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Tomato locus Auxin Response Factor 7
| Locus details | Download GMOD XML | Note to Editors | Annotation guidelines |
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Links to external databases
Links to external databases
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| Registry name: | None | [Associate registry name] |
Notes and figures (4)
Notes and figures (4)
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Accessions and images (0)
Accessions and images (0)
| [Associate accession] |
Accession name:
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| Alleles (0) | None | [Add new Allele] |
Associated loci (0)
Associated loci (0)
| [Associate new locus] |
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| Associated loci - graphical view | None |
SolCyc links
SolCyc links
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Sequence annotations
Sequence annotations
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Genome features
Genome features
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Genomic sequence
Genomic sequence
| unprocessed genomic sequence region underlying this gene |
>Solyc07g042260.2 SL2.50ch07:55371264..55363905 (sequence from reverse strand)
AGAAAGTGAAAAGCTTTTTGAACTGGAATTAGGTGAAAGTAGCTTTGTGTTGGACAAATTCTTCTTTGTTACTTTTGGGAGAGAAGTAATTCAACTTAAGTGGATTTTTTGCTGAAATGAAAGCGCCATCAAACGGATATCTACCAAATTCAGGAGAAGGTCTTTTATTAAAGCTTCATTTATTCATTTGCATTTTTCATTGGGGATATGATAAGTGAAATTTGCTGCCATATTTTAGCTTTGATGGTTTGCTAGAGTTATAAATTGATTGTTTTGTCACTTGATAACCATAATATACAAGTTTTTCTTAAAGTAACTTGTTTGTAAGGCTCAAGGTTCCTGTGAATATTTGCCTTTTTTAAAAAAAAAGAAACATTCCTATTGCAAAGATGAGAACAGAAATACACTTTATCTGAACTGCTTTTACTTGTTTATTCTTTCATTAGTTTGTTAGCAAAATGTTACTAATACAATTTGTACATCCAGGAGTACAAATTGTATTTAGTGTAATTGATCTACGGGTTCATGTCTGCTTTCTAAGTTGGATTTTGGATTATGTATTGGATAACCATCAAATTTTCTTGCCCCAATATCTGGTAATCGTTTTAAGTTTTACTTCTGACCTCGTATTAACTTAGCAGATGCCTCAAATGGTCTACTTTCTGTTATTCGTTTTTATGGGGTTGATTATGGACCGAAGTGCGGAACATGAGCATGGGGATCGGTTCTCATTTCATTTAACTACTCCTGGCAGCTTGTGTTTACTCCATTTTGGAGAAGAAAGAGTACCTTCCAATTTCTGTATATCATTCATTCACTGTCAATTAAGTAGGTTGTGCTATGCTGACATGTAAGTACTAGAAGGGGTAATCACTGGAATAGGAACAAAATTAATAATGCAGATTTTGCTTGATCTGAGTTCATGATGCTTTAATTGGATCCACTTGCCATAAGTTCATATTCTCATATGGTTTTCTTTGAGAAAGGAAAATGAAAAAGTTGTTCTTTTCATTGATCACTAGATCAAGAAATTACTGTTATCTGTGCATGTCATTGACATGCTGAAGCTTATCCAGTATTGGTTAGTTTTTGATTGCCATTAGGTATACACCTTTTAGAGGGTCACAAATATTAGCTGTATGAGGGTCACATGATATTCACATAAGTTCCTGGTATTACTGAAGTTCAATAATCATTTGGCTTGCAGAACTCCTTATCTTTATGATGGGGAGCCAAGGAGCAACGGTAAAGTTGTCTCCGTGACACCTATATGTCACGGGTTCGAGCCGTGGAAGCAGCCACTAATGCTTGTATTAGGGTAGGCTATCTACATCACATCTTTTTGGGGGTACAGCCTTCCCCTGATTCGGCTTTAGCTGGATGATTTGGGTACCGCCGCACCGGGCTGCCGGTTTTAGCTCCTTATCTTTATCTACCAGTTGTTTGTACTTCTGCTTAAAACAGGTTTGACTGTAATAATCCTTCAGTTGGGGCTAAAGGTGAAACAGAAGAAAATTTTCTTTTTTTGGTTGCATGAATGATGTTTAACATAGCTGGTAATCAAGCGAATAATTTGCACATAAATGACCTTAACTCTAGCATATATGTGAACTTTAAATTTCGTAATATGCATACCTGAAAGATTGTATCAAATTGCAACAGGAGAAAGAAAGCTCATGAATTCAGAGTTATGGCACGCTTGTGCTGGCCCATTGGTTTCTTTGCCTCCTGTTGGAAGCCTTGTGGTATATTTTCCTCAAGGTCACAGTGAGCAGGTATGTATCTTTTGAAGTTGAATAGGATTATTACACCGCCCAGATACTGTCCAATTATGAAGCCTTAAATCAGTACCAACATTATGCAGGTGGCTGCATCAATGCAAAAGGAGACAGATGGAATTCCAAGTTATCCTAATCTTCCTTCCAAGTTGATCTGCATGTTACACAATGTTACTCTACATGTATGGATCTTCCTCTATCCACATATTGGCTGGGAGTTCTCGATTACATGAATTGTTTTTCCATTTCCATATATTTTGCTTAAAGTAATGATTGAATACGGGTGTTTTCGGATACATTCTTTGTATTTCCAAAGACTTTAATGGAAACCTAGGATCACTGTACTTCTTTGTAAGATTCGTAGTGTTTATTTGGTTCCACAATCTCGATTGACGTTGCATGTGAATTAAGTAGAAATATTGTTCTATTACGCAAGTTAAAGTGTAGTGGGTTTTCCCTTCTCCTAACATGTTATACTTGTGACATTTTTGTTAGGCTGACACTGAAACTGATGAGGTCTATGCTCAGATGACTCTTCAACCTGTCAACAAAGTAAGTCCTTTATATTGTTTCCAATTTCAGCTGTCATCTTTTCGGTCAAAGTACTTTTTACCTCCTCCCATAAGTTGTATGAAACAAACTTTTTGATTCTGCAGTATGACCAGGAGGCTTTACTTTTATCTGAAATGGGCCTTAAGCAGAACAGGCAACCTGCTGAGTTCTTCTGTAAAACTCTCACTGCTAGTGATACAAGCACACATGGTGGATTTTCTGTTCCTCGTCGAGCAGCAGAGAAGATATTTCCTCCTCTGGTTTGTTTTTCTTCACGAAATGTCTTCAAGAAAAGATCTACCTTTATGCATCTGATATGGAGCTTCTTTATAGGACTATGCAATGCAACCTCCTGCTCAGGAGCTAATGGCTAGAGATTTGCATGACCAAACATGGACTTTCAGGCATATTTATCGAGGTACTTTTTAAGATCTTCTACTCTCTTATGTTGGAAGCTTAATTTTGATAATTCTGTGTGGAACTACTAATGGGGTAACACTGTGAGTCTCTATACTAGTGGTTTACATTTAAGGTTTCTCTTCAAAGATACAGTTTCATGTTGGACTGCTAAGTTAAGTGACTTGAATAATTAGTCTTTGTTTTGTTTTTATACAGTAGTGACTTTTATTTCTAAATCCAACTCAACTTATGAGAAAGATAATTATTATAATATTTTTCTCAATAGTTTTGTTTTAGCTTTTAAGTATCTTTTAACTGAGAGAGAATGTCTTTTAGTGTGAGTTTTTAAAAGTGTATTGATGTAAGAAGCTTACCCTAGTGAATTAAGTTTAGGTCATGTAGTGAATTGTGAACATTTTCCCAACAATGACTGTAGCCATCAATGTATCAGGTAAAAATTGGTCAGTGATAAGTGCTAACAAGGTTCCTTGAAACAAATTAACATGATTTCAGGTCAACCAAAAAGACACCTTTTGACTACCGGTTGGAGTGTCTTTATCTCCTCTAAGAGGCTTTGTGCCGGCGATTCTGTCCTTTTCATAAGGTAAAGGAAAAGTTGGTTACTTTTTTTTTTTATTGATATGATAGTCATCTTGTTGCTAAGCTGAGAAAATTTTATGTAGAGATGAAAAGTCACAGCTTCTCTTGGGTATAAAACGAACAAATAGACAGCAGCCCGCCCTATCCTCATCTGTTATATCTAGTGACAGCATGCACATTGGGATCCTTGCTGCTGCTGCTCATGCTGCTGCAAACAACAGCCCGTTTACTATCTTTTACAACCCTAGGTACTATATCAGCCCTTTTTAAATCGAAAATATTTCGTGTTCGGGTCTAGATATTTTCCAGACCTCAATTGTGGGATTTCACTGGGTATGTTGTGGTTGTGGTTGTTTGGATCTAGATGTTGAATCATACACATTTTTGTAATCTTGCTCTTTTTGTTCTTGACAGGGCTAGCCCTTCTGAATTTGTAATTCCTCTGGCCAAGTATAATAAAGCTATGTATGCACAAGTTTCACTAGGAATGCGATTTCGGATGATGTTTGAAACAGAGGAGTCTGGAGTTCGCAGATACATGGGTACAATAACAGGTGTTAGTGATCTGGACCCCATACGATGGAAGAGCTCACAGTGGCGTAATCTTCAGGTACTCAGACATATTTAACTTAGTGGTCATAGTACAGCCCTTCCTGCTTCTTGATATATATTTCTCAGTCATACCAAATACAATTATATGTGTTAGGCAATGTCACTCATTGAGTCATCAGTTGCTACTCCAGATCAGTGCTTGCTTGCATTTTGGTTCATGTTTTTGGTGGTATATAAGAAACTGTGTTTGCATTGATCGAATCCTGAACTATTTCTTTATTTAATTTGTTAGGTAGGATGGGATGAATCAACTGCCGGAGAACGTCCAAGCAGAGTTTCAATTTGGGATATTGAGCCTGTCGTGACTCCTTTTTATATCTGTCCACCACCATTTTTCAGGCCCAAGTTTCCTAAGCAGCCAAGTTTTCCTGGTAAGCTACTTGATATTTAGCTTTCTCGTGTAATGGTTCAAAGGTTCAGAAGAACTAAAACAAAGAACCTATTAAAGGTTCACTGTAGTTAAAACTCAACTTTGACTTACAAGAAATGTTGGAATGTTCAGTTTTCTGTTGCGGTAAAATATATTTTATTTAAAGGATTTTCATCAACTTAATCTCAACGGTAGCAGCATGATATCAACCTTAGTCAGGCACTATACATAGTAGCACGATTCATCTCCCTCATCTCTACTTGTACAAAAGGAACATAGTCCACTATAATTTCCTCGATAAAATCCTCAAAAGGGCTAGTGCTTTTGCAGGTGATGAGTCTGATATTGAAAATGTTTTAAAGAGGGGGATGCCCTGGATCAATGATGAGTTAGGTCTAAAAGATGCTCAAAATTCGATATTCCCTGGACTGAGCTTGGTCCAATGGATGAGTATGCAACAGAACAATCATGTGCCAGTTGCCCAATCTGGACTTCCCAGTGTCTTACACAGTAACATCGGCAGTGATGACCATTCCAAGTTGTTGAACTTTCAGTCACCTGCATTAGCTACACCGGGTCTCCAGTTCAACAAACCAAATCAACTAAACCAGCCATTTGGTCAAATCCAACAGCCACCATTAGCATGGACTCAAGAGCAACAGCAATCGTTACAGTCTCCTGTAAGTGCACAACAGCAACAGCAACAGCAACACACGCTGCAGCAACAGCAACAGCAACAACAACACACATTACAGCAGCAGCAACAACAACGACACACATTGCAGCAGCAACAACAACAACAAACACTGCAGCAGCAGCAGCAGCAACAGCAACAGCAACACACACTGCAGCAGCAGCAACAGCAACAACACACACTGCAGCATCAGCAGCAGCACACGCTGCAACAGCCACAGCAACACATGTTGCAGCAACAGCCACAGTTTCATCAACAAGCACAACAGCAGCTGCAGCAACAACAGCGTCCATCCCAGCAGCAACAATTGACCGGGAATTCATCACCAGTAAATCGTTGTGTATCCCCTAACCAGATACCAAACCAAACTTTTCCACAAGCTGCGGTATATGGTCAGCTTCAGCAACAACAGGTGCTATCAGCTAGTACCCAATCACAGCAAAATGTTCCTGTCAGTAGAAATTCATTCCCTTCGACATCCTTGGCACAGGACTTCCAATTTCAGCAACAAATGGAACAGCAATCTAACCTCTTGCAGAAATCCCAGCAACAGCAGACAATACCACAACAAGCTCCTCTACAATTGTTGCAGCAAAGTTTGATGCAGAGGTCCCAAGTGCAACCATCATCACAGCAGAGCCTTACAGAACAGCAGCTGCAACTACAACTTCTTAATAAACTGCAGCAGCAACAACAACAGCAACAAGCACAGCTATTATCTCCCGTAAGCTCTACTCTGGAGCCGCGTATGCCCCAGCAACAACAGAACCGGCAACCACAAGAGCTCCAGTTTGCTCATCAACAGTTGAGTTCCAACATCGTGACCACCGTGACACATCTCCAGTCAACCCATCATGCTTTCAACCAACTCCAAAACCATCACAAATCCCCTATAACAATCAAAGCACTTTCTGGTGGTACAGAAGGAGATGCTCCTTCATGTTCAACCTCTCCTTCTACGAATAATTTCCAAGTTTCACCACCAAACTTCTTGACCAGGAACCAAGGGCAAGCGATACTGGTGGATGAATCTGTTGTCGATCCTTCTCAAGAGCAAAACAAATCCGAATGTCGAATAAAACATGAACTAGTGTTCTCAAAAGGTTCAGAGCTGTCTAAGTACAAAGGCAATAATACTGAGAACTTAGAGGCAGCCTCATCGACAACATCGTATGGGCTGGATTCTAGTGGCTTCAACTTTTCATTGCCTGCATTATGTGTGGATGGTGATGTTCAATCGCATTCTAGGAACATTCTACCTTCTGCAGCAAATAATATAGATGGACTGAACCCTGATGCTTTGCTATCAAGGGATTATGATTCTGGAAAGGATATACAAAACCTATTCTCTCCTTTTGGCAATGCCCCTAGGGATATAGAAACTGAGCTGTCTGATGCTGGGATCAATTCTCAACAATTTGGGGTGCCAAACATGTCATACAAGCCAAGATGTGCCAACGATCTTGCTGTCAATGACAACGGTATTCTGAACAATAATGCATGGACGAACCAGACTCAGCGCATGAGAACGTATACAAAGGTTTGCTGCACACATGCTTTGCTCAGTTGATCACTTTTATGTGTTCTCTCTTATTTCGAGTTTCATATGATGGATTAGTAATGTTAAGTTTCATTCCCGTTATTTGTATTTTTAATATCTTTTTTGCAACTGTGAAGGTTCAAAAACGAGGCTCTGTGGGAAGAACTATAGACGTTACTCGCTACATAGGCTATGATGAACTAAGGCATGATCTAGCACGTATGTTTGGAATTGAGGGACAGCTTGAAGATCCTCAAAGAACTGAGTGGAAGCTTGTGTATGTTGACCATGAGAATGATATACTGCTTGTTGGTGACGATCCTTGGGAGTAAGTGTTGACTTTGTCAAAAGTTGTAGTATTACTTGTCCTAGATATTTATGTTTTCCCATTTTTTTTCAGGGAGTTTGTGAGCTGTGTTCAGAGCATCAAAATCTTGTCTTGCGCTGAAGTGCAGCAGATGAGCTTGAATGGGGATTTGGGTAATGTGCCAGTACCAAACCAAGCTAGCAGTGGAACTGACAGTGGTAATGCGTGGAAAGGACACTACGATGACAACTCAGCTGCATCATTTAATTGATGAAGGTGCTCCAATTAAATGAACTAAACCTTGCAATACATAGTCATGGAGGCTGCAAACGACTAAATCTGCTGATTCTCACTGGAGGCAACTGAGGTAGTAGAACATTACTTTCTAGGCAACAGGTGGGAGCAACTCATGGCGTGTTTTGGCGTAAATTCATGGCAGGGTTGATATTAGATTAGTTTGATTGCCACTTTATTGTGAGGTCCAAAGCAGTTATAAATTTATTAATTA
AGAAAGTGAAAAGCTTTTTGAACTGGAATTAGGTGAAAGTAGCTTTGTGTTGGACAAATTCTTCTTTGTTACTTTTGGGAGAGAAGTAATTCAACTTAAGTGGATTTTTTGCTGAAATGAAAGCGCCATCAAACGGATATCTACCAAATTCAGGAGAAGGTCTTTTATTAAAGCTTCATTTATTCATTTGCATTTTTCATTGGGGATATGATAAGTGAAATTTGCTGCCATATTTTAGCTTTGATGGTTTGCTAGAGTTATAAATTGATTGTTTTGTCACTTGATAACCATAATATACAAGTTTTTCTTAAAGTAACTTGTTTGTAAGGCTCAAGGTTCCTGTGAATATTTGCCTTTTTTAAAAAAAAAGAAACATTCCTATTGCAAAGATGAGAACAGAAATACACTTTATCTGAACTGCTTTTACTTGTTTATTCTTTCATTAGTTTGTTAGCAAAATGTTACTAATACAATTTGTACATCCAGGAGTACAAATTGTATTTAGTGTAATTGATCTACGGGTTCATGTCTGCTTTCTAAGTTGGATTTTGGATTATGTATTGGATAACCATCAAATTTTCTTGCCCCAATATCTGGTAATCGTTTTAAGTTTTACTTCTGACCTCGTATTAACTTAGCAGATGCCTCAAATGGTCTACTTTCTGTTATTCGTTTTTATGGGGTTGATTATGGACCGAAGTGCGGAACATGAGCATGGGGATCGGTTCTCATTTCATTTAACTACTCCTGGCAGCTTGTGTTTACTCCATTTTGGAGAAGAAAGAGTACCTTCCAATTTCTGTATATCATTCATTCACTGTCAATTAAGTAGGTTGTGCTATGCTGACATGTAAGTACTAGAAGGGGTAATCACTGGAATAGGAACAAAATTAATAATGCAGATTTTGCTTGATCTGAGTTCATGATGCTTTAATTGGATCCACTTGCCATAAGTTCATATTCTCATATGGTTTTCTTTGAGAAAGGAAAATGAAAAAGTTGTTCTTTTCATTGATCACTAGATCAAGAAATTACTGTTATCTGTGCATGTCATTGACATGCTGAAGCTTATCCAGTATTGGTTAGTTTTTGATTGCCATTAGGTATACACCTTTTAGAGGGTCACAAATATTAGCTGTATGAGGGTCACATGATATTCACATAAGTTCCTGGTATTACTGAAGTTCAATAATCATTTGGCTTGCAGAACTCCTTATCTTTATGATGGGGAGCCAAGGAGCAACGGTAAAGTTGTCTCCGTGACACCTATATGTCACGGGTTCGAGCCGTGGAAGCAGCCACTAATGCTTGTATTAGGGTAGGCTATCTACATCACATCTTTTTGGGGGTACAGCCTTCCCCTGATTCGGCTTTAGCTGGATGATTTGGGTACCGCCGCACCGGGCTGCCGGTTTTAGCTCCTTATCTTTATCTACCAGTTGTTTGTACTTCTGCTTAAAACAGGTTTGACTGTAATAATCCTTCAGTTGGGGCTAAAGGTGAAACAGAAGAAAATTTTCTTTTTTTGGTTGCATGAATGATGTTTAACATAGCTGGTAATCAAGCGAATAATTTGCACATAAATGACCTTAACTCTAGCATATATGTGAACTTTAAATTTCGTAATATGCATACCTGAAAGATTGTATCAAATTGCAACAGGAGAAAGAAAGCTCATGAATTCAGAGTTATGGCACGCTTGTGCTGGCCCATTGGTTTCTTTGCCTCCTGTTGGAAGCCTTGTGGTATATTTTCCTCAAGGTCACAGTGAGCAGGTATGTATCTTTTGAAGTTGAATAGGATTATTACACCGCCCAGATACTGTCCAATTATGAAGCCTTAAATCAGTACCAACATTATGCAGGTGGCTGCATCAATGCAAAAGGAGACAGATGGAATTCCAAGTTATCCTAATCTTCCTTCCAAGTTGATCTGCATGTTACACAATGTTACTCTACATGTATGGATCTTCCTCTATCCACATATTGGCTGGGAGTTCTCGATTACATGAATTGTTTTTCCATTTCCATATATTTTGCTTAAAGTAATGATTGAATACGGGTGTTTTCGGATACATTCTTTGTATTTCCAAAGACTTTAATGGAAACCTAGGATCACTGTACTTCTTTGTAAGATTCGTAGTGTTTATTTGGTTCCACAATCTCGATTGACGTTGCATGTGAATTAAGTAGAAATATTGTTCTATTACGCAAGTTAAAGTGTAGTGGGTTTTCCCTTCTCCTAACATGTTATACTTGTGACATTTTTGTTAGGCTGACACTGAAACTGATGAGGTCTATGCTCAGATGACTCTTCAACCTGTCAACAAAGTAAGTCCTTTATATTGTTTCCAATTTCAGCTGTCATCTTTTCGGTCAAAGTACTTTTTACCTCCTCCCATAAGTTGTATGAAACAAACTTTTTGATTCTGCAGTATGACCAGGAGGCTTTACTTTTATCTGAAATGGGCCTTAAGCAGAACAGGCAACCTGCTGAGTTCTTCTGTAAAACTCTCACTGCTAGTGATACAAGCACACATGGTGGATTTTCTGTTCCTCGTCGAGCAGCAGAGAAGATATTTCCTCCTCTGGTTTGTTTTTCTTCACGAAATGTCTTCAAGAAAAGATCTACCTTTATGCATCTGATATGGAGCTTCTTTATAGGACTATGCAATGCAACCTCCTGCTCAGGAGCTAATGGCTAGAGATTTGCATGACCAAACATGGACTTTCAGGCATATTTATCGAGGTACTTTTTAAGATCTTCTACTCTCTTATGTTGGAAGCTTAATTTTGATAATTCTGTGTGGAACTACTAATGGGGTAACACTGTGAGTCTCTATACTAGTGGTTTACATTTAAGGTTTCTCTTCAAAGATACAGTTTCATGTTGGACTGCTAAGTTAAGTGACTTGAATAATTAGTCTTTGTTTTGTTTTTATACAGTAGTGACTTTTATTTCTAAATCCAACTCAACTTATGAGAAAGATAATTATTATAATATTTTTCTCAATAGTTTTGTTTTAGCTTTTAAGTATCTTTTAACTGAGAGAGAATGTCTTTTAGTGTGAGTTTTTAAAAGTGTATTGATGTAAGAAGCTTACCCTAGTGAATTAAGTTTAGGTCATGTAGTGAATTGTGAACATTTTCCCAACAATGACTGTAGCCATCAATGTATCAGGTAAAAATTGGTCAGTGATAAGTGCTAACAAGGTTCCTTGAAACAAATTAACATGATTTCAGGTCAACCAAAAAGACACCTTTTGACTACCGGTTGGAGTGTCTTTATCTCCTCTAAGAGGCTTTGTGCCGGCGATTCTGTCCTTTTCATAAGGTAAAGGAAAAGTTGGTTACTTTTTTTTTTTATTGATATGATAGTCATCTTGTTGCTAAGCTGAGAAAATTTTATGTAGAGATGAAAAGTCACAGCTTCTCTTGGGTATAAAACGAACAAATAGACAGCAGCCCGCCCTATCCTCATCTGTTATATCTAGTGACAGCATGCACATTGGGATCCTTGCTGCTGCTGCTCATGCTGCTGCAAACAACAGCCCGTTTACTATCTTTTACAACCCTAGGTACTATATCAGCCCTTTTTAAATCGAAAATATTTCGTGTTCGGGTCTAGATATTTTCCAGACCTCAATTGTGGGATTTCACTGGGTATGTTGTGGTTGTGGTTGTTTGGATCTAGATGTTGAATCATACACATTTTTGTAATCTTGCTCTTTTTGTTCTTGACAGGGCTAGCCCTTCTGAATTTGTAATTCCTCTGGCCAAGTATAATAAAGCTATGTATGCACAAGTTTCACTAGGAATGCGATTTCGGATGATGTTTGAAACAGAGGAGTCTGGAGTTCGCAGATACATGGGTACAATAACAGGTGTTAGTGATCTGGACCCCATACGATGGAAGAGCTCACAGTGGCGTAATCTTCAGGTACTCAGACATATTTAACTTAGTGGTCATAGTACAGCCCTTCCTGCTTCTTGATATATATTTCTCAGTCATACCAAATACAATTATATGTGTTAGGCAATGTCACTCATTGAGTCATCAGTTGCTACTCCAGATCAGTGCTTGCTTGCATTTTGGTTCATGTTTTTGGTGGTATATAAGAAACTGTGTTTGCATTGATCGAATCCTGAACTATTTCTTTATTTAATTTGTTAGGTAGGATGGGATGAATCAACTGCCGGAGAACGTCCAAGCAGAGTTTCAATTTGGGATATTGAGCCTGTCGTGACTCCTTTTTATATCTGTCCACCACCATTTTTCAGGCCCAAGTTTCCTAAGCAGCCAAGTTTTCCTGGTAAGCTACTTGATATTTAGCTTTCTCGTGTAATGGTTCAAAGGTTCAGAAGAACTAAAACAAAGAACCTATTAAAGGTTCACTGTAGTTAAAACTCAACTTTGACTTACAAGAAATGTTGGAATGTTCAGTTTTCTGTTGCGGTAAAATATATTTTATTTAAAGGATTTTCATCAACTTAATCTCAACGGTAGCAGCATGATATCAACCTTAGTCAGGCACTATACATAGTAGCACGATTCATCTCCCTCATCTCTACTTGTACAAAAGGAACATAGTCCACTATAATTTCCTCGATAAAATCCTCAAAAGGGCTAGTGCTTTTGCAGGTGATGAGTCTGATATTGAAAATGTTTTAAAGAGGGGGATGCCCTGGATCAATGATGAGTTAGGTCTAAAAGATGCTCAAAATTCGATATTCCCTGGACTGAGCTTGGTCCAATGGATGAGTATGCAACAGAACAATCATGTGCCAGTTGCCCAATCTGGACTTCCCAGTGTCTTACACAGTAACATCGGCAGTGATGACCATTCCAAGTTGTTGAACTTTCAGTCACCTGCATTAGCTACACCGGGTCTCCAGTTCAACAAACCAAATCAACTAAACCAGCCATTTGGTCAAATCCAACAGCCACCATTAGCATGGACTCAAGAGCAACAGCAATCGTTACAGTCTCCTGTAAGTGCACAACAGCAACAGCAACAGCAACACACGCTGCAGCAACAGCAACAGCAACAACAACACACATTACAGCAGCAGCAACAACAACGACACACATTGCAGCAGCAACAACAACAACAAACACTGCAGCAGCAGCAGCAGCAACAGCAACAGCAACACACACTGCAGCAGCAGCAACAGCAACAACACACACTGCAGCATCAGCAGCAGCACACGCTGCAACAGCCACAGCAACACATGTTGCAGCAACAGCCACAGTTTCATCAACAAGCACAACAGCAGCTGCAGCAACAACAGCGTCCATCCCAGCAGCAACAATTGACCGGGAATTCATCACCAGTAAATCGTTGTGTATCCCCTAACCAGATACCAAACCAAACTTTTCCACAAGCTGCGGTATATGGTCAGCTTCAGCAACAACAGGTGCTATCAGCTAGTACCCAATCACAGCAAAATGTTCCTGTCAGTAGAAATTCATTCCCTTCGACATCCTTGGCACAGGACTTCCAATTTCAGCAACAAATGGAACAGCAATCTAACCTCTTGCAGAAATCCCAGCAACAGCAGACAATACCACAACAAGCTCCTCTACAATTGTTGCAGCAAAGTTTGATGCAGAGGTCCCAAGTGCAACCATCATCACAGCAGAGCCTTACAGAACAGCAGCTGCAACTACAACTTCTTAATAAACTGCAGCAGCAACAACAACAGCAACAAGCACAGCTATTATCTCCCGTAAGCTCTACTCTGGAGCCGCGTATGCCCCAGCAACAACAGAACCGGCAACCACAAGAGCTCCAGTTTGCTCATCAACAGTTGAGTTCCAACATCGTGACCACCGTGACACATCTCCAGTCAACCCATCATGCTTTCAACCAACTCCAAAACCATCACAAATCCCCTATAACAATCAAAGCACTTTCTGGTGGTACAGAAGGAGATGCTCCTTCATGTTCAACCTCTCCTTCTACGAATAATTTCCAAGTTTCACCACCAAACTTCTTGACCAGGAACCAAGGGCAAGCGATACTGGTGGATGAATCTGTTGTCGATCCTTCTCAAGAGCAAAACAAATCCGAATGTCGAATAAAACATGAACTAGTGTTCTCAAAAGGTTCAGAGCTGTCTAAGTACAAAGGCAATAATACTGAGAACTTAGAGGCAGCCTCATCGACAACATCGTATGGGCTGGATTCTAGTGGCTTCAACTTTTCATTGCCTGCATTATGTGTGGATGGTGATGTTCAATCGCATTCTAGGAACATTCTACCTTCTGCAGCAAATAATATAGATGGACTGAACCCTGATGCTTTGCTATCAAGGGATTATGATTCTGGAAAGGATATACAAAACCTATTCTCTCCTTTTGGCAATGCCCCTAGGGATATAGAAACTGAGCTGTCTGATGCTGGGATCAATTCTCAACAATTTGGGGTGCCAAACATGTCATACAAGCCAAGATGTGCCAACGATCTTGCTGTCAATGACAACGGTATTCTGAACAATAATGCATGGACGAACCAGACTCAGCGCATGAGAACGTATACAAAGGTTTGCTGCACACATGCTTTGCTCAGTTGATCACTTTTATGTGTTCTCTCTTATTTCGAGTTTCATATGATGGATTAGTAATGTTAAGTTTCATTCCCGTTATTTGTATTTTTAATATCTTTTTTGCAACTGTGAAGGTTCAAAAACGAGGCTCTGTGGGAAGAACTATAGACGTTACTCGCTACATAGGCTATGATGAACTAAGGCATGATCTAGCACGTATGTTTGGAATTGAGGGACAGCTTGAAGATCCTCAAAGAACTGAGTGGAAGCTTGTGTATGTTGACCATGAGAATGATATACTGCTTGTTGGTGACGATCCTTGGGAGTAAGTGTTGACTTTGTCAAAAGTTGTAGTATTACTTGTCCTAGATATTTATGTTTTCCCATTTTTTTTCAGGGAGTTTGTGAGCTGTGTTCAGAGCATCAAAATCTTGTCTTGCGCTGAAGTGCAGCAGATGAGCTTGAATGGGGATTTGGGTAATGTGCCAGTACCAAACCAAGCTAGCAGTGGAACTGACAGTGGTAATGCGTGGAAAGGACACTACGATGACAACTCAGCTGCATCATTTAATTGATGAAGGTGCTCCAATTAAATGAACTAAACCTTGCAATACATAGTCATGGAGGCTGCAAACGACTAAATCTGCTGATTCTCACTGGAGGCAACTGAGGTAGTAGAACATTACTTTCTAGGCAACAGGTGGGAGCAACTCATGGCGTGTTTTGGCGTAAATTCATGGCAGGGTTGATATTAGATTAGTTTGATTGCCACTTTATTGTGAGGTCCAAAGCAGTTATAAATTTATTAATTA
| Download sequence region |
Get flanking sequences on SL2.50ch07
|
mRNA Solyc07g042260.2.1
mRNA Solyc07g042260.2.1
|
Ontology terms
Ontology terms
| terms associated with this mRNA |
cDNA sequence
cDNA sequence
| spliced cDNA sequence, including UTRs |
>Solyc07g042260.2.1 Auxin response factor 1 (AHRD V1 *-*- Q6L8U3_CUCSA); contains Interpro domain(s) IPR010525 Auxin response factor
AGAAAGTGAAAAGCTTTTTGAACTGGAATTAGGTGAAAGTAGCTTTGTGTTGGACAAATTCTTCTTTGTTACTTTTGGGAGAGAAGTAATTCAACTTAAGTGGATTTTTTGCTGAAATGAAAGCGCCATCAAACGGATATCTACCAAATTCAGGAGAAGGAGAAAGAAAGCTCATGAATTCAGAGTTATGGCACGCTTGTGCTGGCCCATTGGTTTCTTTGCCTCCTGTTGGAAGCCTTGTGGTATATTTTCCTCAAGGTCACAGTGAGCAGGTGGCTGCATCAATGCAAAAGGAGACAGATGGAATTCCAAGTTATCCTAATCTTCCTTCCAAGTTGATCTGCATGTTACACAATGTTACTCTACATGCTGACACTGAAACTGATGAGGTCTATGCTCAGATGACTCTTCAACCTGTCAACAAATATGACCAGGAGGCTTTACTTTTATCTGAAATGGGCCTTAAGCAGAACAGGCAACCTGCTGAGTTCTTCTGTAAAACTCTCACTGCTAGTGATACAAGCACACATGGTGGATTTTCTGTTCCTCGTCGAGCAGCAGAGAAGATATTTCCTCCTCTGGACTATGCAATGCAACCTCCTGCTCAGGAGCTAATGGCTAGAGATTTGCATGACCAAACATGGACTTTCAGGCATATTTATCGAGGTCAACCAAAAAGACACCTTTTGACTACCGGTTGGAGTGTCTTTATCTCCTCTAAGAGGCTTTGTGCCGGCGATTCTGTCCTTTTCATAAGAGATGAAAAGTCACAGCTTCTCTTGGGTATAAAACGAACAAATAGACAGCAGCCCGCCCTATCCTCATCTGTTATATCTAGTGACAGCATGCACATTGGGATCCTTGCTGCTGCTGCTCATGCTGCTGCAAACAACAGCCCGTTTACTATCTTTTACAACCCTAGGGCTAGCCCTTCTGAATTTGTAATTCCTCTGGCCAAGTATAATAAAGCTATGTATGCACAAGTTTCACTAGGAATGCGATTTCGGATGATGTTTGAAACAGAGGAGTCTGGAGTTCGCAGATACATGGGTACAATAACAGGTGTTAGTGATCTGGACCCCATACGATGGAAGAGCTCACAGTGGCGTAATCTTCAGGTAGGATGGGATGAATCAACTGCCGGAGAACGTCCAAGCAGAGTTTCAATTTGGGATATTGAGCCTGTCGTGACTCCTTTTTATATCTGTCCACCACCATTTTTCAGGCCCAAGTTTCCTAAGCAGCCAAGTTTTCCTGGTGATGAGTCTGATATTGAAAATGTTTTAAAGAGGGGGATGCCCTGGATCAATGATGAGTTAGGTCTAAAAGATGCTCAAAATTCGATATTCCCTGGACTGAGCTTGGTCCAATGGATGAGTATGCAACAGAACAATCATGTGCCAGTTGCCCAATCTGGACTTCCCAGTGTCTTACACAGTAACATCGGCAGTGATGACCATTCCAAGTTGTTGAACTTTCAGTCACCTGCATTAGCTACACCGGGTCTCCAGTTCAACAAACCAAATCAACTAAACCAGCCATTTGGTCAAATCCAACAGCCACCATTAGCATGGACTCAAGAGCAACAGCAATCGTTACAGTCTCCTGTAAGTGCACAACAGCAACAGCAACAGCAACACACGCTGCAGCAACAGCAACAGCAACAACAACACACATTACAGCAGCAGCAACAACAACGACACACATTGCAGCAGCAACAACAACAACAAACACTGCAGCAGCAGCAGCAGCAACAGCAACAGCAACACACACTGCAGCAGCAGCAACAGCAACAACACACACTGCAGCATCAGCAGCAGCACACGCTGCAACAGCCACAGCAACACATGTTGCAGCAACAGCCACAGTTTCATCAACAAGCACAACAGCAGCTGCAGCAACAACAGCGTCCATCCCAGCAGCAACAATTGACCGGGAATTCATCACCAGTAAATCGTTGTGTATCCCCTAACCAGATACCAAACCAAACTTTTCCACAAGCTGCGGTATATGGTCAGCTTCAGCAACAACAGGTGCTATCAGCTAGTACCCAATCACAGCAAAATGTTCCTGTCAGTAGAAATTCATTCCCTTCGACATCCTTGGCACAGGACTTCCAATTTCAGCAACAAATGGAACAGCAATCTAACCTCTTGCAGAAATCCCAGCAACAGCAGACAATACCACAACAAGCTCCTCTACAATTGTTGCAGCAAAGTTTGATGCAGAGGTCCCAAGTGCAACCATCATCACAGCAGAGCCTTACAGAACAGCAGCTGCAACTACAACTTCTTAATAAACTGCAGCAGCAACAACAACAGCAACAAGCACAGCTATTATCTCCCGTAAGCTCTACTCTGGAGCCGCGTATGCCCCAGCAACAACAGAACCGGCAACCACAAGAGCTCCAGTTTGCTCATCAACAGTTGAGTTCCAACATCGTGACCACCGTGACACATCTCCAGTCAACCCATCATGCTTTCAACCAACTCCAAAACCATCACAAATCCCCTATAACAATCAAAGCACTTTCTGGTGGTACAGAAGGAGATGCTCCTTCATGTTCAACCTCTCCTTCTACGAATAATTTCCAAGTTTCACCACCAAACTTCTTGACCAGGAACCAAGGGCAAGCGATACTGGTGGATGAATCTGTTGTCGATCCTTCTCAAGAGCAAAACAAATCCGAATGTCGAATAAAACATGAACTAGTGTTCTCAAAAGGTTCAGAGCTGTCTAAGTACAAAGGCAATAATACTGAGAACTTAGAGGCAGCCTCATCGACAACATCGTATGGGCTGGATTCTAGTGGCTTCAACTTTTCATTGCCTGCATTATGTGTGGATGGTGATGTTCAATCGCATTCTAGGAACATTCTACCTTCTGCAGCAAATAATATAGATGGACTGAACCCTGATGCTTTGCTATCAAGGGATTATGATTCTGGAAAGGATATACAAAACCTATTCTCTCCTTTTGGCAATGCCCCTAGGGATATAGAAACTGAGCTGTCTGATGCTGGGATCAATTCTCAACAATTTGGGGTGCCAAACATGTCATACAAGCCAAGATGTGCCAACGATCTTGCTGTCAATGACAACGGTATTCTGAACAATAATGCATGGACGAACCAGACTCAGCGCATGAGAACGTATACAAAGGTTCAAAAACGAGGCTCTGTGGGAAGAACTATAGACGTTACTCGCTACATAGGCTATGATGAACTAAGGCATGATCTAGCACGTATGTTTGGAATTGAGGGACAGCTTGAAGATCCTCAAAGAACTGAGTGGAAGCTTGTGTATGTTGACCATGAGAATGATATACTGCTTGTTGGTGACGATCCTTGGGAGGAGTTTGTGAGCTGTGTTCAGAGCATCAAAATCTTGTCTTGCGCTGAAGTGCAGCAGATGAGCTTGAATGGGGATTTGGGTAATGTGCCAGTACCAAACCAAGCTAGCAGTGGAACTGACAGTGGTAATGCGTGGAAAGGACACTACGATGACAACTCAGCTGCATCATTTAATTGATGAAGGTGCTCCAATTAAATGAACTAAACCTTGCAATACATAGTCATGGAGGCTGCAAACGACTAAATCTGCTGATTCTCACTGGAGGCAACTGAGGTAGTAGAACATTACTTTCTAGGCAACAGGTGGGAGCAACTCATGGCGTGTTTTGGCGTAAATTCATGGCAGGGTTGATATTAGATTAGTTTGATTGCCACTTTATTGTGAGGTCCAAAGCAGTTATAAATTTATTAATTA
AGAAAGTGAAAAGCTTTTTGAACTGGAATTAGGTGAAAGTAGCTTTGTGTTGGACAAATTCTTCTTTGTTACTTTTGGGAGAGAAGTAATTCAACTTAAGTGGATTTTTTGCTGAAATGAAAGCGCCATCAAACGGATATCTACCAAATTCAGGAGAAGGAGAAAGAAAGCTCATGAATTCAGAGTTATGGCACGCTTGTGCTGGCCCATTGGTTTCTTTGCCTCCTGTTGGAAGCCTTGTGGTATATTTTCCTCAAGGTCACAGTGAGCAGGTGGCTGCATCAATGCAAAAGGAGACAGATGGAATTCCAAGTTATCCTAATCTTCCTTCCAAGTTGATCTGCATGTTACACAATGTTACTCTACATGCTGACACTGAAACTGATGAGGTCTATGCTCAGATGACTCTTCAACCTGTCAACAAATATGACCAGGAGGCTTTACTTTTATCTGAAATGGGCCTTAAGCAGAACAGGCAACCTGCTGAGTTCTTCTGTAAAACTCTCACTGCTAGTGATACAAGCACACATGGTGGATTTTCTGTTCCTCGTCGAGCAGCAGAGAAGATATTTCCTCCTCTGGACTATGCAATGCAACCTCCTGCTCAGGAGCTAATGGCTAGAGATTTGCATGACCAAACATGGACTTTCAGGCATATTTATCGAGGTCAACCAAAAAGACACCTTTTGACTACCGGTTGGAGTGTCTTTATCTCCTCTAAGAGGCTTTGTGCCGGCGATTCTGTCCTTTTCATAAGAGATGAAAAGTCACAGCTTCTCTTGGGTATAAAACGAACAAATAGACAGCAGCCCGCCCTATCCTCATCTGTTATATCTAGTGACAGCATGCACATTGGGATCCTTGCTGCTGCTGCTCATGCTGCTGCAAACAACAGCCCGTTTACTATCTTTTACAACCCTAGGGCTAGCCCTTCTGAATTTGTAATTCCTCTGGCCAAGTATAATAAAGCTATGTATGCACAAGTTTCACTAGGAATGCGATTTCGGATGATGTTTGAAACAGAGGAGTCTGGAGTTCGCAGATACATGGGTACAATAACAGGTGTTAGTGATCTGGACCCCATACGATGGAAGAGCTCACAGTGGCGTAATCTTCAGGTAGGATGGGATGAATCAACTGCCGGAGAACGTCCAAGCAGAGTTTCAATTTGGGATATTGAGCCTGTCGTGACTCCTTTTTATATCTGTCCACCACCATTTTTCAGGCCCAAGTTTCCTAAGCAGCCAAGTTTTCCTGGTGATGAGTCTGATATTGAAAATGTTTTAAAGAGGGGGATGCCCTGGATCAATGATGAGTTAGGTCTAAAAGATGCTCAAAATTCGATATTCCCTGGACTGAGCTTGGTCCAATGGATGAGTATGCAACAGAACAATCATGTGCCAGTTGCCCAATCTGGACTTCCCAGTGTCTTACACAGTAACATCGGCAGTGATGACCATTCCAAGTTGTTGAACTTTCAGTCACCTGCATTAGCTACACCGGGTCTCCAGTTCAACAAACCAAATCAACTAAACCAGCCATTTGGTCAAATCCAACAGCCACCATTAGCATGGACTCAAGAGCAACAGCAATCGTTACAGTCTCCTGTAAGTGCACAACAGCAACAGCAACAGCAACACACGCTGCAGCAACAGCAACAGCAACAACAACACACATTACAGCAGCAGCAACAACAACGACACACATTGCAGCAGCAACAACAACAACAAACACTGCAGCAGCAGCAGCAGCAACAGCAACAGCAACACACACTGCAGCAGCAGCAACAGCAACAACACACACTGCAGCATCAGCAGCAGCACACGCTGCAACAGCCACAGCAACACATGTTGCAGCAACAGCCACAGTTTCATCAACAAGCACAACAGCAGCTGCAGCAACAACAGCGTCCATCCCAGCAGCAACAATTGACCGGGAATTCATCACCAGTAAATCGTTGTGTATCCCCTAACCAGATACCAAACCAAACTTTTCCACAAGCTGCGGTATATGGTCAGCTTCAGCAACAACAGGTGCTATCAGCTAGTACCCAATCACAGCAAAATGTTCCTGTCAGTAGAAATTCATTCCCTTCGACATCCTTGGCACAGGACTTCCAATTTCAGCAACAAATGGAACAGCAATCTAACCTCTTGCAGAAATCCCAGCAACAGCAGACAATACCACAACAAGCTCCTCTACAATTGTTGCAGCAAAGTTTGATGCAGAGGTCCCAAGTGCAACCATCATCACAGCAGAGCCTTACAGAACAGCAGCTGCAACTACAACTTCTTAATAAACTGCAGCAGCAACAACAACAGCAACAAGCACAGCTATTATCTCCCGTAAGCTCTACTCTGGAGCCGCGTATGCCCCAGCAACAACAGAACCGGCAACCACAAGAGCTCCAGTTTGCTCATCAACAGTTGAGTTCCAACATCGTGACCACCGTGACACATCTCCAGTCAACCCATCATGCTTTCAACCAACTCCAAAACCATCACAAATCCCCTATAACAATCAAAGCACTTTCTGGTGGTACAGAAGGAGATGCTCCTTCATGTTCAACCTCTCCTTCTACGAATAATTTCCAAGTTTCACCACCAAACTTCTTGACCAGGAACCAAGGGCAAGCGATACTGGTGGATGAATCTGTTGTCGATCCTTCTCAAGAGCAAAACAAATCCGAATGTCGAATAAAACATGAACTAGTGTTCTCAAAAGGTTCAGAGCTGTCTAAGTACAAAGGCAATAATACTGAGAACTTAGAGGCAGCCTCATCGACAACATCGTATGGGCTGGATTCTAGTGGCTTCAACTTTTCATTGCCTGCATTATGTGTGGATGGTGATGTTCAATCGCATTCTAGGAACATTCTACCTTCTGCAGCAAATAATATAGATGGACTGAACCCTGATGCTTTGCTATCAAGGGATTATGATTCTGGAAAGGATATACAAAACCTATTCTCTCCTTTTGGCAATGCCCCTAGGGATATAGAAACTGAGCTGTCTGATGCTGGGATCAATTCTCAACAATTTGGGGTGCCAAACATGTCATACAAGCCAAGATGTGCCAACGATCTTGCTGTCAATGACAACGGTATTCTGAACAATAATGCATGGACGAACCAGACTCAGCGCATGAGAACGTATACAAAGGTTCAAAAACGAGGCTCTGTGGGAAGAACTATAGACGTTACTCGCTACATAGGCTATGATGAACTAAGGCATGATCTAGCACGTATGTTTGGAATTGAGGGACAGCTTGAAGATCCTCAAAGAACTGAGTGGAAGCTTGTGTATGTTGACCATGAGAATGATATACTGCTTGTTGGTGACGATCCTTGGGAGGAGTTTGTGAGCTGTGTTCAGAGCATCAAAATCTTGTCTTGCGCTGAAGTGCAGCAGATGAGCTTGAATGGGGATTTGGGTAATGTGCCAGTACCAAACCAAGCTAGCAGTGGAACTGACAGTGGTAATGCGTGGAAAGGACACTACGATGACAACTCAGCTGCATCATTTAATTGATGAAGGTGCTCCAATTAAATGAACTAAACCTTGCAATACATAGTCATGGAGGCTGCAAACGACTAAATCTGCTGATTCTCACTGGAGGCAACTGAGGTAGTAGAACATTACTTTCTAGGCAACAGGTGGGAGCAACTCATGGCGTGTTTTGGCGTAAATTCATGGCAGGGTTGATATTAGATTAGTTTGATTGCCACTTTATTGTGAGGTCCAAAGCAGTTATAAATTTATTAATTA
Protein sequence
Protein sequence
| translated polypeptide sequence |
>Solyc07g042260.2.1 Auxin response factor 1 (AHRD V1 *-*- Q6L8U3_CUCSA); contains Interpro domain(s) IPR010525 Auxin response factor
MKAPSNGYLPNSGEGERKLMNSELWHACAGPLVSLPPVGSLVVYFPQGHSEQVAASMQKETDGIPSYPNLPSKLICMLHNVTLHADTETDEVYAQMTLQPVNKYDQEALLLSEMGLKQNRQPAEFFCKTLTASDTSTHGGFSVPRRAAEKIFPPLDYAMQPPAQELMARDLHDQTWTFRHIYRGQPKRHLLTTGWSVFISSKRLCAGDSVLFIRDEKSQLLLGIKRTNRQQPALSSSVISSDSMHIGILAAAAHAAANNSPFTIFYNPRASPSEFVIPLAKYNKAMYAQVSLGMRFRMMFETEESGVRRYMGTITGVSDLDPIRWKSSQWRNLQVGWDESTAGERPSRVSIWDIEPVVTPFYICPPPFFRPKFPKQPSFPGDESDIENVLKRGMPWINDELGLKDAQNSIFPGLSLVQWMSMQQNNHVPVAQSGLPSVLHSNIGSDDHSKLLNFQSPALATPGLQFNKPNQLNQPFGQIQQPPLAWTQEQQQSLQSPVSAQQQQQQQHTLQQQQQQQQHTLQQQQQQRHTLQQQQQQQTLQQQQQQQQQQHTLQQQQQQQHTLQHQQQHTLQQPQQHMLQQQPQFHQQAQQQLQQQQRPSQQQQLTGNSSPVNRCVSPNQIPNQTFPQAAVYGQLQQQQVLSASTQSQQNVPVSRNSFPSTSLAQDFQFQQQMEQQSNLLQKSQQQQTIPQQAPLQLLQQSLMQRSQVQPSSQQSLTEQQLQLQLLNKLQQQQQQQQAQLLSPVSSTLEPRMPQQQQNRQPQELQFAHQQLSSNIVTTVTHLQSTHHAFNQLQNHHKSPITIKALSGGTEGDAPSCSTSPSTNNFQVSPPNFLTRNQGQAILVDESVVDPSQEQNKSECRIKHELVFSKGSELSKYKGNNTENLEAASSTTSYGLDSSGFNFSLPALCVDGDVQSHSRNILPSAANNIDGLNPDALLSRDYDSGKDIQNLFSPFGNAPRDIETELSDAGINSQQFGVPNMSYKPRCANDLAVNDNGILNNNAWTNQTQRMRTYTKVQKRGSVGRTIDVTRYIGYDELRHDLARMFGIEGQLEDPQRTEWKLVYVDHENDILLVGDDPWEEFVSCVQSIKILSCAEVQQMSLNGDLGNVPVPNQASSGTDSGNAWKGHYDDNSAASFN*
MKAPSNGYLPNSGEGERKLMNSELWHACAGPLVSLPPVGSLVVYFPQGHSEQVAASMQKETDGIPSYPNLPSKLICMLHNVTLHADTETDEVYAQMTLQPVNKYDQEALLLSEMGLKQNRQPAEFFCKTLTASDTSTHGGFSVPRRAAEKIFPPLDYAMQPPAQELMARDLHDQTWTFRHIYRGQPKRHLLTTGWSVFISSKRLCAGDSVLFIRDEKSQLLLGIKRTNRQQPALSSSVISSDSMHIGILAAAAHAAANNSPFTIFYNPRASPSEFVIPLAKYNKAMYAQVSLGMRFRMMFETEESGVRRYMGTITGVSDLDPIRWKSSQWRNLQVGWDESTAGERPSRVSIWDIEPVVTPFYICPPPFFRPKFPKQPSFPGDESDIENVLKRGMPWINDELGLKDAQNSIFPGLSLVQWMSMQQNNHVPVAQSGLPSVLHSNIGSDDHSKLLNFQSPALATPGLQFNKPNQLNQPFGQIQQPPLAWTQEQQQSLQSPVSAQQQQQQQHTLQQQQQQQQHTLQQQQQQRHTLQQQQQQQTLQQQQQQQQQQHTLQQQQQQQHTLQHQQQHTLQQPQQHMLQQQPQFHQQAQQQLQQQQRPSQQQQLTGNSSPVNRCVSPNQIPNQTFPQAAVYGQLQQQQVLSASTQSQQNVPVSRNSFPSTSLAQDFQFQQQMEQQSNLLQKSQQQQTIPQQAPLQLLQQSLMQRSQVQPSSQQSLTEQQLQLQLLNKLQQQQQQQQAQLLSPVSSTLEPRMPQQQQNRQPQELQFAHQQLSSNIVTTVTHLQSTHHAFNQLQNHHKSPITIKALSGGTEGDAPSCSTSPSTNNFQVSPPNFLTRNQGQAILVDESVVDPSQEQNKSECRIKHELVFSKGSELSKYKGNNTENLEAASSTTSYGLDSSGFNFSLPALCVDGDVQSHSRNILPSAANNIDGLNPDALLSRDYDSGKDIQNLFSPFGNAPRDIETELSDAGINSQQFGVPNMSYKPRCANDLAVNDNGILNNNAWTNQTQRMRTYTKVQKRGSVGRTIDVTRYIGYDELRHDLARMFGIEGQLEDPQRTEWKLVYVDHENDILLVGDDPWEEFVSCVQSIKILSCAEVQQMSLNGDLGNVPVPNQASSGTDSGNAWKGHYDDNSAASFN*
Gene model matches
Gene model matches
|
SGN Unigenes
SGN Unigenes
| [Associate new unigene] |
Unigene ID:
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GenBank accessions
GenBank accessions
| [Associate new genbank sequence] |
EF121545 Solanum lycopersicum auxin response factor mRNA, partial cds.
| Other genome matches | None |
Literature annotations [5]
Literature annotations [5]
| [Associate publication] [Matching publications] |
Functional genomic analysis of the AUXIN RESPONSE FACTOR gene family members in Arabidopsis thaliana: unique and overlapping functions of ARF7 and ARF19.
The Plant cell (2005)
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The AUXIN RESPONSE FACTOR (ARF) gene family products, together with the AUXIN/INDOLE-3-ACETIC ACID proteins, regulate auxin-mediated transcriptional activation/repression. The biological function(s) of most ARFs is poorly understood. Here, we report the identification and characterization of T-DNA insertion lines for 18 of the 23 ARF gene family members in Arabidopsis thaliana. Most of the lines fail to show an obvious growth phenotype except of the previously identified arf2/hss, arf3/ett, arf5/mp, and arf7/nph4 mutants, suggesting that there are functional redundancies among the ARF proteins. Subsequently, we generated double mutants. arf7 arf19 has a strong auxin-related phenotype not observed in the arf7 and arf19 single mutants, including severely impaired lateral root formation and abnormal gravitropism in both hypocotyl and root. Global gene expression analysis revealed that auxin-induced gene expression is severely impaired in the arf7 single and arf7 arf19 double mutants. For example, the expression of several genes, such as those encoding members of LATERAL ORGAN BOUNDARIES domain proteins and AUXIN-REGULATED GENE INVOLVED IN ORGAN SIZE, are disrupted in the double mutant. The data suggest that the ARF7 and ARF19 proteins play essential roles in auxin-mediated plant development by regulating both unique and partially overlapping sets of target genes. These observations provide molecular insight into the unique and overlapping functions of ARF gene family members in Arabidopsis.
Okushima, Y. Overvoorde, PJ. Arima, K. Alonso, JM. Chan, A. Chang, C. Ecker, JR. Hughes, B. Lui, A. Nguyen, D. Onodera, C. Quach, H. Smith, A. Yu, G. Theologis, A.
The Plant cell.
2005.
17(2).
444-63.
NPH4/ARF7 and ARF19 promote leaf expansion and auxin-induced lateral root formation.
The Plant journal : for cell and molecular biology (2005)
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Auxin response factors (ARFs) bind auxin response promoter elements and mediate transcriptional responses to auxin. Five of the 22 ARF genes in Arabidopsis thaliana encode ARFs with glutamine-rich middle domains. Four of these can activate transcription and have been ascribed developmental functions. We show that ARF19, the fifth Q-rich ARF, also activates transcription. Mutations in ARF19 have little effect on their own, but in combination with mutations in NPH4/ARF7, encoding the most closely related ARF, they cause several phenotypes including a drastic decrease in lateral and adventitious root formation and a decrease in leaf cell expansion. These results indicate that auxin induces lateral roots and leaf expansion by activating NPH4/ARF7 and ARF19. Auxin induces the ARF19 gene, and NPH4/ARF7 and ARF19 together are required for expression of one of the arf19 mutant alleles, suggesting that a positive feedback loop regulates leaf expansion and/or lateral root induction.
Wilmoth, JC. Wang, S. Tiwari, SB. Joshi, AD. Hagen, G. Guilfoyle, TJ. Alonso, JM. Ecker, JR. Reed, JW.
The Plant journal : for cell and molecular biology.
2005.
43(1).
118-30.
The Solanum lycopersicum auxin response factor 7 (SlARF7) regulates auxin signaling during tomato fruit set and development.
The Plant journal : for cell and molecular biology (2009)
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Auxin response factors (ARFs) are encoded by a gene family of transcription factors that specifically control auxin-dependent developmental processes. A tomato ARF gene, homologous to Arabidopsis NPH4/ARF7 and therefore designated as Solanum lycopersicum ARF7 (SlARF7), was found to be expressed at a high level in unpollinated mature ovaries. More detailed analysis of tomato ovaries showed that the level of SlARF7 transcript increases during flower development, remains at a constant high level in mature flowers, and is down-regulated within 48 h after pollination. Transgenic plants with decreased SlARF7 mRNA levels formed seedless (parthenocarpic) fruits. These fruits were heart-shaped and had a rather thick pericarp due to increased cell expansion, compared with the pericarp of wild-type fruits. The expression analysis, together with the parthenocarpic fruit phenotype of the transgenic lines, suggests that, in tomato, SlARF7 acts as a negative regulator of fruit set until pollination and fertilization have taken place, and moderates the auxin response during fruit growth.
de Jong, M. Wolters-Arts, M. Feron, R. Mariani, C. Vriezen, WH.
The Plant journal : for cell and molecular biology.
2009.
57(1).
160-70.
Identification, isolation and expression analysis of auxin response factor (ARF) genes in Solanum lycopersicum.
Plant cell reports (2011)
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Auxin response factors (ARFs) encode transcriptional factors that bind specifically to the TGTCTC-containing auxin response elements found in the promoters of primary/early auxin response genes that regulate plant development. In this study, investigation of the tomato genome revealed 21 putative functional ARF genes (SlARFs), a number comparable to that found in Arabidopsis (23) and rice (25). The full cDNA sequences of 15 novel SlARFs were isolated and delineated by sequencing of PCR products. A comprehensive genome-wide analysis of this gene family is presented, including the gene structures, chromosome locations, phylogeny, and conserved motifs. In addition, a comparative analysis between ARF family genes in tomato and maize was performed. A phylogenetic tree generated from alignments of the full-length protein sequences of 21 OsARFs, 23 AtARFs, 31 ZmARFs, and 21 SlARFs revealed that these ARFs were clustered into four major groups. However, we could not find homologous genes in rice, maize, or tomato with AtARF12-15 and AtARF20-23. The expression patterns of tomato ARF genes were analyzed by quantitative real-time PCR. Our comparative analysis will help to define possible functions for many of these newly isolated ARF-family genes in plant development.
Wu, J. Wang, F. Cheng, L. Kong, F. Peng, Z. Liu, S. Yu, X. Lu, G.
Plant cell reports.
2011.
30(11).
2059-73.
Characterization of the tomato ARF gene family uncovers a multi-levels post-transcriptional regulation including alternative splicing.
PloS one (2014)
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All together, the data bring new insight on the complexity of the expression control of Sl-ARF genes at the transcriptional and post-transcriptional levels supporting the hypothesis that these transcriptional mediators might represent one of the main components that enable auxin to regulate a wide range of physiological processes in a highly specific and coordinated manner.
Zouine, M. Fu, Y. Chateigner-Boutin, AL. Mila, I. Frasse, P. Wang, H. Audran, C. Roustan, JP. Bouzayen, M.
PloS one.
2014.
9(1).
e84203.
Ontology annotations (1)
Ontology annotations (1)
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