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LotjaGi5g1v0045400.1

Overview

Field Value
Gene ID LotjaGi5g1v0045400
Transcript ID LotjaGi5g1v0045400.1
Related isoforms 5
Lotus japonicus genome version Gifu v1.2
Description Receptor protein kinase; TAIR: AT2G26330.1 Leucine-rich receptor-like protein kinase family protein; Swiss-Prot: sp|Q42371|ERECT_ARATH LRR receptor-like serine/threonine-protein kinase ERECTA; TrEMBL-Plants: tr|I1MX81|I1MX81_SOYBN Uncharacterized protein; Found in the gene: LotjaGi5g1v0045400
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr5:7667501..7676704) extracted from Lotus japonicus Gifu genome v1.2.

ATTTCCCCACAAGCTCACAGATAATGGCATGGCAAAACTGCACTGAAAGTGACCTCTTGGCATCAAAAGTTAAACCAATG GCCCAGCATAGCATAGTGTACAGTGTTATTTACTATGGTTGAATGGCATAGCACTAGGATAGCATAACAGTTTAAAGAGA GAGAGAGAGTGAGATAGATGTCATGCAAATGTAGAAGGCCAGAAGAGAGAGAGAGAAAGAGAAAGAGAGTCTAGTGTTGC AGAGTTGCAGGTTCTAGCAGAAATGGTGGCAGATGATGGTTTTAACTTTATGTGTGAAATAATTTTCCTCTCTATTAGTA TTATTATTATTATTATCTCTCTTCATCACTTCTTTTGTTCTTCTTCTTTTCTTCTCTCTCTATCTTTCCTTCTCACAGTA CTTGTATTAGTAGGGGAGTGGAATTTGTGCCAGAACAACGATGTGATTGAACACCCAAAGCTACGAGCTTTGTTTCTGTT ACATGGAAAATCCAAACACCCTCTAATTATTATCACATAAAAAGCATAAATATATACAGAATTTCACAGAAGAATACTCC CAAACACAACTCACCTTACCCTTTTCAATGCTGCTGTGAAATTATTATCATAGCATAGCACCCTCTTCTTCTTCTGCTTC TTTTTCTCTTTCTTCTCTCTCTGGTTCCTTGTGTGTGAACAAGAGGCTATAGAAGGAGCTTGTTGGTGATTGTTGAGTTG GTTTTGGTGATTCAGCTGATGTGAAGTGGAAGTTCTGAAGTTGCAGCTATGGCATTTCAATTTGGATTGTTCCTTCTTCT CACTTTGGTCATTTGTTTGAATGTCGGTTCAGTTGTTTCAGATGATGGTGAGTGTGGTTTAGTACTGTTTTTTTTTTTTT TTAAGGTTTTAAGGTTTTTTGTGTGTGTGTGTGTGTTTGGAATGGAGTTTCCTTGACATATCATGAGTGTGGAGGAATAA GGTAGAAAGTTGAAACTTTTGCTTTTGTGGTTTGTGACTGCCATTGTTTCAAAAGCCATGTTCTCCATGTGTTTCAGTTT CTTGTTTCTTTTTTCTTGGTGAAGGGCATTGCTAAAAGACTAAAGGCTGAAAATTTTGAACTTTTCTTTTAACTTCTCTC TTTCTCAGCTACCAAACTCCATTATCTTCAGCTGGTCCTATATTCTTAAGTCAGCTCCTTTTTCCCACAAATGCTAATTT AAACATGGTTATGTTTTGGGATGTTGTGGTTTTTCTTTGTAATGCTGGTGCTAATTTCCACTTTGTAGTTCGAATTAGAT GGCTTCTACTACTTGTGCTTTCGTTTTCTACATGGGTAGTAGAAAGATGATTTTCATGTGTGTTGTAACTTCTAATATAC TCCTAATAATAATTCGTTTAATGTTTGCTTCTTGTCTCTATCAAGAATATAAATTTATAGAAATGAGTATGACAATGAAG AAATTGGTTTCTTTTGTCTCTATGTTCTGCTTAGTTAATGTTTGATTGTTTCAACTGAAGGAGCCACATTGTTAGAGATG AAGAAGTCATTCAGGGATGTGGAAAACATTCTATATGATTGGACAGATTCACCATCATCAGATTATTGTGCCTGGAGAGG AGTCAGTTGTGATAATGTCACCTTCAATGTTGTTGCACTGTGAGTTTCTGTGTCCTTGGACATTGTTTTTAGCTCCTTCC TTGACAATGGAAAACTAATTAGTTTTCACTTTTTTCCCACACTGTATGTATTCTGCAGCAATCTTTCTGGGTTGAATCTT GATGGCGAAATTTCGCCTGCAATTGGGAGTCTTAAGAGCTTGGTCTCTATGTAATTGCTGCACTCCTTCAGACAAATTTC TTAAATTCACTCATGTCTGCAGTAGATATAGTGGTAAGCATGTGGAATTTGTAGTTTTGCTTATCATTCTTGCTTCTTGT TTGATGCAGTGACCTCAGAGAAAACCGGCTCTCCGGGCAGATACCAGATGAGATTGGTGACTGTTCTTCTTTGAAAAACC TGTATGTCTCACTCTCTTAAGAACTGAATCCAGTTTATAATTAGACAACCTCACAACGAATTTTAACGTTTTACTGTGTT CTTAGGGACTTGTCATTTAATGAAATACGAGGGGATATACCATTTTCAATTTCCAAGTTGAAAGAACTGGAGAACCTGTG AGTTTTTGTTAGAATTTCTACATGAATAATAATTTTATTTTGCCAGTCTTCAGATATTGTTTTGACATGTTTTTTATTTG TAAATGTTATCTCAGGATTTTGAAAAACAATCAGTTAATTGGACCAATTCCTTCAACATTGTCTCAGATTCCTAACTTGA AGATTCTGTAAGTCATTTTTCTTACTTATCATTTGAATCATTTACCTACTTATAATACTAATATAGGATCTATGACTTAC ATTCTCAACTCCTGGAAAATATGTTCTAGAGACCTAGCACAAAATAATCTTAGTGGGGAAATACCAAGGCTTATCTATTG GAATGAAGTTTTGCAGTATCTGTGAGTATAACCAATATTGAAATGAAATTATCATTTCTTTGAAGTTTTTATTTGGGTTT CGATCGTATTGCCAACTTTTTTATTTTGTTTGTTTCCCTTTTCATGATATAGGGGCTTGCGAGGGAACAATTTGGCTGGT TCACTATCGCCAGACATGTGCCAGTTAACTGGGTTGTGGTATTTGTAAGTTACACAATCACCATCTTTGTATTATAAGCA CAAAAAGTATGAATTTTCTGAGGCTTTGTTCATACTATTTTCATATTTTGTAGTGATGTGAGAAACAATAGCCTAACAGG AAGTATTCCTGAAGACATTGGCAACTGTACCTCCTTCCAGGTCTTGTATGTACTCCGACTGTATGACCTACTTTTTCACC CTGGTTTATTTTCTTTTCACCTCCTTGATGTCTTCTGTTGATGCCAGGGATTTATCCTACAACCAACTAACTGGGCAGAT ACCATATAATATTGGATTTCTGCAAGTAGCAACTTTGTAAGTGTTGCGTGATCTATTTTAAGTTAATTAAAAATAAAGCT GATATTTGATGTTCCACTTCCCTTCTATTGGAGTTTCTTAGAAGATTTGTTTGAATTTTTAGGTCACTGCAAGGAAATAA ACTCTCTGGGCATATTCCATCAGTGATTGGTCTCATGCAAGCACTTGCTGTCCTGTAAGCATTGTTAGTAGTTTGTAAAA TTTACTCCATGTAATTTAGTCACTAACTTGATGTTCCTTTGCCATTGGTTTTATTCCAAATTTCCAATTCAGAGATTTGA GTTGCAACAATTTAAGTGGACCCATTCCCCCTATCTTGGGAAATTTGACCTACACAGAAAAGTTGTAAGTATAAACAACT AGTTCTATCCCTTAGTTGAATTTGTCCTAAATTGTGCATATCAATAACTTTGTGAAAATTTTGAGACTCACTTTTTGTCA CAATCTTATGAAATGTTTGTAGGTACTTGCATGGAAATAAGCTGACCGGCTTCATTCCCCCAGAGCTTGGAAATATGACT AAGCTTCACTATTTGTAAGATGCCTAAGCAAGCAGCTCCCTCTCAAATTGTTTATTGGGATTTGGTTCTGAATTCACAAG TTCTATGTGGAACCTTTACAGTTGTCTACATGACATTGTGTTTTTGAGTGGTTTCGCTTTGAACCTTACATGTGGCCTAG AGGCACATCTTGGAAGTTTATCTTTCCTGTCTCTTACACACAATTCATCATCTTGTCTTTTAATATTTTATAAGTTCTAA CACTGAATTAGACTTCATAAGTGTAAGCCTGGGTTTTCTGCAAATTACATTGTTAATTCAACAGTCTTAACTTGGTGAAA TTTGACTTCAGATTTGCCTTTAATGTTCAACCTTTTGTAGGGAACTGAACAATAACCATCTTAGTGGACACATCCCTCCC GAGCTCGGAAAGCTTACTGATCTCTTTGACTTGTAAGTGCTGTTACTTTGAAGTGCCAATTTTGTTTGTTGATTTTGCTT AAGATTGATAAAATATCCATCGTATATGCAGAAATGTCGCTAATAATAACCTTGAGGGGCCAATTCCTGGTAATATTAGC TCCTGCAAAAACCTTAACAGCCTGTAAGCAATAAAACTTGTTCTACTACTTTGCTACAATGATTTTGGCCATACATTAAG ATGACGTAATTTGTTTCTACTCTCTTAGCAATGTCCATGGGAATAAGCTGAATGGAACAATTCCCCCTACTTTGCAGAGC TTGGAGAGTATGACTTCCTTGTAAGTTTTACCTTGAGTTTCTATGACTTTTGTTTGTACATACCTGCTGCAATTCTAACA TGTTGATTCTACTGTTCCATCTTCTCGAAAAACATATTGATGCACAAACATTTACATGCACACACATCTGGATTACTACC ATGTTTAGCAAATTCTTCGCTAGTTCAAGCTTTAACCAATTACTCTTTTCTTATTTGGTTCATTGTTTCTTTTATTGACC TCTGTAGGAATCTTTCTTCCAACAATCTTCACGGTTCCATTCCAATTGAACTGTCACGAATTGGTAATTTGGATACATTG TAAGTACGAATGTATCTGATATGTCTCCTTACACAATATCTTTGAATGACTGAATCCATACTAATAGATTATTTCATCCC AGGGATATTTCAAACAATGATATATTTGGCTCCATTCCTTCTTCCCTTGGCGACTTGGAACATCTTCTGAAGCTGTGAGT TATCTGCCTAGTTATTTTTAAGAACCTGGGCTGTTTCTTTTTACTGATAGCTTGTATTCATTTTGCTAGGAATCTAAGCA GAAACAATTTGACGGGAGTTGTTCCAGCAGAATTTGGTAATCTTAAGAGTGTTATGGAAATGTAAGTCAGTTATTTTTCT GATGAAATCAAGGAGGTTCTTACTGTTTTTACTGATTATTCTATTTGATTATATGTTGCAGTGATCTTTCAAATAATGAA CTCTCTGGCTTTATTCCTGAAGAACTTAGCCAGCTTCAGAACATAGTATCATTGTATGCATCTCTGTATCTTTCTTCCAA TATTTCTTTTATATCCTATTATGCTTTTGTTAATGAAGTCTTACCGTACTTTTATCTCCTTAGTTTGATTTTCATGTATT ATTATGGTGCTCTAATGTGTCATTGTTGATATTTCTAATTTTCTTGGTTCGGAATAACAGGAGGCTTGAAAACAACAAAT TGACAGGGGATGTCGCAACTCTTGTAAATTGTCTTAGTCTCTCTCTGCTGTAAGTTAAGCCTCCTTTTTTGAACAATTTG CCACTCTTTCCCAAATACCATGTCTCCTTTACCTAATAAGTTGAATAATTGTTGTATATTCTGTACTGATGTGATATTTA TTTTATATTTTGTAGTAATGTGTCCTATAACAATTTAGTGGGTGATATTCCCACAAGCAACAACTTTTCCAGGTTCTCCC CTGACAGGTGAGCGTCATCACTTTTGATCATTGTCTTTATGGTCTCTTTAACTTACAGAGCAATGTAGTTTAGTTGGAGA CCAGCATGTTCAATTGATTGATGCCACCTTGTGTTATCTGCAGTTTCATAGGAAACCCTGGTCTTTGTGGTAATTGGCTG AATTTGCCCTGTCATGGTTCCCATCCAGCGGAGCGAGGTATGCATTTGCCCTAGATATTATATGCCTTGCCATACTGTGA TCATCCTGAAATCTCGTCTCAAAATGCATTCAGTACTCAAGCATGCATATACAAATTTTCTCAAAAGCATGTACATGTCT TGGTTTTTTTTATCTTTTAGAAGGATTTTCAAGGATGTCATGAAGATAAGCTGTGTTCTCCCAGTGACATTCTTCTGTTC AATAGATAAATATTAGTTGTGAAGTTCTGCAAAATAAGCTAATATATGATCTTGATCATGCAGTTACATTATCGAAGGCG GCTATTCTAGGAATTACTCTTGGTGCCCTTGTAATTCTTCTCATGATACTGCTGGCAGCTTGCCGACCGCAGAATCCTCC TTTTCCTGAGGGGCCACTTGACAAGCCAGGTACTTATCTTTGTTGCATCCTTGCAATTGAAGTTCTAGCCATCAACACCC TGAATTTCAAATTATTTGAAGTTCAAACCCTCATCACGGCTTACTTTCTTTTATATCAAGCATTAATTCAAAGAGCAAGT TGGTAATTTTTAGGCACCAATTTTTAGTGGATATGACCTTAATCCCATAGTCACAGAATTTTGCAGTTTGTATAATGGTG TGGTTTAAAGTTGATATGGCTACTTATAACTTCATAGGATTTGGTAATTTTGAATGTATTTTGATAGTATTGTATCATTC TTTCTATCAAAACTGAAGTTGACAAGCAACTGACTGCACAAGCTTGGAAATTGACAGTTACTTACTCACCACCAAAACTA GTGATTCTTCATATGAATATGGCGCTTCATGTGTATGACGATATCATGAGGATGACTGAAAATCTGAGTGAGAAGTATAT AATTGGATACGGGGCATCAAGTACAGTTTACAAATGTGTTCTTAAGAATTGCAAGCCAGTGGCCATCAAGAGGCTCTACT CTCACTACCCACAATGCTTGAAAGAATTTGAGACCGAACTTGAGACAGTTGGAAGCATTAAACACCGCAATCTGGTCAGT CTTCAAGGCTACTCTCTGTCCCCATATGGTCACCTTCTGTTTTATGACTACATGGAAAATGGCAGTCTATGGGATCTTCT TCATGGTAAGTCCCAACTTTATGTTGATGTTGCATACTTGCATGTTGCCCTGTATTTAAAGTATTTTTTTCATAATCTCC TATTTGATATGGTGGACTATTAGATATCATGCAATTCTTCTAAGGTGTATAACTAACTCATGAAGTTTCTAGTTTCATCA TGCATGATTTTTGCTTGAGATCTTGAGTCCTTTCTTCTTTGATGTATGACTTTGATGTGTTCCTTATGTTCAGGACCTAC CAAGAAGAAAAAGCTGGACTGGAATCTGCGTCTGAAAATTGCACTTGGAGCAGCTCAAGGGCTTGCTTATCTACACCATG ATTGCAGTCCCCGCATCATCCACAGGGATGTGAAGTCATCAAATATTTTGCTAGATGCAGACTTTGAGCCTCATCTCACT GATTTTGGCATTGCCAAAAGTCTCTGCGCCTCAAAAACCCATACTTCAACTTACATAATGGGCACAATTGGCTATATAGA CCCTGAGTATGCCAGAACTTCCCGGCTCACTGAGAAATCTGATGTGTACAGCTATGGTATTGTTTTGCTTGAGTTGCTAA CTGGGAGGAAAGCTGTTGATAATGAATCCAACCTCCATCATCTGGTCAGTTTTTCTACACATTCCTAAACATTCTTATTG TCCTACACTAAAAAAAATCCTGAGATTTGAGCTAAGGTGTGTGTGTAATCTTAATTAGCATAGGCTAGGTGTGTGTGTTT TTTTTTACTTTTTCTATATCCTTAGTATCTAGATACTGTGTTATGCTAGAATATTTTAGCCCTTCTCTTCAAACTTCATA TTTTCGCTCTTCTGGACTTAAGACAACCATTGACTAACCACGAGTGTGACATGGTGGTTGCTCACCTACCTATTGTCCCT TAACCATGATGTCAGGGGTTCGATCCTCTCCATGGGAATGAAAAACATTTCGTGGCCAGCCGTTCACTGTTAACTGTTAG CACCCGCGGTGGGGGATTAGTCACTGGCTCACTGCTGCCAGACGCCAGTACTTTGGGCTCACCCAAAAAATGACAACTGT TGACTTGTGATTTAAGATTGTTAATCTGATTTGCTAACTTCATATTGATACTAATCTTTGATTATTTAGTGAGGCCATAC TCTCCTATTATGTCTTATGAATTATTTTGAGACTCAATCCACAGCTATACTTAGAGACAGTTCATATTTTGTTCCCACAT TGTCTGCCCGAGTTGATGATTTTCACATGCCAATTATGACCATATCAAATTGTGCAGGTTTTGTCAAAGACAGCAAGCAA TGCTGTAATGGAAACCGTTGATCCGGACATCACTGCAACATGCAAGGATCTGGGAGCAGTGAAAAAGGTTTTTCAGCTTG CTCTCTTATGCGCAAAACGTCAGCCAGCTGACAGGCCCACAATGCACGAAGTGGCACGTGTGCTGGGGAGTCTCGTGCCG CCACCACTCACCCCCCCAAAGCAACCAGCACCCCAACCTGCATCACACCACCCCTCTGCCAAGGTGCCATCGTGCTACAT GGATGAGTATGCAAATCTCAAGACTCCACACCTTGTGAACTGTCCCTCCATGAGCACCTCTGATGCACAGCTCTTTCTCA AGTTTGGAGAGGTAATCTCCCAAAACAGTGAGTGAGGATTCTGAAAATCAAATCAAATCTACATTTCATGTACATTAAAC CCGAAAAAGAAACAAAATGGATTAGGCAGGGAAAAGTTGGTGTACAAGTTAATGAAAAAGTGTATAAAAATGTTTGGATC AGTTTCTCTTTTTCAGAATCAATTCTGGAATTGATTTTGGCTTTTGAATCTATTGTGGAAGGGTATCTAATCATGCAGTT AGTGTCAGTTTTAGTTTTGTTTGGGAGTAGAGAGATATGTATGCACCTAACTACCAATTTAAAAGGTGCAGTAAACTCAA TTCTTGTACTCTTATGTTTGGTAGCAGAAAAAGCTTGCAGTAGTGAAGGGTTTGGGGCCACTGGGCCAAGTGGGGTAGGT AGCTTTTAATGGTATAGGAGGAAGCAGTGCATAATGTGTGACAAGCAATAATGCACTGATTCTTGAGCTGGCCTGGACCA GTCTGAATACTAGCATGCAATGTTCAGCAGAGTGGCCCTTGCCTCTTTTACTACCTGAGGCCATTTAATCTAAGGGTGCT GTGTGTAATTAGATCATCAAATTTTGGGTCACTGGGGCTCCCATGAGATTAAAAGCATGCCATTGGTTTCTGTGCCTTGT TGACTGAAAAAATGTGATGTGATCATTCCGGGTATTTAAGATGTGTCTACGTTTATGTTTGGAATTTTTAAAAAAAATTG ATTTTGAACTCAGAATAAATTTTGTGAAGAAACTTGTGAGTCATGAAGAAGGGTGTCATCTATTGTGGTTCACTGAAAAA GTGAAAGTTCACTTTAACTAAAACCGTTAGATATAATGCTTAAATATTCAATGATCTTAGATTCAATACAAAAAAAAACT ATAA 

CDS sequence (LotjaGi5g1v0045400.1) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGGCATTTCAATTTGGATTGTTCCTTCTTCTCACTTTGGTCATTTGTTTGAATGTCGGTTCAGTTGTTTCAGATGATGG AGCCACATTGTTAGAGATGAAGAAGTCATTCAGGGATGTGGAAAACATTCTATATGATTGGACAGATTCACCATCATCAG ATTATTGTGCCTGGAGAGGAGTCAGTTGTGATAATGTCACCTTCAATGTTGTTGCACTCAATCTTTCTGGGTTGAATCTT GATGGCGAAATTTCGCCTGCAATTGGGAGTCTTAAGAGCTTGGTCTCTATTGACCTCAGAGAAAACCGGCTCTCCGGGCA GATACCAGATGAGATTGGTGACTGTTCTTCTTTGAAAAACCTGGACTTGTCATTTAATGAAATACGAGGGGATATACCAT TTTCAATTTCCAAGTTGAAAGAACTGGAGAACCTGATTTTGAAAAACAATCAGTTAATTGGACCAATTCCTTCAACATTG TCTCAGATTCCTAACTTGAAGATTCTAGACCTAGCACAAAATAATCTTAGTGGGGAAATACCAAGGCTTATCTATTGGAA TGAAGTTTTGCAGTATCTGGGCTTGCGAGGGAACAATTTGGCTGGTTCACTATCGCCAGACATGTGCCAGTTAACTGGGT TGTGGTATTTTGATGTGAGAAACAATAGCCTAACAGGAAGTATTCCTGAAGACATTGGCAACTGTACCTCCTTCCAGGTC TTGGATTTATCCTACAACCAACTAACTGGGCAGATACCATATAATATTGGATTTCTGCAAGTAGCAACTTTGTCACTGCA AGGAAATAAACTCTCTGGGCATATTCCATCAGTGATTGGTCTCATGCAAGCACTTGCTGTCCTAGATTTGAGTTGCAACA ATTTAAGTGGACCCATTCCCCCTATCTTGGGAAATTTGACCTACACAGAAAAGTTGTACTTGCATGGAAATAAGCTGACC GGCTTCATTCCCCCAGAGCTTGGAAATATGACTAAGCTTCACTATTTGGAACTGAACAATAACCATCTTAGTGGACACAT CCCTCCCGAGCTCGGAAAGCTTACTGATCTCTTTGACTTAAATGTCGCTAATAATAACCTTGAGGGGCCAATTCCTGGTA ATATTAGCTCCTGCAAAAACCTTAACAGCCTCAATGTCCATGGGAATAAGCTGAATGGAACAATTCCCCCTACTTTGCAG AGCTTGGAGAGTATGACTTCCTTGAATCTTTCTTCCAACAATCTTCACGGTTCCATTCCAATTGAACTGTCACGAATTGG TAATTTGGATACATTGGATATTTCAAACAATGATATATTTGGCTCCATTCCTTCTTCCCTTGGCGACTTGGAACATCTTC TGAAGCTGAATCTAAGCAGAAACAATTTGACGGGAGTTGTTCCAGCAGAATTTGGTAATCTTAAGAGTGTTATGGAAATT GATCTTTCAAATAATGAACTCTCTGGCTTTATTCCTGAAGAACTTAGCCAGCTTCAGAACATAGTATCATTGAGGCTTGA AAACAACAAATTGACAGGGGATGTCGCAACTCTTGTAAATTGTCTTAGTCTCTCTCTGCTTAATGTGTCCTATAACAATT TAGTGGGTGATATTCCCACAAGCAACAACTTTTCCAGGTTCTCCCCTGACAGTTTCATAGGAAACCCTGGTCTTTGTGGT AATTGGCTGAATTTGCCCTGTCATGGTTCCCATCCAGCGGAGCGAGTTACATTATCGAAGGCGGCTATTCTAGGAATTAC TCTTGGTGCCCTTGTAATTCTTCTCATGATACTGCTGGCAGCTTGCCGACCGCAGAATCCTCCTTTTCCTGAGGGGCCAC TTGACAAGCCAGTTACTTACTCACCACCAAAACTAGTGATTCTTCATATGAATATGGCGCTTCATGTGTATGACGATATC ATGAGGATGACTGAAAATCTGAGTGAGAAGTATATAATTGGATACGGGGCATCAAGTACAGTTTACAAATGTGTTCTTAA GAATTGCAAGCCAGTGGCCATCAAGAGGCTCTACTCTCACTACCCACAATGCTTGAAAGAATTTGAGACCGAACTTGAGA CAGTTGGAAGCATTAAACACCGCAATCTGGTCAGTCTTCAAGGCTACTCTCTGTCCCCATATGGTCACCTTCTGTTTTAT GACTACATGGAAAATGGCAGTCTATGGGATCTTCTTCATGGACCTACCAAGAAGAAAAAGCTGGACTGGAATCTGCGTCT GAAAATTGCACTTGGAGCAGCTCAAGGGCTTGCTTATCTACACCATGATTGCAGTCCCCGCATCATCCACAGGGATGTGA AGTCATCAAATATTTTGCTAGATGCAGACTTTGAGCCTCATCTCACTGATTTTGGCATTGCCAAAAGTCTCTGCGCCTCA AAAACCCATACTTCAACTTACATAATGGGCACAATTGGCTATATAGACCCTGAGTATGCCAGAACTTCCCGGCTCACTGA GAAATCTGATGTGTACAGCTATGGTATTGTTTTGCTTGAGTTGCTAACTGGGAGGAAAGCTGTTGATAATGAATCCAACC TCCATCATCTGGTTTTGTCAAAGACAGCAAGCAATGCTGTAATGGAAACCGTTGATCCGGACATCACTGCAACATGCAAG GATCTGGGAGCAGTGAAAAAGGTTTTTCAGCTTGCTCTCTTATGCGCAAAACGTCAGCCAGCTGACAGGCCCACAATGCA CGAAGTGGCACGTGTGCTGGGGAGTCTCGTGCCGCCACCACTCACCCCCCCAAAGCAACCAGCACCCCAACCTGCATCAC ACCACCCCTCTGCCAAGGTGCCATCGTGCTACATGGATGAGTATGCAAATCTCAAGACTCCACACCTTGTGAACTGTCCC TCCATGAGCACCTCTGATGCACAGCTCTTTCTCAAGTTTGGAGAGGTAATCTCCCAAAACAGTGAGTGA 

Protein sequence (LotjaGi5g1v0045400.1) extracted from Lotus japonicus Gifu v1.2 Proteins.

MAFQFGLFLLLTLVICLNVGSVVSDDGATLLEMKKSFRDVENILYDWTDSPSSDYCAWRGVSCDNVTFNVVALNLSGLNL DGEISPAIGSLKSLVSIDLRENRLSGQIPDEIGDCSSLKNLDLSFNEIRGDIPFSISKLKELENLILKNNQLIGPIPSTL SQIPNLKILDLAQNNLSGEIPRLIYWNEVLQYLGLRGNNLAGSLSPDMCQLTGLWYFDVRNNSLTGSIPEDIGNCTSFQV LDLSYNQLTGQIPYNIGFLQVATLSLQGNKLSGHIPSVIGLMQALAVLDLSCNNLSGPIPPILGNLTYTEKLYLHGNKLT GFIPPELGNMTKLHYLELNNNHLSGHIPPELGKLTDLFDLNVANNNLEGPIPGNISSCKNLNSLNVHGNKLNGTIPPTLQ SLESMTSLNLSSNNLHGSIPIELSRIGNLDTLDISNNDIFGSIPSSLGDLEHLLKLNLSRNNLTGVVPAEFGNLKSVMEI DLSNNELSGFIPEELSQLQNIVSLRLENNKLTGDVATLVNCLSLSLLNVSYNNLVGDIPTSNNFSRFSPDSFIGNPGLCG NWLNLPCHGSHPAERVTLSKAAILGITLGALVILLMILLAACRPQNPPFPEGPLDKPVTYSPPKLVILHMNMALHVYDDI MRMTENLSEKYIIGYGASSTVYKCVLKNCKPVAIKRLYSHYPQCLKEFETELETVGSIKHRNLVSLQGYSLSPYGHLLFY DYMENGSLWDLLHGPTKKKKLDWNLRLKIALGAAQGLAYLHHDCSPRIIHRDVKSSNILLDADFEPHLTDFGIAKSLCAS KTHTSTYIMGTIGYIDPEYARTSRLTEKSDVYSYGIVLLELLTGRKAVDNESNLHHLVLSKTASNAVMETVDPDITATCK DLGAVKKVFQLALLCAKRQPADRPTMHEVARVLGSLVPPPLTPPKQPAPQPASHHPSAKVPSCYMDEYANLKTPHLVNCP SMSTSDAQLFLKFGEVISQNSE 

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 5 5 -
Phobius 1 24 24 -
SignalP_GRAM_POSITIVE 1 24 24 -
SignalP_EUK 1 24 24 -
Phobius 6 17 12 -
Phobius 18 24 7 -
Gene3D 18 186 169 9.4E-53
PANTHER 22 933 912 0.0
PANTHER 22 933 912 0.0
Pfam 24 64 41 4.9E-10
Phobius 25 580 556 -
SUPERFAMILY 48 259 212 5.1E-47
SMART 91 115 25 27.0
ProSiteProfiles 93 115 23 5.14
ProSiteProfiles 117 140 24 7.019
ProSiteProfiles 141 163 23 4.847
SMART 163 187 25 63.0
ProSiteProfiles 165 187 23 7.127
Gene3D 187 259 73 2.3E-20
ProSiteProfiles 189 211 23 4.886
SUPERFAMILY 204 539 336 5.1E-66
SMART 211 235 25 100.0
ProSiteProfiles 237 260 24 5.787
Gene3D 260 345 86 3.0E-23
ProSiteProfiles 261 282 22 4.963
SMART 282 306 25 280.0
ProSiteProfiles 284 306 23 5.871
SMART 330 354 25 13.0
ProSiteProfiles 332 355 24 6.21
Gene3D 346 441 96 1.6E-28
ProSiteProfiles 356 378 23 4.693
ProSiteProfiles 380 403 24 5.563
Pfam 380 439 60 1.7E-6
SMART 402 426 25 100.0
ProSiteProfiles 404 426 23 5.194
ProSiteProfiles 428 451 24 6.449
Gene3D 442 575 134 8.9E-34
SMART 450 473 24 4.2
Pfam 452 511 60 1.3E-10
ProSiteProfiles 452 473 22 5.864
SMART 474 498 25 90.0
ProSiteProfiles 476 497 22 4.909
ProSiteProfiles 500 522 23 5.309
ProSiteProfiles 523 545 23 5.54
Phobius 581 601 21 -
Phobius 602 982 381 -
Gene3D 620 722 103 8.3E-21
SUPERFAMILY 625 913 289 6.88E-74
ProSiteProfiles 647 921 275 34.195
SMART 647 913 267 4.8E-23
Pfam 650 910 261 1.3E-43
CDD 653 916 264 8.84696E-95
ProSitePatterns 653 675 23 -
Gene3D 723 918 196 2.1E-61
ProSitePatterns 768 780 13 -
MobiDBLite 917 931 15 -
MobiDBLite 917 939 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 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 LotjaGi5g1v0045400.1, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.

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