Your browser is unable to support new features implemented in HTML5 and CSS3 to render this site as intended. Your experience may suffer from functionality degradation but the site should remain usable. We strongly recommend the latest version of Google Chrome, OS X Safari or Mozilla Firefox. As Safari is bundled with OS X, if you are unable to upgrade to a newer version of OS X, we recommend using an open source browser. Dismiss message

LotjaGi1g1v0672500.1

Overview

Field Value
Gene ID LotjaGi1g1v0672500
Transcript ID LotjaGi1g1v0672500.1
Related isoforms 5
Lotus japonicus genome version Gifu v1.2
Description Villin; TAIR: AT2G41740.1 villin 2; Swiss-Prot: sp|O81644|VILI2_ARATH Villin-2; TrEMBL-Plants: tr|A0A0S3RXC8|A0A0S3RXC8_PHAAN Uncharacterized protein; Found in the gene: LotjaGi1g1v0672500
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr1:123728479..123741720) extracted from Lotus japonicus Gifu genome v1.2.

AAGTTGGAGAAAACCAGGTATTACATGAGATCCGGTGAGAATGGATAGAGATTAGAGATAGAAAATGGTAAACATATCCA AAAGAGAATCACCAATCCAAGTAAGCAAATTAGAACCCAAAATGGGAGTTTACACCTTGGTGCCCCTTAAAATAACGACT TCTCTCTTGATGTAATAAAATAACAAGTAACCATAAAAAACCACCTTTTCATTACTCTCTAATTCTCTATCCTCTTTCTT TTCAATTAATTTCTTCCATTTTCATTTTCATCTTCCTCACAATCCATTCATTCATATCAACCTTTCTTCCTTGTTTCTCT GCAACAATTCTTCTCTGAAATTCTCAAATCTCAAAAAAGTTAGAGAGAGAACACAACACCAACACCACTCACAGCAATAA TTTTCACTTTTTTCTTCTCTCTCTCTTTCTCTCTCTCTATTGCCAGCTCTGCAACCTTGTCCTTCTGCCCCATCCATACC CTGTTGCCATTTCCACCTTTTCTCTGTCAAATACACAAACCATAATCATCATCATCACAAGCTGAGATCTCTCAGGTACG TTCTCCTCCATCTCTCTGATCATCACTACCCCTTTTTCTTCTTTTCATGCTCAATCATACAAAACACCATGCTTTTTCAC ATACCCTTGATCTCTTGCTCTCATCGCCTTTCCTGATTCAGTTTCGTGATTATTCTTGATCTGGGTTTGCCTCAAATTCT GGTAATTTTAATGGGTTTTTCTTGTTTTTTGCTTTTTTTTTTAATTCTGTGATCATGTGATTTTTTTATAGCCTTGCCCT CTTGTTAATTTTGATGTTGTTTCTCAGTTTTGTGCTCTTTGATTATCTGATTCTTCATTTAGTTAGCTTCTTCCTGTTTC CTTTTTTGTGATCTCACCTTTTTATGTTAACCAAGCTCTGATTATACATTTGTCATGATTTGCATTTTTTTTTATGCCAA CCAAGCTTTAATCTGAGAAAGAAATGGCTAGATGATCATTAGAGAAGAGGGGCTGGTAGATCTTAGTTCCCAGCTTTGGT TGATCATTCACCTAAATTATATTTTGAGATTCTTCATGTGTTTCTGCTCACAGCCTGTGCTTACTATTTGATTGTTAGCT CAGATAAACTGTATGGTCTTTGGTATTGGAGAAAGCACTGGATGAGCATTATTTGCTGAACTCAAATAGTTATCTATTAC AATCTCGATCATACATTATTATTTTGCTCTTAGATAGCTTCGCAGATTTTGGAATACTGGAAAGAAATTGAAAATTGGGA ATGCTGAACCCGTTTTGGCTATTAATGACTTGGATTTGGGACATTTTAAATGGTGGAGAAAGCGTTGGATGAGCAATCAT TTGCTGAACTCTTTGCAGCAATTTACATTTAGAGAGCACTTCAACCTGGTAATTCTGCTCATAGTTTGCAGTATCCACCT AATTAGAGAAGTGGGCAATTTAGAATTTGACATGGATGGATTGCTGTGCAAACATGGTAACTTGTTGGCATTTACTTTAT TCTTCACAGAACAGAAGTAATCTTCAGTTCGGGCAATTATCTAGATATACAGAAAGACACTAGCCTTGCTCTATTTTTCT GTTCGTTCAAGACTCAAACTCTTGTGCTTCCTACTTTTGTCTAGTCATTTAGTGGTGAAAAAATGTGCACATTGCAGTTC TATACAAGACGACAAGTTGGATTTAATCAGTGAAACTGCTTCTATAGAGGGACATTTGTCACCAAAGTTCAAGAGTCCCT GCTGAAGTGATTTTCGAAAAACCCGGTTTAATAAGTCAGGATCAGCATTGTGTTGATTTCTGAAATGTGTTTTGAGGAAC CAGATATTGTGCACAAATGAGGAAAACAAAATAAATATCACCCCTAAGAATAGTAGTGCCAATTTGTAAAGAAGAAAATG ATCTGTATGTAGTTACTACTCACTAATGCATGTTTATTGATAAACAATGTAGTAGAGAAAGAAAGAAATTAAAAAAAAAA TCCCCTTTGTCTGCTAGTTGAGGACCAGATATTATTAATCATGATATGGTTCGTGGCTGAGGGTTGAAATTGAGAAGGAG ACTGAGAAGGGTTGTAGTAAAGAGAAAGGTTTTGGAGAGTGTAAAATATACCAAACCTTTTGAATCTGATGACATATTTT GCTTGTGATCGAATAACCGATAATGAAGATTACTTAAAGGATTTTCTTTGGATATCATCTTGAACATTATTTTAGAAAAT TGAAACAAGACATCTTAGGTGTGGAGACTCGTGAGCTTTATTATGTAAATAGTGTCTAGATTCATTACGCTGGGCAGAAT CTATTGAGTTAGTAGTCTTGTTTTAGAGGTGATTTTTCCCACATACAGGTAAATGTTCACGCTGTAGAGATTATTTCTCT TCAGAGCTATAATTAAGTTGTTAGTCGTGCTTTCTCGTGGGCATAATGACAATGAAGGAAGAAATCAATGCCTGATAATC TGTCTCTGTATGTCCAATTGCTTGTTTCTTTCTTTCGTTTAAGAACATATTGTATGAATATTATGGTCTTACAACTGTGA AGTTAACTATACTGTGTCATTTTGTTGAGTGAGTTTTCATGTTTGTACATCAGTTGCTTGCTTGCTTTTTGTGCTAATAA AAGATACAGGGAGATATAGAAAATCAATACATACATTTTTTAGAAGTTCTTTTTTTTTTGTGATTGTATTCTCTAAAGTA CACAATAAAGTCATTCTGCTTGATTTTTGTGATGATAATGAAAGATGTGGAAAATAATATGTTTTGCAAAATGAAGTCCT GTTGCTGCTGCTGGTCTTCACGCTTGACACATGAATCTTAATCATGACAATAGTGTGCATGATATGGTGGTGGCGAAGGA TATGCAATTACTTTATTTACAAAGTGGTACATGCGTTTTTCGCGCGAAAACATTATTAACTCCTTTTCCTCTCATGCAGT GGATTACTTTGGAATTTGTAGAACGTGTTTGCTGAAAAGACAGTATTTTAGACAGAAATTTCAGCTATGTCTAACGCTGC AAAAGTTTTGGATCCAGCATTCCAGGGAGTAGGCCAAAGAGTGTATCCTTAATAAAAAGGGCGACTTTATAAATGAACTT GAATATTATGATTTATTCATTTAGAAATTTCTTTAGGAATTAAGTTAAAAAGGTACAAATAATATGATAATAGAAAAAAG TACTGCCACGAGAATAATCAAACACTGTAAACGATCATCACCTATAAGCATTACTTTTCCTGATAATATATTTGATATAT CTCCTTCCACTTGAAGTGTTTTAGACTTAACTTCTTGTAGAGGGACTGAAATATGGAGAATTGAGAATTTTCAGCCAGTT CCATTGCCCAAATCTGAACATGGGAAATTCTACATGGGAGATTCTTACATCATCTTACAGGTGCGAGCTGTATCCATTAT TACCTTAGATGTGTTTATAGTTATACATTGCTAAACTGACTGCATGGGTGACCCTAGAGGCTAATCAGTTCGTCTTTTTT CTGTTAGGCTGTGCACTATGCCCTAAATTGCACTTTCTGTTCTTATGAGATTGAAACAGACAATATTATGCCGATTATCA TATTTCAGATTTTGCTGAAAGCAAGTAAACAGTATAATATAAAAAGATACTTCAATTCACATTAGTCTAAAAGTGTGACC TATTTCAATATATAATTCAAGGGGGCTGCACAGTTTATATGTTATTCAAGTTATAAACTAAGTAAAGCCTTTTATCAGAA TTCTACTCTTAGGACAATACAGAGTCTTTAACAAAATTCCTATATTGAATGAAGAGATAGATGTCAAATTTTGGCATACA ATTTGGGAGTTGATTTAACATGTATTTGCAGACAACACAAGGCAAAGGGGGCAGTTATCTTTTTGATATTCACTTCTGGA TTGGCAAGGATACAAGTCAGGTTAGTTTGAACTTCACCCTCCCTTATCTCCAACTTGACCTTTGTCTCATTCAGCATTTT TCCCCCTCAAGGTGACTAAAATGTTGAACCTTGTAAGATTATATTTTTTCCAGAAAGTTTATTCTGTAAAGTTTTGTGCT TTCTTTTTTGGCAGTTTCTCATTCCTTTTCCCTTTCCTGGTTTAAAATTTTTTTTTGATATGATGAATCCTACATTTGAA GGGGTTTCGGTTGCATGATTCATAAATGTTTGAAATTCTTAAACCAATACATTTTGATAAAAAGAATAATTTGTATTGAC ATTGTGACTATCCTTGTAGGATGAAGCTGGCACTGCAGCCATTAAAACTGTTGAACTTGATGCATCTCTTGGAGGACGTG CTGTTCAGCACAGGGAAATCCAAGGGCATGAATCTGACAAGTTTTTGTCATACTTTAAGCCATGTATTATACCATTAGAG GGGGGTGTCGCCTCTGGTTTTAAAACACCTGAAGAAGAGGAGTTTGAAACACGTTTGTATGTATGCAAGGGAAAACGAGT TGTCAGAATAAAACAGGCATAGTATTCTCTATTCATGAACTTCATAAATTCAGTGCACATTCATTGGCCAAAAATCTGAT TTAATGTTTTCCTTATGCAGGTCCCTTTCGCACGGTCTTCACTGAATCACGATGATGTATTCATCCTAGATACTCAGGAT AAGATTTACCAATTCAATGGTGCAAATTCCAATATTCAGGAAAGAGCCAAGGCCTTGGAAGTTATTCAGTTATTGAAGGA AAAGTATCATGAAGGGAAATGCGACGTTGCAATTGTTGGTAAGGAGACAGACGCATGTTTTCCTCTCGCTTGTTGAAAAG CCTATCATATGATTTTGTATTTCTGTTCTTCAGATTTATATTTTGATTTGTTTATAAATATAAAATGTATCCCAAATTGC AGATGATGGCAAGTTGGATACTGAGTCAGACTCAGGTGAATTTTGGGTCCTCTTTGGTGGTTTTGCTCCCATTGGTAAGA AGGTAATCAGTGAGGATGATATTGTTCCAGAGACCATTCCTGCTCAACTTTATAGGTATATTGATTTATCCTGGTATCCT CTCCTCCCCTACGCTTTTTCCAGAAGCATCTGCTTCAAAATGATCCTCTACCTAGAGATGGATGTGCTACTTGTGACATT TTTTTATGAGACATAATGAGATTCTGATTAAAACAAAGGGTTTTTGAATTCTTCTCATTCTGAAGTTGAAGATGGCTTCT TTTGAAGTTTATTTCTTTATGCTCTATGATGTGTGCACTATGAACTTAAGTTTCTTGATCTAAAGGATATGACCATGTGC TGGCAGTATTGCTGATGGTGATGTCAAGTCTGTGGAAGGTGAACTTTCTAAGTCACTACTGGAGAACAGCAAATGCTATT TACTGGACTGTGGTGCTGAGGTATATGTCTGGGTTGGCCGGGTAACACAAGTTGAAGAACGAAAAGCAGCTTGTCAAGCA GCTGAGGTAATGCAATTGCAGAATCTATTTCTTCGTATGTATAATGGTTAAAAGTGGAGAAATTAATTTTACTAATTGTT CAGGACTATGTTGCAAGTCAAAAAAGGCCAAAGTCTACAAGGATAACCCGGGTTATCCAAGGTTATGAGCCACATTCATT TAAGTCCAACTTTGATTCTTGGCCATCAGGATCTGCTACTACCGGTGCTGAGGAAGGAAGAGGAAAAGTTGCAGGTGGAC ATTGTTTAACTTCTAATTTTGCTTGCCTTTTGACAATTAGCAATGCTAACTAAGTATGGTCTTTTCTTCACTGCCAGCTA TGCTGAAGCAACAAGGTATGGGACTCAAAGGAGTGGCAAAAAGTGCCCCAGTTAATGAGGAAGTTCCACCATTGCTTGAA GGAGGTGGAAAAATGGAGGTGATTTTTTCTTTAATGAGTTTCTTGGCTCAACTAAAATAATACCAATCTGCATGTAACAT TAATTAATATTTTCAGGTATGGCTAATCAATGGAAGTGCTAAGACTCCATTACCTAAAGAGGATATTGGTAAATTTTATA GTGGAGATTGTTACATAGTACTGTACACTTATCACTCCGGCGAGAGGAAGGAAGACTACTTCTTGTGCTGTTGGTTTGGC AAAAACAGCATTGAGGTAATTTCAGTCATTCTGACTTAATTTCAGAATACATTGTGAAAATTGCTATAGGTTTTATATTC ACTCTACCGTACTTACCCTATTGTTAAGACTGGCCTAGAGTTTCCATGCATGGCTAAATATGTTATTTCTAATTACATAT TCGTTGTCTATGAATCTATGGTTGTCAACTTGTCATAACATTCAGTATATATAGTCAACAACTTTACTAGAGAATATACT ATGAAGTTTCTTGGCTTTATTTAATGGTGGCTATGCATTGTGGATAGCAATGGGCAAAATATGCTGTATCAATAAACATA CACGCTCTAATTAGAGGAATTAATCTTGATTGTAAAATCATAATGTATTATCAGGACTGCATTAATAAAAATATCTTAAT CATCTATACATTGCTGTATGATCATTATTTGCTCCCCTTACTAGATAACGCCATACATGCGCGCACACACAACCCAACCG CAATTTTGTTTTTCGGGATGAAAATCCTTCATGATCCACTTGTGGTCCATGACCAGCGTTAGGCTAATTTTGGCCTACTC CTTAGTTATCCTGGAAAGTCTAACCGGAGAACCACACTAGAGATAAACATCTCTATGTGAAAGAGCTACTGAAAATTCAG CACAATCTCCTTTGTACTTTGAGCATCTATAGTAAATGCATGCTAATAGCATATATCCGAAATCCACCCACATTATGTTA CATTATCTTAACATAATATTCTTCATAAGAACTCAGAAGAAAACAACTATATAAATGTGACATATCAAGTCTATGAAATC ATCTACAATTTTAAAGTAAGAAAATAACTCCCTATCCCACTAGCTAGCCGTTTTGGTTGCTTGGAGTTTTTATGAATTTA TGTCTATCTACAAGTTGACTTGGTTATGTTTCCAATTTCAGGAGGACCAAAAAATGGCTACTCGGTTGGCTAATACAATG TTCAACTCATTAAAGGGTAGACCTGTTCAGGTATTGTAATGTGAATATGAAATTGGGTTGTGGTTTCGAAACTGGATGTA ATTGTAGTGGCTTCTTGCAGGGTCGCATATTTGAAGGTAAAGAGCCACCTCAGTTTGTTGCTATTTTCCAACCTATGGTG ATCCTCAAGGTAACATTTGAAAAATCCAATGCTATTTTGAGTAACATGTATAGATTGTGTGAAGTTAACTAGTTTGATGA CTTATGTCTTCTTCAGGGAGGTTTGAGCTCTGGTTACAAAAAATTAATAGCAGATAAAGGTTTGCCAGATGAGACATACA CAGCAGAGAGTATTGCACTTATTCGTATTTCCGGAACATCCATTCATAATAATAAAGCAGTGCAAGTTGATGCAGTAAGT ACCCATTTAATTATTCATTTTTGTCTATTATGGTTATGTTGTTAGAGCTTCTTTCTCTGCTAAGTTGACCAAAATTATGA CATTGTTATTCAGGTGGCGGCATCATTGAATTCTACTGAGTGTTTTCTCTTACAATCTGGCTCAACAGTTTTCACTTGGC ATGGCAATCAAAGTTCCTTTGAGCAGCAGCAGCTTGCGGCAAAAGTTGCTGAGTTTTTAAGGGTACATGTTTTTTCCTGC TCTCTTTTGCATTTTGTTCCTTTCTGTTTTAAGGACTTTCTATCCTCTCCCTATTTGTAGCTCACATCTTTTCTACTTAA ATAAAAAAACTCACTGAAACTTTAAGGGAACAGCTCAACTTTTTGGGCCTTCCATTAAATTATTCAAGCACTATCATATA AACACAAAAAGTGTTCTCAATCATGTATAATTCAAACACTTCTGAGTTTCTAGTGTCTAGAGACTGGTTTAGATTTATCT TTCAGGGAAGAAGTTCAACTCTTCTATATGTAAAACTTTTAAGCAAACTTGTGGAAATGGCTTTTATATTTCTATAAGCT TGGGATGGCTATATACTTATGGTTTTGCACTAAGTACATCACTTGTAACTACCTAGCGCATCTATGCCCCTGTGTAATTC TTTTTCTCAAGCATTAATGACTGTAGCTTTAACTCGTAATGGTTTTTTGTTCATTCGTAAAGGTTGCTTGCTTTTAAAGT GTGGAGTAAATCATTGTAGTGTTACATTATACATTATTTGTTAACATGTTACAAATCCATGTTCAGCCAGGAATTGCTTT AAAGCATGCAAAAGAAGGGACAGAAACCTCCGCATTCTGGTTTGCTGTTGGAGGAAAACAAAGTCACACCAGCAAAAAAG CCACTAATGACATTGTCAGAGACCCACATTTATTCACTTTCTCATTTAATAGAGGTAGTATTTCTCGTAACAAGACTTCT CTGTATGAAATTGTGTTAGAGATAAGCATATTTATTGATTGATATTTGTTTTTTCTGACCATTATTAATATTTTTTTATA TTTCTTTTGCAATATGGATGTACCAGGAAAGTTACAGGTTAGTGTCACTTTGTGAACTTTCACACTATTGCTAGGATACT TGTCAGAAATGAGGCAGTGACTCTGAGGTTCATGTATTCTAAATCCATTTTTATATTTTGCACTTCAGGAAGAGGAGGTT TACAACTTTTCCCAGGATGATTTGTTAACAGAGGACATCCTAATACTTGACACGCATGCTGAAGTGTTTGTTTGGATCGG TCAGTCTGTGGACACTAAAGAAAAGCAAAATGCTTTTGAAATTGCCCAGGTAAACACGCTCAACAGATCAGAGCTTTTGT CTCCTATATTTCCTTTTACTTCATGTACTTAATTATACTCGAAAATTTTCCATCAGAAATACATTGATAAGGCTACATCT CTGGAAGGGCTTTCTCCTCATGTACCTCTGTATAAAGTAACAGAAGGGAATGAACCTTGCTTTTTCACAACATACTTTTC TTGGGATCATGCAAAAGCTACGGTATGTGCTCAAACATTAAGGGAACCCCCTTTTTGTTTGTCCGTATTCTTATAGGATC TTCATTTTCACACTTCTAATCATCATCACCCATGAAGTTAATAGTTTTCTGGGTCTGTCTGTGTTGGTTGACCATGACAA CAGTATAATTCAAAGGTTTAAAGAAAACATATTGTTCTCATCAAATATAGGGATGACAACAGCTTTGAAGTTTTATACCA CAGGTTCCATCTTTAAAAATAACCGTGGAAGCTCATATTATGGGTATAAAACAACTGCTCTCATGTATGAACCGTTGGCA CTTGGTTCAATTATAATATTTACTTACACAAAGTGTGTCAGTGGGAGTGTGATTTGTGAAGTTGATATCAGGTGATCATG AGGTGGTTGAAGAAATTCAACAGTGAGGCTAAAAGCTAAATTGATTCTACCATTTCCTGTGCAATCTTTGATAGTAGAAA ACTAAATGAAACTAAATGGCATTTTTGTAATTAAAATTGGCATAAAAAATGAAAACAGAAATGTTTCCTTAAACCAAACA AGCCCTTAATTTGTTGAAATACTCATTCATTATCTTCCTGATGAATTGCAGGTTCAGGGGAACTCATTCCAGAAAAAGGT GGCATTATTCTTTGGGTTTGGCCATTCTGTTGAGGTATAAACCTGATTTCTAACTTTCATGAGAAATTTCTTGTTGTTGA ATGAACCATGTGTCATGAACCAACTATCTCAAAAGCTCAGGTTGTTTGGTGAAGACGCGTAATGATTTTATATTATTCTA ACACCATGCTTTAAGAGTCACTTTTTACCTTTGTATCCTTCTATCTAAGTCTCTTATTTCTTAGTTATATAGTTCCCTTG TTCGTGCTTCCATATGCTTAGCTAGGATTTCCTGAATCTGTTGACAGGAAAAGACTAAAGGACCAAGTCAAGGGGGACCA AGACAAAGAGCAGAAGCTTTGGCTGCCTTAACTAATGCGTTCAATTCATCTCCTGAGTCACCATCCAGTGCGGTATGGCA ACTTGCTTGCTATCTTTTTTATTTACAGCCATTGAACTTCAAACCAACACTAGATTCTCTTGATAATATAAAAGGGCGTG GGGTAATGAGACGGCATTAAACTCATAGCATTTCACATTCCTGTATTTTATTTCTTAGTTGTAAATAATTGAGTTTGGGT GAGTATAGGTTCAGTTATTTACCCCAAAAATAATGAAGGGAAAAGTACTCACAAATATTAAATTGAATTTAATATCTCCT GAATCGATAAGTGAGCATCAAAATTCTCACCTTCTTGGTTTTTATTTTGGAAAGTTAAGTCATGCCATGGGGCACCAGGA GCTATAGAGTCAAATTAAGTATTCTAATTATTCCTCTATGACTGATTATGGGGTTTTTTATTTAGGGTCGTTGGAGCAGC CTCTGACAGCATGACTAATTTTTTATCTTAAAAATTATATTTTGATAATCATTCGACTTTCTGCAGAGTGGATGCCTCTT CAAAGAAATTAGAAGTTCTTAGAAGTTTATTTCTCTCTCATTTACATGTAGAAATGCACTCATTTTTACTATATCACATC ATCCCAGTTAACAACACCTAAGCTATAGAAATAAGCTATATCACATCATCCCACTATATCACTCATTATTACTAAGTTTC TACAGAGTTTTCAGCGCTATTATTAAAAACACTAACTTGGTAAAATTAAAGTGGGCGAGATAGGTAAAACCACAAATTCT TAATCACAGAGGCATATAACAAGTTGCACTGATACAACAATCAGCTATTGAAGGCTTAGCATTTCTCTTTCTGTATATCG AAGTTATAATACAAGCATTTCTTTTTCTTGTTCTATCCTTATTTCATGAATGATTGAAGATAATAGATTCATTCCTAAGC AGCCTCTATTGCATTGAAGAAAGTTAGCATTAGCTGTGTTCATCTTCATCTTATTCTAATCATTGCTAATTATTTGGCGT TTTTAATACCATTATTGTTACATTCTTCTTGTCATGTGCCACTTTGGTTTTCCTTCCTTCAGTTATCATCCATAAACAAA ATTAATTTTGGCATGTTATTGAAAAACTTAGTTGGTATAGTCATCTAGATTTAGTATAGATAGTTGGATCGTGGAAATTT GTGTAAAAATCATAGATTGAAACCTGAGCTTAAAGCCTAGAACGCTACAGAAGCACTTATTTCTTAAAAAACACTATATT TAATAGTGTCATAGGTGAGTATTGAATAAATTAAAGAAAGAAATGGGCGCTTCCTTCTTATCTTTTCTACTCTTGATGAC ACAGGATAAATTGAATGGCTTTAATCAAGGAGGACCTAGACAAAGGGCAGAAGCTTTAGCCGCCTTAAACTCCGCATTTA ATTCAACATCCGGAACTAAACCTATTACTCCTAGGTCATCAGCAAGAGGTCAAGGATCACAACGAGCAGCAGCTGTAGCT GCTCTATCTCAAGTTCTCACTGCTGAAAAAAAGAAACATTCACCTGACACGTCTCCGATGGCAAGCAGTAGTCCTGTTGT GGGAAGTAGCACTCCTGGTGAGAAATAGAATTCATATTGTCTATTAGTCAAATGTGTTTCTTATGATCATATTATGACAA GTTTGAGTTGTTACAGCTGATGCTAAAAGTGAAAGTGCCCATTCTGAAGAAGCTCTTGAAGAAGAAGCCAAGGAGAGAGA GGAACTTGCCCCTGAAACAGGTAGCAATGGGGATTCAGAACCGAAACAGGAAAATGTGGAGGATGAAAATGATAGTCAAA ATAGTCAGAGATTCTTCAGTTATGAGAAATTAAAGGCTAAATCTGAGTTGTCTGGAGTTGATCTTAAACGGAGAGAGGTT AGTCTTACTTTGCACGTAATTGATTTAGGGTGTGTTTGAGTAAATAACTTAATTAAGTGCGTATCACATAAGCACTTATT TATAAGCTTATTGGAATATGTTCAAAATAATTTGTAGGTAGGTACAAATATTTAGTTAGAAGCTTAACTGCTTGTGAAAA TAAGCTCAAAACAGCTTATAAAATACTTGCATAAATGCTTATGCTATAAGATAAACTCATCCTAAAGTGGAGCCTTAATA TGTTATTGTAAGTGTGAAATTTATTTACCTCCACTGAAGTTTTGAAATAAAAAGATTACTTGAGCCTCCCATGATTATAC TTTTTAATTCTATGCTTCGGGATGATATTGACTTTTTTTCCTTTCCACTTGATATTTCTTAGGCCTATCTGTCAGAAAAA GAATTCGAAACTGTATTTGGAATGACAAAAGAAGCATTCTCGAAGTTACCAAGATGGAAGCAAGACATGCTGAAAAGGAA AGTTGATTTGTTCTAGAGACTCAAAACCAATGAGTGGCATGCATGCTATGTTGCATCCTAATATATCTTTCGTCAGTTAT CTTGAAATGCACTTATCTATTGGATAGTGTGGTTTTATTGGTATATAGTACCATCTTTGGATTCATATGCATAGCACTTT GCTTTTGGCCTATGATGAAAGTAGCTGTGGTTAGTGTTTGAAGTTTGAATTTGACCCTGGAGAGTGTTTTTTAGTTTCTC CTTTTTAAATTGATGCGGTCTCTTCCTCTTGTAATGTTCACATATAGTGTAGCAATGAAGACAGTTGAGTGCTGGTTCAA TTCTTTCATTGTGTCAAGTTTGTATTTTAAAGTTGTTTCCTTTTGTTGCTATTGGTTAAGGAGGTGGGGTGTATATGTAT TGCATGTGATACTGAATCTCAATATGAAAAGAATGAAAATTTGTTTGTTTGTTATTTGTGGCTGCGAATTATGTAAATTT AGCTTTTTGCTTCTCATTTTTCTCAATTGGATTAACAACCTGTTTGGATACAAACCAAAGAGTATCTTTTTGAGCTTCTT CAGTGTTTTTTCTAGTAGATAAGCTTCAAATATGTAACCAAACCTGTTCTAAGTCTTTAGCCAAAAGCTAAGAATCATTT CATGAGATTAGATGAGTTTCTTTAGTCAGTCAAAATTCAAGAGCTCAAGTTAAATGAGGAATATTATTCTAACTTGCTTT CTGAAACTTAATTAGCCTAAGCAATTATTGCATTATTATATCAAATGCTGGATTGTAATTGGAATGCATTATGCTACTTT TTAACTGGAATACCAAAGCTTTTGCTTTTTTATCATGATATAAGAATAATGTTAATCCAACTCTAAGAATGATTTAAAGA AAATATGTGTCAAATCATGGCCAATTTAATTTCAATATTGCT 

CDS sequence (LotjaGi1g1v0672500.1) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGTCTAACGCTGCAAAAGTTTTGGATCCAGCATTCCAGGGAGTAGGCCAAAGAGTAGGGACTGAAATATGGAGAATTGA GAATTTTCAGCCAGTTCCATTGCCCAAATCTGAACATGGGAAATTCTACATGGGAGATTCTTACATCATCTTACAGACAA CACAAGGCAAAGGGGGCAGTTATCTTTTTGATATTCACTTCTGGATTGGCAAGGATACAAGTCAGGATGAAGCTGGCACT GCAGCCATTAAAACTGTTGAACTTGATGCATCTCTTGGAGGACGTGCTGTTCAGCACAGGGAAATCCAAGGGCATGAATC TGACAAGTTTTTGTCATACTTTAAGCCATGTATTATACCATTAGAGGGGGGTGTCGCCTCTGGTTTTAAAACACCTGAAG AAGAGGAGTTTGAAACACGTTTGTATGTATGCAAGGGAAAACGAGTTGTCAGAATAAAACAGGTCCCTTTCGCACGGTCT TCACTGAATCACGATGATGTATTCATCCTAGATACTCAGGATAAGATTTACCAATTCAATGGTGCAAATTCCAATATTCA GGAAAGAGCCAAGGCCTTGGAAGTTATTCAGTTATTGAAGGAAAAGTATCATGAAGGGAAATGCGACGTTGCAATTGTTG ATGATGGCAAGTTGGATACTGAGTCAGACTCAGGTGAATTTTGGGTCCTCTTTGGTGGTTTTGCTCCCATTGGTAAGAAG GTAATCAGTGAGGATGATATTGTTCCAGAGACCATTCCTGCTCAACTTTATAGTATTGCTGATGGTGATGTCAAGTCTGT GGAAGGTGAACTTTCTAAGTCACTACTGGAGAACAGCAAATGCTATTTACTGGACTGTGGTGCTGAGGTATATGTCTGGG TTGGCCGGGTAACACAAGTTGAAGAACGAAAAGCAGCTTGTCAAGCAGCTGAGGACTATGTTGCAAGTCAAAAAAGGCCA AAGTCTACAAGGATAACCCGGGTTATCCAAGGTTATGAGCCACATTCATTTAAGTCCAACTTTGATTCTTGGCCATCAGG ATCTGCTACTACCGGTGCTGAGGAAGGAAGAGGAAAAGTTGCAGCTATGCTGAAGCAACAAGGTATGGGACTCAAAGGAG TGGCAAAAAGTGCCCCAGTTAATGAGGAAGTTCCACCATTGCTTGAAGGAGGTGGAAAAATGGAGGTATGGCTAATCAAT GGAAGTGCTAAGACTCCATTACCTAAAGAGGATATTGGTAAATTTTATAGTGGAGATTGTTACATAGTACTGTACACTTA TCACTCCGGCGAGAGGAAGGAAGACTACTTCTTGTGCTGTTGGTTTGGCAAAAACAGCATTGAGGAGGACCAAAAAATGG CTACTCGGTTGGCTAATACAATGTTCAACTCATTAAAGGGTAGACCTGTTCAGGGTCGCATATTTGAAGGTAAAGAGCCA CCTCAGTTTGTTGCTATTTTCCAACCTATGGTGATCCTCAAGGGAGGTTTGAGCTCTGGTTACAAAAAATTAATAGCAGA TAAAGGTTTGCCAGATGAGACATACACAGCAGAGAGTATTGCACTTATTCGTATTTCCGGAACATCCATTCATAATAATA AAGCAGTGCAAGTTGATGCAGTGGCGGCATCATTGAATTCTACTGAGTGTTTTCTCTTACAATCTGGCTCAACAGTTTTC ACTTGGCATGGCAATCAAAGTTCCTTTGAGCAGCAGCAGCTTGCGGCAAAAGTTGCTGAGTTTTTAAGGCCAGGAATTGC TTTAAAGCATGCAAAAGAAGGGACAGAAACCTCCGCATTCTGGTTTGCTGTTGGAGGAAAACAAAGTCACACCAGCAAAA AAGCCACTAATGACATTGTCAGAGACCCACATTTATTCACTTTCTCATTTAATAGAGGAAAGTTACAGGAAGAGGAGGTT TACAACTTTTCCCAGGATGATTTGTTAACAGAGGACATCCTAATACTTGACACGCATGCTGAAGTGTTTGTTTGGATCGG TCAGTCTGTGGACACTAAAGAAAAGCAAAATGCTTTTGAAATTGCCCAGAAATACATTGATAAGGCTACATCTCTGGAAG GGCTTTCTCCTCATGTACCTCTGTATAAAGTAACAGAAGGGAATGAACCTTGCTTTTTCACAACATACTTTTCTTGGGAT CATGCAAAAGCTACGGTTCAGGGGAACTCATTCCAGAAAAAGGTGGCATTATTCTTTGGGTTTGGCCATTCTGTTGAGGA AAAGACTAAAGGACCAAGTCAAGGGGGACCAAGACAAAGAGCAGAAGCTTTGGCTGCCTTAACTAATGCGTTCAATTCAT CTCCTGAGTCACCATCCAGTGCGGATAAATTGAATGGCTTTAATCAAGGAGGACCTAGACAAAGGGCAGAAGCTTTAGCC GCCTTAAACTCCGCATTTAATTCAACATCCGGAACTAAACCTATTACTCCTAGGTCATCAGCAAGAGGTCAAGGATCACA ACGAGCAGCAGCTGTAGCTGCTCTATCTCAAGTTCTCACTGCTGAAAAAAAGAAACATTCACCTGACACGTCTCCGATGG CAAGCAGTAGTCCTGTTGTGGGAAGTAGCACTCCTGCTGATGCTAAAAGTGAAAGTGCCCATTCTGAAGAAGCTCTTGAA GAAGAAGCCAAGGAGAGAGAGGAACTTGCCCCTGAAACAGGTAGCAATGGGGATTCAGAACCGAAACAGGAAAATGTGGA GGATGAAAATGATAGTCAAAATAGTCAGAGATTCTTCAGTTATGAGAAATTAAAGGCTAAATCTGAGTTGTCTGGAGTTG ATCTTAAACGGAGAGAGGCCTATCTGTCAGAAAAAGAATTCGAAACTGTATTTGGAATGACAAAAGAAGCATTCTCGAAG TTACCAAGATGGAAGCAAGACATGCTGAAAAGGAAAGTTGATTTGTTCTAG 

Protein sequence (LotjaGi1g1v0672500.1) extracted from Lotus japonicus Gifu v1.2 Proteins.

MSNAAKVLDPAFQGVGQRVGTEIWRIENFQPVPLPKSEHGKFYMGDSYIILQTTQGKGGSYLFDIHFWIGKDTSQDEAGT AAIKTVELDASLGGRAVQHREIQGHESDKFLSYFKPCIIPLEGGVASGFKTPEEEEFETRLYVCKGKRVVRIKQVPFARS SLNHDDVFILDTQDKIYQFNGANSNIQERAKALEVIQLLKEKYHEGKCDVAIVDDGKLDTESDSGEFWVLFGGFAPIGKK VISEDDIVPETIPAQLYSIADGDVKSVEGELSKSLLENSKCYLLDCGAEVYVWVGRVTQVEERKAACQAAEDYVASQKRP KSTRITRVIQGYEPHSFKSNFDSWPSGSATTGAEEGRGKVAAMLKQQGMGLKGVAKSAPVNEEVPPLLEGGGKMEVWLIN GSAKTPLPKEDIGKFYSGDCYIVLYTYHSGERKEDYFLCCWFGKNSIEEDQKMATRLANTMFNSLKGRPVQGRIFEGKEP PQFVAIFQPMVILKGGLSSGYKKLIADKGLPDETYTAESIALIRISGTSIHNNKAVQVDAVAASLNSTECFLLQSGSTVF TWHGNQSSFEQQQLAAKVAEFLRPGIALKHAKEGTETSAFWFAVGGKQSHTSKKATNDIVRDPHLFTFSFNRGKLQEEEV YNFSQDDLLTEDILILDTHAEVFVWIGQSVDTKEKQNAFEIAQKYIDKATSLEGLSPHVPLYKVTEGNEPCFFTTYFSWD HAKATVQGNSFQKKVALFFGFGHSVEEKTKGPSQGGPRQRAEALAALTNAFNSSPESPSSADKLNGFNQGGPRQRAEALA ALNSAFNSTSGTKPITPRSSARGQGSQRAAAVAALSQVLTAEKKKHSPDTSPMASSSPVVGSSTPADAKSESAHSEEALE EEAKEREELAPETGSNGDSEPKQENVEDENDSQNSQRFFSYEKLKAKSELSGVDLKRREAYLSEKEFETVFGMTKEAFSK LPRWKQDMLKRKVDLF 

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 1 974 974 0.0
PANTHER 1 974 974 0.0
Gene3D 5 131 127 1.2E-45
SUPERFAMILY 9 147 139 2.08E-39
CDD 12 124 113 9.27572E-66
SMART 19 117 99 4.0E-27
Pfam 29 111 83 8.7E-16
SUPERFAMILY 129 237 109 2.88E-21
Gene3D 132 242 111 7.0E-32
SMART 137 234 98 3.4E-26
CDD 138 232 95 4.63629E-35
Pfam 150 217 68 4.7E-11
SUPERFAMILY 223 345 123 1.31E-23
Gene3D 247 357 111 3.3E-25
SMART 251 344 94 6.2E-22
Pfam 267 337 71 5.4E-14
CDD 268 343 76 3.94084E-28
PRINTS 323 344 22 2.7E-53
SUPERFAMILY 383 528 146 1.61E-31
CDD 386 487 102 6.84199E-44
Gene3D 388 518 131 8.0E-34
SMART 392 490 99 1.2E-20
Pfam 405 483 79 2.1E-9
PRINTS 411 427 17 2.7E-53
PRINTS 437 455 19 2.7E-53
PRINTS 470 490 21 2.7E-53
SUPERFAMILY 510 612 103 4.78E-18
SMART 518 607 90 3.6E-14
Gene3D 519 612 94 1.5E-17
CDD 519 609 91 2.39765E-30
Pfam 532 583 52 1.6E-7
PRINTS 533 553 21 2.7E-53
PRINTS 593 612 20 2.7E-53
SUPERFAMILY 596 718 123 1.5E-23
Gene3D 613 736 124 6.0E-32
CDD 622 720 99 9.20207E-41
SMART 623 719 97 2.0E-17
Pfam 637 713 77 5.3E-8
PRINTS 645 667 23 2.7E-53
PRINTS 674 693 20 2.7E-53
MobiDBLite 771 787 17 -
MobiDBLite 771 793 23 -
MobiDBLite 807 920 114 -
MobiDBLite 807 833 27 -
MobiDBLite 850 869 20 -
MobiDBLite 870 893 24 -
Gene3D 912 976 65 6.0E-19
SUPERFAMILY 912 976 65 3.53E-19
ProSiteProfiles 913 976 64 19.717
Pfam 941 976 36 4.6E-16
SMART 941 976 36 9.6E-16

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 Actin binding Interacting selectively and non-covalently with monomeric or multimeric forms of actin, including actin filaments.
Biological process Cytoskeleton organization A process that is carried out at the cellular level which results in the assembly, arrangement of constituent parts, or disassembly of cytoskeletal structures.
Molecular function Actin filament binding Interacting selectively and non-covalently with an actin filament, also known as F-actin, a helical filamentous polymer of globular G-actin subunits.
Biological process Actin filament bundle assembly The assembly of actin filament bundles; actin filaments are on the same axis but may be oriented with the same or opposite polarities and may be packed with different levels of tightness.

Expression data

Expression pattern

Expression pattern of LotjaGi1g1v0672500.1, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.

Loading expression data from ljgea-geneid. Please wait…