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LotjaGi1g1v0506000.3

Overview

Field Value
Gene ID LotjaGi1g1v0506000
Transcript ID LotjaGi1g1v0506000.3
Related isoforms 3
Lotus japonicus genome version Gifu v1.2
Description Disease resistance protein (TIR-NBS-LRR class); TAIR: AT5G17680.2 disease resistance protein (TIR-NBS-LRR class); Swiss-Prot: sp|Q40392|TMVRN_NICGU TMV resistance protein N; TrEMBL-Plants: tr|A0A0R0LCQ5|A0A0R0LCQ5_SOYBN Uncharacterized protein; Found in the gene: LotjaGi1g1v0506000
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr1:102421749..102433617) extracted from Lotus japonicus Gifu genome v1.2.

CGATCATCATTCATCAGTTGCAAGTTACAACCTAACTACAATGCTCACTTCTCAACCTAAGTTATAACCAAACCTAGTTT TTGTCAATAGTGGATTATTGTCTTTTTACTCCGCCGTGAAACACCCAGAACCACCGTGCACGTTGTTGGTTGAGCATCCA TGCGGCTTCTTCCTCTGTTCCAATCACTCCCCAAAACCACTCACTACTCCTTGAGGTTTGCATCAACTGCACTTGCCCAC GTTGATTCACCATCTTTCTCAGACACCCCACCTCGTGTCCCTGAGCTTCACAAGGACACCTCCAACGTGCTCCAAACGCT TCACCGTCTGCACAACCGCCCTTCTCTTGCTCTTTCCTTCTTCACTCAGCTCAAGCAACAGGGGGTGTTCCCTCACACCA CTTCAACCTACGCCGCCATTATCAGGATCTTGTGCTACTGGGGATTGGACAGGAGGTTGGATTCTGTCTTCCTTGACCTC ATTGCACTTTCCAAACAAGACCCATCATTTGAAATCCATGACTTGTTTGAAGAGCTTTTGGAGGGGGATGAGGGTGTTGA TAGGAAACCCCACTTGCTCAGAGCATTTGATTGGTATGTTAAATCTTGTGTCAGTCTTAACATGTTTGAAGAGGCTTATG ATTTCTTGTTTCTAACTAGGAGGCGTGGGATTCTGCCTAGTATTTGGACTTGTAACTTTCTCATCAACCGGTTGGTTGAT CATAATGAAGTGGAGAGGGCTTTGGCCATTTATAAGCAGCTCAAGAGGCTTGGTTTGAGCCCCAACAATTACACCTATGC CATTGTTGTCAAGGGACTGTGTAGGAAAGGTTACTTGGAAGAGGCGGAGCACATGTTAAAAGAAATGGATGAAGCTGGGG TGAATCTTGATTCCCATTGTTGTGCAGCTTTAATTGAGGGCATTTGCAATCATTGTAGTTCTGATTTGGGATATGAAGCG CTCCAAAAATTCAGAATGATGAATGCCCCTATAGAGGATCATGCCTACGCCGCTGTTATTCGTGGGTTTTGTAATGAAAT GAAATTAGATGAAGCGGAGATTGTTGTTTTGGACATGGAAAGCCAGGGATTGGTTCCTGACGTGCGTATTTATTCTGCAT TGATCTATGGATATTGTAAGAATCGTAATCTACACAAAGTTTCAGAGTTATGTAGTCAAATGACTTCAAAGGGTATAAAA ACAAATTGTGTAGTTGCTAGCTACATCCTTCAATGTCTTGTTGAGATGGGCAAGACCTCAGAAGTGGTAGATATGTTTAA AAGATTGAAAGAATCAGGTATGTTTCTCGATGGGGTAGCTTATAATATTGTGTTTGATGCTTTATGTAGATTAGGCAAAG TGGACGATGCAATAGAAATGCTGGAAGAGATGAGAGTGAAGAACATCGATTTAGATGTTAAACACTACACAACCCTTATT AAGGGGTATTGCCTTCAGAATAAGCTCTTAGATGCCTCGGATATGTTTAGTGAAATGATAAAAAAAGGTTTTGCACCTGA TATTGTCACATATAATGTACTAGCTGCTGGGTTGTCTAGAAATGGCTGTGCTTGTGTGGCAATTGACAATTTGAAAGCTA TGGAAGAACAAGGAGTGAAGCCAAACTCAACTACACACAAGTTGATCATTGAAGGTTTATGTTCAGAAGGCAAGGTTGGA GAAGCTGAGACATACGTTAACATTCTAGAAGATAATGGATTTAAACCTGATATTGTGATATATAATGTACTAGTTGCTGG GTTGTCTAAAAATGGCCATGCTTGTGGGGCAATTGGCAAATTGGATGATATGGAGAAACAAGGTGTGAAGCCTAACTCAA CTACACACAAGTTGATCATTGAAGGTTTATGTTCAGAAGGCAAGGTTGTAGAAGCTGAGGCATATTTTAACCGTCTGGAA GATAAAGGTGTGGAAATCTATTCTGCGATGGTGAATGGCTATTGTGAAGCATACCTTGTCGAAAAATCGTATGAACTTTT CCTTGAGCTGTCAGACCATGGGGATATTGCAAAAGAAGATTCTTGTTTCAAGCTACTTAGTAACCTCTGTTTGGCAGGTC ACATTGACAAAGCTATGAAGTTGCTGGACAAAATGTTGTCATTTAAGGTGGAACCTAGCAAAATAATGTATTCTAAAGTA TTAGCTGCTTTGTGCCAGGCTGGGGATATAAAACAGGCTTGCTCTTTGTTTGATTTTTTGGTTCGGAGAGGATCTACTCC TGATGTTCAAATGTACACAATTATGATAAATAGTTTATGTAGGATGAATTACTTGAAAGAGGCCCATGACCTCTTCCAGG ATATGAAGAGGAGAGGGATCAAACCTGATGTCATTGCCTACACAGTCTTACTTGATGGGAGCTTTAAAAATGGAGCGACA TCGGATGTTCTCACCATCTGGGGTGATATGAAGCAAATGGAAACAAGTCCAGATGTTATTTGTTACACTGTTTTGATTGA TGGACTCATAAAGACAGATGACTGTGTAGATGCAATTAACCTATATGAAGACATGATTCACAATGGACTAGAACCAGATA CGGTAACATACACTGCTATGATTTCTCTCTTCTGTAAAAGAGGTCTCGTGAAGGAAGCTTCTGAATTGCTTGATGAAATG TCTTCAAAGGGAATGACACCAAGTTCGCATATCATCTCAGCTGTAAATCGCAGTATTCAAAAAGCTAGAAAGGTGCCATT TCATGAGTAGGTTGTCAGCTCAGACTGTCAGTGCTTGGATCTATCTCAAGTTCTAAAATCTATCTGGTCAATATCAATAC TCAATACCTGAAGGTGAAACATAATCTTACGTGCTATTGACTAATTTACTAAGACTTACTACTGAATCATTGTTTTTTAA GTATTACACTGAAAGGCTTTGTTGGATTCTACAGATTGGAAAGAGAAGAGCTATGCAGTTTGCAGATTGATTACCAGGAT GTATTTGTATTTAGGTATGGAATCTGCCTTATACTGATTTAAATTATGTGATATTGTGAAATTATTTTACTGGACTAAAA AAAGACTTTAATGTAAATATTTCTTGCAATAATAACTCTTTCTGTATTTTTAATATTGCATTATTAAGTCACTCCGTGAT TTTGTTATTTCAATTTCCTTTAATATCTGTGAACACTACAGTGGTTAAGCTTCTTTGCTACTGTACATTTACTGTTCCTA TTAAGGGTTTTATCCTATGAGGTCCTGCTCTATTTTGTTTTATTACCCACGTTTGCTTCAACGAAAAAATTGAGGCTTTG GTGTGCCCATGAAGCAACTATCATATCTTCCAATTAAATAGTTTATGTGAACCATCCCGTCGGCCACACACTTGCTGGAA GAATTTATTGTTTCAGTTACCCATTTTTCCTTTGAACTTTTTTGTTTTCAGACTCCCTTTTAAGTGGAAATGGAGTGGAT AGAAAAGAGAGAGAAAAAGTCAGAGATGTGATAAGTGATATGATTGAATGAGAAGAAATAAATAAATTGAAAGTAAATGT ATAAATAAAAATGGATAGTATGCATAAATTTATTTTTATGCATAAAAGTTAAAATAAATTTATGCATACTATCCATTTTT ATTTTTACAAATATTTATAAACTGGCAAAGTTTTTTGCTTGTTTATAACCTGTAATAGCTAATTACAAAATGTTGTTTGT TATTCATCATCTTGGTTTTGGTAAGTGGTGCTTTCAAGCCATGCGAATTCACTTTTACTTTGTGGTTTACTTTATGTGTT GGCATTAATAGGTGATTATTTTTATTGCTGCAGGTATCTATTTCAAAATCATTTGGATATGGTGGACACTCCCACAACTC TGGTTTCAATTTCTGCACTCAGGCGCTGCTTGGCGAGCTTGTCCCCACTTTATGGTGAGCACGAGTCATCAGTCATCACT AAGCCTACTCATATTATTTGAGTCCATGATTCGTAAATGTAGTACGCATGTGCATGTAGAGTTAATTGTGATTTGACAGC TAATTTGATATCCATTTTAAGTTTTTAATGTACAACTTTTTGAGTAATTTCTATAAAACTCCAGTTAAAAACAACAGCGG AAAGGCTTAATTTAACAATAAAATCAAGATCGAATAGTTTCTATGTAACTCTATTTACAAACTAAAATCTTATCATTTTT ACTTTTTCTTTATAAAAAAATTAGAATTATACAAAAGTGGGGAATCCGTATTCTTGTTATGCACTCACAAGTTCTGTTCT TTGTCAGCAGTTTGTGAAGATGTACACATCAAGGAAGAAAATCTACAAGGGTAAGGATGCTGATCCTACTGAGTTTGAAG AGTTAGTCGAGCAGGTGTTGTTTGAATGTTGTTGTGGATGCAGTTGCTGATTGCACTTTTTGCCAATGTGTAAGTGTTTT TGATTGAGTTTTGTTGTTGCAGCTTACAGGGACTTTTTGATCTGGAAGATACCTATCAGGAGCTTAAAAGTATTTGAAGG ATCTATAAATCAATTCAGCAGTGTAAGGATGAGTATTACATGCTTCTCTGTGTGTGTGTGAAGGGTCATGAATTTTCTGT CTGTATTGTGACTTGTGTTTTTACTGATTCGCTGACAAATTGATGTTTGCGGGAACCGCAAGGCTGTTGTTATTCATGTC CCCAGGTTGAGAAAATCTTTCAGTAAGATTCGTGTTAGACTGTTAGACTTGTCAGTGACCTTGAGAAGAAGTTTAGTGGC AAGGTAAATTTAGTTTAATTTATTTCTGTTGTGTAGACTAAGTAGTTAATTTGTTTTCATTGACATTTTTTGTTAGTTTG AATTCATTACAGAAGAGTGCTAACAACTCACTCTTTTAGAGACACATTTATATTTTGAAAAGTCAACACATTTCTACCTC AAAAAAATGTATTGACTTTTAAAAAAATGAACCGAACACAGTGAGTGTGTTGGAGTGTATCTTTAAAAGAGTGTGCTACT AGCATTTCTCTTCATTTGATATTGTTAATTCTCCTTCTATTGGCCATTCTGATGTAATAATTGCATGAGAGGCAGCATTC TATAATTTCAGAAATGTTTTATCATGCCTGAGGGAAGTGCTTTGGTGTAACCTCCTGGTAATGAAATAGTAGAGTTATAT CCACAAACCAAATACAGGATTACTTCAACTAGTTGAGAGTGTAATTTATTTATTACATGCAGGCTATATTAACTTAGTTA TTCCTCTGTCCTGAGGAATTTCTTTGTGACCCTTCCGAACTAGCTCTTACTAAGTATTTGCCCCTCAGTAAGTAGAATTG TTGAACAATCTCATTTTGATTATTCTTTACTTTCGAGTTGCTTTATTTTTCATTTTGTCACTGACCTGTTTAAATCATAT TAAACTTGTAGGATGTAATTTTGATTGCCACCCGGAGGATATTGAGGCCACCAATGAAGGGTTTTATTGTTCAACGTCCC TGCACGCAAACCCTTAGAGCTGTTTATGAAGCAATGCTGGAGGATATCGTGTTGTCTGCTGAGATTGTTGGGAAGCGTGT GAGGTACCGAGTTGATGGATCCAAGATTATGAAGGTAGAGCTGTTGTTTCCTATCAACTTCTAAAGCTTTCTTATAAGAT AAAACGCCTCTTTACCATGTCAATGTATGTACATGTTTGTATTGGAAATGAATTCCCTTGGTAAAATGTGTGTGAAAGTT GTCATTTTTGCCTTTGAAACTTGCAAATTGATTACCTTTGCACAAGTTTTTATTCATTCATTCAGAATTGTATCTTTGTA CTCCTGTCGATAGATTTTCTTGAACCCAAAGGAACGAAAAAGCACCGAATACAAAGTTGAAGACTTTTGCCGCAGTATAC AGGAGGCTATCCGGCAAAGATGTTGTGTTTGAGCATCCCATCACAGATGCTTAGTTTCATTTCCTTTGCCAGCTTTCAAT TTGTTCTAGAGTTGCATATTGTGTATGCTGGTTAAAATTTGTCCGAATAATTTCCTTTCATGCTGGTTTTTTTATCCTGG TTTCTTAAAGTACAAGGGACTCGTTTCATCAATGTAGGATGAGTTTTAATTTTCTTATAAATTTCAGGTTCTTTTCGCAA AACTGAAAGATAATTCACAAAATGAAAAACAGATTAAAAGCTTAGTTCATAGCCAACCTGATATAGACATACCTTCCAAA ATTAAATCAATGTAATGCTAAACCCTTCCCAAAATATATGAAAAAATATTAAAGCGTAATTCAGTTCTTACTTTATTATG TGCTTATCTATTCACAGTTTCACTTCATTTATATCTGACTTCCTATCTATCTTTCACTTCTCTTTCAATTATATCACGAA TTACATTGTGAGAACAAAATCCCTTATGTGTAGTCCATTGGTATTATTCACTAAGGTAAATGGTGATGATATGATCTGCT TGATTTCATATATAGATTCTATACAAAGCGTGTTTTTCAGAATTTTCCATGGAAAACATTCATCTGCGAAAGCTTGATTT TCATGGAAAACATTCATCTTTAAATTGTTAGTACGTTTTAAGAGATTTTTCAACAAGAAAATGAGGGAATAGTGTGATGT GAAAGGTTGAACGCTTAGTAGGTCAAAAAGTTTAATCATGACGCGGAAAGCAATAATATCAATTATCAAAGGATGGATAA TATAGATGAGAAGTCAACATATACTGCCAAAAAAGGCATAGCAATTAGCAACCAGCCAGAGCCCAGGAGAAAAGATATCT TGATTCCAGTACTGTTGTTAGCGAGTTCAAGTTCTGCTGCTGCTGCTGCTATTGTTATGGCAGCTTCTTCTTCATCTCCT CCTGCAAAGTATGATGTGTTTTTGAGCTTCCGAGGGAAAGACATGCGTGACAACTTTACCAGTCATCTTTATGCTCAACT TTGCAGGAAAAACATCAATGCGTTCATAGATTACAAATTAGACGTCAGATCTCACCTGAACTCTACAAAGCAATTCAAGA ATCCACGATTTACGTCATCATTTTCTCTGAAAACTATGCTTCTTCCTCGTGGTGTTTGAATGAACTTGTGAAGATTTGTG AATGCAAGAAGATATATCATGATCAAAGGCATGTGATACCTATTTTCTACAAGGTGGAACCAGCAACTGTTAGGCATCAG AAGAAAGGGAGCTATGCAGATGCGTTTGTTAAGCATGAAAAGCGCTTTCCAGAGGAAGTAATACAGAGCTGGAAGGATGC ACTAGCCGAAGCAGCTGATCTCTCCGGTTGGGATTCAAATGCGACCAGGTGACCAACTTTTGGGTTGTAATTTCCACCTT CAATCATGTTTTCTTTTTCTTCTTTTTTTTAATGTGTTTTTGGTACATTTTTTTAAGGGTAGTACTAGTGGATTTGCCAC CCTATCCACATAATTCTTGATTGTTGCTTCATATTAACTCCTATGTACAGTAGAATGGAAGACTAATGCTTTTGTTCCTT TTATATGTTCCAGACCAGAATCCAAGCTTATTGATGGTATTGTGGAAGATATTTTAACAAAATTGGATCGTTCTTTCTCA AGTGATCATACTCAAGGAATGGTTGGAATTGAAGAGCATATTTCACAAATCCAGCCCTTGTTGCAACTTGAATCAGTGGG CGATGTTCGGATCATAGGAATTTGGGGCATGGGAGGAATAGGTAAAACTACGCTGGCTAAGGCACTACATAAGAAACTGG CGACCCAATTCAGTTCCACTAGCTTGATTGAGAATGCTCAACAAGAAATAGAAAGAGTTGGAACATCTATTCTACGTAAA ACATACTTATCCGAGCTTTTAGATGAAGTCTATACATCACGTTTATTAGATGAAATGCTCAAACGGGCAAGGGTTCTTGT TATTCATGATGACATGAAAGATTCGAGTCAAGTTCAAGAATTAATTGGAGGGCGTGAAAACTTCGGCCCGAGCAGTAGAA TCATTGTGACTAGCAGAGACTTGCAGGTGCTTAAGAATGCTGATGCTGATGAAATATATGAAGTCAAGGAGATGAATTTC CAAGATTCTCTACAACTCTTCAGTATAAATGCCTTTAAACCAAACTACCGTGTACAAGTTGATGCACGCTTGGTAGAAAA GGTATTAAAATATGCTAAAGGGGTTCCATTAGCTCTCAAAGTTTTAGGCAATTTGCTTTACGGTAGAGCAGAACAAGTAT GGAAAAGTCAGTTGGAAAAGCTGGAAAAGCTTCCCGGTCCTCAGATTTTCAATGTGTTGAGATTAAGTTATGATGGGCTG GATGATGAACAGAAGGACATATTTCTTGACATAGCTTGCTTCTGTGCAATCCGTCGTGTGTTATATGTTGAAGTAGTGGA AATGCTAGATGGTTGTGGTTTCTCTATTGACATTGGAATGGATGTTCTCAGAGATAGGGGCCTTCTATCTATTTCTGAAG ATTATATCGAGATGCATGATCTAATCCGGGAAATGGGAGTAGAAAACAATGTGTCAATGATCCTGGAAAACGCAGTCGTT TATGGAAACATGAAGAAATTTATCACGTTTTAAGAAAGAACAAGGTATATTCTTTTGCACCTCATGTCCCACTTGATAAC TCATATAGTCTCACAGATTTCTTCCTGTCAGACTATAAAGCATTGAGCAGTTGTTAAATTTCATACAACTACACTTGAAC ACATCCTTTCATGTTTATTTATCTCTAATTTCTTGCATTTACTTCCAGGGGACTGATGAAGTCCAGTGTATATTCCTCGA CATGTGCAAAATAAAAAAAGATCAACTGCAATCTGAAGTTTTCAAAAGCATGCCTAATCTGAGAATGCTTTATTTCCATA GGAATTTTTTTAAAGGGGAATGTCTACCAAATGAGATCCTTCCTGCATTGCTTGAAAGTCTTCCGGATGGTTTAAAAGTT CTTCATTGGGAAGACTTTCCTCTAAGATCTTTGCCGCTCAAATTTTTTCCAGAAAATCTTGTTAAACTTTATATGCATGA TAGTCATCTTGAACAACTTTGGTGGGGCAATAAGGTATTTCAAGCTTTATGTTGAATTGCTTTATTTTATTTCTGGAGAT ATAATTTAATGCTCTAAATTAATTCTTCATACTTTGTATAATATTATAGTGCCCTTGTTCATTATGTGAATTATATATTA GGGTTTGCATACTTTTATTGTCACCTAATCATTTAGTTTTTACACCAGGAATTACCAAATTTGAAAATCATTGATCTTAG TTATTCTTCTTCCTTGATTGGAATATCAAGCCTTTCTAAGTCCCTATGTATTGAAGAAATAATTCTCGTTGGTTGTGTAT CCCTTACAAGCCTTCCAAGCGACATGTGCAAGTTAAAATTGTTAAGAAGACTTGATCTGTGTGGTTGCTCGAAATTGAAA AAAATCCCTGATATCAAGGACACAGTGGAAAATTTAGTGGAACTAAACTTGCGCAATTGCTCAAGACTTGAGATGATTCC CTCTTCAATTGGAAGACTCACCAAGTTAGACATTATCCACTGCCAATCACTTAAAACTTTTCCAAGCAGCATTTTCAAAT CGTTCACAGAACTTGATTTATCTGGTTTCTCAAAGCTAAATACTTTCCCAGAGATCTTGGAGCCTTCAGAAAGTTGTGCT TACATTAACTTAACAGAAACAGCAATTAAAGAACTGCCTTCATCATTGGACTGTTTGGTGGGACTTCAAAAATTGTATCT GGACCGGTGCCGTGATCTTGAATCACTTCCAAATAGCATAGGTAGTATAACTTTCTCTATGTGCTTTTCTTTGTTAACAT TTTCCAAATAGTAAATTAACAGAAATCCCTAGTGACATAGGTCGCTTGTCATCATTAAGGAAATTGTCACTGCAAGATAC TGGAATCGTGAACCTTCCGGATAGTATTGCTCATCTTTCAACCTTGGAATCACTTGATGTGAGTCATTGCAGAAAGCTTA AATGTATCCCACAACTTCCACCATTTCTTAAGGAGTTATTTGCACTTGATTGCCCATCCATTAGAAGAGTGATGCCAAAT TCAAGGTTTAAACACCGGTATGATTCTAAAGAAGGTACCTTCGAATTTCATTTCACCAATAATGAAGAAAAGGATCATCA AAGTGCTCACAGTGATGCTCTGGCCGATGCAAGACTTAGGATCAGTGAGGATGCATATAGGTTTGTGTTCTACTGCTTTC CAGGGCGGGCAGTTCCTGATTGGTTCCCTTATCGTTGCCAGGGAAATTCAGTTACTGTGGATAAAGATTCTCTAAATTGG CACAATGATAATAGGCTCATTGGTTTTGCTATGTGTGTCGTTTTGCGACTTGAAAATATGAATCATTTACAATATAGATT TGATGATTTTAGATGCAGATCAACATTTGAATATGATGGCTGCACACACATCCTTCCCAATGATGACCAGCTAAATGACT CTTTCTATAGGAGTGGTCAACGGATGGGACATGTGATGCAAGACCACACATTCCTATGGAAATATAAGTTAATGGACTCT ACAAGAATAGACAAAGGCAACTTTCATGCCCTCAGCTTCAGTTTTGGGATAGGCCATTTTGGCGGGTTCGGCCATCCGTG GGTAGATTTTGAACCATGGTTCCTGGTGAAAGAGTGCGGAATACGCCCTCTTTATGCCAAAGAGAAAGATGATATTGGTG GCCTTGTTGACTCTATCAGCGTTTTGAGAGTTTCAAATAATGACTTTGCAGAATGTAGTGGTGGGAGGAGGCATTGTCTG AGGTGAAACATGCCTATATATTATATGGTTTAGCTGTGCAACTTTGATATACTCACACAAACTTTCTCTTCCATATCATT TTCACTCACTTTTTCTTCTCATATCTCTATTATTTTCCTATCACAACTCATATCATATCTCTCATTCCTCTCTCTTCTAT TCATGTCTCTCTCTCTCTCTTGTTGGTTTACTGTAGGTGGAATTGGTTTGAATGAAGTTTTTCCTTAGCTGTGAACCACG ATCATATGCCATTACTTTATACCAGTTAAAAAATCAACGGACGAGATTGTGCAGAGGTTACTTGAAAAATCAGGTGTTTA TTTGCTTTATTTTTCATATAAGTTTCTAGCTATGCTTTTCTTTACATGGCATTGGTATATTAGATTGGTGATCTATCATA GCATTTGATCTGTTGTCAGTCTCATTATGCAAAGTGTTGTTCTAATTGTTTTTACATGGGAAATGTTCCTGGGACTGGGG TATGATTTTTGCATTAGAATTTCTCTCAATTACCTTATGTTCTCTAGACTTCTCCGGCTTCTTCAACAGCCAAAAAGCCT AATTTAACACTTCAAGTCCAGATCGAATAATTTCCAGGTAACTCTATTTAAAAACTAAAAAGCTATCATTTTTTACTTAT TATTTAAAAAAAAAATTGGTTTATGCAAATGGGGAATCCTTATTCTTGGAATGCACTCACAAGTTCTGTTATTTGACAGC AGTTTGTGAAGATGTAAACATCAAGAAAGAAAATCCACAGGGGTTCAATAAGGATGCTGAGCCTACTGAGTTTGAAGAGT CAGTTTGGCAGGTGTTGTTTTGAATGTTGCTGTGGATGCAGTTGCTGATTGCACTTTTTTCCAATGTATAAATGTTTTTG TTTGTTTTAATTTTGTTGTTGCAGGCATTGTTTGATCTGGAAAATACCTATTGGAGCTCAAAAGTGATTTAAAAGATCCA TACATCAATTCAGCAGTGTAAGAATGAGTATTACATTCTTCTTTGTTTGTGAAGGGCCATGAGTTTTCTGTCTGTCTTCT GACTTGTGTTTTTATTACTGATCTGCAGACAAATTGATATTTGTGGGAACCGCAAGGCTGTTGTTATCTGTTAGAAGTCC CACATTGGCTAGAGATAAGGCCAATCAAG 

CDS sequence (LotjaGi1g1v0506000.3) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGAAGGGTTTTATTGTTCAACGTCCCTGCACGCAAACCCTTAGAGCTGTTTATGAAGCAATGCTGGAGGATATCGTGTT GTCTGCTGAGATTGTTGGGAAGCGTGTGAGGTACCGAGTTGATGGATCCAAGATTATGAAGGAAAAACATCAATGCGTTC ATAGATTACAAATTAGACGTCAGATCTCACCTGAACTCTACAAAGCAATTCAAGAATCCACGATTTACGTCATCATTTTC TCTGAAAACTATGCTTCTTCCTCGTGGTGTTTGAATGAACTTGTGAAGATTTGTGAATGCAAGAAGATATATCATGATCA AAGGCATGTGATACCTATTTTCTACAAGGTGGAACCAGCAACTGTTAGGCATCAGAAGAAAGGGAGCTATGCAGATGCGT TTGTTAAGCATGAAAAGCGCTTTCCAGAGGAAGTAATACAGAGCTGGAAGGATGCACTAGCCGAAGCAGCTGATCTCTCC GGTTGGGATTCAAATGCGACCAGACCAGAATCCAAGCTTATTGATGGTATTGTGGAAGATATTTTAACAAAATTGGATCG TTCTTTCTCAAGTGATCATACTCAAGGAATGGTTGGAATTGAAGAGCATATTTCACAAATCCAGCCCTTGTTGCAACTTG AATCAGTGGGCGATGTTCGGATCATAGGAATTTGGGGCATGGGAGGAATAGGTAAAACTACGCTGGCTAAGGCACTACAT AAGAAACTGGCGACCCAATTCAGTTCCACTAGCTTGATTGAGAATGCTCAACAAGAAATAGAAAGAGTTGGAACATCTAT TCTACGTAAAACATACTTATCCGAGCTTTTAGATGAAGTCTATACATCACGTTTATTAGATGAAATGCTCAAACGGGCAA GGGTTCTTGTTATTCATGATGACATGAAAGATTCGAGTCAAGTTCAAGAATTAATTGGAGGGCGTGAAAACTTCGGCCCG AGCAGTAGAATCATTGTGACTAGCAGAGACTTGCAGGTGCTTAAGAATGCTGATGCTGATGAAATATATGAAGTCAAGGA GATGAATTTCCAAGATTCTCTACAACTCTTCAGTATAAATGCCTTTAAACCAAACTACCGTGTACAAGTTGATGCACGCT TGGTAGAAAAGGTATTAAAATATGCTAAAGGGGTTCCATTAGCTCTCAAAGTTTTAGGCAATTTGCTTTACGGTAGAGCA GAACAAGTATGGAAAAGTCAGTTGGAAAAGCTGGAAAAGCTTCCCGGTCCTCAGATTTTCAATGTGTTGAGATTAAGTTA TGATGGGCTGGATGATGAACAGAAGGACATATTTCTTGACATAGCTTGCTTCTGTGCAATCCGTCGTGTGTTATATGTTG AAGTAGTGGAAATGCTAGATGGTTGTGGTTTCTCTATTGACATTGGAATGGATGTTCTCAGAGATAGGGGCCTTCTATCT ATTTCTGAAGATTATATCGAGATGCATGATCTAATCCGGGAAATGGGAGTAGAAAACAATGTGTCAATGATCCTGGAAAA CGCAGTCGTTTATGGAAACATGAAGAAATTTATCACGTTTTAA 

Protein sequence (LotjaGi1g1v0506000.3) extracted from Lotus japonicus Gifu v1.2 Proteins.

MKGFIVQRPCTQTLRAVYEAMLEDIVLSAEIVGKRVRYRVDGSKIMKEKHQCVHRLQIRRQISPELYKAIQESTIYVIIF SENYASSSWCLNELVKICECKKIYHDQRHVIPIFYKVEPATVRHQKKGSYADAFVKHEKRFPEEVIQSWKDALAEAADLS GWDSNATRPESKLIDGIVEDILTKLDRSFSSDHTQGMVGIEEHISQIQPLLQLESVGDVRIIGIWGMGGIGKTTLAKALH KKLATQFSSTSLIENAQQEIERVGTSILRKTYLSELLDEVYTSRLLDEMLKRARVLVIHDDMKDSSQVQELIGGRENFGP SSRIIVTSRDLQVLKNADADEIYEVKEMNFQDSLQLFSINAFKPNYRVQVDARLVEKVLKYAKGVPLALKVLGNLLYGRA EQVWKSQLEKLEKLPGPQIFNVLRLSYDGLDDEQKDIFLDIACFCAIRRVLYVEVVEMLDGCGFSIDIGMDVLRDRGLLS ISEDYIEMHDLIREMGVENNVSMILENAVVYGNMKKFITF 

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
Pfam 7 47 41 1.0E-12
SMART 21 159 139 3.6E-13
Gene3D 38 184 147 1.8E-46
PANTHER 53 498 446 5.2E-134
PANTHER 53 498 446 5.2E-134
SUPERFAMILY 56 162 107 3.27E-21
Pfam 60 199 140 1.0E-31
ProSiteProfiles 62 159 98 18.728
SUPERFAMILY 180 441 262 8.13E-55
Gene3D 185 344 160 1.5E-24
Pfam 201 413 213 9.7E-25
PRINTS 221 236 16 6.9E-17
PRINTS 289 303 15 6.9E-17
PRINTS 382 396 15 6.9E-17
SUPERFAMILY 418 498 81 6.8E-10

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 Structural constituent of ribosome The action of a molecule that contributes to the structural integrity of the ribosome.
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).
Cellular component Ribosome An intracellular organelle, about 200 A in diameter, consisting of RNA and protein. It is the site of protein biosynthesis resulting from translation of messenger RNA (mRNA). It consists of two subunits, one large and one small, each containing only protein and RNA. Both the ribosome and its subunits are characterized by their sedimentation coefficients, expressed in Svedberg units (symbol: S). Hence, the prokaryotic ribosome (70S) comprises a large (50S) subunit and a small (30S) subunit, while the eukaryotic ribosome (80S) comprises a large (60S) subunit and a small (40S) subunit. Two sites on the ribosomal large subunit are involved in translation, namely the aminoacyl site (A site) and peptidyl site (P site). Ribosomes from prokaryotes, eukaryotes, mitochondria, and chloroplasts have characteristically distinct ribosomal proteins.
Biological process Translation The cellular metabolic process in which a protein is formed, using the sequence of a mature mRNA or circRNA molecule to specify the sequence of amino acids in a polypeptide chain. Translation is mediated by the ribosome, and begins with the formation of a ternary complex between aminoacylated initiator methionine tRNA, GTP, and initiation factor 2, which subsequently associates with the small subunit of the ribosome and an mRNA or circRNA. Translation ends with the release of a polypeptide chain from the ribosome.
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 LotjaGi1g1v0506000.3, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.

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