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Tomato locus auxin response factor 4
| 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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auxin response factor 4 is on PhyloGenes
TomDelDB genotype frequencies in tomato populations. chromosome SL2.50ch11, position: 53823685
Please cite Razifard et al.
| Registry name: | None | [Associate registry name] |
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Notes and figures (0)
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| Image | Description | Type |
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Accessions and images (0)
| [Associate accession] |
Accession name:
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| Alleles (0) | None | [Add new Allele] |
Associated loci (3)
Associated loci (3)
| [Associate new locus] |
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Associated loci - graphical view
Associated loci - graphical view
| View auxin response factor 4 relationships in the stand-alone network browser |
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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 |
>Solyc11g069190.1 SL2.50ch11:53826053..53817628 (sequence from reverse strand)
ATGGAAATTGATCTGAATCATGCATTAGTGAGTGAAGTGGAGAAGAATGTATGTTGTAATGAAGAATGTGATAAAGGGGGTGGTGGGGGTTGTGTTAATTGCTCTTTGTACACTTCCACTACTTCTTCTTGTTCTTCAAATGTATCTTCATCTTCTTCACTTGCTCTTACCTCAATTTATAAAGAGCTTTGGCATGCTTGTGCTGGTCCTCTTACTAGTTTACCCAAGAAAGGAAATGTAGTGGTTTATTTCCCTCAAGGTCATATGGAAGAAGCTGTTTCTGCTTTTCCATTTTCACCTGTCAAGATTGATTTACCAACTTTTGGTCTTCAGCCTCAGATCTTCTGTAGAGTGGAAGATGTCCAATTGCTTGTAAGGGACTTAATTTTTTGCCCCTTTTTGGTTTAAAGGTTTTAGCTTTGCTTCTCTTTTTGTAATATTTTCTGCCCTTGATTTTTATATGATGTCAAATAACAGGCAAATAAGGAAAATGATGAGGTGTATACACAGCTCACTCTTCTTCCTCTTCCAGAGGTAAGACCAGTTATTGCTTACATGTTCAATCTTGATTTTTTAAATTTTCTTGACTAATTACATGTATACCTGTCACCTCCCACAACAGCTACATGGACCTAGTAACTCTATCCACCTAGTCTTGGACAAAATAGAAAAAATTACCTAGTGTTGTTGTCTCTGCTGTGTCATGTTCAATTTTGATCTTTTGATGTTTTATGTTCAAATTCTGAGTAAAGGTGTTAACTTTAATGTGTTAAGCTGCTGTTTTTGTTCATTTATTTACATGGTTTCACTGTAAAGGGATCTTTTCAGTTTTTCTACTTGAATTGGTCTTTTGTTTTTTAGTGTAATATCTTACATTGAGCTTAGACTGAGTTTTCCCTGCTTTCATGGTGTTTTCCAGTCAATGGCTATAAGCTTAGAGGGGAAAGAACATGAAGATTCGGGGACGGATGAGGAAGGGAATGGAGTCAATCCAGGGAAATCAGCTTCTCACATGTTCTGTAAAACGCTGACTGCTTCGGATACCACCACCCATGGTGGCTTTTCAGTTCCCCGTCGAGCAGCTGAAGACTGCTTCCCCCCTCTGGTGTGACCTCCATTCCAGGCTTTTGCTAAAGAGATCTTTAGTTGATTTCTTGTAATTGTCTGGTTAATTTACTTCTATCTTGGTGCTACATTATTAAATGTAGGATTACAAAGAGCAAAGACCCTCACAGGAGCTAATTGCTAAGGATCTGCACGGAGTAGAGTGGAAATTTCGTCACATTTATAGAGGTATTGAGTTAAATAGTTAGATACTTGTTTGGTCCGAAATATTAATGTTTGATGCTTTTCTTTCAGGCCAGCCAAGGCGACATTTGCTCACTACTGGATGGAGTATCTTTGTCAGCCAAAAGAATCTTGTCTCAGGGGATGCAGTTCTCTTCTTGAGGTATACATACCTGTTAACTTTGCTGTATTTGAAAATAAAATTTTGTATAACTTTAAATGAAGTAGAACCATAAATGGAGATGAAACAAAATTATATTCGAGTCCGCTGAATCCACAACGTGTGTTTAAGAAACTTAAATCCAATTTAGTACCCGAGGAATAAGATTATTTTCTCCCATGATAAAATGGATAAACCACACTGGTGTAGTGGTACTTCGAACCCTAGGGTACTTCGAACCCTAAGAGTAGCCAGATCACACTTACAACTTACTTTGCAAGTGCATGAAATATTGCAGAAAGAAGTAGAGTAATTCATATTTTTGGTAAGTAAAAATCCTAGGAAGCGCACATGAATTATAGTCAACAAAGGGTAGTTTGAACAAGTGTTATTGTGCCGTACGGAAAAGTTACAACCTATCCAATGTAAAGGTGCTATTCAAATCACATCATTTCCCCTGGTGTCTTTTTTTAGGAAATCACCTATTCATTTTCTCATTCACACCTCTTAACAAACCCCACAATATCAGCTCAATGGTATACTCCAAATGGTTCATCTTTTTAGGTACTAAAGCAGCTTTGACGGTGAGCTGGGAAAGGGAATGAGGGTGGAAAGTGACCGATATGAAAATATCAAGTCATTGTACTTGGAAGCTGGAAAATCATTAGGTCTAATATCTAGGTTTTCAATATGTCATGGTGACTCGTTAGGATGCCAATGCCAAGATCTTAATGATCCTCTGTTCAACTTTTGAAGCTTGTTTAGTCACAATAGGTATTTAAATTTTATTCAAGCAGTCAGATGATCCTTGCAGGGGAGAAGGTGGAAATCTCAGACTGGGAATAAGAAGAGCTGCAAGACCTAGAAATGGGCTTCCTGAATCGATAATCAAAAGTCAATATTCTGGACCGGATGTTCTTTCGTCAGTTGCTACAGCCCTATCAGCAAAGAGCACTTTCCATGTTTTCTATAGCCCAAGGTATCTCACTATATCTCTGTGTATAGTTCTCTATTTAGTTGTTGGCCTATTTATATGGTAAAATCCGTGGCAATATCCCTCATCCATACATCTTTTACTATTTTAGGCTGTGCGACGTTAATGAGATTTGATATTCACATAGCTTATATTTTAATTGCATTTAAGTCATGAAGGCATAATAACCAAATACATATAAACAAAGATTGCTTATTTCCATCCAACCAGTCATTTGCAGAGATTGAAATGAATTGTCTTTGTTTTGGATACCACCGTTTTAGTGTCCAATTAATATCTTAACAAATACAAATGGTGTAGGTGTGTAGGCCTTCTTCGTGCAGATCAGTTGTATTAGAAGATTTGCTTTGCTTTAAGGAAACAGTTCTGGAGGAGTAAAGTTGTACTGTTTACTGTCAAACTTGGGAACTAAGCTAGTATTGATGGTGTGAAGTTTGATATCCAGTGATAATATTATACTCACTTATTTGACATAAATATGCTTTTGAAAAATCCAAACTAAGTTGATTATGGGTGGTACTACTTGTAATCATGTTGCAGTTTAAATGTTTGTAATTACTTGAAAGGTCGTAGATAGAATGATTGTATTGGTTTAGTGAGATAGCACTGAAACATCACTGATTGCCATCATTGCTAACAAATATTGTGTTGTTATAGTAATGATGCACTGAATTATGAAGTAAGATTTGGAAGATTACAATTGGGGAGCTCCAAAATGAACTGATATGGTTTCATAGCAGTGTGGCAATATATTTGGCTTTATTGCGATCCATCTTTATTATATTTGTTAGTTTGTTCCTAGATTGAGGCACAACTAGTGGCTTTCTGTTTATTTATGTGGCATCAGCTGCAGAACAAAACATAATTGAGGGTAGTAACTCGTTGAGCTCCCCACATTGGTCATTTAGGGATGAGAAGATCTGTTTATATTGTCTTGGACAATCCTCACCTCATGAGCTAGCTTTTGGAGTTATGTTAGACCCAAAATCCATTTTTTTCGGCATGCCAGGGGTGTTGACTGTTGAGTTCCCACATCAGTCATTTAGGGTTGAAAAACCTCTTTTCCTTTTTATAATAGGTATGGAGTCTAGATGTTCAAAGAAAAAGAGGTATGGAGTCTCTTAATATGGTCTTGGAGAATTCTCACCTTATGAGCTAGTTTTTGGGGTTGAATTAGACCTAAGGTCTATTTTTGTATCATAACTTATACTAGTACCCAGGTATTTGATCCATTCTATAGGCAGTGATCTTTCTGTTTGCCAAACCATCAATTATCTTCCAACTAATAGTCCTCTGATTCTGAACTTCAGGTATCTCATGAAAATTTTTCAGTTGAGAGACAACTTAGACTCATTCGTTTAGACTGAGTGGTTCAGATGCATGTCTTTTTATGCAAATGTAGTGCAATGCATGCTGTAGTGGCTCATATCAAGTAGATTTCCTAGTAGGTCAATGCTAGGAAAGCAACTTGTCTACTGGTAATCTCTACTTCGGCTAGTTCATATTTCATTGTCAGCATCTAAAACATCAAAAGGATGATTTTGAGGTTGACCCAAATCTTTCACTCTGTGCTATCATATATATAACTGCACTTACCTGGAAAGGGGAAGTACTTTGCCTTTTCATATTTATGAAATGAAGCAGCTGTCTCTTTTTAGTGATGTTCATATTCGATGCAATGTTGTTCATTCAGATTTTCTTCATGTTTGAGTTGAATAAGAAAATGTTAACAGTTAAATATATCATCGAAGTGAATTATTTCAATGTTATGAAACCAGTTTTACATCCCAGAAGCTAAATTTCTTTTGGAAGAACCCATGGTGTATAAAGTTGGCGAGGAAGTTTGCATCTCTGTTAGATATGTAAGAAATTTGATTCACTGGTATAAAGATATTAATGCTCCTGATTCAACGTGTGAAAATTCAGACTTAAAAAAATATTACCTATTGGTAAAACCATTGACAATATGGAAGGGTTGATTCAGTCGAGAGGATGAGAAAAATTATTATTTCTGCTGCTTCTTTCAATTCATGTGTTTCAAGCAGAAGTCTTGTCCTGATTATGAAACCGTTTATTTCCCAAGGAATAAGGAATAACAAAGAACTATGATTTTCGTAAAATATTCTGGTGGACGAAAAAGTCTCATATTATGTGCAATCTTGTAGACTGTAGTCAAGTCCGAATCTTAAAACATGTGAAGTTTATTCTTTAGTCACTGCTGCAGCTTTCAGAAGTTTGTGTCACGAATTGTCAAGATATTATTGTTGTTCTTTTATTGCTACGTAGATCATTTTGAGTTAAAAGTTTTTTCTTATAATGTAGGGCAAGTCATGCTGATTTCGTTGTACCTTACCAAAAGTACGTGAAAGCCATCAACTCTCGGATTCCTGTTGGGACAAGATTTAAAATGAAATTTGATTTGGATGATTCACCTGAAAGAAGGTAATTGTATCCTTACTAAATACCATTATATGCTCTTCTTCCTTTCATTGGTTTCTGTTGTAATAAAAACATTCCATCACTGCATGCAGGTACAGCGGTGTAGTGACTGGGATAAGCGATATGGATCCCTTTAGATGGCCCAACTCTAAATGGAGATGCTTGATGGTATGCCTGACATATAGTTATCATTTTGTTGTTTTTTAAGTACTCCTTCCGTTTCAATTTGTGTCTGGTTTTGACTTGGTACGAAGTTTAAAAGAATACAGTAGACTTTTGAATCTTGAGGTCTTAAACTAAAGATATGTAGAATGTATCAAAATGCCTTTTAGTCTTGTGGTCATAAACATATCATGTGGAGAGTTGTAACTGAAGAGTTCCCATAAAAGGAAAGAGGCATTCTTTTTTTAAACAAACTAAATAGGAAAGTAAGACAAGCAAATTAAAACGACGGGAGTAGTTGGTATTGCTCCACCTATCACTTCATGTTTTTTTGAATAGGTTGGAACTTGTTCTTCTATTTATCTCAGGGCGATTTTTTTGCTCCCTTGTTATTCACAGAGGCATATATGTTCTTGAATTTTCTGCCGGTGTTACCTTGTGAGTTAGATCAGCTCTACTTAGAGATCTTGTAACATGTAAATCTGCTTGTTGAATACCTCTAGGAACACTGGAAGGACCGTATATTTTTTGGTTTGTTTGATCAGGTCATAAAAATTGGTCATGCCATGAATTATCAAACTATTCTCACTGAAATATGATGAGAAATTGTTAAATGGTCTGGTGTTGTAAGATGCTTTATTGATTTCTTTTTCATGTCAAGACTGATAAAGTTTGCTAGTTATAAGTTGCTTGCTTGATTTTTTCGTGTCAAGGCTAATAGAGTTTGCTATCGGCAATACAATTAAATACATTCACCTATTGTATATTTTGAGTTATCTTCCCAAACAAAACTGTTACAATAAGTATAAGGCCTATTAAGCAACTTATAAACTTTTTGATATATGTGCCTATGTCATCAACTTTAATAGGTCAGATGGGATGAAGATATAATGAGTAATCATCAGGAACGGGTTTCTCCTTGGGAAATTGATTCTTCAGTTTCCTTACCACCACTGAGCATTCAGTCCTCACCAAGACTGAAGAAACTGCGGACTAGTCAGCAGGCACCATCAGTACTGGACAGCCATTTTGCTGGTACTGATCTAACTTTTCTAAATCCTTTTGTATTATGTTGTCATTATGTCGTATGGGTACTGCGTTTGGACTTTTTTTATCCTTGAATCGACGGTCTGTTGGAGACAGGCCTCTCTACGAAGGTCTGCGTACACGTATACACTACCCTCCCAGATCCCACTGTGTGGGATTACACTGAGTATGTTGTTGCTGGTGTTTTCATTAAGTTGTGATTCCACTGAAGTTCATTTTTATTCCGATTTTGTTATTTTATCAGGAGGGAGTGCTCTTTTAGACTTTGAGGAGTCAATAAGATCCTCCAAGGTCTTGCAAGGTCAAGAAAATTTAGGTCTGATATCACCTCCCTATGGTTGTGATAAACCAGTCCGCCCACTGGATTTCGAGCTGCAAAGAGTAGCTCGTCACAATCTCATGCCAAATGGTGTAGAGAACATTATTGTTGGTGACTTTGTGAAAACTCAGCCTCCAACAACCTACACAGGCTTTCTGGAATCCAATAGGTTTCCAAAGGTCTTGCAAGGTCAAGAAATTTGCTCGTTGAGATCCCTTACTGGAAAAGGTGATGTTAATTTTGGTGCTTGGGGAAAACCTGAATTTGGTTGCAATGTTTTCGGCACATATCAGAGGCCGAGAGCCAATTTCTATCCTCTCGCTTCTGAAGGGGCGAGGAATGTGTTTTTACCTTACAATGCGATGTATAGAGCTGGACAAGATCCCGTGGTTCCCTCCTACAGTACTAATTTCCAAAGAGAAAATCCTACCTTGAACCAGAATTCAATCCAAAATGTGGTTAGGAGGGAAGAAGTTGGAATGCCAAAGTTTGTAAATGAGCAGAGGCCACCGGAGATGTCTAAAGTGTCCATTCCAGAGAACCATTTCAAGAATGAAAATGACGACTCCTTCAATGCACAGGCTCCATGTAAACTGTTTGGCTTTTCCTTGACGAAAGAACCATCTACTCCTAGCTCGCAGAGTTCTGGTAAGAGGAGCTGTACTAAGGTAAGTTTCCATAAGTTGCACATAGCGAATTGGAACTGTTTTTTCTTTGGACTCTATTGCTAATATTGAATAAATGGCGTGAAGGTTCACAAACAAGGCAGCTTGGTTGGACGAGCCATTGATCTCTCGAGATTGAATGGCTATGACGACTTGCTGGTTGAGTTGGAGAGGCTTTTCAACATGGAAGACCTCTTAAGAGATCCCAACAAGGGGTGGCGAATCTTGTACACTGACAGTGAGAATGACATGATGGTTGTCGGAGATGATCCATGGCAGTAAGTCTCTTTCTCATGCATCTCCGTTTCTCATCACTGTCTCAATTGTTTGATACTACATTCAAAAAATATTACTTCTTGGTTTATTAATGCATATGAATCACTAGAACCACACAAATTTCTCTTCCAATTAGCTGACTTCCACTAGAAATCGGAGTTTTGGATATTAGCTAACCTCCACTTGAAATCTAAGTATTCTTTTACTTTTCTTCTCCCAGGTTAAGATAAATTTCTTTCCTTGAGCTGAGGGTCAATCGGAAACAGCCTCTCTACCTCCAAGGTAGGGGTAAGGTCCGCATACACTTTACCCTCCAATGTGTGTTTATTATGGAGGAAAAATGCTTCTGAGAAAATGTTCTTCAATTTTCCCGTCTTTGATTGATCAAAAAATTTGGAGAACATTTTCTTCAAGTAAATAAGTCCTTTAAATATGAGGAAAATGACTTCCTTAGTCGAAGTAGGGAAAACAAGTTCCTAAAATAGCATACCATACTGATTTTCTCCATTCCACCCTCCCAACACACCCACACCCCATTCTCGCCATTCTCGCCACTCCCACCACACATAATGTTTCCCTTGAATTTATACACAAAGCTACTTATCACACACAAGAAAATAAATAATAAACACTTTTTTTCAAGAAAGCATTTTCTGGAAAAAACATTTTCCTTCATACCACACACCTTAAATTAGAACTTGTTATTTTGCAACTTCTGCCGAGCAGCAAAATCTTGGTTCAGGGAAAAAGTAAGGGTCTGTACACACTGTCCTCCCCAGACCTCACTTGTGGGATTACACTTGTTGGATATGTTGTTCGAAAAAGTATAATTTCCCTTAATAGATTGATTTGCTTATCAGTAACTTGTGTACCTTCTAAATGACTTTTCGCAGTGAGTTCTGTGAGGTAGTATCCAAGATCCATATATACACTCAAGAAGAAGTGGAGAAAATGACTATTGAGGGGATCAGCGATGACACTCAAAGTTGTTTGGAGGAGGCACCAGCAATCATGGATGTCTCAAAGTCTTCTTCAGTTGGCCAGCCTGATTCATCTCCAACTGTAATCAGGATTTGA
ATGGAAATTGATCTGAATCATGCATTAGTGAGTGAAGTGGAGAAGAATGTATGTTGTAATGAAGAATGTGATAAAGGGGGTGGTGGGGGTTGTGTTAATTGCTCTTTGTACACTTCCACTACTTCTTCTTGTTCTTCAAATGTATCTTCATCTTCTTCACTTGCTCTTACCTCAATTTATAAAGAGCTTTGGCATGCTTGTGCTGGTCCTCTTACTAGTTTACCCAAGAAAGGAAATGTAGTGGTTTATTTCCCTCAAGGTCATATGGAAGAAGCTGTTTCTGCTTTTCCATTTTCACCTGTCAAGATTGATTTACCAACTTTTGGTCTTCAGCCTCAGATCTTCTGTAGAGTGGAAGATGTCCAATTGCTTGTAAGGGACTTAATTTTTTGCCCCTTTTTGGTTTAAAGGTTTTAGCTTTGCTTCTCTTTTTGTAATATTTTCTGCCCTTGATTTTTATATGATGTCAAATAACAGGCAAATAAGGAAAATGATGAGGTGTATACACAGCTCACTCTTCTTCCTCTTCCAGAGGTAAGACCAGTTATTGCTTACATGTTCAATCTTGATTTTTTAAATTTTCTTGACTAATTACATGTATACCTGTCACCTCCCACAACAGCTACATGGACCTAGTAACTCTATCCACCTAGTCTTGGACAAAATAGAAAAAATTACCTAGTGTTGTTGTCTCTGCTGTGTCATGTTCAATTTTGATCTTTTGATGTTTTATGTTCAAATTCTGAGTAAAGGTGTTAACTTTAATGTGTTAAGCTGCTGTTTTTGTTCATTTATTTACATGGTTTCACTGTAAAGGGATCTTTTCAGTTTTTCTACTTGAATTGGTCTTTTGTTTTTTAGTGTAATATCTTACATTGAGCTTAGACTGAGTTTTCCCTGCTTTCATGGTGTTTTCCAGTCAATGGCTATAAGCTTAGAGGGGAAAGAACATGAAGATTCGGGGACGGATGAGGAAGGGAATGGAGTCAATCCAGGGAAATCAGCTTCTCACATGTTCTGTAAAACGCTGACTGCTTCGGATACCACCACCCATGGTGGCTTTTCAGTTCCCCGTCGAGCAGCTGAAGACTGCTTCCCCCCTCTGGTGTGACCTCCATTCCAGGCTTTTGCTAAAGAGATCTTTAGTTGATTTCTTGTAATTGTCTGGTTAATTTACTTCTATCTTGGTGCTACATTATTAAATGTAGGATTACAAAGAGCAAAGACCCTCACAGGAGCTAATTGCTAAGGATCTGCACGGAGTAGAGTGGAAATTTCGTCACATTTATAGAGGTATTGAGTTAAATAGTTAGATACTTGTTTGGTCCGAAATATTAATGTTTGATGCTTTTCTTTCAGGCCAGCCAAGGCGACATTTGCTCACTACTGGATGGAGTATCTTTGTCAGCCAAAAGAATCTTGTCTCAGGGGATGCAGTTCTCTTCTTGAGGTATACATACCTGTTAACTTTGCTGTATTTGAAAATAAAATTTTGTATAACTTTAAATGAAGTAGAACCATAAATGGAGATGAAACAAAATTATATTCGAGTCCGCTGAATCCACAACGTGTGTTTAAGAAACTTAAATCCAATTTAGTACCCGAGGAATAAGATTATTTTCTCCCATGATAAAATGGATAAACCACACTGGTGTAGTGGTACTTCGAACCCTAGGGTACTTCGAACCCTAAGAGTAGCCAGATCACACTTACAACTTACTTTGCAAGTGCATGAAATATTGCAGAAAGAAGTAGAGTAATTCATATTTTTGGTAAGTAAAAATCCTAGGAAGCGCACATGAATTATAGTCAACAAAGGGTAGTTTGAACAAGTGTTATTGTGCCGTACGGAAAAGTTACAACCTATCCAATGTAAAGGTGCTATTCAAATCACATCATTTCCCCTGGTGTCTTTTTTTAGGAAATCACCTATTCATTTTCTCATTCACACCTCTTAACAAACCCCACAATATCAGCTCAATGGTATACTCCAAATGGTTCATCTTTTTAGGTACTAAAGCAGCTTTGACGGTGAGCTGGGAAAGGGAATGAGGGTGGAAAGTGACCGATATGAAAATATCAAGTCATTGTACTTGGAAGCTGGAAAATCATTAGGTCTAATATCTAGGTTTTCAATATGTCATGGTGACTCGTTAGGATGCCAATGCCAAGATCTTAATGATCCTCTGTTCAACTTTTGAAGCTTGTTTAGTCACAATAGGTATTTAAATTTTATTCAAGCAGTCAGATGATCCTTGCAGGGGAGAAGGTGGAAATCTCAGACTGGGAATAAGAAGAGCTGCAAGACCTAGAAATGGGCTTCCTGAATCGATAATCAAAAGTCAATATTCTGGACCGGATGTTCTTTCGTCAGTTGCTACAGCCCTATCAGCAAAGAGCACTTTCCATGTTTTCTATAGCCCAAGGTATCTCACTATATCTCTGTGTATAGTTCTCTATTTAGTTGTTGGCCTATTTATATGGTAAAATCCGTGGCAATATCCCTCATCCATACATCTTTTACTATTTTAGGCTGTGCGACGTTAATGAGATTTGATATTCACATAGCTTATATTTTAATTGCATTTAAGTCATGAAGGCATAATAACCAAATACATATAAACAAAGATTGCTTATTTCCATCCAACCAGTCATTTGCAGAGATTGAAATGAATTGTCTTTGTTTTGGATACCACCGTTTTAGTGTCCAATTAATATCTTAACAAATACAAATGGTGTAGGTGTGTAGGCCTTCTTCGTGCAGATCAGTTGTATTAGAAGATTTGCTTTGCTTTAAGGAAACAGTTCTGGAGGAGTAAAGTTGTACTGTTTACTGTCAAACTTGGGAACTAAGCTAGTATTGATGGTGTGAAGTTTGATATCCAGTGATAATATTATACTCACTTATTTGACATAAATATGCTTTTGAAAAATCCAAACTAAGTTGATTATGGGTGGTACTACTTGTAATCATGTTGCAGTTTAAATGTTTGTAATTACTTGAAAGGTCGTAGATAGAATGATTGTATTGGTTTAGTGAGATAGCACTGAAACATCACTGATTGCCATCATTGCTAACAAATATTGTGTTGTTATAGTAATGATGCACTGAATTATGAAGTAAGATTTGGAAGATTACAATTGGGGAGCTCCAAAATGAACTGATATGGTTTCATAGCAGTGTGGCAATATATTTGGCTTTATTGCGATCCATCTTTATTATATTTGTTAGTTTGTTCCTAGATTGAGGCACAACTAGTGGCTTTCTGTTTATTTATGTGGCATCAGCTGCAGAACAAAACATAATTGAGGGTAGTAACTCGTTGAGCTCCCCACATTGGTCATTTAGGGATGAGAAGATCTGTTTATATTGTCTTGGACAATCCTCACCTCATGAGCTAGCTTTTGGAGTTATGTTAGACCCAAAATCCATTTTTTTCGGCATGCCAGGGGTGTTGACTGTTGAGTTCCCACATCAGTCATTTAGGGTTGAAAAACCTCTTTTCCTTTTTATAATAGGTATGGAGTCTAGATGTTCAAAGAAAAAGAGGTATGGAGTCTCTTAATATGGTCTTGGAGAATTCTCACCTTATGAGCTAGTTTTTGGGGTTGAATTAGACCTAAGGTCTATTTTTGTATCATAACTTATACTAGTACCCAGGTATTTGATCCATTCTATAGGCAGTGATCTTTCTGTTTGCCAAACCATCAATTATCTTCCAACTAATAGTCCTCTGATTCTGAACTTCAGGTATCTCATGAAAATTTTTCAGTTGAGAGACAACTTAGACTCATTCGTTTAGACTGAGTGGTTCAGATGCATGTCTTTTTATGCAAATGTAGTGCAATGCATGCTGTAGTGGCTCATATCAAGTAGATTTCCTAGTAGGTCAATGCTAGGAAAGCAACTTGTCTACTGGTAATCTCTACTTCGGCTAGTTCATATTTCATTGTCAGCATCTAAAACATCAAAAGGATGATTTTGAGGTTGACCCAAATCTTTCACTCTGTGCTATCATATATATAACTGCACTTACCTGGAAAGGGGAAGTACTTTGCCTTTTCATATTTATGAAATGAAGCAGCTGTCTCTTTTTAGTGATGTTCATATTCGATGCAATGTTGTTCATTCAGATTTTCTTCATGTTTGAGTTGAATAAGAAAATGTTAACAGTTAAATATATCATCGAAGTGAATTATTTCAATGTTATGAAACCAGTTTTACATCCCAGAAGCTAAATTTCTTTTGGAAGAACCCATGGTGTATAAAGTTGGCGAGGAAGTTTGCATCTCTGTTAGATATGTAAGAAATTTGATTCACTGGTATAAAGATATTAATGCTCCTGATTCAACGTGTGAAAATTCAGACTTAAAAAAATATTACCTATTGGTAAAACCATTGACAATATGGAAGGGTTGATTCAGTCGAGAGGATGAGAAAAATTATTATTTCTGCTGCTTCTTTCAATTCATGTGTTTCAAGCAGAAGTCTTGTCCTGATTATGAAACCGTTTATTTCCCAAGGAATAAGGAATAACAAAGAACTATGATTTTCGTAAAATATTCTGGTGGACGAAAAAGTCTCATATTATGTGCAATCTTGTAGACTGTAGTCAAGTCCGAATCTTAAAACATGTGAAGTTTATTCTTTAGTCACTGCTGCAGCTTTCAGAAGTTTGTGTCACGAATTGTCAAGATATTATTGTTGTTCTTTTATTGCTACGTAGATCATTTTGAGTTAAAAGTTTTTTCTTATAATGTAGGGCAAGTCATGCTGATTTCGTTGTACCTTACCAAAAGTACGTGAAAGCCATCAACTCTCGGATTCCTGTTGGGACAAGATTTAAAATGAAATTTGATTTGGATGATTCACCTGAAAGAAGGTAATTGTATCCTTACTAAATACCATTATATGCTCTTCTTCCTTTCATTGGTTTCTGTTGTAATAAAAACATTCCATCACTGCATGCAGGTACAGCGGTGTAGTGACTGGGATAAGCGATATGGATCCCTTTAGATGGCCCAACTCTAAATGGAGATGCTTGATGGTATGCCTGACATATAGTTATCATTTTGTTGTTTTTTAAGTACTCCTTCCGTTTCAATTTGTGTCTGGTTTTGACTTGGTACGAAGTTTAAAAGAATACAGTAGACTTTTGAATCTTGAGGTCTTAAACTAAAGATATGTAGAATGTATCAAAATGCCTTTTAGTCTTGTGGTCATAAACATATCATGTGGAGAGTTGTAACTGAAGAGTTCCCATAAAAGGAAAGAGGCATTCTTTTTTTAAACAAACTAAATAGGAAAGTAAGACAAGCAAATTAAAACGACGGGAGTAGTTGGTATTGCTCCACCTATCACTTCATGTTTTTTTGAATAGGTTGGAACTTGTTCTTCTATTTATCTCAGGGCGATTTTTTTGCTCCCTTGTTATTCACAGAGGCATATATGTTCTTGAATTTTCTGCCGGTGTTACCTTGTGAGTTAGATCAGCTCTACTTAGAGATCTTGTAACATGTAAATCTGCTTGTTGAATACCTCTAGGAACACTGGAAGGACCGTATATTTTTTGGTTTGTTTGATCAGGTCATAAAAATTGGTCATGCCATGAATTATCAAACTATTCTCACTGAAATATGATGAGAAATTGTTAAATGGTCTGGTGTTGTAAGATGCTTTATTGATTTCTTTTTCATGTCAAGACTGATAAAGTTTGCTAGTTATAAGTTGCTTGCTTGATTTTTTCGTGTCAAGGCTAATAGAGTTTGCTATCGGCAATACAATTAAATACATTCACCTATTGTATATTTTGAGTTATCTTCCCAAACAAAACTGTTACAATAAGTATAAGGCCTATTAAGCAACTTATAAACTTTTTGATATATGTGCCTATGTCATCAACTTTAATAGGTCAGATGGGATGAAGATATAATGAGTAATCATCAGGAACGGGTTTCTCCTTGGGAAATTGATTCTTCAGTTTCCTTACCACCACTGAGCATTCAGTCCTCACCAAGACTGAAGAAACTGCGGACTAGTCAGCAGGCACCATCAGTACTGGACAGCCATTTTGCTGGTACTGATCTAACTTTTCTAAATCCTTTTGTATTATGTTGTCATTATGTCGTATGGGTACTGCGTTTGGACTTTTTTTATCCTTGAATCGACGGTCTGTTGGAGACAGGCCTCTCTACGAAGGTCTGCGTACACGTATACACTACCCTCCCAGATCCCACTGTGTGGGATTACACTGAGTATGTTGTTGCTGGTGTTTTCATTAAGTTGTGATTCCACTGAAGTTCATTTTTATTCCGATTTTGTTATTTTATCAGGAGGGAGTGCTCTTTTAGACTTTGAGGAGTCAATAAGATCCTCCAAGGTCTTGCAAGGTCAAGAAAATTTAGGTCTGATATCACCTCCCTATGGTTGTGATAAACCAGTCCGCCCACTGGATTTCGAGCTGCAAAGAGTAGCTCGTCACAATCTCATGCCAAATGGTGTAGAGAACATTATTGTTGGTGACTTTGTGAAAACTCAGCCTCCAACAACCTACACAGGCTTTCTGGAATCCAATAGGTTTCCAAAGGTCTTGCAAGGTCAAGAAATTTGCTCGTTGAGATCCCTTACTGGAAAAGGTGATGTTAATTTTGGTGCTTGGGGAAAACCTGAATTTGGTTGCAATGTTTTCGGCACATATCAGAGGCCGAGAGCCAATTTCTATCCTCTCGCTTCTGAAGGGGCGAGGAATGTGTTTTTACCTTACAATGCGATGTATAGAGCTGGACAAGATCCCGTGGTTCCCTCCTACAGTACTAATTTCCAAAGAGAAAATCCTACCTTGAACCAGAATTCAATCCAAAATGTGGTTAGGAGGGAAGAAGTTGGAATGCCAAAGTTTGTAAATGAGCAGAGGCCACCGGAGATGTCTAAAGTGTCCATTCCAGAGAACCATTTCAAGAATGAAAATGACGACTCCTTCAATGCACAGGCTCCATGTAAACTGTTTGGCTTTTCCTTGACGAAAGAACCATCTACTCCTAGCTCGCAGAGTTCTGGTAAGAGGAGCTGTACTAAGGTAAGTTTCCATAAGTTGCACATAGCGAATTGGAACTGTTTTTTCTTTGGACTCTATTGCTAATATTGAATAAATGGCGTGAAGGTTCACAAACAAGGCAGCTTGGTTGGACGAGCCATTGATCTCTCGAGATTGAATGGCTATGACGACTTGCTGGTTGAGTTGGAGAGGCTTTTCAACATGGAAGACCTCTTAAGAGATCCCAACAAGGGGTGGCGAATCTTGTACACTGACAGTGAGAATGACATGATGGTTGTCGGAGATGATCCATGGCAGTAAGTCTCTTTCTCATGCATCTCCGTTTCTCATCACTGTCTCAATTGTTTGATACTACATTCAAAAAATATTACTTCTTGGTTTATTAATGCATATGAATCACTAGAACCACACAAATTTCTCTTCCAATTAGCTGACTTCCACTAGAAATCGGAGTTTTGGATATTAGCTAACCTCCACTTGAAATCTAAGTATTCTTTTACTTTTCTTCTCCCAGGTTAAGATAAATTTCTTTCCTTGAGCTGAGGGTCAATCGGAAACAGCCTCTCTACCTCCAAGGTAGGGGTAAGGTCCGCATACACTTTACCCTCCAATGTGTGTTTATTATGGAGGAAAAATGCTTCTGAGAAAATGTTCTTCAATTTTCCCGTCTTTGATTGATCAAAAAATTTGGAGAACATTTTCTTCAAGTAAATAAGTCCTTTAAATATGAGGAAAATGACTTCCTTAGTCGAAGTAGGGAAAACAAGTTCCTAAAATAGCATACCATACTGATTTTCTCCATTCCACCCTCCCAACACACCCACACCCCATTCTCGCCATTCTCGCCACTCCCACCACACATAATGTTTCCCTTGAATTTATACACAAAGCTACTTATCACACACAAGAAAATAAATAATAAACACTTTTTTTCAAGAAAGCATTTTCTGGAAAAAACATTTTCCTTCATACCACACACCTTAAATTAGAACTTGTTATTTTGCAACTTCTGCCGAGCAGCAAAATCTTGGTTCAGGGAAAAAGTAAGGGTCTGTACACACTGTCCTCCCCAGACCTCACTTGTGGGATTACACTTGTTGGATATGTTGTTCGAAAAAGTATAATTTCCCTTAATAGATTGATTTGCTTATCAGTAACTTGTGTACCTTCTAAATGACTTTTCGCAGTGAGTTCTGTGAGGTAGTATCCAAGATCCATATATACACTCAAGAAGAAGTGGAGAAAATGACTATTGAGGGGATCAGCGATGACACTCAAAGTTGTTTGGAGGAGGCACCAGCAATCATGGATGTCTCAAAGTCTTCTTCAGTTGGCCAGCCTGATTCATCTCCAACTGTAATCAGGATTTGA
| Download sequence region |
Get flanking sequences on SL2.50ch11
|
mRNA Solyc11g069190.1.1
mRNA Solyc11g069190.1.1
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Ontology terms
Ontology terms
| terms associated with this mRNA |
cDNA sequence
cDNA sequence
| spliced cDNA sequence, including UTRs |
>Solyc11g069190.1.1 Auxin response factor 4 (AHRD V1 **** Q2LAI9_SOLLC); contains Interpro domain(s) IPR011525 Aux/IAA-ARF-dimerisation IPR003340 Transcriptional factor B3
ATGGAAATTGATCTGAATCATGCATTAGTGAGTGAAGTGGAGAAGAATGTATGTTGTAATGAAGAATGTGATAAAGGGGGTGGTGGGGGTTGTGTTAATTGCTCTTTGTACACTTCCACTACTTCTTCTTGTTCTTCAAATGTATCTTCATCTTCTTCACTTGCTCTTACCTCAATTTATAAAGAGCTTTGGCATGCTTGTGCTGGTCCTCTTACTAGTTTACCCAAGAAAGGAAATGTAGTGGTTTATTTCCCTCAAGGTCATATGGAAGAAGCTGTTTCTGCTTTTCCATTTTCACCTGTCAAGATTGATTTACCAACTTTTGGTCTTCAGCCTCAGATCTTCTGTAGAGTGGAAGATGTCCAATTGCTTGCAAATAAGGAAAATGATGAGGTGTATACACAGCTCACTCTTCTTCCTCTTCCAGAGTCAATGGCTATAAGCTTAGAGGGGAAAGAACATGAAGATTCGGGGACGGATGAGGAAGGGAATGGAGTCAATCCAGGGAAATCAGCTTCTCACATGTTCTGTAAAACGCTGACTGCTTCGGATACCACCACCCATGGTGGCTTTTCAGTTCCCCGTCGAGCAGCTGAAGACTGCTTCCCCCCTCTGGATTACAAAGAGCAAAGACCCTCACAGGAGCTAATTGCTAAGGATCTGCACGGAGTAGAGTGGAAATTTCGTCACATTTATAGAGGCCAGCCAAGGCGACATTTGCTCACTACTGGATGGAGTATCTTTGTCAGCCAAAAGAATCTTGTCTCAGGGGATGCAGTTCTCTTCTTGAGGGGAGAAGGTGGAAATCTCAGACTGGGAATAAGAAGAGCTGCAAGACCTAGAAATGGGCTTCCTGAATCGATAATCAAAAGTCAATATTCTGGACCGGATGTTCTTTCGTCAGTTGCTACAGCCCTATCAGCAAAGAGCACTTTCCATGTTTTCTATAGCCCAAGGGCAAGTCATGCTGATTTCGTTGTACCTTACCAAAAGTACGTGAAAGCCATCAACTCTCGGATTCCTGTTGGGACAAGATTTAAAATGAAATTTGATTTGGATGATTCACCTGAAAGAAGGTACAGCGGTGTAGTGACTGGGATAAGCGATATGGATCCCTTTAGATGGCCCAACTCTAAATGGAGATGCTTGATGGTCAGATGGGATGAAGATATAATGAGTAATCATCAGGAACGGGTTTCTCCTTGGGAAATTGATTCTTCAGTTTCCTTACCACCACTGAGCATTCAGTCCTCACCAAGACTGAAGAAACTGCGGACTAGTCAGCAGGCACCATCAGTACTGGACAGCCATTTTGCTGGAGGGAGTGCTCTTTTAGACTTTGAGGAGTCAATAAGATCCTCCAAGGTCTTGCAAGGTCAAGAAAATTTAGGTCTGATATCACCTCCCTATGGTTGTGATAAACCAGTCCGCCCACTGGATTTCGAGCTGCAAAGAGTAGCTCGTCACAATCTCATGCCAAATGGTGTAGAGAACATTATTGTTGGTGACTTTGTGAAAACTCAGCCTCCAACAACCTACACAGGCTTTCTGGAATCCAATAGGTTTCCAAAGGTCTTGCAAGGTCAAGAAATTTGCTCGTTGAGATCCCTTACTGGAAAAGGTGATGTTAATTTTGGTGCTTGGGGAAAACCTGAATTTGGTTGCAATGTTTTCGGCACATATCAGAGGCCGAGAGCCAATTTCTATCCTCTCGCTTCTGAAGGGGCGAGGAATGTGTTTTTACCTTACAATGCGATGTATAGAGCTGGACAAGATCCCGTGGTTCCCTCCTACAGTACTAATTTCCAAAGAGAAAATCCTACCTTGAACCAGAATTCAATCCAAAATGTGGTTAGGAGGGAAGAAGTTGGAATGCCAAAGTTTGTAAATGAGCAGAGGCCACCGGAGATGTCTAAAGTGTCCATTCCAGAGAACCATTTCAAGAATGAAAATGACGACTCCTTCAATGCACAGGCTCCATGTAAACTGTTTGGCTTTTCCTTGACGAAAGAACCATCTACTCCTAGCTCGCAGAGTTCTGGTAAGAGGAGCTGTACTAAGGTTCACAAACAAGGCAGCTTGGTTGGACGAGCCATTGATCTCTCGAGATTGAATGGCTATGACGACTTGCTGGTTGAGTTGGAGAGGCTTTTCAACATGGAAGACCTCTTAAGAGATCCCAACAAGGGGTGGCGAATCTTGTACACTGACAGTGAGAATGACATGATGGTTGTCGGAGATGATCCATGGCATGAGTTCTGTGAGGTAGTATCCAAGATCCATATATACACTCAAGAAGAAGTGGAGAAAATGACTATTGAGGGGATCAGCGATGACACTCAAAGTTGTTTGGAGGAGGCACCAGCAATCATGGATGTCTCAAAGTCTTCTTCAGTTGGCCAGCCTGATTCATCTCCAACTGTAATCAGGATTTGA
ATGGAAATTGATCTGAATCATGCATTAGTGAGTGAAGTGGAGAAGAATGTATGTTGTAATGAAGAATGTGATAAAGGGGGTGGTGGGGGTTGTGTTAATTGCTCTTTGTACACTTCCACTACTTCTTCTTGTTCTTCAAATGTATCTTCATCTTCTTCACTTGCTCTTACCTCAATTTATAAAGAGCTTTGGCATGCTTGTGCTGGTCCTCTTACTAGTTTACCCAAGAAAGGAAATGTAGTGGTTTATTTCCCTCAAGGTCATATGGAAGAAGCTGTTTCTGCTTTTCCATTTTCACCTGTCAAGATTGATTTACCAACTTTTGGTCTTCAGCCTCAGATCTTCTGTAGAGTGGAAGATGTCCAATTGCTTGCAAATAAGGAAAATGATGAGGTGTATACACAGCTCACTCTTCTTCCTCTTCCAGAGTCAATGGCTATAAGCTTAGAGGGGAAAGAACATGAAGATTCGGGGACGGATGAGGAAGGGAATGGAGTCAATCCAGGGAAATCAGCTTCTCACATGTTCTGTAAAACGCTGACTGCTTCGGATACCACCACCCATGGTGGCTTTTCAGTTCCCCGTCGAGCAGCTGAAGACTGCTTCCCCCCTCTGGATTACAAAGAGCAAAGACCCTCACAGGAGCTAATTGCTAAGGATCTGCACGGAGTAGAGTGGAAATTTCGTCACATTTATAGAGGCCAGCCAAGGCGACATTTGCTCACTACTGGATGGAGTATCTTTGTCAGCCAAAAGAATCTTGTCTCAGGGGATGCAGTTCTCTTCTTGAGGGGAGAAGGTGGAAATCTCAGACTGGGAATAAGAAGAGCTGCAAGACCTAGAAATGGGCTTCCTGAATCGATAATCAAAAGTCAATATTCTGGACCGGATGTTCTTTCGTCAGTTGCTACAGCCCTATCAGCAAAGAGCACTTTCCATGTTTTCTATAGCCCAAGGGCAAGTCATGCTGATTTCGTTGTACCTTACCAAAAGTACGTGAAAGCCATCAACTCTCGGATTCCTGTTGGGACAAGATTTAAAATGAAATTTGATTTGGATGATTCACCTGAAAGAAGGTACAGCGGTGTAGTGACTGGGATAAGCGATATGGATCCCTTTAGATGGCCCAACTCTAAATGGAGATGCTTGATGGTCAGATGGGATGAAGATATAATGAGTAATCATCAGGAACGGGTTTCTCCTTGGGAAATTGATTCTTCAGTTTCCTTACCACCACTGAGCATTCAGTCCTCACCAAGACTGAAGAAACTGCGGACTAGTCAGCAGGCACCATCAGTACTGGACAGCCATTTTGCTGGAGGGAGTGCTCTTTTAGACTTTGAGGAGTCAATAAGATCCTCCAAGGTCTTGCAAGGTCAAGAAAATTTAGGTCTGATATCACCTCCCTATGGTTGTGATAAACCAGTCCGCCCACTGGATTTCGAGCTGCAAAGAGTAGCTCGTCACAATCTCATGCCAAATGGTGTAGAGAACATTATTGTTGGTGACTTTGTGAAAACTCAGCCTCCAACAACCTACACAGGCTTTCTGGAATCCAATAGGTTTCCAAAGGTCTTGCAAGGTCAAGAAATTTGCTCGTTGAGATCCCTTACTGGAAAAGGTGATGTTAATTTTGGTGCTTGGGGAAAACCTGAATTTGGTTGCAATGTTTTCGGCACATATCAGAGGCCGAGAGCCAATTTCTATCCTCTCGCTTCTGAAGGGGCGAGGAATGTGTTTTTACCTTACAATGCGATGTATAGAGCTGGACAAGATCCCGTGGTTCCCTCCTACAGTACTAATTTCCAAAGAGAAAATCCTACCTTGAACCAGAATTCAATCCAAAATGTGGTTAGGAGGGAAGAAGTTGGAATGCCAAAGTTTGTAAATGAGCAGAGGCCACCGGAGATGTCTAAAGTGTCCATTCCAGAGAACCATTTCAAGAATGAAAATGACGACTCCTTCAATGCACAGGCTCCATGTAAACTGTTTGGCTTTTCCTTGACGAAAGAACCATCTACTCCTAGCTCGCAGAGTTCTGGTAAGAGGAGCTGTACTAAGGTTCACAAACAAGGCAGCTTGGTTGGACGAGCCATTGATCTCTCGAGATTGAATGGCTATGACGACTTGCTGGTTGAGTTGGAGAGGCTTTTCAACATGGAAGACCTCTTAAGAGATCCCAACAAGGGGTGGCGAATCTTGTACACTGACAGTGAGAATGACATGATGGTTGTCGGAGATGATCCATGGCATGAGTTCTGTGAGGTAGTATCCAAGATCCATATATACACTCAAGAAGAAGTGGAGAAAATGACTATTGAGGGGATCAGCGATGACACTCAAAGTTGTTTGGAGGAGGCACCAGCAATCATGGATGTCTCAAAGTCTTCTTCAGTTGGCCAGCCTGATTCATCTCCAACTGTAATCAGGATTTGA
Protein sequence
Protein sequence
| translated polypeptide sequence |
>Solyc11g069190.1.1 Auxin response factor 4 (AHRD V1 **** Q2LAI9_SOLLC); contains Interpro domain(s) IPR011525 Aux/IAA-ARF-dimerisation IPR003340 Transcriptional factor B3
MEIDLNHALVSEVEKNVCCNEECDKGGGGGCVNCSLYTSTTSSCSSNVSSSSSLALTSIYKELWHACAGPLTSLPKKGNVVVYFPQGHMEEAVSAFPFSPVKIDLPTFGLQPQIFCRVEDVQLLANKENDEVYTQLTLLPLPESMAISLEGKEHEDSGTDEEGNGVNPGKSASHMFCKTLTASDTTTHGGFSVPRRAAEDCFPPLDYKEQRPSQELIAKDLHGVEWKFRHIYRGQPRRHLLTTGWSIFVSQKNLVSGDAVLFLRGEGGNLRLGIRRAARPRNGLPESIIKSQYSGPDVLSSVATALSAKSTFHVFYSPRASHADFVVPYQKYVKAINSRIPVGTRFKMKFDLDDSPERRYSGVVTGISDMDPFRWPNSKWRCLMVRWDEDIMSNHQERVSPWEIDSSVSLPPLSIQSSPRLKKLRTSQQAPSVLDSHFAGGSALLDFEESIRSSKVLQGQENLGLISPPYGCDKPVRPLDFELQRVARHNLMPNGVENIIVGDFVKTQPPTTYTGFLESNRFPKVLQGQEICSLRSLTGKGDVNFGAWGKPEFGCNVFGTYQRPRANFYPLASEGARNVFLPYNAMYRAGQDPVVPSYSTNFQRENPTLNQNSIQNVVRREEVGMPKFVNEQRPPEMSKVSIPENHFKNENDDSFNAQAPCKLFGFSLTKEPSTPSSQSSGKRSCTKVHKQGSLVGRAIDLSRLNGYDDLLVELERLFNMEDLLRDPNKGWRILYTDSENDMMVVGDDPWHEFCEVVSKIHIYTQEEVEKMTIEGISDDTQSCLEEAPAIMDVSKSSSVGQPDSSPTVIRI*
MEIDLNHALVSEVEKNVCCNEECDKGGGGGCVNCSLYTSTTSSCSSNVSSSSSLALTSIYKELWHACAGPLTSLPKKGNVVVYFPQGHMEEAVSAFPFSPVKIDLPTFGLQPQIFCRVEDVQLLANKENDEVYTQLTLLPLPESMAISLEGKEHEDSGTDEEGNGVNPGKSASHMFCKTLTASDTTTHGGFSVPRRAAEDCFPPLDYKEQRPSQELIAKDLHGVEWKFRHIYRGQPRRHLLTTGWSIFVSQKNLVSGDAVLFLRGEGGNLRLGIRRAARPRNGLPESIIKSQYSGPDVLSSVATALSAKSTFHVFYSPRASHADFVVPYQKYVKAINSRIPVGTRFKMKFDLDDSPERRYSGVVTGISDMDPFRWPNSKWRCLMVRWDEDIMSNHQERVSPWEIDSSVSLPPLSIQSSPRLKKLRTSQQAPSVLDSHFAGGSALLDFEESIRSSKVLQGQENLGLISPPYGCDKPVRPLDFELQRVARHNLMPNGVENIIVGDFVKTQPPTTYTGFLESNRFPKVLQGQEICSLRSLTGKGDVNFGAWGKPEFGCNVFGTYQRPRANFYPLASEGARNVFLPYNAMYRAGQDPVVPSYSTNFQRENPTLNQNSIQNVVRREEVGMPKFVNEQRPPEMSKVSIPENHFKNENDDSFNAQAPCKLFGFSLTKEPSTPSSQSSGKRSCTKVHKQGSLVGRAIDLSRLNGYDDLLVELERLFNMEDLLRDPNKGWRILYTDSENDMMVVGDDPWHEFCEVVSKIHIYTQEEVEKMTIEGISDDTQSCLEEAPAIMDVSKSSSVGQPDSSPTVIRI*
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] |
DQ340259 Lycopersicon esculentum auxin response factor 4 (ARF4) mRNA, complete cds.
| Other genome matches | None |
Literature annotations [4]
Literature annotations [4]
| [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.
Failure of the Tomato Trans-Acting Short Interfering RNA Program to Regulate AUXIN RESPONSE FACTOR3 and ARF4 Underlies the Wiry Leaf Syndrome.
The Plant cell (2012)
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Interfering with small RNA production is a common strategy of plant viruses. A unique class of small RNAs that require microRNA and short interfering (siRNA) biogenesis for their production is termed trans-acting short interfering RNAs (ta-siRNAs). Tomato (Solanum lycopersicum) wiry mutants represent a class of phenotype that mimics viral infection symptoms, including shoestring leaves that lack leaf blade expansion. Here, we show that four WIRY genes are involved in siRNA biogenesis, and in their corresponding mutants, levels of ta-siRNAs that regulate AUXIN RESPONSE FACTOR3 (ARF3) and ARF4 are reduced, while levels of their target ARFs are elevated. Reducing activity of both ARF3 and ARF4 can rescue the wiry leaf lamina, and increased activity of either can phenocopy wiry leaves. Thus, a failure to negatively regulate these ARFs underlies tomato shoestring leaves. Overexpression of these ARFs in Arabidopsis thaliana, tobacco (Nicotiana tabacum), and potato (Solanum tuberosum) failed to produce wiry leaves, suggesting that the dramatic response in tomato is exceptional. As negative regulation of orthologs of these ARFs by ta-siRNA is common to land plants, we propose that ta-siRNA levels serve as universal sensors for interference with small RNA biogenesis, and changes in their levels direct species-specific responses.
Yifhar, T. Pekker, I. Peled, D. Friedlander, G. Pistunov, A. Sabban, M. Wachsman, G. Alvarez, JP. Amsellem, Z. Eshed, Y.
The Plant cell.
2012.
24(9).
3575-89.
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.
Down Regulation and Loss of Auxin Response Factor 4 Function Using CRISPR/Cas9 Alters Plant Growth, Stomatal Function and Improves Tomato Tolerance to Salinity and Osmotic Stress.
Genes (2021)
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Auxin controls multiple aspects of plant growth and development. However, its role in stress responses remains poorly understood. Auxin acts on the transcriptional regulation of target genes, mainly through Auxin Response Factors (ARF). This study focuses on the involvement of SlARF4 in tomato tolerance to salinity and osmotic stress. Using a reverse genetic approach, we found that the antisense down-regulation of SlARF4 promotes root development and density, increases soluble sugars content and maintains chlorophyll content at high levels under stress conditions. Furthermore, ARF4-as displayed higher tolerance to salt and osmotic stress through reduced stomatal conductance coupled with increased leaf relative water content and Abscisic acid (ABA) content under normal and stressful conditions. This increase in ABA content was correlated with the activation of ABA biosynthesis genes and the repression of ABA catabolism genes. Cu/ZnSOD and mdhar genes were up-regulated in ARF4-as plants which can result in a better tolerance to salt and osmotic stress. A CRISPR/Cas9 induced SlARF4 mutant showed similar growth and stomatal responses as ARF4-as plants, which suggest that arf4-cr can tolerate salt and osmotic stresses. Our data support the involvement of ARF4 as a key factor in tomato tolerance to salt and osmotic stresses and confirm the use of CRISPR technology as an efficient tool for functional reverse genetics studies.
Bouzroud, S. Gasparini, K. Hu, G. Barbosa, MAM. Rosa, BL. Fahr, M. Bendaou, N. Bouzayen, M. Zsögön, A. Smouni, A. Zouine, M.
Genes.
2021.
11(3).
.
Ontology annotations (8)
Ontology annotations (8)
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