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LotjaGi1g1v0657200.1

Overview

Field Value
Gene ID LotjaGi1g1v0657200
Transcript ID LotjaGi1g1v0657200.1
Related isoforms 1
Lotus japonicus genome version Gifu v1.2
Description 4-alpha-glucanotransferase; TAIR: AT2G40840.1 disproportionating enzyme 2; Swiss-Prot: sp|Q8RXD9|DPE2_ARATH 4-alpha-glucanotransferase DPE2; TrEMBL-Plants: tr|G7L4U3|G7L4U3_MEDTR 4-alpha-glucanotransferase DPE2; Found in the gene: LotjaGi1g1v0657200
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr1:121731183..121740869) extracted from Lotus japonicus Gifu genome v1.2.

ATTTACCTACCTAGTAGCAAGTAGTAGTACTAGAGATATGATTGATCTATGATCTATCGAGAAGCCAGATCGTAATAAGA AGCTTTGGTGCGGTGGAGCAGCAACTGACCCCGCCAACACAAGAAACACCTTTGTCTTTTCCACAGGTGCTACACTCTCC CGTGAAAGAGACATTGACGGCCATGCTTCACCCTCACCAGGAAAAATAATATCATCACACACCATTCATTACAGCCAGAA ACGTCTCTGTTCTGTTCCATTTCACACTCTCACTCCTTGTTTCTTCTCACTCTTTCTACTTCTGGAAAATCTCATTTTTA ATTATTTATATATTCACAATTGAAGACTTGCCGTATCATATCTTCTGGTTGAAGCAAAGGTGAGTTGAAAAGATTAGATT TTTCATCTGCCCATCTTCATTTTCGTAGAAAAGATTAGATTTTTCAAGTTCTTGAGAGTTTTCTGTCTCTATAATTTGGT ACACTCGAATTCTGGTTAATGGGTATGTGCTGTTTGGTTTAGAATCAAAGACCCACCTTCTGTTTGGTTAAACAGATCAG AAGAAATTTGTGAGAATAGTTACATGTGAGAGAAATGTCAGAAATTTAAGCATTTCAATAAACAAAAATTGGAACTTGGG TTTTGGTTAATTGAGGGTGTGAGCTGTTTACACTCAGAATATTGCAACTTTGGATTTGTCTGTTGTTGCATCACCACCAC TGATAATTGCAATTTTGATTTTTATAAATATTTCATTTTTAGCCAGAAGCTGAAGCTATGGTGAATCTGGGATTGTTTTC TTCGAATAAGTCTGTGAGTTCAGTGAAGGTAACCTTTCGGATACCATATTTTACCCAATGGGGTCAGAGCTTGCTGGTGT GTGGTTCTGTGCCATTGCTTGGTTCTGGGAATGTGAAGAAGGGTGTGTTGCTCAGTCCATCTCCTCAAGGGTCTGAGCTC GTGTGGAGCGGAAGCATCACAGTGCCAAGAGGGTTCCAATGCCAGTATAGCTATTATGTTGTAGATGATAACAAAAATAT TCTGAGATGGGAGATGGGTAAGAAGCGCGAATTGAACCTTCCTGAAGGTCTTCAGAATGGTCAGGAGGTTGAGTTCCGTG ATCTTTGGCAGGTGCTTCCTTTCTCTCTTTCCACATTTCTCTGTATCGCTTTCAAGTAATTCTTTCTGAGGTTGCTTTTT GTTGCTTCTGCGAAATATGTACGAGTTTTGCTGCCATTCCTAATAAATATATTATACAGTAGAAGACAAAATTATGGCAC TTGAGTCATCTTGGACAAATTGTACAGATTCTATGCACACTTTTCATGTCATTCCACTTGGGTTCATTAGATTGATATTT CTCAGTCATATACTTTGTGCAATTTTATTGTGTTTTTGTTTCAACACTTTCCATCTGAAAGCAAAACTTACTTGTAAAAC GTGCAAGATTTGCTTATCAGAAAACCTTGCACTTCATCCAGATCTTGTGCAGAACCTATGCTTTGCATTAAGGCGACTAA AAGTATATTTCAGATTTGGGGGGGGGGAGCAGTTATTTATCAAAGAAAAAGCTTGATGTAGCATGTTATTTGACCCAGTT CTTATTCTATCTGACCTCATTGGAGGTGGGTGTAGTTAAAGCGTATCACATTTAAAGTGTGGAGATGCTCGGACATGATA TGAGTATGCTGCGGTTGTAAGGAGCAATGTGTGTATAACATAAAGCGCCTAAGCAGTATCATTTTCGCAAAATGAACAAC AAGGATATGGTCTGTTAGGTTGCTTCACACATCAGGGGTCTTTTTTCTTAATCTTTTTAATTAAGGTGTGGAAATTACTT CTGGAAGTTGAATATAGTTCTCTTTCCTTATATAATTCAATAGATTTTAGTTAGGATAAAAGCATTAGTTTTTCCCCAAA TATCTTCTCAAGATATTTCCTTGTTTTATCATCAAGTCCAGACTGGCTCAGATGCTCTCCCTTTCAGAAGCGCTTTCAAA GATGTTGTTTTTCGGCAAAGCTGGGATTCGTGCATCACAGGAGTCGATCACACAAATATTGAACCAGAAGGTAGGTTTTT GCAAATTATTATTTTTTACCTGTTTTTTTGGGGTGTGTGTGAAGGGTCAGTTCATTATTTTTCTGATAACTCTTATTTGA CTTCTGATGACCAGCTGAATCAATTGTCGTCCAATTCAAAATATCCTGCCCAAATATTGAGAAAGACACATCAGTGAGAC CTTTTTATCCTTAAATGACTTATCTGCATGGATCGTGAATTCATTAAAAAACCATTTCTGTCTGCATATAATGATTCCAT GAATTATTTACATCTCTTTAAATTTTGCAGTTATGTGTGATTGGTAGCAATACAAAGTTGGGGCAGTGGAAAGTTGAAAA TGGACTAAAACTCAACTATTTTGGTGAATCTGTCTGGCTAGCTGAATGTGTGATGCAAAGGAGCGACTTTCCAATAAGAT ATCCTTTTTGGACATTTCATCCTGAACAATATGATGAACTCATGCTGTCATTAACTTCATTTGTTGCTAACAATATTCTT GTCAAGCTTTACATTCTTCCTTAACAGCAATTCTACATATAGATATTGCAAATATGGCAGGTCTGGGAACTCCTCTATAG AAGATGGTCCGAATCGAGAAGTCTCCATTAACTCCTCAAGGAATGAGGCAAAATATATTTTTCTTTCAGATGGCATGATG CGGGTAAGTTGTGAAGTTTACATTGTGGGTATTGATGATTGTGCTTTTTCTCAAATTATGATTCTAATATATTGTTGGTT TGCTTTGCTAGGGAACACCTTGGCGTGGTGCTGGTGTAGCCATTCCTATGTTCTCTATTAGGTCGGAATCTGATCTGGGA GTTGGAGAGTTTCTTGATCTTAAATTACTAGTTGACTGGGCGGTAGCATCTGGATTCCATTTAGTTCAACTTTTACCAAT CAATGATACATCTGTGCATGGGATGTGGTGGGATTCTTATCCATACAGGTAGAACAACACCTTCAAATTAATTGTAGACA TTTGATAAACATATAGAGATCGACACCCTTTACATTATCAATCATGCAAACATGGATTTTAGTTCTCCGCAATAAATGAA AATATTGGAAACTGATAGAACTTGGTAGTAAAGAATGGAAATAATGGACTTCTTAATTCAGAGTTAACCCATTGTAATAC AGTTAAATAGCCAGAAAAATGCTGAAAGAATGAAAAACTATGGGTCCTAAATGTCAAGGGTCTCAATAACCCCTTCTCCA CTATTTTCTTATATTTATCCCACCTTATAGTGGTGATACCAGAATCATTCTCCCTCCACTCAGATCATGCCAAATGTCCC CCTCTCATATACCTGTTCACCTCAGTTGAGAGCAGCCCTTGTTTCTTCCTTCTACTGTAGACTTGAGTTATGGACTTACA GGTGTGTCAGAAACTCTGGTAAAATGGAAAAAAGATAATTAAAGATGTAGGAAGTTGAAATTTCCAAAATTTGCTGAAAG TTACTAAAGGCCGCATCTTTGATCTCCTTACAACTTTGGGTTGGCATGTGTTTGATTTCTCAAATTTGGTATTTTCTTTT TGATTTAAAACTATATCAAACTTTTATTTAGATAAGGTACAAACTGGCATTAATGTTTTTACACTTATGCTGGAAAAAAG ATTTCTTCTGACAAATTATTGTTCCAAACAATTCATAAACTAATTGTTTATGACTTGAAGTTTTGATCATATGGTTTTTC AGTTCTCTCTCAGTATGTGCATTGCATCCATTGTACCTGAGAGTCCAGGCACTTTCTGAGAATATACCAGAGGAGATCAA GGTTATCATTTGGAATTTTATTCTCAATTGAATAGCATTCATATCAACTTTGAAATGCTGATATTTGAAATGCTTTGCTT CTCCTCTTTACAGCAAGAGATTGAGAAGGCAAAACAGCAACTGGATGGGAAGGTAATTCTATCAAATGTTTATATATATA TTGACATCATCAAGAAGGGTTCTCTGCTTTATATATATGCATCATTATAATAAAATGCTGTCACAAAGTCTAAATAATTT TTCTTTTTAATCCGTCAAAAAATTGCTGTTGTTTAGAACAAAGTATTAATTCTAAGCAAACACCATTATAACCTGATTAT ATTTTTATATAAGAAAAGATGTGCTGCTAAGGCTGTAAGGATTAATGGTGAACTTTTTTTGGTGTTCAAAGTCACTCCAC TCACTTTTCATTTCCTTCAAAGTGAATGGCAATAAAGCATATTTATATGGAATTAATATTGCAAATGTTTTTGAATTTTA AAACTTTTTTATTGAAAAGTCAAGTGGCTGCCACAATTAGTTTGCTAAAATACTTATGAGATTCACTTCTAGGTTTGTAA TAAGAGAAAGCCAAATGAATATCCTTTCGGCTTACAGATAATTATGATGTTGCGGCGTTTGTTTTCACCTGTATAATTAA ACTGAGTACTTTTAAAATTGGGATCGTTATATTTGGCTATATTTCGGTAAATATGTTGTTACTGCCATCACCATTTTTAT ATGCATACATATTGTTGGATGACAATTTTCTGTGGTGGTTGATTCTATTTGGGTCCTTACAGGATGTTGATTATGAAGCT ACAATGGCTACTAAACTCTCCATTGCTAAGAAAGTTTTTGCTCAAGAGAAAGATTTGATTCTTAATTCGAGTTCCTTTCT GGAGTTCTTCTCTGAGAATGAGGTCTTACTACTGCATGATATCACCTCATGTTTTGGCAACATAGTTTTTATCTTTCTTT ATTTATCTTTTTGTTTCTCTTACCCTTTCCCCTTTCTTGATATGAATTTGTCATAGTCAATTGTTTACTGTCATTTTATT TAAATTGCTACACTGACTCAGATTTGTTCTTGATGGTAACAGGGTTGGTTGAAACCCTATGCTGCCTTCTGTTTCCTGCG GGACTTTTTTGAAACATCAGAGCGCAGTCAATGGGGTCGTTTTGCTCATTATTCCGAAGATAAAGTATTTTTCTTTTGTT TTTTTGTTTGTTTGCTTTCATTATTTATTTTTTCAAATTCGGTCTCGTTACTTTATGTTTCCCATTTTTTACAGCTAGAG AAACTTGTATCCAAGGAAAGTCTGCACTACGAGATAATTAGCTTCCATTACTATGTTCAATACCATCTACATTTACAAGT TAGTTGTTATATTGAACCTTACTGTAAGTTCTTCATGGCAGTCAAATCATTGAACAAAAAATGAAAACTTATTGTCTGGT TTGTCACATTACAGTTATCAGAAGCTGCAGAATACGCAAGAAAGAAGGGAGTCATTCTAAAGGGAGATCTTCCTATTGGA GTTGATAGAAACAGTGTGGACACCTGGGTTAATCCAAATTTATTCCGAATGAACACTTCTACTGGTGCACCTCCTGATTA TTTTGATAAAAATGGACAGAATTGGGGCTTCCCTACTTATAATTGGGAAGAAATGTCAAAAGACAACTATGCTTGGTGGA GAGCTCGATTGACACAGGTTTTGGTTTTGAGTTCTTGATCCTATTCTTAAGTCTAAACTGGGAATAGTCTATGCAGACTT TCGGATTGAGGTTGAAGATTAATTTTCTCTTTATCAATGACAGATGGGAAAATATTTTACAGCTTACAGGATTGATCACA TATTGGGATTCTTCCGAATTTGGGAACTTCCAGAGCATGCCATGACAGGTCTAGTTGGAAAATTCCGACCATCTATTCCT CTAAGTCAGGTATCCTTATGTTCTTTTCAATTGAAAGGGCACTTGATGCAGTGAATACGTGCTGAATTTATCTGACTGGC TTTTGTGTGTTTCCTTTTTTTTTTGGTCAATTTATCAATTGTTATATCCGTTGCAGGAAGAACTTGAAAAAGAAGGAATA TGGGACTTTAATCGCCTGAGTCGGCCTTATATTAGGCAGGAAATATTACAGGTTAGCAGTCTACTTTTTAGGCTACAATT AATAATTTTCCTTTAGGCTGCTATCTGTTTTTTATTGACATGTCTTGTAGATGTGCTTCTCGGGTTATGTTACAGTATAT TGTTTCATTCTTGTTTCAGGAGAAATTCGGATCTGCTTGGACATTTGTTGCAACAACTTTTCTGAATGAATATGACAAGA ACTGCTATGAGGTGATCATCCTTTTCTGGATGTATTTTTCTTTTAAGTTTTAAGTATTTATTGTTTCCTGTACGCTAATA TAGCATACCTTCAATTTTAGCTACGAGGGAACAACTTTTCTGAATGTATATGAGAAGCACTGCTTTTGACAGACCATCAA CTTTTCTGAATGTATATGAGAAGTACTGCTTTTGACAGACCATCATTTTTTTAATTAAATAAATAATACATAACCACACA TGATTTTTACACTTTCAGATTTATTTAATTTTATGTCATCTGTTTTTTTTTAAAAACATTTTTCCATGTTTTTGTCTGCT CCCCCCCCCCCCTCCCCCCTTGTTATTGCAATTCATATAAATATATACCGTTGATGCCTAGCTGCTTGAGAACATAATAC TTCTAACATCTAGACATATAGTTTTCCTATCATTTGTATCAAATATCAATGCCTTATTAGTTCTTCACCTGATTTTTTCC TGTTATCCTACTTCAATTCATCTCACCTTGCGTGTCTGTGTGTTATCTAAATCGTAAATTGCAGATGAAATCTTGTAAAA TTCATGATTTGCATAAGACCCAGTTATAGAAATCCACTGGATAGTATATCTTCTTAACAGGTCATGGCTTGTGTATTGTC TTATGGATAGGACTTGGCTAGGCCTGCTAGCAGGACTTGACATTGATTAATTTTGAATACGTCTTCTGTGATAAATTTGT TGTCAATTCTGTTGTGATCATTATAAATATTCTGCACTAGTGTTGAACTGTCTTGCTAAAAAATATATTTATCTTCCTCA ATTGATTTTAGTTCAAGGAGGATAGCAACACAGAGAAAAAAATTGCTTCCAAACTGAAAACTTGTTCAGAAAGTTCTCTT TTGTTGGAGAGTGAGGACAAAATGCGGCGCAATCTCTTTGATCTTTTACAGGTACTTTATCAAATTTGATTTATTGATCA TATTCCTCTTCTCTCCCCCCCCCCCCCCCTCTCTCTCTCCCTCCCTCCCTGTATTGATATATACCATGAAGGGTACCACT AAAAGAATTGTATTAATTTTGATTCAATTAAGAGTGTTACATTATCAATAAATCAACTGGTTCTTTCATTTTAAGTATTC TAGACTCTTAAGATTCTACTTCTAGTGAAAACCTTAGGTTCTAAGATGATGTGGCACCTTCTTTTTAATTTGTAGTGTAA AAAGGTTTATAATGTCTGTTGATCAAATTTACTTATTTACACACTTTTTATTTGGCTTTTCTTTTGAAATACTTTGAATC TTTTTCTGTCTTGTTGATTGTGATCTGTATCCTTTGCAAGTCCTACATTATATTTTGTGCTATTGGTTTGCAGAATATAG TTCTAATCCAAGATCCTGAGGATCCAAGAAAGTTTTATCCTCGTTTCAACCTTGAAGATACCTCAAATTTTCAGGCTTTG GATGATCACAGGTACCTTGATCATAGGAAAATCCCCAGAGGATGGTTCCTACTACTATGATGCTTTTTTTAGCATATTTT GACACCAAAAACGGTTGTTGCGCATCTTGTACTAAATTCTTTCGACATTCTGATTTCTGGCTTCCTTGAGATTATCTCAC AAGATCTTACTGCTCATCATGTAATACAGCAAGAATGTTCTCAAAAGATTATACTATGACTACTATTTCCACCGTCAAGA GAATCTTTGGAGGCAAAATGCGTTGAAGACCCTGCCTGCACTTCTAAACTCATCTGACATGCTGGCCTGTGGGGAAGATC TGGGCCTCATTCCATCTTGTGTGCATCCTGTATGTCCATTATGTTTACCTTAAGCTCTTTTAGTCACGAAACTCACACAC AAACACCTTCTGGATTATACTAGAGATACTAATGGGATTTCTATTTTTGGAAAAGGCACCTCCTTTGACTATAAATTTGT AAACGTAGGTCATGCAAGAACTGGGATTAGTTGGTTTGCGCATTCAGCGCATGCCAAATGAATCTGATCTAGAATTTGGT ATTCCTTCTCGATACAGCTACATGACTGTAAGTTTTCTGTATACTATTGCTTGTCCTTATTTGTTTTGGTGCTTTTGGTT GAACTAATGAAAACACATTGGACTTCTTTATTTTAATTTTTATTGAGGCTTTATGGTTAAGAAGGGCTTTTAAACAAATC CTCTTAAAGAATCCAAGGGATGATAAATCCTCTTAAAACAAATCCCTTTTTTTAATGTTTAGAAACCTTAGCTCAAACTT TATCTGCTTATGCCACATTCAAATGTATTTTGGTTTTTATTCTGTAAAGAATGAAAAAGTATTGGTTATGGGTGGTGCTT TTAGTTATATGGTTAAGAAGGCTTATAATTAGATATTTAGGGGTTCTTTGTTGTATTCTGCTTAATTGAATTCTTCTTTA TTGAGAAGTGAGAACTAGTGCCAGTTTTTGAAATTGGAGGGTTTTGCAAAACTGCCATTTGATTGGGTGAGTTATGTCAC TGTGCACAGGTGTGTGCCCCATCATGTCATGACTGTTCCCCCATGCGTGCTTGGTGGGAAGAAGATGAAGAGAGAAGACA GCGGTTTTTCAAAGATGTGGTGGAGTCTGATGAGTTGGCTCCCGATCAATGTGTTCCAGAAGTTGCACATTTTATCATAA GGCAACATTTTGAAGCCCCATCAATGTGGGCAATTTTCCCTCTTCAGGTATTCGGACAGACATGTTGTAACACTTTCAGT TAAAAATTAGCCATTGCATTGCACTAGTTGTTTTACCTGCTCATGAAAATCATGCTCTTAATCTGGTGGACAGGACTTGT TAGCATTAAAAGAAGAGTACACAAAACGCCCCGCGGCGGAGGAGACGATCAACGACCCTACAAATCCAAAGCACTATTGG AGATACCGTATGTCTTGATCTTTGACTCCGTATCTTAAAAGCTAATTCTTTGTAAGAAACGTCTATCTGTGACCGACCAT TGAAATGCTTTTTGGAAATTGTGCTTTGGACTGTTATCAGGTGTGCATGTAACTCTGGAGTCCTTGCTTAAGGATAATGA GCTCAAAACCAGCATAAAGAATCTTGTACGTTGGAGTGGAAGATCATTTCCTCATGAGGATTCTCAGGTAGAAGCTAGTC CGGTGTCGGCTTCATCAGTAGCAGAAGCTGTCTCTGACAAGAAGATTGCCGGTGCCGCCGACAAGATCCGTCTTCCCTCT GAATCTAATGGAGTTCAACCAAGGGATCATGTGGCTGTCCGGTGATTTTATGCACACTACCTGCTAGAATGAAGAAAACA ATAAGAGTTCGTCCATGTTATGGCTCTTGTAGTTCCCTCTGTTTCCATGATGTTTTCTATATAAAGAGAATACATAAAAT ATAATTATTTCTGTATTCTAAGCATATATATAGGCCTATTACTTTTGTCTATTATAATAAAATGATCACTTTTCATTTCC TACAAGAGATACTCGTTATGTTCAAAGAAAATGGTGCAATGATTTGGGGCTTTTCCTTTAAAGAAAATTTCCTACAATTG ATTTTAA 

CDS sequence (LotjaGi1g1v0657200.1) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGGTGAATCTGGGATTGTTTTCTTCGAATAAGTCTGTGAGTTCAGTGAAGGTAACCTTTCGGATACCATATTTTACCCA ATGGGGTCAGAGCTTGCTGGTGTGTGGTTCTGTGCCATTGCTTGGTTCTGGGAATGTGAAGAAGGGTGTGTTGCTCAGTC CATCTCCTCAAGGGTCTGAGCTCGTGTGGAGCGGAAGCATCACAGTGCCAAGAGGGTTCCAATGCCAGTATAGCTATTAT GTTGTAGATGATAACAAAAATATTCTGAGATGGGAGATGGGTAAGAAGCGCGAATTGAACCTTCCTGAAGGTCTTCAGAA TGGTCAGGAGGTTGAGTTCCGTGATCTTTGGCAGACTGGCTCAGATGCTCTCCCTTTCAGAAGCGCTTTCAAAGATGTTG TTTTTCGGCAAAGCTGGGATTCGTGCATCACAGGAGTCGATCACACAAATATTGAACCAGAAGCTGAATCAATTGTCGTC CAATTCAAAATATCCTGCCCAAATATTGAGAAAGACACATCATTATGTGTGATTGGTAGCAATACAAAGTTGGGGCAGTG GAAAGTTGAAAATGGACTAAAACTCAACTATTTTGGTGAATCTGTCTGGCTAGCTGAATGTGTGATGCAAAGGAGCGACT TTCCAATAAGATATAGATATTGCAAATATGGCAGGTCTGGGAACTCCTCTATAGAAGATGGTCCGAATCGAGAAGTCTCC ATTAACTCCTCAAGGAATGAGGCAAAATATATTTTTCTTTCAGATGGCATGATGCGGGGAACACCTTGGCGTGGTGCTGG TGTAGCCATTCCTATGTTCTCTATTAGGTCGGAATCTGATCTGGGAGTTGGAGAGTTTCTTGATCTTAAATTACTAGTTG ACTGGGCGGTAGCATCTGGATTCCATTTAGTTCAACTTTTACCAATCAATGATACATCTGTGCATGGGATGTGGTGGGAT TCTTATCCATACAGTTCTCTCTCAGTATGTGCATTGCATCCATTGTACCTGAGAGTCCAGGCACTTTCTGAGAATATACC AGAGGAGATCAAGCAAGAGATTGAGAAGGCAAAACAGCAACTGGATGGGAAGGATGTTGATTATGAAGCTACAATGGCTA CTAAACTCTCCATTGCTAAGAAAGTTTTTGCTCAAGAGAAAGATTTGATTCTTAATTCGAGTTCCTTTCTGGAGTTCTTC TCTGAGAATGAGGGTTGGTTGAAACCCTATGCTGCCTTCTGTTTCCTGCGGGACTTTTTTGAAACATCAGAGCGCAGTCA ATGGGGTCGTTTTGCTCATTATTCCGAAGATAAACTAGAGAAACTTGTATCCAAGGAAAGTCTGCACTACGAGATAATTA GCTTCCATTACTATGTTCAATACCATCTACATTTACAATTATCAGAAGCTGCAGAATACGCAAGAAAGAAGGGAGTCATT CTAAAGGGAGATCTTCCTATTGGAGTTGATAGAAACAGTGTGGACACCTGGGTTAATCCAAATTTATTCCGAATGAACAC TTCTACTGGTGCACCTCCTGATTATTTTGATAAAAATGGACAGAATTGGGGCTTCCCTACTTATAATTGGGAAGAAATGT CAAAAGACAACTATGCTTGGTGGAGAGCTCGATTGACACAGATGGGAAAATATTTTACAGCTTACAGGATTGATCACATA TTGGGATTCTTCCGAATTTGGGAACTTCCAGAGCATGCCATGACAGGTCTAGTTGGAAAATTCCGACCATCTATTCCTCT AAGTCAGGAAGAACTTGAAAAAGAAGGAATATGGGACTTTAATCGCCTGAGTCGGCCTTATATTAGGCAGGAAATATTAC AGGAGAAATTCGGATCTGCTTGGACATTTGTTGCAACAACTTTTCTGAATGAATATGACAAGAACTGCTATGAGTTCAAG GAGGATAGCAACACAGAGAAAAAAATTGCTTCCAAACTGAAAACTTGTTCAGAAAGTTCTCTTTTGTTGGAGAGTGAGGA CAAAATGCGGCGCAATCTCTTTGATCTTTTACAGAATATAGTTCTAATCCAAGATCCTGAGGATCCAAGAAAGTTTTATC CTCGTTTCAACCTTGAAGATACCTCAAATTTTCAGGCTTTGGATGATCACAGCAAGAATGTTCTCAAAAGATTATACTAT GACTACTATTTCCACCGTCAAGAGAATCTTTGGAGGCAAAATGCGTTGAAGACCCTGCCTGCACTTCTAAACTCATCTGA CATGCTGGCCTGTGGGGAAGATCTGGGCCTCATTCCATCTTGTGTGCATCCTGTCATGCAAGAACTGGGATTAGTTGGTT TGCGCATTCAGCGCATGCCAAATGAATCTGATCTAGAATTTGGTATTCCTTCTCGATACAGCTACATGACTGTGTGTGCC CCATCATGTCATGACTGTTCCCCCATGCGTGCTTGGTGGGAAGAAGATGAAGAGAGAAGACAGCGGTTTTTCAAAGATGT GGTGGAGTCTGATGAGTTGGCTCCCGATCAATGTGTTCCAGAAGTTGCACATTTTATCATAAGGCAACATTTTGAAGCCC CATCAATGTGGGCAATTTTCCCTCTTCAGGACTTGTTAGCATTAAAAGAAGAGTACACAAAACGCCCCGCGGCGGAGGAG ACGATCAACGACCCTACAAATCCAAAGCACTATTGGAGATACCGTGTGCATGTAACTCTGGAGTCCTTGCTTAAGGATAA TGAGCTCAAAACCAGCATAAAGAATCTTGTACGTTGGAGTGGAAGATCATTTCCTCATGAGGATTCTCAGGTAGAAGCTA GTCCGGTGTCGGCTTCATCAGTAGCAGAAGCTGTCTCTGACAAGAAGATTGCCGGTGCCGCCGACAAGATCCGTCTTCCC TCTGAATCTAATGGAGTTCAACCAAGGGATCATGTGGCTGTCCGGTGA 

Protein sequence (LotjaGi1g1v0657200.1) extracted from Lotus japonicus Gifu v1.2 Proteins.

MVNLGLFSSNKSVSSVKVTFRIPYFTQWGQSLLVCGSVPLLGSGNVKKGVLLSPSPQGSELVWSGSITVPRGFQCQYSYY VVDDNKNILRWEMGKKRELNLPEGLQNGQEVEFRDLWQTGSDALPFRSAFKDVVFRQSWDSCITGVDHTNIEPEAESIVV QFKISCPNIEKDTSLCVIGSNTKLGQWKVENGLKLNYFGESVWLAECVMQRSDFPIRYRYCKYGRSGNSSIEDGPNREVS INSSRNEAKYIFLSDGMMRGTPWRGAGVAIPMFSIRSESDLGVGEFLDLKLLVDWAVASGFHLVQLLPINDTSVHGMWWD SYPYSSLSVCALHPLYLRVQALSENIPEEIKQEIEKAKQQLDGKDVDYEATMATKLSIAKKVFAQEKDLILNSSSFLEFF SENEGWLKPYAAFCFLRDFFETSERSQWGRFAHYSEDKLEKLVSKESLHYEIISFHYYVQYHLHLQLSEAAEYARKKGVI LKGDLPIGVDRNSVDTWVNPNLFRMNTSTGAPPDYFDKNGQNWGFPTYNWEEMSKDNYAWWRARLTQMGKYFTAYRIDHI LGFFRIWELPEHAMTGLVGKFRPSIPLSQEELEKEGIWDFNRLSRPYIRQEILQEKFGSAWTFVATTFLNEYDKNCYEFK EDSNTEKKIASKLKTCSESSLLLESEDKMRRNLFDLLQNIVLIQDPEDPRKFYPRFNLEDTSNFQALDDHSKNVLKRLYY DYYFHRQENLWRQNALKTLPALLNSSDMLACGEDLGLIPSCVHPVMQELGLVGLRIQRMPNESDLEFGIPSRYSYMTVCA PSCHDCSPMRAWWEEDEERRQRFFKDVVESDELAPDQCVPEVAHFIIRQHFEAPSMWAIFPLQDLLALKEEYTKRPAAEE TINDPTNPKHYWRYRVHVTLESLLKDNELKTSIKNLVRWSGRSFPHEDSQVEASPVSASSVAEAVSDKKIAGAADKIRLP SESNGVQPRDHVAVR 

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 8 119 112 3.2E-22
PANTHER 9 923 915 0.0
PANTHER 9 923 915 0.0
ProSiteProfiles 10 119 110 20.113
SMART 15 111 97 1.3E-21
SUPERFAMILY 15 117 103 1.52E-21
Pfam 16 107 92 4.3E-22
CDD 20 117 98 2.77738E-52
Gene3D 149 254 106 2.5E-12
ProSiteProfiles 152 265 114 15.342
SUPERFAMILY 156 245 90 6.62E-17
SMART 157 251 95 6.6E-9
Pfam 158 248 91 8.9E-11
CDD 159 256 98 2.27943E-31
Gene3D 262 593 332 1.6E-106
SUPERFAMILY 263 916 654 8.66E-133
Pfam 270 898 629 3.6E-153
Gene3D 719 923 205 1.4E-39
MobiDBLite 953 975 23 -

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 4-alpha-glucanotransferase activity Catalysis of the transfer of a segment of a (1->4)-alpha-D-glucan to a new 4-position in an acceptor, which may be glucose or (1->4)-alpha-D-glucan.
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.
Molecular function Starch binding Interacting selectively and non-covalently with starch.

Expression data

Expression pattern

Expression pattern of LotjaGi1g1v0657200.1, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.

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