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LotjaGi3g1v0422400.2

Overview

Field Value
Gene ID LotjaGi3g1v0422400
Transcript ID LotjaGi3g1v0422400.2
Related isoforms 1
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|G7LI80|G7LI80_MEDTR Disease resistance protein (TIR-NBS-LRR class); Found in the gene: LotjaGi3g1v0422400
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr3:83113300..83124743) extracted from Lotus japonicus Gifu genome v1.2.

GAAACATTTCCCATCTCTCCCTGTCTCCGATTCCCTCTTCTCCTAGCCATGGTCGAGAGCTCCGATGGCAGCCGAATCCG TCACTTCGGCGAGGGTAAATTAAAACCACTCTGGAAGCCACCACCTCTGTTCCCCCTCTCTCACCCTGCCGCGACCAAAA CGAAGCACCACCGCCCCTGTTTCACACTCTCGTCGTGGTCATCTTCGTCTTGTACTGTCATTTTCACACTCTTTGATTGT TGTTCAATTAGCTCCAAGAATATGCTCATAAGGTCCCTTGTTATGTGTAGGAAGTAATGGAACCCTTGTGCTTGCTGTTT GGATTCAGTTTAAGAGTACCGGGACTAAAGTTAGAGACCTATGGACCCCGGGGACTTGCTCTGGAGAATTAGGTAAGGGA GACAGATTTTCTTTGATTAACATGAATTAGGATTCTTAACTATATCATGCCTTAAATAGCAATTTATTTTTTGTGCTCTT GGATTTGATTGTGCATTGTTTGGTTGCTTAAGATTTTGATGTGTTTTTACTTTTTATTATTAACATTGATTTGGGATATT ACTATATTTGGTTGTTATGTTTGTGTATTTGCTGAAACATTATTAGATTCTTTGATTTTTAGTATGAAGTATGGAATGAT TCAAATAAAAATGGACTTATGGCTGCAAAACCAAAGACCAATGCTCTCTGACTTAAATGAATACGGGGTGAACTATGGGT TACACACCTTGAACTATGTGATGATCAATGACTTATGCCCGAGAGTAGCTATTGAGTAGAAAAGAGAAATAAGCCACGGG ATTTCGTTATTCAACATTTCATCGAAATAGAATTACTAATTGTATGTTGATTCAGAGTAATAAGGACACATGTGATTTAT TCATGCATCATTAGGGTGTCTTGGATGCCGGTGTATTCCGGGCAGGATGCTCATTTAGGCCATTGGTGGCAGATGGGAAA TCTAGGGGCGATTGTTTATAAACGGGTTGCTATGTGATGTGTGAGGGTTTATATAATAGTGTTGGGGCGCTAAGTTTGAG GATCTCGAGGGCTAGAGTATCCCCATGATGGGTTGATTATGAATGGATTGACCAACAGTCCTTGATCACGATACCTCTGG TCGGGCTCAACTGTTCCGACAAGTCCTAACGGTTTTCAGGTCGGGATCATAAGTTCCGAAGTGAATTCTGGAATTGTTTT CGATGGCTTCCTGAGTTTGTTGGGATCGGGCCCACATGCATAGTGTCCACTATTGAGGAGAAGAACAGTTGGTGATCGGA ATTGGAGGTGGAACCATCTGCATAACATACACAAAACATCCATTGCATATATGTACATTATGACCTTTGTGTGTATTGTA ATTTATGAAACAACTTGATCCTTGGAATTAGAATTGAATATCCAACAATTGAAATAGCATATGGAAGTTAGCTAAGTTGA AACGTTTTAATTATTGAACGTTTGTCTCATCCTTATGTGGTTATATTTCAGGATAAGGATTGTGAAAGATTAGGTTGTGT CACTTTCTCAAAGCATCAAAGCTATTGAGCTATTGTAGTCTTTGATGAATCTAAGACTTATGAGCATCTCTTTTACTTAG GGTTTTTTTGGCGTAGAACTTTGGATTGTAATGTGTAATGCAATTCTCTGTGTTGTAATAGGGTGTCACACCTTCAACAT TCTGAAGAAGTGAAGAAGCTTACTCTTCGGCTCAATGAGTTTGAGTAGGAAAATAAAAGGCTGACCTCGAACATCGAGAC TCTTCGTTCTGAGGTCACCCTATACAAAACTTTTGTGAACGAGCTGAAGTCCAAGTACGCCGAAGTCGAGGAAAAGGCAA CCTCCCTTTCCAAATCTTGAGTGGAGAAAGAAACCATAATGTCTCGTCTGCAACAAGAAAGAGACTCCAAGGTTGAGGAA GCTTCCAACCTCTACACCGAAAATGAGGAAACTCGCTCCCTCCTCCAAACCGAGAGGGACAACAACGCCAAGCTTCAAGC TAAACTGGAAAGTTTGGGTAACATGATTTGCATTCGTGATAATGCTCTTGTTGATGGCTTCAACATACCTTTTGCATAAT GTTTTTGATCATTTTCCATTTTGAACCCCGACTTGAAGATTGAAGGGATTGCCAGCGACGAGGTTGTTTGAGACAGAATG ATTGGCGAACTAAAGATTGGCTTGTTCTTCCCATGCGTCAATCTTCTCAAGAACCCATAGTGCTTATTAGGGTTTTAAAT TTTTCTCGATCTGCACTCAACAATGTACTTTAAATCTTTTGCGCTTTTGACATTTCTTTTCCTGTTTCAATTTAAGAAAA CAATTGTTATTTTTTAATAGAACTAATTTTGACCATTTGTAATTGTGCCTTTACCAATTTGTTTTGCTTTTCGGCATTTT CTCTTGAATTGCATCGACAAATGCTTTACTTTTGCAAGTTGAAGCGCTTAATTGCATTGTACATTAGTCAATAATCACAT ATATTTGAAATTAATAATGTGAGCTTTGTACTTGTTGTCCTTAGCTCCTCTTTCTATGACTGAGACTTGTATCTCTTATC AGGTTGCTTATGTCCATTTTCACTGAGACAAGCAAGACTGTATTCCTTAATGGATTACTCTGCTTCTCGCTCGATGGATT GCATCCCTTATCGGGTTGCTAATGTTCAGTTTTTGCCGAGACGAGCAAGGTTGTATTCCTTAACGGATTACTATGCTTCT CGCTTGGTGGACTTCATCCATTATGGGGTTGCTTATGTCCAGTCTTCACCGAGACAACCAAGACTGTAATCCTTTACGAA TTACTTTGCTTCTCGCTTGGTGGATTGCATTCCTTATCGAGTTTCTTCTATTCAGTTTTCACTGAGACGAGCAAGGTTGT ATTTCTTAATAAAATATTTTGCTTCTCTCTCGATGGATTGCATCCCTTGTCAGGTTGCTTATGGCCGGTGTTTGTCGAGA TGAGCAAAGACTGTATTCCTTAATGAAGAACTTTGCTTCTCTCTTGGTGGACTACATCCCTTATCGGGTCGCTTATGTCT AGTCTTCGCCAAGACGAGCAAGACTATATTCCTTAACGCATTACTTTGCTTCTCACTTAAATGGTGATTGGTGAACTATG TTCCTTTCATGATGGCTTGCGCCTGTATAGTTTTATATGCGAGTACAATAAACAAAAACATGAAATTTCAGGTAACTCCT CGTCCACTTTATTGAATTCAAACATTTAAGTCAGAATTGAAACAGATAGTAAGCGCACAAAAAAATACGCAACTTGCAAA AAGTAAACTTTAGGAAATTCAAATGAAACTTAAGATCCATGTTGCTGGCGATGTGAAAAGACTTCTTAAGGGGAGCTGAC AAATAGGATGTCCTACTGGTTAACTGTATATAAGTTACTCAAGATTAATCTTAGTAAAATCACCATAGGTGGTCCAATAA TATTTTTACATGTGTTTTATAAAATTTTAGTTGATTACACATGTTAAAATATTGTTGAGTCATATAAGATTAGAGTGATT TTAAGCCTTGTGTAATAAAAAAAATCGTTAAAGAAAATCAAACTCATCAATGTCCAATTTTATCAGTGTCGTCAGAGTCA GTCAGCGAAATTAAGCAACAAAAACTATTTACCTCGTATAATTTGGGTAGGTAGAGAAGAAGTCAATGAAGACGGCGTGG AAAACTTTAAAAAATTTAAGCAACAAAATTGAGACTGAATTGGCCCTTATTATATATAGGCATATATAAGAAGACCTGTT TGTTTCACTCTTTCTTTACAGTAACAGTGGCAATGTCGTCTTCTTCTTCTTCTTCCGGCCAGTGTGTCTTCCCCAAAAAA GAGAAGAAATAAGTGTTAAATGTGATATCTGATATGATGTGATAATAAAAGAGAAAAAAAGGTGTTTCAAATATGCACTA TGAAGTGGTACATGATAACATGAATCAGAGTTGTTTCTTATCATTGAGGGTGTGGGTGAATGTGTTGTGAGGCCTGGAAT AAAAGGAAAAAGGTGAGGTATGTGTGTGCATGTGAGTGGTAAGGGAAAAAGAAAAAAGAAAAAGATGGTTTGACAATCAT TCTATGGAGACCCACATTTCAAATTTTCAATTATAGAGATATAATAGAAGATAGAAGATTGAGAAATATCATATAAATCC ATCCTATGTTAGTTACTTAAAGAACACACTCCTTCTTTCTTTCTTTCTTTCTCATTTTCTCTATACTAACAGTGGCTATG TCTTCTTTTTCTTCCAGTGTGGCTTCCCCAAAAAAGTTCGATGTTTTCATTAGTTTCAGGGGTGAGGACACCCGAGATAA CTTCACAAGCCATCTCCATGCTGCTCTCAGAGACAAGAATATCGTAACCTACATAGATGATCAGCTTAAAAGAGGAGATG ATGTTGGACTAGAGCTTGAAAAGGTAATCAAGAACTCGCTGATGTCTGTTGTGGTGTTCTCAGAAAGATACGCAACTTCA AAGTGGTGTTTGCAAGAATTGGTCATGATAACGAAATGCAGAAGAGACGAGGGACAGGTTGTTCTTCCAGTGTTCTACAA AACAAATCCAACCGACGTGCGGAATCAGACAGGGAGTTATCAGAAACCATTTGAAGAATATGATCAAGCTGCAGCCGCTG GTGAAATTATAACCGATCAAGACAAAGTGGGTAGGTGGAGAGCTGCTCTCTCTGAAGCAGCCAATATATCTGGATGGGAC TCAAGTACCCACAAGTAAGTAACCAAATTCACTCTTTTTTCTCTCTCCTTATACACTTTGATCTGGTTTTAGTGGTTTGA CCAAGATTCAAGTAGCTAGATAAGATAATTTTTTTTTTGAAAGAACTAAGATAAGATATAATTTTTATAATGTTCTTCAG AAGAAAAAATAATCAATCTAGAGTAACACAAATCCAGCCTAGGCCGACGGATCATCTCATCCCCGGATGCGCAAACTATA ACTCATCCTCAATAAATGAGGGCGACTATAACTCCCACTTGAGTTAAAGGCGTTGTCCCAATTCATAAATCAATCATGAC ACCCAATTAATACCATTATTGCGCTTTGAAACCCTTAGAAAACCCAGCAACCCAAGAGACAAAGTAAGCCTTTATAAGGG GACTTTGGCCCAACACCTGGGGCATATTCACTCTAATGCTAATTCAGGAATTGAGCTTGGAGATTTACCCTCTCAGCTTG GGACCCCCAAAGTTTAGAGAGAACATCTCACAAGTATCAGGCGACATTCAAAACTACATTACACTCAAAATCATCTAGAG GGAAATGAATCCTAAATTTTTTAAACATGGTATCACACACATAGATAAGAGAAAAAGAATCAGGTTCAGAGGCATCCGTG TAAATTCACTTGTCGTCCTCGCATGGCGTGGCAAGAACAACCCCTCATCTTCCTTACTTATCGTTCACGAAACACAGTAA GGATCTCCACATATTCCATCGACCCTTCTTCTATTGAGCAAGAAACTTTCTTTTGCGTCGGATTCCGACATGATGCAAGA TCGCTACAAAGCAAAAGTGGTAGGGTTAAGGGTAGTTTCGAATGGCGAAGACAAAGAGCCGAAGGTAGGGTCACTGGAAC ACAAGCTAGAAAACCCCGCAGAGACAAAATCCCCACCCACATATTAATTTTTTAATTATTAATTATATATCTGTCATTTA AATTTTAATTAAAAATAACGTGGTTAATGTTACGCTAGCTCTGACCTACCACTAGGCAAGGTCAACGGAGCTCTAACGCA GGGATAAAAAGAAAAAGATTTCAATTAGAGACGAAAATTGAACTAACAATTTAATAGTTAACCATTAAGTTTTTAGCTTC TGACAATTTGAATCATTTCTTTAGTCTTATTAATTCCTTTATTTGACAGGGACGATTCTCAAGTCATACAGAACATTGTC AACGATGCTTTGCAAAAGCTGCTCCTGAGGTACCCTAATAAACTAGAAGGCCTTGTTGGAATTGAGAAACACTGTACAGA TATTGGGTATATCCTGGGAAAAGTTGGAAGAATTGGAATTTGGGGGATGGGAGGTATAGGTAAGACAACCATTGCTAAAG CCATGTTTGCCAAACACTTCCCTCAATATGACAGTGTGTGCTTCTTGGAAAACGTAAGAGAAGAGTCACAGAAGCACGGG CTAGCATATATCCGAGATAAGCTTCTCTTTGAGCTACTGAAGGAACAAGTTACAGCATCCAATATTTCTGGATCCACATT CGTGAAGAGAAGGCTCAGTAGCAGGAAAGTTTTCATTGTGATTGATGATGTGGACAGTTTTGAGCAATTAGAATATTTGT GTGAAGAATTCAGTGACTTGGGACAAGGTAGCGGTCTCATTGTAACAACAAGAGATAAACATTTGCTTCATGGAAGAGTT GAAAAGATATATGAGGTTGAGAAGTGGAACTTACAAAAATCGCTTGTGCTCTTCAGCTTAGCAGCCTTCAAGAAAAGCAA GCCTGAAAAGGGTTACGAGGATCTCTCCCGAAGGGCAGTTGAATATGCAGGAGGCGTTCCATTAGCTTTAAAAGTTTTGG GTTCACATTTTCGTTCCAGAGAAACTCAGTTCTGGGAATCTGAGTTGAATTACTTGGAGAGCAAGAAGGAGCCCCTTAAG AAAATTCAAGAAGTGTTAAAGGTGAGCTATAATGGATTAGAAAGGAGGGATCTGCAGTCAATATTTCTGGACATTGCTTT CTTTTTCAAAGATGAAAATAAAGATTCCGTCATAAAGATACTAGATGCTTGTGGTTTTAATGCTATTAGTGGAATAGAAA TGCTTAAAGATAAAGCTCTTATAAGTATTTCAAACAGCAATATTATAGAAATGCATGACTTGCTACAAGAAATGGGTTTC GATATAGTTCGTAAAGACGTGACAGACCCTGGAAGACGTAGCCGATTGAGGGATATTGAGGAAGTTAATAATGCACTTCA AAATGACGAGGTAAGAAAAGATACGCTAGACGTGTTTTCAATTAGAAATCATGGCGAATTTGCTACCTGATTTACTTATT TGCTGTCTTGACAGGTCCTTCCTGAAGTTGAAGGAATAAAGTTAGATTTGTCTCAGGCAGTAAACTTGCAGTTGAGTGAT GACTTATTCAACAGGATGCCTAATTTAAGATTTCTTAGTTTATATGTCCCTGTGGGTAAGCAGAGATCAGCTGAAGTGCA CTTCTATCCCGGACTCCTCCATAGGCAAGGTTCTGCTGGATTGAAGTATCTTGAGTGGAGTGGATACCCTTCAAAGTCTC TTCCACCAAATTTTTGTGCTAAGTTTCTTGTTGAGATTCGCATGCCACACAGCCATGTTAAAGAACTTTGGCAGGGGACG CAGGTAAAGATTCACATTTTCCTGTATGCTTACATTTTCAGCTCAACTGAAAATATGAGATGACATTCCTTTTGAATTTG TGCAGGATCTTGTGAATTTAGAGACAATTGACCTGAGTGAATGCAAACAGTTGGTGAAGCTCCCTGATTTGTCTAAAGCA TCAAAACTCAAATGGGTTCATCTCTCCGGTTGTGAAAGTTTGTGTTTAGTTCATCTTTCATCTGTGGACACACTAGTTAC TTTGATACTGGATAGGTGCAAAAAACTGAAGAGTCTTAAAATTGAAAAGCATTTAAGCGATCTGCAGAACCTCAAAGTGG AGAACTGTTTCAGCCTCAAGGAATTTTCAGTGTCGTCCGATTCAATTCAATCGTTGGATTTAAGCAAAACAGGTGTCAAA AAATTGTACTCGTCAATCGGTCGGCTAAGCAAGCTTGTGTCCCTCAATCTAAATGGTTTGAGACTGCAGAATATTCCTAA CGAGTTATCAGGCCTGACTTCTCTTGGGGCGCTATTCATTTCTAACTGCGGAGCAGTTGACAAAGAGAAGGTGCATGTCC TATGTGCTAGCTTACGATCCTTACGATTTCTATATCTGATTAATTGTTATAAGTTGTTTGAACTCCCGGACAACATAAGT GCCTTGTCATCACTTTGTGAATTGAGGCTCGATGGAAGCAGTGTGAAGAAGTTACCTACAAGTATCAAGCTTCTTGAAAA TCTGGAGGTTCTCTCCTTAAACTATTGTAGGAAGCTTCAGTTTCTACCTCAGCTTCCACTGTTCATCCAAGAGCTTCGTA TCATCAACTGTACCTCATTAGTGGCGGTATCTACTTTAAAGACCTTTGCAATCCAGATGAAGGGAAAGCAGAAAGACATT TCGTTTATGAATGGAATGAAACTGAATGAACATTCGCTCCTCCGGATTATGGCAGACGCCGTGTTTACAATGAAGAGTGC TGCATTCCACCGTGTATATGTAAAAAGGTTTGGTTTCGATACTTACAATGACCATTATAACAGAGTTAGAGTTTGTCTAC CTGCTGGAAACAGTGTCCCAGAGCTAGGGCCGTTGGCATATCGAACCACAGGGTCCTCAATTACCATTAGAAATCCTAGA CCTTCGTCCAACTGGTTTGGCACCATTTATTCTGTGGTTCTTTCTCCATCCGCTGGAATCAAGGGGCATTGTGCTAAAAT CAAATGCCGAATCTATGGGAGAGTTGGTGTTTCGGGACAGAGGAGATGGAAGACTTCATCATTGTATGACAAAGACATAG GGGAGTTCAATTCAGATCATGTTTTTGTATGGGAAGGTTCAAGTCCGCATGTTTTTACTCACAATGATGAAAACATTGAT TTTGTGTTCTCCGTTACAACTGAAACTGGGGAAGATGATGAACTAATCAAAATAAAAGAGTGTGGGGTTCAACTAACATG TTTCTCAGATTCTGAGCTTCACAGATTCTTACAGGAAACACTAGACTTGAAACCGCAGTTATCAGGTATGACCCTACTAT ATTAAATTTTGAATTTTCAAGTTTTCATAAATTGATATAATTTAATCATATTTATTTGAAATGGTTATTTATATGTTTTA CGACTTCGGTACACTCATGATTAAAAATGATTTAAATTAATTTTATTGATGATGTGAATTGTTTACATCGAGTTTGAGAG TGAACAAATCGTGTCTATAGCGTTTCTTCTTTTTTCATTCATGGTGGTTGTTAAACACTCACTAAATAGTAAATACAGGC ATGCAACTAAGGTAAAAGATGAACTAATCGTGTCCATGTGTTGCTGAACTGAGGCAACACTATACTATCGAAACTGCGAG AGGAGGACATAGATTTGTGTCTGACAGTGGTTCTGAGCTTCTTCCAAATATCACAATTGAGGTTTGTTTCCATTGACTAT TTCATATGCTATGTCATTTATTGATGTTTCATTTTTCATTTCTCCTCTTTTTGGTATTAAGTATGTGAGTTTAAGCTGTG ATTTGGGCGGTTGCAAGATGCAATATTCATAAGTTGACTCTGAAAATCTTTATTGCAGAGTTACCCATTTTTTGTTCTGA TGGGGTCTGCCCTGAGGGAAACCTGAATTAGGGGCAATATGACCTCTTATGTGGGGTTTATACGTCTGTTTTTGCTATGT TAGGTACAGTTCTAGAACACGCCTTAAGAACATATAATATTCTTTTAGCTGATTATTGTCACTTTATGTATGCCTTACTT TTGATTAAGTGCATAGAATTGATAAAAAACATCATACCAAGAATTGTTGCTGCACACTGAATTATTCACAGGGTATTTAT GGTTAACTATATATATTAATAATGTTTTAAGAATTCTGATTAGTATTCTTAGTTTTTAGATTGAAATTTCAGCATCACTT GCCATTGGCATTGTTTCTGCGTGAGTTAAGCATTTTGTAAGTGTATTTGATCTGATTTTTACCATTGTTGAGATCTTTTT TTTTGCAGTTTGCATTTTTTTTATAAGCTTGCAGTTTGCATGTTTCCTCTTCTGAATCTTCACAGGTTATGGATCAAGCT ATGGAGAATGGCCTTATTTTCATTGATGGTTCTGGACCGACATACATTACTGCCACCGTAAGTGCCATGTTCATAACAAT ATCCTTCTTTCCCAAGCTCATATTGTTTGCCGAAAGCCATTATATTTTAGAAACTTTCTATTTAAGTTCATCATGGTAGA GATGAATTTATCCCATGAATACATCCTCATCGATACCAATTTGATTAAGTAATCTAGAATGGGATTAAGGATGGACAATT TAGCTTTGATTATCTTCTTTACTATGAAATTAGTTTATTAGTTATTACTACTATGGAATTAATGCATTTGTATTCAGCTG AATCTTTTCTTTACTGTTTGGAATCAATAAGGTTGCGACGATGATGATGGCCACAAAAATATGGTCTGCAAGCTTATAAA GGTAGGACATATATGTTTTCAATTTCTTACCACTTGGAAAGTTATAGCGCAGTTTAGTATTAGCTTTATGGTTGAATGTT GCAGGTAGAGCCAAAGAATCCGAATAAGGGAATGGTGGCAGATCTATGAAATAGCTATGCGATGGTTAGTCTCTAACTTC TTATTGTCTGAGTGAAGAACGTATTGCTTTTGTGTTCTCCTACCTTGAAAACAAAATTACTTTTCTTTTAATCATATATA TTTCCCCATTTCAATAGTTGATAAGTCATGGATGATGGATGATATTACTTATTTGGGTACTTGCCAATCACTGTTAGAAA TAATTGCTTTTGTCAGTTATGTTTCTTGCTTAAAGTGTTTTTAGAAGTCTGTTACAAAGTAAAGTGTCTTTACGGACTGT TACAAAGTAAAATTTCTTTAAGAGTCCGTTAGAAAGTCTAATGTTATTACTTATTACACTTTATTAGGAATTATTGAGTA AGCTTACATCTTGATATAATTGAAGTTTGCTTAATGTGTTTTCTACTGCACATCCTGATTTTTGTAACGTGTTTTCTACA GGAGGGAAAAGAAGAGAAGAATGTCAGACTTTGCACTGACTTTTGCATAAGATAACCATAGATAAAAGAAGGTCGGATAA GAAGAGCATGCTTTGAGTAAGAAGAGTGAGAGAATGAAGGAAGATTAAAATCTTCAAAGGAGTATAAAAAGACTCTGAGC ACTTGATTTCTTTTATGTTGAGCATTGATTTAATTTGTAACTGACTTGATTTCTTTTATCTTACTTTTCAAGTTACTTGA GTACTCTTAATCTTCTCTATTGACATTGGTGTGTTATTTTTTCGGCTCCCCATAATGGCACTTTGTAGGGTTTTATTTAC TTTTAATGTTTTTCGTCATTCGTGAGTACTAAGTACTTTATGTGATAAGAATAACGATGGTGCTTACATATGGTTCGATG CTCATTTGCGACAATGATATCAACAACTCTAATAGTATTGTAAATGTAACTTACAAAAAAAAAAATCACAATGTCATATG AGTAAGTTTATTGCATCTTTATATACAAAATTCCAATAACATTTCAATCCATTAAATCAAATTATACTCATGTAAGCATC TTTT 

CDS sequence (LotjaGi3g1v0422400.2) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGGACCCCGGGGACTTGCTCTGGAGAATTAGTGTGGCTTCCCCAAAAAAGTTCGATGTTTTCATTAGTTTCAGGGGTGA GGACACCCGAGATAACTTCACAAGCCATCTCCATGCTGCTCTCAGAGACAAGAATATCGTAACCTACATAGATGATCAGC TTAAAAGAGGAGATGATGTTGGACTAGAGCTTGAAAAGGTAATCAAGAACTCGCTGATGTCTGTTGTGGTGTTCTCAGAA AGATACGCAACTTCAAAGTGGTGTTTGCAAGAATTGGTCATGATAACGAAATGCAGAAGAGACGAGGGACAGGTTGTTCT TCCAGTGTTCTACAAAACAAATCCAACCGACGTGCGGAATCAGACAGGGAGTTATCAGAAACCATTTGAAGAATATGATC AAGCTGCAGCCGCTGGTGAAATTATAACCGATCAAGACAAAGTGGGTAGGTGGAGAGCTGCTCTCTCTGAAGCAGCCAAT ATATCTGGATGGGACTCAAGTACCCACAAGGACGATTCTCAAGTCATACAGAACATTGTCAACGATGCTTTGCAAAAGCT GCTCCTGAGGTACCCTAATAAACTAGAAGGCCTTGTTGGAATTGAGAAACACTGTACAGATATTGGGTATATCCTGGGAA AAGTTGGAAGAATTGGAATTTGGGGGATGGGAGGTATAGGTAAGACAACCATTGCTAAAGCCATGTTTGCCAAACACTTC CCTCAATATGACAGTGTGTGCTTCTTGGAAAACGTAAGAGAAGAGTCACAGAAGCACGGGCTAGCATATATCCGAGATAA GCTTCTCTTTGAGCTACTGAAGGAACAAGTTACAGCATCCAATATTTCTGGATCCACATTCGTGAAGAGAAGGCTCAGTA GCAGGAAAGTTTTCATTGTGATTGATGATGTGGACAGTTTTGAGCAATTAGAATATTTGTGTGAAGAATTCAGTGACTTG GGACAAGGTAGCGGTCTCATTGTAACAACAAGAGATAAACATTTGCTTCATGGAAGAGTTGAAAAGATATATGAGGTTGA GAAGTGGAACTTACAAAAATCGCTTGTGCTCTTCAGCTTAGCAGCCTTCAAGAAAAGCAAGCCTGAAAAGGGTTACGAGG ATCTCTCCCGAAGGGCAGTTGAATATGCAGGAGGCGTTCCATTAGCTTTAAAAGTTTTGGGTTCACATTTTCGTTCCAGA GAAACTCAGTTCTGGGAATCTGAGTTGAATTACTTGGAGAGCAAGAAGGAGCCCCTTAAGAAAATTCAAGAAGTGTTAAA GGTGAGCTATAATGGATTAGAAAGGAGGGATCTGCAGTCAATATTTCTGGACATTGCTTTCTTTTTCAAAGATGAAAATA AAGATTCCGTCATAAAGATACTAGATGCTTGTGGTTTTAATGCTATTAGTGGAATAGAAATGCTTAAAGATAAAGCTCTT ATAAGTATTTCAAACAGCAATATTATAGAAATGCATGACTTGCTACAAGAAATGGGTTTCGATATAGTTCGTAAAGACGT GACAGACCCTGGAAGACGTAGCCGATTGAGGGATATTGAGGAAGTTAATAATGCACTTCAAAATGACGAGGTCCTTCCTG AAGTTGAAGGAATAAAGTTAGATTTGTCTCAGGCAGTAAACTTGCAGTTGAGTGATGACTTATTCAACAGGATGCCTAAT TTAAGATTTCTTAGTTTATATGTCCCTGTGGGTAAGCAGAGATCAGCTGAAGTGCACTTCTATCCCGGACTCCTCCATAG GCAAGGTTCTGCTGGATTGAAGTATCTTGAGTGGAGTGGATACCCTTCAAAGTCTCTTCCACCAAATTTTTGTGCTAAGT TTCTTGTTGAGATTCGCATGCCACACAGCCATGTTAAAGAACTTTGGCAGGGGACGCAGGATCTTGTGAATTTAGAGACA ATTGACCTGAGTGAATGCAAACAGTTGGTGAAGCTCCCTGATTTGTCTAAAGCATCAAAACTCAAATGGGTTCATCTCTC CGGTTGTGAAAGTTTGTGTTTAGTTCATCTTTCATCTGTGGACACACTAGTTACTTTGATACTGGATAGGTGCAAAAAAC TGAAGAGTCTTAAAATTGAAAAGCATTTAAGCGATCTGCAGAACCTCAAAGTGGAGAACTGTTTCAGCCTCAAGGAATTT TCAGTGTCGTCCGATTCAATTCAATCGTTGGATTTAAGCAAAACAGGTGTCAAAAAATTGTACTCGTCAATCGGTCGGCT AAGCAAGCTTGTGTCCCTCAATCTAAATGGTTTGAGACTGCAGAATATTCCTAACGAGTTATCAGGCCTGACTTCTCTTG GGGCGCTATTCATTTCTAACTGCGGAGCAGTTGACAAAGAGAAGGTGCATGTCCTATGTGCTAGCTTACGATCCTTACGA TTTCTATATCTGATTAATTGTTATAAGTTGTTTGAACTCCCGGACAACATAAGTGCCTTGTCATCACTTTGTGAATTGAG GCTCGATGGAAGCAGTGTGAAGAAGTTACCTACAAGTATCAAGCTTCTTGAAAATCTGGAGGTTCTCTCCTTAAACTATT GTAGGAAGCTTCAGTTTCTACCTCAGCTTCCACTGTTCATCCAAGAGCTTCGTATCATCAACTGTACCTCATTAGTGGCG GTATCTACTTTAAAGACCTTTGCAATCCAGATGAAGGGAAAGCAGAAAGACATTTCGTTTATGAATGGAATGAAACTGAA TGAACATTCGCTCCTCCGGATTATGGCAGACGCCGTGTTTACAATGAAGAGTGCTGCATTCCACCGTGTATATGTAAAAA GGTTTGGTTTCGATACTTACAATGACCATTATAACAGAGTTAGAGTTTGTCTACCTGCTGGAAACAGTGTCCCAGAGCTA GGGCCGTTGGCATATCGAACCACAGGGTCCTCAATTACCATTAGAAATCCTAGACCTTCGTCCAACTGGTTTGGCACCAT TTATTCTGTGGTTCTTTCTCCATCCGCTGGAATCAAGGGGCATTGTGCTAAAATCAAATGCCGAATCTATGGGAGAGTTG GTGTTTCGGGACAGAGGAGATGGAAGACTTCATCATTGTATGACAAAGACATAGGGGAGTTCAATTCAGATCATGTTTTT GTATGGGAAGGTTCAAGTCCGCATGTTTTTACTCACAATGATGAAAACATTGATTTTGTGTTCTCCGTTACAACTGAAAC TGGGGAAGATGATGAACTAATCAAAATAAAAGAGTGTGGGGTTCAACTAACATGTTTCTCAGATTCTGAGCTTCACAGAT TCTTACAGGAAACACTAGACTTGAAACCGCAGTTATCAGGCATGCAACTAAGGTAA 

Protein sequence (LotjaGi3g1v0422400.2) extracted from Lotus japonicus Gifu v1.2 Proteins.

MDPGDLLWRISVASPKKFDVFISFRGEDTRDNFTSHLHAALRDKNIVTYIDDQLKRGDDVGLELEKVIKNSLMSVVVFSE RYATSKWCLQELVMITKCRRDEGQVVLPVFYKTNPTDVRNQTGSYQKPFEEYDQAAAAGEIITDQDKVGRWRAALSEAAN ISGWDSSTHKDDSQVIQNIVNDALQKLLLRYPNKLEGLVGIEKHCTDIGYILGKVGRIGIWGMGGIGKTTIAKAMFAKHF PQYDSVCFLENVREESQKHGLAYIRDKLLFELLKEQVTASNISGSTFVKRRLSSRKVFIVIDDVDSFEQLEYLCEEFSDL GQGSGLIVTTRDKHLLHGRVEKIYEVEKWNLQKSLVLFSLAAFKKSKPEKGYEDLSRRAVEYAGGVPLALKVLGSHFRSR ETQFWESELNYLESKKEPLKKIQEVLKVSYNGLERRDLQSIFLDIAFFFKDENKDSVIKILDACGFNAISGIEMLKDKAL ISISNSNIIEMHDLLQEMGFDIVRKDVTDPGRRSRLRDIEEVNNALQNDEVLPEVEGIKLDLSQAVNLQLSDDLFNRMPN LRFLSLYVPVGKQRSAEVHFYPGLLHRQGSAGLKYLEWSGYPSKSLPPNFCAKFLVEIRMPHSHVKELWQGTQDLVNLET IDLSECKQLVKLPDLSKASKLKWVHLSGCESLCLVHLSSVDTLVTLILDRCKKLKSLKIEKHLSDLQNLKVENCFSLKEF SVSSDSIQSLDLSKTGVKKLYSSIGRLSKLVSLNLNGLRLQNIPNELSGLTSLGALFISNCGAVDKEKVHVLCASLRSLR FLYLINCYKLFELPDNISALSSLCELRLDGSSVKKLPTSIKLLENLEVLSLNYCRKLQFLPQLPLFIQELRIINCTSLVA VSTLKTFAIQMKGKQKDISFMNGMKLNEHSLLRIMADAVFTMKSAAFHRVYVKRFGFDTYNDHYNRVRVCLPAGNSVPEL GPLAYRTTGSSITIRNPRPSSNWFGTIYSVVLSPSAGIKGHCAKIKCRIYGRVGVSGQRRWKTSSLYDKDIGEFNSDHVF VWEGSSPHVFTHNDENIDFVFSVTTETGEDDELIKIKECGVQLTCFSDSELHRFLQETLDLKPQLSGMQLR 

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 11 775 765 3.1E-228
PANTHER 11 775 765 3.1E-228
Gene3D 12 188 177 3.2E-63
SUPERFAMILY 14 164 151 7.19E-37
ProSiteProfiles 16 161 146 25.119
Pfam 17 194 178 9.3E-40
SMART 17 161 145 7.6E-38
SUPERFAMILY 188 445 258 4.42E-50
Gene3D 189 344 156 9.3E-24
PRINTS 217 232 16 2.0E-23
Pfam 218 431 214 1.2E-24
PRINTS 291 305 15 2.0E-23
PRINTS 383 397 15 2.0E-23
SUPERFAMILY 420 507 88 2.42E-9
Gene3D 523 699 177 3.9E-16
SUPERFAMILY 540 878 339 1.17E-36
Pfam 614 633 20 4.0E-5
PRINTS 633 649 17 2.0E-23
Gene3D 700 892 193 3.6E-22

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 LotjaGi3g1v0422400.2, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.

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