AGGGATTATAACAGTCAAATTTCAATTTTTAGCAAAATATAATACTAAGAGTCAGAATTGTCTGCATAATTATGCTCTTC CAGATTTCCTTTCCAGTGCTTCAATAGTTCTCTTGAGGAATAGTATACTTAACAGTATAGATAGGCTTTACCATATTGCA GTTTCTAAGACAATATGGTATCACTACATAATTGATTTAGCATGATAGAATGAGCATAAACATCAGATTGGTTGCTGTCT CATTTGGAGGGAATTTATTATCTATAAAACCATTTAGATAATGTTTTTTTTTGTGAACTGAGAGATATGTGCTCTTTTAC TGTTGAATGGCACATTCCACATTGTATGCTTATAATGTGAGTAGGCCAGCCAAGTAAGACTGTTACAATTTTGTGTGCAT TGTAAATTATCCTAAAAAGTTTGGACATCAATTAAACAGTTGAGGATTTAATAGCAAGATGTTCAGGATGTAAAAGTTTG AAGGCAAAATTTAAATGATTTGTTTATAGATTCTAAAATGTCAGAAGAGAGACATCAGAGTATCAGACATATATGGGATG CAAAGAAAAAGACTCTATGATCAATAGAAAATGAAAGAAAAAGATCATAGTAGGATTGTTGTTCTTGCATTTCTTCTTTT TCTGTTGATGTAATCTTATTGTCTCCTGCAGGTAAGATTGATAGAGATCCATAACGGGATAACTAAACTGCAGAACATTG TGCAAGGTAGATAACCCTGGTTCCCTGAAGTCAATTTGAATCTATCGTTTCCTGTTTCTTATTATTTCCATAATTCGTTT TAATTTGTTTTGGGTGTTAGAGGAGGGTGATAGTAATGTTGGTTGAATGGTTGGTAATGAAATATATAATAACATGCAAT TATTGTGAGAATTTTCACTATTGAATTCAGGAAAGGTCTTTATTTGTGGGAGACAGGTCAAGTAAGTTGGAAGGGTGAAA TATAGAACATAAACTGAAGTCTATGTGGGATCATTTCAATTTAGAAAACTGAAGTCTATGTAGTCTTTGTTCTATATTGC TATACATATTGTGATAGTTTGTGGCTCTCCACCATTCACGCAGCTAATGTACTAGTATCAGTTTGAGATTCAATGGTGGG CCTTACTTGATTTAATTTCTTTTGTTTGATCATTGATGGTAGAATTCATTCTAATTGGGACCACTTCCTCCACAAAAGCA AACATGAGGTCCAATCATAAAGAAAAAGTTGAAAAACAAGGAGAGACAGGCTGTTGTAGATATTTTCTTCATACATAAAT AAGTGACTAGTCTTGTAGCTCTGTAATTCCAAGCATCACCTTCATATATATTTTTTTACACATCTTTTTTGACACAATTC TCATGTATATTTGCTTGCTTTGTTCACATCATTACTTATAATACTTTTTTGTTATATGATGAAATCGATCTTAAAATAAA ATAATGCACATGTCAATAAGTAAAAGTTATAGCGTGTGAAGAAAAGCTAAGAGAACAAGTATGATGACAGTGACAGAGGT AAACAATTTCCTGTAAATTTCCTTTCTTGACTTTACTTGATTTAAATGGTCATCCATTCTTTGTGGGATCACTTCAGCTA CAAAAACAAGAATGGGGTCCTATCAAAAAGAAAAATTGAAAAACAAGGAGAGACTAATAAGTTGCGTGACACAATTTTAT AACTCTCTTTTAATTCTGTATTTCCAAGCATCACCCTCCTAGATTTTTTTACACTTCTTGTTATCTGATGAAATCGATAT TAAAATAAAATAATGGACATGTCAACAAGCCTATATATGGTTTAGTACAAAGCGTGTGTGAAGAGAACAAATTTCCTGTG AGTTTCTACAATAACTGACAGTTTTTTGTCAATAAGTCAGCAAATTTATTACCATATACCAGTGAATACAATGAATCACA CTGTTACACGAAACAGACAAGACACAGGAAAATGTATAGAAATTTCGGGCTCCTGCAAGGCTGCAACACGTTGAGAACAT AACATTCATTCTCTTTTTATATGGCAATCAGGTTCGTGCTCACTCATACACACCATTCATATTCCACACTTATCATTCCA AGCCTTCTTTTCTCATGGCTTTCCTACCATCATCATCCTCCTCTTCCATCACCTATGCATTCACCTACGATGTGTTCATC AGCTTCAAGGGTTCTGATACCCGCTATGACTTTACCGGCAATCTCTACAAAGCTCTCTATGGTAAGGGAATTCACACTTT TATTGATGACAAGGAGCTTCACAAAGGGGACGAAATCACACCATCACTTGAGAAGGCCATTCAAAACTCCAGGATTTTCA TTGTTGTCCTCTCTAAGGACTATGCGTGCTCCTCATTTTGCTTAGATGAACTTTCCAAGATTCTTGACTGCTCTCAGGAA GAGGGTCGTCTTGTTTGGCCAGTTTTTTATGGTGTGGATCCTTCTGATGTGCGAAAGCAAATTGGGACGTTCGGAGAAGC AATGGCCCTGCATACAGAGAGGTTCAAAGATAACAAGGACAAGTTGCAAAAATGGAGGATAGCTCTACAACAAGTAGCTG ATTTGTCAGGCTGGCATTTCAAACATGGGTGTGTTTCTTATACTGATTTCCTTGCGTTTTAGATATTGTCTAATTATTAC AAAAATTTAGTTATAGTGAATAAGTAATAAAAAAAGGAACATGATGCACTATTATGACTTTACACAAACTTCACTTCTCT TATTGGACAGAGATGGATATGAACACGAGTTTATCGGAAAGATCATTAATGAAGTTTCAAGAAAGATGAATCGTGTTGCT TTACCTATTGCTGATTACCCGATTGGACTAGAGTCACAAGTGCGACAAGTAGTTTCGCTTTTGGATGTTGGGTCTATTAA TAGAGTTCACATGGTAGGGATCCATGGAATAGGGGGAATTGGTAAAACGACACTTGCTCTAGCAGTTTACAATTCCATTG CTGACCATTTTGAAGGTTTATGTTTTTTGGAGAATGTTAGAGAAAATTCAAACAAACATGGGTTACTACATCTCCAAAAG ACCCTTCTTTTGGCTTTCCTTGGAGAGAAGGAAATTGAGATAACAAGTGTCAAGCATGGAAGTTCAATAATACAACATCG GCTCCAACAAAAAAAGGTTCTTCTGATTCTAGATGATGTTGACAAGAAGGAGCAATTAAATGATATTATTGGAAGACCTA ATTGGGTTGGTCCTGGTAGTAGAGTCATCATCACGACTCGAAACCAACAATTGCTAGCATGCCATGGGGTTGAAAGAACA TTCAAAGTGAAAGAGTTGAAGAAGGAACATGCTACCGAATTGTTCAAGTGGAAAGCTTTTAAAAACCAGGAAGTTAATTC AAGTTATGAGGACTTACTGAACCAAGCATTGAGTTACACTTCCGGCCTTCCATTAGCTTTGGAAGTAATAAGTTCTAACT TGTTTGGTAAAACAAGGGAAGAATGGGAATCGACATTAGAACAATATAGAAGGATTCCACCTAGAGACATCCAAAAGATA CTTGAAGTGAGCTTTGATTCTTTGGAGGAAGAAGAGAAGAATGTTTTCCTAGACATTGCTTGTTGCTTCAAAGGATATGA ATTGGGAGTGGTCAAGGACTTACTTTGTGCTCATTATGGTTTCTGCATAGCAAATCACATTAAGGTGTTGGTTCAAAAGT CTCTCATAACGATTACTCCGTATTTGAGTGAATTGACACTACATGACTTAATTGAGGATATGGGTAAAGAAATCGTGCGA CAAGAATCACCTAAAGATCCTGGAAACCGTAGTAGGTTATGGTTTCATGAAGACATATTTCAAGTTTTGGAACAAAATAC GGTAAGACTAGTTCGGATGATTTGGTTGTTTATCTTTAATCTTTATTTAGCCTTTTTGATTATTCAAAGCTACTAATGTT TATATTACCATTTTCCCTCTTTATAATATTTCCAAGAACTTGTGTTAATGTCCTAACGTATATGTATTCATTTTGATTGA TTTGTCTTTTTTTAAGGGAACAAGCAAAATTGAAATGATGCATCTAGATTACCCGTCATTTGAAGAAGTGGATTGGGATG GAGAGGCTTTCAAAGAGATGAAAAAACTGAAAACACTTGTCATTAGAAAAACTCATTTTTCTAAAGGTCCAGAGCATCTT CCAAATAGTTTAAGAGTACTAGAGTGGTGGAAATACCCTTCACAACATTTACCAAGTGATTTCCGTCCAAAGAAACTTTC CATATGCAAATTACCCGAGAGTAGGTTTATGTCATTGGAGTTGCTAAGTTCATCAAAGGCAAGTATGATAATGATTCAAT ATCCTTGATCTTCTTGTGTATTATACATCACTAATATTCATTTGATTTTTGTTTTCCTTTTTTTCTTTTCTTTTTTAGCA GAAGTTCGTGAGTATGAAAGTCTTAAATCTCAATCGGTGTGGATCATTAACACATATACCTGACGTATCTGGTCTCCCAA ATTTAGAAGAGCTTTCATTTAAAGATTGTTCAAAATTAATTACGGTTGACTGTTCGGTTGGGTTGTTGGCCAAACTTAAA AGCTTGAATGCTCGTCATTGCTCCCAGCTTAGGAGTTTTCCTCCCCTCAAGCTGCCCTCTCTTGAAGAACTCGGGCTTGA AGGTTGTTCAAGTCTTGAGAGTTTTCCAGAAATATTAGAAGAGATGGAAAATATAGAGGAGCTTGATTTGAGTGGCACTA AAATAAGTAAATATCCATATTCATTTGGAAATCTGACTCGACTTCGATTAATGTGGGTTTATCATTGGCTGCCATCAAGG AGCTTAGACACGATGCCACGACTATTAGGCCTCATAATCAATCAGTGGCCGATATGGGAAGAGGATAGCGAGAGTGAGAC TTACTATGTATTGCGAAACTTACAGATTCCAGAGAGGTTTGAGCACCAGAACAGGGGTCGATCTCCGTCACTTTCTTTCT GGTTTCGTAACGACTTCCCTGACATCTTACTATGTATTGCTTCTCCACCTGAGCCAAATATGCCTGACAATGATTATTTA TTCAGAGTAAATTTCTTCATCAATGGCTCTTCATGTCAACAATTCATAGTAAATTGGGGTTGTACTCTTCTTAAGAGGCT AAGAAAATACTACTTTTTTAAAGATATGAGGCTAAGCCAAACAAACTATTCATGGAAATATAAATTTATAGAAAATGTGT GGAATCATGTGGAGTTTAGGACTGAAAGGGGCTTAGACTGTGGAATTGGAATCCATGTATTGAAAGAGCAAAACATGCAG GATATCCGATTCACGAATCCTGATAAAAGGAGAAAAATAGACTTGAATTTGGCACCGCTTGAAGAGGATGATGTTAATAC TGAGTTGACTCACTAAAGCACAATCCTGGATCATTGCTCTTGGGCCTATATATTCTGATGTGAATAAAAGAGAATGAGAT CAACTCTGAGATCAGATGTTGAACATGACTCGTTTATATTATGTTCACATGAGATCTGATGTTGAAGTAAGTAGATCAAT AGTTTTACATAAACTTGACTTCACTTCATGGAAAAATCTAATTCTGGAGCTTGTGCAACCATATTTTGTAATTAATTACA AGGTAGAACTGATGCAGAAGCTCTTGAATGGTATGAGAAGACTGCAGAACCAGAGGCCAAAGGGCATGACAAGGTGGGCG TAAGCTTCTTTATTGGGAGAGTATGCGACAGACCTTCAATTTTAACTACATAACCACTTGCCATTTTTTAATCCTCTGAA CCCACTTGTTTCCATGTTTGATTACTGTATTTACAATGATGGTAGGCCTCCTGGTATCCAAAAATAATACTATGGTTTAG AGGATGAGTTAAACAACTTGCTAATGCTTCTAAGGAGGACTATACATTTAACATGGTCATGTTTATGATGGATATGTTCT GGCATGTGTGATTGGACTTCAACTAATAATTGTCATTTTCTTTGCAAGGTAGGCAAGGGCTTCATCCATCCAACAAGACA TGGATACATTGGAAGATTTATAAATTATACTTGTACTTCTTACCTTCATGTCATAATGATTGGAGCCTTCCCCACAATGT ATAAAAGACATATAGAAGGTATGCTTATAATTGCTGCAAGGGAAGAGATATCAGAGTTAGGAGCAATACTTGGCATTGTG ATTCAGAGAATGTGAATCATTGAGTTTCTCATGTAGAAGCATGTTGCTGAAGCAGGTTAACTTTTGTTTCGATTTGATTT GTTATGCTTTGAATGTGATAGATTTTATCATTAATATTCTACACTAAAACAGGAAGTGCATGAGGGGTAAAGACCTACTT TGAATTGCCATGCCTATAAACAGGAAGGATTCCAAAGTGGTTTGAGCACGAGAGAAGGGGTTCACTTTCTTTCTGGTTTT CCATCGTACACTGATTTTAACTCTGAATGGTCATTCTTTACCCCTGATCTCATTTTAACTCCTCCATAAAATTTAATTTT ATGATAGAGGTATTTTAACTTCTTCTTTTTTTCTTCTGGTTTCTAGCAGATTTGGAGACGGAGGCTGTAAACTGGATCTT GGGACTGTGGCTGGGTAGCAGTCATCATTGCTGCTGTTTATCATCCAGGTTTATTGTAAAGAAAATTTTCAAGCAATTAA ACCTATCCTTTTGGTATGTTTCTTTCCCATTTTCCAGTACCTTTTAAAACTGTTATGTATTCATGAATCACTGGTACATA TTAAGGCTGTGCATTTTTTATGACAACTGCAGACTGCTACACTGCTGTGCTACCACACATCTTGAACTTTTTCCTAGTTT AATGATTTTCATTCTTAGCATATACTTATGAACCATTTTTTACTATGTCCACTAAGAGAAGCCATGATTGGATTACCCCT GACTTAAAACATTCTATTCTATGTAAAAGGTCGCACATTCTTGAAGGATTTAGGCCTTCCACTTCTTACTGCATACACCA AAGATTGTCCCTTCTTGAGGGACCCTATTCAGATTTAATAAAAACCAACATGGATTAACATCTCCAATGACATAGGTACA ATATATTTTATCCAACATGGATTGGAATGTTGGATATATTCTTTCCATTTTTATTATTGTTTCCTTAATTCCATTAAATT TGAAAGCAAGAAGAGAGCATGTTGTTAAGGTCTGATTTTAGTGAATTGCTATGTCACTGCTTTATATTGTGCATCATGTT CCCTTTTTCTGCATTTGTTCTGGGTGTCAAAGAAGGGTGATAGTAAAGTTGGCTTCTAAGAAGACTAATGACTTGCAATT ATTAACTATTGAATTCAGTTGAGTTATGGAAGGTCTTTCTTGGAGGGAAATTGGTAAATAATTCAGAAGACAAGTGAAGC ACGTAAGGTTGAAAATTTGATCCCAGCAAATGCATTTGAAATTTGTAAAGTCTGAGGAGTCTGAAAAATAAATTAGGACT AATCTTTTACCACTATCACCATTGTGATCACCATTACCATGGTAATAATGGCTGCATTCATTCTAAGTTGGTTCATTTCC ACCAAAAAACAAGGAGAGATACTGTTGCAGAAATAACCAGGCATAGATACTTAAACTTTGAGCTCTTTATTTCCAAGCAT CACCTTAATATTACAAGTACATGATAAATATATTGCAATAAGGATAAGGGTAGGAGAAGCTTAAATATCTAGATTGTGTG TCAAGAAGAAAAATGAAATGCTATAACTTCTTAGATAAAAGTTCAATTTCTGAAATTACTGTACTCCTTGCTGCTTATAT CTCGTTTATTTGCCATTTTAGGTTCTAGGAAATTCGTTTCTCCTTATGTCTAATAGATCCCTTGTACATGCAGAAGTGGT TTTATTATAAAAAGATGATCGGTGCATTGAAATGTCTTGCGACTATAACTGACTCTTTACTGGTTCTTGGATCTATTTGA AGTGGCACCAACATTTAGCATCTATTACCACAGAATCTCGGAAAGGCTGCTTGTTTGGTGTGGTCTGAACTTTGAATTGA AAGTTGAAGGTATGTATTTCATAGAAGTAACTGAAATAGGATCACATTTGTTTGAGAATTCTAGCAGAAAAATTATTTTA GATTTGATATAAGTGCAATCTAATATTGATTTGCAGTGCATATGTGGGAAGTTTATTCCTTAGGCAGTTCTGTAGATAAT TTTTCCAAAATGGTATTGAGAAGTCCCACATTCACTAGAAATATGGTTAAGATAGTCTTTATATATGGGAAGACAATCCT TGAACAAACTTTTTGGTTGAGTTAATTCTCCCAAATTCAAATATGGTATTAGAGCTTCTACCACTGAGTGGTTTGGACTT CGATCCTTTTTGCTCTCATTATTCTAATAAAAAGTGGAATTTTAGCACATAGTAGGTGGGTATGTGCATTGTCCACTCTT CAAGCCCAAGTAGGCTCTTGCGTGAGGGGGCGTGTTAGAAATATAATATAAAACTATTCTGAGGTTTTTGTCCAACAACT TAACTTTTTGAGATAATTGGTTGATTGACCGTGTGACAGCTATCTAAGCAGTTAGTAGTATCTAAATGTTATGAACCTGA GGCTTCACAGAATGTTGACTTAAACTATTCTTCAAGGCATTCTGATTCTTCAATATTGGTCCTTTATCTGAAAAAGGAAA TTTAGTTCTCTAGTAAATAACAAATGGACATTGTGAGATTTACACTTCAAGTTACCGGGAAAAGAATGGATACGATTACT AAATCCCAATATCGGACATCATTTGTGACACTAACTCAACATTTTATTTTATTTCAAGCAGAGAAGAAAAACAAATTTTC TTGAAAGAGTGTATAAGAACACCTGATGCAGAAGCTACAACTTGAATGCTAAGATTTATGACACCAAAGCTAGCTGAACC AGAGGCCAAAGGGCATGATGACAAGGTGGAACTTATAAGCTTCTTTAATGAGAGAGGGGGCAACATAGCTTCAATTTTAA CCACGTAACTGCTTGCTAATTTTTAAGCCCCATAATGTCATAATCCTCTTATTTCATGTTTGATTACTATAAATGTAGTG GAGATACACCACATAGACATAGTAGAAGCCGATTTGTTACCCTGGTGCACAAATCGTGGTATGCAAAAATAGCATTATGG TTTATTAAAGACAAGTTATGGTCCAGCAGAGTTACTTGCAAATATTCTAGCAAGGTGGTTCTGATTAGTTGTTCAAGAGC TTCCAGTATTATCTGGAGGATAGGTTTTGATCACTCTGTTGTGGTTGAAGCAGAAGGCTTTGTGGGAGGTATCTGGATTC ACTGGGATGGTCAGGCTTTTAGATGTGGAGATTCATGCGAGGATTAAGGCCAAGGGATAGTTTGGCCTTTTTAAATGGAA ACTTTGATATTCTATTGTTTTTTTAGCACTAAGACATGTTTAGATAAGAAAGTGAACTCATACACAGTCGATCATTTTAT GTACAATGGGGCTGCAATTCTCATTAATATTTGTTGGGAGCAATAATAGAAAGGAGAGAAGAGAGAAAGAAATATAACAC AGGAGTTTTTAACGTGGTTCGGAACACAATGTGTGTACCTACGTCCACGGCTACACTAGGTAGTAATATTTCTTTGGTGT GTATAATGCTTACAATGAGGTGCTTATATATAGTAGGAG 

CDS sequence (LotjaGi2g1v0180300.4) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGGCTTTCCTACCATCATCATCCTCCTCTTCCATCACCTATGCATTCACCTACGATGTGTTCATCAGCTTCAAGGGTTC TGATACCCGCTATGACTTTACCGGCAATCTCTACAAAGCTCTCTATGGTAAGGGAATTCACACTTTTATTGATGACAAGG AGCTTCACAAAGGGGACGAAATCACACCATCACTTGAGAAGGCCATTCAAAACTCCAGGATTTTCATTGTTGTCCTCTCT AAGGACTATGCGTGCTCCTCATTTTGCTTAGATGAACTTTCCAAGATTCTTGACTGCTCTCAGGAAGAGGGTCGTCTTGT TTGGCCAGTTTTTTATGGTGTGGATCCTTCTGATGTGCGAAAGCAAATTGGGACGTTCGGAGAAGCAATGGCCCTGCATA CAGAGAGGTTCAAAGATAACAAGGACAAGTTGCAAAAATGGAGGATAGCTCTACAACAAGTAGCTGATTTGTCAGGCTGG CATTTCAAACATGGAGATGGATATGAACACGAGTTTATCGGAAAGATCATTAATGAAGTTTCAAGAAAGATGAATCGTGT TGCTTTACCTATTGCTGATTACCCGATTGGACTAGAGTCACAAGTGCGACAAGTAGTTTCGCTTTTGGATGTTGGGTCTA TTAATAGAGTTCACATGGTAGGGATCCATGGAATAGGGGGAATTGGTAAAACGACACTTGCTCTAGCAGTTTACAATTCC ATTGCTGACCATTTTGAAGGTTTATGTTTTTTGGAGAATGTTAGAGAAAATTCAAACAAACATGGGTTACTACATCTCCA AAAGACCCTTCTTTTGGCTTTCCTTGGAGAGAAGGAAATTGAGATAACAAGTGTCAAGCATGGAAGTTCAATAATACAAC ATCGGCTCCAACAAAAAAAGGTTCTTCTGATTCTAGATGATGTTGACAAGAAGGAGCAATTAAATGATATTATTGGAAGA CCTAATTGGGTTGGTCCTGGTAGTAGAGTCATCATCACGACTCGAAACCAACAATTGCTAGCATGCCATGGGGTTGAAAG AACATTCAAAGTGAAAGAGTTGAAGAAGGAACATGCTACCGAATTGTTCAAGTGGAAAGCTTTTAAAAACCAGGAAGTTA ATTCAAGTTATGAGGACTTACTGAACCAAGCATTGAGTTACACTTCCGGCCTTCCATTAGCTTTGGAAGTAATAAGTTCT AACTTGTTTGGTAAAACAAGGGAAGAATGGGAATCGACATTAGAACAATATAGAAGGATTCCACCTAGAGACATCCAAAA GATACTTGAAGTGAGCTTTGATTCTTTGGAGGAAGAAGAGAAGAATGTTTTCCTAGACATTGCTTGTTGCTTCAAAGGAT ATGAATTGGGAGTGGTCAAGGACTTACTTTGTGCTCATTATGGTTTCTGCATAGCAAATCACATTAAGGTGTTGGTTCAA AAGTCTCTCATAACGATTACTCCGTATTTGAGTGAATTGACACTACATGACTTAATTGAGGATATGGGTAAAGAAATCGT GCGACAAGAATCACCTAAAGATCCTGGAAACCGTAGTAGGTTATGGTTTCATGAAGACATATTTCAAGTTTTGGAACAAA ATACGGGAACAAGCAAAATTGAAATGATGCATCTAGATTACCCGTCATTTGAAGAAGTGGATTGGGATGGAGAGGCTTTC AAAGAGATGAAAAAACTGAAAACACTTGTCATTAGAAAAACTCATTTTTCTAAAGGTCCAGAGCATCTTCCAAATAGTTT AAGAGTACTAGAGTGGTGGAAATACCCTTCACAACATTTACCAAGTGATTTCCGTCCAAAGAAACTTTCCATATGCAAAT TACCCGAGAGTAGGTTTATGTCATTGGAGTTGCTAAGTTCATCAAAGGCAAGTATGATAATGATTCAATATCCTTGA 

Protein sequence (LotjaGi2g1v0180300.4) extracted from Lotus japonicus Gifu v1.2 Proteins.

MAFLPSSSSSSITYAFTYDVFISFKGSDTRYDFTGNLYKALYGKGIHTFIDDKELHKGDEITPSLEKAIQNSRIFIVVLS KDYACSSFCLDELSKILDCSQEEGRLVWPVFYGVDPSDVRKQIGTFGEAMALHTERFKDNKDKLQKWRIALQQVADLSGW HFKHGDGYEHEFIGKIINEVSRKMNRVALPIADYPIGLESQVRQVVSLLDVGSINRVHMVGIHGIGGIGKTTLALAVYNS IADHFEGLCFLENVRENSNKHGLLHLQKTLLLAFLGEKEIEITSVKHGSSIIQHRLQQKKVLLILDDVDKKEQLNDIIGR PNWVGPGSRVIITTRNQQLLACHGVERTFKVKELKKEHATELFKWKAFKNQEVNSSYEDLLNQALSYTSGLPLALEVISS NLFGKTREEWESTLEQYRRIPPRDIQKILEVSFDSLEEEEKNVFLDIACCFKGYELGVVKDLLCAHYGFCIANHIKVLVQ KSLITITPYLSELTLHDLIEDMGKEIVRQESPKDPGNRSRLWFHEDIFQVLEQNTGTSKIEMMHLDYPSFEEVDWDGEAF KEMKKLKTLVIRKTHFSKGPEHLPNSLRVLEWWKYPSQHLPSDFRPKKLSICKLPESRFMSLELLSSSKASMIMIQYP 

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
SUPERFAMILY 7 160 154 4.58E-42
Gene3D 13 188 176 7.7E-67
PANTHER 15 625 611 3.1E-270
PANTHER 15 625 611 3.1E-270
ProSiteProfiles 16 157 142 29.084
SMART 17 157 141 3.1E-43
Pfam 18 185 168 7.1E-43
SUPERFAMILY 185 447 263 1.78E-66
Gene3D 189 351 163 1.6E-32
Pfam 199 432 234 1.7E-30
PRINTS 219 234 16 7.3E-20
PRINTS 295 309 15 7.3E-20
PRINTS 388 402 15 7.3E-20
SUPERFAMILY 424 532 109 7.62E-24
PRINTS 561 577 17 7.3E-20

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 LotjaGi2g1v0180300.4, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.

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