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Field | Value |
---|---|
Gene ID | LotjaGi1g1v0432800 |
Transcript ID | LotjaGi1g1v0432800.1 |
Lotus japonicus genome version | Gifu v1.2 |
Description | Ornithine decarboxylase; TAIR: AT3G14390.1 Pyridoxal-dependent decarboxylase family protein; Swiss-Prot: sp|P50134|DCOR_DATST Ornithine decarboxylase; TrEMBL-Plants: tr|Q70KF6|Q70KF6_LOTJA Ornithine decarboxylase; Found in the gene: LotjaGi1g1v0432800 |
Working Lj name | n.a. |
Genomic sequence (LjG1.1_chr1:92770435..92782431) extracted from Lotus japonicus Gifu genome v1.2.
TGGGTGTTTACTTAATTTGTAAAAAAAAATCGTTCATTTTATATTTCAAAGTAAATACTAATCAACAAAATGTTTTCAAT AAAGATCAAATTTCTCTATTTCTATATTGTGTCTTATTTGTCTGTCATTCCTATAAAATTTAGACATCTGTATCCATGTA ATTTTGCATGTAAACATCTAACCCATGTACTTTTAATTCGCATGGTAAACTCTCTTTGTGGAATAAGAAAATGAGATACG GAAGGGCACAAAAGATCTACTCCTTCCAAACATGTTCGTTTATCCAAAATATGGGACTGGAATATTGGAATAAAAATGAG CAAGTGAGGCATACAATAGACAAGAGAGAGAGGGATCGGAGAAAGAAGATTGAGGTATAAAATAATTTATTCACCCCTGA TTCCACTGCACATCTAAAATTATTTAAAATAAGGAAGCATGTTTTAGAACTTTTATATATACCTATATTTTTTTTCTCCC ATTTTCACCTACCTTTTTCTTCATGTTTATCTCTTCTTTTTTATCATATCATGAACTAACTACTTGAACGACTAATGAAA CTAGAGGGTGAATATACATTAAAGACTTTATATTATATTCGTAACATGTTGCATCACGCAAGAGTTTGTTATATTATAGA AGCATGGGCAATTAATGCACATTTCGATCTACATATACTAAAATTCATTTTTTTATTGGAATAATATTTGATGCTATAAA AATAAAACTTCATTACCATATTAGGAATCAAATACCCAACTACTTAAGTTATTGAGTGAAGACACGCTTATGACTTCGTA CTATGGGGTTGTCTAACTCTAAACTATTCAAGATTTGTCTTAGGTAAAATCACCTTAGCTTAAATAACCCAATAATATTT TAACATATTATTGATTCAGAAAATTATAACTCATGACACATGTTCAAATATTATTAGGTCACATAAACTTAGAGTGATTT TACTCAATATTTTCATGAGGTGATTTAGACACCCTATATATTATATCTCAACATATCACTCATTATATCTCCACTTAAGT TCCACTCACACTCCCCTTAAAGTGTAAATTGAGTGGAGAGAAGAGATAAAATAAAAGATTTAATGAGTAATATGATTAAA AGAGAAAAGAGAGATTGATAGAAAATGAATGTGAAAATAAAGTGAGAGTGTGAATAAATTATATATAACTCTTATCTATC TCATTTCTTCCTCTTATATTTTCTTTAATTATGTGTCCAAGGCAGAGTTTGAATTTAGGTGTGAATGAATTGTAATTGGA ATGCTTATTACTAATTATAATACTTAATGGGCTACCTAATATCTGCGGTGGAAGCTGCAACAAGGATCACAATTTGTTCT TGTTTAATTTCCCATCACATTCATGTTCCTGTGGATATATTTTATATTCCGTCATGTTCTCATTTTCTTCACGTCGCTCC TCCATCCTGGATTTCACAATCACATACCCCCAGTCTATATATACACATGGATCCATCATTCGTATTATCCAACATCAGAT CTTCCAATCAATTTCAAATACTCCTTTTGTTTTCTTTCACCTAGCTATACCTACCTATCTAGTACTAAGAGAAGCCAAAC AATGCCTTCACTAGTCTCCGGGGAAATCCAAGCCAAAGATGCTGCCGAGTCTCTAAGCCTGAACCCAATTTTTAGTGCCT CAGGAGTGAAGGGAAAGCGAGTTACCGCATTGACCAAAGAATGTGACATGTCTCATCTCATTGAATCCATCATTGCTGAC AAACCAGACATGGATTCTTCATTCAGCGTGCTTGATCTTGGGGTAGTCATGGAACTCATGGACAAGTGGGTCACCAAGTT CCCCACCGTTCAGCCTTTCTACGCCGTCAAGTGCAACCCCGACATCTCCCTCATCGGCGCCCTCGCCGCACTAGGCTCCA GCTTCGACTGCGCCAGCAAAGCTGAGATCCAAATCGTCTTGTCCCTCGGCATCTCACCGGACCGCATTGTCTACGCCAAC CCGTGCAAATCCGAGTCCGACATCAAGTATGCCGCAACCGTCGGCGTCAACCTCGCAACCTATGACTCCGTGTACGAGGT TGACAAGGTACGAACAACTTTGATATATTCACACTCAACGTAAGTGCTAACAACGTACTCTTTTAATGACATTTCAACCA GTGTTATAAAACTCGGCTCGAACCGGCCGGTTCGACCGGTTGAGCCGAGAGCTAGACTGGTTCGAGCCGAGCATCGAATC GGCCATGCAAGCTGCCCGGTGTGAACCGGTCAACTCGGCCGGTTTTTATGATTAAACTGGAGACTCGGCCGGTCTCGGTT GAACCGGCCTTTTTTTTTTGAACAGAAATTTTTTTTTTCTTAGAACCGGCCTTTTTTTTTCCCTGCATTTTTTTTTGAAC AGAGCACTTTTTTTTTCCTTAGAACCGGCCTTTTTTTTTTTTAACAGAGCACTTTTTTTTTCTTAGCATTTATTAGTTGC GAAAAAAATTTGGAAAAGTGTCTAGCTTGGATTCGAACCCATTCCCTCAAGATTCAATGCTGTGAACCTTACCACTAGGC TAGACAAGTGTTTTGATATAATGGTTACAATTAATTGTATTTATATAAACAAAAATAATACTATACAAATCTTTGACAAG TAAACATTAGTTTTTTTTTTGAACGAAAGTAAAGATTAGTGTTATTACACAAAATAACTAAAACACAACCCAACCATTAT AATAATTACTTTTATATATATATATATATATATATTTAACAATAACTATTTCTTAACGTTATTTAACAATTGTTTCAAAA ACGTTATTTAACAATAAGTTAAAATAATTATTTGTGTGTTTTTATTATGAAGTTATTAATTAATGTTAGTTAGTATTATT AATTCTTTTAATTTTTTAATATAGAATGAGTCAAGTTGTTCTGTATATAATTTCTTTGCAATGTCTTCTTGTCGTTTCTT TGAGGACAAATTAAAGAATATGAATAACAAGCTTTGGTGTTGTAAAAAATTGAAAAATTGAAAATCTTTTTAGCTAGCCT GAATCAGAAACTGGATTATATACAAGTTGTTTCATGTGCATATATCATTTGTTAGCTTATAATGTACAAGATCTTAGTTG TTTATTCTGTTTTAAACTTGTTTCTACGCTTTTTGTTGTGATTAAAGCGTAAAATCGATGTTGTTTGATGATGTTTAAAA CTTACTTCAGTTATTTGTGAGTTGTGACATTTTGTTGTGGTAAAAAATTCCTTATTGCTTTTGTGTGTATGGTATTTTGT GACATTTTATTATGGTATTATGAATTTTTTTAATTTTTTTTAGTATCGACCGAGTTAAACGGTTCAACCAGTGACCCAGT GGTTGAACCATTGACTCATTGACCCAGTACCTCGACCGAGTCGATCACCGGTCCGAGTCTGATAACACTGATTTCAACAC ACCAATGATTTATTTATTTTTGAAAAGTCAACACATTTCTCCCACTTCCTAAAGAATTGTTGACTTTTCAAAATATAAAT CAATCTAAATGAGTGTATTCAAGTGTGTCATTAAAAGAATGTGTTCCTAGCATTTCTCGCACATTCAAAAAAATTTATCT CATTTTCACATACTTTTTTCAATATCTCTTCATATCACATCATCTATCATATCTCTTAAGTTGAACGAATTATTTTTTAG GTACAAAAGTGGCACCCGAAATGCGAGTTGCTCCTCCGCATAAAGTATGACAGTGAAGGAGCATTGGCATCGCTCGGCGT CAAATACGGCGCGCTCCCTGAGGAAGTCCCGGAGCTTCTCAAAGCCGCTGAGGCGGCAGGCGTAAATGTGACTGGCGTGT CGTTCCACATTGGCAGCGGGGGAGCCGACCCGCTAGCCCTCTCCGGAGCTATCGAAGCCGCCAAGAGCGTCTTTGAGATG GCAAGCCATTTCGGAATGTCCAGGATGTCTATCCTCGACATCGGGGGTGGGTTCACCTGCGGACCAGAGCTGGACGTTGC GGCCACGAAGGTGAAGGCTGCAATTCTAGCCCACTTCGGAGACCACCAGGGTCTCGTGGTTATCGCAGAGCCTGGTCGTT ACTTCACGGAAACGGCGTTCACGTTAGTTAGCAGGGTTATTGGGAAACGAGTTAGGGGAGAGTTGAGGGAGTATTGGATC AATGATGGAGTTTATGGATCTATCAGTAACATAATATATGACCACGCTACCATTAGGTGCGCACCACTAAGGCAAAAGAA TCTCACGTGCGTGGATGCGAAGACCTACCCTACCACCGTGTTCGGACCCACATGCGATTGCATTGACATTGTTCTCAAGG ATTACCAGCTACCAGAACTGCAGGTGAATGATTGGCTTGTGTTCCCGAATATGGGAGCTTATACTATTTCTTCAGGGACT AACTTCAATGGGTTTACTTCAGCAGTCAAACATGTCTATCTCGCATGTTCTGAACAATCCTAAACTAATGATGTTGTGAA ACCAAAATAATAATGGCACTGGTGGTCTTGTAACTTTAGTGATCTCTCTTCTATGTATGTTTTGTATTGTATTCAATTGA ATTCAACTACACATTGAATTCAATGGAGTAAGCTTTGGTGTCTTGATGTATATTTTCCGTTTGCCTTGTTACAAACGGGA AATCAAACACCTATATGATAAGAAATAAAATTTTGTTTTAGTGTTTTACCGTTGATATACTTCATACCTTATTCTGTTGG ATTCTTTTTATTTCAAGCAAGTAAACTAGTATAGGCAACTGTTTTTGAATACAGTCAAAGGTAACAGGACAGTTTTATAT AACATTCATATATCTTGGTGGTAGCTGTGATTATGAAATGTTCGCAGTTCCACCTTTCAAGAACCAATTCTAGCTTGAAA AGTGTGGAAATGTGAGAATGCTGGAGCAATGAAATTAAAAATCCCTTCTTTTAAAAAAATATATTTGGCAACACCTATCT AATTTGGGTTATTTATATATATTCACGCCGTCAAGAAATCTCCACCATGACAAGATTGGTCAGCTCATATATTTCATAAA AATCACTACTTTTTTGAAGTGCAATAGTTGTACATCAAGTTTATACTTTATACACACCTTGTCAATGGAATATCAACTTC ATAATCATAAGTTAGAGGCCTAACCGCCTAAGCGTACGTAAAATGTCCAATGACGAACATATAACTTAAAATTGACTTCA ATGATTATCTCGCTTGGTGAATAATCATTATCATGCAATCCCTTCGCCTTTACATTCCCTAGTGACCTGTTTAGAGCTTT TCAAAATGATGGGGGAGAAAGAAAATGCATCTTAGAAGCTCCATTCTTTTTAATTAAGTGACTCAAAATTAGTCATTATT TATTACCCTTGACATACCGTGTTGGTCATGTGCAGCAGAAATGCCAGAATTTCTGAGAAATTGGGTCTCAAAGATGGTTC TTGGTGCCAGCACCAGTGAAGCAATTCCACTAGCTTAGGATGAGTATGCTTTGGAATTTTAGGCCTTAAACCCTGCAATT TTTACACCATATCTTATTTAATTTCACAAAATGTGTGTGGCTTGGTAGCTTGAGCAACTAGAGTTTTCATGTGTCTTTTT TTATTCTCTAATATATATAGGAGTCATTTCTAATCAAGACATGCAAAGTAAGTTCGCATCTTCAACCAACTCCACGTACT CATGCATATCAAGTGCATGATTGGATACACGATAAAAAGCTACAATGAAACCAAAACTATGATGGACAGACGCAAAAGAT AATTCACTGTGATTTTGGCTTCATTGTTCAAGGTTTTCAAAGTTCGAAATGTGAAGCGATCTGTTCAAGTTTCTGTTGCA AACACATGCTAAGAGCATCTTCAATGCTAGGTTCTTAGTTCTTAACACTATTTATGTGGGCTCGTACTGCCACATGTGCT TAAGCAACTCTTTACAGATTTTGATTCAACCATGAGTTCTTGGTTCTTAGTTCTTAGCACTATCGATCTGGTCCCACAAT ACCATTATATTAATAATATTTTTATTTTCATATAATTACTTAAATTAAATCAGTTAATGAATGAGAGAAAAAAAATTAAT TTTTTATGCTAAGAACTCAAAAAGTAAAACTTCTTATATAAGAACTAGTTCTTGAAATAAGAACTAATAACTCTACGTCA GCCCCCTCTAATGGTTAAGAACTTACTTCTTAGTTCTTAGCTCATAAATAGGAACTAAAAACCTTGCATATTGGAGAGAT GCTCTAAGAAGTAAGAGGTGCATGTGAAATTTAGCAGTGAAGGAAATACCTTCTGGACCACTCCAACTGCTGCTTGCAAT GGGGACAAATGGTCATAAGGAAGCTGATATTCAGTCATAAAACATGGATGTGTGAGTTATGGGCAACAGTAACAATAACT GAACTAAAACAAAACAAAACAAAAAAGTTCTAAATATTCTTCATCCCTCTTTTTATCCTCTGTTTCTGTTAAATACATTG TTGCTCAATTTAAACCATTGACACTATCATTCCTTACTCTTCCCTATGCGAAATTTGTATTTTACCCATTAGTCCTATCT GACTTAATGTGGTCAACAATGGCTGGAAATTAACTTCTGAATAGCACAGAATTCAGTCTCAGTACATAATCTAGCTAGTT GCATTGAAGGATATATTGCAGTACTATGTGTCAAGGAGGGTCTTCAATTGAAAGGCACAAAAGTCTTGCAAGTCATTTCT AAGCTCAATCCTAATTGAAAATCGAAAGGATAATATAAATTTACAAAGTAGAGAGCGTAAGTTTTCAATTGGACATGAAA TGGTTAGAGTTTAACTCTAGGCTAAGAGTGAAAAGTGCAGAAAGCGTTACCTTTCCTGTTAGCAGCTCCCAAAGAACAAT GGCAAAGCTGAAGACATCGGCTTTGTGATCATATGGTTTATGTCCAATAACCTTCCATAAGTCAAGGAAATCACAGGTTA ATTATAATCAATTCAATGAGAAGTAGAAGGAAAACAAGAGATGCAATTCTACAAGATGACTTACTTAACCAATTAAAGCA ACCATAGGTAAAGATCAAACAGAACCAACCAGTTGAACCAAAAATCAGTCAGGTGCATTGGTCTATTACTCTATTTGACT CCAAAATTAGCTTGTTTCAAAACCAGTGAAACTAAGTGAAAAAAACCAGCTGAACTGGATCAAAATCGGTAAAGTTGCTC AAAAATTGTAGTGAAGAACTAACTTGAACCGGTCAATCTTAAAATTTTCAATTTTTTTAGTTTATTGAAATATTTTAATT TTAAAAATGAAGTTTTAAAGCAAATAAAAGGCTGATGACAAGTTGTAATTACGTATATATGATATAATAATTTTACTGTT GAACCATTGATACGTGAATCAATATCTTTACTAATTCAATGATCGGTTCAGTTTTTATAACAATGATAACGACATTTTTA GGTTCAACCGACCCGAGAAAAAATTAAAGAGCAATAGCCTACCTTTATCTTTTACTGAAAGATTATCACATTTCTTTCTT GTTTTAAAGTGGGGGGAGGGGGTTTTACAAAATGGGGGATAAAAGTAATTGTTATTATCCATCTGAGAAGCACATAAGCA ATCAAGAAATCAAGTTAGCTTTAACAGATGTTCAAGTTCCAGCTATTTACTGCTCATCATAAAAAGCCTTCATTCTCATT CCAAGGCAGCCTATTGTATCCTTAAACTGCCTCATTCATCCATGCCTGTAAGTTATAAAATTCAAAAAATTCAAGGAGTA ATCAACACCATTGCAGTACTTATAAATATATACCGACCTCTGGAGCCATCCACCGATAAGTACCAGTTTCTGCAGTCATA ATACCAGGTTGATTGTACACTTTGGCTACACCAAAATCAGCAACCTTAACTACCTGTTGGAAAAGTTTTTCAGCAACCAA AATGGTAGGTGAAATGCTAATTTATGCTTTGAAAAGTGCTAGGTGAAAACACATGTAGCAGACAAAAAATTTAAACAGAA CTAGCAAAATCATAAAGCATATGAATTTTTAAGCTCTGTCTCAAGAATTTCAAAATTCACTGTAGATCATCAATTACATG AAATCTTATAGCATCTAAGTATAGACTTGTACTATGTTTTCAACTTGTATGCACAATGTATACTTACCCCATTCTCATCT ATCAAGAGATTAGCCGTTTTGAGGTCCCGATGTATGATACCACACTGATGCAAATATTCCATTCCTTTGGAAACATCAAT CGCTACTTTGAGCAAAGATGGAAGAGCAAGGACAGTCTTATGTAAATGCAGAAAGTCATACATACTTCCGCCTGACAAAT ATTCTGAGAAAAAAAAAAGATGCATTGTGATTAATAAAATTTCTCACAATAGATTGATATTGCAATCAATAAGCAAAGTT TAACTAGGAAAGACAGATTTTACCTGTGATAAGGTTAAGGTTTGGGGGCTTTGTACAAGCACCAACAAATTTGACAACAT TCTTATGCTGAACTTTACTGCAAATGTAAAATTTGAAAAGGCCATGAGTTGGTCATAGATTATAAATAATTATTATTATT TCAATGGAAGTTGTGATAAACCTTAGGATGTAGACTTCCTGAGCAAACTCCTTCCTTATATCATCGTTCAAATTCTCATC CTTAAGGACCTTGATAGCCACATCTTGATTACAGAACGTGCCTTTATACCTGCCTCAACTTATCAGTAACTCAATAAGTA CTGACTCAAACATATCAAGGAAATGAAATGACAATACTCACAAGTCACTGAAAGGTCCTGATGCAATTTTCTTTTCAAGT CTCAAGCACTTAGGATCAATTTTTGAGATGTCATTTTCACAATCAGGTAAATTTGCATGTCTAGAGCTAAAGTCCATCTC GGTTTTCCCTTGCTCTGCAAGAGGAAGACTGCCATTTTCTTTCAACTGTGGTTGCTTCTGGATTTCCACCAAAAACATAA TTTAAAAAGTCCTCTATTAATAGTGGTAGAGGGAAGATGCAAGCAACGCTTAATTCATTTACTTAAATTATTGCATGAAG TAAACATTAATCCAGAGCATTTATAACTTCTAGTTAACCGAAACTAAAGAGAAAACTTGTTACACTTTTAATGTGTGAAC ATGTTTACAGTGACCAGCTATTGCCATTAACTCGGGAAACTGAAAAATTACCATCAATCGGGCCCAAGCAACTACTACCA TAAACAACATATGGAATTTAGGGCCAAATCAAAAGATGAATGCCAGGGGCAAGGAGACAACACTGATCTTTTTCAGTATA AGTAAATCCGTGTTTTTATTTGCACATCATTTTTACATTTTTGAAAAGAATGAGGTCAAGTAGAAGATACGATTGTTTAT TTTGTTATTTAAAAGATAAATTTTATTAAAATTATGAGTAAATAACATTCTTGCAGGCAAAACAAGATCTTAAAACGCAT CCATTAAAGTAAACATGTAAATACAAGTAGCATAGAGAGGGCCTACCTTGAGTTTTTGAGCTAGCACATGTTTCAATTTC TCTGTCTCCTGCAAATTTCAACCATCGACATTTGTCAAGTAAACTTGTTACAAAGAAGTGATAGACAATAATAGAGTTCA ATTGTATATTTTGCATTCTTCTTTGAGAAGTATCAATGGCACATACTGTTTAAGTAAGAGTTATCAAGTTGTCAAAATTA GAAGGAATTATATATGCAATTTGATTCAGACATTTTTCAATTGAGTTCCATGAGAGAAGCTAACTTCCGTCCATACTAAT CTCAAATGATTGAACTACTGTGAGGAAAAATGAGGAAAATACCTCAACTGGCCAACCACCAACAGCAAAAACATCCAATG AATAGCCATCCAATGTGGAAAAAGCATGTGCTTCTTGAATGTCAAGCCCAGTCTCAGACAGTAAGCAAGTCAGCTGCATT TATTTTTAAGGCAAAGAGAGCTATCAACAAACAATGGCGTTGCAAATAATTATTGTAAGTGTGTAATTAATTAATGATTA AAAGGTATAATTCCTCTCTATTGTAATTTTTAAGGATTTGATCTTAATTATTTGTTCCACTAAAATATATCTTATGAGTG TAATTAGATTTTGTACTTCCTAGCAAGCCTCCAAAGGCTCATCAGTCAGGATTGTAGTGCAAAACACATAATACACAGGA ACTATTCTACAAAATTTCTGAAAAATCAGGAAAAAAATAGAAAACTGAAGTGCATAGGTTTTCCACATTGCACTACAACA ATAATATCATCTAACTACCTGACTGAGAAGTTTTGGCTTGTCATTTGTTGAAATTGTGATTTCATGCATAGGCCTGCCGT AAGTATTAATGAAAAGTAATTAGCAGAAACAAAAGTTTCAAATAATCAAATACTAACAAATATCACTATTTTTATTGACA TATTGAGAAAATGGGCAAAAAGGAAAATTAAGAAATTATAAATGAAGGAAATGTTAGAAACTCAAAGAAAGGAGATAGAA AAATTAACAGAACGAATTAAAAGAATGGAAGTGTATTATTAAAAACTAAACAGAAAATGGAGAATTAGAATTTAGAACTC TCGTCAAGGGTTTCTCCTGCAGTGCACTAAATGAATCCCCCTAATTTGGTTCGCAGGAATTTATCTTACCAGTTGCTTCC CACTACTAATGGACTAATTGTTAAAATGTTAGCACACATTTCAATGTGGTTGATGCTATTCCATGTATCTAGGCTCATTT GGTTCAACGGATGTTCAAGGTTTGAGAACGCGTATTCAAGCACAGCATGACAGAGTAATTGCCTTTATTCTTGAAAATTG AACTGAAAATGAATAATAGAATTCTCCCCAAGGGTTTCATTTTATAAAGGATCTCCCATTTTTGCTCTCCAACAATCAAA TGCACTAAAGGAATCCCCCAAATTCAATTTGCATATTTATCTAACCAATGCCTTATAAAGAAGTAACTAATCTAACTAAC TAATGGATTGACTGACTAAAGAGAAGTTGTTCTTATGTTGTACTAACTATATATCCTAACCAGAGGTGCAGATATTTAAA TGAAAGACATCTTTAAACAAAAGAATAGAACATTAAGTCATTAAGAACAAAAAGGTACTAAGGAAAAATAAAGATTATTT TACCGAGCATAGGGTGTAACAATATTCAAATAGTTATCCTTATCCCGAACTTGTAATGGACTCGCACCAACTGCGAGTTC CATGTTAGCTGATGAACCAAAGGCCGGGGGAGAATGGAAGCTAAGAAACCATGAAAGAGATAAGCAAGAGTTGGAAAAGT TGAATAGACCAATCTATAAGACATAAAGATAGGTGATAAGTATAAAGAACAATAGTACTGTATAAAGAAAGGAGAAAAGC AAGTAAATGTTCACATAATCACATACCTCATGTCACCTGGAATATCAGAATCCTGAGGACAAACTTTAGTTCGTGAGTTT GAATGAAAGGATTTACTAGAATGCACACCAGAAGCAGAACGAACCTGCATAAAAGATATATTGTCAAAATCTAGCAAATC AATTGGCTAATGCTGGTAAGATCAAAGCTTCCATAGCCTGATAAAATGAAGAAATTAATTTTCTAGATACTAATGAAATC AGAACATAATAATTTCCTCAAAAGGATGTATGAAATGTCTAACTAACAATAACCATCTACTTTCTGACCACGGAGAAAGG AAAGCATTTAGAGGCTAAAACTTTATCTAGTTCAGGCAACATGTTTGGATCAGATTGTATTTCCTCAGAATCAATTATGT CACTCAAATGCTACTCAGAGAAGCTTCTTTACATAATTGATTTTGACTTTAGAATCAAGTGTAGTAAGATTTCTAAACAT GCACTAAACTACCTGAACAAGACGGACTTCAACTGCAGGTCCGGTTGTTGTAGCCGGGTTTCGTGCCATGTGCAGTAACC TTTTGTGCATAAGAACATCTTGAGCCCTCTCTACATTCATATCCAAGGCATACCTATCATAAAAAATCAAAATAAAA
CDS sequence (LotjaGi1g1v0432800.1) extracted from Lotus japonicus Gifu v1.2 CDS.
ATGTTCCTGTGGATATATTTTATATTCCGTCATGTTCTCATTTTCTTCACGTCGCTCCTCCATCCTGGATTTCACAATCA CATACCCCCAGTCTATATATACACATGGATCCATCATTCGTATTATCCAACATCAGATCTTCCAATCAATTTCAAATACT CCTTTTGTTTTCTTTCACCTAGCTATACCTACCTATCTAGTACTAAGAGAAGCCAAACAATGCCTTCACTAGTCTCCGGG GAAATCCAAGCCAAAGATGCTGCCGAGTCTCTAAGCCTGAACCCAATTTTTAGTGCCTCAGGAGTGAAGGGAAAGCGAGT TACCGCATTGACCAAAGAATGTGACATGTCTCATCTCATTGAATCCATCATTGCTGACAAACCAGACATGGATTCTTCAT TCAGCGTGCTTGATCTTGGGGTAGTCATGGAACTCATGGACAAGTGGGTCACCAAGTTCCCCACCGTTCAGCCTTTCTAC GCCGTCAAGTGCAACCCCGACATCTCCCTCATCGGCGCCCTCGCCGCACTAGGCTCCAGCTTCGACTGCGCCAGCAAAGC TGAGATCCAAATCGTCTTGTCCCTCGGCATCTCACCGGACCGCATTGTCTACGCCAACCCGTGCAAATCCGAGTCCGACA TCAAGTATGCCGCAACCGTCGGCGTCAACCTCGCAACCTATGACTCCGTGTACGAGGTTGACAAGGTACAAAAGTGGCAC CCGAAATGCGAGTTGCTCCTCCGCATAAAGTATGACAGTGAAGGAGCATTGGCATCGCTCGGCGTCAAATACGGCGCGCT CCCTGAGGAAGTCCCGGAGCTTCTCAAAGCCGCTGAGGCGGCAGGCGTAAATGTGACTGGCGTGTCGTTCCACATTGGCA GCGGGGGAGCCGACCCGCTAGCCCTCTCCGGAGCTATCGAAGCCGCCAAGAGCGTCTTTGAGATGGCAAGCCATTTCGGA ATGTCCAGGATGTCTATCCTCGACATCGGGGGTGGGTTCACCTGCGGACCAGAGCTGGACGTTGCGGCCACGAAGGTGAA GGCTGCAATTCTAGCCCACTTCGGAGACCACCAGGGTCTCGTGGTTATCGCAGAGCCTGGTCGTTACTTCACGGAAACGG CGTTCACGTTAGTTAGCAGGGTTATTGGGAAACGAGTTAGGGGAGAGTTGAGGGAGTATTGGATCAATGATGGAGTTTAT GGATCTATCAGTAACATAATATATGACCACGCTACCATTAGGTGCGCACCACTAAGGCAAAAGAATCTCACGTGCGTGGA TGCGAAGACCTACCCTACCACCGTGTTCGGACCCACATGCGATTGCATTGACATTGTTCTCAAGGATTACCAGCTACCAG AACTGCAGGTGAATGATTGGCTTGTGTTCCCGAATATGGGAGCTTATACTATTTCTTCAGGGACTAACTTCAATGGGTTT ACTTCAGCAGTCAAACATGTCTATCTCGCATGTTCTGAACAATCCTAA
Protein sequence (LotjaGi1g1v0432800.1) extracted from Lotus japonicus Gifu v1.2 Proteins.
MFLWIYFIFRHVLIFFTSLLHPGFHNHIPPVYIYTWIHHSYYPTSDLPINFKYSFCFLSPSYTYLSSTKRSQTMPSLVSG EIQAKDAAESLSLNPIFSASGVKGKRVTALTKECDMSHLIESIIADKPDMDSSFSVLDLGVVMELMDKWVTKFPTVQPFY AVKCNPDISLIGALAALGSSFDCASKAEIQIVLSLGISPDRIVYANPCKSESDIKYAATVGVNLATYDSVYEVDKVQKWH PKCELLLRIKYDSEGALASLGVKYGALPEEVPELLKAAEAAGVNVTGVSFHIGSGGADPLALSGAIEAAKSVFEMASHFG MSRMSILDIGGGFTCGPELDVAATKVKAAILAHFGDHQGLVVIAEPGRYFTETAFTLVSRVIGKRVRGELREYWINDGVY GSISNIIYDHATIRCAPLRQKNLTCVDAKTYPTTVFGPTCDCIDIVLKDYQLPELQVNDWLVFPNMGAYTISSGTNFNGF TSAVKHVYLACSEQS
Data for domain prediction are obtained with InterProScan, and merged with InterPro data obtained from the EB-eye REST service.
Prediction algorithm | Identifier | Start | End | Length | E-value | InterPro ID |
---|---|---|---|---|---|---|
SignalP_EUK | 1 | 25 | 25 | - | – | |
PANTHER | 103 | 492 | 390 | 3.1E-156 | – | |
PANTHER | 103 | 492 | 390 | 3.1E-156 | ||
Gene3D | 121 | 481 | 361 | 5.4E-130 | ||
CDD | 131 | 488 | 358 | 3.06625E-170 | – | |
PRINTS | 132 | 156 | 25 | 4.3E-58 | ||
SUPERFAMILY | 138 | 372 | 235 | 3.43E-57 | ||
Gene3D | 140 | 370 | 231 | 5.4E-130 | ||
Pfam | 142 | 371 | 230 | 9.7E-65 | ||
PRINTS | 158 | 185 | 28 | 4.3E-58 | ||
PRINTS | 160 | 178 | 19 | 2.1E-31 | ||
ProSitePatterns | 160 | 178 | 19 | - | ||
PRINTS | 180 | 192 | 13 | 2.1E-31 | ||
PRINTS | 202 | 226 | 25 | 4.3E-58 | ||
PRINTS | 232 | 254 | 23 | 4.3E-58 | ||
PRINTS | 282 | 295 | 14 | 2.1E-31 | ||
ProSitePatterns | 317 | 334 | 18 | - | ||
SUPERFAMILY | 349 | 484 | 136 | 1.15E-37 | ||
PRINTS | 362 | 381 | 20 | 2.1E-31 | ||
Pfam | 372 | 467 | 96 | 4.3E-18 | ||
PRINTS | 397 | 410 | 14 | 4.3E-58 | ||
PRINTS | 434 | 444 | 11 | 4.3E-58 | ||
PRINTS | 454 | 467 | 14 | 4.3E-58 | ||
PRINTS | 467 | 480 | 14 | 2.1E-31 |
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. | ||
Biological process | Polyamine biosynthetic process | The chemical reactions and pathways resulting in the formation of polyamines, any organic compound containing two or more amino groups. |
Expression pattern of LotjaGi1g1v0432800.1, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.
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