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LotjaGi6g1v0314100.1

Overview

Field Value
Gene ID LotjaGi6g1v0314100
Transcript ID LotjaGi6g1v0314100.1
Lotus japonicus genome version Gifu v1.2
Description ABC transporter B family-like protein; TAIR: AT4G18050.1 P-glycoprotein 9; Swiss-Prot: sp|Q9M0M2|AB9B_ARATH ABC transporter B family member 9; TrEMBL-Plants: tr|G7ILW5|G7ILW5_MEDTR ABC transporter B family-like protein; Found in the gene: LotjaGi6g1v0314100
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr6:63220541..63230161) extracted from Lotus japonicus Gifu genome v1.2.

CAGAGTGAGATCGAGAAAGAAAGAATCACGGAAACACTTAATAACTTTATTCTTCTATAATCACCATTCACAGCAATTGC AACTCTGAAAAGTGAGAACTCCTTTTCTCCTCCACAATTCTGATTCAACTTTAAGGTATGTGCTGTTTCAACATTCACAA CTCTAGATTTTGAAAAAGGTTACTCGTGCATGTCAACAATTGATTGTATATAGTCAAAACTAGTTCTAGGAGAAGCTTGT GTGTGAGTAATAATCTTCTGAGTATGAGAATTGATTTTGAGGAAAAAGATATTGATTCAAACATGCTATTACTATACTAA TTTTTTTCCATAATTTATGATTAGCTATGCGCCTTGGTTTGCTGTATATATACATGACTTATTGATTTTGCATGATAAAT TGAGTTTTGGTTGCTCTGAAATGTGTGGGGGTGAACTTTTAAATGATGTTAGATGAAAATTCATTAGTTAGGTTGTAATT ACTCCAATTTTGTAAACTAAGGCAATTCATGAAAGAGTAACAAAATTTAAGACACCTAATAGTCATATGATATGCTTTTA GTAATTTGTACCAAAAATTGCATGAGTGGTAGAGAGAGTTGAATGTGGAGGAGGACAAGTTTGAAACAAGTTGATGTACA ATGTAAATGCATGGAATAAAGCCATTAGCTACTTTGTTACTTTATTTGTGTTTGATTGTTGTGTTACCATGGGTAGACAA AATCTTTGCTTTACACCTTAGTGCACAGTGCACACAAGATTAGCTGTGTTTGATTCAAATTAGAGAAGATTAGAGTGGAG AGCCCTCATTAAAAGAAAATAGAGGGCAGATGAGAGTAGAGATTTTAATGAAAGGAAGATAAGAGATTTTAAAACAATTT TACTTTTACTATCCTTAATTTTTAAATATGATTTTGAATTTGATTTAAAATATGAGGGATAACATTTTTATCTTATACAT TATTTTCCTTTCAAATCCCTTTATTTTTAGAGTGAAAATAAATTTAAGTTAGGAAAGGTTTTAGGCTTTTAGCTACCTCA GTTTCCTTTTAAAAGTTAAACCAAAACAATATAAGTTTAAAAAATTTGTCCCCTCTATTTCTCTCTTACCAAATACCATG TCAGTGCATTTGCTTTAGTTGGCAAATTGACATCGAAGGGCACCATGTGGATTTGTAAAATAAACCCCAAGTTTTATCGA TCCAGTGGTTCACAATGTTAGGATTTGGAAATCAAAATCCATATAATTAGTAGCTTTTACTTTTTTAAAATCTTCTAGAA AATAAATTATCTTTTAAACATATATATATATATATATACTAAAATCAACTTTTTAAAATCTTAAAAAGATGTGCTCTCTA TAAAAATAAAATCACTTTTTACGCAAATTTAAAACTACTTTTTCTTTTCAAAGTTTAAAGTTAAACACAAATGGCCCTTA TCTTTATTTTCGTCTTCTATATTCTTGTAGAGGACCATCATTAACTCTATGGTAATGTATAATAATAATATTAATAGTAA AGAGGAATTATTTTTTTCACACCCATATTAAGAGTTTGTTTGATTAAAAACTGTATTTAAAACTATTTTCAAAGAAAAAA AATATTTTTCAACTTTAAAAAATTGTAATTTGAAGTTGTTCTATCTATTTTAGTTTTTTTTTTTACATTGGAAAGATAAA TTGTAGTCGTTAGGAATCGATCTCTGAACCTCCCCTACCCAACCCATATGTCCCCAGCTCCTACCACTTAAGCAATCATA CGAGACTATCTATTTTAGTTTTAAACAGATACTTAATTTTTAAAAAATGGAAAACAATTTTTAAAAACTGTTATTATGAA GTGTTTTGTAGGTAGTAGTAGATTAAGTTATTTAACATTAGAGATTATTTTTTTTGAAAAGACATAAGAGATTATTTACT AGTTTAAAGAGTATGACATTTCCATTCTTGTTACAAAATCATGTGCCCCATGCATTTTCCCTTAACTGCGTTCTGTTTGA TACCACAATAAAAACGTTTAGAACTCAATGACCTTGGAATGAGTCTCCATATCTTTCTCATGCTCTGTTTTCCTATGCAC CACGTCTCATAATCACTCACTCATTCACTTCTTCTTCTTCCTTGGTTTGCTCTTCACGCAGCGAGCGAGTGAACCATGGC AGACAACAACAACAACAACAACAACAACAACAACACAGAGCCACCTTTACATTCTACATCTTCACAAGAACAACAGAATG ATGAAGGAGCTGCAACCAAAAGAAAATCCAACAAGAACAAGAAAGTTGCGTTCTACAAACTGTTTGCATTCGGTGATCGT CTTGACGTGACGTTGATGATCATTGGCACCATCTGCGCCGCCGCTAATGGAATGACGCAGCCTATGATGACCCTCATATT CGGGAAGCTCGTCAATACTTTTGGTTCCACAGATAAATCCAGAATTGTCCATGAAGTGACTAAGGTAAGTTATAACTTAT AAGATAGATTTTCTGTTGTTTATATGTAAAAAAGAATTTATCTTTTTTGTTTTTTAATGTTGAAAAATCGTTCTTTCAAT GCTGCATTTCATGTTTTGATGTAATGGGGTGTGTCGGCTTGGACGAACATGGTCGGCGGCGGCGGTGGTGGTGCCACTTG TTTAATATGAGAGAGTGAGAGAGAGAGAGAAACAATAGAAAGAAAGAAGAGTGTGATTTTTGATTACTGATTAGATTAAG TGCACGTTTAAATTGAGAGTGAAGTGCTTTAATTTTTGTTTCCCAATTCAATGCATTAGAAGTTGAAAGTCCTTTTAGTT AATCTCAAGGCATAAAAGGGGAAATTTTTGAATTAGGGTATAAGTTTTTTATTTTATTTTTACTTTTCCATTAAACTCAA TTATTATTAAAGGGTTAGAGGGTAAATCAGATGAGACTATTTAATCTTTATTAAGTGCATGAATAAAAGAACAAGTACTG TAACAATTTTATTAGCAGTCCAAATAAGTGGATGATTTTTGGCTTTTTGCTGCATTCCATTCTGTACCTTAGCACTCCCT GTTCAATCATTTGGTGTTTAGTATTCCATCAATACAAATTGTGTTTGCAAAATCTAACTTCAATGTTAACATTATATTTC AGGTTGTGTTACTATTTGTTTACCTGGCTGTGGGATCCGGAATAGCTTCATTTCTACGTAAGATGGCCAAACTTTTTTCC TCTAGTATGCTTATTTATTTATTTGTTAGAATAGAGTACTCTTTGTTTTCAATAAGATGGCACTGGTTTTTCCCTGTGAA AGAATTAGTATTCTATGGGTTGTTCTTAATGATTCCAGCATTCTGATATGAGGGTCATTTTGTTGGATGCTGCAGAGGTA TCTTGTTGGATGGTAACAGGAGCAAGACAAGCCACAAGGATCCGTGGCTTGTACTTGAAAACCATATTGAAGCAGGACAT TGCCTACTTTGACACTGAAACCACAACTGGTGAAGTGATTGGGAGAATGTCTGGTGACACCATTCTCATTCAAGATGCCA TGGGAGAAAAGGTATATAACTATATATGATCCTTTGTGCTAAAATTAAAGCATCATATAATATGGATGTTTGAAAACTCG TCTGAAAATCACAGTGAGAGCCAAGATCAGAGTGGACAAAAACAAAAGCTAAGAGAAGATATTTTTGTCCACCATGATTT GGACTTCAACGTGGAACGAATGAGTTTGCAAACATGCACAATGACCTTCATTAATTGTTATTAGAGTTCAATCAAGTGTC ATAACTCGTGAACTTTCAAGTATGCACTTGTGAGAGTACAATTTATTAAAGAATGAAAGGTTATATTTATGACAGGTTGG GAAGTTTATTCAACTGGCTTCAACTTTTCTTGGTGGCTTTGTGATTGCCTTCATAAAGGGATGGCAACTGGCTGTAGTTT TGCTTGCATGTATACCGTGTGTTATCACTGCTGGTGCAGTCATGTCCATAATGATGTCTAAAATGTCAGCTCGTGGCCAA GCTGCTTATGCAGAAGCAGGAAATGTTGTTGACCAAACAGTGGGAGCCATTAGAACGGTAAGACATAACCATCAATTACA TGCAACGTTCAATGATTAATTTACATTTTTGTTTAACCAATATCCTTGATTTTGTTTTTGAAATTTAATCAGGTTGCATC TTTTACCGGCGAGAAAAGAGCAACAGAGAATTATAATAGCAAGCTAAAAATTGCTTATAAATCCATGGTTCAACAAGGAA TTGCCTCAGGTTTGGGAATGGGAGTGCTTTTGATGATTACCTTCTGCACCTATGGACTTGCCATGTGGTATGGTTCCAAA CTGGTTATTGAGAAAGGATTCAGTGGTGGAAATGTCTTGACTGTAATCATAGCTCTTATGACTGGGGGAATGTAAGTGAA TCTGGCAATGAAATCACATTGTTTAGGCATAATTTTTTTGTTTTAGTTTGTATTTTGTGGAATCTTAATGGTAACTAATT AACTTTTCTTGCATTCTCAAGGTCATTGGGTCAGGCATCCCCAAGCCTAAATGCATTTGCTACAGGACAAGCAGCAGCAT ATAAGATGTTTGAGACAATTAAGAGAAAGCCTAAAATTGATGCTTATGACACCAGTGGCGTTGTCTTGGAAGACATTAAG GGCGATATTGAACTCAAAGATGTTTACTTCAGCTACCCTGCAAGGAAGGATGTGCAGATCTTTGCTGGATTCTCATTATC TGTTCCCAGTGGCACAACTGCTGCTTTAGTGGGTCAAAGTGGAAGTGGGAAGTCTACTGTAATCAGTTTACTAGAAAGAT TCTATGATCCTGATTCTGGAGAAGTACTTATAGATGGTGTGAATTTGAAGAGTTTTCAAGTTAGATGGATAAGAGAACAG ATTGGGCTGGTTAGTCAAGAACCTATCTTGTTTACAGCTAGTATCAAAGAGAACATAGCTTACGGGAAAGAAGGCGCAAC TGATGAGGAGATAAAACAAGCAATAACACTTGCCAATGCCAAAAATTTCATTGACAAGCTCCCTCTGGTGTGTAAATGTT ACAAACTCTTTTCTCACATTAGTGAGTGATTCATGTTTTTTGTTTGTCTTCTATGAAGTTTGATTGAAGAAAGTGAGTGC ATTGTTCTGTTTGCAGGGCCTTGACACAATGGCAGGGCAGAGTGGGACTCAACTTTCTGGAGGGCAAAAGCAAAGAATTG CGATTGCAAGGGCGATTTTGAAGAACCCGAGAATCCTTCTCCTTGATGAAGCAACAAGTGCACTGGATGCTGAGTCTGAA CGTGTTGTTCAAGAAGCATTGGAAAAAGTGATGACAAAAAGGACTACTGTGGTTGTTGCGCATCGCTTGACGACCATTAG AAACGCTGACACCATAGCCGTGGTTCATCAGGGAAAAATCGTGGAAAAAGGTTATATAATTGAACCACCTGTTTCAGTTT ACCCGACGAGCAGTTCTTGATTTTTTTTCTTTTTATTATTATTATTATTGTTGTTGTTGTTGTTGTTGTTGTTGTCAAGC AGTTCACTGTCTAGTTCTTGATACAATATGAAAATCCATTTTTGTAACATCTTTGGAATAAATGTATTAACTTTTGCATG CTTTGTTTGTATCTAGGAACTCATGATGAGTTAATCAAGGATGCTGATGGTGCTTATTCTCAGCTCATTCGTCTACAAGA AGGAGAAAAAGAAGCTGAAGGTAGCCGGAACTCAGATGCAGATAACAGTTTAAATTTAGATAGTCACATAACTCGATCTT CCAGCCAGAGAACACCCTTTGTGAGATCAACAAGCCATGGTTCATCCGCAAGTAGACGCTCCCACTCACGTAGCTTTTCT CGAAGATTTTCAATTGTGTCCGGAGAAATAGAACAAGGGGATATTGAAAAATGCCATCCTGATAATAACAAGCCCAAAAA GGTTTCTTTAAAACGTTTGGCCTACTTGAATAAGCCTGAGGTTCCTATCTTACTACTTGGATCCTTTGCTGCAATAGTAC ACGGTGTGGTGTTTCCAATATTTGGCGTCTTGTTTTCATCGGCCATTACTATGTTCTTTGAACCTCCAGAAAAGCAGAAG AAAGATGCAAGATTCTGGGCACTCCTATATGTTGGTTTAGGTTTAGTTACTCTGGTGGTTATACCTCTTCAGAACTACTT ATTTGGGATTGCTGGTGGAAAACTTATAGAAAGAATTCGTTCATTGACATTCAAAAAGGTTGTGCACCAAGAAATCAGTT GGTTTGATGACCCTGCGAATTCAAGGTATGTTAAGTTGTCAAGGAAACATTAATTATTTATCATTTTTTATTCACTCCTG GTATGAAACTGAAAAAAATGAATCACCTTTCAGTGGTGCAGTTGGTGCAAGGTTGTCTACTGATGCTTCAGCAGTGAAAA GTCTTGTTGGTGACACCTTGGCCCTCATTGTACAAAACATAACAACAATTACAGCAGGTGTAATCATAGCACTCACTGCT AATTGGGCACTTGCTTTGATAGTTATAGCCGTCTCACCAGGAATCCTTGCACAAGGATACCTTCAGATGAAGTTTCTTAA AGGATTCAGTGCGGATGCCAAGGTTTGCCTTACTTTCTGTTTTGTTGTTTCCATTAGTGTTTCCATTAATCAAATGAAGT ATGAATTCTGAAAATCATGACAATCTTCCTATATAGGAGAAATATGAAGAGGCAAGTCAGGTGGCAAATGATGCTGTTGG TAGCATCAGAACTGTTGCATCATTTTGTGCGGAGTCGAAGGTGATGGACATGTACCAGAAGAAATGTTCAGGGCCAGAAA AACAAGGTGTTCAGTCGGGGCTTGCAAGTGGTGCAGGATATGGTTTCTCATTTTTTCTTCTACACTGCACAAATGCTTTA TGTTTCTATGCAGGATCTCGTCTTGTGGCGAGGGGGCAAGCAAATTTTGCTGAGGTTTTCAGGGTACATTCAATAAACTC AATCACCTTGAGATTCTTTACCTTAATTTGATGTTTCTTTTGTCCTTACAAGATATTTTCTGCAGGTTTTCTTTTGTTTA ACAATCACAGCTATTGGGGTTTCCCAGTCAAGTGCCTTGGCACCAGACACAGCCAAGGCCAAAGATTCCACTGCTTCAAT ATTCGAAATTCTTGACAGAAAACCTACAATTGACTCCAGCAGCAATAAGGGCAAATCACTAGAAAATGTTGTTGGTGACA TTGAACTTCAACATGTCAGCTTTAGCTACCCATCAAGGCCTCATATTCAAATTTTCAAGGATTTGAGCTTAAGCATTCCA TCTGGAAAGGTAATAAATCTTTTGGTTGTGCACTGTGCTGATGTTATATTGACAATGTGCAATTTAGTTACATTACATTG CTGATATGATGTGTCTTTGTAGACTGTTGCATTGGTTGGAGAAAGTGGTAGTGGAAAATCAACAGTTATCAGCCTCTTAG AGAGATTTTATAACCCTCACTTTGGAAGCATCCTACTTGATGGAGTGGATATCAAAGAGTTAAGATTAAGCTGGTTGAGG CAGCAAATGGGTTTGGTTGGTCAAGAGCCAATTCTTTTCAATGAAAGCATTCGCGCTAACATTGCTTATGGCAAAGAGGG TGGTGTTGCCGATGATGAGATAATTGCAGCAGCTCAAGCAGCCAATGCACACAACTTCATAAGTTCTCTTCCAAATGGTT ATGATACCTCAGTTGGAGAAAGAGGTACACAATTGTCTGGAGGGCAAAAGCAGCGTATTGCCATTGCAAGAGCGATGCTG AAGGGCCCCAGAATCCTTCTACTTGATGAGGCAACTAGTGCACTTGATGCTGAGTCGGAACGCGTAGTTCAAGAGGCGCT GGACAAAGTCAGTGTGGACAGAACTACTGTGGTGGTAGCTCATCGTCTAACAACAATAAGAGGGGCTGACGTTATAGCAG TGATTAAAAATGGGGTGGTTGCTGAAAAGGGAAGGCATGATGCGTTGATGAAGATCACTGGTGGAGTTTATGCTTCATTG GTATCTCTACATTCAAGTGCATCATGATATCAAATTTCATCTAAACAGTAGAGATCATAGAAGATGGTTAGTCTTTTGGT ATTTAAAATATCTTTCAGATTGTTTTACCCTGTCTTTGAATGATGCATGTAATTTTTCTTTTAGTATGCCTAAATTAGGG TCCTCTTCACTTTGTTTGATTGGTACATGACTACATGGACTTTATTTGAACAGTTGTAACCTCTTCAGTGTATGGTAATA TTCTGTTGTTGAGGTTTTGAGGGGGTTATTTAGTTTACTATAAAGCAAATAAATCAGGTCTTACTGCCTTTGTGCATCTG TCTTTGCTCACTCCATGTGTGTGGGGTAGGCATCCTCTGCACATGCGGGTGATGCAACGTGCCTTACAATAGACTAGAGA TCATTCGGAAAGGATCTCCCTCGAAAATGGCGAGTCGATCCTCCCAGTGAACTGAACGTAGCCCAATCCGACCGCATGAC TGATTAGTGAAAGATAAGATCATGGAGTTATCTTCTCTGACTATTCAAGTTTATGAAGAAGAATAGTTCAATTTAGGATG TATATGACATTTGAGTGCTTGCTCTCTGTTCCTATAACCTCCAGATATTTCCTTCTAATTATTTTCCAGTTAATCTGCTA TACTTGCAATCTGGCTTTTAGTACCAAGGGGAAGAATTATGTTAGCTTTGATAAATACACATTTGTATATGTGTGTGTGT GAGTGTTGTAATGTCTCAGCAGGAATTTGTTGTTACCTTTTTGAGTAAGCAGTGCATATCAGATCATTAAAGTAATAACT AAATAATGACAGAGCATTAAACTGCTGGTTAAGAGTCAAGTATGATATTTGGATAGGTTGCTGGTTAAATCGTCATTTAA TTTATTTATTTTTCTAAATCATGTTTTCTATGTCATGATTTTGAAATTTGTTTTTGGGATAAACTTACAGCAGTTGTTTC ATTTTTGTGCAGTGGTGAATTTCAGATTGATTGGTATATTTGTGTCTTCTGTTCATGCAGTTCCATTTGATTTTGAAAAT CATTTTTCCCCTTCTTTGAACTATTTTATTCCTTTTCTAGATGATATATTTGCAACTTTGTTGGTTCATTACTCAGCTTA CATTTGAAAGGGTAAATTATACTATAACTGGTTGCTTTAGTCAACTACTGAGTTGCAACGGTACATTAAAATGTTTAACA TATATGTTCTGGCTTTTAGATCAGTCAACATTTTAGATTCATGTTAGCATCACAATATTGGCCCCTTTAACATTATCTTC TCCTACACTGAATGCTTTTTACTTTATAGTGTTATTTATAGTCATATCCTGTTTTAGTTGTGTAATGACCTTAAATGAAT TATCTATCTAACTTTCTGTACTATTTTGCAGGTCTTTAACTAAGGACCAGAAACGAATCAAGACTTCCACATTACTTGTA TTTCAAGGACAAAGTTGTTAATGATATTTCTAATTGGTGGAACCTACTATATTCTTATTTGGCATTTATTTTAGCATGAA TTTTGGTGTTTTGGCTTTTGATAATGTCTTTCCACTATAATGTATTGTCTTAATGAACTAACTATAATGTATTCTCTTAA TTCAACTCACGGAACACGTGC 

CDS sequence (LotjaGi6g1v0314100.1) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGGCAGACAACAACAACAACAACAACAACAACAACAACACAGAGCCACCTTTACATTCTACATCTTCACAAGAACAACA GAATGATGAAGGAGCTGCAACCAAAAGAAAATCCAACAAGAACAAGAAAGTTGCGTTCTACAAACTGTTTGCATTCGGTG ATCGTCTTGACGTGACGTTGATGATCATTGGCACCATCTGCGCCGCCGCTAATGGAATGACGCAGCCTATGATGACCCTC ATATTCGGGAAGCTCGTCAATACTTTTGGTTCCACAGATAAATCCAGAATTGTCCATGAAGTGACTAAGGTTGTGTTACT ATTTGTTTACCTGGCTGTGGGATCCGGAATAGCTTCATTTCTACAGGTATCTTGTTGGATGGTAACAGGAGCAAGACAAG CCACAAGGATCCGTGGCTTGTACTTGAAAACCATATTGAAGCAGGACATTGCCTACTTTGACACTGAAACCACAACTGGT GAAGTGATTGGGAGAATGTCTGGTGACACCATTCTCATTCAAGATGCCATGGGAGAAAAGGTTGGGAAGTTTATTCAACT GGCTTCAACTTTTCTTGGTGGCTTTGTGATTGCCTTCATAAAGGGATGGCAACTGGCTGTAGTTTTGCTTGCATGTATAC CGTGTGTTATCACTGCTGGTGCAGTCATGTCCATAATGATGTCTAAAATGTCAGCTCGTGGCCAAGCTGCTTATGCAGAA GCAGGAAATGTTGTTGACCAAACAGTGGGAGCCATTAGAACGGTTGCATCTTTTACCGGCGAGAAAAGAGCAACAGAGAA TTATAATAGCAAGCTAAAAATTGCTTATAAATCCATGGTTCAACAAGGAATTGCCTCAGGTTTGGGAATGGGAGTGCTTT TGATGATTACCTTCTGCACCTATGGACTTGCCATGTGGTATGGTTCCAAACTGGTTATTGAGAAAGGATTCAGTGGTGGA AATGTCTTGACTGTAATCATAGCTCTTATGACTGGGGGAATGTCATTGGGTCAGGCATCCCCAAGCCTAAATGCATTTGC TACAGGACAAGCAGCAGCATATAAGATGTTTGAGACAATTAAGAGAAAGCCTAAAATTGATGCTTATGACACCAGTGGCG TTGTCTTGGAAGACATTAAGGGCGATATTGAACTCAAAGATGTTTACTTCAGCTACCCTGCAAGGAAGGATGTGCAGATC TTTGCTGGATTCTCATTATCTGTTCCCAGTGGCACAACTGCTGCTTTAGTGGGTCAAAGTGGAAGTGGGAAGTCTACTGT AATCAGTTTACTAGAAAGATTCTATGATCCTGATTCTGGAGAAGTACTTATAGATGGTGTGAATTTGAAGAGTTTTCAAG TTAGATGGATAAGAGAACAGATTGGGCTGGTTAGTCAAGAACCTATCTTGTTTACAGCTAGTATCAAAGAGAACATAGCT TACGGGAAAGAAGGCGCAACTGATGAGGAGATAAAACAAGCAATAACACTTGCCAATGCCAAAAATTTCATTGACAAGCT CCCTCTGGGCCTTGACACAATGGCAGGGCAGAGTGGGACTCAACTTTCTGGAGGGCAAAAGCAAAGAATTGCGATTGCAA GGGCGATTTTGAAGAACCCGAGAATCCTTCTCCTTGATGAAGCAACAAGTGCACTGGATGCTGAGTCTGAACGTGTTGTT CAAGAAGCATTGGAAAAAGTGATGACAAAAAGGACTACTGTGGTTGTTGCGCATCGCTTGACGACCATTAGAAACGCTGA CACCATAGCCGTGGTTCATCAGGGAAAAATCGTGGAAAAAGGAACTCATGATGAGTTAATCAAGGATGCTGATGGTGCTT ATTCTCAGCTCATTCGTCTACAAGAAGGAGAAAAAGAAGCTGAAGGTAGCCGGAACTCAGATGCAGATAACAGTTTAAAT TTAGATAGTCACATAACTCGATCTTCCAGCCAGAGAACACCCTTTGTGAGATCAACAAGCCATGGTTCATCCGCAAGTAG ACGCTCCCACTCACGTAGCTTTTCTCGAAGATTTTCAATTGTGTCCGGAGAAATAGAACAAGGGGATATTGAAAAATGCC ATCCTGATAATAACAAGCCCAAAAAGGTTTCTTTAAAACGTTTGGCCTACTTGAATAAGCCTGAGGTTCCTATCTTACTA CTTGGATCCTTTGCTGCAATAGTACACGGTGTGGTGTTTCCAATATTTGGCGTCTTGTTTTCATCGGCCATTACTATGTT CTTTGAACCTCCAGAAAAGCAGAAGAAAGATGCAAGATTCTGGGCACTCCTATATGTTGGTTTAGGTTTAGTTACTCTGG TGGTTATACCTCTTCAGAACTACTTATTTGGGATTGCTGGTGGAAAACTTATAGAAAGAATTCGTTCATTGACATTCAAA AAGGTTGTGCACCAAGAAATCAGTTGGTTTGATGACCCTGCGAATTCAAGTGGTGCAGTTGGTGCAAGGTTGTCTACTGA TGCTTCAGCAGTGAAAAGTCTTGTTGGTGACACCTTGGCCCTCATTGTACAAAACATAACAACAATTACAGCAGGTGTAA TCATAGCACTCACTGCTAATTGGGCACTTGCTTTGATAGTTATAGCCGTCTCACCAGGAATCCTTGCACAAGGATACCTT CAGATGAAGTTTCTTAAAGGATTCAGTGCGGATGCCAAGGAGAAATATGAAGAGGCAAGTCAGGTGGCAAATGATGCTGT TGGTAGCATCAGAACTGTTGCATCATTTTGTGCGGAGTCGAAGGTGATGGACATGTACCAGAAGAAATGTTCAGGGCCAG AAAAACAAGGTGTTCAGTCGGGGCTTGCAAGTGGTGCAGGATATGGTTTCTCATTTTTTCTTCTACACTGCACAAATGCT TTATGTTTCTATGCAGGATCTCGTCTTGTGGCGAGGGGGCAAGCAAATTTTGCTGAGGTTTTCAGGGTTTTCTTTTGTTT AACAATCACAGCTATTGGGGTTTCCCAGTCAAGTGCCTTGGCACCAGACACAGCCAAGGCCAAAGATTCCACTGCTTCAA TATTCGAAATTCTTGACAGAAAACCTACAATTGACTCCAGCAGCAATAAGGGCAAATCACTAGAAAATGTTGTTGGTGAC ATTGAACTTCAACATGTCAGCTTTAGCTACCCATCAAGGCCTCATATTCAAATTTTCAAGGATTTGAGCTTAAGCATTCC ATCTGGAAAGACTGTTGCATTGGTTGGAGAAAGTGGTAGTGGAAAATCAACAGTTATCAGCCTCTTAGAGAGATTTTATA ACCCTCACTTTGGAAGCATCCTACTTGATGGAGTGGATATCAAAGAGTTAAGATTAAGCTGGTTGAGGCAGCAAATGGGT TTGGTTGGTCAAGAGCCAATTCTTTTCAATGAAAGCATTCGCGCTAACATTGCTTATGGCAAAGAGGGTGGTGTTGCCGA TGATGAGATAATTGCAGCAGCTCAAGCAGCCAATGCACACAACTTCATAAGTTCTCTTCCAAATGGTTATGATACCTCAG TTGGAGAAAGAGGTACACAATTGTCTGGAGGGCAAAAGCAGCGTATTGCCATTGCAAGAGCGATGCTGAAGGGCCCCAGA ATCCTTCTACTTGATGAGGCAACTAGTGCACTTGATGCTGAGTCGGAACGCGTAGTTCAAGAGGCGCTGGACAAAGTCAG TGTGGACAGAACTACTGTGGTGGTAGCTCATCGTCTAACAACAATAAGAGGGGCTGACGTTATAGCAGTGATTAAAAATG GGGTGGTTGCTGAAAAGGGAAGGCATGATGCGTTGATGAAGATCACTGGTGGAGTTTATGCTTCATTGGTATCTCTACAT TCAAGTGCATCATGA 

Protein sequence (LotjaGi6g1v0314100.1) extracted from Lotus japonicus Gifu v1.2 Proteins.

MADNNNNNNNNNNTEPPLHSTSSQEQQNDEGAATKRKSNKNKKVAFYKLFAFGDRLDVTLMIIGTICAAANGMTQPMMTL IFGKLVNTFGSTDKSRIVHEVTKVVLLFVYLAVGSGIASFLQVSCWMVTGARQATRIRGLYLKTILKQDIAYFDTETTTG EVIGRMSGDTILIQDAMGEKVGKFIQLASTFLGGFVIAFIKGWQLAVVLLACIPCVITAGAVMSIMMSKMSARGQAAYAE AGNVVDQTVGAIRTVASFTGEKRATENYNSKLKIAYKSMVQQGIASGLGMGVLLMITFCTYGLAMWYGSKLVIEKGFSGG NVLTVIIALMTGGMSLGQASPSLNAFATGQAAAYKMFETIKRKPKIDAYDTSGVVLEDIKGDIELKDVYFSYPARKDVQI FAGFSLSVPSGTTAALVGQSGSGKSTVISLLERFYDPDSGEVLIDGVNLKSFQVRWIREQIGLVSQEPILFTASIKENIA YGKEGATDEEIKQAITLANAKNFIDKLPLGLDTMAGQSGTQLSGGQKQRIAIARAILKNPRILLLDEATSALDAESERVV QEALEKVMTKRTTVVVAHRLTTIRNADTIAVVHQGKIVEKGTHDELIKDADGAYSQLIRLQEGEKEAEGSRNSDADNSLN LDSHITRSSSQRTPFVRSTSHGSSASRRSHSRSFSRRFSIVSGEIEQGDIEKCHPDNNKPKKVSLKRLAYLNKPEVPILL LGSFAAIVHGVVFPIFGVLFSSAITMFFEPPEKQKKDARFWALLYVGLGLVTLVVIPLQNYLFGIAGGKLIERIRSLTFK KVVHQEISWFDDPANSSGAVGARLSTDASAVKSLVGDTLALIVQNITTITAGVIIALTANWALALIVIAVSPGILAQGYL QMKFLKGFSADAKEKYEEASQVANDAVGSIRTVASFCAESKVMDMYQKKCSGPEKQGVQSGLASGAGYGFSFFLLHCTNA LCFYAGSRLVARGQANFAEVFRVFFCLTITAIGVSQSSALAPDTAKAKDSTASIFEILDRKPTIDSSSNKGKSLENVVGD IELQHVSFSYPSRPHIQIFKDLSLSIPSGKTVALVGESGSGKSTVISLLERFYNPHFGSILLDGVDIKELRLSWLRQQMG LVGQEPILFNESIRANIAYGKEGGVADDEIIAAAQAANAHNFISSLPNGYDTSVGERGTQLSGGQKQRIAIARAMLKGPR ILLLDEATSALDAESERVVQEALDKVSVDRTTVVVAHRLTTIRGADVIAVIKNGVVAEKGRHDALMKITGGVYASLVSLH SSAS 

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
MobiDBLite 1 29 29 -
MobiDBLite 1 37 37 -
Phobius 1 44 44 -
PANTHER 40 1282 1243 0.0
PANTHER 40 1282 1243 0.0
Phobius 45 71 27 -
SUPERFAMILY 48 367 320 1.57E-58
Gene3D 50 636 587 1.5E-237
TMHMM 60 82 23 -
Pfam 61 333 273 4.7E-63
CDD 61 356 296 7.10001E-121
ProSiteProfiles 62 348 287 48.311
Phobius 72 103 32 -
TMHMM 104 126 23 -
Phobius 104 128 25 -
Phobius 129 180 52 -
TMHMM 181 200 20 -
Phobius 181 200 20 -
Phobius 201 205 5 -
TMHMM 205 227 23 -
Phobius 206 226 21 -
Phobius 227 282 56 -
Phobius 283 304 22 -
TMHMM 283 305 23 -
Phobius 305 315 11 -
Phobius 316 336 21 -
TMHMM 325 347 23 -
Phobius 337 715 379 -
SUPERFAMILY 373 621 249 4.19E-87
Gene3D 376 625 250 1.5E-237
CDD 383 621 239 5.98017E-138
ProSiteProfiles 383 619 237 25.023
Pfam 404 550 147 2.0E-33
SMART 410 596 187 2.2E-15
ProSitePatterns 522 536 15 -
MobiDBLite 622 675 54 -
MobiDBLite 633 675 43 -
Gene3D 686 1029 344 3.8E-112
SUPERFAMILY 700 1022 323 2.22E-58
CDD 709 1024 316 5.43042E-132
Phobius 716 740 25 -
TMHMM 716 738 23 -
Pfam 720 991 272 1.8E-59
ProSiteProfiles 720 1006 287 43.257
Phobius 741 759 19 -
Phobius 760 783 24 -
TMHMM 761 783 23 -
Phobius 784 833 50 -
Phobius 834 855 22 -
TMHMM 853 875 23 -
Phobius 856 860 5 -
Phobius 861 880 20 -
Phobius 881 1284 404 -
Gene3D 1031 1283 253 2.1E-92
SUPERFAMILY 1033 1279 247 8.65E-88
ProSiteProfiles 1041 1278 238 23.249
CDD 1041 1277 237 1.79182E-132
Pfam 1060 1209 150 5.7E-34
SMART 1068 1255 188 3.0E-18
ProSitePatterns 1181 1195 15 -

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 ATP binding Interacting selectively and non-covalently with ATP, adenosine 5'-triphosphate, a universally important coenzyme and enzyme regulator.
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.
Molecular function ATPase activity Catalysis of the reaction: ATP + H2O = ADP + phosphate + 2 H+. May or may not be coupled to another reaction.
Molecular function ATPase activity, coupled to transmembrane movement of substances Catalysis of the reaction: ATP + H2O = ADP + phosphate, to directly drive the active transport of a substance across a 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 LotjaGi6g1v0314100.1, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.

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