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LotjaGi4g1v0181100.2

Overview

Field Value
Gene ID LotjaGi4g1v0181100
Transcript ID LotjaGi4g1v0181100.2
Related isoforms 1
Lotus japonicus genome version Gifu v1.2
Description Sucrose transporter; TAIR: AT2G02860.1 sucrose transporter 2; Swiss-Prot: sp|O80605|SUC3_ARATH Sucrose transport protein SUC3; TrEMBL-Plants: tr|J7FDE7|J7FDE7_MEDTR SUT2; Found in the gene: LotjaGi4g1v0181100
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr4:37565249..37574787) extracted from Lotus japonicus Gifu genome v1.2.

ATGGCAGAGAAGTCTGACTCATTCTCGATCCGCGTTCCCTACAAGAACCTCAGGAACGATTCTTCTTCCGCGGAGGTGGA GCTCGTCGGCGTTGACGAACCTGGCCATCGGATCGACCTCAATTCGCCTCGTTCCGACCACTTACCACCGTCGAAGAACA ACGCTTCCCTGACGAGACTGGTTCTCAGCTGCACCGTCGCCGCTGGTGTTCAGTTCGGATGGGCCTTGCAGCTCTCTCTT CTCACACCCTATATTCAGGTCATTTCTCTTAAAAAATGCTTTTCAATGATGTCTCCATACGCGCGGTTGCGTGTTTGATT TGACAATAGCTTTTGTTGTGGAAATGCCATCTTTTCACACTCCGTGGGATCCATTGTAAATGGCTTCAAATAGTTTTTGT TACTTGTTTTCGTTGTATGGCTGAATTTCGTATATGCTGTTGTTTGATATTGGCTATGTATTTCTGTGTCTACCATTATA GCTTTGCAAATAACTATATATGTACTCTTGCCTTTTGGTGCAGACTTTGGGAATAGGACATGCGTTTGCTTCATTTATTT GGCTCTGTGGCCCAATTACAGGTCTTGTGGTAGGTGACAGTGTTCCTTTCATCTTTAATTGCAATTGTCATTACCTTAGA GGCTTAGACATTTTTTTCATGCTTCTCCTTACCATTCTGACAGCTTCGAGCTATTGCTCGCGAAAGTAGATTCATGCCTC TATTTTTGCCCACTTGATTTCAAAGCTCTTAGAAACATTAATGATATACAACAACAACAAGCCTTATCTCCCACTAAGTG AGGTCGGCTATATGGATCACACTACGCCATTGAGCATGATAAAAATTAAAATATTAAATTATGAAAGATATTATTGTTAA TGAGATCATGTTTAATAATATCTTCCCATGTTCTTTTTGATCTCCCTCTACCTCTAGCTCTCCTCACAGGACTAAAAACC TTGTTATCAACTGTTAGAATAATCCCAAAATCTTAAGTTGTTGGGTAAGGGCCACATGAATGGTTTTATAATATTATTCT AACATCAACCCTTCTCACTAGTGCCTCCATTGGTCTTCTTTGTACATGTCCATACCTTCTTAACCTGTTTTCCGTCAGTT TCTCCATTATAGACCTCTCTCCAATATCTTCTCTAACCCGCCCATTGCGTATCTTATCCTTTCTAGTGTGTCCACTCATC TATTTTAACATTCTCATTTCTGCTGTTCCAACTTTTCTCTTGTGTTGTCCTTTAAAGCCCAACATCCACTACCATAGAGT ATAGCATATCTTATAGCAGTTCGATAAAACTTTTCTTTAAGCTTTGTAGGTACTTTGCGGTTATTAGAAATCGGGAGGCC TATACTCAACCACAAAAGCTAGCTCAAGAGTTGAGGTTTGCACAACCCTTATAAAGGCTATCTATGCTCTATCTCTAGCC CATGTGGGACTTCTAACACACCCCCTCACGTCCAGGACTGAACAACCTGGAACGTGGGAACAACAACAACGGGTGCCCCA AATATGGGAAGTCTCCACAACAAACAACAAATGGATCTAGGATAGACTCTGATACCATATTAGAAATCGGGAGGCCTATA CTCAACCACAAAAGCTAGCTCAAGAGTTGAGGTTTGCACAACCCTTATAAAGGCTATCTATGCTCTATCTCTAGCCAATG TGAGACTTCTAACAGCGGTCACATATAACTCCTGATGCTTTCGTCCACTTTAATCACGCAGCTTGAATTCTATGTGTAAC ATCTATGTCATTTTCCTCATTATCTTGTATAATCGATCCAAGGTACTTAAACTGTGAAGCTTGTGATAGATGTCGTTTTC AATTTTTACTTCCACAATACTTCCGACATTAGTCTTACTAAAATTGCAATGCATATACTCTGTCTTACTTCTGCTCAATC TAAAACCCTTAAATTCTAAAGTCCTCTGATAGGTAACTGGGGTTAGCTTGTTAGTAGTTAAGTGGAGTCAGTAGTTTGTT AGTTAGTTATAGGGTGAAGAGGCATGTTTTCTATAAATAAGCGTGATTAGAGAGCATTAGGGTATCTTTGGTAATCAGTT AGGTTTTGGGTTTAGAGGGAGAAGTGGTTCTTTTTCTAGGGTTAGAGAGGGTGTTTGGCATCTCTCTCATGTATCTTTCC CCTAATTCCCAATTTGGGATTAGGGTTCTTCATCAATAATACTTCTACATTTTCTGGGTTCTATCATCCTCCTCCAATCT TGAGTTTAGAATTAACGGCTTCCATTGATTCTTCAATTAAGACTGTATATCCCTGGTAAGCATGTCCAAAACCATATTAA ACGAGTACTGAGTACTGACTCAAGGGAAGCAGTTTCATCAGTTCATGTTTGCCACTTACTGCTTTATTCTTGTGAATTTG CATTGCAAGGAACTTTTTGTTCGTTTTAAACTTGTAAATTTCAATTTTGTCTTGCTTTTTTCAAATAGGTCCAACCCTGT GTTGGCATTTGGAGTGATAAGTGCACTTCAAAGTTTGGCAGAAGACGTCCATTCATTCTTGCAGGATCTCTTATGATCTC CTTGGCTGTAAGCATTGGTGACATTGACTGCTTATTTCAATATACTTTTTAACACTACACTGCACACAAGCTAAATTAAG TCTTGTATTTTAGGTGGTATTAATCGGGTTTTCTGCAGACATCGGATATATATTAGGGGATACAAATGAGCATTGCAGGT TTCTGTTTCTATCTTTGATCTTTTCTTACTCATTTTATTTCATCTACTTTTTAAGTTGAACATAAATGAACTCGGTTAGA TTTTAATGGAATTCGTATTTCTAAACTTGTAGAACTTTCAAAGGGACCAGAACTAGGGCTGCTCTTGTATTTATTCTTGG ATTTTGGATGCTGGACCTTGCCAACAACACAGTGCAGGTAAGCCTGTTAAAGTAATCATTGTGTGCTTGTGTTATATGTT TGTACTGATGCAGCTGAGCAGTAGTTTTTTCCCTGTATTTTTTCAAATTTTAATGTACAGGGTCCAGCTCGAGCACTTTT GGCTGATCTGTCAGGTAAAGCTTCCCTATTTTCCTATTTTATTTCTTCGAGTTCTCAACAACCTAATAGAGTCTGGACCT GACCTGCTGTCACGAAAGTGTATCATAGGAGAAATAGAGATTAATGGGCTGATATTGGGCAGTTAGTATTTGTAAACTTA GGAGAAACCGAGAGGCAATATTAGATTTAAATCTGTGTGTCTAAACTACACAACGGGTGTCATTATTTATAATAGGCACC ATAAAAGTGTGCAATAAGTACAAAATATCTCCTATTTTCCTATTTACATGATTACTTCTCTAATTATGTGATTATGTTAC CAAATAACAATAAATAAAAGACATCATATTATTTACAAATATCTAACACTCCCCCTCAAGGTGATGCATATATGTTATAC GCACAACCTTTCTCAAATAAAATATATAATTAACTGGAGGAGCAGCTGCCGGAGAGAGAAACGCCAAACAGCCAAACAAA CTCAAATCTGGGACATACGACGAAGCTCCAACATCATTAGTTGAGATATGGGAGAGCCGGGAAGCCATGATGGGTCACAA AGAGGAGAGAGAAACACCCGAAAACAACAAAACTAATGTTGAAAAATTCAGATCTGCTCCACCATGAGGCCGAAAATGAT GAAATAAGGGCGGATCTGGAACGAGGATGAAAGGGCGAGTCGAACGAGCCAAGCGGCGGTTGGAACAGAGGCAAGATGCA CCGCCGCACTCCTGTGATATGGGAGGCGCGTGAACTCACACGCAGAGAAGGAGGCGCGTTCGAGCGCGTGTGGAAGCCGT TCGATCTGAAACTGCAAGGAAACGGTCGATTTGCTCCATGCGGTCCTAATGGTAGTGGTTGGCGTGTTTGGGCAGCGGCG GAAGTGTCTGGAAGAGGTTGTCGGAATAATGCACGACAAAGATAAAAGCCGGAAACACCGTCAAAATGAAACATGATGTG GGGTAAAATAAGAAACAATGCCGGAATGAAATACGGCAGGTGGTAAGATTGGAAAATCTGTCGGAATGAAACACGACGGG GAAGATATAGAAAAATTGTTGAAATGAAACACAATAGAGGGAAGAGCCAAAAACCGGAGAGGAGACACGGTTTTCGGGAA AAGACATGCAGCGATGGACAATGGGCCTTTCGGGTATGACGACGGATTAGGATTGCCTCTCGTCATGCTCTGAACAATGG AATTAGCACAGGTCCCTGCTCTGATACCATGTAAAATTAGGAGAAACCGGGTCATTATTTATAATAGGCACCATAAAAGT GCAATAAATACAAAATATCATTGGAATATCCTATTTCCCTATTCACATGATTACTTCTCTAATTATGTGATCATGTTACC AAATAACCATAAATAAAAGCTATTATTTATTTACAAATATCTAACAGTAATTGTTTAGTGATCTGGTTTAATAATAAGAC CATTGTATTATTTGGTTTGTTACTAGTTGTTAGAGTTGGTTAGTTAGAAGTAATGACAGCATATAGTTAGTTGTTCTCTA TAAGAGATTGTAAAGGTAGTCTGGAGGTTTTTCTGGAATTGTTAATTCAGTAGTTAGGAGAGAACTGACCTCTTAAATTT CAGTTCCCAAATTGTACTCTGTTTCATCACTGATCATTAAGAATCTTTCTTTCTTTCCCTGTGTTTCTGATCCAGTTTTA TCACAACTAAAATGGAGATTATTGATTTTCATCTTGTATTAAATATTGGTAGCCAAGAGACATCATGATATAACAATTTT TGCTTCTACTTAGGTCCTGATCAACGCAATGTAGCAAATGCTGTATTTTGCGCATGGATGGCTGTGGGAAACATCCTAGG ATATTCGTCTGGTTCTAGTGGAAAGTGGAACAAGTGAGACCTTTGCTAATATTTTGCGATTATGACATATTTCAGCAAAT TGCTAACTATGGAAATTGCATTGCATGCTTTTTATTGTTAATTGTTTTATTTTTTATGTCATAGTTTTTGAAACATGTTC TGATAAGAGAAATAATTGGAAACAAGAGAAGGGAGGATACTTGGTTTTTTATAGGAACCAGCCAAGAATAGGTAGAAATC GATATTATTCAAGAGTAGAAACTACAATGATTGCTAAGTAATTCGAGAGTCTCAGCCCCTTTCCCTAATTCCCAATTACA AATGATCCCAAACATGATAATTCACCTTAGTTCTACTAACTAACTAAACTACTAGCCAATTATGGTTATCTATCAGTTAT ATACATTATGGGAGAATGTATTCTTACATAAGGAATAATGGTGTGGAACCACTCATGTGAAGAATCTCAGAAGTGGTTTT GATAATTTGATTGATGTAAATCCAAAATTTATAACTGTATTTTACTATTGAATTTCTTTCTATATTTTCTCGTCCTTAAT ATTTTTGTCTTCCTTACATAAACAGATGGTTCCCTTTCCTGACAAATAGAGCTTGCTGTGAAGCCTGTGGCAATCTTAAG GCAGCATTTCTTGTTGCCGTGGTAGGTTATTACCAAAATTCCTTTTGATTAGACCTTAATTTTTGACTTCTTTTCCTATT AGTGGAAGCACATACTTTCCTTCAGTTCGGCTAGGTTTTTTTTTTTCTATTCGTTTATTTTTAATTAGTTTTCTTGTGGG GTAACATTATCTTTACTTACATATCTGTTTTTTCTTTTTATAATTTCAGTGAAGAGAAGCATGACAGATCTTATAATTGT CGGTTTTTTTCCCTTATTACCGAAATTTAGGTTGTCAAACTCATGAGTCTACGCAAACGCGTGGTCCGTAGACTCTACTT GTAAAATTGTATTAGTTTACCTAATATTGAAAAAAAACCTATATAAATGGCTATCCAAACAGAGTAAAATACCATTGAAA TAATAACTATTCAACATTCTAACTCCATAATAAAAAAGTATGGTATTCAAGGCTTATATTTAAATGACCAAAATCACAAG TTCATAAGGTGAACAAATTTTGAAACAAGAGTTAAATAATGCAAATTTAAAATTAATGTCCAATTTTGCATTCTGTAATG TGGAAACTGGAAAAACATTGCAAGTTCAAAATTAATGTACAAATGCAAAAAAAAATAGTAGACTTTAGAAACATTACCTT TCAACACCGTATTGACTTATCCTAGCAGCAGGTTTGTTGGGTGGGAGTAGAAAGTAGAAACCTAGCTTATTCAATTTCAA CACCATTCAAAGGGAGATGGGTGCATTCAGTAACCTGGTTATTCAAAGGGAGATGGGTGCATTCAGCAAAGGGCTGAACC TTGAATGAGGTATGGGTCTGTGCATCGTTGGGTTCTGGGACGCTCATTAATGGGTATGTATGTTGAGGAGGGGAAGGACA TGTGTGTCAGAGAGGACGTTTGTTGTTGGGTAGGATGTTCCTGAAAAAGGATGGTCATTTATCCTTTGTACGTCATTGTA AGTGCTGAAGACCACCACTAGGGTCATTTTAGGGAAGCCCTAGACGTGGGAATTGAGATGTGGTCATTTAAAGCAAGCCA AAGCTGGTTTTGAGTTTTCAGACTCTTCCCCTTGGTCTAACTCCAACAATGCTGAGTAATCTGAGAGTCTCAGGTCCTCT CCCTAAATCTCAATTCCCTAATGATTCAAAAGGCTGATAATACTCTCACTATCTTATTTATAGTCTCACTCTCTAACTAA CGCAACCAAGAACTATTCCTGTTTCTTTAAAGAACCCTAATTCCCCAATTTCGGAATTAGAGAAGATACGTGAGAGAGAT GCCAAACACTCTCCCTAACCCTAGAAAGAGACTCACCCAATGCTCTCTCTAAACCCCAATCCCGAAATCAATACAAAGAT ACCCAGCAGTCTCTCTAACTACTTATTTTTAGACTCTCTCTCTAATTAACTCCCACCCCCAATTAACTATCTATTAACCC TAATTAGCCACTAACCGTGAGTACCTATCAGTTTACCCAAGCTCAAATGAGTAGGCTCGATTTTCCTACCTAGAAATATA GACTCAAATGAGTTTACGGGTTAATCTGTGAGTTTAATAATCATGCTGAATTACATCCTGTCCTTCAGTTTGTTCAGTTC TTATATTAATTTGTTTTCCTTCTATTAATTCTCTTATAAAGCAACATCATCTTTTCCTTCCTCATTAATAAAAGCACCGA GAACCACTGTTGAAGTTAGGCAGTGCTATGATGTCTCGAGGTTATTAGCTAATAGGTCTATCAAGTTTGTCAATCATATG CTGTTAAACATTCAGCCTTTAATGTATGTACAACTTATGTAATAACTGGAATCTCACAATACACTATTTGCAGGTGTTTC TGACGTTATGCACACTTGTAACCCTATATTTTGCTGATGAAGTTCCACTTACTTCTGTGAATCAACACCAGCAGTTATCA GATTCTGCTCCTTTATTGGATGAACAACAAAACGGAAATGATTTTTCAAACTCGAAGCCTTTATCGGCTAGAAATGAATC AAATGGTATGGTAAGCAGGGATCACGTTGAGAAAGATGTAGAGCTGAAGCATGATAATTTCAACGCTGGGGAAGATCATA GTGAGATTTTAATGGATGGGCCTGGAGCTGTATTAGTTAACTTGTTGACCAGTTTAAGACATTTGCCACCTGCTATGCAT TCAGTGCTGATTGTAATGGCTCTCACTTGGGTACGTACTACAGTATCTGATGTGGAAAGGATTCTTTTGACACGCTATTA TGTTTATTTTCAAATTGGTCGTGAAGTACTAGTCTTTGCTTGTGCTTTTCATTTGATATCCTTCTTATGCTTCCCTGAAC CCTGTGACTACCTGCAGTTATCATGGTTTCCCTTCTTTCTGTTTGATACGGATTGGATGGGAAGGGAAGTTTATCATGGA GATCCAAAAGGGAGCTCTTCTGAAGTAAATCTCTTTGATCGAGGTGTTAGAGAAGGTGCATTTGGTTTGCTATTGAATTC TGTAAGAACACAAGATTGAGCATAATTTTTTTTCAAGAGATTTGTGACAAACTTTTCCAATCATGAACGGGAATTTTTGT TTTTCTTTTATTAAATTTGGCTTTCTGTAATCATAAATCTGACATGACATTTATTGTTTGGTAGGTCGTCCTTGGCATCA GCTCTTTTTTAATTGAACCAATGTGTAAGTGGATGGGTGCGAGATTAGTATGGGCAGTGAGCAATTTTATTGTCTTTGTT TGCATGGCTGCTACTGCCCTTATTAGTTTCATTTCTGTCCGAGATTATGCCGGAGGGATAGAACATGTGATTGGAGCAAG TGAAGAAATCAAGGTTGCTTCCTTGGTTGTATTTGTTCTTCTTGGTTTTCCTCTTGCAGTAAGTATGAGTAGTACTACAT TGCCTCTTCTGAACTATTTGTTACCAGTTTCCTTCTTTTCATTGTCAATCCTCTAAACCAATCACAGTATTATTTCAAGT AATTTGTGAAAGTCATGTCAGGATAAATTTCCTATGTTTCTTTGGCAGATTACATATAGTGTTCCCTTTGCTGTCACAGC GGAGCTGACTGCTGATTCAGGTGGTGGCCAAGGTTGGTATTTGCTAGAAGTCCCACATTAGCTAGAGATAGAGCATAGAT AGCCTTTATAAGGGTCGTGCAAACCTCAACTCTTGAGCTAGCTTTTGTGGTTGAGTATAGGCCTCCCAATTTCTAATAAT ATTGGATGTAGATGACACTTAATTTTGTCTATTAATATTCCGATTTCAAGGTGTTTGCTTGATTCTGCAGGATTGGCTAC TGGAGTTCTGAATCTTGCAATTGTTGTTCCACAGGTAGTTTATTTTTCTCAAATATTGCTGTCACTCCTTTCTTCAAGAG TAGCTTCTTTTCAAGGTCATCTCTTTTTTTTCAAAATATTTTTTTAATTCTATATCATTTGTATACGTGTGCTGATATTG CAATGCTAGTCATCTTCAAGTTCCAGTGCAATTCATTTTTAGATCAGGATAATTCCAATTTATTACGACTGAAAAACCAT ATTACATCTGAAAAGTAACTTCTTTGAAGAATTAGATAAAGGAAACAAGGTGGAAATTTTGTTGTTTTTTTCAAAAGTAA CTTCTTAGTTATTGATCGTGGGTTAGGCCAGGTTTTCAATTACCTGGTGACTTCTGTTTTAGATTTGTGTTTTCTCTTGA TTCAAGGAATGAGTGCATCAGTAAAACTCTGCTTTTTCTTTGTACTACTTTCTGAACCAGTATCTCTGAAAGAGCTCTTC CTCTAGTTAAATAAGACATTTTACTTTTTTTTTTAAAGATATAGTAAATGTGGTGGTTGCTATTTTGATATATTATTTGC TTCTTTAGATGATTATATCCCTTGGTTCTGGTCCATGGGATGCTCTGTTCGGTGGTGGCAATGTTCCTGCCTTTGTTTTG GCCTCCGTCTGTGCTCTTGTGGGTGGTGTTGTTGCAACTCTCAAACTGCCAAATCTGAGTAGCAGTTCCTTCAAGTCCTC AGGATTTCATTTTGGCTAG 

CDS sequence (LotjaGi4g1v0181100.2) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGGCAGAGAAGTCTGACTCATTCTCGATCCGCGTTCCCTACAAGAACCTCAGGAACGATTCTTCTTCCGCGGAGGTGGA GCTCGTCGGCGTTGACGAACCTGGCCATCGGATCGACCTCAATTCGCCTCGTTCCGACCACTTACCACCGTCGAAGAACA ACGCTTCCCTGACGAGACTGGTTCTCAGCTGCACCGTCGCCGCTGGTGTTCAGTTCGGATGGGCCTTGCAGCTCTCTCTT CTCACACCCTATATTCAGACTTTGGGAATAGGACATGCGTTTGCTTCATTTATTTGGCTCTGTGGCCCAATTACAGGTCT TGTGGTCCAACCCTGTGTTGGCATTTGGAGTGATAAGTGCACTTCAAAGTTTGGCAGAAGACGTCCATTCATTCTTGCAG GATCTCTTATGATCTCCTTGGCTGTGGTATTAATCGGGTTTTCTGCAGACATCGGATATATATTAGGGGATACAAATGAG CATTGCAGAACTTTCAAAGGGACCAGAACTAGGGCTGCTCTTGTATTTATTCTTGGATTTTGGATGCTGGACCTTGCCAA CAACACAGTGCAGGGTCCAGCTCGAGCACTTTTGGCTGATCTGTCAGGTCCTGATCAACGCAATGTAGCAAATGCTGTAT TTTGCGCATGGATGGCTGTGGGAAACATCCTAGGATATTCGTCTGGTTCTAGTGGAAAGTGGAACAAATGGTTCCCTTTC CTGACAAATAGAGCTTGCTGTGAAGCCTGTGGCAATCTTAAGGCAGCATTTCTTGTTGCCGTGGTGTTTCTGACGTTATG CACACTTGTAACCCTATATTTTGCTGATGAAGTTCCACTTACTTCTGTGAATCAACACCAGCAGTTATCAGATTCTGCTC CTTTATTGGATGAACAACAAAACGGAAATGATTTTTCAAACTCGAAGCCTTTATCGGCTAGAAATGAATCAAATGGTATG GTAAGCAGGGATCACGTTGAGAAAGATGTAGAGCTGAAGCATGATAATTTCAACGCTGGGGAAGATCATAGTGAGATTTT AATGGATGGGCCTGGAGCTGTATTAGTTAACTTGTTGACCAGTTTAAGACATTTGCCACCTGCTATGCATTCAGTGCTGA TTGTAATGGCTCTCACTTGGTTATCATGGTTTCCCTTCTTTCTGTTTGATACGGATTGGATGGGAAGGGAAGTTTATCAT GGAGATCCAAAAGGGAGCTCTTCTGAAGTAAATCTCTTTGATCGAGGTGTTAGAGAAGGTGCATTTGGTTTGCTATTGAA TTCTGTCGTCCTTGGCATCAGCTCTTTTTTAATTGAACCAATGTGTAAGTGGATGGGTGCGAGATTAGTATGGGCAGTGA GCAATTTTATTGTCTTTGTTTGCATGGCTGCTACTGCCCTTATTAGTTTCATTTCTGTCCGAGATTATGCCGGAGGGATA GAACATGTGATTGGAGCAAGTGAAGAAATCAAGGTTGCTTCCTTGGTTGTATTTGTTCTTCTTGGTTTTCCTCTTGCAAT TACATATAGTGTTCCCTTTGCTGTCACAGCGGAGCTGACTGCTGATTCAGGTGGTGGATTGGCTACTGGAGTTCTGAATC TTGCAATTGTTGTTCCACAGATGATTATATCCCTTGGTTCTGGTCCATGGGATGCTCTGTTCGGTGGTGGCAATGTTCCT GCCTTTGTTTTGGCCTCCGTCTGTGCTCTTGTGGGTGGTGTTGTTGCAACTCTCAAACTGCCAAATCTGAGTAGCAGTTC CTTCAAGTCCTCAGGATTTCATTTTGGCTAG 

Protein sequence (LotjaGi4g1v0181100.2) extracted from Lotus japonicus Gifu v1.2 Proteins.

MAEKSDSFSIRVPYKNLRNDSSSAEVELVGVDEPGHRIDLNSPRSDHLPPSKNNASLTRLVLSCTVAAGVQFGWALQLSL LTPYIQTLGIGHAFASFIWLCGPITGLVVQPCVGIWSDKCTSKFGRRRPFILAGSLMISLAVVLIGFSADIGYILGDTNE HCRTFKGTRTRAALVFILGFWMLDLANNTVQGPARALLADLSGPDQRNVANAVFCAWMAVGNILGYSSGSSGKWNKWFPF LTNRACCEACGNLKAAFLVAVVFLTLCTLVTLYFADEVPLTSVNQHQQLSDSAPLLDEQQNGNDFSNSKPLSARNESNGM VSRDHVEKDVELKHDNFNAGEDHSEILMDGPGAVLVNLLTSLRHLPPAMHSVLIVMALTWLSWFPFFLFDTDWMGREVYH GDPKGSSSEVNLFDRGVREGAFGLLLNSVVLGISSFLIEPMCKWMGARLVWAVSNFIVFVCMAATALISFISVRDYAGGI EHVIGASEEIKVASLVVFVLLGFPLAITYSVPFAVTAELTADSGGGLATGVLNLAIVVPQMIISLGSGPWDALFGGGNVP AFVLASVCALVGGVVATLKLPNLSSSSFKSSGFHFG 

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
Phobius 1 56 56 -
PANTHER 6 595 590 0.0
PANTHER 6 595 590 0.0
Phobius 57 76 20 -
TMHMM 59 81 23 -
CDD 60 576 517 8.70521E-140
SUPERFAMILY 60 582 523 3.27E-33
Pfam 69 541 473 3.5E-20
Phobius 77 87 11 -
TMHMM 88 110 23 -
Phobius 88 109 22 -
Phobius 110 129 20 -
Phobius 130 149 20 -
TMHMM 130 152 23 -
Phobius 150 168 19 -
Phobius 169 187 19 -
TMHMM 172 194 23 -
Phobius 188 207 20 -
Phobius 208 227 20 -
TMHMM 209 231 23 -
Phobius 228 254 27 -
TMHMM 252 274 23 -
Phobius 255 275 21 -
Phobius 276 367 92 -
MobiDBLite 293 319 27 -
MobiDBLite 293 322 30 -
TMHMM 367 389 23 -
Phobius 368 389 22 -
Phobius 390 419 30 -
Phobius 420 438 19 -
TMHMM 420 439 20 -
Phobius 439 449 11 -
TMHMM 449 471 23 -
Phobius 450 472 23 -
Phobius 473 491 19 -
Phobius 492 515 24 -
TMHMM 492 514 23 -
Phobius 516 526 11 -
TMHMM 524 546 23 -
Phobius 527 547 21 -
Phobius 548 558 11 -
TMHMM 553 575 23 -
Phobius 559 580 22 -
Phobius 581 596 16 -

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 Transmembrane transporter activity Enables the transfer of a substance, usually a specific substance or a group of related substances, from one side of a membrane to the other.
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 LotjaGi4g1v0181100.2, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.

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