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LotjaGi4g1v0298900.2

Overview

Field Value
Gene ID LotjaGi4g1v0298900
Transcript ID LotjaGi4g1v0298900.2
Related isoforms 6
Lotus japonicus genome version Gifu v1.2
Description Xyloglucan endotransglucosylase/hydrolase; TAIR: AT4G25810.1 xyloglucan endotransglycosylase 6; Swiss-Prot: sp|Q38910|XTH23_ARATH Probable xyloglucan endotransglucosylase/hydrolase protein 23; TrEMBL-Plants: tr|A0A0B2QSS8|A0A0B2QSS8_GLYSO Xyloglucan endotransglucosylase/hydrolase; Found in the gene: LotjaGi4g1v0298900
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr4:67291569..67303171) extracted from Lotus japonicus Gifu genome v1.2.

GCATCTGCTGGTAACTTCTACCAGGATTTTGACATTACTTGGGGAGATGGTCGTGCCAAGATTGCCAACAATGGCGACCT TCTCACTCTCAATCTTGACAAAGCCTCTGGCTCCGGCTTCCAGTCTAGAAATGAGTATCTCTTTGGCCAGATTGACATGC AGCTCAAGCTTGTTCCTGGAAACTCTGCAGGCACTGTCACTGCCTACTATGTAAGTATTCTAACTTAATTTCATATGTTA TGTTAATGCATGTCTCATCAGTACTCAATGCAAAATTGTCAATGCTATTAAACTTTCAAGTTTCTAATATGGTTTACATA ATACAGTTGTCATCAAAAGGATCAAATTGGGATGAAATTGACTTCGAATTCTTGGGGAATTTGAGTGGAGACCCTTACAT TCTTCACACCAATGTGTTCAGCCAAGGCAAAGGCAACAGAGAGCAACAGTTCTATCTCTGGTTTGACCCAACTGCAGATT TCCACACATACTCCATTCTTTGGAATCCTCAACGCATTGTGTAAGCACACAAATTCTATGAATCAATGATTCAATGCACT CCCCCTCTTACACATTTTCATTTAACTGATCAATCCCCTGTTGTTCCTCTGTCTCAGATTCTCAGTGGATGGAACCCCAA TCAGAGAATTTAAGAACATGGAATCAAAGGGAGTTCCATTTCCAAAAGATCAACCAATGAGGATATACTCAAGCTTGTGG AACGCTGATGACTGGGCAACAAGAGGTGGTGTTGTGAAGACAGATTGGAGCCAAGCTCCTTTCACCGCATCATACAGAAA TTTCAATGCCAATGCCTGTGTTCGTTCAACTGGGTCAGGAACATCTTCTTGCAGTTCAAACTCTGCCTCATCCAATGGGT GGTTGTCACAAGAGTTGGATTCTACTAGTCAAGATAGGTTGCTCTGGGTGCAGAAGAACTACATGATATACAATTATTGC AGTGACGCCAAGAGGTTTCCTCAAGGGCTTCCCACAGAGTGCAAAACATCTTAAATTATTGCTAGATTAATTTCTTTTTA GGCCATTTGGTTTTTTTGGTTTGCAAGGTTCTTTATGTTGATTCTTTCATTCTTTGAAATATATAATAAATTTGTCAACA CCAGTATGTTTTTGGTGTCTGTAAAATAGCTCATATTTTAATTTGGTCCCTCTAAAGAAAATTCTTCATTTTGTGCCCCC ATAACTTTAGAGTTTTATTTTAGTCTCTACTGTTATTGGGATAGATTCAGCCATGGGTCGCATCCTTCACCTAGAAATCT TGCGAGGAGTCACTCTTTATATGTGTCTTTTCATTGCTCCAGCGATTACTTCTCACTCTCGTGAGTCTCGGATGTCACAA AGAATGATTCTTTTTAAATTCTTCAAAAATGGGCTCATGCTCTTGTGGTTGAGTAAGAAAAGCAGATGTTGTTCCCTTCT CATTAAATTCGATTGGTTTCTCCTCGCGTCATTTCAATATCCCAATCAAAGAGAAATGAATTTGGGTCGACGATGCCTTG CATAAATCACTTGCAAACATAGCTAGGATACAAAGTAAAAGAACGGAGAACAACAAAAGAAATTACTTTGAAGGGTGAAC AGCTTAGGGTTCGAACTCTGAAGAGAGACTAATTTACTAACATTACTAACAACTAATATTTGTCTATAAAAAAAAATTAA AACTAAAAAATCTAACGCTACCATATACCATATGAACAATATTAATGTTCAAAGCAATACTTAGCTGGCTATAAATGGGC AATTGTAACAAAACTTCCTAGGAGAATTTACCTTCATAAATGATTGCTTCCACAAGGGTTTGATACCAACTTTATTGAAT GAACAAATTCAAAAGTAGAACTGATTATATATTTTAGTATTTTGTAATATCTGAATTTAAATGAAGAAAAGATTATACAA CGTGACTAATAAGAGAAAACCGGCATTATAAGAATGATTTTTGTAGTTCTTTTGTTTGGCTGCATTTTGCTCAAAACATG ATGTGCAACCATATGCTCCAACATCTGGAGCAACATGGTGTGTTTACGTATGTTGGTGGTTCAATCTCTGAAATCAAGTT GTTTATTGGGCTGCTGACTGTAGGGGGTTTCAGAAGACTTATCCTATGCTGTGCGTTTTATACTTTTATTATCTTCTGAA GGATTGTTTGTTTTTAATCTTGGCTGAAGTAACAAGATTGATAACGTGTGAACCAAGTCTATCTCAAAGTTTGAATTCCG TTTTGCTTGGTTCTGTTTCTTTATTCTGGTTAGATTTGATTCCTTGAAGATTCTTTCCATAAGTGTTGTTGTGGACTCTA TGACGTTCGGCCCATTGAAGATCCAAGCCTCAAGTGAATGTCTATTTAAGGAGGCTTAACCCTAGTTGCAAAGTGTGCGT TGGGCACCCAAGGATTGTGCTTTTAGGGTTTTGTTTTGTGAGTCCTTGTTCTGTTATTTTGTACACCTCTCTACTGCCTC CATTGATAATCATATGGCTTAGAGTTGGTTTGTTTAGTTGAGTTGTAATCTCTTCAAATATGTGTTTGATCTTGAGATCA TCTTTGCTCTTGTTGTGAGTTGTAAGGGATCGGTCACTGTGGCAGTGATCATTAAGAGTTAGGGGAAGTTTCCTCGTAGC TTAGAGGGAAGGGCTAAGCTAGATTCACTACTTGTAATAGTGGTAAACATTGAAGAGGCTCTATACTAAGGGGGAGTAAC TTAGGTATAGGAGGGACTTTCGTGTATGACCTGAGAGCTATTACTAAGATAGTGAATTGACTCCTGGATTGATATCCTCC AGACGTATGTGTTTTGACACTGAACTGGGTTAACAATTCTATGTGTTTTTTGGTGATTTATTGTTGCTACTGTGCTGTTT CTACTGTATTAAACGTTGTGGCTTAATTTTTGTACTGTTGTGCAATTGTCGAACCGATTGTCCCAACATCGCGTTCGACA TCTGTCCTGTGCACGAACCAGAATTTCAATTTTATTAACCAACTCCTATCCAATTTAATTATGTGAGTCAATTCTAAGGA CTCGTTTGGTATGATGTATAGTATAAGGTCTGATTGTATTAAGCCTGATAGGATAAGGCCTGATAAAAATTTTAATATTA TACAGTGTTTGGTCATGCACCGCATAATTTGGTGGCGACAGTGGTGATGTGGTAGTGGTGGTATTGGAAGGTGATGATGG TGGCGGTACGTGGTGGTGGATGGTGGCACCGGCATTGGTAGTAGTGGCGGTGGTGGTGGATGGTGGCAGCGGCGGTGGTA GTAGTGGCGGTAGCGGCAGTGGTGATGGGTGGCAGTAGTGGTGGTGGTGATGATAGTAGCAGTGGTGGCGGCGATTATGG TTGTGGTGGTGGGTGGTGGCGATGGTGGTGGAAGGTGGTGGCGACAGTGGTAGTGGAGGGTGTTGGTAGTGGATTGGTGG CAATGGTGGTGAAGGTTGGTGACGGTAGTAGTTGCGGTAGCGGCGATTGTGGTGGTGGTGGGTGGTGGTGACACTAGTGG TGGAGGCAGCGATGACAGCGATGGTAGTGGCGGCGATAACGATGACAATATCAACGATGGTGGCAGTGGCGGAGTGTGGT GGTGGCGGCAGAGGTAGTGACAATTGTGGTGCGGTGGTGGTGGTAGTAGTGGTATAACAATGTTGATATCAACGATGGTG GCAGCGGTGGAGCGCGGTGGTGGTTGCAACGGTGGTGGTGGAGGGTGGTGGTGGTTGTGGCGGTTGATTAAATATATTCA AGTAGTTTATAAATCACACTCTTATCATGTCTTATCGAACATCTATAGGGTAGATTAAAAAATCCATCATTTTGATGTAT AAGTCTATACAATACAATGTGAGCACCAAACAATGGATAAACTCATAATTTATTGTATAAGCTTATACTATCATGCCTAA TACGGCGTACTAAGCGAACCCTGTGGGGCTGTTTGGTACGCTGTATAGTATAAGGCCTGATAGTATAAAACCTAATTGTA TTAGGCCAGATAGGATAAGGCCTGATAAAAATTTAATACTATACAGCGTTTGGTCATATACTATATAATTTGGTGACAAC ACTAGTGGTGTGGTAGTGGTGGTATTGGAAGGTGATGATGGTGGCAGTGGTAGTGGATGGTGGTGGCGGCGGCGGTAGTG GCAGTGATAGTGTTGGTGGATGGTGGTGTTGGTGGCGGTGGTGGTGGAGGGTGGGGGCGGTTGCAGTGGTGGTATGAAGG TATCAACGATGGGGACAATGGTGGAGCATGGTGGCGGCGACGATGACAGTGGTGGTGACGGCAACGGTGGTGGTAGTGGT GGCAGTAGTGGCAGCGGTGATGGTGGAGGGTGGTGGTAGAGAGTGATTGTAGTGGCGATAACGATGACTAGAGCGTGGTG GTGGTGCTGTGGCGACGATAGTGGTGGAGGCGGTGGTGGTGGAGGGTGGTTGTGGTAGCAGCGACAGTGGTGGTGGTGGT GCCAGCGACGGTGGTGGTGGTGGTGGAGGCGGCGGCGGTGGTGGAGGGTGATTGTGGTGGCAGTTGATTAAATATATTGA AGTAGTTTATACCTTGCTCTCTTATCATGCCTTATCCATTAGCTATAGGGTGAATTAAATAATCAATGATTTTGATGTAT AAGAGGAGATTGATGTATAAGCTTATACAATACAATGTGAGTACCAAATAATGGATAAACCCATAATGTATTGTATAAGC TAATACGGTGTACCAAACGAGCTCTATGTGTTTTAGGTGTCCAGCCTAATTATTTGTAAATCGCAAACTAATTCCTTAAC TAAGTGAACCTATCAGTTGCATAATGCTCCATTTTTCCTTGAGCTCAAACGCAGCAACATTGCCTCTGCCTAGGTAACTA GAGTAGTAATAGGGAAGATGTGCTCTTACTCATTACAATAATTATAATATATGTTGCCATATCAAGTAGAAATTACATTC AGAATCCCCCAACAAGCTAGAGAACATGATAATCAAAAGGCAATACATAAAAGTATTAAAAACCCTAAGTTATTGATTGA ACTATACTTAAAAACTAGTGAAAATCACCAACAAACTAAAGACTATCACACATGATTCTATGAATATTACATTTGACTAA TTCAAACTCATAAAAATTACATTTTTTCTTAAATTATCACCAATGCAAATATTTTTTTAATTAAGTAAGTGCCTCTTAGC GACAAGAATGTCGGACTTGGGTTTCCAATCCAGTAACCGTCTATCATACAATTAGAGGAGTAAAACTAATTATTCTATGT GTGGCCCAAGTACTTAAACCCAAATTTCATACTTATCACCTTGGTCATATAGGTCTAAATGTCAATAACTCAAACAATGT AGATACCTATTGTGGGTTGATCGAGATGTAGATATTTAATTGACATATGTAATTTGTGGCGGTTTAAAACTGTCAATAAA TAAAATTATGTTTCTAAAATTGTTTCGTGTATCGATAAATAAATATATGTTACTTCTAGTATTAATGCAAGTAATGAGGT GAAAGGAAAAAGAAAGTGTAAATGAATTTCTTTTTCATATTGGAAGGGCAAATATATCTACCAGTTTTTACCACTTGAAT CATCATTGAGAGACAAAGTGCAAATGAATTAAGAACGCCTATTTAGATCTTAGTTCTGGGTTCTCACCGCCAATGGCTTG ATGGCCGTGTTTGCATAATTATTATTCGGCTTGGATAGGTTGTAGTGCATGTCTCCAGCATATGTTATCAGACCCACTTT GGAACCACCTCTGCAATTTCAATTATCATAAATAAAACAAGATGAAACCAAACCATTCCTCATATAATAAAGATTTTTTT ATCTTTCAGCCAGCCAGCGGTATCTACGGAGAAAGGAGTTTTACGTGACTAATCTGACTCAGAATACGGTAGTGATATCT CTAGTCATAAAGATATTACTTTTTACCTTATAGGGAATCGAACCCGGAATAAAAGCATAGATGAAATCCCTTAAGAAAAT ATACATTATTCGCCACTTGTGTTACCCTTATAGTTCTCAAATAATAAAGATGTTGGATTGAATGATGAGCATGAGTAACA CACATCACATGACAGCCAATTGCTAAATATTATAATGCTTGTTTCAACTCTATGAAAACTACAGTTGTCCACACGCAGTG CAAAGCTTGCTGCACCTTCCTTTGCTCCTTCCTTTCACTCGTTTTCACAAAAACATGCACCAGCAGCAGCACTATAAATA CCAATCCTCTGTACCTCTCTGCCACAATCATCCTTTCAAGCCCCCTTCACTTTCATATTTCATTACTACTAGAACGCTAC AACTTCCACACTTCATATATTAATTGTCTATATACTAATTCAAATCAACCATGGCATTTCCTCATGTTTCAGTGCTTTCT CTATTGGTATTGTCCTCTTTCATGGTGGCATCTGCTGGCAACTTCTACCAGGATTTCGACATTACTTGGGGAGATGGTCG TGCCAAGATACTCAACAATGGTGACCTTCTCACTCTCAATTTTGACAAAGCCTCTGGGTCTGGCTTCCAGTCCAGAAATG AATATCTGTTTGGCAAGATTGACATGCAGCTCAAGCTTGTACCTGGAAACTCTGCAGGCACTGTCACTGCCTACTATGTA AGTACTCCAAGTTAATTTCATATGTTCTGTTTATGCATGTATCATCAGTACTCAATGCCAAATTGTCACTGCTATTAAAC TTTCAAGTTTCTAATTTGGTTTTTACATAATACAGTTGTCTTCAAAAGGTTCAAATTGGGATGAAATTGACTTTGAATTC TTGGGGAATCTGAGTGGAGACCCTTACATTCTTCACACCAATGTGTTCAGCCAGGGCAAAGGCAACAGGGAGCAACAATT CTATCTCTGGTTCGACCCAACTGCAGATTTCCACACTTATTCCATTCTCTGGAATCCTCAACGCATTGTGTAAGCACACT AATTCTATATATGAATCAATGATTCGCTACACTTCCCCACTTAGCACATGTTTTCTTTTTGAAAGTTCCATTTAACTGAT CAATCCCCTGTTTTTCCTCTGTTTCAGATTTTCAGTAGATGGAACCCCAATCAGAGAATTTAAGAACATGGAATCAAAGG GAGTTCCATTTCCAAAAGATCAGCCAATGAGGATATACTCGAGTCTCTGGAATGCTGATGACTGGGCAACAAGAGGTGGT GTTGTGAAGACAGATTGGAGCCAAGCTCCTTTCACTGCATCATATAGAAATTTCAATGCCAATAATGCTTGTGTTCGTTC AACTGGGTCAGGAACATCATCTTGCAATTCGAACTCTGCCTCATCCAATGCGTGGCTGTCACAAGAGTTGGATTCAACAA GTCATGACAGATTGAGTTGGGTGCAGAAGAATTACATGATTTACAATTATTGCAGTGACACCAAGAGGTTTCCTCAGGGA CTTCCCACAGAGTGCATAACATCTTAAGTTCTTGCAAGATTAACTTCTTTTTAGGCCATTTGAATTTGGCTTGTAAGGTT CTTTATGTTGATTCTTTTATTCTTTGTTATTTGTATTACAACTTACAAGAAATAAACATCCGGAATCATTTTTCATGGCA GTGCTTTTTGTTGACACATGACATCTCCCACGGATAAAAAGACTAAAGTCAAGGCGGATACATGGTGGTATAATATTAGG TGAAAATTAATTAAAGGCTTAAATAAGATGTTGATCATTATTAATAAGATAAGTTTGAATATGGTCCCCTCGGAAGTAAA GTTTGAAATCAATCCCTACTATTTGAGAAACTATCTAATTTTAGTCCATGCCAGTCGCCAGAGGTGGTGGTCCAATGTTC TTTGCCACATGGCTGCACTGATCGTACGTGTAATCGTCTCATGGCTTCACTAATATCGTCGGGTTATGTTAATTAGTGAG TTAGTGACACAGGTCACCGAACAACAACCTCCAATAGGGATCAAAATCATGTAGTTTCTCAAATAGTGGGGTCTGAGTTT AAACTTTGCTCTGAAGAGAGACATTTTCAAACTTAGTGTGTTATAGATGAAGCAAAACTTTATTTAACCCTTAATCAAAT AACTTGAAACATGTTGCACCTATTAATTCAATATGTTAATTGATAAAAGCACATTTTTTCGTTTATGAAGTGAATTATAT TTAAAGTTAATTAAAAAAACTTATTTGAAAGCCACTCGACCAAAATTGAGAATCCTAAGCACTCAACTAAAATAACACTC AACCAAAAACACTAAATTTATTTGTGTAATTTTTATTGATATTCCCATATGATCTTCTAGAAATTTCAGCATGTAAATCC TGTGAATGAGTGTGGTGCTGTTAAGCTAAATGCACGGTGGTCAACTTGACAGTGATCATGACGGATGACAATGCAGTAAA TATCCATGATAGGGGATGTAATTGCAAAAGTGACTCTTACGCTAAAGTTAACTCAAAATTATAGAGAAAATCTCAGTCTA AAATAGCACATAGAGAGCAAATTGTGTCTTTGCCTTACAATCCTATCAAACTTATACGTAATGGTTGCCTGATTAATTGT GTAGGTATTTGCCGTTTACTAGCATGTCATATGGGTGGTATCAATGGTTCAGCCTTGCTTACGTTGGATTGAACATAAGT CTAATTTATATTGAGCTTAGTTAGTTACACAAATAGAAGTCTTATGCTTTGCTCATTCTGATCAGCCAACTTTACTGTCA CCGATTTTTTAGTCATTTGGGTCGACCAGGATGGTGGTGATCCAAGTGATTATTTGGACAGACTAAGATTAGATCCCTTC AGACCTAGTTTGAAATGCAATGCAAATGCATTATATATCAAGATGAGAAATGAAGTTAAATTAAGTAATAGAATGTGCCA GTTCAATGAATTCCAAGACGATAATTTAAAAGTTAATATTCAAATTCATTTAAAAGGTCAAGTTGAAATTTTTGACTTTT TTTATGCCGATCAAGATGTAATCGTTCTCAGTAATTACTCAACGTCAAAGGTAGTATCAAGTAGAAATTACAAACAGAAA CCCTGATAAGCTAGTGAACATGATGACCAAAAGAAAGTGCATAAAAGTGTTAAAAACCCTAATTTATTGACTGAACTATA CTAAAAAAGTAAAAATACCATATAATCAAAGAGCTATTATTCATTCATACTCTCACTGAATTACTGAATTATGATATACC CACACATTTCTTTCTCTTACTTATAATTTTTATTCTTTTTTCTTTCTTTTTTATTTTGCATTTTTTGTTAGTATGTTACA TCACCTATCATATCATTCATTTACCTCTTTTTTCTTCATAACTTTGTGAGGTTAAGGTGAAATTAATATGTGAAGAAATT GTTATACTCACACCTCTCTTTCTTTTACATATCATTTTCATTCTTTTTTCTTTCTTTTCCCTTTATGCATTTCAAGTCTC AACACCTATCATATTACTCATTTACCTCTCTTTTCTTCATACCTTGATAAAGTGGACGTGAAATTAATATGTGAAAAAAT TGTTATTCCATCGGAACAACCATACATATTCACCTCAAAACACTAAAGCAATAGATAAGTGAGTCCTCTCACTTATAAAT TGTTCAATTCTAAACCCACCATTATCTATTCTATATAAAACTATTTCATTCACACTTTTACTTCAAAGGAAAGAAGCAGC AAATTCACCAAAAGCAACTGTTAAGTTCTGACAGACCAATTAATCGGTGTGGTGTACCTACCCAACACAGGCTATCTCCA ACAAAAACTTTGAGACCCCACTTTGGAACCGACCCAATTGCGCGTCCTAAGATATTGCAATCAATCCTTTATTGATTCAG TACATAAATAAAAAGATTTTGGATTGGTTTCAAGAAATGAACGTGAATACATACATGACAGCTTATTGTTCAATATTTTA TTTTTTGTTTCATATCTTTTGAAAACTACAGTTGTCCACCGCAAGGCACTTTCCTCTGCTCCTTCCTTTCACTCGTTTTC ACAAACACAAGCATCAGCACTGAGCAGCAGCACTATAAATACCAATCCTCTGTACTTCTCTGCCACAATCATCCTTTCAA GCTCCATTCACTTTCATATTTCATACAGCACTAGAAAGTTACAACTTCCACACTTCATATATTGTCTGCTACAAATCAAC CATGGCATTTCCTCATATTTCAGTGCTTTCTCTATTGGTATTGTCCTCTTTCATGGTGGCATCTGCTGGCAACTTCTACC AGGATTTTGACATTACTTGGGGAGATGGTCGTGCCAAGATTGCCAACAATGGCGACCTTCTCACTCTCAATCTTGACAAA GCCTCTGGCTCCGGCTTCCAGTCTAGAAATGAGTATCTCTTTGGCCAGATTGACATGCAGCTCAAGCTTGTTCCTGGAAA CTCTGCAGGCACTGTCACTGCCTACTATGTAAGTATTCTAACTTCATTTCATATGTTATGTTAATGCATGTCTCATAAGT AGTCAATTTCAATGTGTCAATGCTATTAAACTTTCAAGTTCCTAATTTGGTTTTGATTTACATGATACAGTTGTCATCAA AAGGGTCAAATTGGGATGAGATTGACTTTGAATTCTTGGGGAATCTGAGTGGAGACCCTTACATTCTTCACACCAATGTG TTCAGCCAAGGCAAAGGCAACAGAGAGCAACAGTTCTATCTCTGGTTCGACCCAACCGCAGATTTCCACACATACTTCAT TCTTTGGAATCCTCAGCGCATTGTGTAATAATAGAGATAATGAAGTGGTAACTCAAAGAAGTCCCACATTGCCAAGATTA GCAAGTGCACAAGTGCATATATAATAAAGAACACACACACTCATGGCCTTAAGCCTAAGGTTTTGTGGTGTTGTGTGGTT CTAACTAAGGATTTCTAACATGTAAGCACCTAGCACCTATCTATGATCAATGATTTCCTTCAACATGTTTTCTTTTTTGT ATGTTCTTATTAACAGCATAAACTAATCAATCCCTTGTTTTTCCTCTGTTTCAGATTTTCAGTAGATGGAACCCCAATCA GAGAATTTAAGAACATGGAATCAAAGGGAGTTCCATTTCCAAAAGATCAACCGATGAGGATATACTCAAGCTTGTGGAAT GCTGATGACTGGGCAACAAGAGGTGGTGTTGTGAAGACAGATTGGAGCCAAGCTCCTTTCACTGCATCATATAGAAATTT CAATGCCAATGCTTGTGTTCGTTCAACTGGGTCAGGAACATCATCTTGCACTTCCAACTCTGCCTCATCCAATGCGTGGT TGTCTCAAGAGTTGGATTCAACAAGTCAAGACAGGTTGCTTTGGGTGCAGAAGAATTACATGATATACAATTATTGCAGT GATACCAAGAGGTTTCCTCAGGGCCTTCCCACCGAGTGCAAAACATCTTGAATTCTTGCTTAGATTAAATTCTTTTTAGG CCGTTTCAATTTGTTTGGTTTGTAATGTTTTTCATGTTGATTCTTTCATTCTTTGAAATATATTAATTTTTCATTGTTCA TGGCAGTGCTCTTTGGAATCGTGTGTTATTGCACGGATTAATTTATAATATTTGATAAAAGCATAATTTTTATAAAGAAA GTG 

CDS sequence (LotjaGi4g1v0298900.2) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGCAGCTCAAGCTTGTTCCTGGAAACTCTGCAGGCACTGTCACTGCCTACTATTTGTCTTCAAAAGGTTCAAATTGGGA TGAAATTGACTTTGAATTCTTGGGGAATCTGAGTGGAGACCCTTACATTCTTCACACCAATGTGTTCAGCCAGGGCAAAG GCAACAGGGAGCAACAATTCTATCTCTGGTTCGACCCAACTGCAGATTTCCACACTTATTCCATTCTCTGGAATCCTCAA CGCATTGTATTTTCAGTAGATGGAACCCCAATCAGAGAATTTAAGAACATGGAATCAAAGGGAGTTCCATTTCCAAAAGA TCAACCGATGAGGATATACTCAAGCTTGTGGAATGCTGATGACTGGGCAACAAGAGGTGGTGTTGTGAAGACAGATTGGA GCCAAGCTCCTTTCACTGCATCATATAGAAATTTCAATGCCAATGCTTGTGTTCGTTCAACTGGGTCAGGAACATCATCT TGCACTTCCAACTCTGCCTCATCCAATGCGTGGTTGTCTCAAGAGTTGGATTCAACAAGTCAAGACAGGTTGCTTTGGGT GCAGAAGAATTACATGATATACAATTATTGCAGTGATACCAAGAGGTTTCCTCAGGGCCTTCCCACCGAGTGCAAAACAT CTTGA 

Protein sequence (LotjaGi4g1v0298900.2) extracted from Lotus japonicus Gifu v1.2 Proteins.

MQLKLVPGNSAGTVTAYYLSSKGSNWDEIDFEFLGNLSGDPYILHTNVFSQGKGNREQQFYLWFDPTADFHTYSILWNPQ RIVFSVDGTPIREFKNMESKGVPFPKDQPMRIYSSLWNADDWATRGGVVKTDWSQAPFTASYRNFNANACVRSTGSGTSS CTSNSASSNAWLSQELDSTSQDRLLWVQKNYMIYNYCSDTKRFPQGLPTECKTS 

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
CDD 1 211 211 8.87031E-131
Gene3D 1 214 214 4.7E-89
PANTHER 1 213 213 7.1E-139
PANTHER 1 213 213 7.1E-139
ProSiteProfiles 1 142 142 25.208
SUPERFAMILY 1 213 213 1.58E-73
Pfam 2 134 133 4.8E-49
ProSitePatterns 28 38 11 -
Pfam 167 211 45 3.2E-21

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.
Cellular component Cell wall The rigid or semi-rigid envelope lying outside the cell membrane of plant, fungal, most prokaryotic cells and some protozoan parasites, maintaining their shape and protecting them from osmotic lysis. In plants it is made of cellulose and, often, lignin; in fungi it is composed largely of polysaccharides; in bacteria it is composed of peptidoglycan; in protozoan parasites such as Giardia species, it's made of carbohydrates and proteins.
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.
Biological process Cellular glucan metabolic process The chemical reactions and pathways involving glucans, polysaccharides consisting only of glucose residues, occurring at the level of an individual cell.
Molecular function Xyloglucan:xyloglucosyl transferase activity Catalysis of the cleavage of a beta-(1->4) bond in the backbone of a xyloglucan and transfers the xyloglucanyl segment on to O-4 of the non-reducing terminal glucose residue of an acceptor, which can be a xyloglucan or an oligosaccharide of xyloglucan.
Cellular component Apoplast The cell membranes and intracellular regions in a plant are connected through plasmodesmata, and plants may be described as having two major compartments: the living symplast and the non-living apoplast. The apoplast is external to the plasma membrane and includes cell walls, intercellular spaces and the lumen of dead structures such as xylem vessels. Water and solutes pass freely through it.

Expression data

Expression pattern

Expression pattern of LotjaGi4g1v0298900.2, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.

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