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LotjaGi5g1v0274200.2

Overview

Field Value
Gene ID LotjaGi5g1v0274200
Transcript ID LotjaGi5g1v0274200.2
Related isoforms 6
Lotus japonicus genome version Gifu v1.2
Description Phosphoglucosamine mutase family protein; TAIR: AT5G17530.3 phosphoglucosamine mutase family protein; Swiss-Prot: sp|Q88C93|ALGC_PSEPK Phosphomannomutase/phosphoglucomutase; TrEMBL-Plants: tr|G7I385|G7I385_MEDTR Phosphoglucomutase/phosphomannomutase family protein; Found in the gene: LotjaGi5g1v0274200
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr5:58781107..58792974) extracted from Lotus japonicus Gifu genome v1.2.

GATTCATAGGGTACCTTCTCCTCCCACAAGAATATTCACGTGAGGTAACACGTGTGTGGGTTGTTGTCTGGTTTGGTTGG TGTGTAACAACAAGTTCGGAGAAAACCATACCAGTTCGCAGAAAAGCCACACTACCTCAGTTTCTCCGTCGCGGCAATCC AAGCTTTCTCTCTGCAACTTCGATCACATTGATGGCAGGTCAATTCTCACTCTCTGCTTCTATTTGTACTTTCCATCCAA TTCAACCCTTCAACATTCAGTTTTCCTTTCTTTCAATGCAATTGTGCTTTCCACTACACTCTATGATTATTGCTCAGGAG CATGTTTTCCCCCATACTTCATGCGCTTCAGTAGAATTGATGTAATTTCCCCCCTGCTGAATTGAGGGCAGGACCAACCT TCAATATTTGAAAAGTTAAAAATTGAATTTTTTACTTAAGACAAGTTTAAAAGACTAATCTTTTTTTTGAAAGAAGTTTA AAAGACTAATCATTGTTATGGGGTTGGTTAAATATCACTTTGATTGAAGAAAAATTGAATTTTGAGCTAGTGGGTATTGA TAGAAATTTAACTGTGTTTGTAACTTTGTATCATTCAATCCACACAATACATGATGGCCAGATAAGAGAAAGTCATTAAA TTGAAGAAGCTTATTAGATAGGTAGAGAGTGATTTGACACATTTTATGAAATAAGGAAATCTGGGATCTGATTAAGGTCT AAATGTTTATATATGCAGCAACATCAGGGAAGATTGTCCAAAATGTTTTTGTGTCACAGAGCTACCAACAGAATAGACCG TTCGGTTCACAGAGTCGAAGGGACTGTTTTGCCCCTTATATGCGCAACTCGCTTCCCTCTCCTCAAGGGAAGTTAGCATG GACTGGCATCTCTTCCATGCAATTGCGCACTTTCTCAAAACCTAAGAGAAATATTCAATGCAATGGTCTGTTCTAGACTC TTATTATACAGGTTGACATGAAGTGAAAAACTCATATTTTTCAACACATAAGAATATAAGATATTGCTCTCTTGAGCTCT TCCTTCCAAAGCTTATTATATGAACATGTATGAACATATCAAAATCTGAATTAGGGCATACATTCCCTTTGTATTTTTAA CAGAAATGCTTTTATTCTTTTCCTTTTGGCAGTTTTTAACCACTTTATTTTCTACCATCCATTTGGACCTTTGTTGCAGC TTCTGCATCTGCTACCACAGAACCATATCTGGACAAGATTGATTTTCTAAAGCTTCAAAATGGCAGGTTAGGACCGGTTG ACGACAAGAACGCTAATAATTTTATCTTATGTTAGCACAATTGATTGAAAATTTTCATCTTTATAGCAATTTGTTCCTGC CCTGTAGTTTTCTGAAACTTATTTTGGTCTGATGGGGTGTCTATGTTATACACGTGAATACTGAATAGAGACAGTCTGAG TGAAAAAGAAGAGACGAGAAACGGAATAAATATACTCTGCAAATGTTCTGGATGGTTAAAACTTAAAAGTGGAAACAAGC TGGATAAAGCATAGAGTAGAAACCTCTCTGATCTTTTCCTTCCCATCACCTTGTTTATTGCTGTGCTCAATTTATATGGT ATGGTAGCTTTTAGACAGATGGGAAACAATAATGTATCATATTCTATCTAATAATTAAGAGTGTAGTTTACCACTTAACA CAAATATAAAAGATTAACTGTAATAAAGTATCATATTCCATTTCATGTACTATTCATTGATATAGGCAATATAATCTTTT TTCTTTCCCTATAATAATGAGTATGACTGTATATAGTAGACAGTAGGAAAGCTTCCAGTTGTAGAAGCCCATATTTTCTT CCATTTTATTTAGATGGCCTGCATTTGTTGGGTCTTCCTGCAAATTAACTAGGGTATAACTCATAAATGGTATTAATTGT AAACAGTGATATACGTGGCGTGGCTCTTGATGGTGTTGAGGGAGAGACAGTAAACCTCACTGAACCTGTTGCTGAAGCTA TAGGAGCTGCTTTTGCTGCATGGTTAGTTGAGAAAAAGAAAGCTGATGCTTCTCAGCATTTGAGAGTTTCTATTGGCCAT GATTCCCGGATATCAGCCAAACTATTACAGGTCTAGATGATTTCTTATATCATTGGGTTAAGTTTTCTGCTGTCTAGCTT TATCATGTAAAAGTTTTATCGAATATTGCTCGAGTAAACTAAATATAATTTAATAGAAGTCGCAGTCCCAATGAAATGCA TTTTTGTGATAACATGAAAGTCGAAATGGACAATACTAATTTGAAAATCCTATGACATTTTTTTTGTTGCTTCTTGCTAC TTGTTAGTCTTTGGGTCAAAAGAGGTTCAACATTTCATTTTTACTATATTTCGTTCTTTGAAGACTTTGCACAATGCATA AACTTTTTAAGTTAGTATGTAGTATGAGTCTAGATATGGTATTTGAGAGTTGAACCTCTTTGAATAATGTTGAACGTCTT TGACTTGGACCAATACATAAACTTTTCAATGTCTGAGTCTAGTTAGTCTTTTGAGTCTAGATATTTCCTTCTTGGAATAG TGTTGAACCTCTTTGAAGACTTTGCACAATGCATAAACTTTTCAAAAGAGGTTCAACATTTCATTTCATGGAAAGCACCA TTTAGTATGAGTCAAGATATGGTTATCTTTTTAAAATGTGGGTGTAGGGATGAGTGCTATAATAGTAATAGTACTTTACT CAATACGCATTGCCATCTCCAATTTGAATTAAGTGGAAAGTATTGTTCTGAAAGAGATCTTTGTTTACAACCTTCCTAGT TTGAGAGCATGGATATATTTCAATAGCTTACTATTTGATACTATATTTAGAACTGACTATATAACTTATCCAATTACAGA ATGCGGTTTCTCGAGGTCTTTCTGGTGCTGGCCTTGAAGTTGTCCTATATGGGTGGGTGATATTTTAAATTTATGTTTTT GTATCAATTATTTTTATTTTCTTGATTTGCATGAGGACTGGTAAAGTCAGTGGTTTTGAACCTTAATGACAGAAATCACC TGGCAGATGCCTTTACATTGACACTGATTTTTAAGATAAAATATATATTCTAGGCTAGCATTAGTTCTCTTCAAAACTTT TAGTGTTTCAATAGTTTTGACGATAACTAAATCATTGGTTCACATGTGAAACACTGATTTTTACATTGTTTTCTTTATAG ATTAGCATCAACACCAGCCATGTTCAATAGCACACTCACGAAGGATGAAGCATTTTTGTGCCCTGTTGATGGGTCTATTA TGATAACAGGTACATTATGAATTTGTAGTTAAATGACACTTTCCAAAAAAAAAAAAGTTAAATGACATTATTCTAACCTT TGAGATGTCATAGTTCATAGTTGTTGAAAATCTTGTCTTAATTTCATCCTACAAGCTTTGGGTTTTGTTTCTTAACAATC CCTTTATGCAAAAGCCCTTTGGATGATTCTGTGGAGGTTGTGAACATAGCAGTACAGCTTCCTTTTTACTAAACTGTAAT GAATCATGGTGAATTTAGCTAGCAAGGATCTAACACAAGAGCACTAGCACATGAAAGCTGAGATTCTATCTCAAGAACTA TTTATACTGAAAGTCTAAATTATTAGGTTGCACGGTTTTCTCTTTTAGCCATTTTTATATTTTACATTATTCATGTATAT TAATTTTATTGCTTCATTAATGTCCATGGATTGTGAATGACGATTTTAAGTGAATTTCAATTTAATTCTGGTAATTTATA ATATTATTCTTATTGATAAATAATTTTGGATATTAATTCATCTATTAATTATTAAATTCCCTTATCTGTGAACAGCAAGT CATCTGCCTTTCAATAGGAATGGATTTAAATTTTTCACAAATGCTGGTGGGCTTGGGAAGGCTGACATCAAAGACATCCT AGAGCGAGCAGCAGACATATACAATCAATTTACGACAGAAAGTTTGTTAAATTCAGAGAAAAAGGCTTCATTATCTACTA AGCGAGTTGATTACATGGCTGTTTATACATCTGATCTAGTGAAAGCAGTTCGCAAGGCAGCTGGAAACATAGGTATGACT TCACTGACGTATTATGATAATAATCAGTGTGTTTAGAGATATAATTAATGGGTTGCTCTTTGAATGAAGTGGAGGAACAA TGGAACTTTATTGAGAGGCATTAATTATGTCTTTATGATTATGTCATTTTTTTAATGGTAGAATTTAGAACTCTTCCAGT TATCATTCATTTTCTGAATGCTTTGCACATTATCTGCCCACAGAGAAACCATTGGAGGGTTTCCACATAGTTGTTGATGC AGGCAATGGAGCAGGTGGTTTTTTTGCAGTAAGTTTTATTTATAACTTCTTAACTTTTATTGTTCTCTAAACAGCTCTTT TGCATGAGGCATTTTCACAATAAATGTCTAAAAGAACTGTGTATTAGTATACTAGATAAACAAAATACTGACTGATTTGT TTTGTTTTCTTGTTTTTCAGTGGGGCTGAAAACAGTTTTCTGTTTTTAAAAAATGAAAAACTTGAAAACTTGTTTGTTTT CTGAAAGATGTTTTTAAAAACAGTTCCTAAAAATAAAATCTCAAAAAATCTTTGAGATGTTTTCTGTTTCTGTTTTTAGT TTTCAAATTACAGATTTTTTAACGATGTAAAACATCTCATTCAAACATCTCTTGCAACTCTTTTATTCCGTTCAGTTACA CATTGATCGTATGCCTTAATGAAAAGTCTCCTGTAAATTCTGACATTTAGATATAGATTTTTGTGTTCTTATTATGATAC AACACCTTGTCCAAAAGTCAAATTGCTTAAAGGTACCATAACTAAGATTCATTTTATATAGCTATCTTGCGTCCTTCCCT CTGCTGCATCACTTATCCTTCGTTCAAATATTTAGGTTTTTTGTCTTTGATTTGAAATCATATAAAATCTTAAAACATGT TTTTGTTGTTAAGATGTTTTGGCTCTTCCATTCCATTGAACTTGATATTCAATTTTATTGAATTATAGGCAAAGGTGCTG GAACCTCTGGGGGCAAGAACTTCTGGAAGTCAATTTTTGGAGCCCGACGGTAATTATTTTATTTGGAGGAATGATTTCAG CAGTGGTACTTGGACTTTATCCACGCTTCAAGCCCAAAAAGGGTTCTTGCGTGAGGGGGCGTGTTGGAATATAATATAAA ACCATTAATGTGGCCCTTACCCAATAGCTTAAGCTTTTGGGATTAAGTGGTTATTTTGACACATGGCTTCTTTTTTCAGG CTTGTTTCCAAATCATATTCCCAACCCTGAGGACAAGACAGCAATGAAAGCCATAACCCAAGCAGTCCTCGAGAACAAAG CTGATCTTGGAATTATCTTCGATACTGATGTGGACAGGTAAGGATCTTCTTACTAATCGGTTTAACTGACATGCATGATG TTTTTAGATTTGTCATACATCAATATCTTTCATCTAGATCTGCTGCTGTGGATTCCACTGGCCGTGAATTTAACCGGAAT CGTTTGATTGCCTTAATGGCGGCTATTGTTCTTGAGGAAGTAAGACTCTTATGTTTAGCTATTTCAGACCTAGTTTTTTT TTTCTTTTTAAATTTTACACTTCTCTGTATAATAACTCTTAATTATTTCCTTCAAATGTCTTCCCTAGCATCCTGGAACA ACCATTGTCACAGACAGTGTGACTTCTGATGGCCTCTCCACATTTATTGAGAAGAAACTTGGTATGGACAAATCTAAACT AGCATGAACTTTAATCTACCCCTCCCACCTTCTTCCTTAAAGAGTTTATATTAAGTTATGATCTATTTTCCTTAATTTGA TTTGAACTGCAAATTTCATTGAGTTCAGAAATATTGTAACTTATGCTATTTTCTCTCAGGTGGCAAACACCATCGGTTCA AAAGAGGCTACAAAAATGTGATTGATGAAGCTATTCGTTTGGTATGATTAGTGTTTTCCTATAATTCAATAAATTATACA TCAGTTAGTTAACCAAGAAGAGTCTTTCATCTGAGTTCTTGCTTTTACCATTATTTCAAATTTGAACCTTGTACTCTTTG GCCAAATTTATTCAAATGTGCCCTAGAAGTAATACCTGGCTAAATTGCAAAACAGCAGCAATTTTACAAAAGATATGCAC AATAAGATACTTAGCTGCTGTCATGTATTTTTCTTAGCTGCTGTCATGTATTTTTCTTAGCTGCTGTCATGTATTTTTCA TCATGTTTCTTTAGATAATATTTGGTTTTAAATTTTTTTACTGTCACAATGTAAGTTAAATATTTGACTTATGGATGCAA TACTGTTGACAGAACTCTGTTGGAGAGGAGTCACATTTGGCAATTGAAACCAGTGGACATGGAGCTCTCAAGGAGAATAA TTGGCTTGATGATGGTGCATACCTAATGGTAGGCTTTTATTGTGATGTTGGATATAGCAAATAATCACCAAATTAATCAT TCTCCAATAATCAAGTCATAAAATTTATATGACATTAATGTTTTTTTTTGAAACTAACATTAATGTACTAATAAGGAAAT TGAAAAACCACTCAATTATAATGAAAGAATAGATCATTGAATCAAAGAGGTTCTTATATTAAGTTAAAGATCTACTCAAC TTAAAGCATAACATAAGCAGGGTCAAGTGACTAGTTTTAATGATTAGAACTACTTAACAAGTCTGTATGTGACCATGTAT TTTGCAGGTCAAGGTCTTAAACAAACTTGCTTCCGCAAGAGCTTCTGGAATGGGTGGTGGAAGCAAGGTTTTGACTGACA TAATAGAAGAACTCCAGGAACCAGCTTTTGCTGTTGAGCTGAGATTAAAGATAAACCAAATCCATCCAGATCTTAAAGGA GGGTAAGCTGGTGTATATTGTAGAAAGATTCTCTGTTTTCATGTATCCCTGTTTGAATGTTATGAATTCACTGAAATGCC GAGATTTCAGGTCTTTTCGAGAATATGGAGAAGCTGTGCTCAAGCAATTGGAGAACTCAATTGGCTCTGATCCAAACCTG CAAAAGGCACCTGTAAACTACGAAGGGGTATGAATATTGCTGGATTTTAAGTCTGTCTAATCAGAATTGACCATAGAATT TTCAGTGAGAAATTATGGAAACAATTATGATCAACATGTGTTCCTGCACTAGAAACAGCATACAATATGAGATCAGTGTG CAAACTTCCAACCTGAAATTATTGGTTTGCGGAGTTTCTCAGTTTCCATTAAATTAAACTTATACCTTGTTGATCTTGTC TTCAATCAGGTCCGAGTTTCTGGTTATGGTGGATGGTTCCTTCTTAGACTATCACTCCATGATCCTGTACTTCCCCTTAA CATTGAGGTAAGTCTCCTCACAGCTTGTATTGGAGTTTTTGGATGCAATATTAAAACTTTGCAACTAATACAAAATGAAC ATCCTCGTTATTGTAGGCACAGAGTAATGATGATGCTGTGAAGCTTGCAGTGGCTGTGCTTGCAGCTGTAAAGGATTTTG CAGGTTTAGACATATCAGCCTTGCACACATTTGCAGGATCATCATAATTTGGTGCTTTGTACAAGAATTGAATTGGGGAC TGGGAATGGTTTTGCTTCTATTTTTGCATTATACCAAGAGGCTCTCTTTACTCGACAGCAGCAAGAGGGGGTGAGTTCAA GGTTTAGAATCCTGAGTGTTTGGTGAACACCTAGTAGTAGTGGACCAGTATTATTACCATGTGGCTGTAAAGAGTGTGGT CAGTTGTCCAGGAATAGGAATATCGGAAATCTCCGCGATGGAATTTCATTAAAACATCCCATTTTGAGAGCAGTGTCATC AGTATCTGTTGTGTAATTTTGTTGTACTTGCCTGATTTATAATTTATTGGCTTTTTCCTGATATGTGTGGACTCATTCTA TCTTGAGATCCTGCATCAACTAGAGACACATTCAAAGTAAAGTTTATAAATACGGACAATATTCATCTTATTAGCTAGCT TTTAAAGTAGAGTTAGATCTAGTCTCTAATCAATATGGTATTCGAGTTTGTCATGGATTAGACCAACTTGTACTTGCAGA TTTCTAGTGGAATCAATTTCGCCTTGCGACTTTCCACGTGCAATTTATAAATAAAGTCCTACAGTCTCTTAACCCTAGAT ATCTAGTCATTGGCATCTGAGGACATGTTGAGATGTTAAGTCTCTCAACCCTATATATCTAGTCCTTGGCATCCAAGGAC ATGTTGAGATGTTGAGATCATCCGTTGACTAAAAATATGGACAAAGTGGAGCTTATAAAACTTGGGTAGTCTTCACTTTA TGAGCTAACATTTGGAGTAGAGATAACTTTCATCTAAATTCAAGATGCTCAACTCATACGAGTGCCCTTTCCATTTGCTG AGAGAATAGCAGCTACAGAATTTCAATCCAAAATCAGTAGAACTCCAAGAACTAGGGCTAATCCTTCATAAAAATTATGG GTAGGAGTTAAGTATCGTGTCACATAATATGGTCATCTAAGAGATTGTGTCTATCTCTCTTTATATTAAGAGATAAAATT CTAATATGATAAAGTCAATCCTTACATGAGAGAATCCTGGTATGGGAAAGAGGTATAAGAAAAAAAAAGGGTGAAATATA GGTGTAAAAAATGTGAAAAATCAACTCTTTTTTACAAATTAGTATCTCTCAGCAATTCTAACTCCAATTCTGCACGAAGC TGTTTGTCTGCATGCACTGGGGTAAAGTGAATGCCAGTAACTGTACAAATGCTTGCTACTGGTGCAATCTAAAAGGTTCT CAAATGATTTTTCCTCTAATTTCTTGGTTTACTTACAATATGCACTTCAATAACAGACAGTCCCCTTAGTTGTAATTACT TTTTTCCCCTCTTAAATTTGTTGTGTATTACAACACAGATAATCTGTCCAATTTAGCATCTAATTAGATTTAGAAGCAAC TGGTTTGTTGAGAAGCTTCATCATGAAGTGGAAATTAATATCCGGTGAAGTCTTTGGTTGAGGCCAGTTAGCTCCTTCTG GAACCTTGATACATTTGAAACCTTGGCCTTTATATAACTTTGTGGCTGCAGGATTTTTCAAATCACAGTGTAATGCAATG GCACGACAACCCCAACTTCTGGCCTGTGATTCTGCCTTAGCCACCAATAGTTTAGCTATTCCCTTTTGCCTAAATTTTTC CCTTACCGCCACATTTGATATGTATGCGATTCCAGTCCTACATAATGAAATGTAAACTAAGAATGTTAAAACACAACATG GCCCACACACTACAGAATTAGAAAAATAAGAAGTTAACCATTTTGAAGAGGAGTCAAAAGTATTCATAAAAGATAAGATT CTAGGTCAACACCAAATAAGATTTTTGGCAAATTTTGTTTAAGGCAAGTCCAATTTTACCATGGAGATCTGAACTTCAAT TTTAACCAAGTGAAAGGCAACAAATTGACCAATAAACTATGGATGTGCAGCGAAAGAACATTTAATTGGTTATTTTTGCA GCGTAGCACAAACGCAAGAGGTTTTATGCTAAACAAAGATATCATATGGCTACTTAAGATAGGCCTCTAGATACTTAGGG TATGTATGATTGATTTAACAGAACTTAACTATCTGAAAAATATTGAGGTTTATGTTTTCAGTGTAATAAATGCTTTTCAG GAAACATTTTCATCTGCTGGTGCAAAAAACTATTTCCAGATAACATTTCTGATGTTTGGTATAACAGTCAATATATGCAT ATATTCTTTTCACACAATCCTGCTCTTTATCTGAATAATTCTTGCATGAGTATGTGTTTATTAGGCACACAACTAATCAA AGCCCTAAGATGATATTGAAATTATTTAATCACTTAGAATGATAAATGTCTTAGAAGCCATTCTTAAGGATGATGGAGCC ACATGAAGACACAAAAGAATATAAAGTTCACAACATCCTACAGGTCAGATTTATGTCATAAATCAGAAAGACACATAAAT ATTCAGTAATCTTCACTAATCCATATTCCAGAAACAAACTTTAACTCACCTTCTCTGTCGTAGTGGTGCCCTTCTAGGAA GAAAATCCGCAACGGTATCGACTGTCAATATGCCAGCCACATATCCCTTGTTGAGGCTCAATTTCCCATCAAAGCCACCA ATCTTGAAATCTTCAGTTCCAAATAAAAAAGTTTCGTCAAGAGAGCTGCCAATAACAGCAACCAAACATGTTCTTTTGCA GCCGTTCGGTATAGAGAATCCCGCTAACATTGCCACCAATCTGTCCATCCTCATCACAAAATCTAATGGGAAGGAATATT CTGGGAAGAAGGAGCTGCAGTGAGTCTCTGCCACTTCCCAACAGTCCTCTAACCTGGCCTCTCGGACAATAATTTCAGGA GACGTAGTTGGGAATAAATCAACAACTTGACTGGCTCTGCATAGTCCTACATCCATACACCATAGCTTTAGTTCCTAGCC AAGTTAACATGTCAAAGTATAATAAGGCGCCATTTGGAAGAGCTTATATAGCAGAAACATTTATGCAAGTATTTGGGATT GAGAGAGCCTAATAAATAGCTAATAACCTACCTATGAGCTTGTTTGAGTTTATTTTCACAAGCTGTCAAATTAGCTCATC AATAAGCGTTTATAACTACCTATAATCTATGTTGGGCTTATTTCAATAAACTTATAAATAAGTGCTTCTGCGCTAAGCGT TTAATGCTATACATGCTTATTGAAGTTGTTTATTCAAACGCACCCTAAATAAGAAATGTTCCACCGCTCCTCATCCAGTT CACCCCTTGACTTCTACTCCCATTTACAGTAGGTTTCCATGAATAAACATGGCCAAAATGATTATGCTTTTGTACTATGT GAAATCTAATTCCATAATAATGAAAATGGAAACTTAGACAATGAGTTTGACTTTGCTTGTATAAGATGCTCATCATTGAT GACTAAGATAAATATGAAAAGGTTTAGAATTAAGAAGTGAATTATGTGTGTTTCTAAATGATTTTGAGGAATGCCATTAC CATTTTCTGATGATGAAAATAGCTTAAATGACAGTAAATATTATTCCAGAAACTCATGTACAATTGTTGCCTCCCAGCAA CACTCATTGAAAACTGTCTTGTTAAATTCTCCACCAATCATCTAACCTTTATTTTTCCCTCAATTTTCTCTAGCCACTCT TCCTAAGAGGACAAGTTGACCACCGCTTTCAAATTTCTCAGACATCATTCATCACCTTCCAAGAATTGGATAAATTTCAA ATAGCCAGGCATTAATCCACTCCATCATATATCAATTAAAGGGTTTGACAACAAATTCAACAACCCCATCTACTGAATTC CTTCAAAAGAAAATAACTAACAATCAAGCAAAGAAAATACATAAATACACACAACCCATCCATGATCCATCAGTGTGAAC AACAGAACAACCAAATTATGCAAAACAAATAAAGGGTACCTTGTTCATGAGAGGGAGATGAAACCCAAGAAGGAAAAGTG GTTGGTTTCTTAAAACTAATATTGAAACATGAGATTTTTGGAGTGTTTATAGGAGTTGGAGATACTGAGGTTCCAAGAGG AATTGACCGCATTTCGTGGAGGGTGTCTTGGTCTATTATCTATCTATCTATCTATCTTTCAGCTCACTGAAAAGAATCCT GAGATTCTCTGTGAGGAAGAGTGAATCATTACATAAGAAGAAGGGTTACAAGTTGAGTTAGCTAAGCTAATATCACAAGT TCAACTCCATCTTACATGTTTGGTTAAATTGTGTCGTTTCCAAAATTGTGGGTCACCTGACATTGACAACCTAAGAGACC AGAGTTAAATATTTGTCTTAAATCTCTG 

CDS sequence (LotjaGi5g1v0274200.2) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGGCAGCAACATCAGGGAAGATTGTCCAAAATGTTTTTGTGTCACAGAGCTACCAACAGAATAGACCGTTCGGTTCACA GAGTCGAAGGGACTGTTTTGCCCCTTATATGCGCAACTCGCTTCCCTCTCCTCAAGGGAAGTTAGCATGGACTGGCATCT CTTCCATGCAATTGCGCACTTTCTCAAAACCTAAGAGAAATATTCAATGCAATGCTTCTGCATCTGCTACCACAGAACCA TATCTGGACAAGATTGATTTTCTAAAGCTTCAAAATGGCAGTGATATACGTGGCGTGGCTCTTGATGGTGTTGAGGGAGA GACAGTAAACCTCACTGAACCTGTTGCTGAAGCTATAGGAGCTGCTTTTGCTGCATGGTTAGTTGAGAAAAAGAAAGCTG ATGCTTCTCAGCATTTGAGAGTTTCTATTGGCCATGATTCCCGGATATCAGCCAAACTATTACAGAATGCGGTTTCTCGA GGTCTTTCTGGTGCTGGCCTTGAAGTTGTCCTATATGGATTAGCATCAACACCAGCCATGTTCAATAGCACACTCACGAA GGATGAAGCATTTTTGTGCCCTGTTGATGGGTCTATTATGATAACAGCAAGTCATCTGCCTTTCAATAGGAATGGATTTA AATTTTTCACAAATGCTGGTGGGCTTGGGAAGGCTGACATCAAAGACATCCTAGAGCGAGCAGCAGACATATACAATCAA TTTACGACAGAAAGTTTGTTAAATTCAGAGAAAAAGGCTTCATTATCTACTAAGCGAGTTGATTACATGGCTGTTTATAC ATCTGATCTAGTGAAAGCAGTTCGCAAGGCAGCTGGAAACATAGAGAAACCATTGGAGGGTTTCCACATAGTTGTTGATG CAGGCAATGGAGCAGGTGGTTTTTTTGCAGCAAAGGTGCTGGAACCTCTGGGGGCAAGAACTTCTGGAAGTCAATTTTTG GAGCCCGACGGCTTGTTTCCAAATCATATTCCCAACCCTGAGGACAAGACAGCAATGAAAGCCATAACCCAAGCAGTCCT CGAGAACAAAGCTGATCTTGGAATTATCTTCGATACTGATGTGGACAGATCTGCTGCTGTGGATTCCACTGGCCGTGAAT TTAACCGGAATCGTTTGATTGCCTTAATGGCGGCTATTGTTCTTGAGGAACATCCTGGAACAACCATTGTCACAGACAGT GTGACTTCTGATGGCCTCTCCACATTTATTGAGAAGAAACTTGGTGGCAAACACCATCGGTTCAAAAGAGGCTACAAAAA TGTGATTGATGAAGCTATTCGTTTGAACTCTGTTGGAGAGGAGTCACATTTGGCAATTGAAACCAGTGGACATGGAGCTC TCAAGGAGAATAATTGGCTTGATGATGGTGCATACCTAATGGTCAAGGTCTTAAACAAACTTGCTTCCGCAAGAGCTTCT GGAATGGGTGGTGGAAGCAAGGTTTTGACTGACATAATAGAAGAACTCCAGGAACCAGCTTTTGCTGTTGAGCTGAGATT AAAGATAAACCAAATCCATCCAGATCTTAAAGGAGGGTCTTTTCGAGAATATGGAGAAGCTGTGCTCAAGCAATTGGAGA ACTCAATTGGCTCTGATCCAAACCTGCAAAAGGCACCTGTAAACTACGAAGGGGTCCGAGTTTCTGGTTATGGTGGATGG TTCCTTCTTAGACTATCACTCCATGATCCTGTACTTCCCCTTAACATTGAGGCACAGAGTAATGATGATGCTGTGAAGCT TGCAGTGGCTGTGCTTGCAGCTGTAAAGGATTTTGCAGGTTTAGACATATCAGCCTTGCACACATTTGCAGGATCATCAT AA 

Protein sequence (LotjaGi5g1v0274200.2) extracted from Lotus japonicus Gifu v1.2 Proteins.

MAATSGKIVQNVFVSQSYQQNRPFGSQSRRDCFAPYMRNSLPSPQGKLAWTGISSMQLRTFSKPKRNIQCNASASATTEP YLDKIDFLKLQNGSDIRGVALDGVEGETVNLTEPVAEAIGAAFAAWLVEKKKADASQHLRVSIGHDSRISAKLLQNAVSR GLSGAGLEVVLYGLASTPAMFNSTLTKDEAFLCPVDGSIMITASHLPFNRNGFKFFTNAGGLGKADIKDILERAADIYNQ FTTESLLNSEKKASLSTKRVDYMAVYTSDLVKAVRKAAGNIEKPLEGFHIVVDAGNGAGGFFAAKVLEPLGARTSGSQFL EPDGLFPNHIPNPEDKTAMKAITQAVLENKADLGIIFDTDVDRSAAVDSTGREFNRNRLIALMAAIVLEEHPGTTIVTDS VTSDGLSTFIEKKLGGKHHRFKRGYKNVIDEAIRLNSVGEESHLAIETSGHGALKENNWLDDGAYLMVKVLNKLASARAS GMGGGSKVLTDIIEELQEPAFAVELRLKINQIHPDLKGGSFREYGEAVLKQLENSIGSDPNLQKAPVNYEGVRVSGYGGW FLLRLSLHDPVLPLNIEAQSNDDAVKLAVAVLAAVKDFAGLDISALHTFAGSS 

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 47 610 564 2.7E-284
PANTHER 47 610 564 2.7E-284
Pfam 90 237 148 4.0E-27
CDD 90 595 506 1.99492E-159
SUPERFAMILY 94 274 181 9.81E-29
Gene3D 97 253 157 7.7E-31
PRINTS 197 211 15 1.8E-17
Pfam 266 371 106 2.7E-21
SUPERFAMILY 278 372 95 2.12E-24
PRINTS 287 306 20 1.8E-17
Gene3D 289 365 77 1.4E-28
PRINTS 322 335 14 1.8E-17
PRINTS 351 366 16 1.8E-17
Gene3D 368 482 115 3.3E-31
Pfam 376 479 104 2.6E-13
SUPERFAMILY 376 475 100 3.53E-15
Gene3D 518 601 84 1.1E-5
SUPERFAMILY 548 598 51 1.91E-5

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
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 Intramolecular transferase activity, phosphotransferases Catalysis of the transfer of a phosphate group from one position to another within a single molecule.
Biological process Organic substance metabolic process The chemical reactions and pathways involving an organic substance, any molecular entity containing carbon.

Expression data

Expression pattern

Expression pattern of LotjaGi5g1v0274200.2, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.

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