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LotjaGi2g1v0158800.1

Overview

Field Value
Gene ID LotjaGi2g1v0158800
Transcript ID LotjaGi2g1v0158800.1
Related isoforms 4
Lotus japonicus genome version Gifu v1.2
Description Potassium efflux antiporter; TAIR: AT5G51710.2 K+ efflux antiporter 5; Swiss-Prot: sp|Q8VYR9|KEA5_ARATH K(+) efflux antiporter 5; TrEMBL-Plants: tr|K7MIQ5|K7MIQ5_SOYBN Uncharacterized protein; Found in the gene: LotjaGi2g1v0158800
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr2:55974165..55985851) extracted from Lotus japonicus Gifu genome v1.2.

AATCCCTCCATAATATTAATATTATAAATGAAATACAATGCAAACTAACTAGAAGAGGCGCCACCATCACCATCTCCATC ACCATCACCACTAGCATCTCAAATTCACAAACAAAACCGTTTCCTTCCGATTTGGTTCCCTCTCCCTTTCCATTTCATTT CTCCATGTTTTCCCCAATCTGAGCCAAACCGAACAAGAAACTCGACAAACAACAACCATGATGGCGAAGAACAATTGGGG TATGTTTGGATTCTGGGTCTGCGTCCTCTCCTTCTTGATCTGCGCCGGCGTTGGTTCTCCGGCCAGATCCGACAAGGAAA CCCGTGAGAGATTCTACGGCGTTATGGTGAATTCCACTGCGCCTGAATCCAATGACACCTTCGCTAAGATGTTCGATCGC GTTCTCGAGAAGGAGTTTTCAGAAAATGACCAGCCTGAAGGTTTTTGCATTCTGCTCTTTATTTTCTGTTTTTGGCTTGA TGGGGTTGTTAAAATTTGGAACTTTTTGTTGTTTGCGGGAAAATAGCTTGATGGGGTAGTTAAAGTTTGGGACTTTTTGT TGTTTCGCGGGAAAATTGCTTTGTGGGTTAGTTCAGCTGGAGTGAAGGTTCTGTTGAATTGAATATGCAGTAGAAAATGA TGCATTTGAAGTTTGGTTGTATTTGTTTTGGTGTGAACGGGTGTGTGTTTGCGTAGAAGAAAATATGGTGGACATGAGAC CCTTCTAGGTAGCTTTTTGGTGAGTTGGAAAGATGTTTTGGTTGAAGCAGTTTTAGACTTAGAACATCTAATGGAAGAGG TTAGTGAGCACGTGCAATGGAGATTGGCTTGTGGGTAGACTTAATAGTTCTTACTTCTTATTCTGCTTATGGATAGTGGA GTTCTAGGGTGGTAAGATTCTCTTAGTGGTACTTGGGCTACTAATTGCATCTAGATCTGGTGGATCTATGGCAATGTTTG GAGCTGAATATTACTGCACCAAGTTTGTGAGATTAGTAATGGTTCATGGTATTAGGGACTTGCTATAATTGTTGAAAGAC ATGTTTGAGGTTAAATTCGTGTTGAGAGGTGCGCAAGAAATTGCACTCACCCCCTCACTGCCTAATGTTTGATGTCACAC AGGGCTTATGAAGCAATGTGTTTTTAATTAATAAAGGTAGTTTGGCTATGTTAAGATGTATTGGTCATGAATGTGTTAAT ACTGGTATGGCGGATGTGATCTGTCGTTTATCCTTACGATCTTTCCTGATGTATTACTGGTTGGTCATGGCTATTACATT TTAACAGGCTGTGTTTTGAATTTGGATATTGTCATGGATGATTTGTGAGTATATTAGTCTTAATGTTACTCTTCTGTACT TTCGATTGTTACCTAATTTATTCTCAGAGTTTGCTTTTGAGATGAAACACTAGATTCAGTTGCCAATGTTCAAAATGTGA AACATGACGCTTGTTGATTTGTTTTTATTAGTCTGGCTGGTATTGTCATTGATATTTTCTATCTTTAACAGGATCCGATA AAAGCAGCTTCAATAGCAGTGTAGCTGATCAGCAGGTAGACCTGCTACTTTGGTTTTCAATAGTAGTCTTGAAGTGGATT ATTTTAACTGAAAACAAGCTGTCAATTTCAATTGATACATGAAAAGTGAAATGAGTCCATGTTTGGGATCTGTTTGTTTT TGCCCTCAAATATTGATCTATCAGTTTAATTGTCTTATTCACTTCGATTGAAGAGTGACTGATTATTGCTTTTCATTCTA TTTTCTCTTCCTCTAGTATTTAGATGTGTTCATAGCTCCAATAGTAAATTGTGAGTTATGTTTTTTTCTTGAGGTAGCCC TCAAACATTTTCATATTGTGCTACTAATAACACCTACTTCATGCCTTCTTTCAGTTGAAATTATATTGTTATGGTAGTTA AAGAGGAAAAGAGAGAAAAAGCAATATCCAAAATAATAAGATTATATTGGTATGGTATATGCTTGATGATAGTATACAAA ATACTAAACCAGTGGTTATTTTTATTCAATAATTAGGTTGAGGCTGGTGCAGTAGGATACTAGGATTGTAGTACTAAAGT ATTAGGCAGCCGAAATGCACTATTACAAATTATATTAACTTATTACCCTGATTAAAATAGGTAAACATATAATGAAAGAT CATGAAAATAAGAATCAACTCCTCATTGCTTCCTAATTAGATCATTTAGATGACTAATTGATTCCATAATATGTTTAAAA TGTTCTTACGTAATCTAAACTCTAAAGTAGTCTTCAATATATTCTGAGCATGAGCATTCTAACATTTTTCCCATAGTTGA GTGGCTCTCTGAGGAAAGATTATTCCCACCATTTTTCTAATGTAAAGATGATTTTTGACATTATTGATGTGCCCAAAATT TCGAAGGAAGAATAGAAAATTTAGTATACTCTAGATTGATAAGTTCAAAATGCACAATCTAAAGAACACCAGTTGAATTC GCACTTTCTAGAAAGAGAAGAAAATTGATGAAACCTCACGTTTACTCAACTAACAGAGAAAAAGAAAAGAATTTCAGAGA ATAAAATGCCTATCAGCCACCAAGCTGTAGGTCCCAAGCCCCAGGCCATTTCTCGCTTCAGTTTTCTTCCCGCCCCTCTA TGCTGTCCTGCCTGTCTTTATCCATGATAGATGAAACTGTCTACATTTTCTCCACTTTCTGCATAACCGCCTCCTCTCCT TGTTGCTTGCCACGTATCCCTTTTTTCTTTCCAGTGTAGACTCTCCAAACCCTTGGGCCATTGTCCTGACCCAATAACTG ATCCCACTGGTCTTGGGCTCTATCAAAAAACAAGAGTGATAAGAACTCTGTTTAATTTCCACTAAGCTAGAGAGCTCACT TCATTCAAGTAATATGAAATGTGAGTGCATCCTCTCTTTTAAATGGACTTGCCAATAAGTTGGGCAATCACTACTTCACT AGTTGTGAGACCATTAATGGGCATGGGGAGCTCAACTTACAATAAAACAACATTAGCACTTTAAAATTAAATGACGTGCT CCCATGACTCTACTCAAGTTGCTATGAAATAACATTAAAAAAACGTGCTGCAAATGAGTCAGCTTATCAAGCCTTTAGTT TTCCTTCCAAACTGCTTTAGTTTCAGCCTAAATAAGTAACATATACAGAGGTGAGCATTCTAAACCATTTCTCTTCATAA CTCAGTAGTGTAAGTGTAAGTAACCCAGCTGAAATTCATGTTCTCCTTCATAGAAGCCAAAGACTCCATCTATTTATCTC TTGAATATGTGATTGGGCCAATTGAAGAAATGGATTTAGCTTACCATTCTTGGTCAGAATCCGCAATCTCATCAATTCTG GTCTTCTTTTGCAGGCTACATTGGAGACTGTAGCTAAAATTACTCATGACAAAGCAAAGAGAAATGATACGCATGAGGGA AAGTATGTTCATATGTTTCTGGATATAGTTTCTCAGTTGCTTGATACTTGGATGTAACTTTGTTCATATGCCTTGTAATT TATATCCTTTTTGAATTATTATTTTCCACAGTAGCACAAAGTCGTTTCAGTTTCAAGATGTGTTCTCCCTGGAAAATGAA GATTCTGATGATGTGACAACTTTGATTGACAGCAAGGTGTGCTAGAAAGTGTTATGAAGTCTTCTGGGTTATTCTCCACT ATGATGTTAAATATTTTATTTTCATATTTGAACCTGCTCACTTGTTTATGCTATCGCATGGCAGGACAATGTCTTTGTGA TGTCAAACAAGAAATCCAAATATCCTGTGCTTCAAGTGGATTTAAGGTTGATATCTATTTTGGCTTTTACTTTTGTAGTT ACTATTCAGTGAATTATTTTGTCATCTTGGCTGACTAATTGAAGCAGTTATGTTAAGAAATTGCTTTAAACATGGACAAA ATGCTATGTTTCTGGGCTAATTTCTCTTGTTCACGATTCTATATTGCTGGTTTTGGATTGTATTATTTTGACGTTAGGTT AGTTTGTGTTAGGAATCAACAAGTAGGTTTAGGAGATATAATTATGAAAACGACAAACCAACCGTCTTGTACCCTTTTTA ATTTGGAAAAAAAATAAAAGGATTTAGATTTTTCCTTATTTGGTCTTGGAGGTTTGTGTGCTTAAAATGGAGAGTGGGGC AAGATGATGGGGTTCGAGCAAGTATTTTTGCTGAATTTATGATATTATTAGATGTTGATGTCTGTGTTGTGTAATTTTGA AATTTGTTTGTGTCGCTTCTGTCTGTTTTATTTATTTTCTACCATGAGTTAATCTACAATTTTGTCGGTGCACATTTATG CAGGCTAATATCAGATTTAGTGGTCGTCATAGTTTCTGCAGCCATTGGTGGAATCGTCTTTTCCTGTTTGGGGCAACCGG TCTGTAATTGCTACTATTCCTCATTGTGACATTTGATGATTTTCGAATTTAAATCCTTACTATATTGAGCGATCTCTTTG CGAGTGATCTATGCTGAGTATTGGATTACATCTGTTTTTTTTATACATATTGTAGGTTATTGTGGGCTATCTTCTTGCAG GCTCCCTTATTGGACCAGGGGGTTTGAAATTCATCAGTGAAATGGTACAGGTATGTTGTTCTGAGCGACTCACCTTAATT TTTGGATGAAGTAAGCTGTGGTCAATTTTTTGATTGCCTAATCTCATCTTCTCTATACAAATTTGTCGCCTCTCTTATTG GGGTGGTTAAACACTACTCTATATATGATTTACAATCTTGAGTGTCTTGAAATGTAGATTCCTCCATAGTCCATGAGTGT CAGGTGTGATGATGATTATCATGATTCTTCGCTGCCATTAAATGTTCTCCATCCACCATCTCTCAAAGTTCTATAGAAAT TGAGTTGTCTTACTAATCATAATTCTCCTCTTCCATTTTATCTTATAGTATGACCAAGTATGGAACTGATATATTTTATA GGACAGTGGAGGAATTATTTTGTACATGGGTTAAGGATAGGATTTTAAGATGGAGGAAGGTTAGGAATTGAGGTGTATTT AAGTAATTTTAATAAGGTCGGCTATTTGGAGGCAATACTGGAATGAGATGATTATTAAGAGCCTGACTGGTGGTTATTGG AACATGTGCAGAGCTATTGAAATTGATTTAGTGGTTTGGTAAATTCCAGGCCCGATTCTGGCACAAACAAAGATAATCTA TGGAGTTAGGGTACTTTAAACATTCCTTCAGCTTCTAGTGACGTTAATATGATCGATACATCAGTAGTAGAGTATATAAA ACAAATTTTGATAGTCCATGATGCCTGCTCGTTCCATGGAAGAATCAATGAAAGGATAATATTTCCATTGTCTTTTTAAC CTTGATGTACGATTCATATGTTGTCACTCATTTTGCACTGGATAACCATTTCTTTATCATTTTTATTCAGGTTGAGACTG TTGCACAATTTGGAGTTGTATTTCTTCTCTTTGCTTTAGGGCTGGAGTTTTCCTTGGCGAAGGTTTGCGATTCATGTCTT GCAAAAATGTTTTTCACTGTGTCACAAATTTTCATGCATAAGCTTGAACCTTGCTAAATATCAAATCATATGAATAGATT GAATGGATTCACTTGGGCTTTTGATTTGTGGCTGTAGTTTAATAGAACTTTTCTTTCCATTTTCTGAGGAGAACCTGTTT GGAATTTTTTATTCATGCAGTTAAAAGCTGTGGGGCCTGTTGCTGTTCTTGGAGGTCTGCTTCAAATTTTATTATTCATG TTTCTTTGTGGCATTCTTTCCATGGTATGGTGCTGGCTGTATCTAATATGGTCTTCAATAGAATTAAGGAGCTACAATTA TGTTATAATGGGTGCTAAACATTGTTGGCCATTTGATTTATAGTTATTTGGAGCCAAGTTATCTGAGGGTGTTTTTGTTG GTTCATTTCTGTCAATGTCATCAACAGCAGTGGTATGTTTTTAAACCATTTCCAGAAACTTACAATCTGCATTTTTATTA ATGGTTCTTAATAGATTCTAAGAATTATAAGCTACTTTCACGGTTTGACAGGTGATAAAGTTTTTGGTGGAGCGGAATAG TAATAATGCTCTTCATGTTCAAGTGACTATTGGGACTCTTATTTTTCAGGTATCTTGTTCAGTTATAAATGTTAAACTTA TTAACTTCTCATAAAGCAACACTAAAGCTTGATTCAACTTGTTGGTCATTCTTTCTTCGACCACTTTTTATATCAGGATT GTGCTGTGGGTTTACTATTTGCTTTGCTTCCAGTTTTGGGTGGTAACAGTGGTCTTTTACAAGGAATTGTTTCAATGGGA AAACTGTAAGTTTATCCATCTGGACTTTTTTTCTCTTTTTTAATCGTATGACGTATCCCTTTTAATGATAAATAACAATT TGTTCAGTTGATGCAAATCAATTGAATCTTGTAATTTTGCCATATACATGTTCAATTTTCTGCATTCATATATGCTGAAC CACCATAATTTATGGGTACACTGCTTGCAATTTACTATACAAACCCTAAAGTTTTCATTCAAATTAACTTCAGTATGCTA ATTCTAAAATCTTAAAATTTAGAAACACTGCACACGATGTTTTTTATGCCTAAATCACATGAATCTTACCAAAAGATTAG ATTTGTCTTCCAAACTGAACAAAGCGTACATGTGGTAGAGACTGTAATTTGTAGGTAAACTGTGACTCTATTCTGTGCGC TCACATGAGAGAGCACTGGGAAATGTGATGGATCATATTGTTGGATTTTTGGTGAAGAGAACAACCACAAGTATGCATAT GGCTTCTATGTTGCCAGTTTTTATCAAGTGGAGGTTTCCATGGGCCTATGTTGTCAATCTCAGATCTCGGTGTGTAGTCG CCGGCCCCAAAAAATATTACTAAATCAATAGCAGGATGGTCGAGATAGTGAATTTTTGTCTATATTTTGTGTAATTTATA CCATATATATATATACATACTAAATCAATGGTAAATATTGCTTGAAATTCATAACATATTCATACTTTCGTAGTGGCAAA CTAGCAATAAAAAGTCAATAGGTCTTGGGAGAGCAAGGGCGAAGAGAGTAGGGGACGTGAGGAGAGGGTCGAACTCTTTC CATCTAGGGTTTTTAAAACTGCCTGTAAAAAGCACTCCCAACGTTTAAAATTGGAGGACAATTTTGAAAATGTCGGACCC TTCCTTGTCGTGCGGGAAAATCTGGGAAATGGGCCGAGACGATGAAACGGGATGGGATGGTGAGCACTGTCCCAGTGCCT GGTATGGGACTCTGGGAGCCTGCTGGGATTGACAACTTAACTATGGGCTTTAGGGTTTTTTTGGGGGTAAATCATAGTTT ATCCAAAATTGAACTTATTTGTCATTGGGATAGGTTCTTACTGTTTTCAACTTCAGGTTGCTAGTGTTGTCGTTGTATCT CACTGCTACATCTATATTGTCTTGGTCGTTTGTTCCTCGCTTTCTCAAATTGATGATGCGGCTCTCATCTCAGGTTAGGG TAAAACATATTTGTTTGACTTATTACACTCTCTAGCACTATAGCAGTTCATGAGTTAATTTTTCTTCATCTTCACTCTCC AGACAAATGAGCTTTATCAGCTAGCTGCCGTTGCTTTCTGCTTGTTATCTGCGTGGGTAAGAAAAACCAATCCTGCTATT TTAGAAAACGATTTAGAACCAAATGGTCTTGGGTAACATCAGCCTTATCTGTAGTTTATTGGAGCTTACAATTAGTAGTG ATGGCAAAAGCGAAAAGCCAACCCCTAAACGTAATTTGGAAATCTCTTTCCAGTGCAGTGATAAGCTTGGCCTTAGTCTT GAGCTGGGTTCATTTATGGCTGGTGTTATGGTTTCTACAACAGACTTTGCTCAACATACTCTGGACCAGGTAACATTCGT GGTTTATGACTTCAACTTGTATCAGTCTTATTTGCGTACATACAGTACTTTCCTTAATGCTATCTGAATTCTGAAGTTTT AACTCACTTCTTTGGATCACTAAGGGCACACTTCACTGAAGTTCATATTTTACTGTCTCTTGTCTTGCTTTTTATGTGAT ATTGTTTAATTATTATTGTTATTTTTTCAAATAATCTTGGGTTACAACAAAATAGTTTATTCTGTGTGTATTGTTAGATG GAAGCTGGTCATGCTCTACTTGTAAAACTTGATTCATTATACAGCTTCTCTATTGGAATTGATGTAGTATTCTGCCCATA GGCCCCCTGGCTGCTTTAAGAGAGTTGCTATCTCAAATATGTAGTCAGATTAGGCAACCTATTCATTGTTTATTTTCCTT TTACCCTTCTGTGTATATATTTTTCTTGTTTTGAAAGATTGCTTATCATCTCTTAGTTGGTTTGTTTCCTTTTTAAATAA ATTATTTCCCCATAAATAATGTAGAATTATGTGTTTAGAATAATTTAGTGCATATAAAATACTGGATTATGAACTACGTT TCAGTAGTCATAACTCGTAAGATTAGATGGAGTCTGATAGATACCCGCATAGGAACACATAGGAAGTTAGTTAGCAGCTT TGTTAGTTGAATTCTTTTAGTATTTCAATTAGAGTATTATCAGCTTAAGGAGTTAGTTAGTATGGAGAGGATATTATAAA TAAGTGGGTTATTGAGAGTGTTAGGCATCTTCTGGGATCATTTAGGAAATTGGGACTTGGGAGAGAGTAGAGCCTCTCGA ATGCTCTACAACTTTGTACATCCTCTCTAATTCCCAAATAGGAATTAGGGTTCATATTCCATAATATCACAGTTTCTATC TTCTTCTTGGCTGGGTTCTATCGGAGTCACACCTAATGAAGTGCATTTATGTTCACATATTGCAGGTGGAACCAATTCGT AACCTGTTTGCAGCTCTCTTCCTCTCAAGTATTGGTATGCTTATACATGTCCACTTCCTTTGGAACCATGTGGATATCTT GCTGGCAGCTGTTATTCTGGTTATAGTTGTTAAGACTACTGTTGCTACTATAGTTACAAAGGCCTTTGGGTACAGCATTA AGACAGCACTTATTGTAAGTTAACTTATCAGCTTGTTAGATGATATATATTAGTTAAGTAGACATCACATTTTTAACACT GAATAATCTCCACGTCAACTTAGGTTGGTATCTCACTTGCTCAAATTGGAGAATTTGCTTTTGTTCTCCTGAGTCGCGCT TCAAATCTTCATCTTGTTGAGGTTTTTGCTTTCTCTCACCTTCTGCTTAAATTTTGTAATTACTGTTTGGTTTTGTCTGG CCACCTTCTCTTAGAAATTGATACATCTGATCTTGAGCATTTATTCTTTTCTAGCTTACCAATATACAAAAATGTGTGGG CATTGCAATCTCATTTGAATTAGTAGAGAATTTTTAGTAATGCAAATGTCCTGAGGGATGTCCCATATATCTAAGTTTTA GGTCAAAAGTCAATATGTGGTGGCAAGTTTGCTAGTGTGGTCCCTTGCCAAGTGCCCAAGTCCATGAAAGGAGATCTCCC CAGTGTTCTGAACTGTCCCAAAAATTTCATTGGTCAATGAGGGCATTCAACAACCACCAAGACATGATTCATTTTTATTT TATTTACTAAGTGGATAATGCAAGGAACAACTGCATAGAGAGGGTTTGTCTTCTAGGTCTGCAAAATAATGGATTCCATA CGGGAAAGAGGGGAGGGGTAAGCTATCCATTTTGTCACATTTATGATTTCTGAAAATATGCGGTAGGAACTAGGAAGATG GTTGATCAAAGACCCTAAGAAATGAAATATCACGTTATTTCTGGTGCATTGGATGAATCACTTATAACTGAAATAATTTC TTATGGGCCTGAATATTTAAGTGAAAGATGCTCACAAGTTTCACTGTTGGTGATCTAGTGGCACTTAAAGAGTTAAAGTT CCTTGCCTTTCCATTCTTCTAGCATATGCATTGTCATTGAAGAGTTTTGTTTGCATATTCTTTGCAATTCCTTTTCTCAG TGATTTTTGGTTATTTATGTAAACTTTCCATTTTCTCTCTCTTTCTCTCTACCTCTCTTGCTGACCTCTGATTACAATAT TTTAGGGGAAGATGTATCTTCTTCTTCTGGGAACAACGGCTCTTAGTCTGGTACGTTTCTTTTAGAGGCTGCTCCATTCT ATGCTTCATTTTGTTTAACCATGAAAGATGTTTTGCAGGTTACAACGCCGCTTTTGTTTAAATTGATACCTGCTTTCATG AATCTGGGTGTTCTCATGCACTGGTTCCCCGCTGAAAGTAGTACACCAAATGAGGTCTCTCATATTTTCACTTGTGATTC GATTGCTTTTACTCACAAATAACTATTTATCACTTTGTCATTCAAAGTAGGCTGCACTTTTTTAGGGGTTATGAATATGA TATGATTGCAAATCATATAGAACTTTCTTGGGGGTAAAGATTGCATGTTTTATGGTACATTTTGTTAATTACAATTCACA TCACTAGCTTGAAGGGTTGAACTCCTTCATCATCTGCTTCATAATTATTGTAAATTAATCTGGGGTGACATTTTTTACTG GATATTTCCTGCCATTGCTTCTTTGCGTTTAAATCTTATATTGAGGCGTAAATATTTAATCTATCTTCTTCGGGCAAGGC TTTGGGTCTTCTTGTAAATATATTCATGCTGACCTATATTGCATTTACTTCAAAGATAGACATTCTTTACTTATAACTGC TGGCACATTCCAACTTTATTTTTTACTCTCTTGGCTTCCCCTAAGTTGATTGCAATATTCCTTTACATGTATAATCTTTA TTTTGTATTGAATTGAGTATTGGAAAACCAAGGATGGTCTTCTCCTGCCAAAAATCATGAATATATAGCAACATAACATG TCTTTTACTTTTAACAGGGGAAAGCTTTGATGATCGAGGCAAGCAGAATATTGTGACTTTCCAAGTTTATAAAAAAAAAA GTTTATATGACATCAAATAGTATATTGGAGGCAATTATCTACTTTTTGGTACCTAGTGAAATCAGGATTTGTTTCTGTTG CAAGTTCCATGGTGAGCTTCAGAAGAATTAGTCAGCATAGTCTCTTCCACTGAAAGTCAATGGAAGATCTCATGTACATA GGCATTTGATTTTTATATTCTTTTAGCAATGTATATAGGAAATGACATGCCAGTCTTGTTGATCATGCTGATCTAATCTG ATCATGACATACCCTGGTTAGCCTATATTTGCTGCTATAAAGTTGCTAAAGTCGAAATGATTGACAAAATTTATAGAAGA ATTCACTCGTGTAACTTTTTGTATGAAGATTCTCCCAACAACATTGTTCTGTAACACATGTAAGGACAACATTTGAATGA AGATCTTGATGAATAAACTGCATGTTAACCAGCACTTTAAATATTAGTCAAGTGTGCAGATGTTTTGAACACCAAAATGA TCGTCGAATTATTCAAGGGATTGATTTACACAAAATGTCTGTTTGTATGTAGACCTCAATACTCCTACACTATACAATAT ACATAATGCAAAACAGATATTTTTTTTTCCCATCATGCTCAATGGCGTAGCGTAATCTATATAGCCGACCTCACTTAGTG AGATAAGACTTTTATTGTTGTTGTAGTTGTGTATCATTCCTCATAACTATCTATTTTGTTGATGATTTTTGTTAGATCTA GTAGGAA 

CDS sequence (LotjaGi2g1v0158800.1) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGATGGCGAAGAACAATTGGGGTATGTTTGGATTCTGGGTCTGCGTCCTCTCCTTCTTGATCTGCGCCGGCGTTGGTTC TCCGGCCAGATCCGACAAGGAAACCCGTGAGAGATTCTACGGCGTTATGGTGAATTCCACTGCGCCTGAATCCAATGACA CCTTCGCTAAGATGTTCGATCGCGTTCTCGAGAAGGAGTTTTCAGAAAATGACCAGCCTGAAGGATCCGATAAAAGCAGC TTCAATAGCAGTGTAGCTGATCAGCAGGCTACATTGGAGACTGTAGCTAAAATTACTCATGACAAAGCAAAGAGAAATGA TACGCATGAGGGAAATAGCACAAAGTCGTTTCAGTTTCAAGATGTGTTCTCCCTGGAAAATGAAGATTCTGATGATGTGA CAACTTTGATTGACAGCAAGGACAATGTCTTTGTGATGTCAAACAAGAAATCCAAATATCCTGTGCTTCAAGTGGATTTA AGGCTAATATCAGATTTAGTGGTCGTCATAGTTTCTGCAGCCATTGGTGGAATCGTCTTTTCCTGTTTGGGGCAACCGGT TATTGTGGGCTATCTTCTTGCAGGCTCCCTTATTGGACCAGGGGGTTTGAAATTCATCAGTGAAATGGTACAGGTTGAGA CTGTTGCACAATTTGGAGTTGTATTTCTTCTCTTTGCTTTAGGGCTGGAGTTTTCCTTGGCGAAGTTAAAAGCTGTGGGG CCTGTTGCTGTTCTTGGAGGTCTGCTTCAAATTTTATTATTCATGTTTCTTTGTGGCATTCTTTCCATGTTATTTGGAGC CAAGTTATCTGAGGGTGTTTTTGTTGGTTCATTTCTGTCAATGTCATCAACAGCAGTGGTGATAAAGTTTTTGGTGGAGC GGAATAGTAATAATGCTCTTCATGTTCAAGTGACTATTGGGACTCTTATTTTTCAGGATTGTGCTGTGGGTTTACTATTT GCTTTGCTTCCAGTTTTGGGTGGTAACAGTGGTCTTTTACAAGGAATTGTTTCAATGGGAAAACTGTTGCTAGTGTTGTC GTTGTATCTCACTGCTACATCTATATTGTCTTGGTCGTTTGTTCCTCGCTTTCTCAAATTGATGATGCGGCTCTCATCTC AGACAAATGAGCTTTATCAGCTAGCTGCCGTTGCTTTCTGCTTGTTATCTGCGTGGTGCAGTGATAAGCTTGGCCTTAGT CTTGAGCTGGGTTCATTTATGGCTGGTGTTATGGTTTCTACAACAGACTTTGCTCAACATACTCTGGACCAGGTGGAACC AATTCGTAACCTGTTTGCAGCTCTCTTCCTCTCAAGTATTGGTATGCTTATACATGTCCACTTCCTTTGGAACCATGTGG ATATCTTGCTGGCAGCTGTTATTCTGGTTATAGTTGTTAAGACTACTGTTGCTACTATAGTTACAAAGGCCTTTGGGTAC AGCATTAAGACAGCACTTATTGTTGGTATCTCACTTGCTCAAATTGGAGAATTTGCTTTTGTTCTCCTGAGTCGCGCTTC AAATCTTCATCTTGTTGAGGGGAAGATGTATCTTCTTCTTCTGGGAACAACGGCTCTTAGTCTGGTTACAACGCCGCTTT TGTTTAAATTGATACCTGCTTTCATGAATCTGGGTGTTCTCATGCACTGGTTCCCCGCTGAAAGTAGTACACCAAATGAG GGGAAAGCTTTGATGATCGAGGCAAGCAGAATATTGTGA 

Protein sequence (LotjaGi2g1v0158800.1) extracted from Lotus japonicus Gifu v1.2 Proteins.

MMAKNNWGMFGFWVCVLSFLICAGVGSPARSDKETRERFYGVMVNSTAPESNDTFAKMFDRVLEKEFSENDQPEGSDKSS FNSSVADQQATLETVAKITHDKAKRNDTHEGNSTKSFQFQDVFSLENEDSDDVTTLIDSKDNVFVMSNKKSKYPVLQVDL RLISDLVVVIVSAAIGGIVFSCLGQPVIVGYLLAGSLIGPGGLKFISEMVQVETVAQFGVVFLLFALGLEFSLAKLKAVG PVAVLGGLLQILLFMFLCGILSMLFGAKLSEGVFVGSFLSMSSTAVVIKFLVERNSNNALHVQVTIGTLIFQDCAVGLLF ALLPVLGGNSGLLQGIVSMGKLLLVLSLYLTATSILSWSFVPRFLKLMMRLSSQTNELYQLAAVAFCLLSAWCSDKLGLS LELGSFMAGVMVSTTDFAQHTLDQVEPIRNLFAALFLSSIGMLIHVHFLWNHVDILLAAVILVIVVKTTVATIVTKAFGY SIKTALIVGISLAQIGEFAFVLLSRASNLHLVEGKMYLLLLGTTALSLVTTPLLFKLIPAFMNLGVLMHWFPAESSTPNE GKALMIEASRIL 

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
SignalP_EUK 1 26 26 -
Phobius 1 5 5 -
PANTHER 3 568 566 0.0
PANTHER 3 568 566 0.0
Phobius 6 26 21 -
TMHMM 10 29 20 -
Phobius 27 165 139 -
Gene3D 160 543 384 5.6E-77
Phobius 166 194 29 -
Pfam 167 536 370 1.1E-71
TMHMM 167 189 23 -
Phobius 195 213 19 -
TMHMM 209 231 23 -
Phobius 214 233 20 -
Phobius 234 244 11 -
TMHMM 244 266 23 -
Phobius 245 267 23 -
Phobius 268 272 5 -
TMHMM 270 292 23 -
Phobius 273 292 20 -
Phobius 293 303 11 -
Phobius 304 323 20 -
TMHMM 305 327 23 -
Phobius 324 342 19 -
TMHMM 342 361 20 -
Phobius 343 365 23 -
Phobius 366 376 11 -
Phobius 377 393 17 -
Phobius 394 398 5 -
Phobius 399 418 20 -
Phobius 419 429 11 -
TMHMM 428 450 23 -
Phobius 430 449 20 -
Phobius 450 454 5 -
TMHMM 455 474 20 -
Phobius 455 474 20 -
Phobius 475 485 11 -
TMHMM 479 501 23 -
Phobius 486 504 19 -
Phobius 505 515 11 -
TMHMM 516 538 23 -
Phobius 516 535 20 -
Phobius 536 572 37 -

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 Cation transport The directed movement of cations, atoms or small molecules with a net positive charge, into, out of or within a cell, or between cells, by means of some agent such as a transporter or pore.
Molecular function Solute:proton antiporter activity Enables the transfer of a solute or solutes from one side of a membrane to the other according to the reaction: solute(out) + H+(in) = solute(in) + H+(out).
Cellular component Integral component of membrane The component of a membrane consisting of the gene products and protein complexes having at least some part of their peptide sequence embedded in the hydrophobic region of the membrane.
Biological process Transmembrane transport The process in which a solute is transported across a lipid bilayer, from one side of a membrane to the other.

Expression data

Expression pattern

Expression pattern of LotjaGi2g1v0158800.1, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.

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