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LotjaGi1g1v0436200.1

Overview

Field Value
Gene ID LotjaGi1g1v0436200
Transcript ID LotjaGi1g1v0436200.1
Related isoforms 2
Lotus japonicus genome version Gifu v1.2
Description Catalase; TAIR: AT4G35090.1 catalase 2; Swiss-Prot: sp|O48561|CATA4_SOYBN Catalase-4; TrEMBL-Plants: tr|A0PG71|A0PG71_LOTJA Catalase; Found in the gene: LotjaGi1g1v0436200
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr1:93051830..93063828) extracted from Lotus japonicus Gifu genome v1.2.

GCCCACCATAAATAAAATTAAATACTAACTTTATACTACCCTTTAATTAGTAATAAAAAAATATATACGAAAAAAGGATA AGCATTAAAAAAATAGGAAGAGAGAGAACGGAGGGAGTGGAGTGAGATTCTCTATAAATGATAAGGCGGTAATACTCAGG TCTCGCCTCGTGTTTATTCAATTCCCCTTTCTCTTCTCTTCAATTTCCATCTCTCTCAGTCTTCACCTTCACCATCACCA TCACCATGGATCCCTACAAGGTAAGCTCCCATCGCTCTTCTCTCATCGCTCTCTGTATCTGATTTTGCATTTCATCGATT CCGTTCAACTCTATCTGTTTTTTTTTATAGATTTTTTTTGTTATCGTTGAAATTGTGTGTGTTTGAATTTTGAATTTGAA TCTGATGAATCACGGTGATTTGAAATCTGAGCTTGATGGAGTTGCAATTGCGGTGTGGATCTATAACGAAACCGTGTTTG CTGACTAGTTTTGTTTTTTATTTTGTGTGTGATGATGATGCAGCACCGGCCATCTAGCGCCTTCAACTCTCCCTTCTGGA CAACCAATTCCGGTGCTCCTGTATGGAACAACAACAACTCTATGACTGTTGGAGTTAGAGGTATATATCATCTTAACCAT CTTTCTCTAATTCCAGGGTCTTGGTTGTGTAGGGAAGGATTTGAACTGTGATGATGTTGTTCTACTTTCTATTGGGATGA GCTTGCTATTTAACGTAATTTGATATGAATTTGGAGGGATATCATTTTGTTAATCAGCTATCACTGTTGTTAATTATTAT AACCTGCTGAATGTTCAGATTGTAAAACCAAGCGGCACATTTATATTTTGTTGCTTCACTCATATTAGAGAAAAATATAT ATGTTCATGCATACTTTGGTCTTTTCTTCCATTTATCTATGATAAGCAGTGTTGTGCGGATACCGCGGTATAGCATAGCG CCCTTAGCGTTCTAAGGGCTCATTGCTACCGTCTGCGGTAACTGTTGTTTGATGCTATTTTCTGCTCTAAGGGCTAGACA TAACAGATTTTTGTTTTTCCACGATCCGCGATTAACAAACTGGTGATAAGCAGAAAATAAAAACCCTTTTCTGAGCTTGT GTGAGAGAGGAGTATCTTGGTCAATTTGGTTTCCTTTTGTTGTTACCTTGGATTTTTTTGGTGCTGGAGGGGAGGGGCTT TTCTGTCTGTCTCTTGTAAAGTTCAGAGTGAGTGGGTGAATACTATTTAATCAGAAGTTTTATATTATTTTACCTCCTTT TGGCAGGTCCTATTCTCCTTGAGGATTATCATCTTGTGGAAAAGCTTGCAAACTTTGATAGGGAAAGGATCCCAGAACGT GTTGTCCATGCTAGGGGAGCTAGTGCAAAGGGTTTCTTTGAAGTCACACATGATGTTTCTCACCTGACATGTGCAGATTT CCTTCGAGCCCCTGGAGTTCAGACACCTATCATTCTCCGTTTCTCGACTGTCATTCATGAGCGTGGTAGCCCTGAAACCT TGAGGGATCCTCGTGGTTTTGCTGTGAAGTTTTACACCAGAGAGGTAGACATTTATAACTACATAGCATTAGCTTCTGGT GACTGAGTACAATTTCTGTTTTATTCTGTTTTAGTTGCTGAAATGCTGGCTTTTATTTTTCTAGTTTCAACACAAACCAT ACAAGTCTAAAATTCCTAATTCCTATTACAATTTAACTCCAAATATAGCATGTACAGCAAACAATTTTGTCTAGATATTG AGTTATAGCCTTATAGGATTACCTGGGAAGGATGAAGAAGATACATCCACTATTTGGTTGAGTCTAGCACATTCTAGTGA GGGAGAGAAGCTACCTCATTCCACAACAGTTTCTCTGTGTAAATATAATATTATGGACTATATGGACTAATCTCTCATCA TAGTAAGCTCATACACATAACCAATAATATTGATTACTTAAGTTGGTCTGAACAAAATCAACTATATGTTTTAATTTGAC ATCTTGTTAATCTGGATTTTATAAATGTTATATGAATTATACTAGCTCATATAACAAATTTAACAATTCAGACCTCTGTC ACTGTTTCTTGACTTCCATTCATGAGCACGGTATCCCTGAAACCTTGAGGACCTTTGACGTTTTTATCTGAAGTTTTGCA CCAGAGAGATGAAGATTTGTGAGGCATATAGCATAATTTAAAATTATCTTCCTGTGACTGAATACAGTTACTGACTTACT GTATTAGTTTAAAGTTGTCTTTTATCTCTTCTAAAGTGGTTCCCACTGTAACTGAGGATGCTCATTAAGTTGCTGAAATG TTAATAATTTATTTAAAAAAAAAGAGGTGATTATGGTAGTGGTTGCAGTCTAGTGCTGTACATGATTCCCGTTTTTACAT TGTGAACACAGGGTAACTTTGACCTTGTGGGAAACAACTTCCCTGTCTTCTTCGTACGTGATGGCATGAAATTTCCAGAT ATGGTCCATGCTCTGAAGCCCAATCCCAAGTCTCACATCCAGGAGAATTGGAGAATCCTTGACTTCTTCTCCCACTTTCC AGAAAGCCTTCATATGTTCACCTTTCTATTTGATGATGTGGGTGTTCCACAAGATTATAGGCACATGGATGGTTTTGGAG TTAATACATATACCCTGATCAACAAGGCTGGGAAAGTAGTGTACGTGAAATTTCACTGGAAGCCCACATGTGGTGTTAAG TGTCTATTGGAGGAAGAGGCCATTAAGGTGGGAGGATCCAACCACAGCCATGCCACTCAAGACCTTTATGAGTCAATTGC TGCTGGTAACTATCCTGAGTGGAAACTGTTCATTCAAACCATAGATCCTGATCATGAAGACAGATTTGATTTTGACCCAC TTGATGTAACTAAGACTTGGCCTGAGGACATTATACCCCTGCAGCCCGTTGGTCGCATGGTCTTGAATAAGAACATAGAT AATTTCTTTGCTGAGAATGAACAACTTGCATTTTGCCCTGCCATTGTGGTACCTGGTATATCTTACTCAGATGATAAGAT GCTTCAAACCAGGATTTTCTCTTATGCTGATTCACAGAGGCACAGACTTGGACCAAATTATCTGCAACTTCCTGCCAATG CTCCCAAGTGTGCTCACCACAACAATCACCATGAGGGTTTCATGAATTTCATGCACAGGGATGAAGAGGTAAATCAAAGT TTTCATTCTTTTATTTTCATGTTGATGTTTTGTATAATAAGCTGGTTGTCATGATAACTACCTAGTGCTGTTGAATTATT TATACACATGCTGACTTGGTCTTAATCCTGAGTATGGAATTGCATGCTATACTCTAGTTGGAACTTTCTATTTAGCAATG TACTTTAGTTGGAACTTGGAAATATTTTTTTCCTTTTGACTGAGTGCTGCCTATTTATAGGTCAATTACTTCCCTTCGAG GTATGATCCTGTTCGACATGCAGAAAGGTACCCCATTCCTCCTGCAATCTGCACTGGAAGCCGCGAACGGGTTAGTTCTG TTGAATAGCTTAATATGAAAATGCTTAATATAGTGTGACTAAATCTTCCAGCCCTCAGCTTCAATTTAGATTGCATTACT TCATTTCAATGGTTATTTGTCTCAGAAACCTCTGCATTTTAGAATTCTAAACAAATTTTCTTGAAGATTCAATGAGAGCA TTAGATAAAACATATATTTATTGATGATGGGTAATTGGTGTTTTAAAACTTCTGCCATCATAGTAAACTCCAACCATTTT TGCAGAGGCTCCCCTTCTTAAAAGCATATCTTTCTTTGACATTCTTTTCTAATCTATTTAGTAAGATAAAAAAATTAAGC AAGTACAGTTGAAAGACGTTGTCCCGCAATTAGTAAAACATTCTTTTCTAATCTATTTAATGAGAGTATTAGATAAAACA TACATTTATTGACATGATCTATACGGGAGCAAAGACATTGTCCCGCTACATCAGTTAAATATTTCCTAGTTGTTAATGAA GTTAGGCAGCATTTAGTACAAAGTTTAAGTAGTTATAATTTTTAACATCAATTTTGGATAGAAGAGATAGATTCATCATT AAATCGGTTATAAAACAAATGTATAAGATTTTAAAAAACAGTAAATAGCAGAAAAATATATGAAATGCTGCCTGTATTAG GGAAGTAATGTGTCAATGTCTCTTCTCTAAATGCAGTGTGCAATTGAGAAGGAGAACAACTTCAAGCAGCCTGGAGAGAG ATACCGATCTTTTGCGCCTGACAGGTTCCTTTATGAACTACTGATATGATCAATATGAATATGTATGGGATGTCTAACGT TGGTTCTCTCTTCTGTTTCTTGACTTATTTGCAGGCAAGATAGATTTGTCCGCCGATGGGTTGATGCTTTATCTGACCCA CGTGTCACCCATGAAATCCGCTCCACCTGGATATCATACTGGTCTCAGGTAAGATTTGGACATGCTATTTTATCACTACA AGAACTATAGTATCTAGTGTAAATGAATCTGCTCTTGTGTGCTAATATGTTCTTTGTTGGCGTTGCTACGCAGGCTGATC GTTCTCTTGGGCAAAAGATAGCATCTCATTTGAACTTGAGGCCAAGCATTTAAGGTTTGTTGCCAACTTCAGAATGATCA CAAAGTTGCAAATGTGCAAGAGTATAAGGATATCTTCTTTATTTTTATTTTTGGGGGGGATCATTTGAAAGGAATAATGC ATTTGTTGCAGTGTTATACAGTGTACCCTAAACCATGCATGCATCTGGTTGAGCTGTCTCAATAAATGTTTGTATGTGTT AGTATTTAACTATTTGTTTACACTGTTTCCATCTGCTGGTGCTGTTATAGAATTTGGAACTATTGTCTCAAATGTTTACT GTAGACCAGTTGGTTGCATTGGTCAGTGTTAAGTGGTTTGTGTTTAAAAGCCAGGGGTGTTGATCTTATCAACAATAAGA CGCAGCGATCAATTTGTTGCTGCCACACCATTCTACTATTGAGGATAATAATCTTCTGCCCCAAATGATGCATCTCTTAT CTTGGGAAATTAGAATCTTATGCCTTCCCCGTCACTCAATCTACTCTTCATGCTCTATCCATTACGTTTTATGACACACT TTGGCCGTGTGTTCATTTTCATTTCCGCTAAGCAAAGTAGCACATCCAGTTCTTTCAATTGTGTTTTCAATCTTAGTTGG CTAAATTCATGCCATCATTACCTTCCCATTTGCTTACCAAAACCCTTTGAGTTGAGAGAGTCCAGATTTGCATCAAGTGT ATCTTGAGCGAGTGTTTTTATTATTTGGAACTGTGACTATTCACTTTAACATAGTCGATTATGAGGGTTTCTAATAAAAA AAGGACGGGAGAGTGATGAAGGAATGAAAGAGAAGGAAATATGTTTGCATTTGAAGGGACTAGGGAGTGTACAATGTGAG TTTACTCCAAGCAAAAGTAATTTTGATATTCTAATCTTGAACTAATTTAACCTCCAAATCCACCTTTTATTAAATATGAA GTGATAAAATGCAGCCTTTTTGTGTTAGTTTGAAAAATGTACACAAATTTCACAACCTTTCTTTTAAAAGCGAGAACATT CACACACTAAATATTTCAATTCAAGCATGTTACCCCATATAAAAATATAAAACGTGATTTTAAAATTTAATTACATTATT TAATTTTTTTTGACAGGATACATTATTTAATTGTTTAACCTTTTTTAACCTCATCGAATATTTATATTGGGAAACTTACC GTCACCTCCTTGCAGTTTATTATTGTTACACTAACAATCCACCTGTTTTTTAATAAAATACTAACACATTTGTTTTATTG AGAACATCGCGCTAAGTTGTCATGAAATTTATCATTGTTGCATTGATTTCCTAAAAAATTTACTATCATAATACTACTCA GGCACAGGGGATGTGAATGGAATCTCCCTTATGTTCGGTGCATCACACGCCACAAATGTGAGATAAGACTAATCAATGGT GAATATTCAATCGGGCCGGGCCCTCCAAATTACATAGTGCATGGTCCATTCATAAAAAAGTACATTTGCCAAAAAAGTAC ATCTTTATTGACAAAAATAATGTATCACATTCTTTAGTTTGTTTGGTCTCATGTTGCATCAGCAGTAGATTGTAGAGAAC TAGCAGAGGAAAAATAACACGGTACGTGAAGAACTAGAGAAGTTACCCTGAAACAAGTAAACGAACCCTGGATGTCGTAT ACAACCAAACCATACCCTACATAACATACATATAAATATTATTGCTGCAAATGTTCTAAAAACAATTAGTGTTTCCCTTC TTTTGGTCTGAGCATTACTATTTTGATTCTGACGTCATGTTTATTTCCAGCAAAGAGAAAGAGACACTTGTTTTTTATAT TGAGTGATTTGGGTTTGCCGTATGAGACCGAATATTGTACTCCCTCCGTCCCTAATTATAAGCTAAAGTTGTAAAAATCA CACTTATTAAGAAAGCCTTAATTGATGCATTGGTTTTCAAAAAAAATGTACAACTTTCTATGTTTACCCCTATTTATGAT AACACTTTTTCATCATTGTACTACTAATGGTGGTGCTCCACTACCAATAAATGCAAGGGTGAATATGGAAAGAAATATTA ACTTTTGCAAGGTTAGCTTATATTTAGTGACACAAAAAAAGTCTCAATGTTAGCTTATAATTAGGGACGGAGGGAGTAGT TAATTATCAGATTTGTTGTGGTGGAAGGTGAATCTCCTTCGTTAGTGCCCTCATCACCTTTTGATTTTTTATCACGATCT CATATTTTAAGCGAAATCTCACAGGGAATATATGAAATATGTTCAAATGTACACACATTCTTACCTCTAAATAATTAATT ATAATCAGTTTAATTACTGTGCACTGATCAACAAGGGCAGAGATAAACTGATATGAGATTATTTTAGCTTAATTAGCGGT CTTGGGTTCCAATCTCTATGAGTGTAATTGTGTTAAATATTGACAAACAGAGTTTTGTCGTCCATAGTGATCATATCAGC TTCGAATGTGATTAAAAATAAAATAAAATTGAGAAATGTGATTTGGTATGTTATCTACTACTTCTTAATCTTCCACTACT GTAGCTAAATAACATCCAATTACGTTCTGACACGTGTCCTGCTTTGACTCAATTTTAGTTTTGTTTTTTTTCCCTCGCCA GTTCCACATACGACGTCGTTTGCACTTCGACACTGTTCATCACCATCTCTCATCAACCCATTGTTTTCGCGTGTTCCTCT CCCTCTCTACCCACTCCGTCGTACCAGTTGTCACCCTCTGATTTCGTGAATTCTCTTCCACAGCCTTCTTTTTCTTCACA TCAATCCGAAACCTTAGCACTGATTCTGTGTTTTCGTTCCTCTTTCCACCCACTCCTCACCAATCCATCAATTCTGTCTT CTCCGATTGCACTGCTGCGCCGATTCGGTGGCTCCATTCATGGTCCAACACCTCCATGGATCTACTGTTGCTTGCTCATC CTTCTCTCTGTATTGGAGATTTCATTACAGTTCCAAGGAGTAAATCCTGGCTGAATCAGTAAGTAGTCTAATTCACCATA AATTTCCTTTGATTCTTTCGTACCTTCATTCATCTGTATTTGAATTCCCTTCATTTTTTGTTTTAAATTGCATTTTTTAA GACACATGTTATAGACTCAAGTACCTACAACTGATAGAGTTGTAGTTCTGCCAGCAAATTTGTTCAATTTTGCTATAAAT ACTCCATGTTGTGAACCCATCATTCATCTGCTTTCCCATATCCCATTTGCCCTTCTCTTAAACCATCCCTTATTTCCACT GATTTCCCCAATGTTTGCACCTTATAATTCAATTTGAAGCTTATGCCTTGGGAGAGAAGCATGGAATATCAGAGCAAGGT TTATTATGAAGTGGGAGATGTTTCTAATGGTGAACTTACTAAACCATATGCCTTGCAACCTGTCCTCATTGATTCTAAGG TTATTTGTTGTTCTCTCAATGTTTTGTACATGTGCTTATCAATATCAAGTTGTAGTAGATTGTAACAAAAGCATGCCAAA TCTCTTTAATCTTGAATTAAGTACATTTATTTCACAGGATGATTCTAAGATTTGCTAAGCTTGAGCACAAACAAGTTCTT TTTAAGATGGCTGTCAGTTTTTGTTTTATGTCATCATTTCACTCCTCAAGTTCATCAAGGTCACTGATTTTGCCGCTATG TATCTCGCTTGCTGGAACCAATATATAATGAATTACTCTCATGGTAAAATGGCAGCCTTCATCCTCACCGATAAGCATGA TAAATAACTAAAATATTGTGTTTTATGTAGTTTTTAAACTTCAATCCCTTTTGCAATCAGGGGTAAATAATGATAAGTAG GAAATTCTAATTTGGTTTTATGCTGAACATGATTAGATTTGTCATTGAACTTCACTTCTTTTCCTTGCTTTCCAGGTTCT GTGACTACTTTGTGTTTTTTCTATCCAACAAATTACTCTTACCTAAAAGTTTCAATTTTTTTCTCAATTGGTCTCAGGCT TCGGTGATCATGGAATTCGAGTACTTGGCAAATTAGATTTTGAGGGGTTCTGTATAGCTGCAAAGGTAAGTTAATGAAAA AGAAGATCATGATTTAAAGAAACTTTGGAGATGGAAATGTGATTTCGGATTGATGCGAGAATGAAATTTGCTTCTTCCAA AGCAAAGTTTTGAAAGCTACTTCTTCTATGCCATGCTAGAGGTCAGAAGTTTGTTTCTTTCCAAGACTGCCTGATGCCAA ATATCAGGTTTTCTCCGTCATGATAAAACCCTCTCAAACCCTCGAGCGTATCAGGTTTTAAGATGCTTTTGTTTCTTTCG TTGGTTTCCAATCTCTATATTTTACTACCTCTATTCATGATGTATGTTCCACAGTTTATCTATTTAGTTTAATTTATGTA CAACTATTTGCTAATGTGTTTCACCTTTCAAGGACAGTTCTTTGAAGCTGCTGTTTCTAATGCACAAACTCTGTTTTCTG GAATTCATTTTTAGCGTACATTTTTCTTCTGCGATTTTGATTCTCTTTGCACCTTTTTTCACAAGACTTATTAGCATACT TTTTCACTACGTGAAATAAAAAATCATATGTAAATTAACTTGAAGGGCTGTTTTGTCCTGGATTATTATGTTAAGTGTGT TTGATTATGCTATGCTCTATAAATTTGTGTTCATCATTTTGTATCTGGCTTGTGGTGTAGGAAAAAGACATCATTGAATC CTCTACCATTCTATTATTCATTGACTATTAAAATTTTGGATTTCATTTTGTTTGTGGTCTTTAGCTAGGAAGTGCAGCTA CTAACTCCTAAACATGTAACTAACACCAATAAGACCACTAAAAGCTACATCATATTCTCCTACAAAATTGAGCAAATATT TGTAACATTAATATATACATTTTCAGATTCTTAAGGTTAACAACTATTAAACTAATATATTTTATTGAAAGTATATTAAA TTGATTTAAAAATATTTGAGTTTTCCCTCTGTCTACATCCTGTTCATGATGTTTTTTAATGAGATTTTTCCTCCATATTT TTGTGAGTATAGCATAGCTGATTTTATGCGTGGGAAAGCATGGAATGTATCACTACGGTACCTAAGTTGAACTGCTTTTA GTGCAGAATTTTGTAAGGCTGAACTGCTTTTAGTACCTAAAATTTATGCAAGATCAGTGTTCTAAATTTATGGTATTTGT CCTCTTTTGACCTGTAGTGCAGAGGAGCATAATTGGAATAGAGGGCTCTTGGGCAGATTTTGTTGATTATTTTGCAACTT CCGGAAGATCTCAAGCTGGTAGAGGTGAATTCAAACTCATGGTAGCTACTACTCTTATTACTCCTACTCTTTGCTTCCTT CTTTTGAAACTTTTTAAAGCAACAGTATTACAGGGTATGTTATTTATGAAGACATTTAGTTGCTAAAGTGTGTAACCATA GCCTTATTTATTTCTTATTTTCAAACATACACTATCTAATCCATGAGACTCTTTGGGCTGAGGAAATTGATGAATTGTGA CCTTGGCATTGTCCATGAGACTCTTAAAGTGATCTCTTTTTAATTTAACACGAAACTGGTTTGAACTGTTTAATTTGAAG ATGCTTACTCCCTACTTTTTAAATTATTTAATTATTTAAGAGTATTTTATCCTGATATAAGTGAGCATTGTAAAAATCAT GGAACCTGATACACACAGTTCACGTTCTCTTTATGAGTTACAATATATCATTTATGTGCTTTCATTATTTAATTGTGAAA CTTACAGAGTAGGTTTGTTGATCTTGAACAAATCTTAGTAGTAACTGGAATTACTGAAATTGCAGATTTCATGCAATATG ATTGTAATAATGTAATGTACTTTTTGGCAATACAAAGCTAAACAAGAATGTTGATACTTTTTTGGCAGATTTCATGCAAT ATGATTGTTGATCATTCTTATCTTATACAAATTTTCAGGTGACAGGTCTTTTGGAGGTCCTTGGCTATTGTGGGTTTTGC TTCCTCTTGAGGGCAAGTATGTTGATATGCTTCACTGCCTCAACGATGCATTTGCAAGGTTTGACAATGTTTTTTCATCT GTTTTTCCTACCAGAACCCCAAGACATGCCCTTATGTGTTGTTTGTTAACTCAAGTTTTCTCCTTTTTCTTCTTTTTTTC TCCTTTTGAACTCAATACAGTAGTAATTTTCTGTTTTAACATTGAACAAATTGACAAATTTCATTTTAGGATGTGATGAC TTCTCCTATTTACTTTCATCAAGACTTTAAAATTGGTAAAAATTATGATTTGCATAATGACCCTTGCTCTGTTTTAGGGT AAGTCCTCATTTGAATACCCCCCTGTGATTATGGACTTAGGCCCAGTTTGGAAGAGCTTATTTGAGCTTATCTAACAGCA TAAGCTCTTATGCCAGTGTTTGGGAGAGCTTATGCAAACAGCTTATGACCTGTCATAAGCTATTTTCAGCTTATTTTCAT AAGCTACTCAGGATAGCTTATGAAAAACAGCTTATGCTTATATACAGCTTATTTTTAATTTATTTCAATAAATTTTCAAA AATAGCTTATGAATAAGCGCTTATGACATAAGCGCTTATGACCATAAGTGCTTAATTAAGCTGTTTTTCCAAACGGGGCC TTAGTTGGTTGGGAGCTGTTATTCAAGGCTGAGAAGGCAGCTGATCATGGTGTACGATTTGATGATTCTTTCCGCGTCAA AAAAATATGTGATCATTTTAGCATCATTGGAGCATTTAAGGACAAGGCCAAGGTTCAGACTCCATAGAAGGTTTGCAATA TCTACATTGTATAATTCTCATATGTTAATTTTATCTAATGTGCCTACTTTTTTTCAGCTTAATTTTATCCAAGGATGGTG ATATGTCTGATTTAAATTGTGAAAGTTCTGCCAACCTTTCTGAAATGAGCCCACATGTTCCATCCCTAGATGATATTTCA CCACATGAACGCTCCGCTGTTTTCTCATCGATTGGTAGTATTAACAGTGGAGAAACAATCAGCAGCTCAAGGACTTTAAA AAGGCTGAAAATAAGGAGTGTTAAGTTAGATAGGTAGTATTTGTATATTTATACCAGAATGACTGGGACCTGGTCTGATT TTGTCACAGCTTTGTGTAAGGTGTTAATTTTGTTGTGCTATTGTTGTCATGTTAAGTAATTATTGGGATATCTGGGCTAT GGTCAGTGCTACCAGATTCAAGATTTTATTTTCCTTTTGCTTATGTGGGTTTGTCATGCCCTTTATGTTGGAGTCTATTT TAAATGTACTCTATGTTTGTCTCAATTGTATGTTACATTACATATATTGTGTTAAATTATGAGCATGACTTTTGGACAGT CATTTCAAATTACAAGAATCTTATTTATTCACATTATTTTGGTTCACACAGTCATCTCAAATTACGACCAGAATCTTTC 

CDS sequence (LotjaGi1g1v0436200.1) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGGATCCCTACAAGCACCGGCCATCTAGCGCCTTCAACTCTCCCTTCTGGACAACCAATTCCGGTGCTCCTGTATGGAA CAACAACAACTCTATGACTGTTGGAGTTAGAGGTCCTATTCTCCTTGAGGATTATCATCTTGTGGAAAAGCTTGCAAACT TTGATAGGGAAAGGATCCCAGAACGTGTTGTCCATGCTAGGGGAGCTAGTGCAAAGGGTTTCTTTGAAGTCACACATGAT GTTTCTCACCTGACATGTGCAGATTTCCTTCGAGCCCCTGGAGTTCAGACACCTATCATTCTCCGTTTCTCGACTGTCAT TCATGAGCGTGGTAGCCCTGAAACCTTGAGGGATCCTCGTGGTTTTGCTGTGAAGTTTTACACCAGAGAGGGTAACTTTG ACCTTGTGGGAAACAACTTCCCTGTCTTCTTCGTACGTGATGGCATGAAATTTCCAGATATGGTCCATGCTCTGAAGCCC AATCCCAAGTCTCACATCCAGGAGAATTGGAGAATCCTTGACTTCTTCTCCCACTTTCCAGAAAGCCTTCATATGTTCAC CTTTCTATTTGATGATGTGGGTGTTCCACAAGATTATAGGCACATGGATGGTTTTGGAGTTAATACATATACCCTGATCA ACAAGGCTGGGAAAGTAGTGTACGTGAAATTTCACTGGAAGCCCACATGTGGTGTTAAGTGTCTATTGGAGGAAGAGGCC ATTAAGGTGGGAGGATCCAACCACAGCCATGCCACTCAAGACCTTTATGAGTCAATTGCTGCTGGTAACTATCCTGAGTG GAAACTGTTCATTCAAACCATAGATCCTGATCATGAAGACAGATTTGATTTTGACCCACTTGATGTAACTAAGACTTGGC CTGAGGACATTATACCCCTGCAGCCCGTTGGTCGCATGGTCTTGAATAAGAACATAGATAATTTCTTTGCTGAGAATGAA CAACTTGCATTTTGCCCTGCCATTGTGGTACCTGGTATATCTTACTCAGATGATAAGATGCTTCAAACCAGGATTTTCTC TTATGCTGATTCACAGAGGCACAGACTTGGACCAAATTATCTGCAACTTCCTGCCAATGCTCCCAAGTGTGCTCACCACA ACAATCACCATGAGGGTTTCATGAATTTCATGCACAGGGATGAAGAGGTCAATTACTTCCCTTCGAGGTATGATCCTGTT CGACATGCAGAAAGGTACCCCATTCCTCCTGCAATCTGCACTGGAAGCCGCGAACGGTGTGCAATTGAGAAGGAGAACAA CTTCAAGCAGCCTGGAGAGAGATACCGATCTTTTGCGCCTGACAGGCAAGATAGATTTGTCCGCCGATGGGTTGATGCTT TATCTGACCCACGTGTCACCCATGAAATCCGCTCCACCTGGATATCATACTGGTCTCAGGCTGATCGTTCTCTTGGGCAA AAGATAGCATCTCATTTGAACTTGAGGCCAAGCATTTAA 

Protein sequence (LotjaGi1g1v0436200.1) extracted from Lotus japonicus Gifu v1.2 Proteins.

MDPYKHRPSSAFNSPFWTTNSGAPVWNNNNSMTVGVRGPILLEDYHLVEKLANFDRERIPERVVHARGASAKGFFEVTHD VSHLTCADFLRAPGVQTPIILRFSTVIHERGSPETLRDPRGFAVKFYTREGNFDLVGNNFPVFFVRDGMKFPDMVHALKP NPKSHIQENWRILDFFSHFPESLHMFTFLFDDVGVPQDYRHMDGFGVNTYTLINKAGKVVYVKFHWKPTCGVKCLLEEEA IKVGGSNHSHATQDLYESIAAGNYPEWKLFIQTIDPDHEDRFDFDPLDVTKTWPEDIIPLQPVGRMVLNKNIDNFFAENE QLAFCPAIVVPGISYSDDKMLQTRIFSYADSQRHRLGPNYLQLPANAPKCAHHNNHHEGFMNFMHRDEEVNYFPSRYDPV RHAERYPIPPAICTGSRERCAIEKENNFKQPGERYRSFAPDRQDRFVRRWVDALSDPRVTHEIRSTWISYWSQADRSLGQ KIASHLNLRPSI 

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 1 492 492 0.0
PANTHER 1 492 492 0.0
PIRSF 7 491 485 6.0E-180
Gene3D 12 491 480 2.7E-209
SUPERFAMILY 13 489 477 9.03E-208
ProSiteProfiles 14 492 479 75.106
CDD 16 484 469 0.0
SMART 18 401 384 3.9E-247
Pfam 18 398 381 1.4E-174
PRINTS 31 54 24 1.3E-80
ProSitePatterns 54 70 17 -
PRINTS 94 112 19 1.3E-80
PRINTS 115 132 18 1.3E-80
PRINTS 134 152 19 1.3E-80
PRINTS 299 326 28 1.3E-80
PRINTS 331 357 27 1.3E-80
ProSitePatterns 344 352 9 -
Pfam 423 486 64 3.4E-17

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 Catalase activity Catalysis of the reaction: 2 hydrogen peroxide = O2 + 2 H2O.
Biological process Response to oxidative stress Any process that results in a change in state or activity of a cell or an organism (in terms of movement, secretion, enzyme production, gene expression, etc.) as a result of oxidative stress, a state often resulting from exposure to high levels of reactive oxygen species, e.g. superoxide anions, hydrogen peroxide (H2O2), and hydroxyl radicals.
Molecular function Heme binding Interacting selectively and non-covalently with heme, any compound of iron complexed in a porphyrin (tetrapyrrole) ring.
Biological process Oxidation-reduction process A metabolic process that results in the removal or addition of one or more electrons to or from a substance, with or without the concomitant removal or addition of a proton or protons.

Expression data

Expression pattern

Expression pattern of LotjaGi1g1v0436200.1, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.

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