This site uses cookies to provide logins and other features. Please accept the use of cookies by clicking Accept.
Tomato locus MADS-box protein 1
Locus details | Download GMOD XML | Note to Editors | Annotation guidelines |
[loading edit links...]
|
[loading...]
|
|
![]() ![]() |
Registry name: | None | [Associate registry name] |
![]() ![]() | [Add notes, figures or images] |
Success
The display image was set successfully.
Image | Description | Type |
---|
![]() ![]() | [Associate accession] |
Accession name:
Would you Like to specify an allele?
![]() ![]() | [Add new Allele] |
![]() ![]() | [Associate new locus] |
[loading...]
|
![]() ![]() | View MADS-box protein 1 relationships in the stand-alone network browser |
[loading...] | [Legend] [Levels] |
![]() ![]() |
[loading...]
![]() ![]() |
![]() ![]() |
![]() ![]() | unprocessed genomic sequence region underlying this gene |
>Solyc03g114840.2 SL2.50ch03:64720929..64714623 (sequence from reverse strand)
GGGGGTGTAAATGGAAAGGTACCAAAGATAGAGAAAGTCCCAGGGTTTCCATATTTCCAACTCTCTCTTTCTTTCATTTATTTTAATTTGTACCTTTTGTTATCCAAAAGTAGTTGAGCTTGTAACCAATAATCCCCCCTTCTTTTCTTATTTTTTTTAAAATCTCTGAAAAAATTGAAGATTGATTTCTCAATGGGAAGAGGAAGAGTTGAGCTTAAGAGAATAGAAAATAAAATAAATAGGCAAGTCACTTTTGCTAAGAGAAGAAATGGACTTCTTAAAAAAGCTTATGAACTTTCTGTTCTTTGTGATGCTGAAGTTGCCCTTATAATCTTCTCTAATAGGGGTAAACTCTATGAATTTTGCAGCACTTCAAGGTATTTTTTATTTTATTATATTAACATCAAAGATTTTATTTTTTTAAAAAAAACCTTAAGTCCTTCATTACCAAAACCCTTAATTGATTTACAAAGTACTTTCATTAAATTTAGTAATTCTTTTTTTTTTTATCTCTGACTTCAATTATAATGCAAGATCTATGTTGTCTTTATATATATTGAATTATATATGTACTGTATTTTTACTATATACATATAAGATCCTTTTTTCTTTTTTTTCTGTCTCTTTATATAAATATATTTTAAATAGTTGATTTTGAAAGATCTACTAATGTATATTTATTTTTGGAACTTTTGTGTATATGGAATTTTTTTCTTTTTTATGTTTTTTTTTTGTTCTAATTGTTTTAAAAGCGTTTAAGATCAGAATGTTCTTGATTATTCTTTTAGGAAAAAGATTTCCCATACATTGAGTTATTTTTTGATCTGTAGATTGAATTTTTTTAATGAGTTCCGATAGATTTTCGTTCAATTTTTCAATGAAACTATTGAGGGTTGATGATTAGATAATTACTCGATTGAAAGTTTTTATTTCAAAAAAATTATAATTCTTCTTAATTTTATATTTATGAGATAGAGTTAGTTTAGTGATTATATGAAAAATCGTATCAGATTATTGGGAATCGAAACTTAAAAATTCTGAAAATATTATTATAAATTTTACATGTTACAATATTTTTACTGTTAAGATTTGATTTGCAGACTAGGTGTCATGTTTGACAGTTGATAAAAAATCTGTTATTTTTGTTCTTTAATTCCCAAGACGGATAAACAAAGGCTGCTTATGTTGGTTTCCAATAAGCAGCCATAATTTTAAATATTTTTGTTAAGATTAATTAATAACAATTATTTCCACCAGATAATTTTCAAAATTTGTGACCCCGAGTTCATATAAATTGTTAATTTTACTGCTAGAAATTACATCGATAATAATTTATTTAGTGTAATCTTATAAATACGAGGGCAGTAGTGTATAGACTGTTTTTTATTAATCCTGACTCAAAGTGAGGTAAGTTAAGTATATTTTGATTAAAAGGACTACATTTCATTTATGTATGTTTAATTAATATTATTTTGTAAGTCAATAAATCTAAACAACATGAGTTTATCTAGACCCTTAATTATGCACCTTCATTATCAATTTTTTCAATACTCTCCTCAGAACATATGCTTCTCTATAATTTTGTGCACGAGTTAATCAATTCTTCCTTTTCAATAATTAAATATGTGATTTATGTTTAGCACTTATTTTTCGGTTAGTTAATTGATAATAGGAAAAAGCCTCTTTTTTTTTGTGTGTGTGGTAATTAGGATCTTTATTGAATTTAAAATGACCTACTATAGAACTTGGGAGTTTTTCTTCATAATAATGCACTGCAACGTGTTAAAAAAAAAGAATCAAATGAAATTAATAGATGTTTACTGGATTGCCATGGTAAAGTGATAAGTATTAATTTCGCTTTAACTAAGAGATCATTATATTCAAGTCCCCTTGATACAAACTTGCCTTTGTAAATAAGTGTTTTATTTTTCAATGTGAAACTTTCGCTGTTAATTTAAATTTAATTATACTTCTATATAAATACCAAACAATAATGTAATAAAACAAAAAATAAAAGAGTAGATGTTTCATATTGTTAATGCAGCATGGTGAAAACAATTGAAAAGTACCAACGTTGCAGCTATGCTACTTTGGAAGCCAACCAATCAGTTACTGATACTCAGGTACTGCTTTATATTTTAATTTATTTGGCTTTTTTTTAAAAAAATAATTAGTTTTGATTAATATGCATCATTTTATTTATTTTTGGCAACTCTTTATTTATCAGTAATAAGTAATAACTTTTTAACTAGTATATTTAAAAATCACAAAATTTAAGAATATTTTAATAGATTCGACATATTTTAGTTTAAAAATAACAAATTAAATTATGTTTTTAATTTTTTAAATATTCTTACTATAATTATCATGTACTCTTTGATCTGTTCATCTTTTCCATGATAATATTATTTGGTCAGTTAGTGACATAAGAGTTTGAAATTTAGAAAAAAGGAATATTTGGAGAAAACTGAAATGGATATTTAGAAATGAAAGTTATTTAATATAAATATAAGTATGGGCTGCTGAGTTGGGAATCCACGCTGGAGATCTCAAGTTTGAAGCGTCTCACAAACAATAGTAATGTCTTTTTGGTCGAGTTTGTCGGATTGGACTTGTCCGTGGCCTGTGGGTTACTTTTCCTATATGGTTTGCAAGCTATCGGGAATTTTATCCTGGCGCACCCAAATTTGAGTTATTTTTGAGTTTTTATATGAAATAGCTTTGTGAATTCATCGAACTCCCGAAAACATTGAACTTTACTCCAAGTTGAATTGCAGTAAAATAATAGTAGCGATTCTTTAATTTATCCTAACAGTTTTTCGAAATAATAATCCCAAAAAAGTTTAAAATAACCATACCATAAACTTACTGGGTAAGATATTATCTGTCTAATAATATATAGTAGTTTCTTTTGTTTTATTAGTTTATCTAATCCATATTTCATTTCTTGATAAGTTATTCTTAATAGGAAAATAAACTTATTTCGAAAAACTGTTTTTAAAATTTTCTTGAGTTGAGTCTTGGATGAAAAATAGTTAATTTTGCATTAATTAATTTTGTTCTAACAAAAACTAATTAAATTTTTTTGAAGCGCATATTCACTCAAAAAATAAATAAAAACCATCATGCATACAGGAAATGTTCTTTTTTTAATTTATTTTTTCATTGGAGCCCTGACTAATTTTATATCGGTTCATACTTTCATAAATTACAAAAAGTTCAAAATTTAAACTAACCATATAAGTGAATAAAATAAATCAACAAAATATTCACCACATAATACTTTTTAAATAGAATTTTTCATACCAAAGACCTTACTTTAATTAATTAGGGTGAGAGAATCCTATAAGTCAATGCAAAACAATTCTATCTATCGGATTATAATCGTTGATTCATAAAATTTTAAAATCGACGATTTTCATTTAAATGACCCTTTTTTTTCTTTCATTTTTTATTGTTATTCATCTATTTAACTTGTGAGCATCTTTCATATTGATATTTCAGACCCTTAAATTAATTGTTTTCTTACAGAATAACTACCACGAATATCTGAGGCTAAAAGCTAGAGTTGAGCTCCTCCAACGATCTCAGAGGTAATTTCTGTTCACTATCTTTATCTCAAATGAATTCTCATGTTTTTATTTTTCGAGATTCAGATTAAATATAATTTGATGTATTATTAATTTAAATACGTTATTTAATATGGTCCTTATGTCCAACCATTGATTTAATTTGATATTTTTTTAATGAAAATTACACAGAAACTTTCTTGGTGAAGATTTGGGCACGTTAAGCTCGAAGGACCTTGAGCAGCTTGAGAATCAATTAGAGTCTTCCTTAAAGCAAATCAGGTCAAGGAAGGTAAATTATTTAATCTAATTATACAGAAAAATCATCTAAAAGTTACCTTAATTGCTAGCCCAATAAGTTTGCTATCTGTTGATCCTCACATTATTTTACTCACAGAAATTCACAATACCTTTATTTTTGTTTGAGTTTGAAGTATACAATTTCTTTAAAATGTAAAATTTGAAATCTCAACAATAAGATATGTTATTGATCCTTGCAATTATGGGTAGATTGCGAATTAAACTATCTTGTCTTTGCTTACAACAGTCATTTTGTTTATAAACTAATTATACATAAATCCTAACTGATAGATAGTTTATAAAGATGAATAATGAACATAGGTCATATATTAAAAAAACAAAAAACAAAAAAAAACTAAACAAGATGAGCGAGTCAAAAATAGTCTTAACAAAAGAATATATATATATGTATATATCATATTTGATTTGTCTATTTTTAATTTTGAAAAAACTAAGTTAATCGATATATAATATGAAGGCATAATGCATAAATATGTCCTTTAACTTGGTTTTAAATCACATTTATACCTCTTCGACTTTGGGTGTATACAAACAAACACTTAAACTTATATAATGTTGAACAAATAGATATATATGTCCTACATGTCATTTTTCGTCCTAAATGGTGTCCTAAGTGTATTGTGTCACGCAGGACTCATGTGTCTATTTGTTCAAATTTATACAAGTTTAAGTGCTTACTTATGTATAAACAAAGTTGAATGACATAAATGTGAAATAAAATCAAATTAAAGGGCATATTTATGCATTATACCTAATACGAAAATCCATATTATTCACTAAAAAATGAGTCGGATTATATGATTACTTTTTTATTCATTTTGCCAATCGTATCCTACGACATTGTTTTTAATTTGCAGACACAATTCATGCTGGATCAGCTTGCAGATCTTCAACAAAAGGTAATTATAAAATTCTACAAATTTCCAATAATTAATAAATGGAATAATTATGCGCGAGAAATTTATCTATTTAAAATTTACGATGAATTTTAATTTTACAGGAGCAAATGCTTGCAGAATCTAATAGATTACTCCGTAGAAAGGTAAACTAACTTGATAGCCGTGCGTAATGAATAACTTATTTTATTTTCAAAATTATAAATCTAAATACTTAGGTAACTCGATAACATAAGAAGTATTTATACTGATGATATTGGTGTTGTGTTTTTTTTTATTAGTTAGAAGAAAGTGTAGCTGGATTTCCACTTCGATTGTGTTGGGAAGATGGAGGTGATCATCAACTTATGCATCAACAAAATCGTCTCCCTAACACAGAGGGTTTCTTTCAGCCTCTTGGATTGCATTCTTCTTCTCCACATTTTGGGTAATTACTTTTATTATTATTAAAAATAATTTCAATTTTTTTTACTTTTATTTCGATTAATAAATCAATGTGCACCAAGGTACGGTCTAACATAAACAAAAATGTGGGGAATGCTCTTAAAGCCCTAACAAAAGTTATTTGGTACGTGTACTAATGTAATCGTACTATATATCTTACTTGATTAGTGGATGGACAGTACTGGGCACACACAATTGACATAAGTTATTATAAGGAAAAAAAAAGGCCAATAATCAATATAGTCCAACATTACATTATTTATTATAACAGGTCACTCTAGATTAAATGTTAATGAATAACAAAAAGTCTCATATTGATGATTAATGTGATGGGTGGGCTTCTTATAAGGCTTTGACAATCCTACTCTCTTTGAGCTAGTTTTGGGGGTGTGACCTAATTCAACAGAACGTAGTTAAGATTGTGAAGTAAAGTTGATCATTGTTATAACAGGTTTAAATACTTCTAGTAAAAATAGTTCCTAGATAATCCATCGCAAAATAGCTCCTATATAGTTAGTTGGATTTTCATATAATCTATAGCTTATACATAGCTAAATGGGAATAGATGAGAGTTTCTGTTGTTTAGATATGATATTTGATCGGTTTCTAAATCGTTACTATCATGTAGTGAATAATTTTCATGTTATTACTATTACATTTGATTGTTTCTGTGGTTATTTTTTTTTCTAGGTACAATCCTGTTAATACAGATGAGGTGAATGCAGCGGCAACTGCACACAATATGAATGGATTTATTCATGGATGGATGCTTTAATCTGATAATTCGAACAAGCTAATCCATGTTTGGTTAAACAGTTATACAGTAATAATGTATTGCATGTATTATCATCCTTTTTTGTTTTGTTGCAAATTTTATTTCGAAACTCTCTTCAGGAATTATGGCGGCGATCGATTAATCGAGGACAGTAAATGTAATGTATGCATAAGTTGCTACTTTAACATTTGAAACCTCCTGACCATGCATTTCTGATTGTATCACAATGTGTAATTAAATGGAATTGTTGTATTTTTTGTATCATTGAATCATATGCTTATCTTGTACTATATATTAATGTT
GGGGGTGTAAATGGAAAGGTACCAAAGATAGAGAAAGTCCCAGGGTTTCCATATTTCCAACTCTCTCTTTCTTTCATTTATTTTAATTTGTACCTTTTGTTATCCAAAAGTAGTTGAGCTTGTAACCAATAATCCCCCCTTCTTTTCTTATTTTTTTTAAAATCTCTGAAAAAATTGAAGATTGATTTCTCAATGGGAAGAGGAAGAGTTGAGCTTAAGAGAATAGAAAATAAAATAAATAGGCAAGTCACTTTTGCTAAGAGAAGAAATGGACTTCTTAAAAAAGCTTATGAACTTTCTGTTCTTTGTGATGCTGAAGTTGCCCTTATAATCTTCTCTAATAGGGGTAAACTCTATGAATTTTGCAGCACTTCAAGGTATTTTTTATTTTATTATATTAACATCAAAGATTTTATTTTTTTAAAAAAAACCTTAAGTCCTTCATTACCAAAACCCTTAATTGATTTACAAAGTACTTTCATTAAATTTAGTAATTCTTTTTTTTTTTATCTCTGACTTCAATTATAATGCAAGATCTATGTTGTCTTTATATATATTGAATTATATATGTACTGTATTTTTACTATATACATATAAGATCCTTTTTTCTTTTTTTTCTGTCTCTTTATATAAATATATTTTAAATAGTTGATTTTGAAAGATCTACTAATGTATATTTATTTTTGGAACTTTTGTGTATATGGAATTTTTTTCTTTTTTATGTTTTTTTTTTGTTCTAATTGTTTTAAAAGCGTTTAAGATCAGAATGTTCTTGATTATTCTTTTAGGAAAAAGATTTCCCATACATTGAGTTATTTTTTGATCTGTAGATTGAATTTTTTTAATGAGTTCCGATAGATTTTCGTTCAATTTTTCAATGAAACTATTGAGGGTTGATGATTAGATAATTACTCGATTGAAAGTTTTTATTTCAAAAAAATTATAATTCTTCTTAATTTTATATTTATGAGATAGAGTTAGTTTAGTGATTATATGAAAAATCGTATCAGATTATTGGGAATCGAAACTTAAAAATTCTGAAAATATTATTATAAATTTTACATGTTACAATATTTTTACTGTTAAGATTTGATTTGCAGACTAGGTGTCATGTTTGACAGTTGATAAAAAATCTGTTATTTTTGTTCTTTAATTCCCAAGACGGATAAACAAAGGCTGCTTATGTTGGTTTCCAATAAGCAGCCATAATTTTAAATATTTTTGTTAAGATTAATTAATAACAATTATTTCCACCAGATAATTTTCAAAATTTGTGACCCCGAGTTCATATAAATTGTTAATTTTACTGCTAGAAATTACATCGATAATAATTTATTTAGTGTAATCTTATAAATACGAGGGCAGTAGTGTATAGACTGTTTTTTATTAATCCTGACTCAAAGTGAGGTAAGTTAAGTATATTTTGATTAAAAGGACTACATTTCATTTATGTATGTTTAATTAATATTATTTTGTAAGTCAATAAATCTAAACAACATGAGTTTATCTAGACCCTTAATTATGCACCTTCATTATCAATTTTTTCAATACTCTCCTCAGAACATATGCTTCTCTATAATTTTGTGCACGAGTTAATCAATTCTTCCTTTTCAATAATTAAATATGTGATTTATGTTTAGCACTTATTTTTCGGTTAGTTAATTGATAATAGGAAAAAGCCTCTTTTTTTTTGTGTGTGTGGTAATTAGGATCTTTATTGAATTTAAAATGACCTACTATAGAACTTGGGAGTTTTTCTTCATAATAATGCACTGCAACGTGTTAAAAAAAAAGAATCAAATGAAATTAATAGATGTTTACTGGATTGCCATGGTAAAGTGATAAGTATTAATTTCGCTTTAACTAAGAGATCATTATATTCAAGTCCCCTTGATACAAACTTGCCTTTGTAAATAAGTGTTTTATTTTTCAATGTGAAACTTTCGCTGTTAATTTAAATTTAATTATACTTCTATATAAATACCAAACAATAATGTAATAAAACAAAAAATAAAAGAGTAGATGTTTCATATTGTTAATGCAGCATGGTGAAAACAATTGAAAAGTACCAACGTTGCAGCTATGCTACTTTGGAAGCCAACCAATCAGTTACTGATACTCAGGTACTGCTTTATATTTTAATTTATTTGGCTTTTTTTTAAAAAAATAATTAGTTTTGATTAATATGCATCATTTTATTTATTTTTGGCAACTCTTTATTTATCAGTAATAAGTAATAACTTTTTAACTAGTATATTTAAAAATCACAAAATTTAAGAATATTTTAATAGATTCGACATATTTTAGTTTAAAAATAACAAATTAAATTATGTTTTTAATTTTTTAAATATTCTTACTATAATTATCATGTACTCTTTGATCTGTTCATCTTTTCCATGATAATATTATTTGGTCAGTTAGTGACATAAGAGTTTGAAATTTAGAAAAAAGGAATATTTGGAGAAAACTGAAATGGATATTTAGAAATGAAAGTTATTTAATATAAATATAAGTATGGGCTGCTGAGTTGGGAATCCACGCTGGAGATCTCAAGTTTGAAGCGTCTCACAAACAATAGTAATGTCTTTTTGGTCGAGTTTGTCGGATTGGACTTGTCCGTGGCCTGTGGGTTACTTTTCCTATATGGTTTGCAAGCTATCGGGAATTTTATCCTGGCGCACCCAAATTTGAGTTATTTTTGAGTTTTTATATGAAATAGCTTTGTGAATTCATCGAACTCCCGAAAACATTGAACTTTACTCCAAGTTGAATTGCAGTAAAATAATAGTAGCGATTCTTTAATTTATCCTAACAGTTTTTCGAAATAATAATCCCAAAAAAGTTTAAAATAACCATACCATAAACTTACTGGGTAAGATATTATCTGTCTAATAATATATAGTAGTTTCTTTTGTTTTATTAGTTTATCTAATCCATATTTCATTTCTTGATAAGTTATTCTTAATAGGAAAATAAACTTATTTCGAAAAACTGTTTTTAAAATTTTCTTGAGTTGAGTCTTGGATGAAAAATAGTTAATTTTGCATTAATTAATTTTGTTCTAACAAAAACTAATTAAATTTTTTTGAAGCGCATATTCACTCAAAAAATAAATAAAAACCATCATGCATACAGGAAATGTTCTTTTTTTAATTTATTTTTTCATTGGAGCCCTGACTAATTTTATATCGGTTCATACTTTCATAAATTACAAAAAGTTCAAAATTTAAACTAACCATATAAGTGAATAAAATAAATCAACAAAATATTCACCACATAATACTTTTTAAATAGAATTTTTCATACCAAAGACCTTACTTTAATTAATTAGGGTGAGAGAATCCTATAAGTCAATGCAAAACAATTCTATCTATCGGATTATAATCGTTGATTCATAAAATTTTAAAATCGACGATTTTCATTTAAATGACCCTTTTTTTTCTTTCATTTTTTATTGTTATTCATCTATTTAACTTGTGAGCATCTTTCATATTGATATTTCAGACCCTTAAATTAATTGTTTTCTTACAGAATAACTACCACGAATATCTGAGGCTAAAAGCTAGAGTTGAGCTCCTCCAACGATCTCAGAGGTAATTTCTGTTCACTATCTTTATCTCAAATGAATTCTCATGTTTTTATTTTTCGAGATTCAGATTAAATATAATTTGATGTATTATTAATTTAAATACGTTATTTAATATGGTCCTTATGTCCAACCATTGATTTAATTTGATATTTTTTTAATGAAAATTACACAGAAACTTTCTTGGTGAAGATTTGGGCACGTTAAGCTCGAAGGACCTTGAGCAGCTTGAGAATCAATTAGAGTCTTCCTTAAAGCAAATCAGGTCAAGGAAGGTAAATTATTTAATCTAATTATACAGAAAAATCATCTAAAAGTTACCTTAATTGCTAGCCCAATAAGTTTGCTATCTGTTGATCCTCACATTATTTTACTCACAGAAATTCACAATACCTTTATTTTTGTTTGAGTTTGAAGTATACAATTTCTTTAAAATGTAAAATTTGAAATCTCAACAATAAGATATGTTATTGATCCTTGCAATTATGGGTAGATTGCGAATTAAACTATCTTGTCTTTGCTTACAACAGTCATTTTGTTTATAAACTAATTATACATAAATCCTAACTGATAGATAGTTTATAAAGATGAATAATGAACATAGGTCATATATTAAAAAAACAAAAAACAAAAAAAAACTAAACAAGATGAGCGAGTCAAAAATAGTCTTAACAAAAGAATATATATATATGTATATATCATATTTGATTTGTCTATTTTTAATTTTGAAAAAACTAAGTTAATCGATATATAATATGAAGGCATAATGCATAAATATGTCCTTTAACTTGGTTTTAAATCACATTTATACCTCTTCGACTTTGGGTGTATACAAACAAACACTTAAACTTATATAATGTTGAACAAATAGATATATATGTCCTACATGTCATTTTTCGTCCTAAATGGTGTCCTAAGTGTATTGTGTCACGCAGGACTCATGTGTCTATTTGTTCAAATTTATACAAGTTTAAGTGCTTACTTATGTATAAACAAAGTTGAATGACATAAATGTGAAATAAAATCAAATTAAAGGGCATATTTATGCATTATACCTAATACGAAAATCCATATTATTCACTAAAAAATGAGTCGGATTATATGATTACTTTTTTATTCATTTTGCCAATCGTATCCTACGACATTGTTTTTAATTTGCAGACACAATTCATGCTGGATCAGCTTGCAGATCTTCAACAAAAGGTAATTATAAAATTCTACAAATTTCCAATAATTAATAAATGGAATAATTATGCGCGAGAAATTTATCTATTTAAAATTTACGATGAATTTTAATTTTACAGGAGCAAATGCTTGCAGAATCTAATAGATTACTCCGTAGAAAGGTAAACTAACTTGATAGCCGTGCGTAATGAATAACTTATTTTATTTTCAAAATTATAAATCTAAATACTTAGGTAACTCGATAACATAAGAAGTATTTATACTGATGATATTGGTGTTGTGTTTTTTTTTATTAGTTAGAAGAAAGTGTAGCTGGATTTCCACTTCGATTGTGTTGGGAAGATGGAGGTGATCATCAACTTATGCATCAACAAAATCGTCTCCCTAACACAGAGGGTTTCTTTCAGCCTCTTGGATTGCATTCTTCTTCTCCACATTTTGGGTAATTACTTTTATTATTATTAAAAATAATTTCAATTTTTTTTACTTTTATTTCGATTAATAAATCAATGTGCACCAAGGTACGGTCTAACATAAACAAAAATGTGGGGAATGCTCTTAAAGCCCTAACAAAAGTTATTTGGTACGTGTACTAATGTAATCGTACTATATATCTTACTTGATTAGTGGATGGACAGTACTGGGCACACACAATTGACATAAGTTATTATAAGGAAAAAAAAAGGCCAATAATCAATATAGTCCAACATTACATTATTTATTATAACAGGTCACTCTAGATTAAATGTTAATGAATAACAAAAAGTCTCATATTGATGATTAATGTGATGGGTGGGCTTCTTATAAGGCTTTGACAATCCTACTCTCTTTGAGCTAGTTTTGGGGGTGTGACCTAATTCAACAGAACGTAGTTAAGATTGTGAAGTAAAGTTGATCATTGTTATAACAGGTTTAAATACTTCTAGTAAAAATAGTTCCTAGATAATCCATCGCAAAATAGCTCCTATATAGTTAGTTGGATTTTCATATAATCTATAGCTTATACATAGCTAAATGGGAATAGATGAGAGTTTCTGTTGTTTAGATATGATATTTGATCGGTTTCTAAATCGTTACTATCATGTAGTGAATAATTTTCATGTTATTACTATTACATTTGATTGTTTCTGTGGTTATTTTTTTTTCTAGGTACAATCCTGTTAATACAGATGAGGTGAATGCAGCGGCAACTGCACACAATATGAATGGATTTATTCATGGATGGATGCTTTAATCTGATAATTCGAACAAGCTAATCCATGTTTGGTTAAACAGTTATACAGTAATAATGTATTGCATGTATTATCATCCTTTTTTGTTTTGTTGCAAATTTTATTTCGAAACTCTCTTCAGGAATTATGGCGGCGATCGATTAATCGAGGACAGTAAATGTAATGTATGCATAAGTTGCTACTTTAACATTTGAAACCTCCTGACCATGCATTTCTGATTGTATCACAATGTGTAATTAAATGGAATTGTTGTATTTTTTGTATCATTGAATCATATGCTTATCTTGTACTATATATTAATGTT
Download sequence region |
Get flanking sequences on SL2.50ch03
|
![]() ![]() |
![]() ![]() | terms associated with this mRNA |
![]() ![]() | spliced cDNA sequence, including UTRs |
>Solyc03g114840.2.1 MADS box transcription factor 11 (AHRD V1 **** D9IFM5_ONCHC); contains Interpro domain(s) IPR002100 Transcription factor, MADS-box IPR002487 Transcription factor, K-box
GGGGGTGTAAATGGAAAGGTACCAAAGATAGAGAAAGTCCCAGGGTTTCCATATTTCCAACTCTCTCTTTCTTTCATTTATTTTAATTTGTACCTTTTGTTATCCAAAAGTAGTTGAGCTTGTAACCAATAATCCCCCCTTCTTTTCTTATTTTTTTTAAAATCTCTGAAAAAATTGAAGATTGATTTCTCAATGGGAAGAGGAAGAGTTGAGCTTAAGAGAATAGAAAATAAAATAAATAGGCAAGTCACTTTTGCTAAGAGAAGAAATGGACTTCTTAAAAAAGCTTATGAACTTTCTGTTCTTTGTGATGCTGAAGTTGCCCTTATAATCTTCTCTAATAGGGGTAAACTCTATGAATTTTGCAGCACTTCAAGCATGGTGAAAACAATTGAAAAGTACCAACGTTGCAGCTATGCTACTTTGGAAGCCAACCAATCAGTTACTGATACTCAGAATAACTACCACGAATATCTGAGGCTAAAAGCTAGAGTTGAGCTCCTCCAACGATCTCAGAGAAACTTTCTTGGTGAAGATTTGGGCACGTTAAGCTCGAAGGACCTTGAGCAGCTTGAGAATCAATTAGAGTCTTCCTTAAAGCAAATCAGGTCAAGGAAGACACAATTCATGCTGGATCAGCTTGCAGATCTTCAACAAAAGGAGCAAATGCTTGCAGAATCTAATAGATTACTCCGTAGAAAGTTAGAAGAAAGTGTAGCTGGATTTCCACTTCGATTGTGTTGGGAAGATGGAGGTGATCATCAACTTATGCATCAACAAAATCGTCTCCCTAACACAGAGGGTTTCTTTCAGCCTCTTGGATTGCATTCTTCTTCTCCACATTTTGGGTACAATCCTGTTAATACAGATGAGGTGAATGCAGCGGCAACTGCACACAATATGAATGGATTTATTCATGGATGGATGCTTTAATCTGATAATTCGAACAAGCTAATCCATGTTTGGTTAAACAGTTATACAGTAATAATGTATTGCATGTATTATCATCCTTTTTTGTTTTGTTGCAAATTTTATTTCGAAACTCTCTTCAGGAATTATGGCGGCGATCGATTAATCGAGGACAGTAAATGTAATGTATGCATAAGTTGCTACTTTAACATTTGAAACCTCCTGACCATGCATTTCTGATTGTATCACAATGTGTAATTAAATGGAATTGTTGTATTTTTTGTATCATTGAATCATATGCTTATCTTGTACTATATATTAATGTT
GGGGGTGTAAATGGAAAGGTACCAAAGATAGAGAAAGTCCCAGGGTTTCCATATTTCCAACTCTCTCTTTCTTTCATTTATTTTAATTTGTACCTTTTGTTATCCAAAAGTAGTTGAGCTTGTAACCAATAATCCCCCCTTCTTTTCTTATTTTTTTTAAAATCTCTGAAAAAATTGAAGATTGATTTCTCAATGGGAAGAGGAAGAGTTGAGCTTAAGAGAATAGAAAATAAAATAAATAGGCAAGTCACTTTTGCTAAGAGAAGAAATGGACTTCTTAAAAAAGCTTATGAACTTTCTGTTCTTTGTGATGCTGAAGTTGCCCTTATAATCTTCTCTAATAGGGGTAAACTCTATGAATTTTGCAGCACTTCAAGCATGGTGAAAACAATTGAAAAGTACCAACGTTGCAGCTATGCTACTTTGGAAGCCAACCAATCAGTTACTGATACTCAGAATAACTACCACGAATATCTGAGGCTAAAAGCTAGAGTTGAGCTCCTCCAACGATCTCAGAGAAACTTTCTTGGTGAAGATTTGGGCACGTTAAGCTCGAAGGACCTTGAGCAGCTTGAGAATCAATTAGAGTCTTCCTTAAAGCAAATCAGGTCAAGGAAGACACAATTCATGCTGGATCAGCTTGCAGATCTTCAACAAAAGGAGCAAATGCTTGCAGAATCTAATAGATTACTCCGTAGAAAGTTAGAAGAAAGTGTAGCTGGATTTCCACTTCGATTGTGTTGGGAAGATGGAGGTGATCATCAACTTATGCATCAACAAAATCGTCTCCCTAACACAGAGGGTTTCTTTCAGCCTCTTGGATTGCATTCTTCTTCTCCACATTTTGGGTACAATCCTGTTAATACAGATGAGGTGAATGCAGCGGCAACTGCACACAATATGAATGGATTTATTCATGGATGGATGCTTTAATCTGATAATTCGAACAAGCTAATCCATGTTTGGTTAAACAGTTATACAGTAATAATGTATTGCATGTATTATCATCCTTTTTTGTTTTGTTGCAAATTTTATTTCGAAACTCTCTTCAGGAATTATGGCGGCGATCGATTAATCGAGGACAGTAAATGTAATGTATGCATAAGTTGCTACTTTAACATTTGAAACCTCCTGACCATGCATTTCTGATTGTATCACAATGTGTAATTAAATGGAATTGTTGTATTTTTTGTATCATTGAATCATATGCTTATCTTGTACTATATATTAATGTT
![]() ![]() | translated polypeptide sequence |
>Solyc03g114840.2.1 MADS box transcription factor 11 (AHRD V1 **** D9IFM5_ONCHC); contains Interpro domain(s) IPR002100 Transcription factor, MADS-box IPR002487 Transcription factor, K-box
MGRGRVELKRIENKINRQVTFAKRRNGLLKKAYELSVLCDAEVALIIFSNRGKLYEFCSTSSMVKTIEKYQRCSYATLEANQSVTDTQNNYHEYLRLKARVELLQRSQRNFLGEDLGTLSSKDLEQLENQLESSLKQIRSRKTQFMLDQLADLQQKEQMLAESNRLLRRKLEESVAGFPLRLCWEDGGDHQLMHQQNRLPNTEGFFQPLGLHSSSPHFGYNPVNTDEVNAAATAHNMNGFIHGWML*
MGRGRVELKRIENKINRQVTFAKRRNGLLKKAYELSVLCDAEVALIIFSNRGKLYEFCSTSSMVKTIEKYQRCSYATLEANQSVTDTQNNYHEYLRLKARVELLQRSQRNFLGEDLGTLSSKDLEQLENQLESSLKQIRSRKTQFMLDQLADLQQKEQMLAESNRLLRRKLEESVAGFPLRLCWEDGGDHQLMHQQNRLPNTEGFFQPLGLHSSSPHFGYNPVNTDEVNAAATAHNMNGFIHGWML*
![]() ![]() |
![]() ![]() | [Associate new unigene] |
Unigene ID:
[loading...]
![]() ![]() | [Associate new genbank sequence] |
Other genome matches | None |
![]() ![]() | [Associate publication] [Matching publications] |
Interaction study of MADS-domain proteins in tomato.
Journal of experimental botany (2008)
Show / hide abstract
Show / hide abstract
MADS-domain proteins are important transcription factors involved in many biological processes of plants. Interactions between MADS-domain proteins are essential for their functions. In tomato (Solanum lycopersicum), the number of MIKC(c)-type MADS-domain proteins identified has totalled 36, but a large-scale interaction assay is lacking. In this study, 22 tomato MADS-domain proteins were selected from six functionally important subfamilies of the MADS-box gene family, to create the first large-scale tomato protein interaction network. Compared with Arabidopsis and petunia (Petunia hybrida), protein interaction patterns in tomato displayed both conservation and divergence. The majority of proteins that can be identified as putative orthologues exhibited conserved interaction patterns, and modifications were mostly found in genes underlining traits unique to tomato. JOINTLESS and RIN, characterized for their roles in abscission zone development and fruit ripening, respectively, showed enlarged interaction networks in comparison with their Arabidopsis and petunia counterparts. Novel interactions were also found for members of the expanded subfamilies, such as those represented by AP1/FUL and AP3/PI MADS-domain proteins. In search for higher order complexes, TM5 was found to be the preferred bridge among the five SEP-like proteins. Additionally, 16 proteins with the MADS-domain removed were used to assess the role of the MADS-domain in protein-protein interactions. The current work provides important knowledge for further functional and evolutionary study of the MADS-box genes in tomato.
Leseberg, CH. Eissler, CL. Wang, X. Johns, MA. Duvall, MR. Mao, L.
Journal of experimental botany.
2008.
59(8).
2253-65.
Identification of three tomato flower and fruit MADS-box proteins with a putative histone deacetylase binding domain.
Gene (2010)
Show / hide abstract
Show / hide abstract
MADS-box transcription factors play crucial roles in organ and cell differentiation in organisms ranging from yeast to humans. Most of the work on plant MADS-box proteins focused on their roles in floral development whereas less information is available on their function in fruit maturation. We cloned three distinct tomato cDNAs using a RT-PCR approach, encoding LeMADS1, LeMADS5 and LeMADS6 factors and whose mRNAs mostly accumulate in tomato flowers and fruits. Phylogeny analysis indicates that LeMADS1, 5 and 6 belong to the MEF2A-like family. When transiently expressed in tobacco leaves or in human cells, LeMADS1, 5 and 6 are targeted to the cell nucleus. As the endogenous target genes of these putative transcription factors are unknown, the transcriptional activity of these proteins was characterized in a heterologous system and we showed that, when fused to a Gal4-DNA-binding domain, they repress the transcription of heterologous reporter genes. Since histone deacetylases control MEF2 transcriptional activity and since a putative histone deacetylase binding site was present in LeMADS1, 5 and 6, we tested the potential interaction between these factors and HDAC5 deacetylase. Surprisingly, in this heterologous system, LeMADS1, 5 and 6 interacted with HDAC5 N-terminal region. Our data suggest that, like mammalian MEF2A, plant MADS-box transcriptional activity might be regulated by enzymes controlling chromatin acetylation.
Gaffe, J. Lemercier, C. Alcaraz, JP. Kuntz, M.
Gene.
2010.
().
.
A tomato MADS-box transcription factor, SlMADS1, acts as a negative regulator of fruit ripening.
Plant physiology (2014)
Show / hide abstract
Show / hide abstract
MADS-box genes encode a highly conserved gene family of transcriptional factors that regulate numerous developmental processes in plants. In this study, a tomato (Solanum lycopersicum) MADS-box gene, SlMADS1, was cloned and its tissue-specific expression profile was analyzed. The real-time polymerase chain reaction results showed that SlMADS1 was highly expressed in sepals and fruits; its expression level was increased with the development of sepals, while the transcript of SlMADS1 decreased significantly in accordance with fruit ripening. To further explore the function of SlMADS1, an RNA interference (RNAi) expression vector targeting SlMADS1 was constructed and transformed into tomato plants. Shorter ripening time of fruit was observed in SlMADS1-silenced tomatoes. The accumulation of carotenoid and the expression of PHYTOENE SYNTHETASE1 were enhanced in RNAi fruits. Besides, ethylene biosynthetic genes, including 1-AMINOCYCLOPROPANE-1-CARBOXYLATE SYNTHASE1A, 1-AMINOCYCLOPROPANE-1-CARBOXYLATE SYNTHASE6, 1-AMINOCYCLOPROPANE-1-CARBOXYLATE OXIDASE1, and 1-AMINOCYCLOPROPANE-1-CARBOXYLATE OXIDASE3, and the ethylene-responsive genes E4 and E8, which were involved in fruit ripening, were also up-regulated in silenced plants. SlMADS1 RNAi fruits showed approximately 2- to 4-fold increases in ethylene production compared with the wild type. Furthermore, SlMADS1-silenced seedlings displayed shorter hypocotyls and were more sensitive to 1-aminocyclopropane-1-carboxylate than the wild type. Additionally, a yeast two-hybrid assay revealed a clear interaction between SlMADS1 and SlMADS-RIN. These results suggest that SlMADS1 plays an important role in fruit ripening as a repressive modulator.
Dong, T. Hu, Z. Deng, L. Wang, Y. Zhu, M. Zhang, J. Chen, G.
Plant physiology.
2014.
163(2).
1026-36.
![]() ![]() | [Add ontology annotations] |
[loading...]
![]() ![]() |
User comments |
Please wait, checking for comments. (If comments do not show up, access them here)
Your Lists
Public Lists
List Contents
List Validation Report: Failed
Elements not found:
Optional: Add Missing Accessions to A List
Mismatched case
Click the Adjust Case button to align the case in the list with what is in the database.
Multiple mismatched case
Items listed here have mulitple case mismatches and must be fixed manually. If accessions need to be merged, contact the database directly.
List elements matching a synonym
Multiple synonym matches
Fuzzy Search Results
Synonym Search Results
Available Seedlots
Your Datasets
Public Datasets
Dataset Contents
Dataset Validation Failed
Elements not found:
Your Calendar
Having trouble viewing events on the calendar?
Are you associated with the breeding program you are interested in viewing?
Add New Event
Event Info
Attribute | Value |
---|---|
Project Name: | |
Start Date: | |
End Date: | |
Event Type: | |
Event Description: | |
Event Web URL: |
Edit Event
Login
Forgot Username
If you've forgotten your username, enter your email address below. An email will be sent with any account username(s) associated with your email address.
Reset Password
To reset your password, please enter your email address. A link will be sent to that address with a link that will enable you to reset your password.
Create New User
Working
