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LotjaGi2g1v0171600.4

Overview

Field Value
Gene ID LotjaGi2g1v0171600
Transcript ID LotjaGi2g1v0171600.4
Related isoforms 5
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|A0A0B2QXG3|A0A0B2QXG3_GLYSO TMV resistance protein N; Found in the gene: LotjaGi2g1v0171600
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr2:58713132..58726686) extracted from Lotus japonicus Gifu genome v1.2.

GTGTATTTGGTTGCTCTGTTCTCATGACATATACTTATGGTTGCACACACCATTCATATTCCACACTTATCATTCCAAGC TTTCTTTCTCATGGCTCTGCTACCATCATCATCCTCCTCCTTCTCCTCCTTCACCTATGCATTCACTTACGATGTATTCC TCAGCTTCAGGGGTTCTGATACTCGCTTTGGTTTTACTGGCAATCTCCACAAAACTCTCTCAGATAAGGGAATCCACACC TTCATTGATGATAAGGACCTTAAGAGAGGAGATGAAATCACACCCGCACTTATCAAGGCCATTCAAGAGTCGAGGATTGC CATCCCTATCTTCTCTGTGAACTATGCTTCTTCTTCATTTTGCCTGGATGAACTTGTCACAATCATGGAGTGTGTCAAGG CAAAAGGTCGGTTGGTTCTTCCGGTTTTCTATGATGTGGATCCTTCTCATGTCAGACATCAAAGTGGGACTTATGCTGAA GCTATGGACAAGCATGAGAAGAGGTTTAAGGATAGCAAGGAAAAGTTGAAGGACAACATGGAGAGGTTGCAAAAATGGAA GATGGCTCTTAACCAAGCCGCTAATTTGTCAGGCTCTCATTACAAACCCAGGTACCCCACTTCACCCTCTTTTTTTCTTC TTGTGTTTCTTTACAACTTCACAGACATGATAGAATTTATTGTTATTATTTCACACAAATTTCACTTCTCTTATTGGGCA GTGATGGATCTTATGAACACGACTTTATCGGAAAAATTGTTAAAGAGGTCTTAAGAAAGATTAATCGTGTAGCTTTACAT ATTGCTGATTACCCCGTTGGACTAGAATCCCAAGTGGAAGAAGTGCTTTTTCTTATGGATGTTGGGTCTGATGATAAAGT TCACATGGTAGGAATTCATGGAATAGGAGGGATTGGTAAAACAACACTTGCTCTAGCAGTTTACAATTCCATTGCTGACC ATTTTGAAGGTTTATGTTTTTTAGAAAATGTTCGAGAAAATTCAAACAAACATGGGTTACCACATCTCCAAAAGATATTT CTTGTGGATGTACTTGAAGAGAAGGAAATTGAGATAACAAGTGTCGGCAAAGGAATTTCAATGATACAACGTAGGCTCCA GCAAAAAAGGGTTCTTTTGATTCTAGATGATGTTAACAAGATGGAGCAGCTACAAGGCATTATTGGAAGGTCTGATTGGT TTGGTCGTGGTAGTAGAGTCATCATCACGACTCGGGATAAACACTTGCTAGCATTACACGGGGTTGAAAGCACATATGAA GTGGAAACGTTGAACGAGAATGATGCTGTTAAATTGCTCAGATGGAAAGCTTTTAAAGAGGACAAGGTTAGACCAAACTA TGAAGGCATGTTAAGCCGTGCATTGGCTTATGCTTCCGGCCTTCCATTGGCTTTGGAAGTAATAGGTTCTAACCTGTATG GAAAAAGTATACAAGAATGGGAATCTGCATTAGAGCAATATGAAAAGATTCCAACTAAAAAGATTCAACAAGTACTTGAA GTGAGTTTTGCTGCTTTAGAGAAACAAGAGCAAAGTGTTTTCTTAGACGTCGCTTGTTGCTTCAAAGGATATCACTTAGA AGAGGTTGAAAATATACTCAATGCCCATCATAACCATTGCATTAAATATCAAATTGTTGTGTTGGTTGATAAGTCTCTCA TAAAGATTACTCATTCGGGTTATGTGACACTACACGACTTGATTGAGGATATGGGTAAAGAAATTGTGCGACAAGAATCA CCACAAGAGCCTGGAAACCGCAGTAGGTTATGGTTTCATGAAGACATATTTGAAGTTTTGGAACAAAATACGGTATGACT TGTCTGGATTATTTGGTTGTTTATCGTGGATCTTGATTTAGCCTTTTTTATTATTCAAAGCTACTAATGTTATATTACCA TTTCCCCCCTTTTTAATATTTGCATGTCTCTTACTACTTGTGTTAATCTCTTATTTGTCTTTTTTTTCTTCTAAAGGGAA CAAGCAAAATTGAAATGATGCATCTAGATTACCCGTCATTTGAAGAAGTGAATTGGGATGGAGAGGCTTTCAAAGAGATG AAAAAACTCAAAACACTTGTCATTAGAAAAACTCATTTTTCTAAAGGTCCAGAGCATCTTCCAAATAGTTTAAGAGTACT AGAGTGGTGGAAATACCCTTCACAACATTTACCAAGTGATTTCCATCCAAAGAAACTTTCCATATGCATATTACCTTATA GTAGCATGGTGTCCTTGGAGTTGGGAAGATCATCAAAGGCAAGTATGATAATGATTCAATATCCTTGATCTTCTTGTGTA TTATAATCACTAATATTCATTTGATTTTTGTTTTCCTTTTTTTGTTTTCTTTTTTAGCAGAAGTTCGAGACTATGAAAGT TTTAAATCTCGATTTCTGTGAATCATTAACAGAGATACCTAACTTAACTGGTCTCCCAAATTTAGAAGAGCTTTCATTTG AATTTTGTTCAAAATTAATTACGATTGACTGTTCGGTTGGGTTGTTGGCCAAACTTAAAAGCTTGAATGCTGGTTATTGC TCCCAGCTTAGGAGTTTTCCTTCCCTTAAGCTGCCCTCTCTTGAAAAACTCTATCTTCATGGTTGTTTAAGTCTTGAGAG TTTTCCAGAAATATTAGAAAAGATGGAAAATATAAGGAAGCTTGATTTGAGGTGCACTAACATAAGCAAATTTCCACATT CATTTGGAAATCTGACTCGACTTCTATTCATGTGGGTTTCTCACTTGCTGCCATTAAGGAGCTTAGACACGATGCCAGAA CTATTATGGCTCGAAATCAGTCAGCGGCGGATATATTATGAGGATAGCGAGAGTGAGAGTGAAGAAGAAGTGATGGATGG CGGAGCTGTGGAATTAGTTCCCACGTTCTTGAATGAAAAAGAGAGTTCCATGCTTTTGCCTTCAAAACTAGAATGTCTTA CTCTCGAACAGAGCCACCTGTCAGATGAATATTTAGTATTAGTTCCCTCCTTGTTTCCTAACTTGCAAGAATTAGAGCTA ATGGATTGTCCATCAATCACAGTTGTACCTGAATGCATCAAAGAATGTCGCTTTTTACGGAGGCTTTTCTTGAATAGATG CGAGCAACTTAGAGAAATTTGTGAAGGGATTTTGCCAAGATTAAACAAGTTAGTTGTATGCGGATGTCCATCCTTGAGTT CCAGTTGTAGAAGCATGTTGGTGAGGCAGGTTAGTTTTTGATTTGATTTGTTATGTTTAGAATGTATTTATTTATTTCAT CATTATTTATTAATTAATGTTCTCCGCTTAAACAGGAACTGGGTGCGGATGTAGACATTCATCTTCAATTGCGAAACTTA GAAGGAGAAACGATTCCAGAGAGGTTTGAGCACCAGAACAGGGGTCCATCTCCGTCACTTTCTTTCTGGTTTCGTAACGA CTTCCCTCTCATCTTACTATGTATTGCTTCTCCACCTGAAACAAATTTGCCTGACCATGATTATTCAATAGTAAATTCCT TCATCAATGGCTCTTCAGGTCAACTATTCAGAGTGAATTGGGGTTGTACTCTTCTTCAGAGGCTAAGCAAAGACTACTTT GATACACATATGAGCGAAATATGCAGGATATCAAAAAATAAGTGGAATTATGTGGAGTTTAGGATTGAAAGGGTCTTTGA TTTTGGAATTGGAATCCATGTATTGAAAGAGCAAAACATGCAGGATATCCGATTCATGAATCCTGATAAAAGGAGAAAAA TAGACTTGAATTTGGCACCGCTTGAAGAGGATGATTTGAATGTGATAGATTTTATCATTAATATGCTACACTAAAACAGG AAGTGCATGAGGGGTAAAGACCTACTTTGAATTGCCATGCCTATAAACAGGAAGGATTCCAAAGTGGTTTGAGCACGAGA GAAGGGGTGCACTTTCTTTCTGGTTTTCCATCGTACACTGATTTTTAACTCTGAATGGTCATTCTTTACCCCTGATCTCA TTTTAACTCCTCCATAAAATTTAATTTTATGATAGAGGTATTTTAACTTCTTCTTTTTTTCGTCTGGTTTCTAGCAGATT TGGAGACGGAGGCTGTAAACTGGATCTTGGGACTGTGGCTGGGTAGCAGTCATCATTGCTGCTGTTTATCATCCAGGTTT ATTGTAAATAAAATTTTCAAGCAATTAAACCTATCCTTTTGGTATGTTTCTTTCCCATTTTCCAGTACCTTTTGAAACTG TTATGTATTCATGAATCAGTAGTACATATTAAGGCTGTGCATTTTTTATGACAACTGCAGACTGCTACACTGCTATGCTA CCACACATCTTGAACTTTTTCCTAGTTTAATGATTTTCACTCTTAGCATATACTTATGAACCATTTTTTACTATGTCCAC TAAGAGAAGCCACGATTGGATTACCCCTGACTTAAAACATTCTATTCTATGTAAAAGGTCGCACATTCTTGAAGGATTTA GGCGCCTTGTGCATGAGGATAATTTTTTTAAATTCTTAAGCTTTTGCCGTCGTTTTACCTCGACATAACTGCATATTGTC ATCCTCTTTAAAAACCTTCCATTCTGCATAATATATCTCGCAAATCGAAACTCGTCTGGGGTGCCTCTATAATCATCTAG ATAGCAACTTTTAAGGTGTAATAGAACACATTCAGGAACGGATGGCGGGAATTTCCAATCTCCTACTTCTCCACCTTGAA CAGAGTCAAGCACACAACATTCTGGCTGTCAACAATAAACACAAAATCAATAAATGAAAACGTGTACGAAAATTAGAAAA TCACCATAAGCCTCTAAGCAAACCTGCTTTATGACAAGATCTTGAAGCATGGGGCAATGCTGGAGCAATTTCACTATCTG AGACCAATCATTAATATGATATCTATAGACAAGCTCAACATTAGTTAAATTATGAAACATGGAGGAAAAGTAGGGGTCGG TGACTTCATCTATATCATCATCAATCTGCATGAGTTACAATGTAACAAAAAAAATCAGATCAGATATCCCATTTTCCATA AGAATGAAAAAGAATGATGATGCATAAATCACATTACCTCTAAGTACAGAACTTTAGCATTGTTAACCACTTTGAGCAAA AAATATGTATGTTCTGAAATCTGTATATCTGTTCTGAGCAACTTGGGTAACGTTTTGAACTCTCTGTCAGTGACATCATA ATTATCAAAACGTAAATCAGTTACTTTCAAGTCCTCAAGACCTGGACATCCAGAAAGAAGCTCCGCGAAAGACTCGCGTG TCGAGAAAGACAGATTTTCCAGATGCAGGACTTTAAGCAATGGGAGATTATAAGACCCAAGATTTTAGAATTAAATAAGT AATTAATTTCCAACTCACGCATAGGATTATGTGTAAGCGTGAGAGGAACTTGACTCGTGTTTAATGTTTGGATTAGCGTT ATGAAGAAGAAAGTTCAGGAAATAGTTAAGAATAGTTATATAGTCGCTATAGGTTATAGCACGAGTTTCATTCACTTCCG CCTTAGGGCGAAAACGTTAGTAAATGGCTAATTTGCTCTTAAAGCACTGTAGAAACGATATTCAAAAATATTCAGAGGAA TATAAGAACTTCTCTTATTCATTTCCTTGACAAGTGTTTCGACACGAAACCCTGGACTGTACGAACGACCGATTTCAATT CTCGGAAGTTTGCCGAAACTGAATCCCTGATAGCTCAAGAACCTTTAAGTAAACTGTCGATGAAGACTTTTTCTATTCGG AGCTTCAAATGAAGATTCCACACGCGTGCACCCATTTTTTTCGATGTTTCCAATCTTTCTTCAGAAAGAAGTTTCTGCAT CTGACATTCGCTGCAAAAAGTAGTTTTTCGGGTTGAATTATTTCATACCTCTTTTTGGATCGTTTCATTTATTTCAAAAC CTTGATTCAAGTTCTGGAAACTTGACATCGGAAACCCACTCAGAATTCACGAAGTATTGCACAGGAAAAATCGGAATCGA GAAATATTTGTTTTGCCAAGTTTTTGACCAATCTATAAATAGCCAAAATTTGAAATATCTTCATCTTTTTCCATGCTTTG GCCGTGGGTGAGCTTGAGGAGAAGAGGGAGAAGAGCTTTTTGCAATCCTTGACTGATCGTCGGACTGACAGTTGCTATAC GTAGGCCTCGAGGTACTGATGCTTTTCCTTACCTTTGATCGTAAATTCTGTCGCTTTTCTCTATGTCTTTCTGTGCTCAA AGTTTTGAGCTTTTTGTAAAACTGTCCAAATAACTTGATTTCTCTGACTAAACTTATTCCCTGTACGCCCAAGAGCATGT TTAGCGGATTACATTTCGCCGAATCTCGTCGAATCGCCTCAGAACTTCAATTCTGCTCAAAATACCAATTTTATGCTGAG GTTCTGCTTTTTGAATCAAAAACACTCGACTGAGCTTAGCGTCAGTAGGATTAGTTGTCATAAACGTCGTGGGTATCGAC CTCATCCAATTTATTTTTCGAAATTCCGACTTTGAGTTTCCGAGCTAAAAATCTTGACCAAAATACCCCTGTTCTAGTTT TCGATCCGATAATTTTTCTGAGAGTTTCCCTGGCCTAGATATCGCCTAAGAATACCTAGGAATTGATTTAGATCGGAGGA AAAGTTCGGAAACCCTATTTTCTAAAGTGGCCGAAACCTGTTTGTTAGGGTACCGTGTCCAAAAATAATTTTTGGGTATG TATGGCCTGAGCTATAGCGTAGCTCTTTCGATTGTCGAAATTTTGGCTTTGGTTTCGTGTCATTCCGAGTTTTGTAGCTC CAGTTATGCGCGTTTTAGAAAATGAAGTTCTGTTATCAATTCGTGCCTAAATAGGAACTCTGAAGCTTTAAAAGCTTTCT TTCCGGTTTCGATTAGTGTTATTAGATTGATTACTTCTAGTAGGTCTTGTGTTGATGATTGTGTTTCCTTGTTCTAGGTT CGCAACTTCCATGCACAACTTCTACTCACGAAGGTAAGGGTAACTCGGTTTTAGCGCGTCTTTGAGTCTTGCATGTTTTT ATCGCACTGCATGCGTTTGAGATGAAGATGTTTAAGTTTGATTGACATTTGATTATGACTGTTGTACTGAACTGGGAAAA TATTTTTCGGAGGCTTCGGCCGAGTGAACTTATTGAGACGTGTGTCTCCGTTTTCTGAGAGGCTTCGGCCGTTTACTGGT TTCTGTCATTGAACTGAGTTGGTATGTAATTGAATTGATTTATGTTGGTTGATAATATGAATAACATGTGGTTATCCTGT TTTGATTATTGAATTTGAGATTGTTGTTTGAGTGACTACTGAGTTGGATGAGATGTTTTGATTTGCTTGAAGTGGCAGTG GAGTGAATATTTTCACATGACTGTCCCGTCTTTCGGGGCGATATCAAGTGGTAGTGGAGTGGATATTTTCACATGACTAT CCCTTCCTTCAAGGCGTTACTTAGTGACAGTGGAGTGAATATTTTCTCAGGACTGTCCCGTCTTGCGAGACGTTATCAAG TGGCAGTGGAGTGGATGTTTTTACATGACTGTCCCGTCCTTCGAGGCGTTATCAAGTGGTAGTGGAGTGAATATTTTCAC ATGACTATCCCGTCCTTCGAGGCGTTACTTAGTGACAGTGGAGTTGATATTTTCACAGGACTGTCCCGTCTTGCGAGACG TTATTGTTTGATTTATATTGTTGAGGATTGTTGATATCTGATTTGATGTTATATTGTTGAGAATTATTGATATCTGATTT GTTGTTATATTTTTTAGGATTATTGATATCTGATTTGTTGTTATATTGTTGAGGATTATTGATATCTGATTTGATGTTAT ATTGTTGAAGTTATTGTTATCTGAATTAACCTATGGTGTTAAGTCATTGATTCCTGAGTTAGTTTATGTTGTTAAGTTTT GTTGGTATCTGTTTTAAAACCATATCGTTGATTTTGCTGATATGTTTAATTCTGTTAAATATATGATTCGATTTCATGAT CGATAGGATGAGTTGTCATCTATCCTGAATTAAATTGGTAGCTTACTTACCATGGCATGTATTAGATTTGAATAACATGT TTTTCTCTTTATTATGTGGTAATTGCATGGAGTTAACCCTTTCTATTTGCTACTTGTTGTTTGGGCGCTTAACGCTATTA GGCGATGGAGAGCCTTCCGCTGAAGCTTAGCTGTTCGAGTTGGAGATCGTGACCGTGGGCGGTCGAGTAAAGGTGGATGA AGCAGTTGTTTCTCCCTTTTTGGTGGACTATGTCTGAGTTTCTTTCCCCATTTGAAAACTCTGTTGTTTAAACCTTATCT TCGCCACTTGTCTAAGTGAGCGTACTTATTTTGGAACCCCGTTTATGGTGTTGTGAACTACTCTATGTTATGTACATTAT TATGTCGGGAAACAGGTTATTTAAATAAAGTTATGTAATGTTTCCAACCCTATGGTATTTAGTCATTTTCAAAAAATATA CCCTTGGTTTTTAGGGATTGCAGAATAGTCCTTAAACTTTGTTAGGTTACTTAATGTGATTCCTCAGTTGCGAAATTGGG GCGCTACAGAGAGCAGCACAGGAAAACAGTTCCAAATTTATCTGATACAACTTGAGAACCACAAGAGTTGTGCAACTGAA AATGGAAGACAAGTTGGCGGGTCGCGTGAGGCACGAATGAAATCGGAGGTAGAGATGGAGGTGCTGAAGGCTGCGTTTCA CTGTTGTATTAACCCATAGCTCGAAATTGACAGGATCAACAGAATCACAAAAGTTATAGGTGAGTTGGAATTTATGAATG GGTTGGTTTTGATCTCGGGAGAGGATAACAACATTCACGGACTGCAGAAAGAGCTCTGTTGTGATAAAACGACTGTGGCA GAAGAATTCCAGAGTGGGAACTGAACGCCAAAGAGGCTTCCACCTCTTGCAGAGAACGCTGGTTGCAATGGCTTCCTCAG TTGGGAGAAAAGAGAGAATGTGACAGAGAATTGGATCTGGTAAGTTGCTAATCCTATCTTCCATCTTTAAAGATGAATGC AAATTCACAAATCACTGCAGTTTCTGCTTTCATTCACCAAAAAAACAAAACATCATTCAAAGCTCAAAGCTCACAGTCTC CACGAACCGGCACCGGCACCTGCCATAGCTGGGGATTTGGAGGGATTTACACTGGAATTGTTAGAAGTCTCACATTGGCT AGAGATGTGGCCAACTAAATGCTTATAAAGGGTGGTGCAAACCTCAACTCTTAAGCCAGCTTTTGGGTTGAGGTAGGCCT ACCCAATTTCTAATATGGTAGTTATGCCTCCCTAATTTCTAATATGATATTAGAGCTTGTCCTAGATCCATTTGAAGACC TTCCGTATTTTGGCCACCCTTTAATGTTAATTCACGCTCCAGATGTCCAGCCCTGAGCGTGAGGGGGTGTGTTAGAAGTC CTACATTGCCTAGAGATGTGGGCAACCAAGTGCTTATAAAGGTAGAACAACCCTCAACTCTTGAGCTAGCTTTACCAAAT GCTTATAAAGGGTGGTGCAAACCTCAACTCTTGAGCTAGCTTTTGGGTTGAGTTAGGCCTACCCAATTTGTGAGACCCAA GTTTTTAAGTTGGAATAAATCGAATAAAATTTCTTTTCACGATTAATTGGATGTAACGTGAAGGAAAAACCTGAACAAGT GTTTATTGAATGGAATAAATTTGTGAAGGAGAAAGTTCAGGAAAAAGCTAAGGATTGCATCAAAGTCGATAAAAGTTATA GCACGACTAATATTCGCATTAAACCTAGGACAAGAACCTTAGGGAAAAAAAAACTAAGTTCCACCCTTGGAACACTATAG GAATAAATTCCAAAAATCTTCTAGAGGAATATAAGACTTTCTCTTATTCCTTTCCATAACAAGCGTTTCGATACGAAACC CTGGAATGTACGAACGACAAATTCCAATGCTCGGAAGTTTGCCGAAACCGAAACCGAAACCCTGATAGTTCAGAAACCCT AAAATTGACGGACGATGAAGACTTTTTCTATTCGGAGCTTCAAATAAAGATATCATCCGCGCACGCCCACTCTAATCGGC GTTCCGAATCTTTCTTCAGAAGGAAGTTTCTGCATCCGAGGTCAAGACCATAAAGTGCATAAAGTGCATTTTTAAGCCGG TACACATTAAAAACAAGCCTCGAAAACCAAAAATCATACTGATATTTCTTTGGAGAATTAAAAGATTCAGCGGGAAGAAT ATCGTGTCTAAAATACGTTGGAATCAGTAGGAAAAATCGGAATCGCGAAATAATCATTTTCTCACGTTTTCAATTTCCTA TATATATGACTTCAAAAAAAATCAAAAAAATCAAAACTTCACAAACACACACACGGCCGAGGGGTGCAAGGAGGAAGGAG GAGAAAAGTGATTTTTCCAATTCTTGACCGATCGTCGTTCCGTTTGTTGCTACGCGTAGACATCGAGGTACTGATGTTTT TCCCTACCTCTGATCGTAAATTCTGTCGCTTTTCTCTATGTCCTTCTGTGCTCAAAGTTTTGAGCTTTTTGTAAAACTGT CCAAATAAGCTGATTTTGGTGTCTAAACTTATTGCCTACGTGCTCTAGAGCATGAATATCCAGTTGTTTTCGACTGAATC CTGCCGAATCGTCGCAGAGGTCCAGTTTTCTGAAAATACCCATTTTCTAACAGAGGTTCCGCTTTTTGGATCAAAAACTC TCGACTGAGCTTAGCTTCAGTAGGATTAGTTGTTATAAATGTCGTTAGGATCGAGCTCATCAAATTTGTTTTTCGAAATT CTGATTTTGAGTTTCCGAGCTAAAAATATTGACCAAAATACCCCTGCGACAGTTCTCGACCCGATAATTTTTCTGAGAGT TTCCCTGGCCTAGATATCGCCTAAGAATACCTAGGAATTGATTTAGATCGAAGAAAAAGTTCGAAAACCCTATTTTCCAT AGTGGCCGAAACCTATTTGCCTGGGTACCGTGTCCAAAAATAATTTTTGGGTCTCTATGACCTGAGCCATTGCGTAGCTC TTTCAATTGTCGAAATTTTGGCGCCGGTTTCGTGTCCTTCCGAGTTCTGTAGCTCGAGTTATGCACGTTTTAGCAAATAA AGTGTTTTTGTACAAAACTAGAATCGAGTCAAAACTCATCCATTCGGGGAAAGCCCTTCCATTCGTGCCTAAATGTTGTA CTCTGAAGCTTCTTGAGCTTCGTCGAACATTAGTTAGGATTGTTTCGACTGTATCGACTTGTTTTGATTCATTATTGCTT TGCTTGCTCAAAGGTTCAATTGTGGAAACTTTGGGATTGACTGAACAAGCTTGTGAGCGAGACCTACACCGCGAGACTGG AACAACTCGAGGTTAGGGCAACTTACTTATTAGCTATTTGCATTGTAGGCGTCGATAACTTCGACTTGAATATTGCTTGA TATTGAATATTGCTTGGATATTGTTTATCGCGTTATGGAAAAATATTTTCTGGAGGCTTCGGCCGAGTGAACTTATATGA GACGTGTGTCTCCGTTTTCTGAGAGGCTTCGGCCGTTTACTGGTTTCTGTCTTATGATTCTCGCACCGTATTATTGTTGC ATCGCTCTTTAGAGCTGAATATTGTTGAATTGATATCAAATTGTGCGTGTTGACGCGATTGCGGAGCGTAGGACATTTGA GTTGATTTTGTTGATCTTTCGGGTTGAGAGGAAACCCTAGGCAGGTCCTGACCTGAGGTCTGAGATCTAGCCCTTTTTGA AATACTTAGACTTTTCCCGGGGATTATATTTGGGGAATTTGGGAAGCTTTGAATAGTTGGAAATTGGAACTTGGGAACTT ATGGAACTTGGATTTCGATAATAAACCTCATAACTTGATTAACTCAACTTGAAATGCTTTGGTTAATTAACGAGACCTTT AGGAAAATTTAAGAGTTGGAAGTGATTGTGAAAAACGGGAAATAGTCGAAAAGCCTTGAACTTGAGATGATTCGATGGTC GTCACAGGGATGAACCATAGTGACCATGGAAATGTCACTGAGTGCAATATGTACTCCGGCTTATCACAGCTAGTCGCAAA GACGACTTTGACCTTCGGGTATCTTTAAATTGAAATTTGTAGTTAAACACGTACGTGTGAGGACGATTCGATGTTTAGCT AAACATATTGCATCATGCATATACTCGGGGTTGGGACGGTCGATATACTGGCCTTCATGAAGAACACCAAGAGTGTATCT TCGGCATAGCGGGCGCGAATCCTTATGTTCAACCCGACGGGTTGGACCGATTCGGCAATAATCGTTTGACACGCGTGAAT CCTTATATTCAATCCGATGGATTGGATCGATTCGGCGGTAGTCACTCGGGCACGCGTGAATCCTTATATTCAATCCAATG GATTGGATCGTTTCAGCGATCGCCATATAAACTCGCGTGAGTCCGCAAGTTCAATCCGATGGATTGGACCGATTCAACGA TAATCTTTCGACACGCGCGGATCCTTATATTCAATCCAATGGATTGGATCGATTCGGCGATAGTCGTTAGACGCGTGCAA CGTCCGTATGTTCGACTCCATTGAGCGAACCGACTTGGCGTTGTCATTTGCTGCGTGTGCGAGTCCTTATGTTCAACCCA ATGGGTTAGATCGACTCGACATGCATATTTATTGGGATCGTCGTTTGAATTGATATTGCATGCATACATGCGCCCCAATT TGGAATCGTTGAGATATTGCTTATTGAATTGTTGAGATATTGCTTATTGAATTGTCGAGATATTGCTTATTGAACTGTGG AGATAGTAGATATTGAATTGTTTATTGGAGCATTGATAACAAGCCATGTATATACCTTAGGGTAGGCAATACAAAACTTA CATGTATATATACAACCTATATATATATACCCCTTAATTCATCACATGTTGCTTGTATTATCTATTATATCCTGTGAGTT GACCCTCGCACCTTGGCTTTGTTTGTATGTTTGTGTTTGGGCGGTCGGCTCGCTGCCAGGCGTCCGTCAGCCGGTTCGTG ATGATTCGTTGTGCGGGAAAGACCCAGAGCGAAATGACTATTACTGAAGCCTTCGACGAGGACCCGGACTTCATGCCTGA TCGAGGAAGGGTCGATGATAGTAGTGTGGGTTATGGGTGGTTAGAGTCTTTTGAGCTGGTTGTTGCTGTCATAGCTCTGA TTCGTCATTTGTACTTTTGGGACCAGGTAGTTTCCGACAGGTTGCTTTCGGTGTGGTTCTCCATAGATGGGGATCGCATG GAGTAGTCGGACGTAGGAAGTCTTTTTGGAAGCCGTTTTGGGCTAACTTACTTTCTTGGAAGACTGTATTTATAAAACTC ATGACTCTATCTATGGGTCGCACTTGTTTGCCGTTGGGCAATACCTTTAGTTATTTGATGTTACATTCCGTCACTTGAGG ACACTCGTGACGATGTTTTTAGTTGCAGCGAGAGCTGTACTTATATTGTATATTAATCGCGATTGGGTTGAGTCTTCTTT TCGACAAGTCTTTTTATTTGAACAAAACGAAAAAA 

CDS sequence (LotjaGi2g1v0171600.4) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGGTTGCACACACCATTCATATTCCACACTTATCATTCCAAGCTTTCTTTCTCATGGCTCTGCTACCATCATCATCCTC CTCCTTCTCCTCCTTCACCTATGCATTCACTTACGATGTATTCCTCAGCTTCAGGGGTTCTGATACTCGCTTTGGTTTTA CTGGCAATCTCCACAAAACTCTCTCAGATAAGGGAATCCACACCTTCATTGATGATAAGGACCTTAAGAGAGGAGATGAA ATCACACCCGCACTTATCAAGGCCATTCAAGAGTCGAGGATTGCCATCCCTATCTTCTCTGTGAACTATGCTTCTTCTTC ATTTTGCCTGGATGAACTTGTCACAATCATGGAGTGTGTCAAGGCAAAAGGTCGGTTGGTTCTTCCGGTTTTCTATGATG TGGATCCTTCTCATGTCAGACATCAAAGTGGGACTTATGCTGAAGCTATGGACAAGCATGAGAAGAGGTTTAAGGATAGC AAGGAAAAGTTGAAGGACAACATGGAGAGGTTGCAAAAATGGAAGATGGCTCTTAACCAAGCCGCTAATTTGTCAGGCTC TCATTACAAACCCAGTGATGGATCTTATGAACACGACTTTATCGGAAAAATTGTTAAAGAGGTCTTAAGAAAGATTAATC GTGTAGCTTTACATATTGCTGATTACCCCGTTGGACTAGAATCCCAAGTGGAAGAAGTGCTTTTTCTTATGGATGTTGGG TCTGATGATAAAGTTCACATGGTAGGAATTCATGGAATAGGAGGGATTGGTAAAACAACACTTGCTCTAGCAGTTTACAA TTCCATTGCTGACCATTTTGAAGGTTTATGTTTTTTAGAAAATGTTCGAGAAAATTCAAACAAACATGGGTTACCACATC TCCAAAAGATATTTCTTGTGGATGTACTTGAAGAGAAGGAAATTGAGATAACAAGTGTCGGCAAAGGAATTTCAATGATA CAACGTAGGCTCCAGCAAAAAAGGGTTCTTTTGATTCTAGATGATGTTAACAAGATGGAGCAGCTACAAGGCATTATTGG AAGGTCTGATTGGTTTGGTCGTGGTAGTAGAGTCATCATCACGACTCGGGATAAACACTTGCTAGCATTACACGGGGTTG AAAGCACATATGAAGTGGAAACGTTGAACGAGAATGATGCTGTTAAATTGCTCAGATGGAAAGCTTTTAAAGAGGACAAG GTTAGACCAAACTATGAAGGCATGTTAAGCCGTGCATTGGCTTATGCTTCCGGCCTTCCATTGGCTTTGGAAGTAATAGG TTCTAACCTGTATGGAAAAAGTATACAAGAATGGGAATCTGCATTAGAGCAATATGAAAAGATTCCAACTAAAAAGATTC AACAAGTACTTGAAGTGAGTTTTGCTGCTTTAGAGAAACAAGAGCAAAGTGTTTTCTTAGACGTCGCTTGTTGCTTCAAA GGATATCACTTAGAAGAGGTTGAAAATATACTCAATGCCCATCATAACCATTGCATTAAATATCAAATTGTTGTGTTGGT TGATAAGTCTCTCATAAAGATTACTCATTCGGGTTATGTGACACTACACGACTTGATTGAGGATATGGGTAAAGAAATTG TGCGACAAGAATCACCACAAGAGCCTGGAAACCGCAGTAGGTTATGGTTTCATGAAGACATATTTGAAGTTTTGGAACAA AATACGGGAACAAGCAAAATTGAAATGATGCATCTAGATTACCCGTCATTTGAAGAAGTGAATTGGGATGGAGAGGCTTT CAAAGAGATGAAAAAACTCAAAACACTTGTCATTAGAAAAACTCATTTTTCTAAAGGTCCAGAGCATCTTCCAAATAGTT TAAGAGTACTAGAGTGGTGGAAATACCCTTCACAACATTTACCAAGTGATTTCCATCCAAAGAAACTTTCCATATGCATA TTACCTTATAGTAGCATGGTGTCCTTGGAGTTGGGAAGATCATCAAAGAAGTTCGAGACTATGAAAGTTTTAAATCTCGA TTTCTGTGAATCATTAACAGAGATACCTAACTTAACTGGTCTCCCAAATTTAGAAGAGCTTTCATTTGAATTTTGTTCAA AATTAATTACGATTGACTGTTCGGTTGGGTTGTTGGCCAAACTTAAAAGCTTGAATGCTGGTTATTGCTCCCAGCTTAGG AGTTTTCCTTCCCTTAAGCTGCCCTCTCTTGAAAAACTCTATCTTCATGGTTGTTTAAGTCTTGAGAGTTTTCCAGAAAT ATTAGAAAAGATGGAAAATATAAGGAAGCTTGATTTGAGGTGCACTAACATAAGCAAATTTCCACATTCATTTGGAAATC TGACTCGACTTCTATTCATGTGGGTTTCTCACTTGCTGCCATTAAGGAGCTTAGACACGATGCCAGAACTATTATGGCTC GAAATCAGTCAGCGGCGGATATATTATGAGGATAGCGAGAGTGAGAGTGAAGAAGAAGTGATGGATGGCGGAGCTGTGGA ATTAGTTCCCACGTTCTTGAATGAAAAAGAGAGTTCCATGCTTTTGCCTTCAAAACTAGAATGTCTTACTCTCGAACAGA GCCACCTGTCAGATGAATATTTAGTATTAGTTCCCTCCTTGTTTCCTAACTTGCAAGAATTAGAGCTAATGGATTGTCCA TCAATCACAGTTGTACCTGAATGCATCAAAGAATGTCGCTTTTTACGGAGGCTTTTCTTGAATAGATGCGAGCAACTTAG AGAAATTTGTGAAGGGATTTTGCCAAGATTAAACAAGTTAGTTGTATGCGGATGTCCATCCTTGAGTTCCAGTTGTAGAA GCATGTTGGTGAGGCAGGAACTGGGTGCGGATGTAGACATTCATCTTCAATTGCGAAACTTAGAAGGAGAAACGATTCCA GAGAGGTTTGAGCACCAGAACAGGGGTCCATCTCCGTCACTTTCTTTCTGGTTTCGTAACGACTTCCCTCTCATCTTACT ATGTATTGCTTCTCCACCTGAAACAAATTTGCCTGACCATGATTATTCAATAGTAAATTCCTTCATCAATGGCTCTTCAG GTCAACTATTCAGAGTGAATTGGGGTTGTACTCTTCTTCAGAGGCTAAGCAAAGACTACTTTGATACACATATGAGCGAA ATATGCAGGATATCAAAAAATAAGTGGAATTATGTGGAGTTTAGGATTGAAAGGGTCTTTGATTTTGGAATTGGAATCCA TGTATTGAAAGAGCAAAACATGCAGGATATCCGATTCATGAATCCTGATAAAAGGAGAAAAATAGACTTGAATTTGGCAC CGCTTGAAGAGGATGATTTGAATGTGATAGATTTTATCATTAATATGCTACACTAA 

Protein sequence (LotjaGi2g1v0171600.4) extracted from Lotus japonicus Gifu v1.2 Proteins.

MVAHTIHIPHLSFQAFFLMALLPSSSSSFSSFTYAFTYDVFLSFRGSDTRFGFTGNLHKTLSDKGIHTFIDDKDLKRGDE ITPALIKAIQESRIAIPIFSVNYASSSFCLDELVTIMECVKAKGRLVLPVFYDVDPSHVRHQSGTYAEAMDKHEKRFKDS KEKLKDNMERLQKWKMALNQAANLSGSHYKPSDGSYEHDFIGKIVKEVLRKINRVALHIADYPVGLESQVEEVLFLMDVG SDDKVHMVGIHGIGGIGKTTLALAVYNSIADHFEGLCFLENVRENSNKHGLPHLQKIFLVDVLEEKEIEITSVGKGISMI QRRLQQKRVLLILDDVNKMEQLQGIIGRSDWFGRGSRVIITTRDKHLLALHGVESTYEVETLNENDAVKLLRWKAFKEDK VRPNYEGMLSRALAYASGLPLALEVIGSNLYGKSIQEWESALEQYEKIPTKKIQQVLEVSFAALEKQEQSVFLDVACCFK GYHLEEVENILNAHHNHCIKYQIVVLVDKSLIKITHSGYVTLHDLIEDMGKEIVRQESPQEPGNRSRLWFHEDIFEVLEQ NTGTSKIEMMHLDYPSFEEVNWDGEAFKEMKKLKTLVIRKTHFSKGPEHLPNSLRVLEWWKYPSQHLPSDFHPKKLSICI LPYSSMVSLELGRSSKKFETMKVLNLDFCESLTEIPNLTGLPNLEELSFEFCSKLITIDCSVGLLAKLKSLNAGYCSQLR SFPSLKLPSLEKLYLHGCLSLESFPEILEKMENIRKLDLRCTNISKFPHSFGNLTRLLFMWVSHLLPLRSLDTMPELLWL EISQRRIYYEDSESESEEEVMDGGAVELVPTFLNEKESSMLLPSKLECLTLEQSHLSDEYLVLVPSLFPNLQELELMDCP SITVVPECIKECRFLRRLFLNRCEQLREICEGILPRLNKLVVCGCPSLSSSCRSMLVRQELGADVDIHLQLRNLEGETIP ERFEHQNRGPSPSLSFWFRNDFPLILLCIASPPETNLPDHDYSIVNSFINGSSGQLFRVNWGCTLLQRLSKDYFDTHMSE ICRISKNKWNYVEFRIERVFDFGIGIHVLKEQNMQDIRFMNPDKRRKIDLNLAPLEEDDLNVIDFIINMLH 

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 30 30 -
SignalP_EUK 1 27 27 -
Phobius 11 22 12 -
Phobius 23 30 8 -
SUPERFAMILY 30 186 157 1.57E-40
Phobius 31 1111 1081 -
Gene3D 33 217 185 1.4E-67
PANTHER 35 1065 1031 0.0
PANTHER 35 1065 1031 0.0
ProSiteProfiles 36 184 149 28.668
SMART 37 184 148 1.5E-44
Pfam 38 213 176 2.7E-42
Coils 150 181 32 -
SUPERFAMILY 217 474 258 7.85E-63
Gene3D 218 377 160 8.0E-30
Pfam 229 451 223 9.3E-30
SMART 244 385 142 4.7E-4
PRINTS 247 262 16 4.6E-22
PRINTS 323 337 15 4.6E-22
PRINTS 416 430 15 4.6E-22
Gene3D 427 818 392 4.4E-30
SUPERFAMILY 451 559 109 2.72E-23
SUPERFAMILY 534 931 398 1.93E-36
PRINTS 656 672 17 4.6E-22
Gene3D 830 955 126 1.3E-8

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 LotjaGi2g1v0171600.4, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.

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