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LotjaGi1g1v0050600.1

Overview

Field Value
Gene ID LotjaGi1g1v0050600
Transcript ID LotjaGi1g1v0050600.1
Related isoforms 5
Lotus japonicus genome version Gifu v1.2
Description Rho GTPase-activating protein; TAIR: AT5G19390.1 Rho GTPase activation protein (RhoGAP) with PH domain-containing protein; Swiss-Prot: sp|Q8RWQ4|RGAP7_ARATH Rho GTPase-activating protein 7; TrEMBL-Plants: tr|A0A1J7HR12|A0A1J7HR12_LUPAN Uncharacterized protein; Found in the gene: LotjaGi1g1v0050600
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr1:7221625..7235220) extracted from Lotus japonicus Gifu genome v1.2.

GACGTGTCACATTCTCATTGGTCAACCACCTGACAAGACTTAAACTTGACTGTTTCGGACCCTCATCTTCTCTCTCTACC CTTCTTTCTCTCTCTACCTTCCCAAGCCACTCACAGACTCCAGAAGTAGGTGAAAAGCAAACAACCCCTCAGATTTTTTA CATTACCATCTTCACCATAACCACTGTTGCTTCTTCCTCTTCCAAGTTCCAACCTAATTCCCTCAGCAACCGCGAGAAAA TCGCCCAGAAAGTGCGAGAAAATCAAGGTAGAAGGGGTTACCTACCCTTTTGTGGGGGTGAATCAAGTTGGGATCTTTGA GTCACGGGTGAATCATCAGATGTCACCATTGAGCGTGGAGCAGTGAAAGGTTGTTGCTTTTTGGTCAGATCTCGGTGATT TTTGTGGTGGGGTGGATCTCTCTGATGGGTTGACTGAATGAGGAACTGGGATTGGTTTTCTGTGGTTTGAATTTTGAAAT GTTGTGGGTTTTCTTCAATTCGTAAACTTGTGATGATATGGGGTTGAATTGAACTCAATGTTAGTGGTTCAGTGATAGTG TGATACTGTGTGTTGTATGTGTTTGTGGAAATGTCTGCTTCTTTGGCGGCTTTCGAGCGACCTCGACCTGTGGCATCCAA TACGGTATGTGTTCTTCTGGTGGGAATTAGTCAGATTCAATGATTGTTTGGATTTGTTTAAAAAAATTGGATTTTTAGCT AATGCTGATTACTTGTTAGTGAAAATTGGAGTTTGAGGGAAAAGTTGTGTTTTTTGGAGGAGATGGGTTATTGCATGAAC TGGGATGTATTTGGATTGATTAGTGTTTGCTAGTTTTGTTGAAGGAGGGGAGGAAGTTGAGTTGGCCTTACTGGTTTGTT CTCCTATGTTAGAGGTTGATGAGGAAGTGTGTGCAGACTGCAGAGTGTATTTAGCTTGTTCTAGTTGTAATTAGGATTGT TAATTGTACAGGAAGCAAAGCACCAGCTTAGTTTTGTTAGATTTTACCCTATGTGATTATTTGTTTTAGTTTCCTTTGGA TATTTGTTCGGAAATTCCAGAGCATGTCAGGATTAGTTTATGATGAAGTTTTGCATTTAGAATTTCGTGACAATGAAAGG GGTTTATGTGGGGATAGTAGCTGGGGTTTTGGAGGCTGTGATTTGCACCTTGCATTCATTTTTTCTATCTGCTTACCCTT TTGTCAAGTTTAGCATTGGGATTACCAATTTGGAGGATGAAATTATATGAATTGCAGATTGACGACGAGACAATGTAGAC TCATTTGCTGAACTGTGTTGCCGAAAAGTGGCTAAGCTAGTAAAATAATATAGGAGGATTGATACTTGATATGTCTGAAT AAGTGATACGGTTCTTGAATGATGACGATCTGTTTATCACCTTTTCTTAGATTTCTGGTGCTGTTGGGGCTTACTAAAGG AAAAAGCGTCTTTTTGTCTTTTTGTTTTATTTGTTGGATATGTATTTTGGACACAATTGTTTGATTGAATTTCAAGTTGA ACTTACCTTGTGGTTCTTAACATATGTTACTGTTTTGCAGGTTTTCAAAAGTGGCCCACTTTTCATATCTTCCAAAGGTT GGTATCCATATCCTCCCAAGTATTCTTGTGAGAGGATAAATGATTTTTTTTAAACTTTGGTTGATCCTGTTTTCTCTCAA ATGTATTTACTTTATCCAATAAATCGATGATATAGTAACTTATCTTTGTTTTATTGTTTTGAACTTTTGTAGGAATAGGC TGGAAGTCTTGGAAGAAGCGGTGGTTTATACTTACACGGACATCATTGGTTTTTTTCAAAAATGACCCTGTTAGTATCAC TCAGACCTTTCCCATTCTTGTTAAGATCTTTGCTTGGATATTTTCTGTGTTAATTTCTTCTTTTATTGTTTTGTATGTTT CAACTCTCTGATTAAGCAGATATGGTTATAGTCTAGGTATTATTTTGTACAAGAGCAGTGACATAGTGATTGATTAAGCT TACTTCTTATATGAACATCATTTATGGATATACTTTGTGGCGCTAATTTTTTTTTTTGAAAAATATCATTTAGTTATTGG AGATTAAGTTGTGACTGTAGACCTTAGATGATTGGATAATACTACAAAAAGAAAATTACTTAGCTGATGCTTTTCTTCGT TTACTCAAATATATGTGAGTTACTTTTGTCATATCTATGATTGTCTCCCCTTTGATTGGTCATGTAGAGTGCCCTTCCCC AGAGAGGTGGTGAAGTAAACTTGACTCTGGGGGGTATTGACTTGAACAATTCCGGGAGGTATGTTTGGCAACTTTACTTT TTGTATTTTTAAAATTTCATGATCTGTTTTCTAATTGTGAATTTTATTTTCCAGTGTTGTTGTTAGAGAAGACAAAAAGC TACTTACGGTATTATTTCCAGATGGACGTGATGGGCGAGCATTCACCCTTAAGGTGATTCATTTACTACTATATTTTTAA TCAGAACTCAGAAGGATTAGAATTAAGTTATCCCTACTTGTAAATTGTATTTTAATTGTTGGGTTGTGTGAATTCCCTTT ATTTTTTTAAAATACCAGGCTGAGACATCGGAAGACTTATTTGAATGGAAGACAGCTCTTGAGCAAGCCCTTGCACAAGC ACCAAGTGCTGCCCTTGTCATGGGACACAACGGGATTTTTCGGAGTGACGCGAGTGATTCTATTGAAGGGTCTTTCCATC AATGTTTGTACTCATTACATATTATATCTTATTCATTTGTTTTATGTTTATAACTTATGTTAGTTATATGTCAATACTAT TGTTGTAGTTGTTGATGTTTTTGTTATTTTGGGTTAGAACTTCTGCAGTTCGGAGCTTTTTTTATATGATTAGCATTTAT TTATTGATTTATGTAGATTTTTGACATCCTAATTTTATATTTTATGCAAAAGAACCTGCCTTCATGATGTTCACTATATT TCTTCTTGTGCTTCTAGGGAGGGACAAGCGTCCAGTTAAGTCTTTGGTTGTTGGAAGACCAATTCTTTTAGCACTGGAAG ATATTGATGGAGGTCCATCTTTCCTTGAGAAAGCTCTTCGGTTTCTGGAGAAGAATGGTAAGTTATGATCTTCTATTACC CAGTGCATCTGCATTTCATTTTATTTATTATCGTCCCATGCTTCAAATTAGTAATTACTTGTTAAGTTTTATTTCCTCAG TAAGCTGTTTGTTCAGAACTAATTGGCTAGTAGGCCTAGTGAACCCCATGCCTTTTCTCCTATGGCTTGTTAGCTGGAGA GCATGTTGTGTCGGTCTTTTATCTTGGTTTTTTTTATTATATTGTTTTGACTAGGTTAAAATGCAAATTAGCTCTTCAAC TTTCGCCCTTTGACAAATAGCCTTTGATTTCAATTACAGTAGTTGAACTTCTTAACCTTTAAATAACAACATTGGAGAAA ATTGCTTAGTTGATAAATTGGAGTTCCTTTTCACGCCATGTTTTCTAACTTGGACATGCATCCGACTGTACAATGGGAAA AACTGTTAAATGCATAAAACATGTTCTGCCCTATTTTTCAGTAAAGGGTTTATGGTGATTTTACTAATTTTCATTTTCAG GAACTAAAATTGAAGGAATACTGCGGCAGTCTGCAGACGTTGAGGAAGTAGATCGGAGAGTTCAAGAATATGAGCAAGGT AATTAAATTCCCTACCACTAAGTGCATTTAAAGAGAGTAGTTTATAGGCACATATAACATCAATATAGTTAATTGAGCCT CAAAGGAACAGCTAGCAAAGAACAAAAAATATGGAGGAAAGGAAATCTTGATTTCATAAATCCAAACTATCTAATATTGG TTAGAGATTTCTAATCAAGCATAGCTTCGCACTTGTTCTAGGACTTTGAATTGTTCTGATCATCTGATGTAGTTATTCTT TCTTGCCTTCCAAAAATCCATATTTTAAAGTATGGACCCACTCTTCATATCAGTCACCCTTTGTATTAAACCAATATTGT GATGATTTTCATTGTTCAAACTTTTTTTTTTAAAGACGGCATCCACGTTTAAATACTAAGTTTATTTTTTGTGAAACTTA TAAATCTCTTATTTTTAACTGATATTACCAGGCAAGACTGAATTTGGTCCTGAGGAGGATGCCCATGTTGTTGGTGACTG TGTCAAGGTATTTATCTGGGTTTTTGATAACTGTTGCGTTTATGACTACATGAAAAATGAAACAAACTATATGTTGAACA TACTGTACTTAAGATTCTCCTCAAGCTATGGTATCCCTAGAAACTCTGGGAAAGTTGATGGATTCTAAGAAACACGACAT TCAACTGTGGATTTGTGTGATGGAAATTTTTAAGATATCCGGAATTTTAGTTATTTTTCCCCTGTCAATTTTATCATGTA AAAAGAAGGATCACAAAGAAATAGGATTTGAAATCGTAATTAAATAACGGCAAAAGATCACAGAACAGAAAACCATAAAA GCATGAAATGACAATGAAATTAATTCAAAAGATCTCTATCCCTCTGATTATCTACCCAGTAAAAACTCTGAGTTTAACTG TATGCTGAACAGGGAAGAGAAGGCATTACATAAACAAGTTTAGATTTGATAAGGTTTCCCATACTTAGCCTTCATGTTCT TGCAACCAGTGTTCAAACTACCCATTCTCCCTCTGCTTGCACCATGGATATCGTAATAGTTCCAAACCTGCCTATGATCC TGTTGTGTGCTTCTACAAGGAACCTTGCTGCATCAATTAGCTGAACAAGAGCAGTGTTAGTGAAACCTAATTTTTAATCA TGCAAATCTTCCCCTCGCAATAGCAAACCCTAGTTTTTTCGTAGTGCTTGTTACCATTAGCTACAATACAAATATACGAC CGTAGAGTGTAAACTGAATTCTGGTTCACTATAGAAGTTTTATTCACATATGTGAGCATTTGCTTTATCAGTTATTTTCT ACTGCTTACGGTTAAGAACCTGAGTCTTGAGGCCATAAACAATCACATTTAATATATCCTGGATTTTTCTGAACTGACCA TTCCTGCACCATTTTATCAGATTTAAGGATTTAAAACTCTGATTTGGAAGCAGTTATTATTTCGTACAATAATATAGATC TTGGAATTTTCTAAACTGAATCATTGTTAGTAATTTCCCTCATAATCTGGTTTTTGATTGAGCTCAATGGCATAGTATGA TCCATATAGCCGACCTCACTTAGTGTGATAAGTCATTTGTTGTTATTTTGTTGTTGTCTATGCATTTTGTTTAATGGCAC TCTACTTGATTAATTTACAGCATGTTTTAAGAGAGCTGCCCTCATCTCCAGTTCCAGCTTCATGCTGTACTGCTTTGTTG GAGGCCTATAGTAAGTTTAGCTCTATGTTTTCTTTATGACGATATGCTTCGAAGTATAGATGGTATTTGTTTGCTGGTCT TTTTAAATGCTGCTTCTTGCTCTATTTGTTTTTCGCTTTTTCTAATTTGTTTTAATTTTTACTTTTTTATGATCATATCA GTAAAGAAACTTCTATTGAGACCATATTGATTTGTATAATGGAAATTATAGAATGGAAGTTTTAATGTTTATTAAGGATA AACTACTTGTGATACTAAGAACTATCCATATTGGTACTAGGAATATTTTATGCGCTTTTCTGTATATTCGGTTATTGATG AATAATTTTACATTTTGAAAATATGAATTTGCCTATCATTTGGTGCTATTTTTTTCTTATATGGAGTATGTTTGTACTTT TGAAAAATATAATTGAACTGTTATTTAATCTGAAGGTTTGCTGCTAAATACTGAAATGTGTAGATAACTTGAGTTTTTTA GCGCAATTTCTTAAATGTGTTGTCACTTAACACTTGTTTTAGTGAACGAAAGCATTCATATAATAAGCAAAACATGTGTC TTTTTTCTATTGAGCAGTTTTTGCAAGTAATTGAAGTAATGTTTTGGTATAAACATGCAGGTCAAATGAGTGTTTGGTCT CTGTTATTTTCCTTGACAATCCTGTTTGATTCTTCTCTTTCTTCCTCTTTCCTCACCTTTATTGCTTCTTGTCTCTGCTG CACATAATTGCTGATGTTGATATGTCAAAGACTTTTGTTACTTTTTCTTCCTGAACTTTCAGTTATCAAGTTTTGTTTTA TTATTCTAGTTATTTGGATGTCAATCTATGCATTAGAAGTTCATGTTATTGTTGCCCTTTTATTTTACAAGAAATTGACC GCAAGGAAGCTAGGATTAATGCAATGCGCTGTGCAATTTTGGAGACCTTTCCAGAACCAAATCGACGTTTGTTACAGAGG TTTCTGTCTCTTCTCTCTGCTACCTTACCTCTGCCCCCTCTAGTAGATGATAAATAACTTCATTCTTTTCTTTATTTGCA TATTGTCATCCTAGTATTTAAGTTTGCAGTGGAATAGTTTTCATTCATGGTTTATAATATATATGCTTTTTTAAACAATA GTAGAATAATCTTAAAATATTGGACTTTAAGAAAGTAAATGCTGGGGTTTTTCTTAATACGGGTTGTTTTTGTTATTTCT GTTTTAGTGTGCTTTTTATGAGATACGAATCTAGGTGTTTTGGGAGTTTCAATATTTTATATAGGTTTTTATGTGGCCTT AGAAGAAAAAGCTGTGAAAGATACATCTCAAGCTCTCCGTTTCTGTGAAATCTTACATAGTTACCTCTGATGATAATTTT CTAAAATGAATGATAAGCAATGGCCTTCTGTTGTAAATAAAACCTTTGATCTGCTTGTAAATTCATTTTCAGAATCTAAA ATGACAAATATATCGATTGTAATGGCACAAACAAATACCTTAATTTTTATCTAATTGTTGTAATCTCTTCATTTACAGAA TTCTAAAGATGATGCACACAATTGCTTCTCATTCTCAAGACAATAGGATGACTGCTTCTGCTGTTGCTGCTTGCATGGCA CCCTTGCTTTTAAGGCCTCTACTAGCTGGAGAATGTGAACTGGAGGATGAGTTTGATGTCAATGGTGATAGTTCAGCTCA GCTTCTTGCTGCTGCTAATGCTGCAAATAATGCTCAAGCAATTATTACCACATTGTTGGAGGAGTATGAAAACATTTTTG ATGTAAGAAAATCTCAATCAGACTGATTTTTATTTATTTATTATTAGTTGCTTTCATGTTTATTGATGCATTTTATGTTG CTTTTGTTGTAACTTGTGAGTTATCCTAACTAGTTTCATTCTTAAAGTTCATTTTTGTTCGTTACATCGCCTTTTTTTAG CTTGCATAAAAGTAGTAACGGTAAAGTTTTACCATGGGATTGAGTCATTAGCTTTTGCTATATATTTCTAATGCATAGTA TACTGAGGTAAAAGGGTTTGCTCTCTTGCACTAGACATCGTTCCTAAACAACTAAAATTAAATATGCGTGAGTCATGATT TACCCGTGTTCATTTGGCAGATGTTTGCTAACTTGTTGCTTCTAGGAACAACAATTTCTCATTCCTTGATTCAATTCCGG TACCTAATTTATATCTACTGTTTCAGGAAGAAAACATTCAGAGATGTTCTATGTCAGCAGACTCTCGGGTTGAAAACAGC GGGACTGAAGAGTCGACTGACGATGATAATATAGATGTGAAAGAAAATGGTTACCATGATGCGGAGAATGAAGTTGATCA AGAGACAGATGATGATGCTGATCGTGTTCACAGTGGAAAATCGAGTGAAAGTAGTGGTTATGCTGGTAGTGATCTTTATG ATTATAAGGTTGTCTTATGCTGCCTCACATTTATTTTCTTCTTCTGCTCCTGTCATTTATTCCAATCTATTTTTATTTTA TTAAACAAAAAATATTCAATGAGTAGTCAATTTTTGCTCTCTTCCACTATGCAAATCTCTACGCTCTCATGAAAATTCCC ACAGAACTCCTTTTTACTTATAAAATGCTAAAATTCCACAATGCTGTGTCAAACCTAACAGATTCATTAACAAAGCAGTT GGGTTATAAATGTTTTCTTTGTTCAGTCTTCTATTATAATTAGAGGGGAAGTTTAACTATATTTACTTCACCTGAATTTA CTCTTTATTTGATGCTGCCGTTTTAATTGACTGTTCATCTACCATAAAATAATGCATTCCTCTCTTCTCCCCAACATGAT ACTCGAGTAGACAAAGATATGAATGGCATTTGACCACAAACATCTATAAGCTAGTGGTGGAGTCAATAAATCTGTTAGGC TTTACAGCATATTGGGTTTAGTTGTACAAAGGAGTTCTATGTTTACTTGATAAGGGAGGGATCTGTGTAATAATTACTAA ACCCAAAATATGGGAGAGGGTAGTTTATTTTTCTGTTACTTTAGCCGTATATTCAAATTATTAGTGTTTTTCTTATATAT TTTTTCATCAAATATCAGGCTAGGAAGAGAGATTTATGTGAATGTCAGAAATATGATTTAAAAAAGCTCACATGTCTTCA CTCTTCACTCAATTGCTTAATCTTTCAGGATAGTTGGTTCATGACATGGTATTTGTGCTTCAGGACTTCCATCCTTGTTG CCCTCATTTTTGTAGTAAAAAGTTAAATTTCAGCACAAAGTAGGTAGCCGTTTGCAATGTTCATGCAGCAAGCCAAAATG GCTCTTGCGGAGGTGCTTGTTAGAAATATGGTGTAAAACCATTTATGTGTCTATATCCAATAGCTTAAGCTTTAGGGATT AATTAGCAGTGTTTCTTGTATCCTGCAGTGATTAGCAATAATCATTTTACTGTTTTCCTCATAATTTTTTTTTTGTGTCC TTATAGGCATTTGGAGCTGATGATTCCGATGTTGGATCCTCCAGTAGTAATCATGTTAAGGCTGGAAATTCAAATTTGAA TGCTATTCCTGATATCCAACTGTCTGAGGATCAAAATAAGCAAAGAAAGAGCAAGGAGAACTCTGTTGATGAGAAGGATG CTCCAAATGTGTTGCCTTCCACAGAGTCATATCGTTCTATGGGTGAGATTTTATCTTCAATGGACCCTGGCAACCATTTA CCTGTGCCTGGGATTGAATCAGGTTCTGGAAAGCAAACCAGTAAAGCTAGTAGCTCAAATTTAAGTTCTAAGCGGTCAAC ATTCTGGGGAAGGAGCAACGTGAGTTGTTATTTTTTGAAGATTAGCTACTAACAACTTTGTAGGATACGTTAAATATTAT AAATGTGTTATGTGACTATCTCAGTAGTTATTAGATTCATGGTGACAATTCGATAACCATTTAAAGGAGAATGCTATTTT TTCTGCTTGAGAATTTGTGGCATGAGACTATGCAACATTGATAATATACTTGCTATGATCTTGCAATTAATATATGCTGA CTTAATATGTTAGCACTAGATTTACTTAACTTTCATCACGGGAGGCAAAACTGATTATTCTGTCCCAGTTTTTGTAGTTG TGTCTCCAAGGTCAATATTTGCATCTGATAATTTTGTCTTATTTGAGCAGCCGAGGAAGACACCGTCCGTGGATTCCGTT GATTCTTCCGGTGAAGAGGAGTAAGATACTTGGCTTTTTACTTGTCTTTTCTGTTGTAGAATATGATGTTGTAATGTGAT TTTTGATATAATGGCAGAATTTTTTTCTTGCTTAACAACCATTCATTGCTAGCAATATGTGGTTTGCTTCATACATGTTT CCCTTTTTCACTTTCTTTCTTCCCCCTTGAGAGTGAATAACCATAAAACTTTGATGTTTGTAGGCTTGCTATTCAGAGAC TAGAGATTGCAAAAAGTGACCTGCAACACAGAATAGCAAAGGAGGTACTTTTCATTTTCCAACTCATTTTATGCCAAAAT CATATAATGTGGATGTTCCTACTTAACGGTGTTTGTTCTATTTTCGTTTTAGGCGAGAGGCAATGCAATTCTGCAAGCAA GCTTAGAGAGAAGGAAGCAAGCTTTGCATGAGCGGCGCTTGGCACTTGAACAAGATGTACTATTAATACATCTATCTCTC TGAATAAGACATTTTAATTGGATTTGCTGTTTTAACCTACTTTTTGATATATTATTGTTTAATATGGAGTCCTACATGCA ATATTTTCTTACTTCCTTTTTCATTTTGTTTTGATTTCCTTAGTTTTATTTTAATTCTTATCTTCTTCCACCCTCATGCT GTCATATTTTCTCAAACCTTTTCAAATTTGAAGTGGATATACATTGCCAGTTGCCACATAATTCTTTTTTGTTCCTCCAT AAATAAGATCTAACTAAATTTTTTATATAAAGGTTTCAAGATTACAAGAACAGTTGCAAGCTGAGAGGGACCTTAGAGCT GCATTGGAAGTTGGTTTGAGCATGTCTACTGGACAGCTTTCGAGTTCACGTGGCATGGATTCCAAGGTTCTTGCATATTC TTTTGAAATTTGCTTTTCTTTTGATTGCTTTCGTAGTACACATAATCTTACAAAAAAATTGCCTGTGTGAAGACTAAGGC TGAGCTGGAGGAAATTGCACTTGCTGAAGCTGATGTGGCCAGGTTGAAGCAGAAGGTTGCAGAGCTGCACCATCAACTTA ATCAGCAACGACAGCATCACTATGGTTCACTTACCGATGTGGGTGATCGGTACCAACATGCCCAAAATCAACCTCAGCCG TGAGTATACAGACATGTGTTATCTTTAGGCATTGCTTAGATTATCATGCTGAACCTTGCAAGTCATCAAACAACTTTTAA TCCTAGGTATTCTCATAATGTTGAAAAAAATAGAAAGAAAGAAAAGGAATACATGCATTAGGTCTCCAGAGTGTATATTG TTATTACTGTTTTTGAGGAACTTTAAGTTGTGCAGTTCATTAATTTGACAACTAGTCCAGTTTATATGTCAAAGAGTTTA CTGGTTTAGTGGATGCAATGTGAATGGACTTTTATCAGTCTCGTTCACTTTTTGTCTCGAAGTAAGTTGCTAACACTCGT GTGCACGGGTGCCAACGAGTATCCAACTTCAAACACAGCCTTAGTACCTACTTCAAAGTGTTATAGTCACTACCATTGAT ATTAAGTATATTCCAGTTGTCATCCAATAATTTTTCCTGAAAAAGAGAAAACATGTTGTAATCTTATAGTTCTCTGTGTT TCTTCGGTTCCTTATCGAGGAATTCTTGGTATGCACTTTGTGCTTGGACTCATTTTAAATTTTTAACCAACATTTGTGAT TACTGGAACTGAACACTTGTCTTATGATATATTTTATTCACCTTTATGAGACCTCCCTCTTAATTGAAAAACCTTTTGAA ATTATTAAGTTCGATAGTAGCTATAATAAAATTTATCCGACTTCTGCAGGAGATTTCTTCAGCAAGATTTTGATTCAACC CTTGCGTTTTGTAATCATGAAAGGAAGCAAAGGACTGAGGTATGTTTTTTAGTCAACATGTCTTACTCACTAACTAACTA ACTATTATTCTGTTAACTGACTAATTCTTATTAGCTGACTGTACCTATCAGAATAGTCCGGTGCTTGTGGATGATCTATT CTTAATGGTTATGACTTGTGAGCGCTTTTTCATCAATAACTCATGTAAAATTTGCCTTTTCATTTCAACAGGAGAGTGTA TTGGGCACTGATTGGAGAAACATCAAAGGACAAATATTGGCATCTGGTAATGGTAGTAGGCAGCCTTCTCGCAAGCAATT TATAGATTCAAGTCCTAGCGATTCGAAGAGTACTGAAGCATCAACAAGCATGTCAGTGGATGAGCTTGGTGTTGTTGATT CTGCAGCCTCGGTGCCCTCCACCTCAAGAGCTGCAGAGGTAAGAATTCAAGAAATGTGCTTTGCATAGTTGTCCGTGTTT GGATCAGCTTTATCTCAATTGATTTTGGATAAAATTGATTATGGTAGAAGTGAGGTAAAAGTGAATGTTTGGATACATTT ATGAAAAAAGAAAATTATGTGGAGCAAAGTTGTGAAAATTCAGTTGTAAAATTTTTCAATTGATTTATTAACTGCAGAAT ATAATTCTACGAGATATTTCCGAAACATCTATATTGTCATCCTAAAGGGATTAAACTCAACTAGAATTTATTTTGAGGTT CCTATCGGGGAACCAAACTCTTATTCAAAAGTCTATTGACATCATTTTATTCATTTGTTATAAAACTGTTATTTCCTTCT AGGTTAAGTAATGTGTGGTTAGTACATTCTGCAGTAGCATCTTTGTTTCCAATTTATTAGGAACTAATCTTGCAGCATTG GTTTCAGGTGACTGAATTTGCAAGACATCCTGTAGCATCTTCGACATTAGTAGAGTTAACCACTCGTCTCGATTTTTTCA AGGAACGTCGTTCCCAGTTGATGGAACAGCTCCATAACCTTGATTTGAATTATGGTTCTACAACTTCCCAAGACTTTGTT TATAAACCATCATCACCATCATGGAGTTGACTTGGCCAAATAAGGTGCTTCATAAAATCCATGGGAAAGAATTTTTTGCT GACATGTTTGTATAGCCTTTGTCTCATTGCATATATTTATATCCTTTGTGGTCCATGGATTGTTTCATTCTCTAAGTTCC TATTTAATTTCTTTGTTCTTGTTTTCTTTTGCTAGTGAAAGGTCATTGGAGTTGAAATGAGAATCTTTACTTTAGTCTTT TTGCATTCCTTTTTCTCGTTAGGTAAGGAGTGTTGGAGTTTGGTGTAATTATTGTGTTATAGATAGGGGAATTTTGTTGA ACCAAAAAATCACACTGAGGAAATTTTAGTATCGTTTTGGCATATTCTTTGTACGTAAGGAGATGCAGTTCCAAGGATAT GTCACTCATGTTGAAATGATTATGATTGTATATCTTAGAAGGTTATTTGTGAATTGTGATGCTATTAATAACAAAGTTCT TACCATTGTCAATGAAAATGAAAAAGCGGGTATTTATTGAGTTTTGGTATTTATTGAGTTTTGATTCATTCACATCTTAC CTTCTTTTGCATTTCATTTCCACAAGTTTTTTCTTCTCTCTCTCTTCTTTTTATATCTCATCATTTATTAGATTTCTTCT TTTTCTATCTCTCATGGTGCAGTGTTTTTGAACTGGGAAGAAAACATTATCAACAATGTATTTGTTCTATATTCATCAAA TAAATAATCATCAATCCCTAGCAATCTTCCAACCTTCGTTCCTTTAACTTTAGGCTTGACCCCTATCCATGTTTCCGGCT TTGCCGAACTTACTGTCCAAGTATGCTCCAATTCGGCCAACATAGCTATAGTTGAGGAGTAATCTTCCACATGTAAATCA CTCCCTCCAAATCGATTTTTCGAATATTTTGAGCTTGCCCTTTGACGGTTGTTTGGCCGCTTTCTAACAGCCCTGTTTTC CCCAGTTCCTATTCCCTTTTTTTGGTTCATATTCAACGTCTCGCAAAGCTCCTTAAAGTTAGGGAAATAAAAAGAAGCTC AGTGACTATTGGGTTTTATTATATTTTTCTTTACGGCTCGCCGAAATCTTGTCAGAGAGACATGGAGGGGAAAGAATGAA TGAAATCCTCTAGAGTATTGGGTAGCAATTGTATGTATGACTATAAATTTAGCTAACTTGAACATTATATTTATGG 

CDS sequence (LotjaGi1g1v0050600.1) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGTCTGCTTCTTTGGCGGCTTTCGAGCGACCTCGACCTGTGGCATCCAATACGGTTTTCAAAAGTGGCCCACTTTTCAT ATCTTCCAAAGGAATAGGCTGGAAGTCTTGGAAGAAGCGGTGGTTTATACTTACACGGACATCATTGGTTTTTTTCAAAA ATGACCCTAGTGCCCTTCCCCAGAGAGGTGGTGAAGTAAACTTGACTCTGGGGGGTATTGACTTGAACAATTCCGGGAGT GTTGTTGTTAGAGAAGACAAAAAGCTACTTACGGTATTATTTCCAGATGGACGTGATGGGCGAGCATTCACCCTTAAGGC TGAGACATCGGAAGACTTATTTGAATGGAAGACAGCTCTTGAGCAAGCCCTTGCACAAGCACCAAGTGCTGCCCTTGTCA TGGGACACAACGGGATTTTTCGGAGTGACGCGAGTGATTCTATTGAAGGGTCTTTCCATCAATGGAGGGACAAGCGTCCA GTTAAGTCTTTGGTTGTTGGAAGACCAATTCTTTTAGCACTGGAAGATATTGATGGAGGTCCATCTTTCCTTGAGAAAGC TCTTCGGTTTCTGGAGAAGAATGGAACTAAAATTGAAGGAATACTGCGGCAGTCTGCAGACGTTGAGGAAGTAGATCGGA GAGTTCAAGAATATGAGCAAGGCAAGACTGAATTTGGTCCTGAGGAGGATGCCCATGTTGTTGGTGACTGTGTCAAGCAT GTTTTAAGAGAGCTGCCCTCATCTCCAGTTCCAGCTTCATGCTGTACTGCTTTGTTGGAGGCCTATAAAATTGACCGCAA GGAAGCTAGGATTAATGCAATGCGCTGTGCAATTTTGGAGACCTTTCCAGAACCAAATCGACGTTTGTTACAGAGAATTC TAAAGATGATGCACACAATTGCTTCTCATTCTCAAGACAATAGGATGACTGCTTCTGCTGTTGCTGCTTGCATGGCACCC TTGCTTTTAAGGCCTCTACTAGCTGGAGAATGTGAACTGGAGGATGAGTTTGATGTCAATGGTGATAGTTCAGCTCAGCT TCTTGCTGCTGCTAATGCTGCAAATAATGCTCAAGCAATTATTACCACATTGTTGGAGGAGTATGAAAACATTTTTGATG AAGAAAACATTCAGAGATGTTCTATGTCAGCAGACTCTCGGGTTGAAAACAGCGGGACTGAAGAGTCGACTGACGATGAT AATATAGATGTGAAAGAAAATGGTTACCATGATGCGGAGAATGAAGTTGATCAAGAGACAGATGATGATGCTGATCGTGT TCACAGTGGAAAATCGAGTGAAAGTAGTGGTTATGCTGGTAGTGATCTTTATGATTATAAGGCATTTGGAGCTGATGATT CCGATGTTGGATCCTCCAGTAGTAATCATGTTAAGGCTGGAAATTCAAATTTGAATGCTATTCCTGATATCCAACTGTCT GAGGATCAAAATAAGCAAAGAAAGAGCAAGGAGAACTCTGTTGATGAGAAGGATGCTCCAAATGTGTTGCCTTCCACAGA GTCATATCGTTCTATGGGTGAGATTTTATCTTCAATGGACCCTGGCAACCATTTACCTGTGCCTGGGATTGAATCAGGTT CTGGAAAGCAAACCAGTAAAGCTAGTAGCTCAAATTTAAGTTCTAAGCGGTCAACATTCTGGGGAAGGAGCAACCCGAGG AAGACACCGTCCGTGGATTCCGTTGATTCTTCCGGTGAAGAGGAGCTTGCTATTCAGAGACTAGAGATTGCAAAAAGTGA CCTGCAACACAGAATAGCAAAGGAGGCGAGAGGCAATGCAATTCTGCAAGCAAGCTTAGAGAGAAGGAAGCAAGCTTTGC ATGAGCGGCGCTTGGCACTTGAACAAGATGTTTCAAGATTACAAGAACAGTTGCAAGCTGAGAGGGACCTTAGAGCTGCA TTGGAAGTTGGTTTGAGCATGTCTACTGGACAGCTTTCGAGTTCACGTGGCATGGATTCCAAGACTAAGGCTGAGCTGGA GGAAATTGCACTTGCTGAAGCTGATGTGGCCAGGTTGAAGCAGAAGGTTGCAGAGCTGCACCATCAACTTAATCAGCAAC GACAGCATCACTATGGTTCACTTACCGATGTGGGTGATCGGTACCAACATGCCCAAAATCAACCTCAGCCGAGATTTCTT CAGCAAGATTTTGATTCAACCCTTGCGTTTTGTAATCATGAAAGGAAGCAAAGGACTGAGGAGAGTGTATTGGGCACTGA TTGGAGAAACATCAAAGGACAAATATTGGCATCTGGTAATGGTAGTAGGCAGCCTTCTCGCAAGCAATTTATAGATTCAA GTCCTAGCGATTCGAAGAGTACTGAAGCATCAACAAGCATGTCAGTGGATGAGCTTGGTGTTGTTGATTCTGCAGCCTCG GTGCCCTCCACCTCAAGAGCTGCAGAGGTGACTGAATTTGCAAGACATCCTGTAGCATCTTCGACATTAGTAGAGTTAAC CACTCGTCTCGATTTTTTCAAGGAACGTCGTTCCCAGTTGATGGAACAGCTCCATAACCTTGATTTGAATTATGGTTCTA CAACTTCCCAAGACTTTGTTTATAAACCATCATCACCATCATGGAGTTGA 

Protein sequence (LotjaGi1g1v0050600.1) extracted from Lotus japonicus Gifu v1.2 Proteins.

MSASLAAFERPRPVASNTVFKSGPLFISSKGIGWKSWKKRWFILTRTSLVFFKNDPSALPQRGGEVNLTLGGIDLNNSGS VVVREDKKLLTVLFPDGRDGRAFTLKAETSEDLFEWKTALEQALAQAPSAALVMGHNGIFRSDASDSIEGSFHQWRDKRP VKSLVVGRPILLALEDIDGGPSFLEKALRFLEKNGTKIEGILRQSADVEEVDRRVQEYEQGKTEFGPEEDAHVVGDCVKH VLRELPSSPVPASCCTALLEAYKIDRKEARINAMRCAILETFPEPNRRLLQRILKMMHTIASHSQDNRMTASAVAACMAP LLLRPLLAGECELEDEFDVNGDSSAQLLAAANAANNAQAIITTLLEEYENIFDEENIQRCSMSADSRVENSGTEESTDDD NIDVKENGYHDAENEVDQETDDDADRVHSGKSSESSGYAGSDLYDYKAFGADDSDVGSSSSNHVKAGNSNLNAIPDIQLS EDQNKQRKSKENSVDEKDAPNVLPSTESYRSMGEILSSMDPGNHLPVPGIESGSGKQTSKASSSNLSSKRSTFWGRSNPR KTPSVDSVDSSGEEELAIQRLEIAKSDLQHRIAKEARGNAILQASLERRKQALHERRLALEQDVSRLQEQLQAERDLRAA LEVGLSMSTGQLSSSRGMDSKTKAELEEIALAEADVARLKQKVAELHHQLNQQRQHHYGSLTDVGDRYQHAQNQPQPRFL QQDFDSTLAFCNHERKQRTEESVLGTDWRNIKGQILASGNGSRQPSRKQFIDSSPSDSKSTEASTSMSVDELGVVDSAAS VPSTSRAAEVTEFARHPVASSTLVELTTRLDFFKERRSQLMEQLHNLDLNYGSTTSQDFVYKPSSPSWS 

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 2 868 867 0.0
PANTHER 2 868 867 0.0
SUPERFAMILY 15 131 117 4.93E-18
ProSiteProfiles 18 125 108 15.481
SMART 19 127 109 6.7E-16
Pfam 20 124 105 1.3E-12
Gene3D 20 135 116 2.8E-15
CDD 21 120 100 3.91324E-12
Gene3D 138 379 242 1.7E-38
ProSiteProfiles 172 372 201 30.222
SMART 178 369 192 2.2E-26
Pfam 181 325 145 9.6E-32
SUPERFAMILY 181 374 194 7.46E-35
CDD 181 318 138 7.57071E-35
MobiDBLite 382 441 60 -
MobiDBLite 454 480 27 -
MobiDBLite 454 572 119 -
MobiDBLite 481 497 17 -
MobiDBLite 532 566 35 -
Coils 603 637 35 -
Pfam 613 693 81 3.9E-21
Coils 662 696 35 -
MobiDBLite 756 788 33 -
Coils 823 850 28 -

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
Biological process Signal transduction The cellular process in which a signal is conveyed to trigger a change in the activity or state of a cell. Signal transduction begins with reception of a signal (e.g. a ligand binding to a receptor or receptor activation by a stimulus such as light), or for signal transduction in the absence of ligand, signal-withdrawal or the activity of a constitutively active receptor. Signal transduction ends with regulation of a downstream cellular process, e.g. regulation of transcription or regulation of a metabolic process. Signal transduction covers signaling from receptors located on the surface of the cell and signaling via molecules located within the cell. For signaling between cells, signal transduction is restricted to events at and within the receiving cell.

Expression data

Expression pattern

Expression pattern of LotjaGi1g1v0050600.1, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.

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