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LotjaGi1g1v0324100.2

Overview

Field Value
Gene ID LotjaGi1g1v0324100
Transcript ID LotjaGi1g1v0324100.2
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: LotjaGi1g1v0324100
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr1:77592516..77603139) extracted from Lotus japonicus Gifu genome v1.2.

TAATATAAAAGGCGTTAAACCCAAATATAATGGGAAGAAAAAAGAAGTAACCAGAAAAAACTACTCCCTCCGTTCCTAAT GATAAGACCTAGTTTTAAAATTTTCTAGTTCCTAAATATAAGACCTTTAACAATAATCTAGCAAAAAATATTCTACTCTT CCATATATAACCCTTATTTTATCTTTCCTTTTTTTCTATCCCTCTTCTTCCCCACCTGTCTACACCATGTCAAGATATAA TTATTCGCCAACTCCAAAACCAAATAAAACCGGATTACACAGAGGGCACACACATCACCAGATTTGTACACCACTCGAAA AAAGATAGCCAAACCCTTTCCATATTTGCTCTATTCCACTGCCAAGTTCTAGCAACTACTTGTATTTTCTGCAGCTACCC TCTCCCTGGCTTCACTCTTCCTCACAGCTCCCCTCTTCGCGTCTTCCTCTACCCTTTCAAGTTCGTTTGCGGCTCACAGG TTTTCCTCACTTTAATTCTATCAATAATGGCATTTTAGATTTGGGTCTATATAGTAATTAGCAATTAGCAATTATTATTT GCTGAGTCCACTTTATGATGAAACTGTGATAATGACTTTTTATATATCACCTCTTACTCTTAGATTTTGGTTTGTTCTGT TCTTTTCCACTTTGTGTAATCGTTACTGTCACTGCATTATGATTCTACAGTGTGATTTTCTACAATATAACATCACTCCT ACAGTGTAATTACAATTTATATTTTTAACTTTCGTTTTAATGAATTTTTTAGCAACTTCTTAGAGCAACAAAAACAAAGG GAATCTTGTGTAATGTGAAAAGTTTATAGTTGACTGGTCAGTATTAGATGGCACATGGAAGTTTTCAAATTATATAATAC TATATGATCTATCAGAGTTTTATGGCATGATACAATTATATAATATATATACTAAAGCCAAGTGCAACAACTTACAGATT ACCAACCAGCTGAAGGAAAGAAATTTTGATTCCAATGTTGGGGAGTTCTTCATCTTCATCTTCTGCTGCTGCTATTGTTA TGACTCCTCCAAAGTATGATGTGTTCTTGAGCTTTAGAGGAGAAGACACACGTGACAACTTCACTAGTCATCTTTATGAT GGTCTTTGTAGGAAAAGGATCCAAACATTTATAGATTACAGGCTAGACAAAGGCGATGCAATCTCACCTGAACTGTGCAA AGCTATGGAAGAATCAATGATTTACATCATCATTTTCTCCCAACACTACGCTTCTTCCTCGTGGTGTTTGGATGAACTCG ACAAGATTCTGAAATGCAAGAAGAGATATGGAAGGAATGTGATACCGGTTTTCTACAAGGTGGATCCATCAAATGTTAGG CATCAGGAAGGGTGTTATAAAGATGCATTTGTTAAGCATGAAAAGCGATTTCGGGACGAAGTAATACAGACGTGGAAGGA TGCTCTAACCGAAGCAGCTGCAATCTCTGGCTGGGATTCAAACACCACTAGGTAAAACCGCTTTTCATCTATAGTTAAAT CTTTTTGAACTTTAATTAGAATACAAACCCAAACATCAAAAACACCACTTATCAGTGACCATTCTAGATAAATATGGTAT TAACTTATTTCATTAATTATCATCTACAGAGTATGGTAATAATTAAGATGAACTTATATTTTTACAAATCAAAAGCAACA AATTTATATGCTTTTGGTTCATATAATCAAAGCAAACGTAGAATGGCAGACTAATGCTTTTATTTTGTTCCTTTTATATG TTCCAGACCAGAATCCATGCTTGTTGATGGTATTGTGGAAGATATTTTAAGAAAATTGGATCGTTCTTTTTCAAGTGACG ATCATAGAATGGTTGGAATTGACAAGCACATTGCACAAATCCAGTCCTTGTTGCAGCTTGAGCCAGAAGCTGTTCGGATC ATAGGAATTTGGGGCATGGGAGGAATAGGTAAAACTACACTGGCTCGGACACTACATCACAAACTGGCGACCCAATTCAG TTCCAGGAGTTGTGTTGTAAATGCTCAGCAAGAAATAGAAAAAGATGGAATTGACTGTCTACATAAAAAATATTTATCAG AACTTCTAGAGGAAGATATCTCGTCAAATGGATTGCATTTTGCTATTGAAAGGGTCAAACGGGCAAAGGTTCTCCTTATT CTTGATGGGGTGAAAACTTCGAGTCAAATTCAAGAGTTAATTGGAGGGCATGGAAACTTCGGCCAGGGAAGTAGAATCAT TGTGACTAGCAGAGACATGCAGGTGCTTAGGAATGCTGAAGCTGATGATATACATGAAGTCAAGGAGATGAATCCCCAAG ATTCTCTGCAGCTCTTCAGTTTATATGCCTTTAAACAAATCTGCCCCATGGAAGGTTATGCTGACTTAGTAGAAAAGGTA TTGGAATATGCTAAAGGGGTTCCATTAGCTCTCAAAGTTTTAGGCTCACTGCTTTATGGTAGAACAAGGAAAGCATGGGA AAGTGAGCTGCAAAAGCTGGAAAAGCTTCCTGAGATTGAGATTTTCAATGTGTTGAAATTAAGCTATGATGGGCTGGATG GTGAACAGAAGGACATATTTCTTGACATAGCTTGCTTATATGTAGGCGATTTTGTGAATGATGTAGTGGATATGCTAAAT GGTTGTGGTTTCTCTGCTGACATTGGAATGCATGTTCTGAAAGATAAGAGCCTTATATCTACTTTAAGAGATCGCATCGT GGTGCATGATCTAATAGTGGAAATGGGAAAACAAATTGTTCGTCAAGAATGTGTCAATCATCCTGGAAAACGCAGTCGTC TATGGGACCATGAAGAAATTTATGATGTTTTAAGAAACAACCAGGTATATTTACTTGATGACTCACAGTCTCATGGATTA ACTTCTCAGACACATCCTTTCATGTTTATTTATCTTTAGTTCCTTGTATTTACCTTCAGGGGACGGATGCAGTCCAATGT ATATTCCTCGCCATGTGGAGGATAAAAAAACTTGAAGTTCATCCAAAAAGTTTCAAAAGCATGCCTAATCTGAGAATGCT TTGTTTCCATAACTATTTTCCGGGAAGACGTCAAACAAATGTGATCCTTCCTGCATGTGTTGAAAGTCTTTCGAATAGTT TAAAACTTCTTGATTGGGATGAATTTCCTCAAAGATCTTTGCCGTTGGACTTTTGTCCAAAAAATCTTGTTGAACTTTTG ATGCAATATAGCGATCTTGAACAACTTTGGGAGGATGATCAGGTCCTTCAAGCTTTACGTTGTGCTCCTTTCTATTTTAG TTATCATCAGTCTTTGATTTTCAATCTGATTAGTGTAGAATTGAATGCTATGAGTTAGTTTTTCATGTTTTGTATAATAA TATAGTACTCTTGTTCATTATGTTTACATAATTTTTTTGTCACCTAATCATTTACTTTTTACATCAGGAATTACCGAATT TGAAAAGGCTCGATCTTCGTGCTTCTTTGAACTTGATTCGAATACCAGACCTTTCTAAGTTCCCAAATATTGAAGAAATT ATTCTTAGTGGTTGTGAAAGTTTGATTCAAGTTTACTCCTCGAGTTTCCTCTGCAAGCTCAAATTATTATATTTAAATGG TTGTCTTGAGCTTACGAGTTTAGATCTTTCTAGTAATGCTCTATCAAGAACTTCTGGATTAGTGGGGCTCTACAATTGTT GTAAACTGGAAACGTTTTCAATCAATAGAACTGAGGTGGTTCAATCACGTGGTTGTTCCCAAATTTACGATGATGTGAAA TTTCGCTGGACTTACCTAGAAGGCACCTCTGGCTATCAAGACATGAATGGAAGAGATCTGGGTGAAAAATCTTGTATAGA GATTGAAGATTTGAGAGAAAATTTGCCTTCACAGCTTTCCCAGGAGCTTTGTTGGTTAGATCTCGGTAAATGTAAGTTAT TTACAAGCCTTCCAATTGACCTTTGTAAGTTGAAATTGCTAAGAAGACTTTATCTAAGTGGCTGCTCTAATTTGAACAAA ATCCCTGAAATCGAGGAGACACTAGAAAATTTAGCCGTGCTTGTCTTAGACGAAACAGCAATACAAGAACTACCTTCATC CTTACACCGTTTGGTGGGGCTTGAAGAGCTGAGCTTGCGTAGTTGCCGAAGGCTTGAAATTATTCCCTCCTCGATTGGAA GACTCACCAAACTCTGTAAGTTAGACCTTGCCTATTGTGAATCACTTGAAACTTTTCCACGCAGCATTTACAAATTGAAG TTGACAAAACTTAATTTGTTTGGTTGCTCAAAGCTAAAGAACTTCCCAGAGATCTTGAATCCTGCAGAAAGTTTTGCTCA CATTGACTTATCATGGACAGTAGTTAAAGAACTGCCTTCATCATTGGACTGTTTGGTGGGTCTTCAAACCTTGTGTCTGA ACTGGTGCTGTGGTCTGGAGTCACTTCCAAACAGTATTGGTAATCTAAGCCTTCTCTCTGTGCTTGACTGTTCAGCCTGT CGTAAATTAACAGAAATCCCAAATGACATAGGCCGCTTGTCATCATTAAGGGAACTGTCATTGCGAGGTACCGGAATCGT GTACCTTCCAGAGAATTTGGCTCATCTTTTATGCTTGGAATCTCTTGATGTAAGTGACACCAGAATCGTGAGCCTTCCAG AGAGTATTGCTCATCTTACAAGTTTGAAATCACTTAATGTAAGTGAATGCAGACAGCTTGATTGTATCCCACAGCTTCCA CCATTTCTGAATCAGTTATTGGCATTAAAGTGCCCATCGATTAGAAGAATGATCGGTGAGGATGCGTATAGGTTTGAGTT CTTTTGCTTTCCAGGGAGTGCAGTTCCTAATTGGTTCCCCTATCGTTGCGAGGGAAATTCAATTACTGTGGGTAAAGATT CTCTAGATTGGTGCAATGATGATAGGCTCATTGGTTTTTCTATGTGTGTCGTTTTGCGGTTTGAAAAGAAAAACTATACA AAAGATAGTATTCGTGATTTTAGATGCAGATTAACATTTGAGTCTGATGGCCAAATATACATCATTCCCAACAATAATAA GTTAAACGACTATTTCAGTTTTTGTTGTTATAGAATGGGACATGTCGAGCACACATTCCTATGGAAACATTACTTAATGG TCTCTGCAAGCATCGACAGAGGGACCTTTCATGCTGACAACTTCACTTTTGACTTCGAGGGCAAGAATCAGCAGAGTTTT AAATTATATCCTGAGGTGAAAGAGTGCGGTATATGCCCTCTTTATTCCAAAGAAAAAGATGACTTTGAAGAACGTTGTGA GAAGAGGCAGTGTCTAAGGTGAAACATGATGTCATAAGTTTTAGCTGTGAACCACAACCATATGCAGTTAAACCCAGAAA TGTTTTTGCTTTGTCAACCTGGAACAACTAATGATAAGATGTTATTTGTTATTGATCTTGGTTTTGGGTATGCTGTAATT CCAAACCAGGTGACTTTCCTTTTTACTTTGTGTTTTTATTTATGTATTAACTTTAATAGGTGTTTATTTTTATTGCAGGC ATTTCAAATTCATTTGGATTTGATGGACACGCCACAACTCTGGTCTGTCCTGATTACCAAGCTTGTCTTGTCTGCATTTC AAGTTGAGCATCAGTCATTACAGAGCCAGCTCATATTTAATTCATTTTGAATTATGAAAGTGGAACGAATTTTAAAGTAT CAGAAGAAATACTCTTAAGCTTTCTTCCTTAAGATGTTTCTTATCAATTGGAGGCACCCACTTGATAAGTGGGAAAATAT TGCCTCTTGTTATCCACTCACAACTTCTGTTCTTTGTTAGCAGTTTGTGAGGATGTATGCAAGGAAGAAAATCCACAAGG ATAAGGATGCTGAGGCTACTGAGTTTGAAGAGTCAGTTGGGCAGGTGTTGTTTTGAATGTTGCTGTGGATGCAGTTGCTG ATACAGACATTGTTTCATTTGGAGTATACCTATCAGGAGCTTAAAAGAGATTTCAAGATCTATGCATAAATTCAGCAGTG TAAGGATGAGTATTACATGCTTCTGTGTGCGTAGGAAGGATCATGAGTTTTCTCTCTATTTTGACTTGTGTTTTTTACTG ATCTGCAGATAAATTGACGTTTCCGGGAACTGCAAAGCTGTTGTTATCCATGTTCCTTACAGATTGAGGAAAGCTTTCCG GAAGATCCATGTTAGGCTTGTGAGGATGCTTGAGAAGAAGTTTAGTGGAAAGGTAAGTTCATTCTAATTTATTTCTATCA TGTACATCCGAAGGTAATTTTTCTTTCATTGACATTGTTTTTTCTTAGTTTGAATACATTTGATGATATTTGTGTTCCTG CCCCTTGCATTGGCCATTTTGATGTAGTTATTTCCCGAGAGGATGTATTCTATAATTTAAGCAATCTTTTATCTTGCTTG TGTGGTTGAATTTCTGTTACATTCACTGGAAAGTACTTTTTTCTGCAATCCTTTGTGAGGCATGACTTATGTTATAACTT TTAAGTGATTTTAACCATTGCTAATGGAAATTAAACACACTATAGACCATGAGGAAGTGTTTTGGTATGACCTCCTGGTA GTAGAGTTATATCCACAAATCACAATAAATGATTGCATGAAATTGAGTTTAGAGTGTAATTTATTTATTGCATTGCATGT TGGCATGATAATATCTGTTATTCTTCTGTCTTGAGAAATTTCAGTGTGACTTATCCCTATTAGCTTGTACGAAGTATTAA GCCCTCATTAAGAATTCTTGTTGAGTAATCTCATCTTTATTAATCTTTACTTTTGAGTAGCTTCATTTCATTACTGTGCA GTTTAAATCATATTTAACTTCTAGGATGTAATTTTCATTGCCACCGGGAGGATATTGAGGCCACCAAAGAAGGGTTCTAC TGTTCATGAAGCAATGCTGGAGGATGTATTATTGCCTGCGGAGATTGTTGGGAAGCGGAGGAGGTATCGAGTTGATGGAT CCAAGATTGTTCTGTACTAGGGCAAGCTTACGTAGGAGAAAGACAAAAAGTAAACCCTAGCAGAGCACTAAAATAGCAAA ACTACCATAAAAGGAATATTCTCATTAATGCTGAAAAATTGGTTTCGTACAAGTGGATGACCTCCCCTTTTATAGAGGGG GTGGTCATGATATGGACCTTTCCTATATTTGGGCCTGACAATCAGGGCCCAAATCCCTGTACATATAAGACAAATCCAAA GGAATCTTCCAGCTGGCTTGTGGGTCCATCATCTAAGGGAGGGCAATGAAGCTCGTTGTGTCGCACTTCCCGCCATGGCT ATCTTCAATGGTTTATTGTTCATTTTGGGCGGGACATAATCTTCTTTATGTCCCGCCCAGTCCAAAGATTATGAAGGTAG AGGTATTGTTTCCCATCAACATACAAAGTTAACATGTTGTTTAATCAACCATCAGAAGAAGTTTCTTTTATAGGATAATA CGTCTCTTTACCATGTCAATGAATGTGCATGTATATATTGGAAAATGAATTCCCATGGTTAATCATGTGTCTGAAAGTTG TGATTTTCCTGTAAAGTTTGCAACTTAATTTACCTTTGTAAATTGTACCAGTTTTTATTCATTTCTTGTAAATTTTATCT TTATCATTCTCTGGACAGTTTTTCTTGGAGACTTTTGCAGCATTGTATTGGAAGCTATCTGGCAAAGACACAGAGGCTTA GTTTCAATTCCTTTGTCAGCTTTCAATCTATAATCTATAATCTATAATTATATAGGAATTGTGAAGCGCGCAATATAGCG CTGCCACATCATCATTTATACTTCCAACAACACTGTCCAGCTCAGCAATTTTACATACGTGTCACTTTCAATTCTTCTCA AGGATTCAACATGTAGCAAATAGAAGAGCATCGGCATTCTAAACCACTAAACGTTCTCTTCTCTGTGGAAACCAAACAGG TTCACCTTCTCTATTTTCTCAGTAATGCATCTTTCATCTTTCACATTCTATCTGACCTCCCCATCTCTAACGGGATCCAC CACCATTTCACATTAACAAGCCTCCAATTTGGCTCCAGAAATTCCGAGGTTCCCTTCCATTCGATTTTAGGGATCATTTT CTTCTCTCAAGTTCCTATTCCCTAACCCTAATCAACCACCTTATTTACATTTTAGACTTTGGAGAATGCGGAAATTGTGG GTTTGGTCATCACAGAGCAATATGTTGAGAAGGTGAATTCATGTATAATAAACCCTTTTCAAAATTCCATTATTTTTAAT CTTATTCTAATTATTGTCCCTAACATGTTCAGTGTTCAATTTCAATGCATAAAGGTTTATACTCAGATAGATCAAAATAG AGGAGTAAGAGTAGGAGAAGCTTCAGAAGTTACAACAAGAGTATGTTTTTGAGGCGCCATGGAAATCGAGCCAGTCATCA CCTCTATCTCTCTCTGATCAGGTAGGTAATCAATTCCGTTCCTCGACCTTCTACCATTAAATAGCAAGTTTGATCTGCAT GATTATCCCAATTTGATGCCTACTGGAACTCGAGAAATTTGTGCCATCTTTAGTTTGCAGGCACCAAATTTCAATTGCAG TTAAGATCTGAATTGAAAACCATGATTCCTTTATTTGGAAAATAGCTTGCCATTTGTTATTCTATCAATCTATCCCTATC ATCATATTAATTTCTTTTCAGTATGCAGGATATAGTGAAGGAGGCTCAATAGGTGATTCTTAAATTCTGAATGTCAAAGG ATTTGTTTTACTATATCTCAGCATTCAACTGTTCCTCAAGGAGTTTTGGTGAGCTTTTTATGCTATCATTCTATGGTCAT GGAATCCTTCCAAGTGATAACTGTTTTGTTTCAGTCCATAACTAAATTGGGAAAAAAAAACTTCTCTCAATTGTGTAACT AAATTGGAAAAAAACTACCCTCAATGTTATTGCAATTTGAAATTTAGTATGCCAGTTGTTAAGGACTTTGGTATATATTT CATAATGGTGTTTCTTTGGTAAAAATATATTAATGTGGTCATATAACTTCTGATTTTTCTCAAGCACACGCTTTAGACAC CCGCCCCCACAGTGTTTTGCACATACCTGTGGGCGGAGGAGGAGAGGCTAGAGAGTTGTGGCTTACCTGTTCTATTTTCA CTTATCTTCTTTTGTTATCCCTTTATTTGAAAAATAGCTTAAGATATGTTATTCTGTCACTATATATTAGTATGGTCCCG TTTTGGAAAACAGCTTAATTGAGCGTTTATGACATAAGCGCTTATTCAAAAGCTATTTTAAAAAATTTATTAAAGTAAAT TGAAAATAAGCTATATATAAGCATAAGCTCTTTTCCATAAGCTATCCTGATTAGCTTATGAAAATAAGCTCAAAACACTG ACATAAGAGCTTATGCTATCAGATAAGCTCAAATAAGCTCTTCCAAATGGGACTTATATCTATTAATTCTGAAGCTCAAC TTGTAGAGTTGCCACCTTAACCCTATTCTTCACAATATTTTCGCCATGTAAGCATCTTTTCTTAGTTGTCACTTCATTCA TTTCCCAATCTTCTTTTTACTGGACCATATGTTAGATAATTATTAGTCCTTATTTCTATCATAGCTGGTTTTGTATTTTG CTTAGGCATATGGTATGTGCTCAGATCATTTAATATGAACTATGAAGGCATCCCTTCTTAGTAACTTCTTCTAAACCCAC GTGTAAACCAAGGTGTTTCCAGGGCAGCCTCCTCAGTGATAGGAAAGCAGAGACAATCTCTACCATTTGTGCTGCTCTTT TGTACATGCTCTTTCGTGCAACAATATAAAGGAATTTATGTGTTAGTAGTTAATAGTAGTGAGTGATAATGGGATGTGTA TATTTTATATGATCTACTATGTTTGTGTCAAAAAATTGACTTACCGTGGACCCTTTGAATGGGTGGAGTGATATATTAGT CTGTGTAAGAGTGCTCACTTTGTTGTTGACTCTCTCCATTTTGTAATGTGTAGCTTGTGTTATTCTCAACCAAAAGCATC TAAGGACAAAAGTTCTTTTGGTGCATCTCATTTTTTATGGAATGATGCATCTCACTAATAATATGGTGTCGGTGTTTTAA ATATTGATTGACTTAACATGGATCCGGTTTTTGTATTAGATATTGATTGAATTGTTGTACCATGTCATTTCTTTTGTTCT GTTTTTTAAGTTTGCGGAACTTCTCTTTTATATGTTCTGTCATTATTTGCAGCCGAAAGATTTTTAATTTGGTGCACCAA AGAAGGAAGTGATGGTCTTTGCTTTGATTGAGAGACTGGTCTTGCAGAGTTGGTTAGGGACATCAAAATCCTTTTTCACA TTGTCAAGGAGTTTTTCCCTTATATAAATTTTCTTAATCAATGATCAATTGTCTCTAGCAGTCTCATATTGAACTGTAAT ATCTTCCTCTGTTGATGATATTCCCTGTAAACTGTAATAGAAGATAATTCTTGCTCATAGTGGAGGAATTGAGTATGTAT AATTTGTTTGCAAATTAGTTCTAAATTTAGCATAACTAAATAGTTTTACAGAACCTTTTAACACTATTTGCATTTGGATT ATTTTTTAAGGAGATAGTTTTAATGGTGTTTGAAGTGAAGTTCTATTATTGATGGATGAAGGCT 

CDS sequence (LotjaGi1g1v0324100.2) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGTTGGGGAGTTCTTCATCTTCATCTTCTGCTGCTGCTATTGTTATGACTCCTCCAAAGTATGATGTGTTCTTGAGCTT TAGAGGAGAAGACACACGTGACAACTTCACTAGTCATCTTTATGATGGTCTTTGTAGGAAAAGGATCCAAACATTTATAG ATTACAGGCTAGACAAAGGCGATGCAATCTCACCTGAACTGTGCAAAGCTATGGAAGAATCAATGATTTACATCATCATT TTCTCCCAACACTACGCTTCTTCCTCGTGGTGTTTGGATGAACTCGACAAGATTCTGAAATGCAAGAAGAGATATGGAAG GAATGTGATACCGGTTTTCTACAAGGTGGATCCATCAAATGTTAGGCATCAGGAAGGGTGTTATAAAGATGCATTTGTTA AGCATGAAAAGCGATTTCGGGACGAAGTAATACAGACGTGGAAGGATGCTCTAACCGAAGCAGCTGCAATCTCTGGCTGG GATTCAAACACCACTAGACCAGAATCCATGCTTGTTGATGGTATTGTGGAAGATATTTTAAGAAAATTGGATCGTTCTTT TTCAAGTGACGATCATAGAATGGTTGGAATTGACAAGCACATTGCACAAATCCAGTCCTTGTTGCAGCTTGAGCCAGAAG CTGTTCGGATCATAGGAATTTGGGGCATGGGAGGAATAGGTAAAACTACACTGGCTCGGACACTACATCACAAACTGGCG ACCCAATTCAGTTCCAGGAGTTGTGTTGTAAATGCTCAGCAAGAAATAGAAAAAGATGGAATTGACTGTCTACATAAAAA ATATTTATCAGAACTTCTAGAGGAAGATATCTCGTCAAATGGATTGCATTTTGCTATTGAAAGGGTCAAACGGGCAAAGG TTCTCCTTATTCTTGATGGGGTGAAAACTTCGAGTCAAATTCAAGAGTTAATTGGAGGGCATGGAAACTTCGGCCAGGGA AGTAGAATCATTGTGACTAGCAGAGACATGCAGGTGCTTAGGAATGCTGAAGCTGATGATATACATGAAGTCAAGGAGAT GAATCCCCAAGATTCTCTGCAGCTCTTCAGTTTATATGCCTTTAAACAAATCTGCCCCATGGAAGGTTATGCTGACTTAG TAGAAAAGGTATTGGAATATGCTAAAGGGGTTCCATTAGCTCTCAAAGTTTTAGGCTCACTGCTTTATGGTAGAACAAGG AAAGCATGGGAAAGTGAGCTGCAAAAGCTGGAAAAGCTTCCTGAGATTGAGATTTTCAATGTGTTGAAATTAAGCTATGA TGGGCTGGATGGTGAACAGAAGGACATATTTCTTGACATAGCTTGCTTATATGTAGGCGATTTTGTGAATGATGTAGTGG ATATGCTAAATGGTTGTGGTTTCTCTGCTGACATTGGAATGCATGTTCTGAAAGATAAGAGCCTTATATCTACTTTAAGA GATCGCATCGTGGTGCATGATCTAATAGTGGAAATGGGAAAACAAATTGTTCGTCAAGAATGTGTCAATCATCCTGGAAA ACGCAGTCGTCTATGGGACCATGAAGAAATTTATGATGTTTTAAGAAACAACCAGGGGACGGATGCAGTCCAATGTATAT TCCTCGCCATGTGGAGGATAAAAAAACTTGAAGTTCATCCAAAAAGTTTCAAAAGCATGCCTAATCTGAGAATGCTTTGT TTCCATAACTATTTTCCGGGAAGACGTCAAACAAATGTGATCCTTCCTGCATGTGTTGAAAGTCTTTCGAATAGTTTAAA ACTTCTTGATTGGGATGAATTTCCTCAAAGATCTTTGCCGTTGGACTTTTGTCCAAAAAATCTTGTTGAACTTTTGATGC AATATAGCGATCTTGAACAACTTTGGGAGGATGATCAGGAATTACCGAATTTGAAAAGGCTCGATCTTCGTGCTTCTTTG AACTTGATTCGAATACCAGACCTTTCTAAGTTCCCAAATATTGAAGAAATTATTCTTAGTGGTTGTGAAAGTTTGATTCA AGTTTACTCCTCGAGTTTCCTCTGCAAGCTCAAATTATTATATTTAAATGGTTGTCTTGAGCTTACGAGTTTAGATCTTT CTAGTAATGCTCTATCAAGAACTTCTGGATTAGTGGGGCTCTACAATTGTTGTAAACTGGAAACGTTTTCAATCAATAGA ACTGAGGTGGTTCAATCACGTGGTTGTTCCCAAATTTACGATGATGTGAAATTTCGCTGGACTTACCTAGAAGGCACCTC TGGCTATCAAGACATGAATGGAAGAGATCTGGGTGAAAAATCTTGTATAGAGATTGAAGATTTGAGAGAAAATTTGCCTT CACAGCTTTCCCAGGAGCTTTGTTGGTTAGATCTCGGTAAATGTAAGTTATTTACAAGCCTTCCAATTGACCTTTGTAAG TTGAAATTGCTAAGAAGACTTTATCTAAGTGGCTGCTCTAATTTGAACAAAATCCCTGAAATCGAGGAGACACTAGAAAA TTTAGCCGTGCTTGTCTTAGACGAAACAGCAATACAAGAACTACCTTCATCCTTACACCGTTTGGTGGGGCTTGAAGAGC TGAGCTTGCGTAGTTGCCGAAGGCTTGAAATTATTCCCTCCTCGATTGGAAGACTCACCAAACTCTGTAAGTTAGACCTT GCCTATTGTGAATCACTTGAAACTTTTCCACGCAGCATTTACAAATTGAAGTTGACAAAACTTAATTTGTTTGGTTGCTC AAAGCTAAAGAACTTCCCAGAGATCTTGAATCCTGCAGAAAGTTTTGCTCACATTGACTTATCATGGACAGTAGTTAAAG AACTGCCTTCATCATTGGACTGTTTGGTGGGTCTTCAAACCTTGTGTCTGAACTGGTGCTGTGGTCTGGAGTCACTTCCA AACAGTATTGGTAATCTAAGCCTTCTCTCTGTGCTTGACTGTTCAGCCTGTCGTAAATTAACAGAAATCCCAAATGACAT AGGCCGCTTGTCATCATTAAGGGAACTGTCATTGCGAGGTACCGGAATCGTGTACCTTCCAGAGAATTTGGCTCATCTTT TATGCTTGGAATCTCTTGATGTAAGTGACACCAGAATCGTGAGCCTTCCAGAGAGTATTGCTCATCTTACAAGTTTGAAA TCACTTAATGTAAGTGAATGCAGACAGCTTGATTGTATCCCACAGCTTCCACCATTTCTGAATCAGTTATTGGCATTAAA GTGCCCATCGATTAGAAGAATGATCGGTGAGGATGCGTATAGGTTTGAGTTCTTTTGCTTTCCAGGGAGTGCAGTTCCTA ATTGGTTCCCCTATCGTTGCGAGGGAAATTCAATTACTGTGGGTAAAGATTCTCTAGATTGGTGCAATGATGATAGGCTC ATTGGTTTTTCTATGTGTGTCGTTTTGCGGTTTGAAAAGAAAAACTATACAAAAGATAGTATTCGTGATTTTAGATGCAG ATTAACATTTGAGTCTGATGGCCAAATATACATCATTCCCAACAATAATAAGTTAAACGACTATTTCAGTTTTTGTTGTT ATAGAATGGGACATGTCGAGCACACATTCCTATGGAAACATTACTTAATGGTCTCTGCAAGCATCGACAGAGGGACCTTT CATGCTGACAACTTCACTTTTGACTTCGAGGGCAAGAATCAGCAGAGTTTTAAATTATATCCTGAGGTGAAAGAGTGCGG TATATGCCCTCTTTATTCCAAAGAAAAAGATGACTTTGAAGAACGTTGTGAGAAGAGGCAGTGTCTAAGGTGA 

Protein sequence (LotjaGi1g1v0324100.2) extracted from Lotus japonicus Gifu v1.2 Proteins.

MLGSSSSSSSAAAIVMTPPKYDVFLSFRGEDTRDNFTSHLYDGLCRKRIQTFIDYRLDKGDAISPELCKAMEESMIYIII FSQHYASSSWCLDELDKILKCKKRYGRNVIPVFYKVDPSNVRHQEGCYKDAFVKHEKRFRDEVIQTWKDALTEAAAISGW DSNTTRPESMLVDGIVEDILRKLDRSFSSDDHRMVGIDKHIAQIQSLLQLEPEAVRIIGIWGMGGIGKTTLARTLHHKLA TQFSSRSCVVNAQQEIEKDGIDCLHKKYLSELLEEDISSNGLHFAIERVKRAKVLLILDGVKTSSQIQELIGGHGNFGQG SRIIVTSRDMQVLRNAEADDIHEVKEMNPQDSLQLFSLYAFKQICPMEGYADLVEKVLEYAKGVPLALKVLGSLLYGRTR KAWESELQKLEKLPEIEIFNVLKLSYDGLDGEQKDIFLDIACLYVGDFVNDVVDMLNGCGFSADIGMHVLKDKSLISTLR DRIVVHDLIVEMGKQIVRQECVNHPGKRSRLWDHEEIYDVLRNNQGTDAVQCIFLAMWRIKKLEVHPKSFKSMPNLRMLC FHNYFPGRRQTNVILPACVESLSNSLKLLDWDEFPQRSLPLDFCPKNLVELLMQYSDLEQLWEDDQELPNLKRLDLRASL NLIRIPDLSKFPNIEEIILSGCESLIQVYSSSFLCKLKLLYLNGCLELTSLDLSSNALSRTSGLVGLYNCCKLETFSINR TEVVQSRGCSQIYDDVKFRWTYLEGTSGYQDMNGRDLGEKSCIEIEDLRENLPSQLSQELCWLDLGKCKLFTSLPIDLCK LKLLRRLYLSGCSNLNKIPEIEETLENLAVLVLDETAIQELPSSLHRLVGLEELSLRSCRRLEIIPSSIGRLTKLCKLDL AYCESLETFPRSIYKLKLTKLNLFGCSKLKNFPEILNPAESFAHIDLSWTVVKELPSSLDCLVGLQTLCLNWCCGLESLP NSIGNLSLLSVLDCSACRKLTEIPNDIGRLSSLRELSLRGTGIVYLPENLAHLLCLESLDVSDTRIVSLPESIAHLTSLK SLNVSECRQLDCIPQLPPFLNQLLALKCPSIRRMIGEDAYRFEFFCFPGSAVPNWFPYRCEGNSITVGKDSLDWCNDDRL IGFSMCVVLRFEKKNYTKDSIRDFRCRLTFESDGQIYIIPNNNKLNDYFSFCCYRMGHVEHTFLWKHYLMVSASIDRGTF HADNFTFDFEGKNQQSFKLYPEVKECGICPLYSKEKDDFEERCEKRQCLR 

Domain prediction

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

Merging data from EBeye. Please wait…

Domains

Sorting

Prediction algorithm Identifier Start End Length E-value InterPro ID
PANTHER 12 854 843 2.5E-245
PANTHER 12 854 843 2.5E-245
SUPERFAMILY 17 160 144 5.62E-40
ProSiteProfiles 19 157 139 27.382
Gene3D 19 185 167 4.7E-70
Pfam 20 191 172 3.0E-49
SMART 20 157 138 1.5E-47
Gene3D 186 343 158 1.9E-28
SUPERFAMILY 187 440 254 3.46E-58
Pfam 199 412 214 2.1E-26
SMART 214 348 135 0.0024
PRINTS 217 232 16 1.5E-21
PRINTS 288 302 15 1.5E-21
PRINTS 381 395 15 1.5E-21
SUPERFAMILY 417 521 105 3.26E-12
Gene3D 525 737 213 2.1E-15
SUPERFAMILY 530 720 191 5.44E-19
Pfam 607 626 20 5.4E-5
ProSiteProfiles 630 652 23 5.471
ProSiteProfiles 687 708 22 7.519
Gene3D 756 911 156 4.4E-21
SUPERFAMILY 773 1067 295 8.84E-43
ProSiteProfiles 779 802 24 4.724
ProSiteProfiles 803 825 23 5.255
ProSiteProfiles 827 848 22 4.924
PANTHER 851 1242 392 2.5E-245
PANTHER 851 1242 392 2.5E-245
Gene3D 912 1078 167 2.6E-32
PRINTS 964 980 17 1.5E-21
ProSiteProfiles 992 1014 23 5.386
ProSiteProfiles 1015 1036 22 5.925
ProSiteProfiles 1038 1060 23 4.901

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 LotjaGi1g1v0324100.2, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.

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