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LotjaGi3g1v0238500.3

Overview

Field Value
Gene ID LotjaGi3g1v0238500
Transcript ID LotjaGi3g1v0238500.3
Related isoforms 2
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|G7IM44|G7IM44_MEDTR Disease resistance protein (TIR-NBS-LRR class), putative; Found in the gene: LotjaGi3g1v0238500
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr3:38316892..38330157) extracted from Lotus japonicus Gifu genome v1.2.

GCAAATGACATTTCTCTCGTTTGCACACTTGACTCTTCCGCTTCCAAAACAGAAGCTTTCTCCTGCTTCCTTTCATTTCA TTGCCGAAGAGTCAACCCCAGCTGAAGGTTCGCTCGAAAGGAATTGAGAGAAGATGGACTCACGATCAAAATATTCAGGT GAGAAGTGGGATATAGCCCTACTCTATAGCATGTGAATTTCCTCTAAGATTTGACAATTTTTCTTTTTAATTTTCTGCAA CTGGATATGAGATATTGAGATGCACACATGAATGATTTTATATTATTATTTATAACACGTCTTTTAATGCAAGAGCCCGT TTAATTAAGCTTCAAGTGTGGAGAATGCAAGTTTATGTACCTACCATGTGCTTTTAATTCTTTTTTATAAGAAGAATTGT GAGCAACAATGATTGAACTCTAGACCGCTTGGTCATAGAGCTGTAATATTATACAATCAACCAATTATTCCAAAAGTTTA AGCTTAAGCTGTTGGGCAAGAGCACATTAATGATTTTATATTATTATTTTTAACAGATATGCTACTCTCTTGGGGATCAT GGCTCTTGCGGCCGTTTTGGTCCCTGGTGAGTCGTCGGCATTCTTCCCACCACCTGGGTCCGTTGGCCCAGGGGGGAAGC ACAGCTTCCAGTTCCACCACAGTCTTTTCCAACGGAGCACGACGCTACAAATACGACGTGTTCATCAGTTTCAGAGGTTC TGACACTCGCAACACCTTTGTGGATCATCTTTACGCCCATCTCGTCCGAAAAGGCATTTTCGTCTTCAAGGATGACAAGA AGCTCCAGAAAGGAGAGTCCATTTCAGCTCAGCTTCTACAAGCAATTCGAAATTCACGAGTTTCTATTGTTGTTTTCTCG AAAAATTATGCTGAGTCAAGGTGGTGTTTGGATGAAATGGCTGCTATTGCTGAATGCTGTGAAGATTTTAAGCAAACTGT TTTCCCTGTTTTCTATGATGTGGATCCTTCTCCTGTAAGAAACCAGAATGGGGTGTATGAAAATGCCTTTGTTTTCCACA TGCTGAGATTCAAACATGATGCAGACAGGGTTGATCGATGGAAGAGAGCTATGAGAAGTTTGGCTGGATCAGCAGGTTGG GATGTCAGGAATAAGTAAGTATTATATACTGTCATTCTCTTTGTCTTTTTACTTTCTCAGCATGAATTTATAGTGTTCAA TTGAGTTTTTTCGTGTGGAACAAACTATTTTACAAATCAAGCTTGTCTGAACCAATGACATACTTGTTTTCTTCCATTGG AAGCTAATTGTGCAGTTTGACCAACAGAAGTTATGTTCATTATTATATTATCCTTGCAAAAACTTCATCTTTGTTTCATA AAATCCTTATTATTACGAGCCATATTCAGACAAAAAGCAAGAACAATAGGTTTTTTGGTAAATTTTTATTGAATTTCAAC TTTTGCACCATTATTAACTTCCGAGATTTACTCTAAGTTGCACATGTAAAGTATTCGTGAGTTTCGTTTGAGAAACTCTC GTAACAAATAGCGTAGCTCACAATTTAATGGTCTTATTTTATCCCTCTTTCAGGCCAGAATTTCGAGAGATTGAAAATAT TGTTGAGGCAGTTATAGAAGCATTGGGTCGTAAATTTTCAGGGTTTGCGGATGACCTTATCGGCATACAACCTCGTGTAG AAACTTTGGAAAACCTATTAAAATTAAACTCGGAGTATTATGACTGTCAAGTTATAGGAATTTGGGGGATGGGTGGAATA GGAAAGACAACTCTTGCTACTGTCTTGTATGATAGAATCTCTCATCTGTTTGAAGCTCGCTGTTTTGTTGAGAATGTAAG CAAAGTTTATAGAGATGGTGGTGTTACTGCTGTACAGAAACAAGTTCTTCGTCAAACTGTAGACGAAATGAATCTCGAGA CATACAGTCCTTCTGAAATATCTGGAATTGTAAGAGACAGGCTACGCAGCTTAAAGGTTCTAGTAGTTCTTGACAATGTT GATCAATTAGTGCAATTGCAGGAATTTGCTGTAAATCCTGGATTATTTCAGAAAGGAAGTAGAATGATCATTACAACCAG GGATGAGCATATTCTAAAGGTATATGGAGCGCATATAGTGTATGAGGTTCCACTGATGAATAATAATGACGCTCGTGAGC TTTTTTATAGAAAAGGCTTCAAAAGTGATAATCTCTCAAGCAGATGTGCGGAGCTGGTTCCTGAAGTACTTAAATATGCT CAAGGTCTTCCATTGGCAATTAGAGTAACAGGCTCTTTCTTGTGTACTCGAAATGCTATGCAATGGAGAGATGCTTTGGA TAGACTGAAGAATAATCCAGACAACAAAGTTATGGATGTGCTTCAGATAAGTTTTGAGGGATTACATTCAGAGGACAAAG AAATATTTCTACATATTGCTTGTTTCTTTAAAGGGGAGAAGGAAAATTATGTTAAACGAATACTGGATGCTTGTGGATTA CACCCTCACATTGGAATTCAAAATATGATTGAGAGATCACTCATAACTATTAGAAACCAGGAAATTCATATGCACGAAAT GGTACAAGATTTGGGGAAGAAAATTGTTCGGCAACAATTTCCCGAAGAACCAGGATCGTGGAGTAGATTGTGGCTTTATC AGCATTTTCATCATGTCTTGATGTCAGAAATGGTAATAAGTTTCAAAATTTAAATGTTATGATCTTCCTTTTTGCATTAG ATAGGTTTGGCATTTTATATATATATAGAAGTTTCTTGTTTCTTATTATCCGAAGTCCAGTTCAAATAATTTGACTTTTG CTCCTTTTATAACATGTTTTTTTATTGATTATTTTAGGGAACGAACAAGGTTAAAGCCATAGTTCTAGATCAAAATGAGG ATATTTCCGAGTACCCTCAGTTGAGGGCTGAAGGATTGTCAATAATGAGGGGCCTTATAATTCTTATATTACATCATCAG AACTTTTCAGGAAGCCTCCATTTTCTTTCTAACAACTTGCAGTATCTTCTGTGGCATGGTTATCCTTTTGCTTCTTTGCC TTCAAACTTTGAGCCATTTCGTCTTGTTGAATTGAATATGCCTTATAGTAGCATCCAACGACTATGGGAAGGCCGCAAGG TACTTTATTGGTGTATATAGTATTCTCTTTTAAGTTAAAGAATCACTTATAGTGGTGAATGATCTCAGTTTCAAATATGT TAAAGTTATTTACTAGTCTCATATTTTTCAAAAATTATCTTAACTTTCCAAATCACCATTATTTTAAAATTTACCAATGC TTTTGTAATTTAACAAATTACTAGTGGTACACCTATGGGATATGTCATTCATGGAGTATTTTAGAAGAAAGGTTAAAAGA AGCTCCTTAAAAAATGTTTGAGCGGTGAATATTTTTTATAGTACAATATAAATTTGATCTCAGTTATTCTTAATGAAGTG GCACTGGTTATAAAGATGCAAGCACTTTTTTTTTTCCTTAAATTCTATGGTACCTAATAATTTCTGTAATTTTAATTTTG TATAAAAAAATCCTTGAAAGCTAGAATTGTTGACACAAATTTTAAATGAAGCTTCTTAAAAATAAAAAGTTTGGTTATTT TTTGTGTTTCGCACAAAAGAGTTGTATTCTTGATTTTGAATTATTGTGTCTTTATAGTTAGAAATATTAACTAATTGTAC TTTTTAGTTTTCTATTTAATATCTTTTTATAATATCACTAAATTAACCATGGATGTTATTATGATATATTTTAGGGGTAA TTGCATTCACCTCCCCTAAGGTTTGTGATTATTGCACTGACCTCCCCTCTAGTTTGTAAAATGCACGAACCTCCTCTCTT CCATATATCATTTAGAAAGACAAAGGGGTGCTGAGTGTTATAACTTATAATGATGTCAGTGCAACAATGATAAACCTCAG GGGAGATCATTGCAATTTCCCCTATATTTTACAACGAGATTGAGTTTCTAAATATTTATTAACAACCGATTTACAATAAA TATTTGAAAGCATAATAAATATGTCTACTGGCTAGTAAAATGATTGACAACACATCATATATACCTTGCTGAGGAAAAAA ATGAGTAAATCTTCAATTTAGTCCTCCATAAACGTAGTATCAGCTGTATTAGTTACTAAAAGATGAAATTTACCACATAC ACTCCTGAAATATGCTTTCTCCTGGTTTTACTGTTAATTCAAGGACTAATTTAACTGATGAAATATATAGTTTTAGGGAC TTAAATGAAACAAAAATTATCTTTCAAGAATTAAGATGACTTTCTTTCATGGATTAATTTGACTATTTATAGTAGGAAAA ATTGATGTGTAATATCCCAATCATTTAGAGTGTAAGCTTTTTTAGATAATTAAAATAGTCAAACTTTTAATTTTTGTGGC AATGCATAGTCAAGTCTCAAGTAACAATTAAAAAAGTTTATACTAATAGCAGATTTAAATTAAACTATTTTCCATTATTC TATGAGGATGTGGTTTGGCTTAATAAATTGGCAGAATTTGTTTAAGGCTGCACTCTGCACTTGTGTCATGACAAATAATT TGTTTTCTGTTTATAACATTAAAAGTCTATTCTTGATTTTTCACTCCAAATTTTGAAGCTATTACCAAAGTGAGTTAATG AAATTCATTCTAATGCAACATGCTGAGAGATGATTGCTAATTCTCTCTTCCCAGGATCTCCCATTTTTGAAAAGGATGGA TCTGAGCAACTCCAAGTATCTCACGGAGACCCCCAATTTTGAAGGAAGCAGAAGACTTGAGAGGCTAGATCTTACAGGAT GCACAAACCTATTGCAGGTCCATCCATCAATTGGACTTCTTACAAAACTTGCTTTCTTGAGTTTTGAAAGCTGTAGCAGT CTGGCCAGCCTGGACCTTGGCAGTCTTTGTGTGTTATATTCTCTAGCTGTTCTACACCTCTCCGGCTGCACAAAACTTGA AAGCACACCTAATTTTACAGGGGTCGAAAATCTTGAATACCTTGATATTGATCAATGTGTGAGTTTATCCACAGTTGATC AATCTATTGGTGTTCTTACAAGGCTAGAATTCTTGAGTTTGAGAGACTGCTTAAATCTTACCAATATACCTCTAAGTGTT AATAATATGGAATCTCTTCTAACTCTAGATTTTTGCGGCTGCTTAAAACTTAAGCATCTGCCCCTGGGATTGCCATCATT GTCTCCTTTCACTCTGCAATCTTTGATATTTTTAGACTTCGGCTTTTGCAGCCTGAGTGAGGTCCCTCATGCTCTTGGAG AAATTGAGTGTTTAGAAAGGCTAAATCTGGAGGGAAATAACTTCGTCTCACTTCCATCTTCCCTGAGGTGGCTTTCCAGT CTTGCTTATTTAAACTTAGCGCATTGCAGCAAGCTTGAATTTTTATCTGAGCTCCAATTGTGTGACATTGCCTCAGAAGG GGGAAGATATTTTAGAACACTATCCGGATCTCATAATCATAGGTCAGGATTATATATTTTCAACTGTCCCACCTTAGCGA TTACAGGTCTAAACTTAGCACTTTTGTGGTTAGAAAGGCTAGTTAAGGTACGCACTACATACCTTTTCTCTATCTCTCTC TCTCTCTCTCTCTCTCTCTCTCTAGTTCTGATATATCTTTTATTTTTTTCTCTGGTACTAGAATCCTTGTCACTTCCGTT GTGGCTTTGACATTGTTGTTCCTGCGAACAGAATTCCACTGTGGTGTGCTGATAAATATAAGAGAGGTTTTAGAGTAGGG AAAGTGGGCAATGTTGATGAGCCTGACAATTGGCTTGGCTTTGCCTTCTGTGTAGCATTTAAGGAAAACTATTTTGGAAC AGTGGCTAGTTGTTCAAATGATTCATCTTACTCGCAGCTGCGATGTCCTTTGTATCTTTCTTTTGAAAGTGAACACACGG AAGAAACCTTCGACATGCCACTTCGGTTCGACCTGAACAAAGCTGATGACTCAAATTCATCACACCTCTGGGTAATATAT ATTTCTAGGCCACACTGCCATTTTGTGAAAACAGGAGCACATGTCACATTTAAAGCTCACCCAGGTTTGGAGATAATAGA ATGGGGGTTTAGCATGGTATTGGAGAATTGTATCTTCCATTCACCAATTGAATTTGAAGTTCATTATCCCTTGGATTATG TACATGAAAGTAGCAGCAGCAGCTCTGGGTCTAAAATCCAGATTCCTCTCAATTGGTTACCTAGTGAAAGCAGCAGCAGC AGCTCTGGGTCTAAATTCCATGTTCCCTATAATTGGTATGTTACTGAGGAAGAGGAGAGCGAGAATTTGGAAGTGAGTGC GGAAAAAAAAACATCTACTATCAAATATGGGATTTAGATTGGCTACCCCCTTGCAAGCACTAGCATTTTCCTAGAGGTAA TTATCCTTCTTTTATTGAAGCATGATATTATGGTTTAACATGAAGAGGCCTCTTAAATAATTTTATTCTTTTTTAATTCG GCCACTTCCTACACACATGAAGCAAAATGGGAACTACATTTCAGATTGGCTTGTTATCACAAGGATTGGGATTTCTTTTA TCTAATGGCATATGATGTTGGGATAGGTACGACATACACATAGTTAGTTTGAGTTATGTTTGAAATATAATATAAAACCA TTCAGAGGTCTTTCCCAACAGCTTAAGCTTTTGGGATAATTGGTTCATGACATGTATCAGAGAATCCAGGACTTAGTGGT CTAGAGTTTGATCCTTTCTGCCCTATTATTCTAATAAATAAGTGGAATTTTCGCACATGGTAGGCGGGCATGTGCATTGT CCACGCTTCAAGCCCAAATGGGTTCTTGTGTGAGGGGGCGTTTTGGAAATATTAGATGAAACCACTCAGAGGCCGTTATG CAACAGCTTAAGCTTTTGAGATAATTGATGCGAAAAATAAACAACTTCGTTACTTAGTTAGAGAGTGGGGGAGAATATTA TGAATAAGAGACTTAGTGAGAGTATGATCATCTTTGGGAGATTGTGTATATTATGGAGAGGTCCTTGGCCAGCTGTGCAC GTATCCCCCGCCCCCCATCTTGGACAGAGTTTAGGAATTAGGGATTCATCAATAAAATTCTCTTTTTCTTCATACTTGAT CCGGCTCTCATCATGTTGCCAGATGTGCACGTATCCCCCCCTCCCCTCTTTCCATTGAACACCTACATTTAGTTGATCTC ATTGATCTCATTTTCAACACAAGTTTCGTCAATGTTTCTTTATTTTGTACATTAGTTTTGACATGCAAATGATTAGCAAA AGGAGATTTAGTCTGGATGTGGCTACATTGGTGTGAAACATTTTTTTTTTGAAGTAACATTGGTGTGAAACATTACTTGT TGCGTGTACAGATGAAACATTTATATTTGAGACCTCACCTATATCATATAATAGACTTGTTTTATGGTGTGGAAAGTGGT CATTTCGTTTGGCTATGATATCTTGGTTCATCATTCAAATTACAGCAACTTCATTTTCATCCAAAAGTTTTAGTGAAACC AAACAGAAACACTTTTTTTAATAGGAAGACTGAGACCCTAAGTAGAGTAATTTGGTGGACGGTGAGCATCTTATACAATA GTAAACTATGGAAAATTGGGAATACTATTTCACCCCCTTTTATGAATATTAGTTTTTTCCCCCCTTGCGCTTTCTCTTGA TCTGTAGTTTTGTCCTGCATTCTTTTCTACATAACGTGGAATTTCAACATTTGTTCAGATGGCCCAAGAGTTAAGAATGG AAAATTTGTGATAACAGCTCCAAAATGACTGGATGCAGATTCCTCTGCTTATTGGCAACTGATTATTCTGGCATTGAATA GAAGGAAAATAAGTTATTTGATCTGATTATTCCAGTATGTAGACCTTGCTTTTGCTTTTGGAGAGCCCATTTCATTGCAG CTTCTACAAGCTATTAAAGATTCATAGGTTTCTATCGCTGTCTTCTCAAAAGATTATGCTGCCTTTACAGGTTGTTTGGA TGACATGGCTTCTATTGCTGAACGCCATGAAGAATTCAAAATCAGAATGAGAGAGCTATGAGGGCTTTGGCTGGATCAGC TGAATAAGTAGGTGCACTGTTTCGTTTTTCTTTTTTCATTCTCAACATGAATTTGTGGTGCATGCTACAATTGAGTTTTT TATTTTGCGACAAATTGATCAACAAATCTAGCTTCATTTTTTTCTAATACAGTTTATATAATGCATTAAAATTATCCTCT TGTCAGTTTTTTATTTCGTGATGATTACTTTCCTTCTTTCTTTCAGGCCAGAGTTTGCAGAGATTGAAAAAATGTTCAAG CAAGGATCAAAACATTGGGTCATAAATTCTCAAGATTTAGTAATGGTCTAGTTGGGATACAGCCCCACATTGAAGAAATA TAAAATCTTTTAAAATTGAGCTAAGAGGATGAAGATTTTCGAGTTTTAGGAATTTGGAGGACGGGCGGAATAGGAAAGAC AACTCATACAATTAAAGTCCTTCTATTTAGGAGAAATTCCTGTATAGAGCGGGAAGGGAAGTTTTGATTAAGTCGGTGAC TAAAGCAATCCCAACTTACATCATGTCTTGCTTTGCTCTTCCTGATTCTATTTGTTCTCAGATTGAAGGCATGGTTGGTA AGTTTTATTGGAGTGGTGATGTGTCTCGGAGGAGTATTCATTGGCTTGGATGGAAAAAGCTTTGCCGGTCAAAGAGTGTT GGAGGTCTTGGTTTCCGAGACTTTAAAGCTTTTAATATGGCTCTTAATGGTAAAAACTGGTGGAGATTCTTGACTCTTTC CTAGTCCTTACTTAGTCGAGTTTTCAAGGTGGCGTATTTTTCTAATGGTGGTCTTTGTGGGGCAAAGAATGGCGTTATCA TCGGAGCTATGCTTGGTCTAGCATCCTTCGGTCAGCTTGGGTGTTTGTGAAGGGAGGTTTGTGGCGAAGTGGTGATGGGT CTAGTATTCGGATTTAGGACGATAGATGGCTTCCCAATAGTCCCCCAATTATCCTTCGCCAAGACTTGGCTAATGAGGCC GGTATTCACACAGTTTCAGATTTGATCTCTCATGCATTGTCCTATTGGGATGGTGCAGTGATTTCGCATATCTTCTGTCC AGCAACGACAGGTCAGATTCTGGCTATTCTATTACCTATACCGCGTCTTGCTGATGAGTTCCATTGGCCTCATAATTCAA ATAGTGTTTATTCGTCAAAGTCTAGGTACAATATTTTTATCAGCAAGTTTTCACCTCCTTGGCGTCCTCCTCATCTGGTG CATCTTTTCCAGCCGCTGCATGGAAAAGGATCTAGGGTTCTAAGTTTCAATAGAATTAGCTAACATAATTAAATGCCAGC ATCCTGCATTTATTTACTGCTGTGATTCTGTAATTCTATCATTATTGTAGAGCTGTAATTATGTAATTCTGTAAGTAGAA TAGGCTAGCTGTAGGATAGCAGTTATAGCAATTTAGCAGATTTTCAGGGATTGTATTATGCTATTTATATCAGAATCCTC CAGCAGGAGAATACACAGTTCAAAGTTCAAACCTATGTTCTTTTCAGAGTCTAACATGGTATCAGTCTTGGTTCTGATCC TATCATAGTTTCGCTGAAAATTCCTTGTTCCAATCGTAGTCTTGGTTCTCTTGGTCAAGTCCAATTTCCTTTTGTTCCTT GTTTAGACTTCAATCTTTGTGATTGTTCTCTTGTGTCAGTCTCATGGCTTCAGAAAAATATGATATCTTACTTGTTCGTC TCAATGGAAGGAATAACTACTCAACCTGGGCATTTCAGTTCGAAATATTTGTCAAAGGTAAGGACCTTTGGGGTCTTGTT GACCGCAACACCCCAGCTCCCGATAAGGACAAATTTAAGACTGAACATGCCAAGTGGGAGGTCAAAGATGCTCAAGTCAA GGCATGGATCATCAGCTCTATTGATCCCAACATCGTTCTCACTCTTCGACCATGCAAGACTGCTGCTAATATGTGAGACT TCCTAAAGAAAATCTATACTTAGAATAACGCTGCTCGTAGATTCCAACTTGAGCATGAAATCTCAATTTCTCAGCATGAA AGTCTATGTTCCTATTCCTTCTTCCTATAAACAAGCAATGGAGCATGCATGTTGGCAAAAAGCTATTGAAGCAGAACTTC TAGCACTAGAAAAAAATCAGATATGGGAAGTTGTTCCATGTCCCCCGTCTGTTAAACCTCTTGGCAGCAAATTTGTATTC ACTATTAAGTTGCGCTCGGATGAATCCATAGATCGCTACAAGGCTAGGCTGGTTGTTCTTGGAAATAGGCAGAAATATGG TCTTGACTATGAGGAGACTTTTGCACCAGTAGCCAAGATGACTACTGTGCGTAATCTTATTGCCATTGCTGCATCTGAAA ATTGGCAACTACATCAGATGGATGTCAAGAACTCATTCCTCCATGGTGACCTCAAGGAGGAAGTATACATCAAACTTCCG ACAGGTATGCCTACCCAATCACCTAATGATGTTTACAAACTGAAGCGTTCTTTATATGGTTTGAAACAGGCACCAAGGGT ATGGTTTGAAAAGTTTCGAACAACACTACTTGTCTTTTCCTTCACACAAAGTCAGTATGATCCATCACTTTTTCTACAAA GGACTTCTAACAGAATTGTGGTACTACTTATTTACGTGGACGACATCGTGGTCACCGGTTCTGATCAAGAGGTTTTCTCT ACGGTCAAGAAATTGCTGCATTCAACATTCCATATGAAAGATCTTGGTCAGCTTACTTACTTCTTGGAGTTAGAAGTCCA TTATCGACAACAAGGCATCTTCATAAGTCAGCACAAATATATTCAAGATCTAATTCAGCTAGCTGGTCTTACCAATGCCA CTACTATTGATACCCCCATGAAAGTTAATGTAAAATATAGACGAGATGAAGGTGAACTTCTACAAGACCCAACTTTATAC TTTCAGTTGGTCGGTAGTCTTATATACCTAACCATCACACGGCCTGATGTCTCTTTCGCTGTCCACACAGTAAGCAAATT CATGCAAACTCCTCGACATCTCCATCTTTATGTTGTACACCACATTATTAGATATCTCCTTGGTACCCCCGATCGTGGCT TATTTTTTACTTCTGGTTCATCACCACAACTCCAAGCCTACAGTGATGCTGATTGGGCTGGATGTCCAAACACAAGGAAA TCTACTATTGTTGGTGTATGTTTATAGGAAATGCTCCAATCTCATGGAAATGCAAGAAACAAGACTCGGTCTCCAAGTCA TCCACTGAGGCAGAATATCGTGCCATGTCTGCAACATGCTCTGAGATTATTTGGTTGTGTGGTCTTCTTTCGGAACTCGG TTTCACACAATCACAACCAACTTCGTTACATGCTGACAACACGAGTGCCATACAAATTGCAGCAAACTCTGTTTACCATG AGCGAACGAAGCACATAGAGGTTGATTGTCATTCCATCCGAGAAGCCTATAACCGCAGAGTTATCACTCTACCTCATGTC TCCACATCTGTTCAAATTGCTAACATCTTCACCAAATCATTGACACGTCAGCTCCATAATTTCCTAGTTAGCAAATTGAT GCTTGTAGATTCACCAGCATCAATTTGAGGGGGGGTATCAATAGAATTACCTGGCAGAATTAACTGTCAGCATCCTGCAT TTACTTACAGCTGTAATTCTATCATTATTGTAGAGCTATAATTATGTAATTAGAATAGGCTAGCTGTAGGATAGCAGTTA TAGCAATTTAGCAGATTTTCAGGGATTGTATTATGCTATTTATATCAGAATCCTCCAGTGGGAGAATACACAGTTCAAAG TTCAAACCTATGTTCTTTTAAGAGTGTAACATTAAGGCACTGCCATGTTGCATAGGATTGATGTGTAGGGGGCATCATGA TGGTGAGAAGTGATCTGCAGTGCAAGGGGATGAAGGTCCTGACACAGTGGCCCTTGTGATGTTGTTTTGTGGTGCGGTGA AACCTTTGTGGTTTGCAGCTTCCCTTAGTTTGCGTTTGGATGAGGTTGAGAATTCTGATTTTGTGCAGTTCTTTCTTCAA TTCTTGTGCATGGCTAATGATGGCGTGATTTTGGTGTTCTTGACCACTTTATACTGCATTTGGGAATGAAGAAACAAAGT TTTGTTCCAGCAACAACAGATGCCTATTGATGCATTTTTTCATCGAGCTGCAGTGCTTACAACGCCTCCTCTTGTTCAAC GTGCTTCTTCAATGCCAGCGACGTAGCCTCTAGAGTCATGGAGTCATCTTCGAGAATGGGTTCTGAAGCTTAACTTTGAC GAATCAGCCTCTTCTGTGAGTGTTGTCGGTGTTGGGATGGTGGTCTTTGACCATATGAGTGATGTGATGGTAGCAACCAC CGCTTCTCCTTTTGAGGTATGTCACCGCTAATTGCAGAAGCTCTTTGCTTACGTTGGGCCATGTCTTTGACTATTGATCT TGGCTTCCGTTTAGTTCATTTTGAGATTGATTGTTTACGTCTGTTTGAGCTTTGGAAAAAGCCTACACCAGGTAGTTTGT ATCTGATATGGTGGTTACGGACTGTCGTGCTCTTTCAAGTAGTTTTGATTTTGTGAATTTGTCTTTTGTTCATTGTTCTG GTAATAGAGTTGCTGACTCTCTGGTTTTTTTGGGTCAACATTGGCCTTTTCCTTTTGTTTTTTATAAGCAAATGTTAGTT GTTAGTAATGTTAGTAAATTAGTTCCTCCTCAGGGTTTGAGCCCTGGACCCTTAACCCTACATCCCACCCAACTCTTATG TCCCTGAACTCTTACCACTTGAGCTAACCCTCGGAGACATATAGGAATTTTCCTTGTCCAACGTTGTTTGGCTTGAAGGG ATTCCTTGAGGGCTCTTTTCTCAACAGGATGCACTGGTTTCTAAGCCTAGTATATCTTCTTGACCAATGAAGTTTAATTG TTTTTTATTATAAAAATTCCTTCTAACTTTGATCAATTAGAGGTAGAGTGCAAGAGGGCATTGCCCAAAGAATTCAAGAG CAAGAGGCTGAGAATGCCAACCGGTATCTTCGGAACCTCACCTCAGCTGCCATGAGCTATGATTATCCCGGAAGCATGGT TGTTTAGATAATGGTTACAATATTAATTCAACAATGATATATTCACACCTCATTTTTTAAACACTTCATTTCCACTTATT TTTATTTCTATCTCTCACCTCTTATTATCTGTCACATCTTATACTTTTTCTTTTTTTTTCCCTATC 

CDS sequence (LotjaGi3g1v0238500.3) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGGACTCACGATCAAAATATTCAGATATGCTACTCTCTTGGGGATCATGGCTCTTGCGGCCGTTTTGGTCCCTGGTGAG TCGTCGGCATTCTTCCCACCACCTGGGTCCGTTGGCCCAGGGGGGAAGCACAGCTTCCAGTTCCACCACAGTCTTTTCCA ACGGAGCACGACGCTACAAATACGACGTGTTCATCAGTTTCAGAGGTTCTGACACTCGCAACACCTTTGTGGATCATCTT TACGCCCATCTCGTCCGAAAAGGCATTTTCGTCTTCAAGGATGACAAGAAGCTCCAGAAAGGAGAGTCCATTTCAGCTCA GCTTCTACAAGCAATTCGAAATTCACGAGTTTCTATTGTTGTTTTCTCGAAAAATTATGCTGAGTCAAGGTGGTGTTTGG ATGAAATGGCTGCTATTGCTGAATGCTGTGAAGATTTTAAGCAAACTGTTTTCCCTGTTTTCTATGATGTGGATCCTTCT CCTGTAAGAAACCAGAATGGGGTGTATGAAAATGCCTTTGTTTTCCACATGCTGAGATTCAAACATGATGCAGACAGGGT TGATCGATGGAAGAGAGCTATGAGAAGTTTGGCTGGATCAGCAGGTTGGGATGTCAGGAATAAGCCAGAATTTCGAGAGA TTGAAAATATTGTTGAGGCAGTTATAGAAGCATTGGGTCGTAAATTTTCAGGGTTTGCGGATGACCTTATCGGCATACAA CCTCGTGTAGAAACTTTGGAAAACCTATTAAAATTAAACTCGGAGTATTATGACTGTCAAGTTATAGGAATTTGGGGGAT GGGTGGAATAGGAAAGACAACTCTTGCTACTGTCTTGTATGATAGAATCTCTCATCTGTTTGAAGCTCGCTGTTTTGTTG AGAATGTAAGCAAAGTTTATAGAGATGGTGGTGTTACTGCTGTACAGAAACAAGTTCTTCGTCAAACTGTAGACGAAATG AATCTCGAGACATACAGTCCTTCTGAAATATCTGGAATTGTAAGAGACAGGCTACGCAGCTTAAAGGTTCTAGTAGTTCT TGACAATGTTGATCAATTAGTGCAATTGCAGGAATTTGCTGTAAATCCTGGATTATTTCAGAAAGGAAGTAGAATGATCA TTACAACCAGGGATGAGCATATTCTAAAGGTATATGGAGCGCATATAGTGTATGAGGTTCCACTGATGAATAATAATGAC GCTCGTGAGCTTTTTTATAGAAAAGGCTTCAAAAGTGATAATCTCTCAAGCAGATGTGCGGAGCTGGTTCCTGAAGTACT TAAATATGCTCAAGGTCTTCCATTGGCAATTAGAGTAACAGGCTCTTTCTTGTGTACTCGAAATGCTATGCAATGGAGAG ATGCTTTGGATAGACTGAAGAATAATCCAGACAACAAAGTTATGGATGTGCTTCAGATAAGTTTTGAGGGATTACATTCA GAGGACAAAGAAATATTTCTACATATTGCTTGTTTCTTTAAAGGGGAGAAGGAAAATTATGTTAAACGAATACTGGATGC TTGTGGATTACACCCTCACATTGGAATTCAAAATATGATTGAGAGATCACTCATAACTATTAGAAACCAGGAAATTCATA TGCACGAAATGGTACAAGATTTGGGGAAGAAAATTGTTCGGCAACAATTTCCCGAAGAACCAGGATCGTGGAGTAGATTG TGGCTTTATCAGCATTTTCATCATGTCTTGATGTCAGAAATGGGAACGAACAAGGTTAAAGCCATAGTTCTAGATCAAAA TGAGGATATTTCCGAGTACCCTCAGTTGAGGGCTGAAGGATTGTCAATAATGAGGGGCCTTATAATTCTTATATTACATC ATCAGAACTTTTCAGGAAGCCTCCATTTTCTTTCTAACAACTTGCAGTATCTTCTGTGGCATGGTTATCCTTTTGCTTCT TTGCCTTCAAACTTTGAGCCATTTCGTCTTGTTGAATTGAATATGCCTTATAGTAGCATCCAACGACTATGGGAAGGCCG CAAGGATCTCCCATTTTTGAAAAGGATGGATCTGAGCAACTCCAAGTATCTCACGGAGACCCCCAATTTTGAAGGAAGCA GAAGACTTGAGAGGCTAGATCTTACAGGATGCACAAACCTATTGCAGGTCCATCCATCAATTGGACTTCTTACAAAACTT GCTTTCTTGAGTTTTGAAAGCTGTAGCAGTCTGGCCAGCCTGGACCTTGGCAGTCTTTGTGTGTTATATTCTCTAGCTGT TCTACACCTCTCCGGCTGCACAAAACTTGAAAGCACACCTAATTTTACAGGGGTCGAAAATCTTGAATACCTTGATATTG ATCAATGTGTGAGTTTATCCACAGTTGATCAATCTATTGGTGTTCTTACAAGGCTAGAATTCTTGAGTTTGAGAGACTGC TTAAATCTTACCAATATACCTCTAAGTGTTAATAATATGGAATCTCTTCTAACTCTAGATTTTTGCGGCTGCTTAAAACT TAAGCATCTGCCCCTGGGATTGCCATCATTGTCTCCTTTCACTCTGCAATCTTTGATATTTTTAGACTTCGGCTTTTGCA GCCTGAGTGAGGTCCCTCATGCTCTTGGAGAAATTGAGTGTTTAGAAAGGCTAAATCTGGAGGGAAATAACTTCGTCTCA CTTCCATCTTCCCTGAGGTGGCTTTCCAGTCTTGCTTATTTAAACTTAGCGCATTGCAGCAAGCTTGAATTTTTATCTGA GCTCCAATTGTGTGACATTGCCTCAGAAGGGGGAAGATATTTTAGAACACTATCCGGATCTCATAATCATAGGTCAGGAT TATATATTTTCAACTGTCCCACCTTAGCGATTACAGGTCTAAACTTAGCACTTTTGTGGTTAGAAAGGCTAGTTAAGAAT CCTTGTCACTTCCGTTGTGGCTTTGACATTGTTGTTCCTGCGAACAGAATTCCACTGTGGTGTGCTGATAAATATAAGAG AGGTTTTAGAGTAGGGAAAGTGGGCAATGTTGATGAGCCTGACAATTGGCTTGGCTTTGCCTTCTGTGTAGCATTTAAGG AAAACTATTTTGGAACAGTGGCTAGTTGTTCAAATGATTCATCTTACTCGCAGCTGCGATGTCCTTTGTATCTTTCTTTT GAAAGTGAACACACGGAAGAAACCTTCGACATGCCACTTCGGTTCGACCTGAACAAAGCTGATGACTCAAATTCATCACA CCTCTGGGTAATATATATTTCTAGGCCACACTGCCATTTTGTGAAAACAGGAGCACATGTCACATTTAAAGCTCACCCAG GTTTGGAGATAATAGAATGGGGGTTTAGCATGGTATTGGAGAATTGTATCTTCCATTCACCAATTGAATTTGAAGTTCAT TATCCCTTGGATTATGTACATGAAAGTAGCAGCAGCAGCTCTGGGTCTAAAATCCAGATTCCTCTCAATTGGTTACCTAG TGAAAGCAGCAGCAGCAGCTCTGGGTCTAAATTCCATGTTCCCTATAATTGGTATGTTACTGAGGAAGAGGAGAGCGAGA ATTTGGAAGTGAGTGCGGAAAAAAAAACATCTACTATCAAATATGGGATTTAG 

Protein sequence (LotjaGi3g1v0238500.3) extracted from Lotus japonicus Gifu v1.2 Proteins.

MDSRSKYSDMLLSWGSWLLRPFWSLVSRRHSSHHLGPLAQGGSTASSSTTVFSNGARRYKYDVFISFRGSDTRNTFVDHL YAHLVRKGIFVFKDDKKLQKGESISAQLLQAIRNSRVSIVVFSKNYAESRWCLDEMAAIAECCEDFKQTVFPVFYDVDPS PVRNQNGVYENAFVFHMLRFKHDADRVDRWKRAMRSLAGSAGWDVRNKPEFREIENIVEAVIEALGRKFSGFADDLIGIQ PRVETLENLLKLNSEYYDCQVIGIWGMGGIGKTTLATVLYDRISHLFEARCFVENVSKVYRDGGVTAVQKQVLRQTVDEM NLETYSPSEISGIVRDRLRSLKVLVVLDNVDQLVQLQEFAVNPGLFQKGSRMIITTRDEHILKVYGAHIVYEVPLMNNND ARELFYRKGFKSDNLSSRCAELVPEVLKYAQGLPLAIRVTGSFLCTRNAMQWRDALDRLKNNPDNKVMDVLQISFEGLHS EDKEIFLHIACFFKGEKENYVKRILDACGLHPHIGIQNMIERSLITIRNQEIHMHEMVQDLGKKIVRQQFPEEPGSWSRL WLYQHFHHVLMSEMGTNKVKAIVLDQNEDISEYPQLRAEGLSIMRGLIILILHHQNFSGSLHFLSNNLQYLLWHGYPFAS LPSNFEPFRLVELNMPYSSIQRLWEGRKDLPFLKRMDLSNSKYLTETPNFEGSRRLERLDLTGCTNLLQVHPSIGLLTKL AFLSFESCSSLASLDLGSLCVLYSLAVLHLSGCTKLESTPNFTGVENLEYLDIDQCVSLSTVDQSIGVLTRLEFLSLRDC LNLTNIPLSVNNMESLLTLDFCGCLKLKHLPLGLPSLSPFTLQSLIFLDFGFCSLSEVPHALGEIECLERLNLEGNNFVS LPSSLRWLSSLAYLNLAHCSKLEFLSELQLCDIASEGGRYFRTLSGSHNHRSGLYIFNCPTLAITGLNLALLWLERLVKN PCHFRCGFDIVVPANRIPLWCADKYKRGFRVGKVGNVDEPDNWLGFAFCVAFKENYFGTVASCSNDSSYSQLRCPLYLSF ESEHTEETFDMPLRFDLNKADDSNSSHLWVIYISRPHCHFVKTGAHVTFKAHPGLEIIEWGFSMVLENCIFHSPIEFEVH YPLDYVHESSSSSSGSKIQIPLNWLPSESSSSSSGSKFHVPYNWYVTEEEESENLEVSAEKKTSTIKYGI 

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 10 10 -
Phobius 1 24 24 -
Phobius 11 19 9 -
Phobius 20 24 5 -
Phobius 25 933 909 -
PANTHER 49 1180 1132 0.0
PANTHER 49 1180 1132 0.0
Gene3D 55 230 176 2.8E-63
SUPERFAMILY 56 203 148 1.31E-41
ProSiteProfiles 59 200 142 31.637
SMART 60 200 141 1.7E-46
Pfam 60 225 166 1.2E-44
SUPERFAMILY 233 489 257 8.32E-55
Gene3D 233 389 157 9.2E-26
Pfam 251 471 221 3.7E-27
PRINTS 261 276 16 1.4E-21
PRINTS 337 351 15 1.4E-21
PRINTS 430 444 15 1.4E-21
Gene3D 515 737 223 2.9E-10
SUPERFAMILY 547 957 411 2.38E-40
Pfam 650 666 17 1.3E-6
PRINTS 668 684 17 1.4E-21
Gene3D 738 838 101 8.3E-17
Gene3D 839 957 119 4.7E-12
Phobius 934 954 21 -
Phobius 955 1190 236 -

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 LotjaGi3g1v0238500.3, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.

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