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Field | Value |
---|---|
Gene ID | LotjaGi1g1v0101700 |
Transcript ID | LotjaGi1g1v0101700.2 |
Related isoforms 1 | |
Lotus japonicus genome version | Gifu v1.2 |
Description | Auxin response factor; TAIR: AT5G37020.1 auxin response factor 8; Swiss-Prot: sp|Q9FGV1|ARFH_ARATH Auxin response factor 8; TrEMBL-Plants: tr|A0A0R0L0T9|A0A0R0L0T9_SOYBN Auxin response factor; Found in the gene: LotjaGi1g1v0101700 |
Working Lj name | n.a. |
Genomic sequence (LjG1.1_chr1:15496689..15505973) extracted from Lotus japonicus Gifu genome v1.2.
ATGAAGCTCTCAACATCAGGGATGGGTCAGCAGGGACATGAAGGTATCCATTATCCATTCCATTTTTTCTTTATTCCATT TTTTTTTCTAACTATTAAAAAAAATTGGCACCCTATTCTGAGCTCTTGGCTGGGGTGGGTTTCAAGTTTCATTTATCTAA ATAAATAGTATGTGTCCCTTTCATAGTTCCTTTTGTGTTTTGCTTCAAAGTCCTAGCGAGTGTTCTTTCCCTTTTGTTGT TTTTACTTTCTATATACTTTCTATATTTTTTTGAGATAATTTGATATGTGTTTGATGGTAGGAGGGGAGAAGAAGTGTTT GAATTCTGAGCTATGGCATGCATGCGCGGGTCCCTTGGTGTCCCTACCAACTGCAGGAACTCGTGTGGTTTACTTCCCTC AGGGTCATAGTGAGCAGGTGCTTTTTGACATGCCCCTACTCTATTGCTGGTTGTTTCAATTTATAGCATGTTTGGATCAG CTTTCATTAATCAAAATCAATTCTGAAACCGAAAGGCTACTCACTGAATCTTCTTCCCAGAATTGATTCTGACTTCATAA TCAATAATAGAAGAGTTTCCTTTTGCATGCTATGTAGGATGCATAACTTTTCTTGCAGATTTGGGATTGGAAGCAATTCA ATATAGTTAGTTACATGTGGTAGATTTTTTATTGGAAATTGAACTGAATATGTATTGAACAATGATTCTAGGTTTCTGCC ACAACTAACAGAGAAATTGATGGACACATACCCAATTACCCGAGCTTGCCACCTCAGCTGATTTGCCAACTTCACAATCT TACGATGCATGTGGGTATTATATCATTCATGTAGTTATGATAGTTGAGTTACTTATACCTCCCATTGGAGTAGACTCAGT TAACCTGAGCATATATTAATTTTCAGGCAGATGCTGAAACAGATGAAGTCTATGCTCAAATGACACTTCAGCCGCTGACT CCGGTATCCCTTTGTTCTTTGGAAGCTTGGTTTGTTTGCATTGCATGTGTTTCTTGTTTCTGGAGTTGAAAATGTGTTTG TGATTGTGCTTGTAGCAAGAGCAGAAAGATACGTTCCTTCCTATGGAATTGGGTATTCCAAGTAAGCAGCCCTCAAATTA TTTTTGCAAGACATTAACGGCAAGTGACACCAGCACACATGGAGGGTTCTCTGTTCCTCGACGCGCAGCTGAGAAAGTTT TCCCTCCACTGGTAATGTCCACGTTTTCTTTGGTGTTTCATTCTGGTTTGATATAGATATAGTTCTCTTCTATTTGGGTT GTACAGGATTTCTCACAGCAACCACCTGCACAAGAACTAATTGCTAGGGATCTCCATGATGTTGAGTGGAAGTTTCGACA TATCTTTCGGGGTAAGATTCACTCACTTGATTCCGTTCCTATTATCTTGTTATTTTACAAGTTGAGTTTTATTATGTTGA ATAGGATTATGATTAGATTACTTTTCTTTAGAGTATGACGGTCTGCTATGCAATACTTTCACTATGTGCAGACTTTCCCT TGACACTTCATGTAACAAAAAAAACTACCTTTATGTAAAGATTGATATCTCTGTTGCATGCTAATGTAGTAGTTAACAGG GATGGAACATACTTGTGGCATTAGGTTAGATAACTCTTGTGGCATCATGGTTCTTTTTCCTGTCTCTATAGTTACTCTTA ATCAGTAGTTAAATAATTTGATTTCATGTTTTGCATTTTTTTCAACTTTTAAACATCTCTTAGATTTGAACATGTGTTTC TCCCTGGGAAACCCCAATTCATCGGTTCTTCAACTTCAAGTTGAGAGACTTACTGTTTGATTTATGGGTGACTTTGAGTG GTTTGTGGCTTTCCTGTGGGTGATAGTTGCATTTCTAAAGTAGAAATGCAGACAGCCTTGGAGCCTGACACCTATGAATT CTCCACGCTTCAAGCCCAAATGGGCTCTTGCGTGAGGGGACGTGTTAGAAATAAAATATAAAATCATTCATGTGGTCCTT ACCCATTAGCTTGAGCCTTTGGGATAACTGGTTCTTGACAACTTGCGACTTTCATATGCATTTATATTGAAGTTTCATCA GATGATAGTCAGTGATTGATGTTATTTTGCTTATGTATGTCATTTTATATGCATGTACTTATTTGAATGTTTTTATATTT TAGGTAGGGTCTTATATACAGCTTGTATTTTATGTGTCTAACCCTCTAGGTAGAATCTTGATCTTGACTACCTTGATCCC TTTCTTAAAGATTAAGATTTTCGATTGTAAAGTGGGGTTGCTAGAATCTTTAGGAAGAAAACCAAGGCACCTTATTATTC ACTTTTGTCTGGCATATCTTTAACAATTTAAAGATCTGGGAAACCTTACTTTTTGGTCTATGCATCAGATATGTGTAGGT GTATAGCTTAGTACTTGTTTGCAATTTTCTTCTGTAGCTTTTATGAACTTTGTGTATGTGTATTGCAAATCCATTTGCTA AAAAATTTCTTGTATCTCAAGTTATCAGGCAACTCATTATTAGCTAATCTTAAGATCCTGACCATTTAGTGTTGTCTTAT GTTATATCAAATGTCAAATCTCAACTCAATTGTTGTGAACTGTTCAGAAGTCCCACATTAACCAGAGGTATGACCAAGAT ATCCCTTATATATGGGAAGACAATCCTCACCTCTAGAGCTAGCTTTTGGGGTAGAGTTAGTCCTCCCAAATTCTAATATA TGCATTGAAGTGATCTGTTGAGGGTACATGATCCCCTGAGAATCATGAATAATGCAAAGTGATCTGAACATGGACGACTA TAAACATTTGCGGGTGGTCTCCACTTAATGGATAGGCTGTGATACCATATTAAAATTTGGAAGACATAACCTTACCCTCA AAAGCTAGCACTAGAGGTGAGGATTGCCTTCCCATATATAAGAGATATCTTGGTTATATCTTAGTCAACGTGGGACTTCT CAACAACTACTTTATTGAAGAAGCTGTTAACAACTTCAGAATTATTTAAATCTGAATTTTATCCAGTAGGAAATGAAACC TTTCTTTTAGGGAAGTCTATCTTTGGTTGTATTTTAAGGGATTGATTCAAATCCTTATGGAGTAAAAATCTGTCCATACA CTAAACATACCAAGATAATTTATAGTTTTTGGCTTTGCTCCTTCTTGGCTAACCTTACATTGCCAAATAATCTTTCAATG TGAGGCCAAAAGAATGAGTTTCCTCTGCAAAAGCTGCATTATATTTCACAAAATGTCCAGCAAGCTTCTAAGTCATACAA TAGAATCACAGATAGATTTTTTTGCTAACACATTGCCATGACAAATACATCCAATTATCTGCTGAATTTTACATTGGTAC AGCTGCATATACTGTTACTTAAAACTTGAAAACTAGACATTTAACACGCATGTCAGCAAGCTAAAATTATCTTTTTAAAA GGAGAATCTGCTTCTGAAAAGGATGTTCTGTAGTTAGTTCTTTGTTGTTCAGTGGGCCAATAAGATGTTAACTTCTCTCT GCCATTTATCTTACAATATTTTGCACCGTGTAATTTGTAAGATCTAAGAAAAGAGATGGGATATCTGATGTAATAACTAA TAAGTACTTACTTTCAAATGTTCCTTTTGGTTTCCTACTTCACTTCTAATATACTTTAGTGTATTTACTCTTTTTTTTCC TGGGTCTTATGTCTGTTTCCATAAAGCAAAAGCATCAAACACTTGGTGCATTTATAGAAATTAGAGCTGATGCGCCCGAG TCATTGTAAATCAACTCTATTTGAGATTGTTAACTTGGTTGTAGAACACACAACATGTTATGTCTATTACTTCCTTGTCA TTTCAGGACAACCGAAACGACACCTTCTTACAACAGGCTGGAGTGTGTTTGTTAGTGCCAAAAGACTTGTGGCTGGTGAT TCTGTGCTTTTCATTTGGTATTTGTTTCCTTTTATATGTTTTGGCTAACTTTTCTTACTCTTCATTACTGCAAACTGCTT GTTTAACCTTTTTATATGTATATTTTATGTTAGGAATGAAAAGAATCAGCTTCTTTTGGGAATACGTCGTGCCAATAGGC CACAAACTGTTATGCCATCTTCAGTTCTATCCAGTGATAGTATGCACATTGGGCTTCTTGCTGCTGCTGCCCATGCTGCG GCTACTAATAGCTGTTTTACAGTGTTCTATAATCCAAGGTTGGGTTTGTTATCTCAATTACCACTTCCAATACTTATTTA TGTGAAAGTATCATGCTTTTTTGACACTTGCATCATGGGCAGGGCTAGTCCATCTGAGTTTGTCATACCACTTGCGAAAT ATATCAAAGCTGTGTACCACACACGCGTTTCTGTTGGTATGCGTTTCAGAATGCTTTTTGAGACTGAAGAATCAAGTGTC CGCAGGTACATTGTAGCTATAATTACTTTTTATGAAGCATATGTTGATTTTTTTAATTGTAGACTTTTACTGAACTTCTC AGACCAGCCAACATTATACACTGCAAGGGTAATCTTAGTTTATATTTATAAATGTGTATGACAGAAGCTGGACTTTTTAA AATAACTTATCGATAATAAGGTTGGTGATAAGATAGTGCATCTGCATCTATACTTTCTTAGTAGGCAAGATTATTAATAA CTGGAATTATGGTTGTAAAATAGATCTACCAGGCCCCAGGGTAATTTGAAATGGATCAATTGCTTATTTTATATCTGCTT TTAAATTTGGGCTTTTAGAGAGGAAAAAAAAGGTTAGCAGCTGCTAGCTGAAGGTAGTGGAAACCAACTGCTAAGTGCTG TTGTCGGGGGTAGTCTGGTACTATACTTTTTCCTGTGCTTACATGTTTTGATTTCTAAGCCCCTCCCTGTCTCACAACCC CAAAAAACTTGGCCGTGGAAATTTAGGAAGGGATATTATTCTTGGGTAGTATGGCACCATACTTTTATGTCTTATGCTGA AGTCACCTTTATTTTGCAGGTACATGGGTACAATAACTGGGATAAGTGACCTGGATCCTGTTCGTTGGCCGAATTCTCAT TGGCGATCTGTTAAGGTAAGTAATCTTGAATACATAAGATTATGTAGCTGTGTTTATATAAAAATGACTCTTTGCAATTA TAATTTATAAACATTAGACTATAAGTATGGAACCTTAGTACAGTGGTAAGATTGTTTGGGTCAATGAGTTCTTGTTGTGA AGTAGCCTCTATAGCACTCCACTCACAGGAGAAAAATGAATATGTCTAAATCTCCCCGAATGCCCTAACGCGTCAGTGGT TGGAACCTTATGTTCTTGGCTGCAACTATACACCTGTTCTGTTGATTGTGTGTATGGAGGAAGAATATTCTCAAAGTTGT AACTTGTAACCATATTTGATAGGTTAACTTTTCAATACCACTCTAAATTTATAATCCTGTATTATATAGTTTAATCTGTA TTATTCACCAAAAAAAAGTTCATTTCTGTACTCTGTTGTCCCATCCATGAGGATTGTTGCAATGTGTTTGGAGTACTACC TGCATCTTTTCTCTGGTCTTGGCCTTCTGATTAACTAATTTTTGTTAGCATAACCTGTGATTCAGCAGTGAATAATATTC AAATTTGATTTCTGTGTTGTCCCCCATGCCTGAAAAGCTCTCAAATCTGCAACTTTTACAATCTGATACCAGAGCTTATT ATTCTTATGCAGCTTTTGTTTCGCCTGCCATATTATTAATGATGTCTACATAAACAAAAGATAATAGGTGTGATCACTAT ACTATATTCCGTGTGATTGTGTTGAGAGATAGTGACAGTCTGATAGGGTTTTTAATAGGTTCAGGGTTTCATAGTTTCTA TTCCATACCTTACAAAAGGTCTTGTCAAATTTCATTCAATTTGAAACGAGCTCTTAACCTGGCATCTGTGACATCTTTTA CTTTTTCTTTACCTTGTTTCATCCATTGTGCATAGGTTGGTTGGGATGAATCAACGGCAGGAGAAAGACAGCCACGGGTA TCATTATGGGAAATTGAGCCTTTAACAACATTTCCAATGTATCCATCACTATTCCCCCTCAGATTGAAGCGACCATGGTA TCCTGGCTCTTCCTCTTTTAATGGTACATGTTTCTCAGTACTTCTATTTCATCTGCTTATCTTCCTTCTAATTAGATCTA CATTGTATAATCAGTGCTAAGCATAGTAGTCAATAGCATTGTATAGTGCCGCTATAGCGGCGTAGCGGAACGGCTCCCTG CCTCTATTGAAATGAAATAACGGCACACTAGCGGCGCGAATAGCGGCAGATCAGGGCCAATAGCGGGAAATAGCGGCGCT ATATGGACGAAGGGAAAAATGACTCAAGCCCCTCGGTTTTAAATCGTTGGGGAACCTTTTTAGGACTTCTCAGGGCCATT TTAGGTCAAACTTGATCGAATGGAGCTTCATTCTTCATTCAGATTTGCAAATCCGACTTCTTTACCTTGCTTTTGAGTGG TTTTTAGTTATGTGTTATTGTTCAAGACTTGTGATTTTTATTTCTATAATGAATGTTATGAATTTTAGGCAATATTTGAC ATTTATATGCATATAGTAATAAACTATTAATTATATAAAAAAATCTGATTAACCGCCATCCTGCTATCCCACTTTTGGGG CCGGCCGCTACGCGCCGCTATCCGGGATTGACTACTTGGGTGCTAAGACTGATGGCACTAATGGTATGATTGGATGAAAG GATATAAAATTTTCATTTTTGAATTGAAGACAATTGTTGACAAAACTCTGCAATTTGGTTTTCATATTTATAGTTCTCCC TTGCCTTTTTTTCCCTTCATCCAGAAAAGGAAAATTTCAGATTTTCTAATATTCCTCCTGTCCCCTGTTCTTTCTCACCA TCCATTAATTTTTAACAATTGTTAAAATTGAATATTGAACACTTAAATTATGTTTTTCAGCAATGTTCATAATGAAATTT AAGCTTGCCACATGAGGTTTTCTATAGTTCATAATTCACCCATTTGTCATGTCCAAAAAAAACAAGGTGATTTTGTTTCC TTGTGTTCATTCACATTTGATTGCCCCATGATCTCCTATCTCATTATGATAAGCAGCTGTAGTACACTTCTTTTGTCTCC TTTATTTACAATGGATCTTGCTACAGATGGCAGAGACGAAGCAACTAATGGGCTCATGTGGCTGAGAGGTGGACCTGGTG ACCAAGGCCTCAATTCCCTGAATTTTCAAGGTGCTGGTTTGTTGCCCTGGATGCAGCAGAGACTTGATCCATCCTTGCTT GGAAATGATCATAATCAGCAATACCAAGCAATGTTGGCAGCGGGTTTGCAGAATATGGGGAGTGGAGATCTCTTGAGGCA GCAAATGTTGAATTTTCAACAACCTCTCAATTATCTTCAACAATCAGGAAACCCCAATTCTCCTTTTCAGCTTCAGCAAC AGCAAGCAATGCAGCAATCTGCATCTTCTAATATCATGCAGCCACAAGGTCCAGTATTGGCAGAGAACCTGTCTCAGCAC CTCCTTCAGAAATCACACAACAATCGAGAAGACCAAACACAGCAGCAGCAACAAACTTACCAAGATTCACTTTTGATTCA AAGTGATCAACTCCATCTGAGGCAACACACTAGTTTGCCTTCACCATCATATTCAAAACCAGATTTCATAGATTCAAGTG GAAAGTTTGCTGCTTCAGTTTCGCCAGGACAGTCCATGCTTAGTTCACTTTGTTCGGAAGGGAGTGGCAATCTCTCGAAC TTATCAAGAAGTGGTCAGTCCATGCCAACTGAACAGTTACCTCAACAATCATGGGCCCCGAAGTATGCACCTTTGCAGGT CAATGCCTTTGGCAACTCAATGTCACACGGGCAGTATTCTGGAAAAGATACTGCAATGGTGTCACCACATATTAACTCAG ACACCCAAAATCCTATTCTATTTGGTGTCAATATCGACTCATCTGGCCTTCTGCTCCCTACCACTGTCCCTCGTTATACT ACTGCATCAGCAAATACTGATGCATCGACAATGCCGTTAGGGGAGTCTGGATTCCAGGGTCCTTTGTATCCTTGCATGCA AGATTCATTAGAGTTGTTGCAAAGTGCAGGGCAAGTTGACCCTCAAAACCAGACACGGACATTTGTCAAGGTATGAGTCT GCATATTTGTCTTAGCTGCTGCTTTATGAGTCCATTTATTTCATATGATGGTTTAATTTTGTCTTTTCACACAGGTATAC AAATCAGGTTCGGTTGGGCGCTCTCTTGACATCTCGCGGTTCAGCAGCTATCATGAGCTGCGAGAGGAGTTGGCTCAGAT GTTTGGAATTGAGGGTAAATTAGAAGACCCTAGATCAGGCTGGCAGCTTGTGTTCGTCGACAGGGAGAATGATGTTCTTC TCCTTGGAGACGATCCGTGGGAGTAAGTACAACTTTGAATTAAGTATACTGGTTTAGTGATAGATTTGAAAAAAAAATTG GATTTCAGTGTTCAAAATTGATTTTGGTGAAGTCAATTTTGCAGAATCAAAATTACATTCACGGGAATTAATTTTAAGAG AAGTGATTCTTTTTAGCTTTTCTCTTAAGAAGAAAGGATTCTTGGTGCAGGACTCACAACACGACTATCTTTGCACCTCA AAAGTAATTTTATCACATTCAACAAAATCCGTTCTTCTTAACTTACTTTTAAAATATTATTCCCAAACATAAATCAATTC TTTCAAATCAGTTCTACCAAATTTAAAACACACGAACCCGTAGAGTATTATCTTGAGTTTGTCTGATGATATAGATACTT ATTTTCTATCTCCAGTCTTCAAAACAAGTACAGCATGCTGTAAATGTGTTATTTCACTTGGCTAAAGTTTGTTAACATTG TTTTTTGGTCTGTTGATTACACATTGTAGATCATTCGTCAATAACGTTTGGTACATCAAAATACTCTCACCTGAAGATAT TCAGAAAATGGGAGAACAAGCCGAAGAAACCCTTGGTCCAAGTTCTGGCCAAAGGATGAGTAGCACTGGTGCAGAATCTC ATGACATGGTTTCTGGACTAGGCTCACTTGAGTACTGAGATAATTTCAAAATGTACTCCTTCTGATCCCACGTTGAAGAC GATGACTACTACTACTACTACATGTTTGTTACTTCTGTTTGAAACACTAGCATATCTGAACATAATTCTGTATTGTTCTA TTCCCACTTTCACCATCATTATTATGTGTACTAGGAAAAAGAATATGATGACAAACTTAGGACAACCTTGTGTGCCAATT TGTAA
CDS sequence (LotjaGi1g1v0101700.2) extracted from Lotus japonicus Gifu v1.2 CDS.
ATGTGGGCAGATGCTGAAACAGATGAAGTCTATGCTCAAATGACACTTCAGCCGCTGACTCCGCAAGAGCAGAAAGATAC GTTCCTTCCTATGGAATTGGGTATTCCAAGTAAGCAGCCCTCAAATTATTTTTGCAAGACATTAACGGCAAGTGACACCA GCACACATGGAGGGTTCTCTGTTCCTCGACGCGCAGCTGAGAAAGTTTTCCCTCCACTGGATTTCTCACAGCAACCACCT GCACAAGAACTAATTGCTAGGGATCTCCATGATGTTGAGTGGAAGTTTCGACATATCTTTCGGGGACAACCGAAACGACA CCTTCTTACAACAGGCTGGAGTGTGTTTGTTAGTGCCAAAAGACTTGTGGCTGGTGATTCTGTGCTTTTCATTTGGAATG AAAAGAATCAGCTTCTTTTGGGAATACGTCGTGCCAATAGGCCACAAACTGTTATGCCATCTTCAGTTCTATCCAGTGAT AGTATGCACATTGGGCTTCTTGCTGCTGCTGCCCATGCTGCGGCTACTAATAGCTGTTTTACAGTGTTCTATAATCCAAG GTTGGTCATGGGCAGGGCTAGTCCATCTGAGTTTGTCATACCACTTGCGAAATATATCAAAGCTGTGTACCACACACGCG TTTCTGTTGGTATGCGTTTCAGAATGCTTTTTGAGACTGAAGAATCAAGTGTCCGCAGGTACATGGGTACAATAACTGGG ATAAGTGACCTGGATCCTGTTCGTTGGCCGAATTCTCATTGGCGATCTGTTAAGGTTGGTTGGGATGAATCAACGGCAGG AGAAAGACAGCCACGGGTATCATTATGGGAAATTGAGCCTTTAACAACATTTCCAATGTATCCATCACTATTCCCCCTCA GATTGAAGCGACCATGGTATCCTGGCTCTTCCTCTTTTAATGATGGCAGAGACGAAGCAACTAATGGGCTCATGTGGCTG AGAGGTGGACCTGGTGACCAAGGCCTCAATTCCCTGAATTTTCAAGGTGCTGGTTTGTTGCCCTGGATGCAGCAGAGACT TGATCCATCCTTGCTTGGAAATGATCATAATCAGCAATACCAAGCAATGTTGGCAGCGGGTTTGCAGAATATGGGGAGTG GAGATCTCTTGAGGCAGCAAATGTTGAATTTTCAACAACCTCTCAATTATCTTCAACAATCAGGAAACCCCAATTCTCCT TTTCAGCTTCAGCAACAGCAAGCAATGCAGCAATCTGCATCTTCTAATATCATGCAGCCACAAGGTCCAGTATTGGCAGA GAACCTGTCTCAGCACCTCCTTCAGAAATCACACAACAATCGAGAAGACCAAACACAGCAGCAGCAACAAACTTACCAAG ATTCACTTTTGATTCAAAGTGATCAACTCCATCTGAGGCAACACACTAGTTTGCCTTCACCATCATATTCAAAACCAGAT TTCATAGATTCAAGTGGAAAGTTTGCTGCTTCAGTTTCGCCAGGACAGTCCATGCTTAGTTCACTTTGTTCGGAAGGGAG TGGCAATCTCTCGAACTTATCAAGAAGTGGTCAGTCCATGCCAACTGAACAGTTACCTCAACAATCATGGGCCCCGAAGT ATGCACCTTTGCAGGTCAATGCCTTTGGCAACTCAATGTCACACGGGCAGTATTCTGGAAAAGATACTGCAATGGTGTCA CCACATATTAACTCAGACACCCAAAATCCTATTCTATTTGGTGTCAATATCGACTCATCTGGCCTTCTGCTCCCTACCAC TGTCCCTCGTTATACTACTGCATCAGCAAATACTGATGCATCGACAATGCCGTTAGGGGAGTCTGGATTCCAGGGTCCTT TGTATCCTTGCATGCAAGATTCATTAGAGTTGTTGCAAAGTGCAGGGCAAGTTGACCCTCAAAACCAGACACGGACATTT GTCAAGGTATACAAATCAGGTTCGGTTGGGCGCTCTCTTGACATCTCGCGGTTCAGCAGCTATCATGAGCTGCGAGAGGA GTTGGCTCAGATGTTTGGAATTGAGGGTAAATTAGAAGACCCTAGATCAGGCTGGCAGCTTGTGTTCGTCGACAGGGAGA ATGATGTTCTTCTCCTTGGAGACGATCCGTGGGAATCATTCGTCAATAACGTTTGGTACATCAAAATACTCTCACCTGAA GATATTCAGAAAATGGGAGAACAAGAAAAAGAATATGATGACAAACTTAGGACAACCTTGTGTGCCAATTTGTAA
Protein sequence (LotjaGi1g1v0101700.2) extracted from Lotus japonicus Gifu v1.2 Proteins.
MWADAETDEVYAQMTLQPLTPQEQKDTFLPMELGIPSKQPSNYFCKTLTASDTSTHGGFSVPRRAAEKVFPPLDFSQQPP AQELIARDLHDVEWKFRHIFRGQPKRHLLTTGWSVFVSAKRLVAGDSVLFIWNEKNQLLLGIRRANRPQTVMPSSVLSSD SMHIGLLAAAAHAAATNSCFTVFYNPRLVMGRASPSEFVIPLAKYIKAVYHTRVSVGMRFRMLFETEESSVRRYMGTITG ISDLDPVRWPNSHWRSVKVGWDESTAGERQPRVSLWEIEPLTTFPMYPSLFPLRLKRPWYPGSSSFNDGRDEATNGLMWL RGGPGDQGLNSLNFQGAGLLPWMQQRLDPSLLGNDHNQQYQAMLAAGLQNMGSGDLLRQQMLNFQQPLNYLQQSGNPNSP FQLQQQQAMQQSASSNIMQPQGPVLAENLSQHLLQKSHNNREDQTQQQQQTYQDSLLIQSDQLHLRQHTSLPSPSYSKPD FIDSSGKFAASVSPGQSMLSSLCSEGSGNLSNLSRSGQSMPTEQLPQQSWAPKYAPLQVNAFGNSMSHGQYSGKDTAMVS PHINSDTQNPILFGVNIDSSGLLLPTTVPRYTTASANTDASTMPLGESGFQGPLYPCMQDSLELLQSAGQVDPQNQTRTF VKVYKSGSVGRSLDISRFSSYHELREELAQMFGIEGKLEDPRSGWQLVFVDRENDVLLLGDDPWESFVNNVWYIKILSPE DIQKMGEQEKEYDDKLRTTLCANL
Data for domain prediction are obtained with InterProScan, and merged with InterPro data obtained from the EB-eye REST service.
Prediction algorithm | Identifier | Start | End | Length | E-value | InterPro ID |
---|---|---|---|---|---|---|
PANTHER | 1 | 731 | 731 | 0.0 | – | |
PANTHER | 1 | 731 | 731 | 0.0 | – | |
SUPERFAMILY | 28 | 173 | 146 | 2.35E-49 | ||
Gene3D | 42 | 146 | 105 | 4.4E-42 | ||
CDD | 43 | 144 | 102 | 4.1176E-22 | ||
SMART | 44 | 146 | 103 | 3.4E-24 | ||
ProSiteProfiles | 44 | 146 | 103 | 12.379 | ||
Pfam | 44 | 145 | 102 | 9.2E-22 | ||
Pfam | 170 | 258 | 89 | 2.3E-31 | ||
Gene3D | 213 | 286 | 74 | 7.1E-34 | – | |
MobiDBLite | 390 | 417 | 28 | - | – | |
MobiDBLite | 500 | 528 | 29 | - | – | |
Gene3D | 633 | 726 | 94 | 6.0E-36 | – | |
Pfam | 635 | 721 | 87 | 2.9E-7 | ||
SUPERFAMILY | 636 | 711 | 76 | 4.32E-7 | – | |
ProSiteProfiles | 638 | 721 | 84 | 23.882 |
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 | DNA binding | Any molecular function by which a gene product interacts selectively and non-covalently with DNA (deoxyribonucleic acid). | ||
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). | ||
Cellular component | Nucleus | A membrane-bounded organelle of eukaryotic cells in which chromosomes are housed and replicated. In most cells, the nucleus contains all of the cell's chromosomes except the organellar chromosomes, and is the site of RNA synthesis and processing. In some species, or in specialized cell types, RNA metabolism or DNA replication may be absent. | ||
Biological process | Regulation of transcription, DNA-templated | Any process that modulates the frequency, rate or extent of cellular DNA-templated transcription. | ||
Biological process | Response to hormone | Any process that results in a change in state or activity of a cell or an organism (in terms of movement, secretion, enzyme production, gene expression, etc.) as a result of a hormone stimulus. |
Expression pattern of LotjaGi1g1v0101700.2, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.
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