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LotjaGi3g1v0230400.3

Overview

Field Value
Gene ID LotjaGi3g1v0230400
Transcript ID LotjaGi3g1v0230400.3
Related isoforms 10
Lotus japonicus genome version Gifu v1.2
Description Gamma-glutamyl phosphate reductase; TAIR: AT2G39800.1 delta1-pyrroline-5-carboxylate synthase 1; Swiss-Prot: sp|O04226|P5CS_ORYSJ Delta-1-pyrroline-5-carboxylate synthase; TrEMBL-Plants: tr|I1JLN5|I1JLN5_SOYBN Uncharacterized protein; Found in the gene: LotjaGi3g1v0230400
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr3:35986856..35998781) extracted from Lotus japonicus Gifu genome v1.2.

AATTTATTTCAATAAATTTTCAAAAATAGCTTATGAATAAGCGCTTATGTCATAAGCGCTTAATTAAGCTGTTTTTCCAA ACGGGGCCTTAGTACTTACCATCCTAAGTCAAATTGTAGATCCGTATTGCTCACAAATTGATCAATTTTGTAGATAAAAA AAATCCCAAAATCCAGTGGCTTTAAAAGGGTCGTTCCCTGTGACCTGAAATTTTCATATCATCATCAGTGTCTTCTCCTT CACTCATTCTCCTCTCTCCACCATAGCAAAAGATATCAGAAATTCAGAAACAATGGAACTCCCTTTGCAAAATGGCCTCG CCAAGTTCATCAGCACCAAAATTTCTTCTGAGTTGCCACTCTCTAATGGGACAATTCCTCCAACTAACCCTCTCTTTGAA GCTGTGCATTCAGCAAACATGGATCCTTCAAGAGCTTTTCTCGGCAAGGTCAAGCGTCTCATTGTAAAGGTACTGTCATT TGTTTATTTCACTTTATTTTTTTTAAATTTTGATGAATTATTTGTTATAGAAAAGGTTCCTTTGATATCATAATTCTGTT TTTCAATTATTGAATTTTGTTGAAGTTATCACTCTTTTGAATGAGAAACGTGAAATGAGGCATAAAAAACAGAATCTAGT TTTATTCGCTTAGCAGATTATTTAATTTTGTTTTCTGGAACAAAAAGAATCACGTTATGCATCTCTGCTTTTCCCCTCTA AATTGTAGTTTCAAGCTCTTTGAATTTTGATGTTCTTACTTTTGTTTTGTTTCTAGTTTCTACTATTACTTTTGCTTTTG ATGGTTCTTCAATTCACTTCTTCTAGATTTTTTCTTCATGGATTTGGTGTGTGTAGTTCTGCTCTGGGCTCTCTTCCCTT TTGGCTTTTTTCTATTTAACATATAAGCGCACCACCATATAGCATGTATATTTAGAGACTTTCTATACTTCTTTTTATTT CTGGTTCCATTAAATATTATAGAGTTAATTGTCCCTTTATAATCATTGGAGACAAAAATACGTCATGCTGAAGAACTAAA ATCATTTATAAAATTATGAATTAATTTGACAATTAATTCTTATAAGAGAAAAAAAATGAATCAAACACAAATTTTAATCT CGTTCTCGGGTACATAAAATGTGTGACAGTCATATCATTTAACCATAATTTTTACCGCTATTAAAATTGACTAATTATAT TTTCACACTTCATTTTTGAAGTGTGAAAAGGTGGAGGAAGAGAGAGATATGAAGAAAGAAGAGAGAAAGTAAAGATATGA TAGGTGATTTAATTGATAGAGAAAAGAAAAATAGATAGAAATGAAGGGGAAAAAAAAATAAAGATGTGTATATATTACTC ATTAAAATTAGGGGCACTTGAAAAGTTACAGTACGTCGATTGTATATCGGTGAAAATCTATTTTGTTTTAGCACATATAT CGAGAAAATCAAAAGTTTTGGCTGCAATATGCCGTTGACGAGTAAACAACCATTTTGGTCCCTGATTGTGTTCACTTATG ACGGACTGGTCCTCATACTTTGGAAATGGTCGTTTTTCATCCTTGAATGTGTTGCCGTCGGTCAAGTTAGTCCTTGGTTG TGTTTTCCGTTGGTCCCTCAGACGGAAAAGTCCACATGACTTATTTTTTTTCCAAGTAAGCATCCTACGTGGCACCTTCT CTTTTTCCCTCCTAAAAAATAATGTCAATTTCATCCCTAGCTTCATCATCATCAATTCATCATCATATTATATATCTTCT TTCTCCAGACTTCATCATCACTATCAATCTTCATCTTCTTCATCATGTTACCCATAAAAAAAAATCATCTCCCACACATT AACTAAAAACCTAACACATACACTCTTAAGTCTTAACCCCACACACATATAACAGGATCAATAACAATTTCATATACATG GTTACCACAGGACAACATTCAGCTCCACAATCTATCTTCCCGTTTTTTTTTTAATTTATATGCATTACGCCTTTTAATGC AATATTTCAAAGCTTCCTCTCCAACAACAACAACAACAACAAGGATCTTAATACATCAGAAATTTTATTCACAAGTTCCT CTCCAGCAACAATAAGGGTCCTCCTTCCATTCTGTCTCCTCCTTAAAATAAATAGACCCATATCAAAAATCCACCCCCAT TTTGTCTCCTCCTTCCACAAGAACCCAGATGTTCAAACCAGAACCCAAATCTTCAAACCCAGATCTTCAAAAATCAAGAA GAACCCAGATCTTTAAATCCACCCCTCATTCTCTTCCGCGGATCCGTCACACCACCACCATCCATACACCTTAGGCCTGC TGTCCTCTCCACCAATCCTCTTCACTGACCTTCAAACCCCAAAATCACCATTGACCTTCGAAACCCAAACCCCAAACACC ACTGCCACCACTTCCCCTCCTCCAATCGCACCACCATCACCCAAATCGCTCCTCGATCCGCACCACTATCACAGAGCAAC AACTCCCTAAAAAAAAAAGCTCTGACCTTGTTTCCTGAAATTAGCCATGCCCATAACAAAAACAGAACGACCCAGATGAA GAAATTGGAAAATTTCACTCTAAAACATAGCAGAGGCACAAAATAAACCGATCTTTGACACTGATTTTTCAGAATTCTCT GAGCAGATGGAGAGAGGAAGAGAGATGAAGAGGGGTTTAAATATGAAGAAGGAGGAGGAGGAGGAGGAGGAGGGAGAGAG AGTGGAAGCGTGAGGGGCGATTTTGGTACCATGAGGGACGAGTTTGACCTGTTTTTTGGAAGGGAAAAAGAGAAGGTGCC ACGTAGGATGCTTACTTGGAAAAAAAATAAGTCATTTGACATTTTCCGTCTGAGGGACTAACGGAAAACTCAATCAAGGA CGAACTTGACTGACGGCAACACATTCAAGGATGAAAAACAACCATTTACAAAATACGAGGACCAGTCCGTCATAAGTGAA CACAATTAGGGACCAAAATGGCTGTTTACTCTTTTGGCTGCATTCACCGAGAGACTGACACGTCCATTTTACACAATAAT TTTGCTTTATTATTTTTAACTTGGCCAATTAAAAAAAAATTGGCCATTTTGTCGCTGTGTCCATGATTCTCAAGAACTGC GCTATCTAATGCTTTGTTTGGTTGGAGGGAAGGAAAGATGGAAGGAAAAAAACACGGAATTCGAGGTATGAATTTAGATT AAGGTGTAGTCCAAATTCACACATCAAATTCCGTGTTTTATTTCCTTCCCCCTTTCCTTCCCTCCAACCAATCAAAGCCT AAGTTTTTCACATGGAATATTCTTCATATTTTAAAAAAGGGTTTCTATTTAATAATTAAATTGTATTTGTGTTTATTTGT CTATATATATTAGATAGGTAAAACCTTTTAAATACTTAAGAGAGTTAATGATTAAATTAATCTCTAATTTTATAATTGAG TTTGATTTTAATTTATCGGCAGAAACCGTCATTTAACAAACTAAACTCAAACTCTTTTACAAAATTATGGACTAATTTGA CCTTATCTTATTTATAAAAGAGATTAATTTATATGCATTTATGGTGTAAAATTTTTTACATCATCATTCAATCACAACCT TCTATTTTTTATTTTAAATATTATTAAATTTAAAATTAATTATAAGCTAACAAAATAGAAGGATGTGATTCAATGATAGT GCAAAACTTACGTACACCGTCGGTGTATAGAAATTAATTCTCTTTATAAAAAATGAAAGATAACATGTTTCAGTTTATAT CATGGAGAACCGAGTCCAAACCGAGTTCTAACTTATGTCTTATCAAAGGGACCAACATCTTATCTTATATTAATAAAGGT ATAGATCTTTAGGAATTTCTAAGTTAAATGAATCTGTGACAAATTTTCTCCTATGAAAGGTGGGTCCTCCTACTTATGCG GCCCATGGAGCCGCTGGGGTTTGGCCTTTTGTGTTTGTCATTTGTCAGATTGCCATTCAAGATAACTATAAAAAAATTGT ACAAAAGAAATAATCTTTTGTTTATTTATTTAAAAACAATTGCTTAATTTTTTGTGCTATTGGAGGATGCCACCCGTATG AGCTGTTAAAGCAACTGCTACTTCTGCAAGCACCCTCTTTAACCCGATTCTTAAATAATTTATTTTTTCTCATACTTCAA TTCGTTCATGAAATAAATGAGATATTGTGCGATCAAGAGCTTGTGCTAATGAGTTGTTTTTATTTAATTAACGTGACATT TTAGATTCATAAAAAAATAATGAAGCGGTAGTTTCTCTCGATGTTTCTGTTTCTTAGAAGTTAGCGTTCTTTCGTTTTTC GGGGCATTGCCTCCATGTAACCAAATAATAATAATAATAATAAATAACCTATGTAGCAACTATGCCTTGGAAAGGCTATA TCAATTATTATTTTTGAATCAGATGCTCAATAAAACGTTAACTATGAGAGGATTAGTAAAGCAAGAATAAAAAATGAAAT GAGTTGTGTATGAATCAAAACTTAAACCTAGTTATCAGCAAAAGAACCATTATGAATTAAAAATAAAATATATTTGATAT TTTCAAAAACCAGAAATGGAGTAAAAAACAATTCCCGGAAAATGGGAACTTGATGGAGCAGAAGAGCAGAAGCAATAATA ATAATAATGGCTTGACCTCTCACTCTCACCACCATGACCCGTGATTCGTAGGGCCCACAAAGCCCAGGTTTACACGTGGC AGATCCACCGCGTCTCTTTACTCTGCTTTCCATCTATCAAAAAAAAAAATATCGTTTTCGTCGCCCATTTAACTATTCAC ATTCTCTTCACTACGATTCGCTCACTCTCACTCACTCACTCACTCACTCGCCGAGTCAACTCATCTTGACTCGCTCCTCT GTCTGCGTCTTCATTGCAATTTTCATGGATTCCACCACCACCATGGATCCCACTCGAGATTTCATCAAGTCTGTTAGGCG TGTTATCGTCAAGGTCTCGTTTCTTGATCATTCATCATCAACAACGTGCATTGCTGTTTTTTTTGTTCTTCCTTGAATCA TGAAATCGGAAAACCAAGAAACAACGATGTTCAATGTGTTTTCTAGTTCAAAAATTACATTATGTATAGTTTCATCAGTT TTCAATGTTGTGTAACATGTATTTCTTTTACTAAACATGTATATGTTTGTTCGGTTGGTAAGAACGAATCACTTCCCCAG AACGAACAACGTTGTGTGTTTGATTTCCGCTGCCGATGTTATGGCTGAGTTTGTTGGCAATATATAAGCGACCTATAGTC CCGGAGGCATGTTTTGGCCTGTGGTCGTGAACTCGTGATCGTGATCGGAACTGAACACGAAAAGATATATATATATATAT TTCTTTTTTGACTGGAATTGTAATTTCTGATGCATTGTATCTAGAAGCCACTTCACATGATGTATGAAGCTTTAATTGAT TTCCCTGGATTTTTTTTTTCACTCATTCTGCTTCAACTTTTGATTTATTGTGTTAGTATCTTGTTGATTATGTTTATTCT ATTTTTTTTTTCTGAGTTATGCAATTTTTGCATTTGTTTGATGGATTTTCTGTGAATCATTGAAGGTTGGAACAGCTGTT GTTACTCGAAGTGATGGGAGATTAGCACTTGGCAGACTTGGAGCTCTCTGTGAGCAGGTATATATACATATATATGTCTC TTTTGTATTCAATTGTTGGTGGTTTTACAAATTTATGTATTTTAAAATTTAAACATTCTTCAATGGCTATGTATCTAGTG TACTGTGTACTGTCTCTATGTGTGTGTTTTTTGTTTTGTTTTTACTGAGAGCTGTCTTTGCAATGGTGATTGCAGCTTAA AGAACTAAACACTCAGGGGTATGAAGTCATATTGGTGACTTCAGGTGCTGTTGGTCTTGGCAGGCAAAGACTTAGATATC GCAGATTGGCCAATAGCAGGTTCTTATAAAAATATATCTTTTTGTAAATTCTATGGTGGTTGTATGTCTTTTTCAATTGC ATGGATCTAATGTCCTACCAAGTACCAATAATGGGGTTTTTTTAGAACTGAAACAAATTTAATATTTTATCCCTGGTGCT TCATTTTCTATCTTTTAATCCCAATTGTGTAAGCAGGATTAGACTGATATAGGATTGAAGGATTTCATGCAATCTGCTTC ATGCAATTTGAGTTTGAAGAGATATAGGACAAGATTGATGAGCCTGAAAGATTTTTTTTTTGTTTACTTGTGATGCAGTT TTTCTGATCTTCAAAAGCCACAAGGTGAGCTTGATGGAAAAGCATGTGCGGCTGTTGGGCAGAGTAGTCTCATGGCTCTC TATGATACTATGTTCAGCCAGGTGGGCACAATATGCATGTTTTCCTTTATACATAAGAAGGTGCATGTAATTTTTCCTCC ATATTGATGCTGATAGAGGATTTTTCTTGTGCAGCTGGATGTGACTTCTTCCCAACTTCTTGTGAATGATGGGTTCTTCA AGGATTCGGGTTTCAGAAAACAACTTTCAGACACAGTGCACTCATTATTAGATTTAAGAGTTATCCCCATTTTCAATGAA AATGATGCTGTTAGCACTAGGAAGGCACCATATGAGGTATGCTTATTTTTCCTTTCACTATTTCATTTGAATTAGTTTAC AACAATTAGTTTTTGTTTTCATAGTATAGTCAAATTGCCTTAGTCAAAACTTTTTATGTTACATCAATGAGTTTGATTTT ATTGGCTTTGTGATAACAAAAACAAGACAAGCCATATCCCAATTAGCGGGGTAGGCTCCATGGTGGCTTTGAAATATGAT ATAAATTACTTTTAATTGTAAGCTCTCCAAGCAGGATTCCACTGGTATTTTCTGGGACAATGATAGTTTGGCGGGTCTGT TAGCTCTTGAACTCAAAGCTGACCTGCTTGTCTTATTGAGTGATGTTGAGGGCCTATATAGTGGTCCTCCAACTGACCCC AACTCAAAGTTAATCCATACATATATCAAAGAGAAACATCAAGGAGAAATCACTTTTGGAGACAAGTCAAGATTGGGCAG AGGGGGCATGACTGCTAAAGTTAATGCTGCTGTTTGCGCTGCTCATGCCGGCATCCCAGTGATCATAACCAGGTACCTAA CATTTTATGATGTATTTTTACTTCTCTAGCAAATTTCAATAACTGGGGAAGATGGCATTGTTTTTGTTGCTTGCAATAAT GGTATTTGCTAAAAGTATCTATTGTTGAGAAAATTGTTCAAGTCATGAAAAGACATTCGGATTCTATGTAGTGCATAATT TCAAGTGTACATTTGAATTTGTCATTTACTGACTTTGAATTGTATTTCAACCTTGTTGAAGTGGGTATGCTACAGACAAC ATTATACGAGTCCTTCAAGGGGAAAGAATTGGTACTGTATTTCATAAAGATGCACATTTGTGGACCAACATAAAGGAAGT CAGTGCACATGAAATGGCAGTTGCAGCACGTGATGGTTCTAGACGACTTCAGGTAAATACAGTTATATATTGACTAAACT CCAAAACTGGCATTAGTTACCTACATATTTTAATTACAAAAAATTTCCTTCAAATTGGTGATATAAAAAGACAACCATAG CAGCTGTTCTGTTCTTTTAAAGTATTAATTAATATGGTGATGACAAATTTTTAAGGACTATTTTAAGGGTTTACTTGTTT ACATATTTCCTCATTTCCCGTGATGATACTTTTTGAAGGACTAAATTAGGCTTTACTTGTTTACATATTTGAGGGCTATG TGTGCCTAATTTCCAACAATATAAAATATTTAAATGGTTATTAACTTTTTATTTGTTTATTTGTTCTGATTTCCAACACT ATGAATTGTATGTAGTTTAGTCATTTGAATTATGTTGTTTTTGGTGTCAGGCTATAAAATCTGAAGAAAGGAGTAAAATA TTGCTAGCAATTGCTGATGCATTGGAGAAAAATGTTGGTATGATAAGGCTTGAGAATGAGGCTGATGTTGCTGATGCTAA GGCAGCTGGATACGAAAAGTCTCTGATTTCACGTTTAACCCTGAAGCCTGAGAAGGCAAGCACTTAATTAGTTGTATTCT GAAGCAAAATTTGATAGCATATCCTCGAGCTCTTTGTTATTGTCATTGTCCGGCACGGATTTATCCCGTTTCAGAGCATG GTTTTAAGCATTCTCTGTGAGCATATTTTTGTCTGACCTTTATTCTTGGTGCTTACAGATCAGGAGTCTTGCAAAGTCTG TGCGCATACTGGCAGATATGGAAGAACCAATTGGTCAGATTTTAAAGAAAACTGAGGTAAAAACGCATTTCCTTTTATTT GAAGGAGTATCTCTTATCCTACTAACTCTGTCATCATTTTTTCTTTATCTTATTGAATTTGTTTATCTTCTACACACACA CACACAATACATATAAACCTACAGATGTGAAATTGGCGGTATGATATTGAAATGTTCAATATTTTCCTTTCTTAGTGTGT TCAAATTATGGAATAGCTTTCCTGTATTTTGGTAAAATAGATTCTGAAATGCATTTTGCAACTTACGTTCGCTGAACTTG AAAAGAAACTGTAGTCACTGACTGCTTTAAGAAAAAATGAATGATGTTATTTAATAAGCTATACTTCCTACTGCTCAACA CTTTTTGACAGTTCTTATTGCTGCTTTCTGTGTCCAGCTAGCAGATAAGCTCATCCTGGAGAAAATATCGAGTCCTTTGG GAGTCCTTCTGGTCATATTTGAGTCTCGACCTGATGCGCTGGTTCAGGTTAATTTAAGATTCATTTTCCTTCTTATCCGT CTTCATTAAACTGCTTGGAATGGCAAAGATACAAACATGATTACAAAATATGCATCTAGTATAAGCTGATCGTGGATTCA CTATATCATCATTCATCATATTACAATATATCCTTTAGTTGTTTCGGATGTTGATCTTTAAGTTGTTTCTTTAAATGGAT TAACAGATAGCTGCATTGGCAATTCGAAGTGGTAATGGTTTATTGCTTAAAGGAGGAAAGGAAGCCCGGCGATCAAATGC GGTCTTACACAAGGTATAGTTATTGATTTTAGCTGAGGTTTCTGTATTATAAGATTAATCTGGATCAGAATGGACTGCTG TTATTTTCTCCATTCTAGAAATGAACATGTTTCCACCTCTCATTTCTTCTTTATGGCAGGTCATTACTTCTGCTATGCCA GAGACTGTGGGTGACAAACTTATTGGGCTTGTGACTTCAAGAGAAGAAATTCCAGATCTACTGAAGGTGGATATTACGAG TTAAAATCTGCATAATTATTTCTGTGACGATTTTCCACTAATTATACTCTGCCACAGCTTGATGATGTGATAGATCTTGT GGTCCCTAGAGGCAGTAATAAGCTTGTTTCTCAAATCAAGGAATCAACAAGAATTCCTGTTCTTGGTCATGCTGGTAATA TTTCATTTAAATTTCCTATATGGGACTTGTAGTAAGAAACTAGGTCTTTTATTGAAATTTTCACTTTTTTTATGCAGATG GAATTTGTCATGTATATGTTGACAAGTCTGCTAACATTGATATGGCAAAACAGATAGTTAGGGATGCAAAGACTGATTAT CCCGCAGCCTGCAATGCAATGGTAATTAGCACTCACATCCTTTACAATCTCCTCTCCTTTTGGGTTTTGCTTGCTTGTTA CTTATGATGAAAATCAATTTATGGACTGTGCTCAATATAAAACTGTCATGATATTCTTAGGAAACTCTTCTTGTACACAA GGATCTGTCATGTAATGGTGGACTTAATGAGCTCATCCTTGAACTCCAACGTGAAGGTTTGGCATTACTTGCAAATGGGT TTATATGAAGAGTATTGATTCAAATTGAAGTTTTTGTTTTAATAATCAAGCTATGGGGATTAGAAGAGGATATTTATGTT GTTTCTCTCTCTTAGCTTAGGGGATTAGAAGACATAATAAACATATGTAAAATGGCTTGCAGGTGTTCAACTCTTTGGTG GACCAAAAGCCAGTGCCTTGCTAAATATTTCTGAAACGAGCTCTTTTCATCATGAGTATAGCGCTCTTGCTTGCACAGTT GAAATTGTAGAAGATGTGTTTGCTGCCATTGACCACATATATAACCATGGAAGGCATGTTTGGTTCCTCCGAATAATTTT TACTTTCGTTCTCTATATCACTAACTAAACTATGAGTATTGTGTCTCTTACTTTCTTTGCTGTTACTGCAGTGCTCATAC TGAGTGCATTATTACAGAAGACTCTGAAGTGGCTGAGACTTTCATAAGACAAGTTGACAGGTACGTATTTTTTTGTCGTA ACCTTGTTTGATCCTTTGCTTCCAAAAGATACCATTGTATCATGATGAGATGGCAGAGTACTTCTGATGTTTTTCATAAT TTGTTTGAATCCACAATGTACTGACCAAAGTTTGATCCATAGTATTTCATCCAATCATGCAAAGTTTGATCCTTTAATAG CATTTATGCTTTAATGTTTTTCAACCCATAAACATAAACACTCCATGAGTAAGTCTTGTTAATTGGTGCTTTTTTTAATT GTGGAAAATATCCATTTTTGCCTTATGCACAAGCAGTGCTGCTGTATTCCACAATGCAAGTACAAGGTTTTGTGATGGAG CACGCTTTGGGCTTGGTGCAGAGGTAGTTTATCTTCCAGAAAGTCTATTGTTACTGGTAGCATGATCTTTTTATATTTAC TGATCTGTTCATGGTTCTTTTAATGTTGAACAGGTTGGAATAAGTACAAGTCGAATTCACGCTCGAGGTCCTGTAGGAGT TGAAGGGTTGTTGACAAACAGATGGTATGGAACTCTGCACACATCTCTTGGCTTTTACTTTTAAAGAAAACAGAAATTCA ACTGAACAAATATGCATCGATTGATATTTTTTTCTGTAGGATCTGTTCTGCTCACATTTTTTCTATCGCAAAATGCAGGA TACTGAGAGGGAGTGGGCACGTAGTAGACGGTGATCGAGAGGTCAAGTATACTCACAAAGAACTGCCACTAAAAGCATGA GCATACTGAAAATTATTAGTTGAAGCTGATATGCTTACCTCGTCGAAGCGGCATCTCTTTTCTGTCCTATTTTGTTAGGC AGAAAGTTGCTGAGATGCAGGCCATGTATAACTGCTGCTATCATTTGCCCCTTTCCAGAGCCTTTTTCTTAACTGGAATA AGTTCAAGGGGGAGAAAATAATCATATGATATTATCTGAGACCGTCTACTTTATTGCAATTTCATAAAATATTCCAGGAT TGTAGAACAGCATTGCTGTGATAGTTATAAATATAACATCCATGTGAAGTTGAATAATATGGTGGAGTTATTCTCCGGTT ATTATTTGAGCCTTTTATGTAGGTTCTATCTGCAGAATATTTGTGCAGTTTCCTTGCTTTCCCAATCACTCTCATTTTCT TCAGCATAACGTTTAAGTGATAAAAATGTGGTAATAGCAATGCTATATCCTCCTTTTCTTTGGTACAAGGGAAAGTAAGA AGACAGAAACAAAAGAAAAACAAAGCAGAATAACCTAAACTAGACTGCCTGTTGTAAATAAGGAATTAATATAAGAATTA TTATTAGAAGATTATATTCAGTATTAGGAGATTTATTCTCTTATTAGGAGATTGTGTACATAATTAGTTATTTCCTTATT TAGGATTAGTCTTCTTCTATATAATGTAATTACCCTTTGTATTCTGATTAAGAAGTAATAATACAATTTCTCCTACTTTC AAGTTGGTATCAGAGCTCCCGATCTTGGGAGTTCTGCTTCTGCGAAAAAAACCCTAGGCGTCTTATTACGGCCCTTTTAT CTGGTAACGTTTCCTGTTTTGCCACTGTTGGCTTATACCGTTTGGAGGCCTGTGTTCTTCATCACCGGCCTGCCATCCTC TGTTCG 

CDS sequence (LotjaGi3g1v0230400.3) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGGAACTCCCTTTGCAAAATGGCCTCGCCAAGTTCATCAGCACCAAAATTTCTTCTGAGTTGCCACTCTCTAATGGGAC AATTCCTCCAACTAACCCTCTCTTTGAAGCTGTGCATTCAGCAAACATGGATCCTTCAAGAGCTTTTCTCGGCAAGGTCA AGCGTCTCATTGTAAAGGTTGGAACAGCTGTTGTTACTCGAAGTGATGGGAGATTAGCACTTGGCAGACTTGGAGCTCTC TGTGAGCAGCTTAAAGAACTAAACACTCAGGGGTATGAAGTCATATTGGTGACTTCAGGTGCTGTTGGTCTTGGCAGGCA AAGACTTAGATATCGCAGATTGGCCAATAGCAGTTTTTCTGATCTTCAAAAGCCACAAGGTGAGCTTGATGGAAAAGCAT GTGCGGCTGTTGGGCAGAGTAGTCTCATGGCTCTCTATGATACTATGTTCAGCCAGCTGGATGTGACTTCTTCCCAACTT CTTGTGAATGATGGGTTCTTCAAGGATTCGGGTTTCAGAAAACAACTTTCAGACACAGTGCACTCATTATTAGATTTAAG AGTTATCCCCATTTTCAATGAAAATGATGCTGTTAGCACTAGGAAGGCACCATATGAGGATTCCACTGGTATTTTCTGGG ACAATGATAGTTTGGCGGGTCTGTTAGCTCTTGAACTCAAAGCTGACCTGCTTGTCTTATTGAGTGATGTTGAGGGCCTA TATAGTGGTCCTCCAACTGACCCCAACTCAAAGTTAATCCATACATATATCAAAGAGAAACATCAAGGAGAAATCACTTT TGGAGACAAGTCAAGATTGGGCAGAGGGGGCATGACTGCTAAAGTTAATGCTGCTGTTTGCGCTGCTCATGCCGGCATCC CAGTGATCATAACCAGTGGGTATGCTACAGACAACATTATACGAGTCCTTCAAGGGGAAAGAATTGGTACTGTATTTCAT AAAGATGCACATTTGTGGACCAACATAAAGGAAGTCAGTGCACATGAAATGGCAGTTGCAGCACGTGATGGTTCTAGACG ACTTCAGGCTATAAAATCTGAAGAAAGGAGTAAAATATTGCTAGCAATTGCTGATGCATTGGAGAAAAATGTTGGTATGA TAAGGCTTGAGAATGAGGCTGATGTTGCTGATGCTAAGGCAGCTGGATACGAAAAGTCTCTGATTTCACGTTTAACCCTG AAGCCTGAGAAGATCAGGAGTCTTGCAAAGTCTGTGCGCATACTGGCAGATATGGAAGAACCAATTGGTCAGATTTTAAA GAAAACTGAGCTAGCAGATAAGCTCATCCTGGAGAAAATATCGAGTCCTTTGGGAGTCCTTCTGGTCATATTTGAGTCTC GACCTGATGCGCTGGTTCAGATAGCTGCATTGGCAATTCGAAGTGGTAATGGTTTATTGCTTAAAGGAGGAAAGGAAGCC CGGCGATCAAATGCGGTCTTACACAAGGTCATTACTTCTGCTATGCCAGAGACTGTGGGTGACAAACTTATTGGGCTTGT GACTTCAAGAGAAGAAATTCCAGATCTACTGAAGCTTGATGATGTGATAGATCTTGTGGTCCCTAGAGGCAGTAATAAGC TTGTTTCTCAAATCAAGGAATCAACAAGAATTCCTGTTCTTGGTCATGCTGATGGAATTTGTCATGTATATGTTGACAAG TCTGCTAACATTGATATGGCAAAACAGATAGTTAGGGATGCAAAGACTGATTATCCCGCAGCCTGCAATGCAATGGAAAC TCTTCTTGTACACAAGGATCTGTCATGTAATGGTGGACTTAATGAGCTCATCCTTGAACTCCAACGTGAAGGTGTTCAAC TCTTTGGTGGACCAAAAGCCAGTGCCTTGCTAAATATTTCTGAAACGAGCTCTTTTCATCATGAGTATAGCGCTCTTGCT TGCACAGTTGAAATTGTAGAAGATGTGTTTGCTGCCATTGACCACATATATAACCATGGAAGTGCTCATACTGAGTGCAT TATTACAGAAGACTCTGAAGTGGCTGAGACTTTCATAAGACAAGTTGACAGTGCTGCTGTATTCCACAATGCAAGTACAA GGTTTTGTGATGGAGCACGCTTTGGGCTTGGTGCAGAGGTTGGAATAAGTACAAGTCGAATTCACGCTCGAGGTCCTGTA GGAGTTGAAGGGTTGTTGACAAACAGATGGATACTGAGAGGGAGTGGGCACGTAGTAGACGGTGATCGAGAGGTCAAGTA TACTCACAAAGAACTGCCACTAAAAGCATGA 

Protein sequence (LotjaGi3g1v0230400.3) extracted from Lotus japonicus Gifu v1.2 Proteins.

MELPLQNGLAKFISTKISSELPLSNGTIPPTNPLFEAVHSANMDPSRAFLGKVKRLIVKVGTAVVTRSDGRLALGRLGAL CEQLKELNTQGYEVILVTSGAVGLGRQRLRYRRLANSSFSDLQKPQGELDGKACAAVGQSSLMALYDTMFSQLDVTSSQL LVNDGFFKDSGFRKQLSDTVHSLLDLRVIPIFNENDAVSTRKAPYEDSTGIFWDNDSLAGLLALELKADLLVLLSDVEGL YSGPPTDPNSKLIHTYIKEKHQGEITFGDKSRLGRGGMTAKVNAAVCAAHAGIPVIITSGYATDNIIRVLQGERIGTVFH KDAHLWTNIKEVSAHEMAVAARDGSRRLQAIKSEERSKILLAIADALEKNVGMIRLENEADVADAKAAGYEKSLISRLTL KPEKIRSLAKSVRILADMEEPIGQILKKTELADKLILEKISSPLGVLLVIFESRPDALVQIAALAIRSGNGLLLKGGKEA RRSNAVLHKVITSAMPETVGDKLIGLVTSREEIPDLLKLDDVIDLVVPRGSNKLVSQIKESTRIPVLGHADGICHVYVDK SANIDMAKQIVRDAKTDYPAACNAMETLLVHKDLSCNGGLNELILELQREGVQLFGGPKASALLNISETSSFHHEYSALA CTVEIVEDVFAAIDHIYNHGSAHTECIITEDSEVAETFIRQVDSAAVFHNASTRFCDGARFGLGAEVGISTSRIHARGPV GVEGLLTNRWILRGSGHVVDGDREVKYTHKELPLKA 

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
PIRSF 9 756 748 0.0
PANTHER 43 756 714 0.0
PANTHER 43 756 714 0.0
Gene3D 44 326 283 1.1E-84
CDD 46 320 275 1.34671E-155
TIGRFAM 47 755 709 0.0
SUPERFAMILY 54 319 266 8.64E-54
Hamap 54 323 270 29.131
TIGRFAM 54 336 283 4.3E-60
Pfam 54 299 246 1.2E-35
PRINTS 91 105 15 1.4E-57
PRINTS 135 163 29 1.4E-57
PRINTS 175 196 22 1.4E-57
PRINTS 214 241 28 1.4E-57
ProSitePatterns 271 288 18 -
PRINTS 273 293 21 1.4E-57
Pfam 330 594 265 9.9E-8
Hamap 333 739 407 33.822
SUPERFAMILY 335 738 404 6.03E-94
CDD 336 735 400 0.0
Gene3D 341 736 396 1.9E-153
TIGRFAM 341 728 388 1.2E-137
Coils 373 393 21 -
Gene3D 551 697 147 1.9E-153
ProSitePatterns 646 668 23 -

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 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.
Molecular function Glutamate 5-kinase activity Catalysis of the reaction: L-glutamate + ATP = L-glutamyl 5-phosphate + ADP + H(+).
Molecular function Glutamate-5-semialdehyde dehydrogenase activity Catalysis of the reaction: L-glutamate 5-semialdehyde + NADP(+) + phosphate = L-glutamyl 5-phosphate + H(+) + NADPH.
Cellular component Cytoplasm All of the contents of a cell excluding the plasma membrane and nucleus, but including other subcellular structures.
Biological process Proline biosynthetic process The chemical reactions and pathways resulting in the formation of proline (pyrrolidine-2-carboxylic acid), a chiral, cyclic, nonessential alpha-amino acid found in peptide linkage in proteins.
Molecular function Oxidoreductase activity Catalysis of an oxidation-reduction (redox) reaction, a reversible chemical reaction in which the oxidation state of an atom or atoms within a molecule is altered. One substrate acts as a hydrogen or electron donor and becomes oxidized, while the other acts as hydrogen or electron acceptor and becomes reduced.
Molecular function Oxidoreductase activity, acting on the aldehyde or oxo group of donors, NAD or NADP as acceptor Catalysis of an oxidation-reduction (redox) reaction in which an aldehyde or ketone (oxo) group acts as a hydrogen or electron donor and reduces NAD or NADP.
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 LotjaGi3g1v0230400.3, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.

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