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LotjaGi1g1v0224700.5

Overview

Field Value
Gene ID LotjaGi1g1v0224700
Transcript ID LotjaGi1g1v0224700.5
Related isoforms 11
Lotus japonicus genome version Gifu v1.2
Description Glutamate synthase, putative; TAIR: AT5G53460.1 NADH-dependent glutamate synthase 1; Swiss-Prot: sp|Q03460|GLSN_MEDSA Glutamate synthase [NADH], amyloplastic; TrEMBL-Plants: tr|A0A0S3RN10|A0A0S3RN10_PHAAN Uncharacterized protein; Found in the gene: LotjaGi1g1v0224700
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr1:51351950..51362524) extracted from Lotus japonicus Gifu genome v1.2.

GTGCAGGTTACTGATGCGTTGGAGATGTTGGTGCGCATGACGCACAGAGGAGCTTGCGGTTGTGAAACCAATACTGGAGA TGGTGCAGGCATCCTTGTTGCTCTGCCTCATGCGTTTTTCAAAGAGGCACGTTCTTTGTTTTTTTAATATATATATATAT ATATATATATATATATATATATATATATATATATTTGCAAATATCTGAGAACATGTGGAATTTTGAAAATATGTGAGATT TCAGTTTTATTTTTGATTTTTTGGCTATGTACTGATTAATTTGTTTATAGAGTATTTTTTAAATAGAACCTATGAAAGTG TATTTTGGCCCCCAATCAAGTTATAGCTGTTTATTTTTTATTTTTTTTACATCAGAGAAATAAATTTGCACCCGATAGGA ATCGATCCCTAGACCTATCCTACCCAACCTATATGTCCCTAGCTCTTACCACAGAATAGTTATACCTGTTTATACTTTCT CACAAATCATTTTCTGTCGTTTCTTTCTTCCTTTTCTTGCTGATGGCTGCCTTGTTTTTCTGTTTAAAATCATTTATGTT CTTAAATATATTATTATTATTTTTATAGTTGTTTTCCCCTCTTTATTTTTCTGATACCTGTTTATATATTCTCTTTTTAA AGGGTTTTTATTTGAGATTAATCACTGCATATGGATAGCCTAAATGGTACTTGATGGTTTAAAATTTCATAAGTTCAGTG TTCAAATCCTTCAATTCCTACTGGTATCTAGATACGCAACAAAAAAGAATTTTTCTTTTTCAGTGCAATATAAGTACTAA GTAGTTAATAATGCTAAATTGCAATAATTGAAGTTTTGATTGACTACTTTGTCGCCATAATCAGCAAAAACCTTTGATTT ATTAGGACTCGGCTTTGTATCTTTCACCTGTTCTATTGAAAGAGGTTTGATGATTATTTATAATGGGTTTCCGTTTTACA GGTTGTGGATTTTGAGCTTCCTCCCCATGGACAATATGCTGTTGGCATGTTTTTCTTGCCCAAATCTGATAACCGTAGGA AGGAAAGCAAAAATATATTTAGAAAGGTAAATCAAAGTGTGAAGTTTCTTTGTCTTCGTTTCAAATTTGATGTCATGCAT AATGGTTTTTTTCAGTTCAACAAAGATTCACTTTAGCACACAGTACATTTTTTCTGCCATGTAAATTGTAATAATGCTGA AGCCCCCGAAAGTTGTCCACTGCTGTTTTGTATTATGTTCCTTTGCTATTACCATGATGGTGGTCTTATGTTTTACTGCT TTTGCTTTAAGGTTGCTGAATCTATGGGGCTTTCAATTCTTGGTTGGCGTTCTGTGCGCACAGACAACACAGGATTGGGC AAATCAGCCCTTCAAACTGAACCAGTGATCGAGCAGGTGTTCCTTACTGCAAGTGGTAAATCAAAAGTTGATCTGGAAAG ACAGGTACTTTTTATCGGTGGCAAGACTTTTGATTAAAATAATCTTAGCAAGTGAACATATATTCAACTGGATTTCTTTT TGAAGAAAAAGATTAACTAATAAATGCTTAGACATAGTATCCGGTGAGGCTTGAATTTATTGTGCAAGTGGGAGGATATA AAACAATTTGATTCAGGTCATATTGCATCATTGAATGATTAATTTGAAGTGAGAATTGAGTAGTACTTGGATTTTTCTTT GCAGATGTACATATTAAGGAAGCTGAGCATGGCTGCTATTACATCTGCGTTAAACCTGCAAAATGACGGCATTGCAGATT TTTATATCTGTTCACTTTCATCAAGGTGTGTTGTCATAAGGCAATCTCATTTTCTTGAGAAGTAAATTATGCTTACAGCC ACACTTATCTAATCAATTTTGAATTTCTGATGATCCTCTGAATTTCTACAGGACTGTCGTTTACAAAGGTCAGCTAACAC CGGCTCAGTTGAGGGAATATTATTATGCAGACCTTGGCAATGAAAGGTTTACGAGCTACATGGCCCTGGTAAATATATTA CCCATTAACCTATCTTCTTTCTCCACTAACTCTATACTCCAACAAACAGCATAGGAACAACCAGTAACTGAAGAGATGCA AGGTTGAGGAATGACTTCTGAGGCATTGAGGTTTGAATGATCTCTTAAGTTCTTCCGCTTCCTTGATTACTGTTTGAATT TGGATGCTGGATTGGATGCAATGGTTGAGTTGGTAAGAAAGTTCATATCAAGATAATCATGTTTGCAGAAATTTCTGCTG ATACTTTCTGTCAGTTACTTGGTCTGGAGGACTATTTCTTCAAGGTGGTGGAGGGAAAAATCATGCACTTCACTATATGT TTATATTGAATTGCCTGGAAGAAAACCACATTTATGCATTCTACATTGGTTTATGTACTGGTATAAGAATTCGACCATGA AGACTCACAGTTTGGTGTGCATATCTGCAGATACATTCACGATTTTCTACGAATACCTTTCCTAGCTGGGATCGTGCTCA ACCTATGCGTGTATTGGGCCACAATGGAGAAATTAATACACTCAGGGGCAATGTTAACTGGTATGTCTTGTATAGTTTTT GCCTTACTGTAGTTTAGTAGGTTGACCTACCTAGAAGAATGAGTTAACTTAATTGCTGCTAAAATGGATAAATCAGATAG TAAACATTGTTTGAGTTATGAATTATTGCCACCTTGCCCTCTCAAAAAAAGTTTGTTCTAATGTGCAATTAGCATAATAC TAGTTGATTATGAGTGGGTATAACAGTGTTGTGTGTTGTGCCGGATTCACCCACCGCATTTTGATTGATCTATGGCAGAA TGTATCGGCTAAATCTATTAATTTTGTAGGATGAAGGCACGTGAGGGCTTATTGAAATGCAAGGAGCTTGGCTTATCAGA GAACGAGTTAAAGAAGCTTTTACCGATTGTGGATGCGAATTCTTCAGATTCAGGTGAAATTTTATCTGAATCTTTTTTAT TAGCTTGCAAAACTGTGGTCATTTACTAAAATCCTAATGATATTTTCTTTACCAGGAGCTTTTGATGGCGTGCTCGAGTT TTTGGTTCATTCTGGAAAAAGTCTTCCTGAAGCTGTTATGATGATGATTCCTGAAGCATGGCAAAAGGACAAGAACATGG ATCCCCAGCGTAAAGCATTTTACGAATACTATTCGGCTCTCATGGAGCCTTGGGATGGACCAGCTCTTATATCATGTGTG TTTTCTTGGACTTTGACTCAATTACATGTTTATGTCCCGTTAATATTGGCTTTTTGATTTGGTACTAATATATTTTAATA TCATTACAGTTACCGACGGCCACTATCTTGGAGCTACATTGGACAGGAATGGATTGCGACCGGGCCGCTTCTATGTCACC CATAGTGGACGAGTAATAATGGCAAGTGAAGTTGGGGTTGTAGACATTCCTCCAGAAGACGTACGTAGGAAAGGAAGATT AAATCCTGGCATGATGCTTCTGGTGGATTTTGAGAAGCATATAGTTGTAAATGATGATGCCTTAAAGGAACAATATTCAT TGGAAAGACCCTATGGGGATTGGCTCAAAAAGCAAAAGATTGATCTCAAAGACATAGTTGACTCAGTTCATGAGTCTGAA AGAGTGCCCCCAACCATAACAGGAGTGGCTCCAGTAAGTATACATTCAAAGCAATATGAACATCTCATAAATTTCTTGCA GGCAAGTCTAATTATTGAATCTTCCATGAACTACAGCTATCGTGTGATGATGTGGATATGGAAAATATGGGAATTCACGG TTTACTAGCTCCATTGAAAGTTTTTGGGTATGTAACTAACATCACTCCTGAATATTTCCTCCATTACTCCTGAATATTTC CTCCATTATATCCACTTTGTTTACAAAGGAAGTGTTTTTTATGTTCTCTACTCATGTATGATGCAGATATACAGTTGAAT CATTGGAAATGCTGTTACTTCCTATGGCAAAAGATGGGGTAGAAGCCCTTGGGTCAATGGGAAATGACACTCCATTAGCT GTCATGTCTAATAGAGAAAAACTTTCTTTTGAGTATTTCAAGCAAATGTTTGCTCAAGTTACAAACCCTCCTATTGATCC CATCCGAGAGAAAATCGTCACCTCTATGGAATGTATGGTCGGTCCAGAAGGTGATCTCACAGAAACCACTGAGGAACAGT GCCACCGCCTTTCACTAAAAGGTCCCCTCTTATCCACTGAACAAATGGAGGCCATTAAAAAAATGGATTATAGGGGATGG CGGAGCAAAGTTATAGACATAACTTACTCAAAGGAACGCGGTAAGAGAGGGTTGGAGGAAGCCTTGGACAGGATATGTGC AGAAGCACACGGTGCAATTAAAGAAGGCTACACCACCCTTGTGCTTTCTGATAGAGGTATTATACTGTTACCTTTGTGTT GCATACGGATATTACTTTATAGTCAAGTACATCTAATTTTATTTGAATTTGGAATTGAATTTGTAGCATTCTCAAGGAAA CGTGTTGCTGTGAGCTCCCTCCTGGCTGTTGGTGCTGTCCATCAACATCTTGTGAAAACACTTGAGCGCACTAGAGTTGC CTTGATGATTGAATCTGCTGAGCCGCGTGAAGTGCACCATTTCTGCACTCTTGTTGGTTTTGGTGCTGATGCTATATGCC CATATTTGTCTATAGAGGCAATTTGGCGACTGCAGGTTGACGGAAAGATCCCACCAAAAGCAAATGGTGTATTCCACTCA AAAGATGAGTTGGTTAAGAAATATTTCAAAGCAAGTCACTATGGAATGATGAAGGTTCTTGCTAAGATGGGAATATCAAC TTTAGCCTCGTACAAAGGTGCTCAGATTTTTGAAGCTCTGGGTCTTTCATCAGAAGTGATTGATAAGTGCTTTGCTGGAA CTCCAAGTCGAGTTGAGGGCGCAACATTTGAGATGCTCTCTTCTGACGCTCTTCAACTGCATGAGTTGGCTTTTCCTTCA CGGACTTTCTCTCCTGGAAGTGCAGAAGCTGTAGCATTGCCAAATCCCGGGGATTATCATTGGAGAAAAGGTGGTGAAGT TCACCTGAACGATCCACTTGCAATAGCCAAGCTTCAAGAGGCTGCTAGAACTAATAGTGTAGATGCATATAAACAGTATT CCAAGATCATTCATGAACTAAATAAGGCTTGCAATTTGCGAGGGCTTTTGAAATTTAAAGAGACATCAGCTAAGATTTCT ATAGATGAAGTTGAACCTGCTAGTGAAATAGTTAAACGGTTTTGCACCGGGGCCATGAGTTATGGGTCTATATCACTGGA GGCTCACTCAACTTTAGCATTGGCTATGAATAAAATTGGAGGAAAATCCAACACAGGTTTGTCAATCTTACTTTAAGAAA TATTAAATGGCAGATTTTTTCTTTTCCGTCTCAAAGGACACAAAGGTCTGACCTTTTACCCAACATCAATTTCTGACAAA GCATCTTTTCAGCATAATTTTTTCTAGAGAAATTTTGTGGATAACTTGTATATTTAATATCTGTTTCTACTAGATAAAGA TTAGTCTCCTCAATTTCTCTAATTTTCTGATGATTTTTTTTTTACATATTTGCTGTAGGTGAGGGAGGTGAGCAACCATC TCGCATGGAGCCTCTTGCTGATGGCTCTAGGAATCCCAAAAGGAGTGCCATCAAACAGGTCGCGAGTGGGAGATTTGGAG TTTCAAGTTACTACCTTACGAATGCTGATGAGCTGCAGATAAAGATGGCTCAGGTAATTGTTGAAATTTTCTGTTTTAAA TCAAGATTATTGTCTTCTTTTGAGTATTTTAAGAAAGTCATCAACTGGTGCACCTGCATTCCTTTTGGAATTAAGGTTCT GTTTATGAATTTATGTTCATGGCAGATGATGATGTGACCTCTAGGCACCTCTGCGTGCTCTTGCGTCTTTAATTGATACG TACATTAGACCTTTGGTGAGGTTAAATATAAGTATGGTTTTTCAGCTAATGTAGAGTCGTATTATCGTAACATTATAATT GTAATCCTCAGGGAGCAAAACCTGGTGAGGGAGGTGAACTTCCTGGACACAAGGTTGTAGGAGACATTGCTGTCACTAGG AATTCAACTGCTGGGGTAGGGCTTATCAGTCCACCTCCCCATCATGATATTTATTCAATTGAAGACCTTGCCCAGCTAAT TCATGATCTAAAGGTATTTTTGTATGTGATTATTATTATTTCTCTTTTTCTGGTCGAATATTCCTGAATTAGGTGTTGCT TCCTGTTTGGCCCCTTTTGTTAATTTGTAGAATGCCAACCCAGCTGCTCGAATTAGTGTGAAATTAGTATCTGAAGCTGG AGTGGGGATAATTGCTAGTGGAGTTGTTAAAGGTCATGCAGATCATGTCTTGATCTCAGGCCATGATGGAGGTACCGGGG CATCCAGATGGACTGGCATAAAGAATGCTGGGTTACCATGGGAACTCGGCCTGGCCGAGACCCACCAGACATTGGTTGCA AATGACCTACGTGGTAGAACGGTTCTCCAAACTGATGGGCAACTGAAAACCGGAAGAGATGTTGCGATTGCGGCTCTTCT TGGTGCGGAAGAGTTTGGCTTCAGTACTGCTCCACTCATTACTCTTGGCTGCATCATGATGCGGAAGTGCCACAAGAACA CCTGTCCTGTTGGCATTGCTACCCAAGATCCAGTACTTAGGGAGAAGTTTGCTGGAGAACCTGAGCATGTTATTAATTTC TTTTTTATGGTGGCTGAAGAGATGAGAGAAATAATGGCCCAGCTTGGGTTTAGAACAGTTAATGAGATGGTTGGCCATTC TGATATGCTTGAAGTTGATAAAGAAGTTGTTAAAAGCAATGAGAAACTAGAGAACATTGACCTCTCCCTATTGCTTAGAC CTGCAGCTGAACTGCGGCCAGAAGCCGCTCAATACTGTGTGCAAAAGCAAGATCACAGTTTGGACATGGCCTTGGATAAT CAGCTCATAAGTTTGTCAAGTGCTGCTTTGGAGAAGGGTCTCCCAGTATACATTGAAACACCAATCTATAACGTAAACCG TGCTGTGGGAACTATGCTTAGCCATGAGGTGACCAAGAGGTACCACTTAGCTGGTCTTCCAACTGACACCATCCACATCA AATTTAATGGTAGCGCGGGCCAGAGCTTTGGTGCATTCCTCTGTCCTGGTATTACTTTGGAACTAGAAGGTGATAGCAAT GACTATGTTGGTAAAGGATTGTCCGGTGGAAAGGTTGTAGTATATCCGCCAAAAGGAAGCAATTTTGACCCTAAGGAGAA CATTGTGATTGGCAATGTGGCACTGTATGGGGCAACACGTGGTGAAGCATATTTCAACGGGATGGCAGCAGAAAGATTTT GTGTGCGGAATTCTGGGGCTAAGGCTGTTGTGGAAGGTGTTGGTGATCATGGATGTGAGTACATGACTGGCGGGACTGTT GTTGTGCTTGGGAAAACTGGTAGAAATTTTGCTGCTGGTATGAGTGGCGGGATTGCTTATGTTCTTAATGCGGATGGAAA ATTCCAATCTCGATGCAACCTGGAGCTCGTAGATCTGGATAAGGTTGAAGAGGAGGAGGACATTGTTACTCTCAAAATGT TGATACAGCAACATCAACGACACACAAATAGTCTGCTTGCCAAAGAAGTGCTTGATAATTTTGGGAATCTTCTTCCTAAA TTTGTCAAGGTGATCCCGAGGGAGTATAAACGTGTTCTTGCAAGTATGAAGTCTGAGGAAGCCTCCAAAGATGCAGTGGA GCGCACTGCTAAAGATGCAGAAGAAGAAGATGATGAAGCACAAGCAGTGGAGAAAGATGCTTTTGAGGAGCTTAAGAAAT TGGCAACTGCATCATTGAAAGAGAAACAGAGTGAGGTAATTTTTATTCTTTTACTTGTACGTTTGATGTTCTGTTTACTT GTTTGATGTTCTGTTTTCTTAATGCTTATACGATAGGAACATGCATTGAAGATTTAAGTGAAGTAACTTGAGAAATTTAA GTAAATTTTGACCTGGCTATGTGTGAATATCTGCAGGCTGAATCACCCAAGAGGCCAAGTCAAGTAACTGAAGCCATTAA ACATAGAGGTTTCGTGGCTTATGAGCGTGAGGGTGTTCAGTATAGGGATCCGAATGTGCGCATGAACGATTGGAAGGAAG TGATGGAGGAGACAAAGCCTGGTCCACTTCTGAAAACACAGTCAGCCCGTTGCATGGACTGTGGAACTCCTTTTTGTCAT CAGGTCTGCATTACCCGCATCCAAGTTTTCATTTTTAGCTTAGAACATGCATCTTTCCTTCTGATGTTATTAGTACCCTT GTCTAAGCTAATGATATTTGCAACAAATTTCAGGAAAATTCTGGATGTCCCCTAGGAAATAAAATACCAGAATTCAATGA GTTAGTGTACCAAAATAGGTGGCGCGAAGCATTAGATAGGCTTCTTGAAACAAACAACTTTCCAGAGTTTACTGGTCGGG TGTGCCCAGCTCCTTGTGAAGGTTCCTGTGTCCTTGGTATTATTGAGAATCCTGTATCTATTAAAAGCATTGAATGTGCA ATCATAGACAAGGCTTTTGAGGAGGGTTGGATGGTGCCACGACCTCCAGCCAAAAGAACAGGGTATGCTATTTTATTTCT TATGAACATCTTGCTAGTTTCTCCTAGAACTTGGATGTATTATATAAAACAATTCATGTGTCCTCGTGGATGACATGGTT TCAGAGTCTCTTTAACCAAGTAGATGAACAGTGTTATCAATTAATATATATCTTTACTAATGCAGGAAAAGAGTAGCTGT CGTTGGAAGTGGACCAGCTGGCTTGGCAGCTGCTGATCAGCTGAACAAAATGGGTCACACAGTAACAGTATTTGAAAGAG CGGATCGGATTGGAGGGCTTATGATGTATGGGGTTCCCAACATGAAAACTGACAAAGTGAATATAGTTCAAAGGCGAGTC AATCTTATGGCTGAGGAAGGAATAGATTTTGTGGTAAATGCTAATGTTGGACTCGATCCTATATATTCTCTTGATCGGCT TCGAGAGGAAAATGATGCAATTGTGTTGTCTGTAGGAGCCACAAAACCAAGGTGAGACCCATAGACATGTTGATTAGTTC AATTTCTTTCTGCAACAATAAAAAGAAATGATAATTAGAAGGAAAGATGCTTAAAATGAAGGTATTTTTTCATGCAGGGA TCTTCCAGTACCTGGAAGGGAGCTGTCAGGAGTTCATTTTGCAATGGAGTTTCTCCATGCAAATACTAAAAGCTTGCTTG ATAGCAATCTCCAGGATGGCAACTATATTTCTGCCAAGGGCAAGAAAGTTGTTGTCATTGGTGGGGGTGACACTGGCACT GATTGCATAGGAACATCCATTCGCCACGGATGTAGCAACATTGTAAATCTTGAACTTCTCCCTCAGCCGCCACAAACTAG GGCTCCAGGCAACCCATGGCCCCAGGTTAGATTTGAATCATTGGTTTTAAAAATGCCTAGTTATGTATCTTCTTTGCAAT GGGCCTGTCATTACTAGCAATGGCAAAATAAGTATCAAACATTTTTTACTCATAGTATTTGGATTATGACTGAGTTTAAC TACTGATTTTTCCGGGATGATGCAGTGGCCTCGTGTATTCCGTGTTGATTACGGGCACCAAGAAGCTGCAGCTAAGTTTG GCAATGATCCAAGAACTTATGAGGTATTGACTAAGCGGTTTGTGGGAGATGAGAATGGAGCTGTGAAAGGGCTTGAAGTG GTACATGTTCGCTGGGAGAAGGATGAAATGGGAAAGTTTCAGTTTAAGGAAATTGAGGGCAGTGAGGAGATTATTGAGGC TGACCTAGTTTTCCTTGCCATGGGATTCCTAGGCCCTGAGTCTGTAAGTATTCTTATTAGCTTCATTTCTTATGTTAAAA GGCCAAAAAGTATGTAGTCTCAATTTTTATGTTGTCTCATGTTAGTTCTCCACTTGTGCTTTTTTATTACTTTTTTAGGT TTTATAAATGTAATGGACAATAGGTTATTTTATGAACATATTTAAATTTTAATGGACTGAACTTTCAATTGTTTGTTAGA TGAAATACAAACAGAAAAATGGGTTGTTGCTGTTACAGTGCTTGTAATTAAACTTTATAGTAATGAATTTCAGTGTGCGG AACACTTGAACTCGATAGTAATCTTCTACCAATACCAAATTCCGATTGATAACACATGATCCTCATAGCCATAACTGATA ATGCTTTGGTTTCTTCTGCCTTACCAGACAATTGCAGAGAAGTTGGGTGTGGAGCGAGACAACAGGTCAAACTTCAAGGC TGATTACGGTCGCTTCTCAACCAGTGTCAATGGTGTGTTTGCCGCTGGAGACTGTCGCCGGGGTCAGTCCCTTGTGGTGT GGGCTATTTCAGAGGGACGGCAAGCTGCAGCACAAGTTGACAACTATCTCACCAAAGAGGACCGAGAGCACGGTATTGAT GCGGAGCATGTCAAGAGGCAAGAGGGCCTCAATAAGAAGCACCAAGGCAGCAGCGGCAAACACACAGTGATGACTTAGGA GGATGCACAGAATAA 

CDS sequence (LotjaGi1g1v0224700.5) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGTTGGTGCGCATGACGCACAGAGGAGCTTGCGGTTGTGAAACCAATACTGGAGATGGTGCAGGCATCCTTGTTGCTCT GCCTCATGCGTTTTTCAAAGAGGTTGTGGATTTTGAGCTTCCTCCCCATGGACAATATGCTGTTGGCATGTTTTTCTTGC CCAAATCTGATAACCGTAGGAAGGAAAGCAAAAATATATTTAGAAAGGTTGCTGAATCTATGGGGCTTTCAATTCTTGGT TGGCGTTCTGTGCGCACAGACAACACAGGATTGGGCAAATCAGCCCTTCAAACTGAACCAGTGATCGAGCAGGTGTTCCT TACTGCAAGTGGTAAATCAAAAGTTGATCTGGAAAGACAGATGTACATATTAAGGAAGCTGAGCATGGCTGCTATTACAT CTGCGTTAAACCTGCAAAATGACGGCATTGCAGATTTTTATATCTGTTCACTTTCATCAAGGACTGTCGTTTACAAAGGT CAGCTAACACCGGCTCAGTTGAGGGAATATTATTATGCAGACCTTGGCAATGAAAGGTTTACGAGCTACATGGCCCTGAT ACATTCACGATTTTCTACGAATACCTTTCCTAGCTGGGATCGTGCTCAACCTATGCGTGTATTGGGCCACAATGGAGAAA TTAATACACTCAGGGGCAATGTTAACTGGATGAAGGCACGTGAGGGCTTATTGAAATGCAAGGAGCTTGGCTTATCAGAG AACGAGTTAAAGAAGCTTTTACCGATTGTGGATGCGAATTCTTCAGATTCAGGAGCTTTTGATGGCGTGCTCGAGTTTTT GGTTCATTCTGGAAAAAGTCTTCCTGAAGCTGTTATGATGATGATTCCTGAAGCATGGCAAAAGGACAAGAACATGGATC CCCAGCGTAAAGCATTTTACGAATACTATTCGGCTCTCATGGAGCCTTGGGATGGACCAGCTCTTATATCATTTACCGAC GGCCACTATCTTGGAGCTACATTGGACAGGAATGGATTGCGACCGGGCCGCTTCTATGTCACCCATAGTGGACGAGTAAT AATGGCAAGTGAAGTTGGGGTTGTAGACATTCCTCCAGAAGACGTACGTAGGAAAGGAAGATTAAATCCTGGCATGATGC TTCTGGTGGATTTTGAGAAGCATATAGTTGTAAATGATGATGCCTTAAAGGAACAATATTCATTGGAAAGACCCTATGGG GATTGGCTCAAAAAGCAAAAGATTGATCTCAAAGACATAGTTGACTCAGTTCATGAGTCTGAAAGAGTGCCCCCAACCAT AACAGGAGTGGCTCCACTATCGTGTGATGATGTGGATATGGAAAATATGGGAATTCACGGTTTACTAGCTCCATTGAAAG TTTTTGGATATACAGTTGAATCATTGGAAATGCTGTTACTTCCTATGGCAAAAGATGGGGTAGAAGCCCTTGGGTCAATG GGAAATGACACTCCATTAGCTGTCATGTCTAATAGAGAAAAACTTTCTTTTGAGTATTTCAAGCAAATGTTTGCTCAAGT TACAAACCCTCCTATTGATCCCATCCGAGAGAAAATCGTCACCTCTATGGAATGTATGGTCGGTCCAGAAGGTGATCTCA CAGAAACCACTGAGGAACAGTGCCACCGCCTTTCACTAAAAGGTCCCCTCTTATCCACTGAACAAATGGAGGCCATTAAA AAAATGGATTATAGGGGATGGCGGAGCAAAGTTATAGACATAACTTACTCAAAGGAACGCGGTAAGAGAGGGTTGGAGGA AGCCTTGGACAGGATATGTGCAGAAGCACACGGTGCAATTAAAGAAGGCTACACCACCCTTGTGCTTTCTGATAGAGCAT TCTCAAGGAAACGTGTTGCTGTGAGCTCCCTCCTGGCTGTTGGTGCTGTCCATCAACATCTTGTGAAAACACTTGAGCGC ACTAGAGTTGCCTTGATGATTGAATCTGCTGAGCCGCGTGAAGTGCACCATTTCTGCACTCTTGTTGGTTTTGGTGCTGA TGCTATATGCCCATATTTGTCTATAGAGGCAATTTGGCGACTGCAGGTTGACGGAAAGATCCCACCAAAAGCAAATGGTG TATTCCACTCAAAAGATGAGTTGGTTAAGAAATATTTCAAAGCAAGTCACTATGGAATGATGAAGGTTCTTGCTAAGATG GGAATATCAACTTTAGCCTCGTACAAAGGTGCTCAGATTTTTGAAGCTCTGGGTCTTTCATCAGAAGTGATTGATAAGTG CTTTGCTGGAACTCCAAGTCGAGTTGAGGGCGCAACATTTGAGATGCTCTCTTCTGACGCTCTTCAACTGCATGAGTTGG CTTTTCCTTCACGGACTTTCTCTCCTGGAAGTGCAGAAGCTGTAGCATTGCCAAATCCCGGGGATTATCATTGGAGAAAA GGTGGTGAAGTTCACCTGAACGATCCACTTGCAATAGCCAAGCTTCAAGAGGCTGCTAGAACTAATAGTGTAGATGCATA TAAACAGTATTCCAAGATCATTCATGAACTAAATAAGGCTTGCAATTTGCGAGGGCTTTTGAAATTTAAAGAGACATCAG CTAAGATTTCTATAGATGAAGTTGAACCTGCTAGTGAAATAGTTAAACGGTTTTGCACCGGGGCCATGAGTTATGGGTCT ATATCACTGGAGGCTCACTCAACTTTAGCATTGGCTATGAATAAAATTGGAGGAAAATCCAACACAGGTGAGGGAGGTGA GCAACCATCTCGCATGGAGCCTCTTGCTGATGGCTCTAGGAATCCCAAAAGGAGTGCCATCAAACAGGTCGCGAGTGGGA GATTTGGAGTTTCAAGTTACTACCTTACGAATGCTGATGAGCTGCAGATAAAGATGGCTCAGGGAGCAAAACCTGGTGAG GGAGGTGAACTTCCTGGACACAAGGTTGTAGGAGACATTGCTGTCACTAGGAATTCAACTGCTGGGGTAGGGCTTATCAG TCCACCTCCCCATCATGATATTTATTCAATTGAAGACCTTGCCCAGCTAATTCATGATCTAAAGAATGCCAACCCAGCTG CTCGAATTAGTGTGAAATTAGTATCTGAAGCTGGAGTGGGGATAATTGCTAGTGGAGTTGTTAAAGGTCATGCAGATCAT GTCTTGATCTCAGGCCATGATGGAGGTACCGGGGCATCCAGATGGACTGGCATAAAGAATGCTGGGTTACCATGGGAACT CGGCCTGGCCGAGACCCACCAGACATTGGTTGCAAATGACCTACGTGGTAGAACGGTTCTCCAAACTGATGGGCAACTGA AAACCGGAAGAGATGTTGCGATTGCGGCTCTTCTTGGTGCGGAAGAGTTTGGCTTCAGTACTGCTCCACTCATTACTCTT GGCTGCATCATGATGCGGAAGTGCCACAAGAACACCTGTCCTGTTGGCATTGCTACCCAAGATCCAGTACTTAGGGAGAA GTTTGCTGGAGAACCTGAGCATGTTATTAATTTCTTTTTTATGGTGGCTGAAGAGATGAGAGAAATAATGGCCCAGCTTG GGTTTAGAACAGTTAATGAGATGGTTGGCCATTCTGATATGCTTGAAGTTGATAAAGAAGTTGTTAAAAGCAATGAGAAA CTAGAGAACATTGACCTCTCCCTATTGCTTAGACCTGCAGCTGAACTGCGGCCAGAAGCCGCTCAATACTGTGTGCAAAA GCAAGATCACAGTTTGGACATGGCCTTGGATAATCAGCTCATAAGTTTGTCAAGTGCTGCTTTGGAGAAGGGTCTCCCAG TATACATTGAAACACCAATCTATAACGTAAACCGTGCTGTGGGAACTATGCTTAGCCATGAGGTGACCAAGAGGTACCAC TTAGCTGGTCTTCCAACTGACACCATCCACATCAAATTTAATGGTAGCGCGGGCCAGAGCTTTGGTGCATTCCTCTGTCC TGGTATTACTTTGGAACTAGAAGGTGATAGCAATGACTATGTTGGTAAAGGATTGTCCGGTGGAAAGGTTGTAGTATATC CGCCAAAAGGAAGCAATTTTGACCCTAAGGAGAACATTGTGATTGGCAATGTGGCACTGTATGGGGCAACACGTGGTGAA GCATATTTCAACGGGATGGCAGCAGAAAGATTTTGTGTGCGGAATTCTGGGGCTAAGGCTGTTGTGGAAGGTGTTGGTGA TCATGGATGTGAGTACATGACTGGCGGGACTGTTGTTGTGCTTGGGAAAACTGGTAGAAATTTTGCTGCTGGTATGAGTG GCGGGATTGCTTATGTTCTTAATGCGGATGGAAAATTCCAATCTCGATGCAACCTGGAGCTCGTAGATCTGGATAAGGTT GAAGAGGAGGAGGACATTGTTACTCTCAAAATGTTGATACAGCAACATCAACGACACACAAATAGTCTGCTTGCCAAAGA AGTGCTTGATAATTTTGGGAATCTTCTTCCTAAATTTGTCAAGGTGATCCCGAGGGAGTATAAACGTGTTCTTGCAAGTA TGAAGTCTGAGGAAGCCTCCAAAGATGCAGTGGAGCGCACTGCTAAAGATGCAGAAGAAGAAGATGATGAAGCACAAGCA GTGGAGAAAGATGCTTTTGAGGAGCTTAAGAAATTGGCAACTGCATCATTGAAAGAGAAACAGAGTGAGGCTGAATCACC CAAGAGGCCAAGTCAAGTAACTGAAGCCATTAAACATAGAGGTTTCGTGGCTTATGAGCGTGAGGGTGTTCAGTATAGGG ATCCGAATGTGCGCATGAACGATTGGAAGGAAGTGATGGAGGAGACAAAGCCTGGTCCACTTCTGAAAACACAGTCAGCC CGTTGCATGGACTGTGGAACTCCTTTTTGTCATCAGGAAAATTCTGGATGTCCCCTAGGAAATAAAATACCAGAATTCAA TGAGTTAGTGTACCAAAATAGGTGGCGCGAAGCATTAGATAGGCTTCTTGAAACAAACAACTTTCCAGAGTTTACTGGTC GGGTGTGCCCAGCTCCTTGTGAAGGTTCCTGTGTCCTTGGTATTATTGAGAATCCTGTATCTATTAAAAGCATTGAATGT GCAATCATAGACAAGGCTTTTGAGGAGGGTTGGATGGTGCCACGACCTCCAGCCAAAAGAACAGGGAAAAGAGTAGCTGT CGTTGGAAGTGGACCAGCTGGCTTGGCAGCTGCTGATCAGCTGAACAAAATGGGTCACACAGTAACAGTATTTGAAAGAG CGGATCGGATTGGAGGGCTTATGATGTATGGGGTTCCCAACATGAAAACTGACAAAGTGAATATAGTTCAAAGGCGAGTC AATCTTATGGCTGAGGAAGGAATAGATTTTGTGGTAAATGCTAATGTTGGACTCGATCCTATATATTCTCTTGATCGGCT TCGAGAGGAAAATGATGCAATTGTGTTGTCTGTAGGAGCCACAAAACCAAGGGATCTTCCAGTACCTGGAAGGGAGCTGT CAGGAGTTCATTTTGCAATGGAGTTTCTCCATGCAAATACTAAAAGCTTGCTTGATAGCAATCTCCAGGATGGCAACTAT ATTTCTGCCAAGGGCAAGAAAGTTGTTGTCATTGGTGGGGGTGACACTGGCACTGATTGCATAGGAACATCCATTCGCCA CGGATGTAGCAACATTGTAAATCTTGAACTTCTCCCTCAGCCGCCACAAACTAGGGCTCCAGGCAACCCATGGCCCCAGT GGCCTCGTGTATTCCGTGTTGATTACGGGCACCAAGAAGCTGCAGCTAAGTTTGGCAATGATCCAAGAACTTATGAGGTA TTGACTAAGCGGTTTGTGGGAGATGAGAATGGAGCTGTGAAAGGGCTTGAAGTGGTACATGTTCGCTGGGAGAAGGATGA AATGGGAAAGTTTCAGTTTAAGGAAATTGAGGGCAGTGAGGAGATTATTGAGGCTGACCTAGTTTTCCTTGCCATGGGAT TCCTAGGCCCTGAGTCTACAATTGCAGAGAAGTTGGGTGTGGAGCGAGACAACAGGTCAAACTTCAAGGCTGATTACGGT CGCTTCTCAACCAGTGTCAATGGTGTGTTTGCCGCTGGAGACTGTCGCCGGGGTCAGTCCCTTGTGGTGTGGGCTATTTC AGAGGGACGGCAAGCTGCAGCACAAGTTGACAACTATCTCACCAAAGAGGACCGAGAGCACGGTATTGATGCGGAGCATG TCAAGAGGCAAGAGGGCCTCAATAAGAAGCACCAAGGCAGCAGCGGCAAACACACAGTGATGACTTAG 

Protein sequence (LotjaGi1g1v0224700.5) extracted from Lotus japonicus Gifu v1.2 Proteins.

MLVRMTHRGACGCETNTGDGAGILVALPHAFFKEVVDFELPPHGQYAVGMFFLPKSDNRRKESKNIFRKVAESMGLSILG WRSVRTDNTGLGKSALQTEPVIEQVFLTASGKSKVDLERQMYILRKLSMAAITSALNLQNDGIADFYICSLSSRTVVYKG QLTPAQLREYYYADLGNERFTSYMALIHSRFSTNTFPSWDRAQPMRVLGHNGEINTLRGNVNWMKAREGLLKCKELGLSE NELKKLLPIVDANSSDSGAFDGVLEFLVHSGKSLPEAVMMMIPEAWQKDKNMDPQRKAFYEYYSALMEPWDGPALISFTD GHYLGATLDRNGLRPGRFYVTHSGRVIMASEVGVVDIPPEDVRRKGRLNPGMMLLVDFEKHIVVNDDALKEQYSLERPYG DWLKKQKIDLKDIVDSVHESERVPPTITGVAPLSCDDVDMENMGIHGLLAPLKVFGYTVESLEMLLLPMAKDGVEALGSM GNDTPLAVMSNREKLSFEYFKQMFAQVTNPPIDPIREKIVTSMECMVGPEGDLTETTEEQCHRLSLKGPLLSTEQMEAIK KMDYRGWRSKVIDITYSKERGKRGLEEALDRICAEAHGAIKEGYTTLVLSDRAFSRKRVAVSSLLAVGAVHQHLVKTLER TRVALMIESAEPREVHHFCTLVGFGADAICPYLSIEAIWRLQVDGKIPPKANGVFHSKDELVKKYFKASHYGMMKVLAKM GISTLASYKGAQIFEALGLSSEVIDKCFAGTPSRVEGATFEMLSSDALQLHELAFPSRTFSPGSAEAVALPNPGDYHWRK GGEVHLNDPLAIAKLQEAARTNSVDAYKQYSKIIHELNKACNLRGLLKFKETSAKISIDEVEPASEIVKRFCTGAMSYGS ISLEAHSTLALAMNKIGGKSNTGEGGEQPSRMEPLADGSRNPKRSAIKQVASGRFGVSSYYLTNADELQIKMAQGAKPGE GGELPGHKVVGDIAVTRNSTAGVGLISPPPHHDIYSIEDLAQLIHDLKNANPAARISVKLVSEAGVGIIASGVVKGHADH VLISGHDGGTGASRWTGIKNAGLPWELGLAETHQTLVANDLRGRTVLQTDGQLKTGRDVAIAALLGAEEFGFSTAPLITL GCIMMRKCHKNTCPVGIATQDPVLREKFAGEPEHVINFFFMVAEEMREIMAQLGFRTVNEMVGHSDMLEVDKEVVKSNEK LENIDLSLLLRPAAELRPEAAQYCVQKQDHSLDMALDNQLISLSSAALEKGLPVYIETPIYNVNRAVGTMLSHEVTKRYH LAGLPTDTIHIKFNGSAGQSFGAFLCPGITLELEGDSNDYVGKGLSGGKVVVYPPKGSNFDPKENIVIGNVALYGATRGE AYFNGMAAERFCVRNSGAKAVVEGVGDHGCEYMTGGTVVVLGKTGRNFAAGMSGGIAYVLNADGKFQSRCNLELVDLDKV EEEEDIVTLKMLIQQHQRHTNSLLAKEVLDNFGNLLPKFVKVIPREYKRVLASMKSEEASKDAVERTAKDAEEEDDEAQA VEKDAFEELKKLATASLKEKQSEAESPKRPSQVTEAIKHRGFVAYEREGVQYRDPNVRMNDWKEVMEETKPGPLLKTQSA RCMDCGTPFCHQENSGCPLGNKIPEFNELVYQNRWREALDRLLETNNFPEFTGRVCPAPCEGSCVLGIIENPVSIKSIEC AIIDKAFEEGWMVPRPPAKRTGKRVAVVGSGPAGLAAADQLNKMGHTVTVFERADRIGGLMMYGVPNMKTDKVNIVQRRV NLMAEEGIDFVVNANVGLDPIYSLDRLREENDAIVLSVGATKPRDLPVPGRELSGVHFAMEFLHANTKSLLDSNLQDGNY ISAKGKKVVVIGGGDTGTDCIGTSIRHGCSNIVNLELLPQPPQTRAPGNPWPQWPRVFRVDYGHQEAAAKFGNDPRTYEV LTKRFVGDENGAVKGLEVVHVRWEKDEMGKFQFKEIEGSEEIIEADLVFLAMGFLGPESTIAEKLGVERDNRSNFKADYG RFSTSVNGVFAAGDCRRGQSLVVWAISEGRQAAAQVDNYLTKEDREHGIDAEHVKRQEGLNKKHQGSSGKHTVMT 

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 1 2066 2066 0.0
PANTHER 1 2048 2048 0.0
Pfam 1 402 402 1.6E-172
ProSiteProfiles 1 379 379 20.046
Gene3D 1 414 414 2.4E-181
SUPERFAMILY 1 405 405 1.64E-139
PANTHER 1 2048 2048 0.0
CDD 1 397 397 0.0
Gene3D 435 788 354 4.0E-138
SUPERFAMILY 447 1210 764 7.33E-251
Pfam 452 740 289 2.6E-112
Gene3D 789 1230 442 2.3E-200
Pfam 807 1176 370 2.9E-152
CDD 809 1188 380 4.11338E-168
MobiDBLite 899 922 24 -
SUPERFAMILY 1228 1492 265 4.58E-100
Gene3D 1231 1504 274 8.4E-116
CDD 1236 1485 250 1.49467E-151
Pfam 1259 1445 187 6.5E-87
Coils 1494 1524 31 -
MobiDBLite 1498 1520 23 -
SUPERFAMILY 1556 1713 158 2.88E-37
TIGRFAM 1558 2042 485 2.4E-227
Gene3D 1558 1702 145 8.5E-21
Pfam 1579 1690 112 2.9E-21
SUPERFAMILY 1700 2040 341 1.07E-61
Pfam 1703 2029 327 3.5E-25
Gene3D 1703 1836 134 8.0E-29
PRINTS 1704 1726 23 4.0E-23
PRINTS 1727 1740 14 4.0E-23
PRINTS 1770 1780 11 4.0E-23
Gene3D 1843 2060 218 9.4E-17
PRINTS 1848 1862 15 4.0E-23
MobiDBLite 2052 2075 24 -

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 Iron ion binding Interacting selectively and non-covalently with iron (Fe) ions.
Biological process Glutamate biosynthetic process The chemical reactions and pathways resulting in the formation of glutamate, the anion of 2-aminopentanedioic acid.
Biological process Nitrogen compound metabolic process The chemical reactions and pathways involving organic or inorganic compounds that contain nitrogen.
Molecular function FMN binding Interacting selectively and non-covalently with flavin mono nucleotide. Flavin mono nucleotide (FMN) is the coenzyme or the prosthetic group of various flavoprotein oxidoreductase enzymes.
Molecular function Glutamate synthase activity Catalysis of the formation of L-glutamine and 2-oxoglutarate from L-glutamate, using NADH, NADPH or ferredoxin as hydrogen acceptors.
Molecular function Glutamate synthase (NADH) activity Catalysis of the reaction: 2 L-glutamate + NAD(+) = 2-oxoglutarate + L-glutamine + H(+) + NADH.
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 CH-NH2 group of donors Catalysis of an oxidation-reduction (redox) reaction in which a CH-NH2 group acts as a hydrogen or electron donor and reduces a hydrogen or electron acceptor.
Molecular function Oxidoreductase activity, acting on the CH-NH2 group of donors, NAD or NADP as acceptor Catalysis of an oxidation-reduction (redox) reaction in which a CH-NH2 group acts as a hydrogen or electron donor and reduces NAD+ or NADP.
Molecular function Flavin adenine dinucleotide binding Interacting selectively and non-covalently with FAD, flavin-adenine dinucleotide, the coenzyme or the prosthetic group of various flavoprotein oxidoreductase enzymes, in either the oxidized form, FAD, or the reduced form, FADH2.
Molecular function Iron-sulfur cluster binding Interacting selectively and non-covalently with an iron-sulfur cluster, a combination of iron and sulfur atoms.
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 LotjaGi1g1v0224700.5, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.

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