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LotjaGi6g1v0256600.1

Overview

Field Value
Gene ID LotjaGi6g1v0256600
Transcript ID LotjaGi6g1v0256600.1
Related isoforms 1
Lotus japonicus genome version Gifu v1.2
Description Calmodulin-binding transcription activator; TAIR: AT4G16150.1 calmodulin-binding transcription activator 5; Swiss-Prot: sp|O23463|CMTA5_ARATH Calmodulin-binding transcription activator 5; TrEMBL-Plants: tr|G7IMU6|G7IMU6_MEDTR Calmodulin-binding transcription activator; Found in the gene: LotjaGi6g1v0256600
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr6:56950630..56961184) extracted from Lotus japonicus Gifu genome v1.2.

AAAAAGGGAACATAAGAACAGAGTCCAGTCCAGAGTGTCATCATCATTCAGCTCCGAGCCTCCGACGACAACCTTTCTCT TTCTTCCCTCAACTAACCCTTCTCCGACAAGTGAACCAGGTAGATAGTAAATTTCTCAACTTTTCCGCTTTCTCTCTCTA CCCTTTTGATTTTTTGTCCTGTTTCTTTTCCTGCTCAGAATTATTGCTGCTGCAAAGTCATCTGAGTCTACGTTGACTGT TGTCTTTTGCTTGATCGTGTGTTTGTTGGGTGAGGGAAGAGGTTCTGTCTTCATAGGTTTCTTCTGTGATGGCACACACC TTAACTGGGCAGCTTGTGGGTTCAGAGATACATGGCTTCCACACTTTGCAGGGTAAGCATTCTTTGGATTATGCTGATAA TAATTGGTTGAACCTCAAGAAGCATCATCATGTTTCAATTTTGAAGTGTACCCTCTTCTTTTTTTCTATCTATCTTGTCA TAATTTTATTAGGGGGTGTGAGATGAAGCTTAAATTTTGATCTGAAAATTCTTCACTTTTTTAGTGTTTGGTAGCATCTA GTGGTAGTTTTACCTGCTCAAGATGCAACTGTGTAGTTTTCAACGCAACCTAGGAGTGTAAATTGTTTCTCCAGTATCAA GTGTGAACTTCTCTTGCTTTTGGGAAACTAGAGGATGAGGGTTTTAGAGATAACTCTGGCACAATTTTGGTTTTTTTTTT TGTGTTAGAACAAACTACTAGTCATTCTTTCACAACTTAATTAAGGGTACCAGTACTAAGGTTTTAAAGAAAAAATGGGT AGCATAACAACTCCTGTTAGAAGTCTCACATTGGCTAGAGATAAGGCCAATCAAGTGTTTATAAGGGTTGTGCAAACCTC AACTCTTGAGCTAGCTTTTGTGGTTGAGTATAGGCCTCCCAATTTCTAATATGGTATCAGAGCCTATCCTAGATCCATTT GTTGTGTGGAGACCTCCCATATTTGGGTCACCCGTTGTTGTTCCCACGTTCCAGTCTGTTCAAATCCTGGACGTGAGGGG GTGTGTTAGAAGTCTCACATTGGCTAGAGATAAGGCCAATCAAGTGTTTATAAGGGTTGTGCAAACCTCAACTCTTGAGC TAGCTTTTGTGGTTGAGTATAGGCCTCCCAATTTCTAATAACTCCTTGTGTTTTGTGTTGTTTCATTATATTAGAAGGCT AGAAGCTACATTTTCCTTTTTTTTTAACTGACTTAATACCGGCGCAAAGTTCTTTTACCATGTATTTGAAATATTGCACT GGCTTCAGCTTAACTGAATTCCACTGAAATATTGATTACAAAAAATTCTGATTATTGTGTTTTCCATGAGAACATTGAGT AGAAGTAGAAAAGAGGCTGTGAAAATTGTTTCTTGTATTAAGGTAACATGTCTAACATGTAATAATTTTACCTGCTAATA TCTTATACATTGATTTTGTAAACTATATAAAATGTGCCAACAAAATGATGCAGCATAAAACTGGAAGTTTATGACTTGAT ACGAGGACTGGTCCCAAGTCTCGTAAATCACCTGAAGTATCAAACTAGCATACTATATTAGTTTTCGTTTGACCATATTG CATGGGAACTAATTAAAGCAAGTAAAAGGTTAAAATCTCAGGATATGAAACTGTGACTTTAGTTTTGGTTTAATATGTTA TTGACACTTGTACTTTTAAGACGTGGTTCAAAAAAATCTGACAAACTGTATATCCTCGATGCATTTCTGTTGCTATTTGC TTGCTTCCCACTGCAATGTTTTCCTCATCTCTGTTGACTTGTTCTAAACTACTTTCTTATATATGACCCAGACCTGGATG TTGAGAACACTTTGGAGGAAGCAAAAAGCAGATGGCTTCGTCCCAATGAGATTCATGCTATACTCTGTAACCACAAATAT TTCACCATCTATGTCAAGCCAGTCCGTTTGCCCAAAAGTAATTATACATTGCTGTTAGTAGCAACTTGAAGTTTGTAGAG TAGATATGAATTTTCATATAGACTGTTTCCCATCATGTTCTACCTGTCTCTTTTATGGTCTATTTCTTAATTTGCATGAA ACATTTTGATTTTCTTGCTCCTTATCATTTCATGTTTTGCCAAACTTATAGACCTTTCTATTACTGTTGAAGCTTTTCTT ATCAAATAGTAAAAACTTTAAACAGAAGTTTATGTGTATATTTATGCATTGTTCAAGGGTGTTTTCATGTTTTGTCATGA ATCTAAAGCAATGTGAAGCCTCTATGATTTATTTCTGACATTGTTCCTCCGTAGATCTACTGAATGGAATTTCTGTCAAG TAGTTATTGTGCATCTATGTAACATGTTAGAAGTTATATGATGCCAAACAGGATTCGCATGACCCCGCTAATGTTATATT ATTATTTTGTGTGCAAAATAGGTGGTACAATTGTACTATTTGACCGCAAGATGCTTAGGAACTTCCGAAAAGACGGGCAC AACTGGAAAAAGAAAAAAGATGGGAAAACTGTTAAAGAAGCACATGAGCACTTAAAAGTGAGTATTTTAATCTTCTTGGG TGTTTATTTGAAGTTTTATGGTAGGAAGTAGTTTATTGAATATAATTCCTTGAACATGTATCCTAGGGGCTTCTAATGGT TTCCCAATAATTGAATTTGGTCTTTTTTTAATGGCTTCTCCTATATTAAATATGGCTTTTTTAATGGTCTCCTACATTTT GTTATATTAAATATGACTTTTTTCCTATATATATATATATATATCCCCTTTAATTAGACAATCTAAATGGTTTACGGAAA TTGTTAATTTTCAGAGAGGCCACCTCCTTCGATTTCAATCAATGTAGCCGAGCCAACCCACCTAGTTGTATAATAATAAG GCTTGGTTCTTGCTGTAGTTGTACCTTATAACTTTATATCTAGAGGGTTAATTTATCATATGTTTATGACTAAAAGCATG GTAACTGTGGTAAAATGCTCAAATACTTCTCTATGTTCCATTTTTATGGACTGTAAAGGGAATGGAATAAAATTTTGACA TAAACATGGTGAAGTTTATCAAGTAGCCTCTTAAGTTAGGTTAAATCTTAAAATAAACCACTAGAATTGGGTCTGTAGTG AGGGGTTTCAATAGTTTTCCATGAGATCATGGGTTTAAACTGCCAGCTACCAGCCTACCATTGTACTAAAATGGTTAAAT CTTAATATGTTGAGTGCTTCCTAAAGCTCAGATATGTACTTTTTTTATTGATGCCATCTTAAATTCAATGCTCTTTCTTC CATACATGATAATTTGTTGTGAGTTTTGATATTCACTAGGGTTTCTCATGATTTCCGAATTCTTACCTTAGCCATTTAGG AGTATGAATCAATGCATTCTCTATGCTTTCTACTTGTTCAGTTCGCATACAATATTCAATGATTCTATGATAAACTTTTC TTCCTACAGTTTTTGTTCTCCATGATTCTAACACTGGATTGAATTACTGAAATTCATGTCTCTGATGACTGATTTTTTAC ATTTTTTCTGATCATGCTTTTTCTCTTCATCAATCAGGTTGGTAATGAAGAAAGGATCCACGTATATTATGCACATGGCC AAGATAACCCTAGCTTTGTTCGTAGATGTTATTGGTTACTTGATAAGTATGTATATCAATGTTTAGCTTTTTTCTTATGT TAAACATAGAATAAATAGAAGTTGCTAATAATACTATGACTAATGATTGTTATCATTTTTTGTTCTTTTCAGGAGTCTGG AGCACATAGTCCTTGTCCATTATCGTGAAACGCAGGAGGTAGTGTTATTCATTTTCCTTCTTCCTTTTCCTCTCAAATTT TCCTTCACCTAACAAACAGTAATGTATATGTCGCTTTGTCGAGCCTATATATTTTCCATCACATATTGAATCCATATGTA GTTCGTGATCCTTATATCAATAATTTAGTTTTGCTCTTTTAGGAATTCAAGCATGTCCAGATGCATGGAAATCATGTCAA TACCAAATATGTTTTTCAATTGGTCTGAGTGGAAATTCCTCTTACTCTGTGTCTGTGGATTACACAGTTTTTTTTTGTCT TCTGGCTTTTGCTAGGCCTCTTGTATAGTGTGGTTTACCTTTGCATGTGTCTTAGAGTATCTCTAAGTCTAGAAAAAGCT TTCCTACTGTGAATTTGTCGCTAAAGTGAGCAAGTTTGAGTGTATCAACCCTTAAATCTATGTGGATGCACCTTTTGCTG CTTCCTTTGGAGATAAATTCAATATAGATGTTCCTGGTCCCACAAGTCCCATGATGGATATGTGCCAGTTATGCTTTACC CTATGATCTAGTTATAACCTTCATTTGGTTTTGGTTTATGATACAGTCACAAGGTTCTCCTGCTACACCTGTAAATTCAA CTTCAAGTTCTGCCTCTGGTCCAACTGGACCTTTGATTTTATCAGAAGACTTGGATTCTGGGACCAACAATGCTTACACT GAAGGTGAGAAAAGGCTTTTAGATAATTGAAGTCTTTCTTCTTACCAGTTGTCCTCTTGAAGCTGTCAATGTGAAAGGCT CATTACACACTTCAAAATATTTGGAATCTTTCATTCAGAACATGCCAAGGGTTTGTTGGGGAAAAAATGAGATGTGGGAT TATTAGTTGAGAGAAAAAAATATGTGTAATATGCACATCTTCGCACATTGCAAGTTCTTATTCTGCCCACTCCCACCATA AATTAGAGTCTTTTTGTTGATTGATTATGATCCTATATATATTTGGTTACTATTGCTGTGGTCATAGATACTGTTACTTT CTTTCCTTGACTAGGTATACATATTCTCATCCCTTTTTACTGTATTTCGAGATAAACAGGGCTTAATGACAATTTAACAA CCGAAAGTCATGACCTGAGGCTTCATGAGATTAATACACTCGAATGGGATGACCTACTGGTTCCAAATGCTAACACCTCT AATGTGCCTAATGGAGGTAAGTTTTTGTGCTTTAGCAGAACTGATTGCTTGTTGGGAAAGAACCTCATTATTTTATACTT GACATTTGGCAGGCAATGAACTATATTTGTATCAACAAAATCAAACTTCTCCGAATGACAGTTTTGGCAATGTAAGAATA CTATCTTTCTTTGGGTTCTTTATTTTGCTCTATGTTTTGCTTTCTCATTTATGTTTTGTGGCTGGGGGTCAAGTGCCAAG TCCTTTGAAAATATCTTTTAGATAGGGAAAATTAATTCAAGAAAAAATAAGTATAGCCCATATTGGAGATGAGGTAAGAT GTTCTCTGAAATAAAAAACGAAAGGTTTAAGAATGCAGTAAGGTTGCTCAATCTCTTTGCATATTGCACATGGAAACTCC CTTGAAACGGCTTTGAGAGGCATGCCAGAGAACCGCCAATAACACCAAACTATTCTATCAAATCTAGGGTAAATAGAGAA CCTTGAAATGCAAGCATTCTGTTCCAACCTAACACACTAAAAAGCAGAAAAAGCTGCAAACGGCTAAAAAAGATTCACCT CCTTGTTATTCCTTTTATTTTTTATTTTTTTGGCTTGTTCTTTAAATTTTATTCTAACAATCATTCTCTTAAAGCGTGTG TGATAATGTGAAAATAGAAGGGTTTATATCATTTATTTGACAAAAGGTTTGGTTGATGCTCAGGCATTCAGCTTTGCATT TGCATTTGTCTTGTTTCATATTAACATTTGACTATAGGAAGTTAACAATTTGGTTTACTGTTTGTGTATTATTTATAAAA ATTATCAGTAATCGCATTTCAAAAGCCACAGCCACTTAAATGGAATGATCGTGAAAGCACAGTTTTGGGTTTCTCATTAT TATACTTTTTACTTGTTTTTTTGGTGTACTCTTGGGTTAAGATTTGATCAATTGTTCCCATTTACTGAGATTGAAGGAAC TAGGTGGATAGCATATCCTCTTTCACAATTACATTGCAATCTAAATATATTATATATTGACAGTAATTACATATATATAT ATATATATATATATATGTATCTATATATGTATACACATATATTAATTACATATAAAAGGTTATTTCTAAAATCTTGTAGC ACTAAATTATATCCTCGTGCTTTTCTGCTCTCCCTCTTCTTTCTTTCTTATAGTGATACTTGCTATCCGATAGCTGCTGT TGTAACCTATACAGGGTTTTTTCACCAGGTTGCCAGTAATCCTTCTGCAGAAATACCTTCTTTTGGTAACTTAACTCAGC CTATTTCTGGAAGCAACAATGTTCCTTACAATTTTCCAGAAAGCGTTAATCTTCAGAGTAATTGTCCTATCTCTTCTGGT GGTGTTGGTTCCATAGGCACGGTAGTCGATGAAGGCTTGCAAAAACAGGACAGCTTTGGAACATGGATAAACAACATAAT ATCTGATACACCATGTTCTGTAGATGGGTCAGCTCTTGTATCATCAATTTCTTCATCAGTAGTGGTGGATAATCAGCCAT CTTATCTGCCAGAACAAGTATTTAATCTCACTGAGGTGTCCCCTACTTGGGCATCTTCCACTGAGAAGACAAAGGTTTCC TTCTGCTTTTTCTCATATATTAATTGTTGTTATGTACTTGTGGCCTTCTTTCCTACTAAATTTAATACTTAGCTTCTCAG TTAATTTTTCAGTGTTTTTGTTATTTCCAAAGATTAAAGCCATAAACATAAAAGTGCATGAGAAATAGATACTGTCAATT CTTTTTGAGTTCAAAAAAGGATTTCAGTAGGCATCATGAGTAGCACTCTGGCTTAAGCATGTGCATCTTCACGTTAATAC TTGATTTATGGTCAACTCAGATTTGTTGCCATTATTCTGCAATTATAACTAAATGATTCATGTTTCTCTACTTTTTGTAG GTCTTGGTAACTGGATTTTTTCATAATGACTATCAACACCTTACAAAGTCTAATCTACTGTGTGTATGTGGTGATGTAAG TGTTCCTCTAGAATTTGTTCAGGTTGGAGTTTATCGATGTTGGGTATCACCACATTCTCCTGGATTCGTGAATCTCTATA TGAGCTTGGATAGCCAAAAGCCCATTAGCCAAGTTGTTAATTTTGAGTATAGGACTCCTATTTTGCATGATCCTGCTTCC TCAATGGAACAGAAATACAACTGGAATGAATTTCGGCTTCAGACGAGGCTTGCTCATTTGCTCTTCACTACAAAAAGGAG CCTTGATGCTTTCTCTAGTAAAGTATCACCTAATGCACTGAAAGAGGCTAGAAAGTTTGCAGACAAAACATCATTTGTTA CCAAATATTGGCAGAACCTGATGAAGTCAGTTGACGACAATACAGCTCCATTTCCACAAGCAAAAGACGACCTATTTGAA ATTGCATTGAAAAACAAACTAAAGGAATGGCTTTTGGAACGAATTGTCTTAGGATGTTGTAAGACTACCGAGTACGATTC ACAAGGCCAAGGTGTAATTCATTTGTGTGCTGTTTTGGGATATACGTGGGCTGTTTCTCTATTTTCATGGTCAGGCTTGT CCCTGGATTTCCGTGACAAATTCGGATGGACAGCTCTTCATTGGGCAGCCTATTATGGAATGTATGATACATGACACACT TGTTTAAACAATCAGCCTTGCTACAACTGTTTTGACCTAAAAATCATTTTCTGACATGGCTTATCTGTTCTAGTTCTTTT CAGTTTCTTTTTTGTTTTTTCAGTTTCTCTCTCACATTACATGCATGTTTTCCTTCTTATCTAGTAATGAGCCTGAACAA ATGTTTTCATTGTTGTCTTCAGGGAGAAAATGGTTGCAGTTCTGTTGTCTTATGGGGCAAGACCTAACTTAGTCACAGAT CCAACTCCACAAAATCCTGGTGGATGTACTGCTGCTGATCTTGCTTATATGAAGGGATATGATGGCTTAGCAGCTTATCT TTCAGAAAAATCTCTGGTTGAGCAGTTCAATGACATGAGCTTAGCTGGAAACATCAGTGGCTCACTGGAAACAACTAGCA CAACTGATCCAGTAAATCCTGAGAACCTCACTGAGGACCAGTTATACATAAAGGATACATTGGCAGCTTACCGCACAGCT GCCGAGGCAGCAGCGCGCATACAGGTTGCATTTAGGCACCGCTCATTGAAATTGCGATCTCAGGCTGTTGAGTTTCTCAG CCCGGAGGAAGAAGCGCGTCAAATAGTAGCAGCAATGAAGATTCAACATGCCTTTCGCAACTTCGAGACAAGGAAAATGA TGGCAGCTGCTGCTCGGATCCAGTATAGATTCCGTACATGGAAGATGCGCAAAGACTTTCTCCTCATGCGACGTCAGGCT ATTAGAATTCAAGTAAGAGCTACCCTTCCTGTGTCTGTGATTTTTATTGTTCTGAGAAAACATGTCATATTGAAATGAAA AAATTGATATTATTTGTTTGAGTCAGTGTTGTCAAATAGCGGTTATCGCGGCGCTATAGCGCAGCGCTCTGAGGGGTCAC CGATATCTGCTATTTGCCGCTATTTTCTGCTATACGCCGCTATTTTCCACTATGAGGGCTAGACATAGCGGATTTTTGGC TTTCCGTGATCCGCGATTAGCAACACTGGTTTGAGTCCTTTTTTGGACCGATTGACTGGATTAATGTCAGTTCTCCCTTG GCACGAGTCTTAACATGGCAGTGTTCACAAATTATGAGGGCAGTCATGCTCATCCAAGCGCTTTTAATGACCATGTGAAT GAGCTTGGCGAGTTAATTGTCCTCATTAAGTAATTTTACCAGTCAGTAAAGAAGTGAGTGAAATGGACACAATCAAGGCA AAGAAAGGTTACCCTAAAATAGAATGTGATATAGAGCTTATACATTTGAAAGAATGTTGATGTAGCACCACTGGAATATT GGTTCCAGGAGTGGACTTCTACACTTTCTAAACAAAAAATGGTAATGCCTAGTTGTTGAGGAAAGCAACTTCACATCTCT CTTTGCCTTGGCAGTGAGACCATTGAAGTGCAGTTCAGATGGTATTGGAGATACTTGAAATGTTTTCTTAACTGTTTCTT GTGTTGGGGATAATTTATCTATGGATCTATCCTCAATCCTTAACATTGCATGTGTGTGTGAACATGTTTTTTGATTCCTT TTCCTTAAAAATTCAAATTATAAACAGTGGCAACCAAGGCAGGTGTTATTCAATCCCAGGTTTTCGCCTTTTCGGAGATG AGACCAACAGATTTTGTTCACTAAAAGTTGCACCTTCTTGAGTTATTATTATAATTTACTTCCTGAGAAAAACTTAATTG TGCATATTTTCAATGCAGTCTGCATTCAGGGCCTTTCAAGCGCGGAGGCAGTATCATAAAATCATGTGGTCTGTTGGAGT GCTGGAGAAAGCAATCCTGCGTTGGCGTTTAAAGAGAAAAGGCTTCCGTGGGCTCCAGGTGAATCTGGATGAAGAAATGA AAGACGAGAAGCAGGAAAGTGATGTAGAGGAGGAATTCTTTCGGACTGGTAGGAAACAAGCAGAAGAACGTGTTGAGAGG TCTGTGGTACGTGTACAGGCCATGTTCCGTTCTAAGAAAGCACAAAAAGAGTATAGCAGGATGAAGATGGCACATAGTCA AGTCAAGGTGACTAACATATATATATGCATGACAATGTTGTTCTTATAATTTGATTTGACATGTTTATTTACTGGGTAGA ATTGTTTTATGCAGCTGGAACTGGAATTAGAAGAGTTCCTCAATTCTGAAGTTGACATGTCATCAAGTAAGATATAGCTT GCCAAAATAATGTTGCCATGAAAGGTTTTTGTTTTTGAGATGTAGCCAAACTCCTTTAGATTCATGTAACAAACTATTGA TAGCTTGGTGCCTCTTTTGTATAGCCTGTAGATCCTGTAAAGTCCATAGTGTAGATGGAACACATGACCCTTTCAAGTTG CTTTAATGTCTTGATTGGGTCATTTGTGAAGCTTTCTTGTATAATTAAGCTCTCTACGGTGGATGATTCTGATGCAACTT GCAAGACCAAGTATGGAGTTTAATCACATAATTGTTAGCAGAACTCCTATTTAATAATTAAGAGTCTGTAGTATGATAAT TGATATATCACCATATTATATGTATGGAACGGAACATGTGTACTGCACCCAACCCCCAAAGCATCAAAACCTTTTGTGAT GGAGCAAATATGTGATCTTAAATGAAATGTCTCTGCAATGTTTGGCTCTGAAGTAAAAATTTGCACTATGTAAGTACGAT GGAACATTTAAACCCACCTATCTAATAAAATAAAACCAAAACTCTATCAGTATATTAATTTTTAATAATTTCAAGAAAAA TATTAAGTATTTTGTAGACTCTTAATATACAAGACTTTTCTATTTTTAGCAGGTTTGAATAACTGAAAATGTTGAAGAAG TTATAGGAGTATAGTATACTACTGGTTTAATTATACTTTTAGCCAGTTATGATCTTGTAATTTTAGTTTCTCTAAGTAAA TTAAGTCTAGAAAAATTGGTTCTTCTGCCTTTCTTTACAAAACTCCTAATTTTCTAATTAACCATTTCGGGGGGG 

CDS sequence (LotjaGi6g1v0256600.1) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGGCACACACCTTAACTGGGCAGCTTGTGGGTTCAGAGATACATGGCTTCCACACTTTGCAGGACCTGGATGTTGAGAA CACTTTGGAGGAAGCAAAAAGCAGATGGCTTCGTCCCAATGAGATTCATGCTATACTCTGTAACCACAAATATTTCACCA TCTATGTCAAGCCAGTCCGTTTGCCCAAAAGTGGTACAATTGTACTATTTGACCGCAAGATGCTTAGGAACTTCCGAAAA GACGGGCACAACTGGAAAAAGAAAAAAGATGGGAAAACTGTTAAAGAAGCACATGAGCACTTAAAAGTTGGTAATGAAGA AAGGATCCACGTATATTATGCACATGGCCAAGATAACCCTAGCTTTGTTCGTAGATGTTATTGGTTACTTGATAAGAGTC TGGAGCACATAGTCCTTGTCCATTATCGTGAAACGCAGGAGTCACAAGGTTCTCCTGCTACACCTGTAAATTCAACTTCA AGTTCTGCCTCTGGTCCAACTGGACCTTTGATTTTATCAGAAGACTTGGATTCTGGGACCAACAATGCTTACACTGAAGG GCTTAATGACAATTTAACAACCGAAAGTCATGACCTGAGGCTTCATGAGATTAATACACTCGAATGGGATGACCTACTGG TTCCAAATGCTAACACCTCTAATGTGCCTAATGGAGGCAATGAACTATATTTGTATCAACAAAATCAAACTTCTCCGAAT GACAGTTTTGGCAATGTTGCCAGTAATCCTTCTGCAGAAATACCTTCTTTTGGTAACTTAACTCAGCCTATTTCTGGAAG CAACAATGTTCCTTACAATTTTCCAGAAAGCGTTAATCTTCAGAGTAATTGTCCTATCTCTTCTGGTGGTGTTGGTTCCA TAGGCACGGTAGTCGATGAAGGCTTGCAAAAACAGGACAGCTTTGGAACATGGATAAACAACATAATATCTGATACACCA TGTTCTGTAGATGGGTCAGCTCTTGTATCATCAATTTCTTCATCAGTAGTGGTGGATAATCAGCCATCTTATCTGCCAGA ACAAGTATTTAATCTCACTGAGGTGTCCCCTACTTGGGCATCTTCCACTGAGAAGACAAAGGTCTTGGTAACTGGATTTT TTCATAATGACTATCAACACCTTACAAAGTCTAATCTACTGTGTGTATGTGGTGATGTAAGTGTTCCTCTAGAATTTGTT CAGGTTGGAGTTTATCGATGTTGGGTATCACCACATTCTCCTGGATTCGTGAATCTCTATATGAGCTTGGATAGCCAAAA GCCCATTAGCCAAGTTGTTAATTTTGAGTATAGGACTCCTATTTTGCATGATCCTGCTTCCTCAATGGAACAGAAATACA ACTGGAATGAATTTCGGCTTCAGACGAGGCTTGCTCATTTGCTCTTCACTACAAAAAGGAGCCTTGATGCTTTCTCTAGT AAAGTATCACCTAATGCACTGAAAGAGGCTAGAAAGTTTGCAGACAAAACATCATTTGTTACCAAATATTGGCAGAACCT GATGAAGTCAGTTGACGACAATACAGCTCCATTTCCACAAGCAAAAGACGACCTATTTGAAATTGCATTGAAAAACAAAC TAAAGGAATGGCTTTTGGAACGAATTGTCTTAGGATGTTGTAAGACTACCGAGTACGATTCACAAGGCCAAGGTGTAATT CATTTGTGTGCTGTTTTGGGATATACGTGGGCTGTTTCTCTATTTTCATGGTCAGGCTTGTCCCTGGATTTCCGTGACAA ATTCGGATGGACAGCTCTTCATTGGGCAGCCTATTATGGAATGGAGAAAATGGTTGCAGTTCTGTTGTCTTATGGGGCAA GACCTAACTTAGTCACAGATCCAACTCCACAAAATCCTGGTGGATGTACTGCTGCTGATCTTGCTTATATGAAGGGATAT GATGGCTTAGCAGCTTATCTTTCAGAAAAATCTCTGGTTGAGCAGTTCAATGACATGAGCTTAGCTGGAAACATCAGTGG CTCACTGGAAACAACTAGCACAACTGATCCAGTAAATCCTGAGAACCTCACTGAGGACCAGTTATACATAAAGGATACAT TGGCAGCTTACCGCACAGCTGCCGAGGCAGCAGCGCGCATACAGGTTGCATTTAGGCACCGCTCATTGAAATTGCGATCT CAGGCTGTTGAGTTTCTCAGCCCGGAGGAAGAAGCGCGTCAAATAGTAGCAGCAATGAAGATTCAACATGCCTTTCGCAA CTTCGAGACAAGGAAAATGATGGCAGCTGCTGCTCGGATCCAGTATAGATTCCGTACATGGAAGATGCGCAAAGACTTTC TCCTCATGCGACGTCAGGCTATTAGAATTCAATCTGCATTCAGGGCCTTTCAAGCGCGGAGGCAGTATCATAAAATCATG TGGTCTGTTGGAGTGCTGGAGAAAGCAATCCTGCGTTGGCGTTTAAAGAGAAAAGGCTTCCGTGGGCTCCAGGTGAATCT GGATGAAGAAATGAAAGACGAGAAGCAGGAAAGTGATGTAGAGGAGGAATTCTTTCGGACTGGTAGGAAACAAGCAGAAG AACGTGTTGAGAGGTCTGTGGTACGTGTACAGGCCATGTTCCGTTCTAAGAAAGCACAAAAAGAGTATAGCAGGATGAAG ATGGCACATAGTCAAGTCAAGCTGGAACTGGAATTAGAAGAGTTCCTCAATTCTGAAGTTGACATGTCATCAAGTAAGAT ATAG 

Protein sequence (LotjaGi6g1v0256600.1) extracted from Lotus japonicus Gifu v1.2 Proteins.

MAHTLTGQLVGSEIHGFHTLQDLDVENTLEEAKSRWLRPNEIHAILCNHKYFTIYVKPVRLPKSGTIVLFDRKMLRNFRK DGHNWKKKKDGKTVKEAHEHLKVGNEERIHVYYAHGQDNPSFVRRCYWLLDKSLEHIVLVHYRETQESQGSPATPVNSTS SSASGPTGPLILSEDLDSGTNNAYTEGLNDNLTTESHDLRLHEINTLEWDDLLVPNANTSNVPNGGNELYLYQQNQTSPN DSFGNVASNPSAEIPSFGNLTQPISGSNNVPYNFPESVNLQSNCPISSGGVGSIGTVVDEGLQKQDSFGTWINNIISDTP CSVDGSALVSSISSSVVVDNQPSYLPEQVFNLTEVSPTWASSTEKTKVLVTGFFHNDYQHLTKSNLLCVCGDVSVPLEFV QVGVYRCWVSPHSPGFVNLYMSLDSQKPISQVVNFEYRTPILHDPASSMEQKYNWNEFRLQTRLAHLLFTTKRSLDAFSS KVSPNALKEARKFADKTSFVTKYWQNLMKSVDDNTAPFPQAKDDLFEIALKNKLKEWLLERIVLGCCKTTEYDSQGQGVI HLCAVLGYTWAVSLFSWSGLSLDFRDKFGWTALHWAAYYGMEKMVAVLLSYGARPNLVTDPTPQNPGGCTAADLAYMKGY DGLAAYLSEKSLVEQFNDMSLAGNISGSLETTSTTDPVNPENLTEDQLYIKDTLAAYRTAAEAAARIQVAFRHRSLKLRS QAVEFLSPEEEARQIVAAMKIQHAFRNFETRKMMAAAARIQYRFRTWKMRKDFLLMRRQAIRIQSAFRAFQARRQYHKIM WSVGVLEKAILRWRLKRKGFRGLQVNLDEEMKDEKQESDVEEEFFRTGRKQAEERVERSVVRVQAMFRSKKAQKEYSRMK MAHSQVKLELELEEFLNSEVDMSSSKI 

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 9 903 895 0.0
PANTHER 9 903 895 0.0
ProSiteProfiles 25 151 127 77.294
SMART 28 146 119 2.8E-75
Pfam 31 144 114 1.2E-45
MobiDBLite 145 189 45 -
Gene3D 346 441 96 2.1E-16
SUPERFAMILY 351 438 88 1.87E-15
Pfam 352 437 86 3.2E-4
Gene3D 511 651 141 2.6E-17
Pfam 529 617 89 4.5E-7
SUPERFAMILY 547 650 104 1.87E-17
ProSiteProfiles 555 620 66 15.3
ProSiteProfiles 588 620 33 11.194
SMART 588 617 30 2.0E-5
SMART 627 658 32 2100.0
Gene3D 750 800 51 4.7E-7
SMART 752 774 23 28.0
ProSiteProfiles 753 779 27 6.852
Pfam 755 773 19 0.22
SMART 775 797 23 0.17
ProSiteProfiles 776 800 25 8.883
Pfam 778 797 20 0.017
SMART 855 877 23 19.0
ProSiteProfiles 857 885 29 7.876

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 DNA binding Any molecular function by which a gene product interacts selectively and non-covalently with DNA (deoxyribonucleic acid).
Molecular function Protein binding Interacting selectively and non-covalently with any protein or protein complex (a complex of two or more proteins that may include other nonprotein molecules).

Expression data

Expression pattern

Expression pattern of LotjaGi6g1v0256600.1, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.

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