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LotjaGi3g1v0318400.1

Overview

Field Value
Gene ID LotjaGi3g1v0318400
Transcript ID LotjaGi3g1v0318400.1
Lotus japonicus genome version Gifu v1.2
Description Beta-galactosidase; TAIR: AT3G54440.1 glycoside hydrolase family 2 protein; Swiss-Prot: sp|A5F5U6|BGAL_VIBC3 Beta-galactosidase; TrEMBL-Plants: tr|I1M0S4|I1M0S4_SOYBN Uncharacterized protein; Found in the gene: LotjaGi3g1v0318400
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr3:67379930..67389292) extracted from Lotus japonicus Gifu genome v1.2.

CCGGTTTCCAAAACGACGAGTCGTGGCAAGTTCATTATGTTACCCTCCACTAAGTGAAGACCGCCACCATCACAACCCAA TAAACCGCGACAAATGTGACACTTCCACTCGATTTAACACCAACATCATTCATGCACTTCAACGTTTGACTGATCCTTCT TTCAATAAAAAAACCGAACCTCTTCATTTCCCTTTGTTCCATCCAAACACTGAGTGAGAGCTTCACCTTCCACTATCAGC GATGGTGGCTTCTTCTTCTTCTTCTGTGGCTGGGCCAATCCTCCTTGCTTCACAGAATGGTTACAAGGTGTGGGAGGACC CTTCTTTCATCAAATGGAGAAAAAGGGACCCACATGTTTCCTTGCATTGCCATGAATCTGTTGAAGGTCTTTCACGATCA CACACGTTCTTTTCATGCTTTTGCATCAATAAGTTTTGATTTTTGATTTGTTTGTCTTCTGGGTTTTGTTTCTGTGGCAG TTTTTTATTTTGGGTTGATTTAATAGGAATAGTCATTGGTTGGATTCTAAATTCATGTTTTTTGGAAGAAAATTGTCTTT TTTTTTTTTCTTTTCAATTCTATGCATTAGGATCACCTTTCATTTTATTTTGTGAGGGGAAATGTCTGCAGCTAAATGAA GTGTGGATGTATAATATTGGCCTGTCTGAAGTGTAGGTAGAAACTGAACCAATGGTTAATTGCAATTACATAGGACCAAA CCAGTGACTGTGGTTTTGGAGATACGTGATTACTGAGTGAAAATTGTAAAACAAGTCTGTAAATTTAAAATTTTAAGGAT TTTGAAATTTGTTTTTAAAATTGTTTGCAATATTTGTTTCCTATTTTTTATGTAAATAATCTGGAGTTTTGTGATATCTG TAGGATCTCTTAAATTTTGGTATCAACGCAACAAAGTGGATTTTCTGGTTTCCCAGTCTGCTGTTTGGAATGATGATGCT GTTAATGGAGCTCTTGATAGTGCTGCATTTTGGGTCAAAGACTTGCCTTTTGTTAAGTCCTTGTCTGGATATTGGAAATT TTTCCTTGCTTCCAATCCCAACAATGTCCCTACTGAGTTTTATGAAAGTGAGTTCCATGATTCAGAGTGGAGTGCTTTGC CCGGTAAGTGCACAATGTCGCAACTATAGTGTTTGATTTGATTTCCTTAGCAAGTTCTCTATAATTTGCTTTTCTATATA GTATTTGTTGTGGTAGTGAAGTGCTGTGATATACTTTGTATTTGAATTGATTTGTAACTTTTTATCCTCATGAGTGGTGA TATTTTCATCCATGTCTAATTACTTTCCTCAACATTGGACAGTTCCTTCAAATTGGCAGCTGCATGGATTTGACCGTCCT ATATATACAAACACAGAGTATCCATTTCCATTAGATCCTCCATCGGTTCCTGAGGAAAATCCCACTGGCTGTTACAGAAT GGACTTCCACCTTCCTAAAGAATGGGAGGGTATGACTCAATTTTTGTAACTTTTTTTTTTAACTTTTGTTGATCGACATA CAATAGGGAGGAATTTGGTGTTGTCATTCCTTCTGTTTTCCCTTCAATTCTTTAGTTCTGTATCTATAATGGGGTTAGAC TTTAAATGTGATTTCGATGCACTATACTATGAGTTTGATATACTATTTTTCTTAATTGTAATTAGTGTGATTGACTAATA TATTGAGAAAGTAGTATTGGGTGATGATAGATCTTGATAGTGAAAGTCTTCCAAGAAATGTTTCTGCAGTCCTCTCTCTC ACTCTCTCTCTCTCTATGCACACACACACACATACTCTCTTCTTATATCTTGCTCTGTAACAATGTTGTCAATTTGTTTT ATTTCTCTTGGTTTGGAATCTCATCAATTTTTTAGTTTAAATTACTTATTACTTACTTCTTCAGAACATTGATTGGTTTT GATAGGCAGAAGAATTTTACTGCACTTTGAAGCTGTTGATTCTGCCTTTTGCGCTTGGATAAACGGACATCCTATAGGAT ATAGGTATATCTCTCTCTATGGCTTGTGCAATGTGCACTCACAAATATACAATGATGTACTTGCTGGTAGTTATGCTGCT TCTGTATTTTCAATTTCAACTCAAGTAAGTACAATGTGAGGACATAAAAGAAAATAGATCAAAGAATGTGACAAGACAAG GAGAAGGCATGCTGTAAAATAGATGATAAGCTGGTAACTCATGTTTTCTGCAGCGAAGAGATACTGTTAGTTGCTGTCTG AGTATTAGATGGTCATTTGTCATTTTGTCCCTTCTGGAGCTAGCCTGGTCTCAAACATGACAGTTTCACATCTCGTCTTT AGTGCACTCGTGCTAAAGAATGCCCCTATATACGTTAATTTTTGTGGATTTGGCATAGAGTTTCCTAGTAAATACCTGTG AAGAATGAAGATATTAGGAATGTAGCTTTGACATTATTCTACTATTGGGTTATTGACAAAAAAATTGTTTTTTTGGTAGG ACAGCCAAGACAGCAGGCTACCTGCAGAGTTTGAAATCACTGATTTTTGTCATCCATGTGGTTCAGACCTGAAGAATGTT CTAGCAGTTCAAGTATTTAGATGGAGTGATGGATCATACCTTGAAGATCAGGACCATTGGTGGCTATCTGGTATCCACCG TGACGTTCTTCTTCTAGCAAAGCCAAAGGTTTGTTCTTTGATTTCTTGTGGCATGCTATAGCTTTATATCATTTACGGAA AACATTCTTATTAGAGTTAATTCATTCTACAAGGGTGAAATAGAAGCTGCTATTGTTTTATGACAATTAAAATGAAATGC TGTCATTTTTTTTCCAGCACTGTCATTAGGTTATATGATATTTTATAGAACATATTAGGAGTTATATTGGATCCTAAGTG CACCTCAATTAAATTTTAATGTTCTTGAAAATTCAAGTTTGAGAATAATTTACATGTGTTATTTAATTTTTGTTTTGAAT ATATAAAGTCCAATTTTTTTAGCTGCTTGGATATATTTTTTCGGCTTGATTCTGACATCTTTCAAAATATTCGTTATGTA GGTATTTATCACCGACTATTTTTTCAAATCAAACCTGGCTGAAGATTTTTCTAATGCGGAGATACTGGTAAGCATGAATA TTTTGTGAATTTACTCTTGTTATTTTTTCATGTCATAATTATATTATGTATCTTTAACTAGTCTTTTTTGTGGAAGATAA TATGGAAATCCATTAAGTTTATTTCCTTTGTTTTGATTTTGTAAAATTGACTTTGGTCACCCAAATTTATAAATGAACTG ACCTTTGTTAGTTCAACGAAATAAAAATCATTTTTGTTGTCTTTATTCTACCATACTTCTCCCATGTGTCATTCATACTT TGAAATGTAGATGATGTTTCTTATTGTATGTTATGGTTATTTGGGAAATCTTATATTATCAATCTAATGTACATGTACTC CAGGTTGAAGTAACAATAGATAACTCAAAAGAAACTTCCAAGGATAGTGTTCTTACAAACTACACCATAGAAGCAGCACT ATTTGATTCTGGAACCTGGAACACCTCTGATGGGAACCCTGATCTCCTTTCATCTAATGTAACAAACATAAAGTTCCAAC CATCGACTGCGCCATTAGGGTTTCATGGTTATATGCTTGTGGGAAAACTGCAATCACCGAAGCTTTGGTCTGCAGAGCAA GTGAGAAATTTCAACCACCCTTTAATTTGTTTGGACATAGTTTTCTCATTCATTAGTAAACCAATGATTTAGAACTTTGA ACAGTAATTAGATGAAGTTCCTATTGAGAAATAATGATAATGTAGTTCTTGAGCTTTTTAGTTCCATGGATACTCCATGA CTGTAATTCTACTAATGTTTACTAAGTTTCTTGTGATGTCACCTCCTTCCCATGCAATTTTTAATCTCAAACAATGTTTC ATGGCCAGTGAATGATACGGAAAATACAGTTTTTGAATAAAGCTTCTTTCACTTCTATGGAAAGGTTGAAGACCTATGTT ATGATAATTTGATGATGATATATCAATTATTTTGTGTTTAGAAGTTTATTGATATTTGAATTTTCTTAAATTGTCATGTC ACCTGTTTTGCTGAACAGTATTGGCTTAGTATCATTTGACATTTCCTTTTGTTTGCATTTCTTGCAGCCATACCTCTATA CCCTAGTTGTCACCCTAAAAGATCAAACTGGCCGTGTTGTTGACTGTGAATCATGTCCTGTAGGCTTTAGAAAAGTATCT AAAGCCTACAAACAGCTGCTGGTTAATGGACATGCTGTTGTAATCAGAGGTGTGAACCGGCATGAACATCATCCACAAGT GGGGAAGACAAACATTGAGTCCTGCATGGTCAAGGTATTGCTTGTTAGTTTATCTATTTATGATGGCCAAACTGCTAGAT GTTTTCACTTTTCTGACACTAATGATTGCTGTGCCTACAGGACTTGGTCTTAATGAAACAAAACAATATTAATGCTGTGA GGAACAGCCATTATCCCCAACATCCACGTTGGTATGAGCTATGTGATCTATTTGGCATGTACATGATAGATGAAGCCAAT ATTGAGACACATGGTTTTTATGATTGTAAATATTTCAAGCATCCCACTTTGGAACCAAGTTGGGCTACTGCAATGCTGGA TCGTGTGATTGGCATGGTTGAGAGGGATAAAAATCACACATGCATTATTTCATGGTCTTTAGGGAATGAATCTGAATTTG GAACAAATCATTTTGCTTTAGCTGGTTGGTACTGCACTTGGCTCCACCGTCCTTTTATTTTTGCACATGCATAGTTTGGA GAAACTGTTCCGTTTATTTTAAAAATTGCTTACTACTCGTATTCTCTGATTTTTTTTCTTTCCATTTTGTTAATGCATCA GGTTGGATTCGAGGAAGAGATTCAACACGGGTATTACATTATGAAGGAGGTGGATCCAGAACACCATGCACCGATATTGT GTGCCCCATGTATATGCGTGTTTGGGACATATTGAAAATTGCCGATGATCCTACTGAAACACGACCTCTAATTCTATGCG AGTATGGTTTCCTAGTTTCCCTTCAACGACATTATATTTTACTGTTCCTGTTGTTTTCAGTGGTCGACAATTATAGCTTT TTTATTTGTGATGTCCAACTAAAATGACAGGTATTCACATGCAATGGGAAACAGCAATGGGAACCTACATATATATTGGG AAGCAATAGACAAAACATTTGGACTCCAAGGAGGCTTTATTTGGGATTGGGTTGATCAGGTGAGCGGTTCATGGATACCA TGACCAATTGATGAATCATCAACATTGCTTAAAAAAAATTGTCATCTGTACTCTGTCAAAGATATCCTACTTTGCTTGCA TGTAGGGTCTGTGGAAGGTTGGTGCAGATGGTAAAAAGCATTGGGCATATGGAGGTGACTTCGGGGATATTCCCAATGAC TTGAATTTCTGCTTGAATGGCCTCATATGGCCTGATCGAACTCCTCATCCTGTTTTACATGGTAAGCTGACAAATTGTAT CATTCTTTCACATGCCAGCTTCCCAGAGTTAAATGCATCCTTCATTTTTCTCATCGTTAATCATGGTTTTTCTTTTTGTT TCAGAAGTCAAGCACCTATACCAACCAATTAAGGTGACTTTAAATGAAGGAAAATTGGAGGTACTCATAGTTCGTTTGGA TTTTGTGTTTGCGAAGTCTAATATGTGTTTGGTAATTTATTCTAATTTTTTATTTTGCAGATAAAGAACACTCATTTTTT CCAAACAACAGAAGGATTAGAGTTCAGCTGGTATGTTTCTGCAGTTGGATGCAACCTTGGATCTGGTATCTTAAGTCTTG CCCCAATAAAGCCCCAGAGCAGTTATGTTGTCGATTGGCAATCAGGTCCATGGTATTCTCTGTGGGCTTCATCGTCATCA GAAGAAGTATTCCTGTCTATATCTGCTAAACTTTTGAACACTACACGCTGGGTTGAAGCTGGTCATATTGTTTCAACTGC TCAAATTCAGCTGCCTTCTAGGAGAGAAATTTTTCCACATGTAATCTTTTTTAACACGGTGATTTCTTTTAGAAATTAGG CCCTCCTCTTTCAGGTCTGAGTAATGATCTTTTTAGCACTGAGTAACAAGGTTTAGTAATTTATACTATATACTATAATG CTGACATTGCTTCATTTGAAATTTTCTTTTTCATGAATAATTTGTATCCAGGCTATCAATATTAGTGGTGGCACTCTTTT GGCTCAAACTCTAGGAGATACAATCAAAGTCAGCCAGCTAGATGATTGGGACTTAACATTGAACACTAAAACCGGTTTAA TTGAAAGCTGGAAGGTAAATCTGGACTTTGAGTTTATTACTGTACGTCAAATGTTTGATTAAATTGGATTTTTTTGTCAC TTTAGAAATGGAAATGATTGCAGTCTATATTTAAATAAAATAATGGACTAACGCCATCTTACAAATAGTAGGACCTGGCT TCATGAAATTTAGTGAAGAATGTGTTGAATAAGTCATTGTCGATTAGTAAAATTAGTACAACATTTACTGATGAAATTTT AAAAATTGTAGGATACAGCACTGTTGTACGATACATAAAATTAATACAAAAATGTAAATATTAAACAAAAAATTAATATA TTGAATGTTTGAATAAGTCATTGTTGATTAGTAAAATAGTATCATATTACCTTACTATTATGGTATTCTTATCTTTATTG GTATCAAAGTTCAGAAAGTAAAAGTAAAATAAAAAATGTAAAACTTAATTAGAAGTATCTGTAAAGTGTGAAGTGCGTTT GATATGAGTAGTGTCAGCATGGCACAACTACTATTTTGAATTGAAGTGTCCGTGCTTCTATGGTGGTGCTCAGCCCTAGT TAGTTCAAGTTGTTTCCGTCTCTAATTTGCACTGCCCTGTTCCATTCCTAGTTTTTTGTTCATTGGTCTATTGTTCTATT TTTGTCTTAATTTTTGCAAGGGACTGAGAATACATCATCCTCACCCACAGTAATATTTTATTTTCCCTTTTTCTTTTTTT GCTTTATCAAAAGACACTTCCATTTAGTTTCGAGACAAGGGTATAAGTGTCATAGTTTTTGGACTATATTACTTTGTTTC CTCTTTAATAGAAGTGTTGTGGCGTCTCTTATATCCAAACTTTTGTTCGTGACATAACATTGGTATTAAATATTAATATC ATGCTGATAAATGATAGGTAAAAGGAATACCTGTTATGAACAAAGGTATACTTCCATCTTTCTGGCGAGCTCCTACAGAC AATGATAAAGGTGGAGAAGCTGCTAGTTATCTGTCTAGGTGGAAAGCTGCTGGAATGGACACCCTCCACTTCATTACCGA GAGTTGTTCTGTACAGAATATTACACAGAACATGGTTAAAGTGAGGGTGGTTTTTCTTGGTGTTACCAAGGATGAGTCGA AGGTTTTATTTACAACAGATATGACATATACAATTTATGCTTCTGGGGATGTCATAATGGAATGCAATGTGAAACCAAAC CCTGATCTTCCTCCTTTGCCGCGTGTGGGAATTGAAGTGAAGGTGGAAAAACCATTGGATCAAGTAACTTGGTATGGAAG AGGTCCATTTGAGTGTTATCCCGATCGAAAGGCCGCTGCTGAGGTTGCTGTCTATGAGAAGAATGTTAATGACTTGCATG TTCCTTATATTGTTCCTGGGGAATGTTCAGGTAGGGCGGATGTTAGATGGGCAACATTCCGAGACAAATCTGGTTTTGGA ATATATGCTTCTAAGTATGGTAGCTCTCCACCCATGCAAATGAGTGCAAGCTACTATAGCACTTCTGAACTTGAGCGGGC CACACACAATCAAGATCTGATTGAAGGAGACAGCATTGAGGTATATATTACTTGCGTTAATATTAATGCAAATTTTCCTT CCATGACCATTCAAAATGTTGGGGATATTGTACTTGCTGCCCTGATCTCAGGGTCAAAATCCCTAATGTAGTTTCTTCTG TATTTAAAGAACAACGCAAATTGCATCCTCAGCTTATCTTTCAACATTATCTTGATTACTGTTCTCCATGAAGTTGGCTT GTTAATGTACATTTAATGTGCTAGTTTTGAAAGATCAGGCAGAAAATTGCATATGGGGTCCAAAGATTAGAGTCGCTAAG TTCACTTCACAAAAGAATTATTGAAGTTCTTTAATAATTGCAACTAAATGGAATGTACAATTGTGCATTCATCCAGTTTG TGCTGCATTTATGTACATTGTGGTTTATGATATGGATCTCTTCATTCAAGCTATTACGTGATTTGAATGTTATTTACCGT GGTAATCTGCAGTATGAGGTGACAGTGTTTCTTTTTTATTTTTGATTTCAAATTTCTTGAAGTTATTATTAAGCAATTTC CCCATCTTTGATTTATGTTTATTACAGATTCATCTGGATCACAAGCACATGGGGTTGGGTGGAGATGATAGTTGGTCCCC ATGTGTCCATGAGCAGTATTTGATTCCTCCTGTGCCATACTCATTCTCTGTTAGGTTGTGTCCTGTAATTCCATCCACTT CTGGTCATGACATCTACAGATCTCAGCTTCTAAACTCTTGATTTCTTGCATTAAGAAACATCGCGAAAGAAGACCGAAGA CGCCTATGAAGGACTGAATAAATTTCGAAGCTGTTGAAGTTGATGTAGGAAAAATACATTTTGACGCAATCATTTTAGGT GGTGCTTGGTGGTACCTTGATGTAATTTGAGGGTGGATAATTTCAGTACACTTGTTCCATTTCACATCTTGGTTAATAAA TGTGCTGCAACTGTGATGTGAGTAACTTATTGGTCTTATTTAAAGATTAACTGCATAATCAGGTTGCTGATGAGCTTGCA AGTATTGCTCATGGTTTAGAGTTGGGTATCCATGTTTTGGACCATCCACTCCAGGGTGTTCTAAGTTGCTTCTCTTTGAT GTTTCGAGAGTGTCCTTCCCGCGTCTACTCTTGTGTAGTTTTTGCTTTCGGGCCTAGGCCCTCCTTCCAACCAAAAAAAA AAAGAAGGAAATTGGTTCTTAAGCCCCTAAATATGTAAATCATCGGTTGTGTTTGTCCTTAAGTCAGTTTGCCTTAAGGT GGTTGATCTTGCTCAACTAAGAGCTTGGAATTGGCTCTCTGCCAAGGGGAAGGAGTTTAAGTTTTCCCTGTACGAATCGG TGGTGAATCCAAGGGATTGTTTGGCAAGTATCTAATTTCTTGCTTTGAGGTGGGGGGGATTCTTCCAGTGCTACGTTCTG GCTAATTGCTTTGGATTTTATTTACGGTGATGGCAGTTTGGCTAATTGTTACTGCTTCTCTACCTCATTTCACTTAGTCT TGC 

CDS sequence (LotjaGi3g1v0318400.1) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGGTGGCTTCTTCTTCTTCTTCTGTGGCTGGGCCAATCCTCCTTGCTTCACAGAATGGTTACAAGGTGTGGGAGGACCC TTCTTTCATCAAATGGAGAAAAAGGGACCCACATGTTTCCTTGCATTGCCATGAATCTGTTGAAGGATCTCTTAAATTTT GGTATCAACGCAACAAAGTGGATTTTCTGGTTTCCCAGTCTGCTGTTTGGAATGATGATGCTGTTAATGGAGCTCTTGAT AGTGCTGCATTTTGGGTCAAAGACTTGCCTTTTGTTAAGTCCTTGTCTGGATATTGGAAATTTTTCCTTGCTTCCAATCC CAACAATGTCCCTACTGAGTTTTATGAAAGTGAGTTCCATGATTCAGAGTGGAGTGCTTTGCCCGTTCCTTCAAATTGGC AGCTGCATGGATTTGACCGTCCTATATATACAAACACAGAGTATCCATTTCCATTAGATCCTCCATCGGTTCCTGAGGAA AATCCCACTGGCTGTTACAGAATGGACTTCCACCTTCCTAAAGAATGGGAGGGCAGAAGAATTTTACTGCACTTTGAAGC TGTTGATTCTGCCTTTTGCGCTTGGATAAACGGACATCCTATAGGATATAGCCAAGACAGCAGGCTACCTGCAGAGTTTG AAATCACTGATTTTTGTCATCCATGTGGTTCAGACCTGAAGAATGTTCTAGCAGTTCAAGTATTTAGATGGAGTGATGGA TCATACCTTGAAGATCAGGACCATTGGTGGCTATCTGGTATCCACCGTGACGTTCTTCTTCTAGCAAAGCCAAAGGTATT TATCACCGACTATTTTTTCAAATCAAACCTGGCTGAAGATTTTTCTAATGCGGAGATACTGGTTGAAGTAACAATAGATA ACTCAAAAGAAACTTCCAAGGATAGTGTTCTTACAAACTACACCATAGAAGCAGCACTATTTGATTCTGGAACCTGGAAC ACCTCTGATGGGAACCCTGATCTCCTTTCATCTAATGTAACAAACATAAAGTTCCAACCATCGACTGCGCCATTAGGGTT TCATGGTTATATGCTTGTGGGAAAACTGCAATCACCGAAGCTTTGGTCTGCAGAGCAACCATACCTCTATACCCTAGTTG TCACCCTAAAAGATCAAACTGGCCGTGTTGTTGACTGTGAATCATGTCCTGTAGGCTTTAGAAAAGTATCTAAAGCCTAC AAACAGCTGCTGGTTAATGGACATGCTGTTGTAATCAGAGGTGTGAACCGGCATGAACATCATCCACAAGTGGGGAAGAC AAACATTGAGTCCTGCATGGTCAAGGACTTGGTCTTAATGAAACAAAACAATATTAATGCTGTGAGGAACAGCCATTATC CCCAACATCCACGTTGGTATGAGCTATGTGATCTATTTGGCATGTACATGATAGATGAAGCCAATATTGAGACACATGGT TTTTATGATTGTAAATATTTCAAGCATCCCACTTTGGAACCAAGTTGGGCTACTGCAATGCTGGATCGTGTGATTGGCAT GGTTGAGAGGGATAAAAATCACACATGCATTATTTCATGGTCTTTAGGGAATGAATCTGAATTTGGAACAAATCATTTTG CTTTAGCTGGTTGGATTCGAGGAAGAGATTCAACACGGGTATTACATTATGAAGGAGGTGGATCCAGAACACCATGCACC GATATTGTGTGCCCCATGTATATGCGTGTTTGGGACATATTGAAAATTGCCGATGATCCTACTGAAACACGACCTCTAAT TCTATGCGAGTATTCACATGCAATGGGAAACAGCAATGGGAACCTACATATATATTGGGAAGCAATAGACAAAACATTTG GACTCCAAGGAGGCTTTATTTGGGATTGGGTTGATCAGGGTCTGTGGAAGGTTGGTGCAGATGGTAAAAAGCATTGGGCA TATGGAGGTGACTTCGGGGATATTCCCAATGACTTGAATTTCTGCTTGAATGGCCTCATATGGCCTGATCGAACTCCTCA TCCTGTTTTACATGAAGTCAAGCACCTATACCAACCAATTAAGGTGACTTTAAATGAAGGAAAATTGGAGATAAAGAACA CTCATTTTTTCCAAACAACAGAAGGATTAGAGTTCAGCTGGTATGTTTCTGCAGTTGGATGCAACCTTGGATCTGGTATC TTAAGTCTTGCCCCAATAAAGCCCCAGAGCAGTTATGTTGTCGATTGGCAATCAGGTCCATGGTATTCTCTGTGGGCTTC ATCGTCATCAGAAGAAGTATTCCTGTCTATATCTGCTAAACTTTTGAACACTACACGCTGGGTTGAAGCTGGTCATATTG TTTCAACTGCTCAAATTCAGCTGCCTTCTAGGAGAGAAATTTTTCCACATGCTATCAATATTAGTGGTGGCACTCTTTTG GCTCAAACTCTAGGAGATACAATCAAAGTCAGCCAGCTAGATGATTGGGACTTAACATTGAACACTAAAACCGGTTTAAT TGAAAGCTGGAAGGTAAAAGGAATACCTGTTATGAACAAAGGTATACTTCCATCTTTCTGGCGAGCTCCTACAGACAATG ATAAAGGTGGAGAAGCTGCTAGTTATCTGTCTAGGTGGAAAGCTGCTGGAATGGACACCCTCCACTTCATTACCGAGAGT TGTTCTGTACAGAATATTACACAGAACATGGTTAAAGTGAGGGTGGTTTTTCTTGGTGTTACCAAGGATGAGTCGAAGGT TTTATTTACAACAGATATGACATATACAATTTATGCTTCTGGGGATGTCATAATGGAATGCAATGTGAAACCAAACCCTG ATCTTCCTCCTTTGCCGCGTGTGGGAATTGAAGTGAAGGTGGAAAAACCATTGGATCAAGTAACTTGGTATGGAAGAGGT CCATTTGAGTGTTATCCCGATCGAAAGGCCGCTGCTGAGGTTGCTGTCTATGAGAAGAATGTTAATGACTTGCATGTTCC TTATATTGTTCCTGGGGAATGTTCAGGTAGGGCGGATGTTAGATGGGCAACATTCCGAGACAAATCTGGTTTTGGAATAT ATGCTTCTAAGTATGGTAGCTCTCCACCCATGCAAATGAGTGCAAGCTACTATAGCACTTCTGAACTTGAGCGGGCCACA CACAATCAAGATCTGATTGAAGGAGACAGCATTGAGATTCATCTGGATCACAAGCACATGGGGTTGGGTGGAGATGATAG TTGGTCCCCATGTGTCCATGAGCAGTATTTGATTCCTCCTGTGCCATACTCATTCTCTGTTAGGTTGTGTCCTGTAATTC CATCCACTTCTGGTCATGACATCTACAGATCTCAGCTTCTAAACTCTTGA 

Protein sequence (LotjaGi3g1v0318400.1) extracted from Lotus japonicus Gifu v1.2 Proteins.

MVASSSSSVAGPILLASQNGYKVWEDPSFIKWRKRDPHVSLHCHESVEGSLKFWYQRNKVDFLVSQSAVWNDDAVNGALD SAAFWVKDLPFVKSLSGYWKFFLASNPNNVPTEFYESEFHDSEWSALPVPSNWQLHGFDRPIYTNTEYPFPLDPPSVPEE NPTGCYRMDFHLPKEWEGRRILLHFEAVDSAFCAWINGHPIGYSQDSRLPAEFEITDFCHPCGSDLKNVLAVQVFRWSDG SYLEDQDHWWLSGIHRDVLLLAKPKVFITDYFFKSNLAEDFSNAEILVEVTIDNSKETSKDSVLTNYTIEAALFDSGTWN TSDGNPDLLSSNVTNIKFQPSTAPLGFHGYMLVGKLQSPKLWSAEQPYLYTLVVTLKDQTGRVVDCESCPVGFRKVSKAY KQLLVNGHAVVIRGVNRHEHHPQVGKTNIESCMVKDLVLMKQNNINAVRNSHYPQHPRWYELCDLFGMYMIDEANIETHG FYDCKYFKHPTLEPSWATAMLDRVIGMVERDKNHTCIISWSLGNESEFGTNHFALAGWIRGRDSTRVLHYEGGGSRTPCT DIVCPMYMRVWDILKIADDPTETRPLILCEYSHAMGNSNGNLHIYWEAIDKTFGLQGGFIWDWVDQGLWKVGADGKKHWA YGGDFGDIPNDLNFCLNGLIWPDRTPHPVLHEVKHLYQPIKVTLNEGKLEIKNTHFFQTTEGLEFSWYVSAVGCNLGSGI LSLAPIKPQSSYVVDWQSGPWYSLWASSSSEEVFLSISAKLLNTTRWVEAGHIVSTAQIQLPSRREIFPHAINISGGTLL AQTLGDTIKVSQLDDWDLTLNTKTGLIESWKVKGIPVMNKGILPSFWRAPTDNDKGGEAASYLSRWKAAGMDTLHFITES CSVQNITQNMVKVRVVFLGVTKDESKVLFTTDMTYTIYASGDVIMECNVKPNPDLPPLPRVGIEVKVEKPLDQVTWYGRG PFECYPDRKAAAEVAVYEKNVNDLHVPYIVPGECSGRADVRWATFRDKSGFGIYASKYGSSPPMQMSASYYSTSELERAT HNQDLIEGDSIEIHLDHKHMGLGGDDSWSPCVHEQYLIPPVPYSFSVRLCPVIPSTSGHDIYRSQLLNS 

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
Gene3D 17 265 249 4.4E-78
PANTHER 21 1106 1086 0.0
PANTHER 21 1106 1086 0.0
SUPERFAMILY 92 265 174 4.11E-60
Pfam 93 264 172 1.3E-47
PRINTS 188 203 16 9.2E-32
SUPERFAMILY 266 394 129 5.47E-20
Gene3D 266 394 129 1.9E-26
Pfam 266 394 129 1.2E-17
Gene3D 396 677 282 3.3E-102
SUPERFAMILY 401 678 278 5.55E-83
Pfam 401 681 281 4.3E-95
PRINTS 405 419 15 9.2E-32
PRINTS 436 454 19 9.2E-32
ProSitePatterns 446 471 26 -
ProSitePatterns 511 525 15 -
PRINTS 511 526 16 9.2E-32
PRINTS 584 599 16 9.2E-32
SUPERFAMILY 674 784 111 2.01E-22
Gene3D 678 786 109 2.7E-20
Pfam 689 782 94 2.0E-14
Gene3D 800 1092 293 8.9E-93
SUPERFAMILY 802 1092 291 1.51E-83
SMART 809 1090 282 2.9E-106
Pfam 814 1089 276 4.1E-75

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 Catalytic activity Catalysis of a biochemical reaction at physiological temperatures. In biologically catalyzed reactions, the reactants are known as substrates, and the catalysts are naturally occurring macromolecular substances known as enzymes. Enzymes possess specific binding sites for substrates, and are usually composed wholly or largely of protein, but RNA that has catalytic activity (ribozyme) is often also regarded as enzymatic.
Molecular function Hydrolase activity, hydrolyzing O-glycosyl compounds Catalysis of the hydrolysis of any O-glycosyl bond.
Molecular function Beta-galactosidase activity Catalysis of the hydrolysis of terminal, non-reducing beta-D-galactose residues in beta-D-galactosides.
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.
Cellular component Beta-galactosidase complex A protein complex that possesses beta-galactosidase activity, i.e. catalyzes the hydrolysis of terminal non-reducing beta-D-galactose residues in beta-D-galactosides. In E. coli, the complex is a homotetramer; dimeric and hexameric beta-galactosidase complexes have been observed in other species.
Molecular function Hydrolase activity, acting on glycosyl bonds Catalysis of the hydrolysis of any glycosyl bond.
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 LotjaGi3g1v0318400.1, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.

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