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LotjaGi2g1v0337700.1

Overview

Field Value
Gene ID LotjaGi2g1v0337700
Transcript ID LotjaGi2g1v0337700.1
Related isoforms 1
Lotus japonicus genome version Gifu v1.2
Description Poly [ADP]-ribose] polymerase; TAIR: AT2G31320.1 poly(ADP-ribose) polymerase 2; Swiss-Prot: sp|Q9ZP54|PARP1_ARATH Poly [ADP]-ribose] polymerase 1; TrEMBL-Plants: tr|A0A072U2F3|A0A072U2F3_MEDTR Poly [ADP]-ribose] polymerase; Found in the gene: LotjaGi2g1v0337700
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr2:81476265..81488352) extracted from Lotus japonicus Gifu genome v1.2.

CACATTTCTAGGACAAAAACATCTACATACATGCATGTATATAAAATTGAAAATTGGCTAATATTGCTGACATTTCATTG AGTTGATTGTAAAATTGTGTATAAAATAAGCTTTAGGGGAAGATTGAAAGAACTTACAGTTAGAGAGGAGAGCTAGGTGG GAGTTTGAGAGTGAGAGGAATGTCGACACCTCAAAATCGAAAGTCATGGAAAGCAGAGTACGCCAAGTCGGGGCGATCGA GATGCCGGACCTGCAATACCGCAATTGACAGCGAGAAACTCCGTTTCGGCAAGATGATTCAGTCCTCCAAATACGATGGC TTCATAACTGTAATTTTCCATGCCTATTGATTTTTCTTCAACTCTTATATGCATTGAGCCATTGACTGTGCATAAAATCC ATTTTCATATAAGGATGAAATATAGGAGTTGATTCTCCTAGCATTCTTGTGTCTGCCATAAAATTTACAATACAATTTAC CAGCTAGGTAGGTAAGGTGTATACTGTATATATAATGAGCGTACGTCTTGGAGCTTTTCTTTTTCTTTTTCTTATTGTTA AATAAATTAATTAATTATACTGCATGTTTGTAATGTTTTAATGTGTATTTTGCTTTTTTATTTTAAATACCAGATGTGGA GTCATGCTGATTGCATATTGAAGAAATCCAACCAGATAAAATCGTATGAAATTTAATTTTATCCTTATTTCATTGCAAAT GGAATGCGTTTGTCTCATGATTTGACATCAGCAATTAAGGATTTATATATCGTCCATGCACTATTTTTCTTTTAGGATTG ATGACGTTGAAGCCATAGAATCGCTTCGTTGGGAAGATCAGCAAAAGATCAGACAATACATAGAGAGCAGTGATAGCCCA CCAAAGTCAACGGTCATCAAGGATACTGAGTGTTGTATTGAAGTTTCACATACTTCTCGTGCTGCTTGCAAGCATTGTGG TAAAAAAATCATCAAGGGAGAGGTTGGCACCTAACTTCTCTCTCATTCAGTGTTATAATATTGCAAAGGCTTCTAAGTTG TTTCTAAGTTTGTTTTGGGGTTTTTTCGAGGAAAAAGAATTGGAGAGGACATATTTTTATTTTCAAATGGATTTAATTTG TGGTCTGAAAATGAGATCATAAGCAAAAGCATGTTAATTGATGATGGAAAATATGATGATCCTGCACTTCAACTTACCTT GTGTTTCCTTAAAAAAAAAAACTTAATTACCTTGTCTTTATAATAAATAAATTAACTCATGAAAGAAAACATATCATGTA CTATTTAGTAATATCCTAATGATGTTGCAGATTTAGGGTGTGTTGATTATTAGTTGAATCCAATATGAATGTGATTTTTC TCCATCCAACAACTTTTCCCAGTTGAAAAAAAATATTAAAAATGCTAGCAATAAACACTCTCTGTTAAACATTAATTTTT TTTTATAGACAATAAGAAATATATTGAATAGAAGCACAAGGGGTGCTTCAACCCAATACAAGAGGATAGATGAAGAGGAA TACAAAATAAAAAGAAAGGAAAACCAACAAAGACCCTACAACAGCCGGATCTACCCCACCTAATACCTCCAAGAAAATAG ACCTTACAAAAAAAGCCTCATTAAAACTTTACTAGGATAAAATCCCCTTGGGAAAAAACTAGAAAGGAAAAAGAGTACTA ATTTTGAAAAGTCAAGAGAGCATTTTCAAGGAGATTTACAAAGACTACAACCCCACCCAAAACCCAGCTTAGAATAACCA ACAACAGCACCACAGTCCCATCCCAACGCATTGCAGCCATAAAAAACTTCCTGCTAATCCAAGGGAAATATCAACAAGGA GAACAACAACAATCCAAGGGGCAAAAGAACAAGTACCAGCTTTCTCCACCATGATTGTTAACACAGATATCAAATCACTA GAAGAAAATATGTCATATGACATAACAACAACATTCAACCTCCCTTGAATTACCAACTCAGATCCAGCATTGATAAGTCC AATCCCCGTGAAGAAGTATACAATCAGCTACCAATGCACAAAACCAACCGCACCCCTTGGACCAATCTCCCCGGATCACA AGAGACAGACCAATCAGCAAATAGAGAGCACAATACAGCAAATAATCAAAGAGTAACATTGTTAATTATCAATACAGATC ATAGGTTCATTAGCCCATTCAAACAGAGAGTATTGAAAACCATTTTTCCTTGCCCGCAACCAGCTCCAAGCTTTGAATTT CACCTTCTCACAAAAGTCTCCCTCATCAAATGTCTCCTCCCTAAAAATCAGTGCATTTCTTCCGTTTCACAGCACGCCAA CTTAACCTTTTCACGAATTGACAAGCCACCAACACATTAATATCTCATTAATTAGTTAAAATTCATGTGAGATCCACTAA AAATATGAGTTCATTTCAAATTAAATAAGACTCACATGAATTTCAATCAATCAATCAATCAAAAATGTTAGATTGAATGC TGATAGCACTCCTCAAATAAAATATGTCAATCATGTCCTTTTAACTAGAAAATAAACACACTTAATTAGTAGTGAAATAT TATTGGATTCTTAGTTTATAAGTCAGAAACTATTGTGCAGACTCTAAATAAGTGTAAGATATTAAAGAAAAGTGGAAGGA ATGAAAAAAAATGTAAGATATATACGGATGCTATGTTTAGTTGGGAAAGAAAATGAGATAATAAGATTAAAGAAAGTGGA AGGAATGAGATGAGAGAGCAAGGAAAGAGAGATAAAGAAAAAGGAGAGGATTCTTTACTTGTTTGGTTGAAGAGAAAAGA GAAGAAAATATGTTAAAACTTTTCTCTTCTCTTATTTGGTTGTGTAGAAAATGAAAGGAAAGAAAGAGATACTTTCATAA AATGACATACCCCTAATTAAAGAAATATATTTTCAAAAACTATTTACATAAATGAATTTTTTGTTATATTTTTATCTTAT AATTTATAATATAAAATAAGAAATGAAACAATAGTATAATTTATCCATCTCGAATCTCAATATTATCATATATATTTTTT TATAATAGCAATATTTTTTATTGGTCTGTCAACACTGAGTGTTTTTTATTTTATTTTTAGGTCCGAATATCCACTAAGCC TGAGGATGAAGGTGCTAAGGGTTTGGCTTGGTTCCATGTCAAGTGTCTCATGGAATTATCACCATCGATTGAAGTGGATA AGTTGTATGGATGGAATAGTCTCTCATCTTCTGTGCAATCAGCAGTTAGTGACTTGGCTAAGAAGGGCCATCCTATGAAT ATGGAAGGTATAGTAATTGACTCCAAAACTGTTGATCATGTTAATTTTAATTTATTATTTTAGTTACTTTTTTCACTATT TTCCTAGCAGATGGATCTACTTCCAGAGTTGGATCAAAACGGCGAAAGAACGCTAATAATGAGCAGGAGTCAAGAAAAGT TGTTAAGGCCAATGGAGATGCGCATGTGCCTGCAAGAAGATCAACACCAATGAAAAATGTTGATGAGGTGTTAGGGGAAG CATGTGATCTGGAGACTAAACTGGAGGCCCAGAGTAAGGAACTCTGGGCGCTGAAGGATGATTTTAAGAACCATGTGACA AAAACAGAGTTGCGTGAAATGCTGGAAGCCAATGGTCAAGATTCAACAGGATCGGAACTTGATTTGCGTGACAGCTGGTA CTTCCTTTCTCCGTTGCAAAATATTTATATATTATTTTAGTTTTTTCACCTATTTTACAAAAACTTTATTGATTTAGAAA TTTAACACTACTTATGTCATTTTTTACTATTTATACTTTCCCATAGTATTATATCTCTCATATATTATATTATATTTTAA CTAATTATAATTCTCACAAATTATTTAACTAATAATTTTTTTAAAGCAAAATATATATAATATATATGAAATATTGAAAA ATAACCCCTCTCAACATGAGTACAATACCTAACCAGCAAAAAGTCTGACAAAACCCAGCCACTATAGCAGAAAAACCAAA ACTCAGCCACTATAGCAGGAAAATCTCGTAAAGGACCTCTAAAAGTCTCTCACACACACAGGAGTGTGCTACAATACCTA GCTAAACCTTAAAGCCTAACCCCTTAAGAAAGATCTCAACTAAAATCGAAAAACGGATTCATGTTCAACCAACAAAAGAA CATGTCTAACCGCTCGATACCTGCAAGCAGAGACCTAACCAATAAAAACTTACCAAAAAGCCCATCAAATAAACCACCAC TACTATAGAGCTAGGACAATCAATGACCAACGGCAACATCAACCGACACCGCCAACAACACCCCCAAAGCCACCTCGACG ACATCTTTAGGCCCACAACCGTACCAATCAAAGATCTCCAAGGAAAGAAAACCAACCAACACAACCATAAAATCCTCTCT GTTTATAGAGGGTAGGTCGATCGCAATGCTACACAGGAAGAGGAACCCAAGAGCCAAACCAAAACCTGTAAAGGCCACCT TTGAGAACAAGAATCGATGGCGCGGGCAAAGAGACCGGAGAGGAGGGAAGCAAGGCACGACGTAAGAAACTCGCCAGCAC CGGGACATGATGAGGAAACGCAAGTGGGAAGGAACAATATACCGCCATCTTCACTGACATTAAATTGTTTAAATTACACA AGATTTACCTTAAATAAATTCAGTATAACTCAGGTGGTCTGATAATATTTTAAAATACGTTTTAAAAAATTCTAGTTCAT GACTCATATTAAAATATTATTAAGCTACCTAAGACTATAATTATAAGTATTCGAGGTAAATTTTTGATGATTTGAACAAC CTCTTAAACATTAAGATTATTTTAGTGAAAAATATCCGCAAAAAGATTATTTTAGTGAAAAATACGGGTTGTTTAAATGA TTTATGAGAAAGTTTGGGTTAAATAACTCATCGTCCAATCACATTGAAGATAAGTGAGTTGAATTTTTATATTTTATTTA TTAATTTATTTATAAAAAATCATATTGGTCCAATGGGTTGTATGTTAGTAACCAACATGGTCATTTAAACAACCCCGAAA AATACACATCAATAAGTTCTTAGTGTGTATAACCTAGGTGGATGGAGTAATTTAACTAGACAAACTCCTACATAGTTATA TGCATTTCAAAAATATTACTCCCTCCGTTCCTATATATAAGTCAATTTTACCTAATTCTCTTAGATTAAGAAAAGTAGTT ACAAGTAATAAATTTGTAAAAGAATTTATTCACTTTCCTAGATTACCCTTATTTAATTTCTTATAAGTTTATCTCTCTAA GTTATTATTTCAAAATCTCATTGTCTCTTTCCTATTAAACATGAGGATAGTTGTGGAAAAAAATAATTAATATTTCATTG ATATTGTAAATGGACTTATATTTAGGAACAAGAAAAACACTAAAAATTGGTCTTATAATAAGAAACGGAAGGAGTATCAT ATATTTCCCCAGCTTTGATCATTTATTACTGTGATTTTAGTGCTGATGGAATGATGTTTGGAGCACTTGGTCATTGTCCA CTATGTTCTGGCTCTCTACGTTACTCAGGAGGAACGTACCAGTGCATTGGATTCATTTCTGATTGGAGTAAATGTCCCTA CTCTACCAGCGAACCAAAACGGGCTGAAGAGAAGTGGAAAATCCCAGTGAAAACAAATAGTCAATACCTTAAAAAGGTCT GTAAAGAGAAAAACGAAGTCATTGAACAAGACACCCTTATTGTGACTTAATCAAGTTTTTGCTTTGTGTTTACAGTGGTT CAAATCTCAAAAGAGGAAGAAACCAATTAGGGTATTGCATCTTCCATCATCAAGCTGTGAGAGTTTGAAGGATTTGAAAG TTGCTATCGCTGGATTATCTAAAGAGTCTATTGTATAACTTCCTTAACTTTTTTTTCTTCCTTTCACATCCATTATTATG AAGCCCCCTTCCCCCAAAACAGTTTAGACTTTAGAGAAACTGCCATATTTAATTAGTATCATAGTACGTATTCAGTACTC ATCTTTTACAAGTTGATTTTACAGGAGGAGTGGAAACGCAAAATTGTTGACAATGGTGGGATTTGTTGTGAAAAAGTGAA GAAAGGTTATTTCCCCCCTTTTTTTTATAAGCCAAAAATATATAAAAATGAAGTACTGGGTGTACTTCAAAACCTCAAAT GTACAAGAAAAAGGGAAGAAAAAATACAAGAGTAACATTTGCCTATGAAAAAAAAAACTATCAATTTTGAGGAATTTTTT TATTTATATTTAATTGTTCACTTACAATTTCAAAATAACATTAAATAAATTTTTAATTTCCAATAATAGAATTTTGCAAT AAGTTGTGACTTCCCATAAAAATTACACACCGAATGGAGGATAAAATATGTGAGAGATAATATATAATGAATGAAGTTTA GAATAGTGAAATTAAAAAAAAAAACATATTTTCTTTTTCTGATAATCAATAAAATTAATTATTTTCCTTAATTTATATGT TTATTCTCTTCCCGGACAATTATATACGAAGGAAGTATCAGTAGTTGCAGAATCCAATTTATGAAAATTGGGGAAAAAAT TGAGTTTTTGCCTCTTCATGTGTGTATGTATGATTTTTGCAGATACTAGCTGCCTGGTGGTGAGGGAAGCACACAATGAT GAAGCTGAGATGCGGAAGGCAAGGTATGCGTGCACTAAATTTGTAGTCTAATAGTAAAAAAGTCTCTCGTTGATTGATTC TAGTATCATTGATTTGGGAGAGTTTCGTGTATATACAGGAAGATGAAAATACCAATAGTAAGAGAGGACTATCTGGTTGA CTGTATAAAAAGAAATAAGAAGCTTTCATTTCAAATGTACAAAGTTAAAATGATTGGTGAGGCTTCTAGCATGGCTACGG TCAGGCACAGTGCTGTTCACGAGGCTTCTGGCCTACAGGATTCCGGACACATACTCGAGGAAGGAGAAAGCGTATATAAT ACAACTATGAGTATGTCTGATTTGTGTACTCGTGCGAACAGGTGGGTTCATTGTATTTTTGCTTTTCTTGTTATCTCCTT TAGCACGAATTTTGTCTAGATGTTACTCCATATATGGTCATTGAAGAATTATATTCAGTTGAACGTAAAATTATGTTTAT GGATGCCAAAATTCCCCATATCCACGAATATCAACGGATAAAAATTTGTGGTGGATGAAATTACGGGCTCCCAAAGATAC TCATGAATTTATGCAATATATAATTTTTCTCGGTTTGGTATTTGTTGCTGGGTTTTTTTCCTGCAGTTTGTGTAGGGTAG CAGGTGTTATTAGGTGCTGGATTTTGAAAGTTACATCTTTTGAGCACAATTTGATTTTTAGGTTGTTCAATGTAATATTG GAGGGGATTATGCTCACTTGGTTGAGTTGTGTTTGTACCATCAAGCTTTTCATATAATAAAACTTTTACTTTTAAAAAAA AATATGAATAAGACATGTATATATGAATATCGGTATATCTGTATCATGCTGAATTCCTAAAAAACAGTTTAAAATCCCTC TTGAATTCTCTTGCATCACTTTCTTTTCTAAGATTCTTGTTATACATGTTGTTATTTCCTCTCATTGATTATCATCCTCC AACTTTCATTTCCCATTAAAAGCTACTACATTCTCCAAATAATCCAAGAAGATAAGGGGTCAGGTTGCTATTTGTTTCGT AAATGGGGTCGTGTGGGAAATGACAAGATTGGATATATGATGCTGGATGAAATGCCAAAACCAGATGCAATCCGTAAATT CAAACAATTATTCTTCGAGCACACTGGAAACCATTGGGAACAAAAGACTATTCAGAAGCAACCTGGAAGATACTTTCCAT TGGATATTGTACCTTTTTTAATCTTATTTTAATTTTTTTAGTTTGACTCAAATCATCTTCACTCATGATATTCAACTCAT GATTGCTTTGAATACTTCACTTTGTAGGATTATGGAGTTAACAGAAATGTCTCCAAAATAAATAAAAACGATGCAGACAG TAAACTACCCCGCCCATTAACAGAATTGTTGAAGATGCTCTTCAATGTGGAAATATACAGGTATACATTGTGTTTGTTTG GTTTTCACTTCAAAATAATAGTATATGATATCTCAAAAATCAGGATTACGATATTTAATGCACATTCATTCAACAGAATG TTTAGAAATCAGGATTATGATTTTGAATGTTTTTTCATATATATTCACTCAAGGGAAATCTAAACAAAATCACTCTCCAT TTTATTAGATATATTTAATACAAGACTGAATTTTGAATTTGTAGAGCTGCCATGATCGAATTTGAGATTGATTTGTCTAA AATGCCACTTGGGAAACTGAGCAAAAGTAACATCCAAAAAGGTATGTTGGCACATTATTTTTAAGCTTTTGATAAGCTAG GTTAAAGTTGTAAATGTTTGTGATTTTTTGTTGGTCTGCTCCCTCTTCCCAGGGTTTGAAGCATTAACGGATATACAGAA TCTGTTACAAACTAGCAATCCTGATCCATCAGTCAAGGAAAGCTTGCTTATGGATGCCAGCAATCGGTTTTTCACTGTGA TCCCTTCTATTCAACCATATATTATAACGGATGAGGATGATTTAAAGTTAAAGGTGCGTAGTACTCTTTTTATTCATTTT TAAGGTTAGTTTGGTAATGAAACATGAAATTATATGGATGCTTTATTTTCATTAGTTTTCAACTTGCGTCTATACGACTC AATGAAGTTAATATTGTTTAGTCTAAAACATAGATTTCCATTATTATAATACAGTTACTAAGACTCAAAAGTCAAAACTA TTGCGTCCACATATGATTAATTAACTGTTGAACAAATTGGGTTGACATATTAATCAATACATATTTTTTAGAGTTTAATG GATATGCACTGACAGTGTAAAATAGTTTTACACAGTCATCCAATCAAAGCATGTCACATAGGAGAGATAATTACATTTGA CTTTAATTTTAATTAAAATAATAAGATATTTTCTGATTTGACGGAATTCAATTGGATGTCTGTGTAAAACTATTTTACAC TGTCAGTGCATATCCATTAAACTCTATTTTTTAAGCAAGTGGTAGAAATTTTACAATTTCGTACGGATTAAACCTCATTC TCCTTATAGAAAAAATAGATATTTTTAGATAAGCTAAAATGAAATATATGGGGAACCGAACCCTATACAAGAAAGAGGAA AAAAAGGGGGGAGAGGAGAACAAACAAAAGGTAAAACATCACTAAATTAAAAAACACCTCCTTCCTAAGTAGACGAAATA ACAAAAGCTTTTGAACTTGGCAATTCCAGACAAGCAATTGAGCTAGTTCAAACACCTTCTCAGCATCTTTCACCCCTTCT CTGAAAACCATCAGATTCCTATGAAGCCAAAGGGACCATACGATTGCCAACCATATTGTTTGGGCCAAAAGGGTTGACCC AATGAGCTAAGCCTATTTTGTCACCCCTAATTTTCATAGTATAATTGTTCCACTACTAAACACTAAGGGTCTCGACTAAC ATTAACAACAAGAATCGCTCCCCACCGATAACAACTCTACTCCACTAAACATTAGTTCTTCTGTTCACTGTTATTTTGAA TAAAAAAAAAATTGTTCCTATATATTTGTGTACTTAAGGATTTCAAGATAACATTAATTGATATTTTTCCAAGTAATACC TTCGTCGGAACAATAAATTAGGAAGAAAAAATACATTTTAAAAAAGTAAAATAAATAATAAATAATGCTTTATAAAAATT AATAAAATTAATTGCATTATTAATATTTGTGTTTTTCCTCTGTACATTTGGTTAGGAACAGAGGGGGAGTAATATCAGCA CATCACTCAACAATTAGGTTCATTAAGACAATAACCCAAGATGTGAAACTTTTTTATGTTTTTAATGTTTCAAAACTGTT CAAGGAATGACAGTAATTAATGAAAGATATGTAAATTATGGAATTCTATCAGGACTGCAATTTTTCCCCATGGATTGGCA CTTCTTATAACTTCTGAGTATCCTTTGTTATAATTCGAATAATATGGCTTTGCTCTTTTGGTAGGTGAAAATGTTAGCAG CCCTTCAAGACATTGAAATAGCCTCAAGATTAGTTGGATTTGAGGACTCCATTGATGATAATTACAAGAAGCTCCAATGT GATATATCTCCACTAGCTCATGACAGTGAAGATTTTCGTTTAGCTGAGAAGTTTCTCCACACTACTCAATCCCCCACACA TCCGGTATGTTTATATTTTTCAAAGGGTGTCCATTTTTTATTTATGTTGCTGGAGTGAGCTCTGTTGTTTCCCAAAATGT ACAAGGTCCAATAATCTTTACGATCCATCCACACAGGATTGGAGTCTTGAGCTAGAAGAAGTTTTTTCTCTTGAAAGGGA AGGTGAATTTGATAAGTTTGCTCCTTACAGGGATAAACTTGGTAACAGAATGCTCCTATGGCATGGTAAGTGTGATATAT TATCAAGTATATTCCAGCCAAGGCAAAATGAGTAAAAGAAATCAAAGTATTGGATCATGCATCAGTGCATTTCTTAAGAA GATAAAAAAAATGCCTACTAAACCTTCCAATCTCAGATATTGGATTACTCATGGAATTGTTCTCAGATATTGGATTACTC CATAGGGATTGTCAAGATAATGCATGTTAGACCAGAGTAGTACTAAAAGCTGAAACTTTTAGCTTAAAAATAATTTATTT CTCTAACAAATTAATTCAGTTTCTGTTTACGGTAATATGGATTATTATTTTGTTGTAATATGCATGATGCAACTGCATGT ATATAAAAATTTAACAAAAAATTGATGTTCTCTATTATAGGTTCTAGGTTGACAAACTTTGTGGGAATTCTCAGAGAAGG ACTGAGAATTGCACCTCCTGAAGCCCCTTCGAATGGATATAATGTTCTCTCTATTACTCCAGTTTTTATCCGATATTTAT AATTTCACGCATGTCTTACCTTCCGAAGCAGCACTTAAATCTGAATATAATGCATTTTGCAGTATGGCAAAGGGGTTTAC TTTGCTGACCTGGTCAACATGAGTGCTCAATATTGCAACACGGATAAGAAAAACCCTATTGGTCTAATGCTTTTGAGTGA AGTTGCCCTTGGAGATATCTATGAAGTCATCAAAGAAAAAGAGGTGAATCTGGTTTGATTCAAGTTATGCTTATTCGTTT ATATATATGGTCGCAGTTTGATTGTTTTCAAGTTCATCGATGAGCAACAATATATGTTGAGTTCAACCTATATATATTAA ATGAATTTGAAATAGCTTTAATATTTCATTTTGCTAAATAGTATATGGACATAGCTCCAGAAGGAAAGCACTCTACTAAA GCACTGGGCCAGGAAATGCCTCTGGAATCAGAACATGTAAAGTGGAGGGGTGATGTCACCGTTCCTTGTGGCAAACCAGT GTCATCAAATGTCGAGGGATCTGAACCCAAGTGCAATGAGTATATTGTCTATGATACTGCTCAAGTAAGTTTCAAGTGAT GCTGGTTGTACTTTTTCCTTATCATGCCTCCAATTTTGTGGATATGTCAACAGACTCAGAGCTAAAGCCTTTTTTTTTTG TCGCAGAGCTAAAGCCTCATATGTGTCTTTCTTTCAGTAAATCCATGCATTTGACTGATTGTGGACTTTTTTTGCAGGTC AAGATGCAATTCTTATTGAAGGTGAGGTTCCATCACAAAAAATGAGGGTTGGAAACTAGAGGTTTCCTGTTTTAGAGCTT GTGATCTGTTTGTGTATATCACTGTTTTAATGTCAAATTAACTTCGTAGTGTCGTGATCCTCCCTCTTTAGAACACGATG CATCATAATAATAAGTGTTTTTACCTTCTAAAAACACAAATGCGGGAGGTTCTTTATCTTACCCTGCCTTATTAGTTTAT CTTATAATAAGTATGCATAAATATAAGAGAGGAGCTGCTTTCTCCTTTGAGTGAAGGGATGGGTATTGGGTACCTTTCTG GTTTGCATATTTGTAACCCATTGATCAATACTGTAGCTGTGAAAATATATGCAAAATAAAATTTGCAGGAAACTTTTCAA TAATTTAT 

CDS sequence (LotjaGi2g1v0337700.1) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGTCGACACCTCAAAATCGAAAGTCATGGAAAGCAGAGTACGCCAAGTCGGGGCGATCGAGATGCCGGACCTGCAATAC CGCAATTGACAGCGAGAAACTCCGTTTCGGCAAGATGATTCAGTCCTCCAAATACGATGGCTTCATAACTATGTGGAGTC ATGCTGATTGCATATTGAAGAAATCCAACCAGATAAAATCGATTGATGACGTTGAAGCCATAGAATCGCTTCGTTGGGAA GATCAGCAAAAGATCAGACAATACATAGAGAGCAGTGATAGCCCACCAAAGTCAACGGTCATCAAGGATACTGAGTGTTG TATTGAAGTTTCACATACTTCTCGTGCTGCTTGCAAGCATTGTGGTAAAAAAATCATCAAGGGAGAGGTCCGAATATCCA CTAAGCCTGAGGATGAAGGTGCTAAGGGTTTGGCTTGGTTCCATGTCAAGTGTCTCATGGAATTATCACCATCGATTGAA GTGGATAAGTTGTATGGATGGAATAGTCTCTCATCTTCTGTGCAATCAGCAGTTAGTGACTTGGCTAAGAAGGGCCATCC TATGAATATGGAAGATGGATCTACTTCCAGAGTTGGATCAAAACGGCGAAAGAACGCTAATAATGAGCAGGAGTCAAGAA AAGTTGTTAAGGCCAATGGAGATGCGCATGTGCCTGCAAGAAGATCAACACCAATGAAAAATGTTGATGAGGTGTTAGGG GAAGCATGTGATCTGGAGACTAAACTGGAGGCCCAGAGTAAGGAACTCTGGGCGCTGAAGGATGATTTTAAGAACCATGT GACAAAAACAGAGTTGCGTGAAATGCTGGAAGCCAATGGTCAAGATTCAACAGGATCGGAACTTGATTTGCGTGACAGCT GTGCTGATGGAATGATGTTTGGAGCACTTGGTCATTGTCCACTATGTTCTGGCTCTCTACGTTACTCAGGAGGAACGTAC CAGTGCATTGGATTCATTTCTGATTGGAGTAAATGTCCCTACTCTACCAGCGAACCAAAACGGGCTGAAGAGAAGTGGAA AATCCCAGTGAAAACAAATAGTCAATACCTTAAAAAGTGGTTCAAATCTCAAAAGAGGAAGAAACCAATTAGGGTATTGC ATCTTCCATCATCAAGCTGTGAGAGTTTGAAGGATTTGAAAGTTGCTATCGCTGGATTATCTAAAGAGTCTATTGAGGAG TGGAAACGCAAAATTGTTGACAATGGTGGGATTTGTTGTGAAAAAGTGAAGAAAGATACTAGCTGCCTGGTGGTGAGGGA AGCACACAATGATGAAGCTGAGATGCGGAAGGCAAGGAAGATGAAAATACCAATAGTAAGAGAGGACTATCTGGTTGACT GTATAAAAAGAAATAAGAAGCTTTCATTTCAAATGTACAAAGTTAAAATGATTGGTGAGGCTTCTAGCATGGCTACGGTC AGGCACAGTGCTGTTCACGAGGCTTCTGGCCTACAGGATTCCGGACACATACTCGAGGAAGGAGAAAGCGTATATAATAC AACTATGAGTATGTCTGATTTGTGTACTCGTGCGAACAGCTACTACATTCTCCAAATAATCCAAGAAGATAAGGGGTCAG GTTGCTATTTGTTTCGTAAATGGGGTCGTGTGGGAAATGACAAGATTGGATATATGATGCTGGATGAAATGCCAAAACCA GATGCAATCCGTAAATTCAAACAATTATTCTTCGAGCACACTGGAAACCATTGGGAACAAAAGACTATTCAGAAGCAACC TGGAAGATACTTTCCATTGGATATTGATTATGGAGTTAACAGAAATGTCTCCAAAATAAATAAAAACGATGCAGACAGTA AACTACCCCGCCCATTAACAGAATTGTTGAAGATGCTCTTCAATGTGGAAATATACAGAGCTGCCATGATCGAATTTGAG ATTGATTTGTCTAAAATGCCACTTGGGAAACTGAGCAAAAGTAACATCCAAAAAGGGTTTGAAGCATTAACGGATATACA GAATCTGTTACAAACTAGCAATCCTGATCCATCAGTCAAGGAAAGCTTGCTTATGGATGCCAGCAATCGGTTTTTCACTG TGATCCCTTCTATTCAACCATATATTATAACGGATGAGGATGATTTAAAGTTAAAGGTGAAAATGTTAGCAGCCCTTCAA GACATTGAAATAGCCTCAAGATTAGTTGGATTTGAGGACTCCATTGATGATAATTACAAGAAGCTCCAATGTGATATATC TCCACTAGCTCATGACAGTGAAGATTTTCGTTTAGCTGAGAAGTTTCTCCACACTACTCAATCCCCCACACATCCGGATT GGAGTCTTGAGCTAGAAGAAGTTTTTTCTCTTGAAAGGGAAGGTGAATTTGATAAGTTTGCTCCTTACAGGGATAAACTT GGTAACAGAATGCTCCTATGGCATGGTTCTAGGTTGACAAACTTTGTGGGAATTCTCAGAGAAGGACTGAGAATTGCACC TCCTGAAGCCCCTTCGAATGGATATAATTATGGCAAAGGGGTTTACTTTGCTGACCTGGTCAACATGAGTGCTCAATATT GCAACACGGATAAGAAAAACCCTATTGGTCTAATGCTTTTGAGTGAAGTTGCCCTTGGAGATATCTATGAAGTCATCAAA GAAAAAGAGTATATGGACATAGCTCCAGAAGGAAAGCACTCTACTAAAGCACTGGGCCAGGAAATGCCTCTGGAATCAGA ACATGTAAAGTGGAGGGGTGATGTCACCGTTCCTTGTGGCAAACCAGTGTCATCAAATGTCGAGGGATCTGAACCCAAGT GCAATGAGTATATTGTCTATGATACTGCTCAAGTCAAGATGCAATTCTTATTGAAGGTGAGGTTCCATCACAAAAAATGA 

Protein sequence (LotjaGi2g1v0337700.1) extracted from Lotus japonicus Gifu v1.2 Proteins.

MSTPQNRKSWKAEYAKSGRSRCRTCNTAIDSEKLRFGKMIQSSKYDGFITMWSHADCILKKSNQIKSIDDVEAIESLRWE DQQKIRQYIESSDSPPKSTVIKDTECCIEVSHTSRAACKHCGKKIIKGEVRISTKPEDEGAKGLAWFHVKCLMELSPSIE VDKLYGWNSLSSSVQSAVSDLAKKGHPMNMEDGSTSRVGSKRRKNANNEQESRKVVKANGDAHVPARRSTPMKNVDEVLG EACDLETKLEAQSKELWALKDDFKNHVTKTELREMLEANGQDSTGSELDLRDSCADGMMFGALGHCPLCSGSLRYSGGTY QCIGFISDWSKCPYSTSEPKRAEEKWKIPVKTNSQYLKKWFKSQKRKKPIRVLHLPSSSCESLKDLKVAIAGLSKESIEE WKRKIVDNGGICCEKVKKDTSCLVVREAHNDEAEMRKARKMKIPIVREDYLVDCIKRNKKLSFQMYKVKMIGEASSMATV RHSAVHEASGLQDSGHILEEGESVYNTTMSMSDLCTRANSYYILQIIQEDKGSGCYLFRKWGRVGNDKIGYMMLDEMPKP DAIRKFKQLFFEHTGNHWEQKTIQKQPGRYFPLDIDYGVNRNVSKINKNDADSKLPRPLTELLKMLFNVEIYRAAMIEFE IDLSKMPLGKLSKSNIQKGFEALTDIQNLLQTSNPDPSVKESLLMDASNRFFTVIPSIQPYIITDEDDLKLKVKMLAALQ DIEIASRLVGFEDSIDDNYKKLQCDISPLAHDSEDFRLAEKFLHTTQSPTHPDWSLELEEVFSLEREGEFDKFAPYRDKL GNRMLLWHGSRLTNFVGILREGLRIAPPEAPSNGYNYGKGVYFADLVNMSAQYCNTDKKNPIGLMLLSEVALGDIYEVIK EKEYMDIAPEGKHSTKALGQEMPLESEHVKWRGDVTVPCGKPVSSNVEGSEPKCNEYIVYDTAQVKMQFLLKVRFHHKK 

Domain prediction

Data for domain prediction are obtained with InterProScan, and merged with InterPro data obtained from the EB-eye REST service.

Merging data from EBeye. Please wait…

Domains

Sorting

Prediction algorithm Identifier Start End Length E-value InterPro ID
Gene3D 2 101 100 5.1E-31
PIRSF 3 959 957 0.0
SUPERFAMILY 8 101 94 4.56E-23
ProSiteProfiles 10 93 84 24.996
SMART 13 90 78 1.8E-28
Pfam 13 89 77 2.4E-16
PANTHER 50 958 909 0.0
PANTHER 50 958 909 0.0
Gene3D 102 206 105 3.8E-17
SUPERFAMILY 105 190 86 5.23E-17
ProSiteProfiles 106 186 81 12.837
Pfam 109 180 72 2.5E-12
SMART 109 183 75 8.7E-18
MobiDBLite 182 215 34 -
MobiDBLite 196 215 20 -
Gene3D 230 301 72 7.0E-20
SMART 290 343 54 9.2E-26
Pfam 292 341 50 4.8E-20
Gene3D 302 362 61 1.6E-14
Gene3D 376 475 100 4.4E-16
ProSiteProfiles 378 468 91 14.564
SUPERFAMILY 379 467 89 5.1E-18
SMART 380 458 79 5.3E-13
Pfam 383 455 73 6.9E-11
CDD 383 456 74 6.54315E-18
Gene3D 476 614 139 1.2E-35
SUPERFAMILY 481 595 115 6.93E-28
CDD 495 597 103 4.09512E-38
Pfam 505 582 78 1.1E-14
SMART 505 585 81 1.1E-20
ProSiteProfiles 612 730 119 35.008
CDD 613 954 342 2.3453E-149
SUPERFAMILY 613 742 130 9.55E-32
Pfam 613 733 121 4.1E-34
Gene3D 615 953 339 2.7E-118
Gene3D 628 731 104 2.7E-118
ProSiteProfiles 733 959 227 82.689
SUPERFAMILY 742 957 216 3.67E-61
Pfam 753 954 202 1.7E-62

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 NAD+ ADP-ribosyltransferase activity Catalysis of the reaction: NAD+ + (ADP-D-ribosyl)(n)-acceptor = nicotinamide + (ADP-D-ribosyl)(n+1)-acceptor.
Cellular component Nucleus A membrane-bounded organelle of eukaryotic cells in which chromosomes are housed and replicated. In most cells, the nucleus contains all of the cell's chromosomes except the organellar chromosomes, and is the site of RNA synthesis and processing. In some species, or in specialized cell types, RNA metabolism or DNA replication may be absent.
Biological process Protein ADP-ribosylation The transfer, from NAD, of ADP-ribose to protein amino acids.
Molecular function Zinc ion binding Interacting selectively and non-covalently with zinc (Zn) ions.
Molecular function NAD binding Interacting selectively and non-covalently with nicotinamide adenine dinucleotide, a coenzyme involved in many redox and biosynthetic reactions; binding may be to either the oxidized form, NAD+, or the reduced form, NADH.

Expression data

Expression pattern

Expression pattern of LotjaGi2g1v0337700.1, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.

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