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LotjaGi6g1v0320900.1

Overview

Field Value
Gene ID LotjaGi6g1v0320900
Transcript ID LotjaGi6g1v0320900.1
Lotus japonicus genome version Gifu v1.2
Description Receptor-like protein kinase; TAIR: AT4G20140.1 Leucine-rich repeat transmembrane protein kinase; Swiss-Prot: sp|C0LGQ5|GSO1_ARATH LRR receptor-like serine/threonine-protein kinase GSO1; TrEMBL-Plants: tr|A0A072V4N4|A0A072V4N4_MEDTR LRR receptor-like kinase; Found in the gene: LotjaGi6g1v0320900
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr6:63741700..63749877) extracted from Lotus japonicus Gifu genome v1.2.

ATCTATATCTATATATATGTATTCTCTTCAATGCTTGGACTCAAGCATCTAATAATCTGAAATGGCTAAACTATGCTCTC ATCTTCTCTTTATTTTTGTGCTCTCACTAAATTACTTCTGGCCTTGCTTAGCTATGATGAGTAGAAAAAACACCACCACC GATAAACTTACACTCCTTGCATTCAAATCCTTCATTACTTTAGACCCCAATCATGTAACTAAAAATTGGTCAACCTCTTC TTCTTCTTCTTCATTATGCAATTGGGCTGGTGTGATTTGTGATGAAAGCCATGGAAGAGTGAAAGCTTTGAATCTGAGTA ACATGGGCCTTGAAGGCCCTATTTCACCACAACTGGGTAATCTCTCTTTCCTTGTTGAGCTTGACCTCCATGGCAACAAA TTCTATGGTAAGTTACCACAAGAGCTATTTCAGTTGCACCAACTGAAATTGCTTGACTTGAGCAACAACAACTTAGAAGG AGAATTAACAACAGCAATAGGGGAATCATCAAATCTTCAACACTTGAATCTTGGCAGCAACAATTTTATTGGTTTGATCC CTCAATCTATGTTGTACAACTTGTCAAAGCTAGTGCACTTAAACTGTTCATTCAATTTCTTCAAAGGAACCATTCCATCT GAGATTGATCAACTTGACCGGTTGAAGATTTTGGATTTGAGAAATAACACGCTCTCAGGAACCATACCACCAACCATTAC AAACGTGTCTTCACTTGAAGAACTCCATCTATCTTACAACTCCTTATCAGGTATGAACATGATATAGTTTATTAATTAAT TTCAGAATCATGACATCCGCATTGAAGAATCAAGACCACCGCCTTTTATTTTTGCACTTTCACATTATATAGCGTCATTG ACATTGCCTTCAATTTTGAATCGTCAAAGATATCCATTTGACTCATTCTTTTACGTCATTTCATATATACTTTGGCACTT CTTCAATAGTTCAATTGATGCAAGGATAATATTCATGGATTTAATTTTCAGACAGTGTAGGACTTTTTGTTACATCGAAA TTCAGTCGTTTTCATGTCACATCAACTTTCATGTTACATAATCTTTATTTAATTTGAATTTAAAATTTACTAATTTGACA CGACAAATTATTCGAAGAGTTTTACACGGATAATGTATATACATTAAATCCTTTTAGATATATGCATAGTAGGTACTAGA GGAATATTATGCTCTTTGAAAAGAATTATTAGATCATGCATCAAGCTTGGTGTCGTAATTGCCATAATCATGATGAGTCT AAACTGTTCTTGAACCAAATTTGGAGTTTGAAATTAGATTATGCATCAAGCTTGGTGTAGTATTCTGTGTGAGATGATTA TGCTGAACTTTTGACGACTTTGGAGAATGACAATGGGGAGTAGTGGAGACCATTTTTTTCCCATGACATAAAGAAGCTGA TTCATAGAGATTGGACGATCACAATATTCGTAGGATTTCTTATGAGTCTAATTCTGCTCCGTAATGACTTCGCGTTTGGG TGCTTGCTATTCTGTTTCGCGGGCTAGTATTTTAGAAGTTCCTCCTCCCTATTGAGTTAGTGACTCTCTTGTGTAAATAC TTTCTTGATGTTCTTTTGTTTCGATCTTTTGTCTTTTTTTTTTGTTGTTTTTCGATGGAGTTTTTTTTTTTTTTTTTTAC ATTGCTCACATTCAAGGTTATAAAAACCGGACCGGTGATCAAACCGGTGAGGGCACTGGTTCGAGGTTCAATGGTTCAAC CGTAGTTGAACCGAGGTCCAACCGGTTTTACCGCTATTAGTTAAATAATATTATTTTAAAATAAATAAATATATAAAAAA AGTAAAAAAGTGTATCTCTATTCAATTAAATTTTCTCATCGTGTTCTTCATCCCACTTTTTCTCTCTTCAAGAATTAATT TTGATCACAAGCTATTTTTTCATTTTTCTCTCTTCCCCAACCAGTTGAATCTACTCATTAGAAATTTTTGTAATATCTAT TTTATTTTTCCTCATCTTCTCTGTTTCAAAATCAAGACACCATATCTACCAAAAAAAAATCAAGACACCATTCACGACTT CTATCATGGGCAAGGGACAAATATCTTCTTCTTTGCTTCTCATCAACAAGTCCATTGCATCACTGGTTCAGTCAATAGAA GAAGAAGAAGAAGAAAAAGAAGAAGAAGAAGAAACAGAGGGTTGCGGTCGACGAAACAAACGTGACGGTGACAACTGACG GCGACGATGAGGCGCGGATGACTCGACCTGCGGCGCGGCGGAGGTGGCTGGCCGCCGGAAAGAAGGATCTAAGGGGAGAA GAGCTTGGAAGAGAAGACTAGGGTTTCTACTTTCTGCAACTCTGTTAAGCGTGTTCTGTTTTTTTTTTTCTCAAATTGTG TTCTCTTTCCTCATTTTTAAAACTGTTTGGTTTGTTACAATTTTTTGTCTGTTGTTTTATGGGCTGAGCCCATTGTACCT GAACCAGTTTGTAAAAAAAAAAACACAAATAATTGTTTTTGGCGCTGAACCGCTTGAAACCGCCAACCGGCCGGTTTTGG CCGGTTTGTCCGGTTTTTGGCCGGTTCGCCCGGTTCGTATCCGGTTTTCTCTCCACACGGTTTTGTGCCTGTTTCTGACC GGCCAGAGGCCCGGTTCCCGGTTTAACCGGTTGAACCGGCCGGTCCGGTCCGGTTTTAATTACCATGCTCACAATTATTA AATTCAATCTTTTATCATTGCAAATTACTAAAAAAAATTAGATTCATTAGAAAGGGATTAATTTTCAAAATTTTCTATTA GAATCAGAATATTGTCCATATATAGGCTATGTTTGACACGTTTAGCTGAAAAGCTAGCTGATAGCTGAAAAGCTAGCTGA TAGCTGAAAAGCTAGCTGATAGCTGAAAGCTGATAAGCTAGCTGAAAGCTGATAGCTGAAAGCTGAAAAGCTACGTAATT GTAACAAAAGTGTTTGGTAAAACTAGTTGTTAAACAAGCTGAAATTGTAAAAAGACATAAAATGACATACTTGTATAATT ATTTTTATATTTAACATTACTTTATTTTCACATTAATACCTATAGGATATTAATATTAAAATTATTATCACTTTAAATAT TTTAATTTAACTCAATTTATTTATCTTCTTAAAAATAGGTTTTCTAAAGGACAAAAAAAATCATCTTAAAAATTTTACTT ATTTCATTTTAACTTTAATACCTATTTGGTGGAATTTTAATAAAATAATAAGGATAAAAATGACAATAAATTCAATAAGC TATAAGCTTTAAGCTATAAGCTACCTCAGATAGCTTATAGCTTAAAGCTTTAAGCTACTGAAATAAGCTCCTTCACCAAA CACTTTTATAGAGCTTTTAAGCTAGTCAAATAAGCTTTAAGCTAGTCAAATAAGCTATAAGCTAGCTGAAATGACATGTC AAACATAGCCATAGATAAATTACATAAATTATTACACGAGAAAAACATTTCTTATCTAATTCTAGTCTGTATTTGTAATA TTACTAATCATCGGAAATCTGGGTTGACCTCTTTCTATGTTGAATTAAAAGGAGAAATTCCAAAAGGAATTGGTGATCTT GGACAGCTAAGAAGAATGCACGTTCAATATAATGAACTTTCTGGCAGCATATCATCAATATTCAACAACTCAGCGTTGCA ATACTTAGATCTGGGTCATAATAGTCTGTCTGGTAATCTCCCATCAAATATTTGCCAAGGCCTTCCAAAGCTTAAATCGC TGTATCTTTTCGAAAATGATCTTTCTGGTAAGATGCCAACTGTTTGGTATCAATGCAAAGATTTGGAAGATTTGGAATTA TCATTCAATAGTTTCGACAAAGGACATATCCCACATGATATGGGAAACTTGACCAAGCTTCAATATTTATATCTTTTTGA CAACAACTTGGAAGGTACGATACTTTCACTACACATCTATTTCTGTAACTTACTTATAGTATGGGCAAGATATACATAGT TTAATAACGAAATATTATTAGATGGATCCATTTATGTGAAAACTCTCATGTTTTCTCTTGAAGTTTTTTTTTTTGGTCAA ACTTTTTTTTGTCAAACTCTTGAAGTTATGTGTCTATTTAGTTGAAAGCTAATTGGGCCAGCTCCAATATATGATTTCAA TTATGGCCCAAAAACATGCCGAATGTTATTTTTATTAGTTGCTAGTCTTATTAATTATTCGACCAAAAAAAAGTCTTATT AATTAGAAGTTGTTTTTTTTAACGTTATTAATTAGAAGTTGTTATTTCTTATATTAATTGTTAATCACTTTTTAGAATAT TGCTAGTAGTAGGATGATATCACTTGTATGCCTCTCTTTATGCTAAGAGTTAAAACTCTAACTAAATAAATTTGGGGATG AATGATAACAAGAAAATTGGCTCTGTCTCATTGTATTTCTTTCTTTACTTTTGATAGTTTTTCTTCTTGTAGTTGCATTG ATTAATAATATTTTTATATTGAACATTATATGCAGGTGAAATCCCTATCTCCCTTTTAAACATATCTTCTCTGAGAGAGG TGGTCCTTCAACAAAACAATTTAAATGGAAGTCTCCCACAGGATATGTGTAATCACCTTCCTCAGCTTCAATTACTTAAT TTACGCAGGAATCAATTAGTAGGAAGCATTCCAAAATCCATTGGAAACTGCACATCCCTTGAAATGTTAAGTTTAGGGGA CAACACTTTCACAGGTACCCTCAATTTACTATACCTTCATATTTACCCTCAAAAATAACATTTCTATATACTATCTTTTA CTATAATTTATCCCTCATAGTTGGTGGACTCTCAATCAATAATCCTAAATTTGAGTTTCTTGTTTTTCAAGAAAAAATAT TAAAAAGAAAAAAAATAACATTTTGCTTGTAATAAAATAGTGTAGAGTGAAATGATGAAAAGAAAACAACAAGAGTTTAA CAGAACAAGAACAATGATGGAGTTATCAGAGTTAGATATTATATATATAGGTGGATTAGGACCATCTCATGTCATGTCAG ATTACAATGTCAGGTGAAATATTGTGTTTGTCTATCTATCACTCTTTTACAAACATTCAGAAGATCTCATGTATTTAAAA CAAGTAAAAGAAAGAGATCGACACAAAATCTCAACGTGTGATTTCACATGAGAGAATCATGGTCCTGATATAGGCAACTT CATCCAAATTAAGTTTCCTTCTAATTGATTTTGCTCATGCATTTTTCTTATTGGCTTTTGTTGATGTTCAGGTTCTAGTG ATTGAGCCAATAGTAGCTGGTTTGCTATTCATACACTAATGTTGATCACTAGATTGATTCATTTTTTTGCCATGTTCTGC TTTTCCAGGATCTATACCCATGGAGATTGGTGATCTTAATCAAATTAATACAATACTAATGGGAAATAACAGCTTGAGTG GATCCATTCCTTCAAAACTCTTCAACATTTCAACACTCTCATCCTTGTATCTTGCAAGAAATTCACTCTCAGGAACTCTT CCATCAGATATGGGACATGGTCTTCCTAACCTGAAAGAACTCTACCTTTTTAAAAACAAACTTGTTGGGAACATTCCACA TGGTATATCCAATGCTTCTAAGCTCACTGCAATTGATTTCAGCGACAATCATTTCAGTGGTATCATACCAAATGTGTTTG GAGATTTGACAGGCCTCGAATGGTTCGGTTTAGCTGTGAATAATTTGACCACAGATGACCCTACTGAGCTCAAGCTCCTT ACTTCCTTGACAAATTGCATAAACTTGGTATATCTAGCTATATCATCGAATAGTTTACAGTCAAAACTTCCCAAATCAAT TGGAAACTTTTCCAACTCGCTGGAGAACTTTTTGGCAGATTCTTCTGGAATTAATGGCAACATTCCACTTGAAATTGGAA ACATGAGCAACTTGGTCTATTTATCTTTAGGAGGGAATGATTTCGGTGGAACAGTGCCTGGAACGATCAAAAGGTTACGG AAACTTCAGTATTTGGACCTTGGCTACTGTGGACTGCACGGAACCATCATTGATGAGCTTTGTGAAATCAGGAGTCTGGG TGAGTTAAATCTAACAAACAATAAGTTTTCTGGAGAGTTGCCAACATGCTTGGGAAACATGACTTCTCTTAGAAAGGTTT ACTTGGGATCTAACAGATTAACTTCTAGGATACCTACTTCTTTTTGGAATCTCAGAGATATCATAGAGGCTAACTTATCT TCCAATGCTTTAACTGGAAATCTTCCACCTAATATAGGGCAGTTGAGAGCTGTTGTGCTGCTTGATCTGTCAAGAAATGA GATTTCAGGCAACATACCTTCAACCATTAGTTTCTTGAAAACTTTGCAAACTCTCTCCTTAGCTCATAACAAATTGCAAG GTTCTATTCCTGTATCACTTGGTGAAATGGTGAGCTTGAGTTTCTTGGACTTGTCCCAGAATCTTTTAACTGGTGTGATC CCAAAATCCTTAGAGTCACTTGCCTATCTTCAATACATTAACTTTTCATACAATAGGTTACAAGGAGAAATTCCCAATGG TGGACCTTTCATAAATTCCACAGCTCAATCTTTCCTGCATAATGAAGCACTTTGTGGCAGACCTCGCCTGCAGGTACCTC CATGTGGTAAACAAGGCAGGCGAAGATCAACGACAAAGCTGCTATTAATCAAAATTATGCTGCCAATAGTTGTGTCAATC ATTTTGGTTGTTGCTATATGCATAATCCTTAAACAACATAAGAAGAAAAAGGTTGAAAATCCACCAGAAGAGGATTTATC AACTTTAGGAGTTCCAAGAAGGATTTCCTATTATGAACTTGTGCAAGCAACTAATGGCTTCAACGAGAGTAACTTACTTG GAAAGGGGAGCTTTGGTTCGGTATATAAAGGGGTTCTCTTTAGTGGGATGGTTGTTGCAATTAAAGTAATTGATTTAAAT TTGGAAGTAGCATCAAGGAGCTTTGAAGCAGAATGCAATGCAATGCGCAATCTACGACATCGAAATCTTGTTAGTATTAT CAGCAGCTGTTCAAATGTTGATTTCAAATCTTTGGTAATGGATTTGATGCCAAATGGGAGTTTGGACAACTGGTTATACT CACATAACTATTGTCTAGATTTCTTGCAAAGATTGAATATAATGATAGATGTGGCATCTGCATTGGAATATCTCCACCAT GGTTCTTCAATACCAGTTGTTCATTGTGATCTGAAGCCTAGCAATGTTTTATTGGATGAAAACATGGTTGCACATGTTAG CGATTTCGGCATTGCCAAGCTCTTGGATGAAGGACACTCTAAAACACATACTGAGACCTTGGCGACTCTTGGCTATGTTG CACCAGGTAATTTCTTCTATGATACCACTCTTAGAAATAATAATATAAAATCATTCATGTGACTCTTGTTGTTTAGGATT AGCCAAACCAAATGTATGGAAAATATACTCATTTTTCGATTTGAGAATACTTAATGACTAGTATTGACATGCAGAGTATG GATCTAAGGGAATTGTTTCTGTCAAAGGAGATGTATACAGCTATGGGATTGTGCTAATGGAAATCTTCACAAGAAAGAAG CCAACAGATGATATGTTTTCAGCAGAATTAAGCTTGAAAAATTGGATCAATGAATCAATGCCCAATTCAATGATGGATGT TGTGGATTCTAATTTAGTCCAACAACATGAGGAACAAATAGATGACATGTTGCCTCATATATCATCTATTTTGGGATTAG CCTTGAGTTGTTGTGCAGAGTCACCCGAAGCACGAATTAATATGATAGAGGTTACTGCATCATTAACCAAAATCAAAGCT TTGTTCACTCATTGAAAAAGGAAACCAAACATGTAAATCATAAGCTAGTGAGTGGCGACTTGAAAACCTCCCTTTTGTCC CTTTTGCTACTAAATGGCATGCCTGTAATGTAAAAGAATGTTTTTTGGATAATGAAATCCTTCAATGTTATAGAACTTTC ACACCATTTAGTTTACCTACTTTCATCCTCTTGCCAGTCCTATTATTTCTTTTTGATGTTCTTGTTAATATATCTCATTC TGTCAAACACCCCTAGGAATTTGAGCATGCTTTTTTTTTCAATATTTAAGTTGTGTGTGAGATGGAAGTTTTGTAACTAG TAAGAGAACAAATCTGAG 

CDS sequence (LotjaGi6g1v0320900.1) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGGCTAAACTATGCTCTCATCTTCTCTTTATTTTTGTGCTCTCACTAAATTACTTCTGGCCTTGCTTAGCTATGATGAG TAGAAAAAACACCACCACCGATAAACTTACACTCCTTGCATTCAAATCCTTCATTACTTTAGACCCCAATCATGTAACTA AAAATTGGTCAACCTCTTCTTCTTCTTCTTCATTATGCAATTGGGCTGGTGTGATTTGTGATGAAAGCCATGGAAGAGTG AAAGCTTTGAATCTGAGTAACATGGGCCTTGAAGGCCCTATTTCACCACAACTGGGTAATCTCTCTTTCCTTGTTGAGCT TGACCTCCATGGCAACAAATTCTATGGTAAGTTACCACAAGAGCTATTTCAGTTGCACCAACTGAAATTGCTTGACTTGA GCAACAACAACTTAGAAGGAGAATTAACAACAGCAATAGGGGAATCATCAAATCTTCAACACTTGAATCTTGGCAGCAAC AATTTTATTGGTTTGATCCCTCAATCTATGTTGTACAACTTGTCAAAGCTAGTGCACTTAAACTGTTCATTCAATTTCTT CAAAGGAACCATTCCATCTGAGATTGATCAACTTGACCGGTTGAAGATTTTGGATTTGAGAAATAACACGCTCTCAGGAA CCATACCACCAACCATTACAAACGTGTCTTCACTTGAAGAACTCCATCTATCTTACAACTCCTTATCAGGAGAAATTCCA AAAGGAATTGGTGATCTTGGACAGCTAAGAAGAATGCACGTTCAATATAATGAACTTTCTGGCAGCATATCATCAATATT CAACAACTCAGCGTTGCAATACTTAGATCTGGGTCATAATAGTCTGTCTGGTAATCTCCCATCAAATATTTGCCAAGGCC TTCCAAAGCTTAAATCGCTGTATCTTTTCGAAAATGATCTTTCTGGTAAGATGCCAACTGTTTGGTATCAATGCAAAGAT TTGGAAGATTTGGAATTATCATTCAATAGTTTCGACAAAGGACATATCCCACATGATATGGGAAACTTGACCAAGCTTCA ATATTTATATCTTTTTGACAACAACTTGGAAGGTGAAATCCCTATCTCCCTTTTAAACATATCTTCTCTGAGAGAGGTGG TCCTTCAACAAAACAATTTAAATGGAAGTCTCCCACAGGATATGTGTAATCACCTTCCTCAGCTTCAATTACTTAATTTA CGCAGGAATCAATTAGTAGGAAGCATTCCAAAATCCATTGGAAACTGCACATCCCTTGAAATGTTAAGTTTAGGGGACAA CACTTTCACAGGATCTATACCCATGGAGATTGGTGATCTTAATCAAATTAATACAATACTAATGGGAAATAACAGCTTGA GTGGATCCATTCCTTCAAAACTCTTCAACATTTCAACACTCTCATCCTTGTATCTTGCAAGAAATTCACTCTCAGGAACT CTTCCATCAGATATGGGACATGGTCTTCCTAACCTGAAAGAACTCTACCTTTTTAAAAACAAACTTGTTGGGAACATTCC ACATGGTATATCCAATGCTTCTAAGCTCACTGCAATTGATTTCAGCGACAATCATTTCAGTGGTATCATACCAAATGTGT TTGGAGATTTGACAGGCCTCGAATGGTTCGGTTTAGCTGTGAATAATTTGACCACAGATGACCCTACTGAGCTCAAGCTC CTTACTTCCTTGACAAATTGCATAAACTTGGTATATCTAGCTATATCATCGAATAGTTTACAGTCAAAACTTCCCAAATC AATTGGAAACTTTTCCAACTCGCTGGAGAACTTTTTGGCAGATTCTTCTGGAATTAATGGCAACATTCCACTTGAAATTG GAAACATGAGCAACTTGGTCTATTTATCTTTAGGAGGGAATGATTTCGGTGGAACAGTGCCTGGAACGATCAAAAGGTTA CGGAAACTTCAGTATTTGGACCTTGGCTACTGTGGACTGCACGGAACCATCATTGATGAGCTTTGTGAAATCAGGAGTCT GGGTGAGTTAAATCTAACAAACAATAAGTTTTCTGGAGAGTTGCCAACATGCTTGGGAAACATGACTTCTCTTAGAAAGG TTTACTTGGGATCTAACAGATTAACTTCTAGGATACCTACTTCTTTTTGGAATCTCAGAGATATCATAGAGGCTAACTTA TCTTCCAATGCTTTAACTGGAAATCTTCCACCTAATATAGGGCAGTTGAGAGCTGTTGTGCTGCTTGATCTGTCAAGAAA TGAGATTTCAGGCAACATACCTTCAACCATTAGTTTCTTGAAAACTTTGCAAACTCTCTCCTTAGCTCATAACAAATTGC AAGGTTCTATTCCTGTATCACTTGGTGAAATGGTGAGCTTGAGTTTCTTGGACTTGTCCCAGAATCTTTTAACTGGTGTG ATCCCAAAATCCTTAGAGTCACTTGCCTATCTTCAATACATTAACTTTTCATACAATAGGTTACAAGGAGAAATTCCCAA TGGTGGACCTTTCATAAATTCCACAGCTCAATCTTTCCTGCATAATGAAGCACTTTGTGGCAGACCTCGCCTGCAGGTAC CTCCATGTGGTAAACAAGGCAGGCGAAGATCAACGACAAAGCTGCTATTAATCAAAATTATGCTGCCAATAGTTGTGTCA ATCATTTTGGTTGTTGCTATATGCATAATCCTTAAACAACATAAGAAGAAAAAGGTTGAAAATCCACCAGAAGAGGATTT ATCAACTTTAGGAGTTCCAAGAAGGATTTCCTATTATGAACTTGTGCAAGCAACTAATGGCTTCAACGAGAGTAACTTAC TTGGAAAGGGGAGCTTTGGTTCGGTATATAAAGGGGTTCTCTTTAGTGGGATGGTTGTTGCAATTAAAGTAATTGATTTA AATTTGGAAGTAGCATCAAGGAGCTTTGAAGCAGAATGCAATGCAATGCGCAATCTACGACATCGAAATCTTGTTAGTAT TATCAGCAGCTGTTCAAATGTTGATTTCAAATCTTTGGTAATGGATTTGATGCCAAATGGGAGTTTGGACAACTGGTTAT ACTCACATAACTATTGTCTAGATTTCTTGCAAAGATTGAATATAATGATAGATGTGGCATCTGCATTGGAATATCTCCAC CATGGTTCTTCAATACCAGTTGTTCATTGTGATCTGAAGCCTAGCAATGTTTTATTGGATGAAAACATGGTTGCACATGT TAGCGATTTCGGCATTGCCAAGCTCTTGGATGAAGGACACTCTAAAACACATACTGAGACCTTGGCGACTCTTGGCTATG TTGCACCAGAGTATGGATCTAAGGGAATTGTTTCTGTCAAAGGAGATGTATACAGCTATGGGATTGTGCTAATGGAAATC TTCACAAGAAAGAAGCCAACAGATGATATGTTTTCAGCAGAATTAAGCTTGAAAAATTGGATCAATGAATCAATGCCCAA TTCAATGATGGATGTTGTGGATTCTAATTTAGTCCAACAACATGAGGAACAAATAGATGACATGTTGCCTCATATATCAT CTATTTTGGGATTAGCCTTGAGTTGTTGTGCAGAGTCACCCGAAGCACGAATTAATATGATAGAGGTTACTGCATCATTA ACCAAAATCAAAGCTTTGTTCACTCATTGA 

Protein sequence (LotjaGi6g1v0320900.1) extracted from Lotus japonicus Gifu v1.2 Proteins.

MAKLCSHLLFIFVLSLNYFWPCLAMMSRKNTTTDKLTLLAFKSFITLDPNHVTKNWSTSSSSSSLCNWAGVICDESHGRV KALNLSNMGLEGPISPQLGNLSFLVELDLHGNKFYGKLPQELFQLHQLKLLDLSNNNLEGELTTAIGESSNLQHLNLGSN NFIGLIPQSMLYNLSKLVHLNCSFNFFKGTIPSEIDQLDRLKILDLRNNTLSGTIPPTITNVSSLEELHLSYNSLSGEIP KGIGDLGQLRRMHVQYNELSGSISSIFNNSALQYLDLGHNSLSGNLPSNICQGLPKLKSLYLFENDLSGKMPTVWYQCKD LEDLELSFNSFDKGHIPHDMGNLTKLQYLYLFDNNLEGEIPISLLNISSLREVVLQQNNLNGSLPQDMCNHLPQLQLLNL RRNQLVGSIPKSIGNCTSLEMLSLGDNTFTGSIPMEIGDLNQINTILMGNNSLSGSIPSKLFNISTLSSLYLARNSLSGT LPSDMGHGLPNLKELYLFKNKLVGNIPHGISNASKLTAIDFSDNHFSGIIPNVFGDLTGLEWFGLAVNNLTTDDPTELKL LTSLTNCINLVYLAISSNSLQSKLPKSIGNFSNSLENFLADSSGINGNIPLEIGNMSNLVYLSLGGNDFGGTVPGTIKRL RKLQYLDLGYCGLHGTIIDELCEIRSLGELNLTNNKFSGELPTCLGNMTSLRKVYLGSNRLTSRIPTSFWNLRDIIEANL SSNALTGNLPPNIGQLRAVVLLDLSRNEISGNIPSTISFLKTLQTLSLAHNKLQGSIPVSLGEMVSLSFLDLSQNLLTGV IPKSLESLAYLQYINFSYNRLQGEIPNGGPFINSTAQSFLHNEALCGRPRLQVPPCGKQGRRRSTTKLLLIKIMLPIVVS IILVVAICIILKQHKKKKVENPPEEDLSTLGVPRRISYYELVQATNGFNESNLLGKGSFGSVYKGVLFSGMVVAIKVIDL NLEVASRSFEAECNAMRNLRHRNLVSIISSCSNVDFKSLVMDLMPNGSLDNWLYSHNYCLDFLQRLNIMIDVASALEYLH HGSSIPVVHCDLKPSNVLLDENMVAHVSDFGIAKLLDEGHSKTHTETLATLGYVAPEYGSKGIVSVKGDVYSYGIVLMEI FTRKKPTDDMFSAELSLKNWINESMPNSMMDVVDSNLVQQHEEQIDDMLPHISSILGLALSCCAESPEARINMIEVTASL TKIKALFTH 

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
Phobius 1 24 24 -
SignalP_EUK 1 24 24 -
Phobius 1 3 3 -
Phobius 4 16 13 -
TMHMM 5 27 23 -
Phobius 17 24 8 -
Phobius 25 868 844 -
Pfam 33 74 42 6.3E-10
Gene3D 33 190 158 8.8E-44
PANTHER 36 164 129 0.0
PANTHER 36 164 129 0.0
SUPERFAMILY 46 390 345 8.5E-61
SMART 101 125 25 10.0
SMART 125 154 30 400.0
Pfam 151 169 19 0.13
PANTHER 156 216 61 0.0
PANTHER 156 216 61 0.0
Gene3D 191 290 100 4.4E-30
SMART 198 227 30 63.0
SMART 198 221 24 170.0
Pfam 200 259 60 2.6E-8
PANTHER 210 265 56 0.0
PANTHER 210 265 56 0.0
SMART 222 246 25 13.0
SMART 269 288 20 340.0
PANTHER 269 353 85 0.0
PANTHER 269 353 85 0.0
SMART 270 293 24 71.0
Pfam 272 294 23 1.3
Gene3D 291 388 98 7.8E-24
SMART 294 317 24 210.0
SMART 343 369 27 370.0
PANTHER 356 447 92 0.0
PANTHER 356 447 92 0.0
SUPERFAMILY 360 483 124 4.76E-23
SMART 367 391 25 120.0
Pfam 368 427 60 8.3E-8
Gene3D 389 486 98 2.4E-25
SMART 392 416 25 7.8
PANTHER 450 1202 753 0.0
PANTHER 450 1202 753 0.0
SMART 464 488 25 230.0
Gene3D 487 563 77 4.2E-17
SUPERFAMILY 488 827 340 8.63E-61
SMART 489 508 20 190.0
SMART 489 513 25 30.0
Gene3D 564 857 294 3.7E-84
SMART 616 648 33 560.0
SMART 688 714 27 690.0
SMART 688 711 24 31.0
SMART 736 760 25 360.0
Pfam 741 797 57 1.3E-7
SMART 760 781 22 73.0
SMART 784 810 27 250.0
SMART 784 807 24 35.0
Phobius 869 891 23 -
TMHMM 869 891 23 -
Gene3D 889 1002 114 3.7E-24
Phobius 892 1209 318 -
SUPERFAMILY 907 1200 294 7.15E-75
ProSiteProfiles 928 1209 282 36.471
SMART 928 1207 280 4.1E-35
Pfam 929 1196 268 4.6E-44
ProSitePatterns 934 956 23 -
Gene3D 1004 1207 204 4.8E-58
ProSitePatterns 1047 1059 13 -

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 Protein kinase activity Catalysis of the phosphorylation of an amino acid residue in a protein, usually according to the reaction: a protein + ATP = a phosphoprotein + ADP.
Molecular function Protein binding Interacting selectively and non-covalently with any protein or protein complex (a complex of two or more proteins that may include other nonprotein molecules).
Molecular function ATP binding Interacting selectively and non-covalently with ATP, adenosine 5'-triphosphate, a universally important coenzyme and enzyme regulator.
Biological process Protein phosphorylation The process of introducing a phosphate group on to a protein.

Expression data

Expression pattern

Expression pattern of LotjaGi6g1v0320900.1, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.

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