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Tomato locus Auxin Response Factor 9B
Locus details | Download GMOD XML | Note to Editors | Annotation guidelines |
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Registry name: | None | [Associate registry name] |
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Accession name:
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![]() ![]() | View Auxin Response Factor 9B relationships in the stand-alone network browser |
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![]() ![]() | unprocessed genomic sequence region underlying this gene |
>Solyc08g008380.2 SL2.50ch08:2808202..2812983
ATGGAGAATCAAGGGTCTTTTATGTCAAACCAGCAGCATCAGCAACACAATTTCTTAGCAGAAGGTTTGATTCTTAATTTATTTTTTAAATTTTTTTTGGGGGTTTTATTTAAAAAAGTTCAGTTTTTTTTTGGTTGTTAATATATTTACTTTTGAATTTGTTGTGGAAAAAGTTTCAGGTGAAGATGAATTGTGCCAAGAGTTATGGAGATTGTGTGCAGGTCCATTAGTTGATGTTCCAAAAAATGAAGAAAGGGTTTACTATTTCCCACAAGGTCATATGGAACAAGTATGTATTTTTTTTACTTCTTTTTGTTTGAAGTTTGGTTTTATATCAGTAGCGTAATTTAGGAGGGTTGTGGTGGAATGGTATGTACTCTTTCGGATTTAAATAGAGGTCTCGTGTTCACCTCTGTTGGATACGGGATCGCCTTTGTTAAGGAGTGGTTTTAGGTACTTTCCAGCGTGAATACCGATTTAGTGGTACCAATGCGGGTAAGTGTAGGTATAAATTTGTTTCAGTTTTGGTTTTGAATGAGAGGTGGAACTAACAATGGTGGTGTGGTAAGTACACATTTCATCCTTAACAACAAGAGGTCTCGTTTGTTAGTAAGCACTTTACTGGGCTTTCAAGTGTGAATGCGGATTAAGTTGTCCCAATGTGGGTATTATAGGTACTAATTTTGTTTTGAATCAGAGGCAGAAGTAACAAGGTTTGTGATGGAGTGGTACATATTCCTTTCGTACTTAACCAAAGGTCTCGTGATGGAGCTCTACTTGGTATAAAGTCTCCTTTGTTATGGAGTGCTAACTAGATTATTCGGTGCGAAATTTGGATTCAGTGGGGCCCCAATAGGTGGATGTAGTGCATAAGTTTGCCATATACGTTATTGTTGTTTTTCATGAGTTTGATTTTGTGGTATGGATAGTTGGAGGCATCAACAAATCAGGAGCTGAATCAGAGCATACCATTGTTCAATCTGCAACCAAAGATCCTTTGTCGCGTTCTTCACATTCAACTTCTGGTAATTAGCTGTACTTTCACTGTTTTCTTGGTTAGTTTAGTTAAACAGTAATGTTTCTATGTATTAAGTTCATGCATAAATAGACTACCAAAAAAAAAGAAGAATTAGCAACAAACAAATTTTGTAGTTGAACTACAATCAAATAATTTTGTTAGGTACGAGCTATTTCGACGTAGATTAGCGATGAAGTTCATAGCTAATTCCAGGTCATTTCTGAAGAAAAAAGAAGTTATAATGAGGACTTTCTCATTGAAAATTTGTTGTAGGCTGAACAAGACTCTGATGAGGTTTATGCACAGATTGCTTTGTTGCCCGAAGCAGATGTAAGAACTTAAAGAACCTACTTTCTTGCTTGTATGAAACTCTGTTGTGTTCACTTGGTCTATTATGTTCTGTTGGCCAATTTTCCTATAATTGCTTTCATCCAATTTAGCAAGTTGAGCCGACTAGTCCTGATCTGTCCCTGCCCGAGCCTCCGAGGCCCAAAGTTCATTTCTTCTGCAAGGTTCTAACTGCGTCTGATACGAGCACTCACGGTGGATTTTCCATTCTCAGAAAACATGCTAACGAATGCCTGCCTCCCCTGGTAATATATTTGTTCATTTGTTGTTACATTCTATAGTCTGTCCATTTTGAAATGCATTACCTGTTGATTTTATGATGCTATAATTTTTAATGCAGGACATGACCCAAGCGACTCCAGCACAGGAATTGGTCGCCAAGGACCTTCATGGCTTCGAGTGGCATTTTAAACATATATTTAGAGGTAATTATTTGACAACTAGTAGTCCAATTTGGTTTGACAACCACAAAAATATGATAGCGATGAAACGTCATCAAATTGTTATATGGCTCAAGTGCTCACTCTTGATTCTTGACTAGCAGGCCAACCCAGGAGGCATTTACTTACCACAGGGTGGAGTACCTTTGTTTCCTCGAAGAGATTAGTTACGGGGGATTCTTTTGTATTCTTGAGGTTTATATCTGGTGCTTATATGTCTATTGCGGTTTAAATCTATCATATACGTCACAATTGTCACTATTTATTCATTATGTTCTGCAAATATATTGTGTTTAGGAGTGGAAAAGGTGAAGTCCGAATAGGAATTAGACGACTTGCTCGCCAACCGAGCTCAATGCCACAATCAGTGATTTCAAGTCAGAGCATGCACCTAGGAGTGTTAGCTACTGCATCTCATGCTGTGACGACCCAGACTATGTTTGTCGTTTATTACAAACCGAGGTTTCTCTTATGCATCCCTTTTCTTAAAAGATTGAACTTTAGATGTCAAGGGGAACCTTGGCGCAACTGGTAAAATTGTTACCATGTGACCAAGAGGTCACAAATTCAAGTTGTAGAAACAACCTCTTGCAGAAATGCAGGGTAAGGTTGCATACAATAGACTCTTGTGGTCCGGCACTTCCCTGGACCTCTCGCATTGCGGGAGGTTAACGCACCAGGCTGCCCTTGTTATGTCCTTTCAGCAATGTTGGAATTAGTTTTGTTTTTGGGTGAGAATATGCTAAATGTTGCCTATGTTCTCAATATTGTGTATGGAAAATCTTCAGAACAAGTCAGTTTATCATAGGTCTAAACAAATATCTCGAGGCTGTTAAGCATCGGTATTCAGTTGGCATGAGATTCAAGATGAAATTTGAAGGGGAAGAGATTCCTGAGAAAAGGTGGTAAAACATCAACTTTATTGAAGCTCAAATTAACGAGATGTTTCTCTACCGTATAAAGTTGCTCAATATGCTGCATTTCTGATCTCAATTATATTTTTCTTTGGTTGTTCCTTCGTAATTTCCCAGATTTACAGGTACCATAGTAGGAGTTGAAGATAGTTCCTCACAGTGGAAAGATTCAAAATGGCGATCATTGAAGGTGGATATAATATGGTTGTTGTCGACATTGAATGAATCAATACATTTGGATTGATGTAAAATTTCATTATTTTTCTTCCATATTTCCAGGTTCAATGGGATGAGCCTGCGTCTGTTCCAAGACCTGACAGAGTTTCTCCTTGGGACATCGAACCATTTGTGGCATCAGTCGCTACTCCTCTCGTTCCACCAATGGGGGTGAAGAATAAAAGGCATCGAGCACATAACGAACCCAAATCTTCAGGTGGAAACAAGCATATTCATAATCTATGGCATGTTTTTAAACTTTTTTAGTCTTCCTATTTGGTTTTCTATTTTCATTTTCTTGATTATTATTCCGTTGTTTTCCTGCTAGAACCTGTTCCTGCTGCTGCACTAGCCGCTTGGATTCCCTCAGCGCAATTTAACCCCGTTATTGAAGGACAAAGTAGTGATAATCCATTTTCCTTGCATACTTCACAAACAAATTCAACTGCCACAAACAGTACTTTTAAGGCTCGTGTCGATGGAATTTGGTCAGCTTCTAAAGTAAACGCTTCTTTGAATATGCTTTTGGATGAGACAGAAGCCAGTAAAAGTGCTTCACCTCGGCCTGCTTTTCCAAGCTTTGCGTCCTCACAATTCGGAAAGCAGAACGATCTCCTGCTTCCTAGTCTAGATGATGAGAGAAAATGTGGTACAATTACATCCTGTAGATTGTTTGGTATTGACTTGAAATGTCCCTCATTTGGTTCTGTTAATGAGAATCCGCCTCTAGAACCAGCCAACAATTCTGATGGCTCTGCTGAAGGGTGCTCTGGAAACTTGACTTCTGCTGGTGATTCAGAAGACAACTCTGGCCTTTCAAGAGATTCTGAAGATCAGAAGCAAGAGCAGCTGAATCCACCACCAAAGGAGGTTCACATCAAGCAGGTTTCTTCCACCAGAACTCGCACCAAGGTATGAAAACCAAAACGAGAAAGTAAATTGTGTTTTTCCATGTTCGTTACTACTCCAAAGCATCAATAGAATTAAAAATTAATTTGTAACTTACATGAATTCCTTGAGAAGGTTCAAATGCAAGGGGTGGCTGTGGGACGTGCTGTGGATTTAACAAAACTGAATGGATATGATGAGCTCCTAAGAGAACTCGAAGAGTTGTTCGATATCCAGGAAGAGCTCCACGCACGAAATAAATGGGAGATCGTTTTTACAGATGATGAAGGTGACATGATGCTTATGGGCGATTATCCTTGGTCGTAAGTGATTCTTTCTCCATTTACAACTTACAATTAAAAGTATGTAGTTCATATGTGAATCTAGGATTTGAGGTTTATGGGTTCCTACAACAATTTCAAGTTAATATATAAAAATATAACTGGGTTCCTACAACATCAAGTAAATTTCTTAATACATTAGACCCGTAAACTCATAAGCTAGCTCGGTCCGTGAATTATTTTATAGCTACATGTAAGATCTCTCATACTTTGCATATCATAATATGGTGCTCAATTATTCACAGAGAGTTCTGCAACATCGCGAAGAGGATCTTCATTTGTTCTAGTCAAGACATGAAAAGTTTCAGTGCAGGAACCAAATCGCCGTCTTGTTTAGAAAGTGAGACAACTGCTTCAACATGAAAATTTGGAAGAGAATAAAGGTTGCAACTTGCCTTTCTAAGTTATATCCTTTGTACTAAAATCCCTCATACATCTTAAAAAGTCCTTGATCGCGTTTTCCCAATTGTGAGCTTCATTTCTTAAAAAGTTTCGGCCTTGTTGACTTACAACAGGTATCTGCAATCTTCAATAATAACGCGTAGAGGATGAGACTATGTCGTCTTGTTGAATAAGCTTGATAACAAGCAAATAGTTGAATCTTTTTTCATCATTTA
ATGGAGAATCAAGGGTCTTTTATGTCAAACCAGCAGCATCAGCAACACAATTTCTTAGCAGAAGGTTTGATTCTTAATTTATTTTTTAAATTTTTTTTGGGGGTTTTATTTAAAAAAGTTCAGTTTTTTTTTGGTTGTTAATATATTTACTTTTGAATTTGTTGTGGAAAAAGTTTCAGGTGAAGATGAATTGTGCCAAGAGTTATGGAGATTGTGTGCAGGTCCATTAGTTGATGTTCCAAAAAATGAAGAAAGGGTTTACTATTTCCCACAAGGTCATATGGAACAAGTATGTATTTTTTTTACTTCTTTTTGTTTGAAGTTTGGTTTTATATCAGTAGCGTAATTTAGGAGGGTTGTGGTGGAATGGTATGTACTCTTTCGGATTTAAATAGAGGTCTCGTGTTCACCTCTGTTGGATACGGGATCGCCTTTGTTAAGGAGTGGTTTTAGGTACTTTCCAGCGTGAATACCGATTTAGTGGTACCAATGCGGGTAAGTGTAGGTATAAATTTGTTTCAGTTTTGGTTTTGAATGAGAGGTGGAACTAACAATGGTGGTGTGGTAAGTACACATTTCATCCTTAACAACAAGAGGTCTCGTTTGTTAGTAAGCACTTTACTGGGCTTTCAAGTGTGAATGCGGATTAAGTTGTCCCAATGTGGGTATTATAGGTACTAATTTTGTTTTGAATCAGAGGCAGAAGTAACAAGGTTTGTGATGGAGTGGTACATATTCCTTTCGTACTTAACCAAAGGTCTCGTGATGGAGCTCTACTTGGTATAAAGTCTCCTTTGTTATGGAGTGCTAACTAGATTATTCGGTGCGAAATTTGGATTCAGTGGGGCCCCAATAGGTGGATGTAGTGCATAAGTTTGCCATATACGTTATTGTTGTTTTTCATGAGTTTGATTTTGTGGTATGGATAGTTGGAGGCATCAACAAATCAGGAGCTGAATCAGAGCATACCATTGTTCAATCTGCAACCAAAGATCCTTTGTCGCGTTCTTCACATTCAACTTCTGGTAATTAGCTGTACTTTCACTGTTTTCTTGGTTAGTTTAGTTAAACAGTAATGTTTCTATGTATTAAGTTCATGCATAAATAGACTACCAAAAAAAAAGAAGAATTAGCAACAAACAAATTTTGTAGTTGAACTACAATCAAATAATTTTGTTAGGTACGAGCTATTTCGACGTAGATTAGCGATGAAGTTCATAGCTAATTCCAGGTCATTTCTGAAGAAAAAAGAAGTTATAATGAGGACTTTCTCATTGAAAATTTGTTGTAGGCTGAACAAGACTCTGATGAGGTTTATGCACAGATTGCTTTGTTGCCCGAAGCAGATGTAAGAACTTAAAGAACCTACTTTCTTGCTTGTATGAAACTCTGTTGTGTTCACTTGGTCTATTATGTTCTGTTGGCCAATTTTCCTATAATTGCTTTCATCCAATTTAGCAAGTTGAGCCGACTAGTCCTGATCTGTCCCTGCCCGAGCCTCCGAGGCCCAAAGTTCATTTCTTCTGCAAGGTTCTAACTGCGTCTGATACGAGCACTCACGGTGGATTTTCCATTCTCAGAAAACATGCTAACGAATGCCTGCCTCCCCTGGTAATATATTTGTTCATTTGTTGTTACATTCTATAGTCTGTCCATTTTGAAATGCATTACCTGTTGATTTTATGATGCTATAATTTTTAATGCAGGACATGACCCAAGCGACTCCAGCACAGGAATTGGTCGCCAAGGACCTTCATGGCTTCGAGTGGCATTTTAAACATATATTTAGAGGTAATTATTTGACAACTAGTAGTCCAATTTGGTTTGACAACCACAAAAATATGATAGCGATGAAACGTCATCAAATTGTTATATGGCTCAAGTGCTCACTCTTGATTCTTGACTAGCAGGCCAACCCAGGAGGCATTTACTTACCACAGGGTGGAGTACCTTTGTTTCCTCGAAGAGATTAGTTACGGGGGATTCTTTTGTATTCTTGAGGTTTATATCTGGTGCTTATATGTCTATTGCGGTTTAAATCTATCATATACGTCACAATTGTCACTATTTATTCATTATGTTCTGCAAATATATTGTGTTTAGGAGTGGAAAAGGTGAAGTCCGAATAGGAATTAGACGACTTGCTCGCCAACCGAGCTCAATGCCACAATCAGTGATTTCAAGTCAGAGCATGCACCTAGGAGTGTTAGCTACTGCATCTCATGCTGTGACGACCCAGACTATGTTTGTCGTTTATTACAAACCGAGGTTTCTCTTATGCATCCCTTTTCTTAAAAGATTGAACTTTAGATGTCAAGGGGAACCTTGGCGCAACTGGTAAAATTGTTACCATGTGACCAAGAGGTCACAAATTCAAGTTGTAGAAACAACCTCTTGCAGAAATGCAGGGTAAGGTTGCATACAATAGACTCTTGTGGTCCGGCACTTCCCTGGACCTCTCGCATTGCGGGAGGTTAACGCACCAGGCTGCCCTTGTTATGTCCTTTCAGCAATGTTGGAATTAGTTTTGTTTTTGGGTGAGAATATGCTAAATGTTGCCTATGTTCTCAATATTGTGTATGGAAAATCTTCAGAACAAGTCAGTTTATCATAGGTCTAAACAAATATCTCGAGGCTGTTAAGCATCGGTATTCAGTTGGCATGAGATTCAAGATGAAATTTGAAGGGGAAGAGATTCCTGAGAAAAGGTGGTAAAACATCAACTTTATTGAAGCTCAAATTAACGAGATGTTTCTCTACCGTATAAAGTTGCTCAATATGCTGCATTTCTGATCTCAATTATATTTTTCTTTGGTTGTTCCTTCGTAATTTCCCAGATTTACAGGTACCATAGTAGGAGTTGAAGATAGTTCCTCACAGTGGAAAGATTCAAAATGGCGATCATTGAAGGTGGATATAATATGGTTGTTGTCGACATTGAATGAATCAATACATTTGGATTGATGTAAAATTTCATTATTTTTCTTCCATATTTCCAGGTTCAATGGGATGAGCCTGCGTCTGTTCCAAGACCTGACAGAGTTTCTCCTTGGGACATCGAACCATTTGTGGCATCAGTCGCTACTCCTCTCGTTCCACCAATGGGGGTGAAGAATAAAAGGCATCGAGCACATAACGAACCCAAATCTTCAGGTGGAAACAAGCATATTCATAATCTATGGCATGTTTTTAAACTTTTTTAGTCTTCCTATTTGGTTTTCTATTTTCATTTTCTTGATTATTATTCCGTTGTTTTCCTGCTAGAACCTGTTCCTGCTGCTGCACTAGCCGCTTGGATTCCCTCAGCGCAATTTAACCCCGTTATTGAAGGACAAAGTAGTGATAATCCATTTTCCTTGCATACTTCACAAACAAATTCAACTGCCACAAACAGTACTTTTAAGGCTCGTGTCGATGGAATTTGGTCAGCTTCTAAAGTAAACGCTTCTTTGAATATGCTTTTGGATGAGACAGAAGCCAGTAAAAGTGCTTCACCTCGGCCTGCTTTTCCAAGCTTTGCGTCCTCACAATTCGGAAAGCAGAACGATCTCCTGCTTCCTAGTCTAGATGATGAGAGAAAATGTGGTACAATTACATCCTGTAGATTGTTTGGTATTGACTTGAAATGTCCCTCATTTGGTTCTGTTAATGAGAATCCGCCTCTAGAACCAGCCAACAATTCTGATGGCTCTGCTGAAGGGTGCTCTGGAAACTTGACTTCTGCTGGTGATTCAGAAGACAACTCTGGCCTTTCAAGAGATTCTGAAGATCAGAAGCAAGAGCAGCTGAATCCACCACCAAAGGAGGTTCACATCAAGCAGGTTTCTTCCACCAGAACTCGCACCAAGGTATGAAAACCAAAACGAGAAAGTAAATTGTGTTTTTCCATGTTCGTTACTACTCCAAAGCATCAATAGAATTAAAAATTAATTTGTAACTTACATGAATTCCTTGAGAAGGTTCAAATGCAAGGGGTGGCTGTGGGACGTGCTGTGGATTTAACAAAACTGAATGGATATGATGAGCTCCTAAGAGAACTCGAAGAGTTGTTCGATATCCAGGAAGAGCTCCACGCACGAAATAAATGGGAGATCGTTTTTACAGATGATGAAGGTGACATGATGCTTATGGGCGATTATCCTTGGTCGTAAGTGATTCTTTCTCCATTTACAACTTACAATTAAAAGTATGTAGTTCATATGTGAATCTAGGATTTGAGGTTTATGGGTTCCTACAACAATTTCAAGTTAATATATAAAAATATAACTGGGTTCCTACAACATCAAGTAAATTTCTTAATACATTAGACCCGTAAACTCATAAGCTAGCTCGGTCCGTGAATTATTTTATAGCTACATGTAAGATCTCTCATACTTTGCATATCATAATATGGTGCTCAATTATTCACAGAGAGTTCTGCAACATCGCGAAGAGGATCTTCATTTGTTCTAGTCAAGACATGAAAAGTTTCAGTGCAGGAACCAAATCGCCGTCTTGTTTAGAAAGTGAGACAACTGCTTCAACATGAAAATTTGGAAGAGAATAAAGGTTGCAACTTGCCTTTCTAAGTTATATCCTTTGTACTAAAATCCCTCATACATCTTAAAAAGTCCTTGATCGCGTTTTCCCAATTGTGAGCTTCATTTCTTAAAAAGTTTCGGCCTTGTTGACTTACAACAGGTATCTGCAATCTTCAATAATAACGCGTAGAGGATGAGACTATGTCGTCTTGTTGAATAAGCTTGATAACAAGCAAATAGTTGAATCTTTTTTCATCATTTA
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![]() ![]() | terms associated with this mRNA |
![]() ![]() | spliced cDNA sequence, including UTRs |
>Solyc08g008380.2.1 Auxin response factor 9 (AHRD V1 **** D7R605_SOLLC); contains Interpro domain(s) IPR010525 Auxin response factor
ATGGAGAATCAAGGGTCTTTTATGTCAAACCAGCAGCATCAGCAACACAATTTCTTAGCAGAAGGTGAAGATGAATTGTGCCAAGAGTTATGGAGATTGTGTGCAGGTCCATTAGTTGATGTTCCAAAAAATGAAGAAAGGGTTTACTATTTCCCACAAGGTCATATGGAACAATTGGAGGCATCAACAAATCAGGAGCTGAATCAGAGCATACCATTGTTCAATCTGCAACCAAAGATCCTTTGTCGCGTTCTTCACATTCAACTTCTGGCTGAACAAGACTCTGATGAGGTTTATGCACAGATTGCTTTGTTGCCCGAAGCAGATCAAGTTGAGCCGACTAGTCCTGATCTGTCCCTGCCCGAGCCTCCGAGGCCCAAAGTTCATTTCTTCTGCAAGGTTCTAACTGCGTCTGATACGAGCACTCACGGTGGATTTTCCATTCTCAGAAAACATGCTAACGAATGCCTGCCTCCCCTGGACATGACCCAAGCGACTCCAGCACAGGAATTGGTCGCCAAGGACCTTCATGGCTTCGAGTGGCATTTTAAACATATATTTAGAGGCCAACCCAGGAGGCATTTACTTACCACAGGGTGGAGTACCTTTGTTTCCTCGAAGAGATTAGTTACGGGGGATTCTTTTGTATTCTTGAGGAGTGGAAAAGGTGAAGTCCGAATAGGAATTAGACGACTTGCTCGCCAACCGAGCTCAATGCCACAATCAGTGATTTCAAGTCAGAGCATGCACCTAGGAGTGTTAGCTACTGCATCTCATGCTGTGACGACCCAGACTATGTTTGTCGTTTATTACAAACCGAGAACAAGTCAGTTTATCATAGGTCTAAACAAATATCTCGAGGCTGTTAAGCATCGGTATTCAGTTGGCATGAGATTCAAGATGAAATTTGAAGGGGAAGAGATTCCTGAGAAAAGATTTACAGGTACCATAGTAGGAGTTGAAGATAGTTCCTCACAGTGGAAAGATTCAAAATGGCGATCATTGAAGGTTCAATGGGATGAGCCTGCGTCTGTTCCAAGACCTGACAGAGTTTCTCCTTGGGACATCGAACCATTTGTGGCATCAGTCGCTACTCCTCTCGTTCCACCAATGGGGGTGAAGAATAAAAGGCATCGAGCACATAACGAACCCAAATCTTCAGAACCTGTTCCTGCTGCTGCACTAGCCGCTTGGATTCCCTCAGCGCAATTTAACCCCGTTATTGAAGGACAAAGTAGTGATAATCCATTTTCCTTGCATACTTCACAAACAAATTCAACTGCCACAAACAGTACTTTTAAGGCTCGTGTCGATGGAATTTGGTCAGCTTCTAAAGTAAACGCTTCTTTGAATATGCTTTTGGATGAGACAGAAGCCAGTAAAAGTGCTTCACCTCGGCCTGCTTTTCCAAGCTTTGCGTCCTCACAATTCGGAAAGCAGAACGATCTCCTGCTTCCTAGTCTAGATGATGAGAGAAAATGTGGTACAATTACATCCTGTAGATTGTTTGGTATTGACTTGAAATGTCCCTCATTTGGTTCTGTTAATGAGAATCCGCCTCTAGAACCAGCCAACAATTCTGATGGCTCTGCTGAAGGGTGCTCTGGAAACTTGACTTCTGCTGGTGATTCAGAAGACAACTCTGGCCTTTCAAGAGATTCTGAAGATCAGAAGCAAGAGCAGCTGAATCCACCACCAAAGGAGGTTCACATCAAGCAGGTTTCTTCCACCAGAACTCGCACCAAGGTTCAAATGCAAGGGGTGGCTGTGGGACGTGCTGTGGATTTAACAAAACTGAATGGATATGATGAGCTCCTAAGAGAACTCGAAGAGTTGTTCGATATCCAGGAAGAGCTCCACGCACGAAATAAATGGGAGATCGTTTTTACAGATGATGAAGGTGACATGATGCTTATGGGCGATTATCCTTGGTCAGAGTTCTGCAACATCGCGAAGAGGATCTTCATTTGTTCTAGTCAAGACATGAAAAGTTTCAGTGCAGGAACCAAATCGCCGTCTTGTTTAGAAAGTGAGACAACTGCTTCAACATGAAAATTTGGAAGAGAATAAAGGTATCTGCAATCTTCAATAATAACGCGTAGAGGATGAGACTATGTCGTCTTGTTGAATAAGCTTGATAACAAGCAAATAGTTGAATCTTTTTTCATCATTTA
ATGGAGAATCAAGGGTCTTTTATGTCAAACCAGCAGCATCAGCAACACAATTTCTTAGCAGAAGGTGAAGATGAATTGTGCCAAGAGTTATGGAGATTGTGTGCAGGTCCATTAGTTGATGTTCCAAAAAATGAAGAAAGGGTTTACTATTTCCCACAAGGTCATATGGAACAATTGGAGGCATCAACAAATCAGGAGCTGAATCAGAGCATACCATTGTTCAATCTGCAACCAAAGATCCTTTGTCGCGTTCTTCACATTCAACTTCTGGCTGAACAAGACTCTGATGAGGTTTATGCACAGATTGCTTTGTTGCCCGAAGCAGATCAAGTTGAGCCGACTAGTCCTGATCTGTCCCTGCCCGAGCCTCCGAGGCCCAAAGTTCATTTCTTCTGCAAGGTTCTAACTGCGTCTGATACGAGCACTCACGGTGGATTTTCCATTCTCAGAAAACATGCTAACGAATGCCTGCCTCCCCTGGACATGACCCAAGCGACTCCAGCACAGGAATTGGTCGCCAAGGACCTTCATGGCTTCGAGTGGCATTTTAAACATATATTTAGAGGCCAACCCAGGAGGCATTTACTTACCACAGGGTGGAGTACCTTTGTTTCCTCGAAGAGATTAGTTACGGGGGATTCTTTTGTATTCTTGAGGAGTGGAAAAGGTGAAGTCCGAATAGGAATTAGACGACTTGCTCGCCAACCGAGCTCAATGCCACAATCAGTGATTTCAAGTCAGAGCATGCACCTAGGAGTGTTAGCTACTGCATCTCATGCTGTGACGACCCAGACTATGTTTGTCGTTTATTACAAACCGAGAACAAGTCAGTTTATCATAGGTCTAAACAAATATCTCGAGGCTGTTAAGCATCGGTATTCAGTTGGCATGAGATTCAAGATGAAATTTGAAGGGGAAGAGATTCCTGAGAAAAGATTTACAGGTACCATAGTAGGAGTTGAAGATAGTTCCTCACAGTGGAAAGATTCAAAATGGCGATCATTGAAGGTTCAATGGGATGAGCCTGCGTCTGTTCCAAGACCTGACAGAGTTTCTCCTTGGGACATCGAACCATTTGTGGCATCAGTCGCTACTCCTCTCGTTCCACCAATGGGGGTGAAGAATAAAAGGCATCGAGCACATAACGAACCCAAATCTTCAGAACCTGTTCCTGCTGCTGCACTAGCCGCTTGGATTCCCTCAGCGCAATTTAACCCCGTTATTGAAGGACAAAGTAGTGATAATCCATTTTCCTTGCATACTTCACAAACAAATTCAACTGCCACAAACAGTACTTTTAAGGCTCGTGTCGATGGAATTTGGTCAGCTTCTAAAGTAAACGCTTCTTTGAATATGCTTTTGGATGAGACAGAAGCCAGTAAAAGTGCTTCACCTCGGCCTGCTTTTCCAAGCTTTGCGTCCTCACAATTCGGAAAGCAGAACGATCTCCTGCTTCCTAGTCTAGATGATGAGAGAAAATGTGGTACAATTACATCCTGTAGATTGTTTGGTATTGACTTGAAATGTCCCTCATTTGGTTCTGTTAATGAGAATCCGCCTCTAGAACCAGCCAACAATTCTGATGGCTCTGCTGAAGGGTGCTCTGGAAACTTGACTTCTGCTGGTGATTCAGAAGACAACTCTGGCCTTTCAAGAGATTCTGAAGATCAGAAGCAAGAGCAGCTGAATCCACCACCAAAGGAGGTTCACATCAAGCAGGTTTCTTCCACCAGAACTCGCACCAAGGTTCAAATGCAAGGGGTGGCTGTGGGACGTGCTGTGGATTTAACAAAACTGAATGGATATGATGAGCTCCTAAGAGAACTCGAAGAGTTGTTCGATATCCAGGAAGAGCTCCACGCACGAAATAAATGGGAGATCGTTTTTACAGATGATGAAGGTGACATGATGCTTATGGGCGATTATCCTTGGTCAGAGTTCTGCAACATCGCGAAGAGGATCTTCATTTGTTCTAGTCAAGACATGAAAAGTTTCAGTGCAGGAACCAAATCGCCGTCTTGTTTAGAAAGTGAGACAACTGCTTCAACATGAAAATTTGGAAGAGAATAAAGGTATCTGCAATCTTCAATAATAACGCGTAGAGGATGAGACTATGTCGTCTTGTTGAATAAGCTTGATAACAAGCAAATAGTTGAATCTTTTTTCATCATTTA
![]() ![]() | translated polypeptide sequence |
>Solyc08g008380.2.1 Auxin response factor 9 (AHRD V1 **** D7R605_SOLLC); contains Interpro domain(s) IPR010525 Auxin response factor
MENQGSFMSNQQHQQHNFLAEGEDELCQELWRLCAGPLVDVPKNEERVYYFPQGHMEQLEASTNQELNQSIPLFNLQPKILCRVLHIQLLAEQDSDEVYAQIALLPEADQVEPTSPDLSLPEPPRPKVHFFCKVLTASDTSTHGGFSILRKHANECLPPLDMTQATPAQELVAKDLHGFEWHFKHIFRGQPRRHLLTTGWSTFVSSKRLVTGDSFVFLRSGKGEVRIGIRRLARQPSSMPQSVISSQSMHLGVLATASHAVTTQTMFVVYYKPRTSQFIIGLNKYLEAVKHRYSVGMRFKMKFEGEEIPEKRFTGTIVGVEDSSSQWKDSKWRSLKVQWDEPASVPRPDRVSPWDIEPFVASVATPLVPPMGVKNKRHRAHNEPKSSEPVPAAALAAWIPSAQFNPVIEGQSSDNPFSLHTSQTNSTATNSTFKARVDGIWSASKVNASLNMLLDETEASKSASPRPAFPSFASSQFGKQNDLLLPSLDDERKCGTITSCRLFGIDLKCPSFGSVNENPPLEPANNSDGSAEGCSGNLTSAGDSEDNSGLSRDSEDQKQEQLNPPPKEVHIKQVSSTRTRTKVQMQGVAVGRAVDLTKLNGYDELLRELEELFDIQEELHARNKWEIVFTDDEGDMMLMGDYPWSEFCNIAKRIFICSSQDMKSFSAGTKSPSCLESETTAST*
MENQGSFMSNQQHQQHNFLAEGEDELCQELWRLCAGPLVDVPKNEERVYYFPQGHMEQLEASTNQELNQSIPLFNLQPKILCRVLHIQLLAEQDSDEVYAQIALLPEADQVEPTSPDLSLPEPPRPKVHFFCKVLTASDTSTHGGFSILRKHANECLPPLDMTQATPAQELVAKDLHGFEWHFKHIFRGQPRRHLLTTGWSTFVSSKRLVTGDSFVFLRSGKGEVRIGIRRLARQPSSMPQSVISSQSMHLGVLATASHAVTTQTMFVVYYKPRTSQFIIGLNKYLEAVKHRYSVGMRFKMKFEGEEIPEKRFTGTIVGVEDSSSQWKDSKWRSLKVQWDEPASVPRPDRVSPWDIEPFVASVATPLVPPMGVKNKRHRAHNEPKSSEPVPAAALAAWIPSAQFNPVIEGQSSDNPFSLHTSQTNSTATNSTFKARVDGIWSASKVNASLNMLLDETEASKSASPRPAFPSFASSQFGKQNDLLLPSLDDERKCGTITSCRLFGIDLKCPSFGSVNENPPLEPANNSDGSAEGCSGNLTSAGDSEDNSGLSRDSEDQKQEQLNPPPKEVHIKQVSSTRTRTKVQMQGVAVGRAVDLTKLNGYDELLRELEELFDIQEELHARNKWEIVFTDDEGDMMLMGDYPWSEFCNIAKRIFICSSQDMKSFSAGTKSPSCLESETTAST*
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![]() ![]() | [Associate new unigene] |
Unigene ID:
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![]() ![]() | [Associate new genbank sequence] |
HM565127 Solanum lycopersicum auxin response factor 12 (ARF12) mRNA, complete cds.
Other genome matches | None |
![]() ![]() | [Associate publication] [Matching publications] |
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.
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