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LotjaGi2g1v0361300.6

Overview

Field Value
Gene ID LotjaGi2g1v0361300
Transcript ID LotjaGi2g1v0361300.6
Related isoforms 6
Lotus japonicus genome version Gifu v1.2
Description Beta-galactosidase; TAIR: AT2G28470.1 beta-galactosidase 8; Swiss-Prot: sp|Q9SCV4|BGAL8_ARATH Beta-galactosidase 8; TrEMBL-Plants: tr|A0A0B2S2A3|A0A0B2S2A3_GLYSO Beta-galactosidase; Found in the gene: LotjaGi2g1v0361300
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr2:85877797..85888849) extracted from Lotus japonicus Gifu genome v1.2.

ATGTGGCCAGACCTTATTCAGAAATCAAAAGATGGAGGACTTGATGTCATTGAGACCTATGTTTTCTGGAACTTACACGA ACCGGTTCGAGGCCAGGTGCTGTTCTCTTTCCATTTTCATGTCTCTTGCATTGCATTGTGTTAGTTTTAATACTTGTTGA ACTATCAAGCACACACAAAATTCATTAGAGGGTCCCCAAAAGAAGAAAAAAAGTTTGCAGCTTTTGGCTAATTAGAAGTA GGAAAAGAATAAAAGGACATTCTTTCAGATTTTGTCATAGTTAACATGAACAGTATAGTTAAAACTTAAAAGCATGAAAT TGGGAAGAGTTTTCAATTTCAATCAGAAGACACTAAAACAGTGATGCATTATATAACATTTATTTTGGTTTGGCAGTATA ATTTTGAAGGCAGGGGAGACTTGGTTCAATTTGTGAAGGCAGTAGCAGCAGCAGGTCTATATGTGCATCTCCGGATTGGT CCATATGCATGTGCTGAATGGAACTATGGGTAAGATTGGATCTTTTGTTCTTTTCTTTGTATACAGGTAGGTTCAGTATC ATATCTAATCCAGGGCTTCAATTTTTTTTTTTAATTATCCTAAACAGTGGTTTCCCTCTTTGGCTGCATTTTATTCCTGG AATTCAGTTCAGAACTAATAATGAACCATTCAAGGTAATCCTTCCTTGCACTTGCTTTCTCTATGTCTCTTCCTGTTGTC CCTACTTCCTTCCATCAAGTGAAATTGATTTATGTTCAGGCAGAAATGAAACGGTTCACTGCCAAGATCGTGGACATGAT GAAGCAAGAGAATCTATATGCAACACAAGGAGGGCCTATTATTTTATCTCAGGTTTTTCTCAAAGTCTTATTAAATTATC AGTCATTGTTTCTTTCTTATGGCATCATGTTGTGGAAGCTTAGACTTGAAAGTAGGAGAAATTGTATTATTACTTCTTAA TCAGAATACAAAGGGTAATTACATTATATAGAAGAAGACTAATCCTAAATAAGGAAATAACTAATTATGTACACAATCTC CTAATAAGAGAATAAATCTCCTAATACTGAATATAATCTTCTAATAATAATTCTTATATTAATTCCTTATTTACAACACC CCCCTCAAGCTGGTGAATGAATATCTATCATTCCCAGCTTGCAAGTAAGCTCTCGAAACCGCTCCAAGGGAAGTCCTTTG GTGAGCACATCAGCCAACTGAAGTCCTGAGGGGACATACTGTGTAGATATTAGACCACTATCCAATTTCTCTTTGATGAA GTGCCGGTCTATCTCTATGTGCTTTGTTCTGTCGTGTTGGACTGGATTATGAGCAATACTAATGGCAGATTTATTATCAC AGAAGAGTCTCATGGGAGCTTCATACTTTATTTTCAAATCATCCAGTATGATTTTCATCCACAACAGTTCACAAACTCCT TGAGCCATGGCTCTAAACTCTGCCTCTGCGCTTGATCTGGCAACTACATTCTGCTTCTTGCTCCTCCATGTAACTAAATT TCCACCCAAGAACATACAATATCCTGTAGTGGATCTCCTGTCAACAATTGACCCTGCATAATCTGCATCAGTATAAACCT CCATAGACAACTGCTCACTCTTCTTGAACAGCAGACCTCTCCCTGGACTTGCCTTCAGATACTGCAAGATTCTATCCACA GCCTGTAAGTGTCTCTCCTGTGGGTCATGCATGAATTGACTGACAACCCTAACAGGATAAGCTATGTCAGGCCTAGTGTG AGATAGATAAATGAGCTTCCCCACAAGTCTCTGATATTGAGCCTTATCAACCCTAAGGTCCTCCTCACTACTTCCAATCT TGTGGTTTTGCTCTATAGGCACTCCAATGGGCTTACAACCCAATTTACCAGTCTCTTTGAGAAGATCAAGGACATACTTT CTTTGAGATATGAAAATCCCTTGCTTCGAGTATGCCACCTCCATACCTAGGAAATATTTCAGTTTTCCAAGATCCTTCAT TTCAAATTGGGCTGCCAACTGTTTCCTCAGATTCTGCTTCTCAAGTTCATCATTACCTGCAATGATCATATCGTCTACAT AGACTAACAGAAGAGTGAGTTTACCATTTTGAGTATGTTTGATAAAGAGGGTATGATCACCTTGACTTTGTTTATAACCC AAAGACACCATAGCATTAGTGAATCTCCCAAACCAAGCTCGGGGTGACTGTTTGAGCCCATATAGGGCCTTCTTCAGTTT GCACACCTTATTTCTTCCTGAAGTAGGGTCATACCCCGGTGGAATCTCCATATACACCTCTTCCTCCAAATCTCCATGCA AGAAAGCATTTTTAACATCAAACTGTTGCAACTCCCAATCAAAATGAGCTGCTAAGGAAAGAATGATCCTTACAGTGTTC ATTTTTGCTACCGGAGCAAATGTCTCTTCATAATCAATTCCATAGGTCTGGGTGTATCCCTTTGCAACTAGCCTCGCCTT ATACCTGTCAAGTGTGCCATCAGATCGGTACTTCACGGTATAAATCCACCTGCAACCTACTGTCCTCTTGTCATTTGGCT TCTCAACAATCTCCCAAGTTCCATTTTTGTCCAGTGCATGCATCTCTTCATTCATGGCTTGAATCCAGTTCTTATCTTTT AATGCTTCTTGTACTGATGTAGGGACTCTAATAGAGTCAATAGCTGAAATAAAACTCTGATGCTGCACAGAAAGATTTTG AGTAGACACAAACTGGGATATAGGGTACTTGGCACAAGAACGTTTTCCTTTTCGTAAGGCAATAGGTAAGTCATCAAGGT TATGCTCATAGGAATTACTAGGCTCAGGGTTCGCAACACTTACCTCAGGATCAGACGATTGGACTTGTTGTTGGATCAGG ACGGGTTTTACTTTCCGCTGGTACTTTATCCTGAACCTGTCAACATTATTCTGATCTGGTACTACTTCAGAACCATTGTC ATCTGGTACTAAACCAGGACCATTGTCATCATTCTGATTTGGTACTAGTTCAGGACCATTGTCATCATCATCACTGTCCT CGGTGATAGGAATAGAGGAAGGCATCAAGGGATCCTGTAGAAGAGGAATAACAGACAATTCTGGAGACTCAACTTCCTGA GTATTCCCCCCCTGAAGCTGAGGATTGGGATAAAAAGACTCTGATTCTTGAAAAGTAACATCCATGGATATATAGACACG ACGACTAGGAGGATGATAACACTTGTAGCCCTTTTTATCTGAGGCATATCCTATAAAGATGCACTTAATAGCCCGAGGAT CTAACTTACCCCGATGATGACCGTGAACATGGACAAAGGTGGAACAACCAAATACACGACTTTGAAGACCTGACTTAATG GGCATAGACGGAAAGAAGCTAGTCATAAACTGCACAGGACTAACACTAGATAAAACCCTAGAAGGTAACCTATTAATTAA ATAAGCAGCAGTCAAGACAGCTTCCCCCCAATAAAACTTAGGAACATTCATTTGAAAGAGTAAAGCTCGAGTGATTTCAA GAAGATGACGATTTTTCCTTTCAGCAACCCCATTTTGTTGTGGGGTGTCAACACAAGTCAACTCATGAACCACACCATTT TTTGTAAGAAATTCAGAAAAATTCTTGTTAACATACTCTTTCCCATTGTCTGACCTTAACCTCTTAATAGGTTTCCCAAA CTGTGTTCTAATCATGTGGAAAAAGTTAACAAATAATTGAAACACCTCAGACTTATCTTTCATAAGAAAAACCCATGTAA TCCGAGTACAATCATCAATAAAAGTAACAAACCATTTTGCACCAGAAACATTAGAAATGGACGAAGGTCCCCACACATCA GAGTGAACAAGATCAAAAGGTTGAGCACATTTATTATTACTAGGAAGAAAAGTTGAACGATGATGCTTAGAAAACTGACA AACATCACAATGAAAAGATTCGACTGACACTTTTGAAAATAAATGGGGAAACATGGTCCTAAGAATACTAAAAGGAGGAT GCCCAAGACGCTTGTGCCGCAACCATATTTGAGAAGTATTCCAGGACTCTGAACTCGTCTGATGACACTTGCTTTCCTCG TGCCGTAGACAGTATAACCCGTCCTGTTCCTTAGCAATCCCAATTATCTGTCCCGTGGCAAGATCCTGAAAAACACCATG TGAGTGGAAAAAGGTTACAGCACAGTTCAAGTCTCGAGTGAGTTTATGGATGGACAAAAGATTGTTATAAAGCTTTGGGA CATGAAGCACATGCTTTAAGGGAAGAGATGGACTAAGGTGAATATTACCACATCCCGTAATCTGGTTTTGGGATCCATTA GCAACAGTGATATAGTGTTTTTCAGGGTAAGTGGAATAAGAAGATAAATGTGAGGGGTGAGGTGTCATATGATCTGTAGC ACCAGAGTCAATAATCCAGTCATTTTCAGTACTCAAAGCATTAAGAGATAAGAAGGTAGAACTCTTACCAGTCATTGTGA GAGAACAAGAACCAGAGGGCTTACTCAATGAGTCCATAAAAGCTCTCAGACGCTCCAATTCTGCTTTGCTAAGGCTAGGG ACATCTTCTGCTGGTGGTACAGGTGGGACTTCACCATCATTTTCCATGTCAGAAGTTGTATGATTTGCGCGCCTCTGCGG AGCACCTTTGGACCCCCTCATACGTCTAAGGACGTTTTCCCTTCCATAAAGTTTGAAACAGTACTCTTTGGTGTGACCAG ACCTCTTACAATAAGTGCAACGATCATCACGGTTGAAGAGATCATCACGGTTGAAGCGATCATCACGGTTGGGGCGATCA TCACGGTTAGGGTGTCCGGAAGAGGTGGATCCTTTTATGGGACCCTTTCCAGAGGCTAAGGCTGAACCATCAACTGATTT TTCTTCCACCATCACTGTCCTCCTAGTTTCTTCACCACGAACTATAAAGAACACCTCTGAGAGAGAAGGGAGTTGCTCTT TACCCAAAACTTGGACCCGAATCGGATCAAATTCAGAGTTAAGCCCAGAGAGAAACTTAAAGATTCGCGCTTTTTCAATA AATTTATTCAATGTTGTGGAGTCAGCATCACACTTCATCTTCAGATTTTGATACTGATCTAATTCAATCCATAGACCATT CAAGGTCCCATAGTAATCTGTCACGGAGAGAGTTCCTTGCTTAGAATTGAAAACTTTATTTTCCAATTCATAACAAGCTG AGAGATCTTGTTTCTTAGAATATGCCTGTGCCAGATTATTCCAAATCTCCTTAGCAGTAGGGAAAAACATATAATTCCGG CTAATTTCCGGAATCATGGAGTACCAAAACCAGGTCATAATAAGAGAATTCTCTTCACGCCATGTGTCATATTGTGGATC AGTTTCAGCAGGGGCTTTTTCTTCAATATAACTGATTTTCTTGCGACTTATGAGAGTGTGACGGATGAGCTCAGACCATT GGAGGTAGTTGCGCCCATCCAAGCGAAAGGAACCTTGTAATACCGGGAGATCTTTGTGGGTCAAAGGTGGAAGAGAGACT TTCACTCCAGAAGTGAGTTTCTCCTTAGGTATGGGAATCTCGTCTCCAGACATACTGAGAGATGTTACTGTAGAAGGGAA ACAAGAGGAAAAATAACAGAAACAGAGAAGATTGCACTCTCCTTGAATGGAAGAACCAAAGGCTTCTCAAGAAAAAACAC CAACAAAGTGAGGAAACGACCCTCAGAACAAGACCAAAAGGCACGGGGAACCCTCTTTGTGCAATCGGAGTAACGAACAG AGGATGGCAGGCCGGTGATGAAGAGCACAGGCCTCCAAACGGTATAAGCCAACAGTGGCAAAACAGGAAACGTTACCAGA TAAAAGGGCCGTAATAAGACGGCTAGGGTTTTTTTCGCAGAAGCAGAACTCCCAAGATCGGGAGCTCTGATACCAACTTG AAAGTAGGAGAAATTGTATTATTACTTCTTAATCAGAATACAAAGGGTAATTACATTATATAGAAGAAGACTAATCCTAA ATAAGGAAATAACTAATTATGTACACAATCTCCTAATAAGAGAATAAATCTCCTAATACTGAATATAATCTTCTAATAAT AATTCTTATATTAATTCCTTATTTACAACACTTAGCTATTTGTTTTATAGGAAGTCTTAAATTCTCAATGGCCTACTGGA TTTCTTTAATATGAACATATTAAGTACTTTTGTAATTCCAGATTGAAAACGAGTATGGGAACGTTGAAGTGCACTATGGT TCTGGTGCTAAACCTTACGTCAATTGGGCAGCATCAATGGCTACATCTCTTGATACTGGAGTTCCCTGGGTTATGTGCCA GCAAGCAGATGCTCCTGATCCAATTGTATGTTTTCTCCTTTTACTTCTCCACTCTACTTCAATTGTTGTGCAATTTATGA TGATAGAGCAATCTTACTATGATCTTGACTGCAATCACCAAACTTTATTCTTAATTTCATAGTTTGTTATATTAATTGCT CACAGATTAACACCTGCAATGGATTTTACTGCGATCAATTCACACCAAACTCTAATGCGAAACCAAAAATGTGGACCGAG AATTGGACTGGATGGTTAGTTCCTTTTCTATATAAGTCATTTAGTTATTTCAATGGCATAGAGTGGGCATAGTCAAAACA TGATCTAAGTGATTGTCCATATAACTTTTCTCATTCAACTCTTCTTTTCTTGAAACCTTTTGAATTCTTTGAAACCGTAG GTTTCTTTCATTTGGTGGTGCTGTGCCTTACAGACCTGTGGAGGATCTTGCATTTTCTGTGGCGCGTTTTTACCAGCGAG GTGGAACTTTCCAAAATTACTATATGGTAATGCAACATTACATGCAGTTTCATCTCAAAATTACTATTTTGGATATATGA AACGAGCTGATATCACTAAGTTTTTGGTTTTTTTGCTCTGAAATAGTACCATGGAGGAACTAACTTTGGAAGGACTACTG GTGGACCTTTCATTTCTACTAGTTATGATTATGATGCACCAATTGATGAGTATGGTATGCTGTCTTTCAACTTTCATATT TATTGTTGATTCTGTAGAATAATAGAAACTAATCAACCATACTTCTATATGGAGTCAAGAAATAAACAATCTTCCAACTT GACATTATATGATTACTTTATATACATATGATTGTGAACATTACACTGAACAATATTATGTATGTTTTTGTTTGAATATT AAATATGTTAACTTCATGATGCAGGAATTATCAGACAGCCAAAATGGGGCCACCTTAAAGATTTGCATAAAGCCATAAAG CTTTGTGAAGAAGCACTGATAGCTACTGATCCAACTATTACGTCTCTTGGTCCAAATATAGAGGTAAAAAGTAAATGTTG GTTCGAAATTCTAATTTAGCTTCTTCAGGGCCTATGTTTCTCGTAGTTTATCAAATTTTGAATTTCTGCCCCTGGTAATG CCTTGTACAGCTTCGAATTTCGGTATAATTACCTATTAGGCCAGTGGGTCATTGTCAATTTGACATGGATTTAGTACTTG ATCAAGATTCCTTCCCAATTGTGAGTACATGTTGAAAACCCTTCTATAATTGATTCTGAAGCCAAGATCAATTCTGGGGA GAAAATTATATGAGTAGCTTCTGGGTTTCAGAATTGATTCTGATCAAAGAGATGATGTTCCAAACTTGCTATGAGTGTTC CTTTTTATTGATTGCAGTTTCTGGAAAAATACTGCTATATACTGGTGATTCAACCTTATTACTTGTTTTAGTATGTTTGA TTTCATAGTGACATGCACTAGAATCAGTTTTGGCTAGAAGCTATGAGTCTTATAGTATCTTTGGTTTTAGGATTTACATA GAATCCAAGTCTAATAGTATCTTTGGTTTCAGGATTTACATAGAATCCAATGCTTGTCGTACACTCTGAAGCTAAGACTT GTAGCTTCTAACCATAATTGTTTCATAACATTTCACTTTGAAACTAAACATCTAGTTTCTGAGTAAACGTGCCTGAGATT CTGTGCAAATCGTGAAATCAAATATGCACTTAGTCTTCTTTGTGTATAATGTATACTGTGGAATACAAGACGCATAGTTG TGTGGACATGCCTAATGCACTCTTAACCAATTAATCAAGGAGGCTCTATTACATCTCTTGAAATTTACTATTCAAACCCA GGCTGCAGTTTACAAGACAGAATCTGTGTGTGCTGCCTTCCTCGCCAACACCGCCACATCTGATTCAAAAGTGACATTTA ATGGCAATTCATATAACTTGCCAGCATGGTCTGTGAGCATCTTACCAGACTGCAAGAATGTAGTACTTAATACTGCAAAG GTTTGCCTCACTAACTTCTCAATCAAATTAGATAACTCAATTGACTGGTGTTACTTTTACAAGTGCATGTGATTAATCAA TCTATAGCCAAGGTCTATCTTTTTCATTTTCGAGTCCAAAAAGTAGCCTAACCTAAAGTGTTTCTTGGTTCGACAGATTA ATTCGGCATCTATGATTTCAAGCTTCACAGCTGAATCTTTAAAAGAAAAGGTTGATTCTTTGGACGGTTCAAGTTCAGGA TGGAGTTGGATTAGTGAACCTATTGGCATTTCAAAGGATGATTCATTCTCAAAATCTGGATTGCTGGAGCAGATAAACAC CACAGCTGATAGAAGTGACTACTTGTGGTACTCATTGAGGTACATAGTCCTTCAAGGTTGAGAAATTTTTCCTTTGACCT GCAATTCTCTGCCCCATGATAACATTTTCATATTTTGGTCCCCCAAAAGCTTGGATGTTGAAGATAATTCCGGTGCTCAA ACTGTTCTCCACATTGAATCCCTTGGACATGCCCTTCATGCTTTCATAAATGGGAAGCTTGCAGGTAAAAGTTAAAACTA AAAGCAATGACAGCTATTGATATATTTTGATAACACCGTGTCTATGAATTTTGTTCCTTTCTTGGAAAGCAAAATTTTAT CTATTTTAAGGATTTAGCCATTTTAAGAAAATGAAACCAAGGTTGATTTGAAATAAAGATAAATAGTTCATGGTTGTTTG TTGCTAAAATGTACAGTTATTTCCTTATTTCAATTAACATTTCATGTATTTTCAAAGAATACTTTCCTCAGTTATCTGTG AGACCTACAACTTTTTCAGGGAGTAAAACTGGCAATGCTAAGGTCAATGTCGACATCCCCATCACACTTGTGGCTGGAAA GAACACAATTGATCTCCTGAGCTTAACAGTGGGACTTCAGGTTCATCTCTTCTGATTTTAATGTATATAAGTATCTCGAA CAGAGGAAATTTTGGTTTTTTTATATTGCATTACTTGTTGTTTCCTCCCCACATAATTTCACCTTATGATGTAGTCATTT CTAATTATTACATAAGCTAATGTGAACCTTGTAAACATCAGAACTATGGAGAATTTTATGACACACGGGGTGCGGGGATC ACTGGTCCAGTAATATTGAAAGGCTTGAAAAATGGCACTAATCTTGATCTCTCCTCCCAACAGTGGACATATCAGGTTAG TCTCAGCTTAACTTAAAAAGCCTGTTAATTCTCTTTCTCTTTTTGAGTACTGATAACTTCATTAATTGAACAACTGCAGC TGAAATAAAATGGATTTCAAATTTCCTTCTTGATTTAAGTCATAGGTTACATGGTCCATATTTTGTGAATGCAGGTTGGC CTTAAAGGAGAAGATTTAGGTCCATCCAGTGGTAGTTCAGGGCAGTGGAATTCACAATCTTCCTTACCTACAAATCAACC TTTGACTTGGTACAAGGTATTCTTGCTGAGAATATAGCATTTATTGACAATCTCAAGTTTTTCTTAGTTATACTCTCCTT ATTGTGATTGAATTAGCAAACAAAATCTCCTTGGTTTAAGGTTAGAGGGTAAGAAAAGGACTTGAGCAATATGTTTTTCA AAGCTAAAAGACGCATGACTTGGAATTAAGAAACTGTTTTTTCATATCAAACGAGTTTTATTTCTTTTTTCTGTTTTGAA AACTGAAAACAGTTTTACAAAGCAGCAATCGAGCATGCTCTAATGCTACTATGCAACAAAAGGACAAATGGTCTTGAAAA TAACTAATGCTAATATATGTTGTCTTAGACAAACTTTGCCGCTCCCTCAGGCAGCAATCCGGTGGCAATTGACTTCACTG GGATGGGAAAAGGCGAGGCTTGGGTGAATGGACAGAGCATTGGACGATACTGGCCTACATATGTCTCACCAAATAGTGGT TGCACTGACTCATGCAATTATAGGGGACCCTATACTTCATCCAAATGTCTCAAGAACTGTGGAAAACCATCACAGACATT GTAAGTGTTGATATGTTTTAAGTTATCCTTATAGCATCCCCTTCAGAAACTCATTGAGTCACTGATCCTGCAGATACCAT GTACCAAGGTCATGGTTGCAACCAGATAGCAACACTCTTGTATTGTTTGAGGAAAGTGGAGGCGATCCTACAAAGATCTC TTTTGCTACGAAACAGATAGAAAGTGTGTGTTCACATGTGTCTGATTCTCACCCTCCACCTGTAGACATGTGGAAATCAG ATACAGAATCAGGAAGAGAAGCAGGCCCTGTACTGTCACTGGAGTGCCCTTATCCTAATCAGGTGATCTCTTCCATTAAA TTTGCAAGTTTTGGAACGCCGCACGGAACTTGCGGGAACTTCAATCATGGACAATGCAGAAGCAACAAGGCTCTATCCAT TGTGCAGAAGGTTTTATCTAAATTATTCTTTGAGCCCATATGGATACGGACTAGAGAGCTTTTATCGGAGCTTATCTACT AAAAAAAGTGTATAAGCTCCAATAAGTGCTTTTTAGTTTGCATCCAAATGAGTTCTTTAAATAAGTTCATTTGTCTTTGG TCTAGTTACTTTGATGTGGTATTTTTTTCATTACATATTAGACTTAGTCTTATGAGCTTTAACAGGCCTGCATTGGATCA AGCAGTTGCAGTATTGGACTAAACACTAACACATTTGGAGATCCATGTCAAGGGGTGAAGAAGAGTTTAGCTGTTGAGGC TGCTTGTACATAA 

CDS sequence (LotjaGi2g1v0361300.6) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGTGGCCAGACCTTATTCAGAAATCAAAAGATGGAGGACTTGATGTCATTGAGACCTATGTTTTCTGGAACTTACACGA ACCGGTTCGAGGCCAGTATAATTTTGAAGGCAGGGGAGACTTGGTTCAATTTGTGAAGGCAGTAGCAGCAGCAGGTCTAT ATGTGCATCTCCGGATTGGTCCATATGCATGTGCTGAATGGAACTATGGTGGTTTCCCTCTTTGGCTGCATTTTATTCCT GGAATTCAGTTCAGAACTAATAATGAACCATTCAAGGCAGAAATGAAACGGTTCACTGCCAAGATCGTGGACATGATGAA GCAAGAGAATCTATATGCAACACAAGGAGGGCCTATTATTTTATCTCAGATTGAAAACGAGTATGGGAACGTTGAAGTGC ACTATGGTTCTGGTGCTAAACCTTACGTCAATTGGGCAGCATCAATGGCTACATCTCTTGATACTGGAGTTCCCTGGGTT ATGTGCCAGCAAGCAGATGCTCCTGATCCAATTATTAACACCTGCAATGGATTTTACTGCGATCAATTCACACCAAACTC TAATGCGAAACCAAAAATGTGGACCGAGAATTGGACTGGATGGTTTCTTTCATTTGGTGGTGCTGTGCCTTACAGACCTG TGGAGGATCTTGCATTTTCTGTGGCGCGTTTTTACCAGCGAGGTGGAACTTTCCAAAATTACTATATGTACCATGGAGGA ACTAACTTTGGAAGGACTACTGGTGGACCTTTCATTTCTACTAGTTATGATTATGATGCACCAATTGATGAGTATGGAAT TATCAGACAGCCAAAATGGGGCCACCTTAAAGATTTGCATAAAGCCATAAAGCTTTGTGAAGAAGCACTGATAGCTACTG ATCCAACTATTACGTCTCTTGGTCCAAATATAGAGGCTGCAGTTTACAAGACAGAATCTGTGTGTGCTGCCTTCCTCGCC AACACCGCCACATCTGATTCAAAAGTGACATTTAATGGCAATTCATATAACTTGCCAGCATGGTCTGTGAGCATCTTACC AGACTGCAAGAATGTAGTACTTAATACTGCAAAGATTAATTCGGCATCTATGATTTCAAGCTTCACAGCTGAATCTTTAA AAGAAAAGGTTGATTCTTTGGACGGTTCAAGTTCAGGATGGAGTTGGATTAGTGAACCTATTGGCATTTCAAAGGATGAT TCATTCTCAAAATCTGGATTGCTGGAGCAGATAAACACCACAGCTGATAGAAGTGACTACTTGTGGTACTCATTGAGCTT GGATGTTGAAGATAATTCCGGTGCTCAAACTGTTCTCCACATTGAATCCCTTGGACATGCCCTTCATGCTTTCATAAATG GGAAGCTTGCAGGGAGTAAAACTGGCAATGCTAAGGTCAATGTCGACATCCCCATCACACTTGTGGCTGGAAAGAACACA ATTGATCTCCTGAGCTTAACAGTGGGACTTCAGAACTATGGAGAATTTTATGACACACGGGGTGCGGGGATCACTGGTCC AGTAATATTGAAAGGCTTGAAAAATGGCACTAATCTTGATCTCTCCTCCCAACAGTGGACATATCAGGTTGGCCTTAAAG GAGAAGATTTAGGTCCATCCAGTGGTAGTTCAGGGCAGTGGAATTCACAATCTTCCTTACCTACAAATCAACCTTTGACT TGGTACAAGACAAACTTTGCCGCTCCCTCAGGCAGCAATCCGGTGGCAATTGACTTCACTGGGATGGGAAAAGGCGAGGC TTGGGTGAATGGACAGAGCATTGGACGATACTGGCCTACATATGTCTCACCAAATAGTGGTTGCACTGACTCATGCAATT ATAGGGGACCCTATACTTCATCCAAATGTCTCAAGAACTGTGGAAAACCATCACAGACATTATACCATGTACCAAGGTCA TGGTTGCAACCAGATAGCAACACTCTTGTATTGTTTGAGGAAAGTGGAGGCGATCCTACAAAGATCTCTTTTGCTACGAA ACAGATAGAAAGTGTGTGTTCACATGTGTCTGATTCTCACCCTCCACCTGTAGACATGTGGAAATCAGATACAGAATCAG GAAGAGAAGCAGGCCCTGTACTGTCACTGGAGTGCCCTTATCCTAATCAGGTGATCTCTTCCATTAAATTTGCAAGTTTT GGAACGCCGCACGGAACTTGCGGGAACTTCAATCATGGACAATGCAGAAGCAACAAGGCTCTATCCATTGTGCAGAAGGC CTGCATTGGATCAAGCAGTTGCAGTATTGGACTAAACACTAACACATTTGGAGATCCATGTCAAGGGGTGAAGAAGAGTT TAGCTGTTGAGGCTGCTTGTACATAA 

Protein sequence (LotjaGi2g1v0361300.6) extracted from Lotus japonicus Gifu v1.2 Proteins.

MWPDLIQKSKDGGLDVIETYVFWNLHEPVRGQYNFEGRGDLVQFVKAVAAAGLYVHLRIGPYACAEWNYGGFPLWLHFIP GIQFRTNNEPFKAEMKRFTAKIVDMMKQENLYATQGGPIILSQIENEYGNVEVHYGSGAKPYVNWAASMATSLDTGVPWV MCQQADAPDPIINTCNGFYCDQFTPNSNAKPKMWTENWTGWFLSFGGAVPYRPVEDLAFSVARFYQRGGTFQNYYMYHGG TNFGRTTGGPFISTSYDYDAPIDEYGIIRQPKWGHLKDLHKAIKLCEEALIATDPTITSLGPNIEAAVYKTESVCAAFLA NTATSDSKVTFNGNSYNLPAWSVSILPDCKNVVLNTAKINSASMISSFTAESLKEKVDSLDGSSSGWSWISEPIGISKDD SFSKSGLLEQINTTADRSDYLWYSLSLDVEDNSGAQTVLHIESLGHALHAFINGKLAGSKTGNAKVNVDIPITLVAGKNT IDLLSLTVGLQNYGEFYDTRGAGITGPVILKGLKNGTNLDLSSQQWTYQVGLKGEDLGPSSGSSGQWNSQSSLPTNQPLT WYKTNFAAPSGSNPVAIDFTGMGKGEAWVNGQSIGRYWPTYVSPNSGCTDSCNYRGPYTSSKCLKNCGKPSQTLYHVPRS WLQPDSNTLVLFEESGGDPTKISFATKQIESVCSHVSDSHPPPVDMWKSDTESGREAGPVLSLECPYPNQVISSIKFASF GTPHGTCGNFNHGQCRSNKALSIVQKACIGSSSCSIGLNTNTFGDPCQGVKKSLAVEAACT 

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
PANTHER 1 781 781 0.0
Gene3D 1 286 286 1.2E-96
SUPERFAMILY 1 287 287 1.3E-95
Pfam 1 282 282 3.0E-105
PANTHER 1 781 781 0.0
PRINTS 2 20 19 3.1E-71
PRINTS 57 76 20 3.1E-71
PRINTS 114 129 16 3.1E-71
ProSitePatterns 116 128 13 -
PRINTS 193 208 16 3.1E-71
PRINTS 230 245 16 3.1E-71
PRINTS 250 266 17 3.1E-71
Pfam 290 359 70 7.3E-25
SUPERFAMILY 343 513 171 5.59E-21
Gene3D 365 512 148 1.2E-10
Gene3D 519 609 91 8.3E-11
SUPERFAMILY 525 690 166 3.4E-29
PRINTS 557 571 15 3.1E-71
PRINTS 584 600 17 3.1E-71
Gene3D 622 676 55 3.4E-5
ProSiteProfiles 695 781 87 16.45
Gene3D 695 781 87 6.8E-14
Pfam 703 780 78 4.8E-20

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 Hydrolase activity, hydrolyzing O-glycosyl compounds Catalysis of the hydrolysis of any O-glycosyl bond.
Biological process Carbohydrate metabolic process The chemical reactions and pathways involving carbohydrates, any of a group of organic compounds based of the general formula Cx(H2O)y. Includes the formation of carbohydrate derivatives by the addition of a carbohydrate residue to another molecule.
Molecular function Carbohydrate binding Interacting selectively and non-covalently with any carbohydrate, which includes monosaccharides, oligosaccharides and polysaccharides as well as substances derived from monosaccharides by reduction of the carbonyl group (alditols), by oxidation of one or more hydroxy groups to afford the corresponding aldehydes, ketones, or carboxylic acids, or by replacement of one or more hydroxy group(s) by a hydrogen atom. Cyclitols are generally not regarded as carbohydrates.

Expression data

Expression pattern

Expression pattern of LotjaGi2g1v0361300.6, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.

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