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Tomato locus Tomato AGAMOUS 1
Locus details | Download GMOD XML | Note to Editors | Annotation guidelines |
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Locus | Solyc02g071730 |
Locus name | Tomato AGAMOUS 1 |
Symbol | tag1 |
Gene activity | transcription factor |
Description | TAG1 belongs to the AGAMOUS (AG) subfamily of the MADS-box gene family. |
Chromosome | 2 |
Arm |
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Registry name: | None | [Associate registry name] |
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Alleles (0) | None | [Add new Allele] |
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![]() ![]() | unprocessed genomic sequence region underlying this gene |
>Solyc02g071730.2 SL2.50ch02:41099470..41094016 (sequence from reverse strand)
CCTTAGTCCAAAGTCTCTTCCATTTTCTGCATCTACAAAATCCTCTTCATATATTATATACTAATTTGCAACCAAAAAAC
TTAAAAATCTTCTCTTTCCTTTCCTTACAAGGTTAGTCATCAATTTTAAAACCATTTCTTGGATTCATATAACTAAATAT
CATATGGGGTTAGGGATTCTTTTTCTTTTTGTCTATGTAGAACAAAAAGTTCAAATCTTGATCAATTTTTTTTTTTGTGA
TGTAGGTGAAGTAATGGACTTCCAAAGTGATCTAACCAGAGAGATCTCACCACAAAGGAAACTAGGAAGGGGGAAAATTG
AGATCAAAAGGATCGAAAACACGACGAATCGACAAGTAACATTCTGCAAGAGGCGCAATGGTTTGCTTAAAAAGGCTTAT
GAATTGTCTGTGCTCTGTGATGCTGAGGTTGCTTTGGTTGTCTTCTCAAACAGAGGCAGACTCTATGAGTATGCCAACAA
CAGGTAAATTAATTAAATTTCTAATCTTTTATAATTAAGTAATTAATACCTCTACTATAGTACATTTTTTTTTTTAAAAA
AAAAATATTATTTATATTTGAAGGTGAAGAAGGGTGTTTCTTGTTTTTTTTTATGTCATTTGTCTTTCTTAAAAAAGAGA
ATTTTTGATTTAGTTTTGGAAAGTTTGAATCTTTTATACATCTTATGATGATACATAAATGTTAAGGGAGATCTAAACTT
AACTACTATAGTTGTGAAGTTTTTTTTAATTAAATACTTTTGAGCAAAGATTGACTTTCCTTTCTTTTTGTGTTAATATT
TTTGTTACAATTTTGGTCTATTTGAGGGTAGTTTTTTTTTAATTTTTTATGATCCCATTTTGTTGATAGACATGTAAGAT
GTATAGATCTGTTTGTTGTAAGAAAATAAGTGGAAATTTTGAGAAAGTACTCTCATCAGAACTCTTAGATCAGCATATAC
TTTCTTCCTCCATGCTCATAAAAAAAAATTAAAAAAAAACTCTTCACACACACAAAATGAAGGGAAAAAAAAAGGTGTCA
AATTTTAATTGGCTATAACATAAAAATTCATTAATTCTTGTTTTGTGATAAGATTAATATGACATGTATCCAATCAAAAA
CAAGATTAGGGTTTTGTACTTCATTCACTACTAATAATATCAGTGAAAGAAGTACTCTTTTTTGTCATGAGTCAAACTTG
CCCTAATTAGGGTTTTTTAAACTTATTTTATGCTATAAAAAAAATTATTACTATTTTATTTTATTTTTGCTTCTAAGTTT
ATATTTGCCTTTCTTATAATCAAAATATCAGATATGGTAGAAAAAATTAACCAATCAGAGTTTAAAAAGATTTCAATAAT
AGACAAAAGTTGACATTCTTCTTCACTTGCTATTTGTTGAAATGTTTTACACCATTTAGGTAATGGGGTCATCAACACTC
TACCTTTTTATTTTTTTTTACAAAAAATTGTTACATGTGAGAGTGGTTGGTATAAGTTTTTTTTTTTTTAATTCTCAGTT
ACAAGAATCTTTGGTCACGTCATACAAGATTTTACACTTGTTGACAAATTTGATGAGAAAAGACACATTATAGTAAATTA
AAGGAATGGTATTAATTTCCTTCTTTGATTTCTCTTTTAATTTCCAACTCTAATGGTGAAAACTCACAAACACAAAATTA
ATTATTTTTGGTTTGAGATATCTCAGTTTAATGCTTTCACAAAGGTTCTGTAAATGTTTGAACTTAAACAGCAAAGAAAC
AGAAGTTGTAAGAAAAGAGAAATTGTAAACCAATCAAATATTTTTTACTCAAACTAGGGTACACTTATTAGCTATGTTAT
ATCAAATACACCAAGAGGATCTTATTCATAGATATAATTACGTAACTTTTTTTATTTCAAAAACAAAAAAGTTACTTGTA
GTTTTTTTTTTAAAAAAAACTTTCTATTATTTTCTGACAACTCTTTAATTTTAATTTTTCATGTGCACGTCACCACTAGC
CACTACCAGAAAACATGGACTTTATGCGTAATCTTCATTTAATTGACGTTAAAAAGCTTCTAGTTGATTGATTCTTCTTA
CAAACCGTCGTTTATCTGAAGCTAAATGAAATTAACTGTTCGTAGCTAATTTCTTGTTTTCTAATACTGTATGTGTTTAA
AAATTACAAGATTAAATAATATTATTGGTACATTTGACATTATTTTAACTTAAGACCACACAATTTAAGTCATTTTCTAA
TTTTATTTTTTTTAGAAAATGGTATATCAAGTTAACATCAGACAAACAAATAAAAACGAGTGAAACAGTAACAGGGACAG
AGCTAGATGGAGGTTTTTGATTCAGACGAACTGAGTAGCTTCTCTGTATACCACATATTTATACTAGAAAATTCAGTACA
TAACTTGTGTATCCCTAATAAGACGGATTGATAACTCAATGATAAAGAAACGGAATGAAATTTAGAATCGGAAACTCCTA
ATATTGATTCCGCATCTGTCCTCTCGATAGTAAATGTATGATAGGGATGAGAGATAGGGTGAGGGTACAAGTTTTAATTG
TGAACCAATGAGAGAATTCTGCTGAAAATATGAGACAGACAGACAAGACTCTATCAAACTATTCACTTTACCTTACAATA
AGGATTGAAACAAAACCCTAGGTGGGTAAAAAGCTATAGTTGATGGGTATTACCCAAGGAATAAACTGTAATTATGACGT
GGCAATAATCTGAACCGTTGAAAGACTGGACCAATCATGTTGTGGGAAATTGTGCCAGGTTGGCAGAGAGCAGCCAATCA
GTAGCTCGGGGAAATTAAGGTAGTATAGCAGAGTCATTCCCTCAATGTTTGGTTTTTTATATATATTTTGTTTCTTCAGT
CTTAGGTCTAAAATTTATATACTACTAGAAAATATTGTATCAAATGTCATGTTTGAGTGGACACATTGAGTTTCTGACTC
GAACCAACACTATTTTTAAAAAATAAAAATCAAGTTTGCGTGTTGGCATAAATTAGCATGAAATAAATAATAAAGTATTT
GGATTTTCTTTACCTTTTAAACAAAAGGGAGGCTTTTTTTTAAAAAAATAATTATTATTATTATTTTCAAGGTGAAAGGG
AGTAAGAGAAGTAAATATGACGTATGTTTTATAAAAAAAAATTTAGCAGGTTTACCATCGATGTTTGATATCTATTTTGA
GGGCAGATATATTTGAGTGCGTGTTGGAAATTCCACTTTGGGAGGAAAAACACTTTTTTATCGAAGATAGACTCAATATA
CAGGACTGATCGAAATTGAAACTTTTGATTAAGTATGATTGAGTGTTTTAAAATTATATGTAAATCTAAATAATTCAAAA
CGAGTAACTAACATCCTTATTTCTTAGTACGTAGTTAGTTGCATAGAAAAATCCATATTTTCTTGTCTTTCATGTGAGGG
ACTTTTATGTGTCCTCACTTAAATTTTGATTTTGATTTGATTGCCATGAAAGATTTAGTGATCTTATATATGGTCTATGG
ACTCTTAATTATGACCATCTAATTTTATAGTCATATAGAGTAGTAATTTGTATATAATATATATATATATATATATATAT
ATATATTTGTATGTGATTTTGTCTGTCAATAGACTAGTTTTTTTATGATTGAAAAGAAGCTATCAATCTAACATGTTGAT
GGTGTAGTGTGAAAGCAACAATCGAGAGGTACAAGAAAGCATGCTCAGATTCCTCAAACACTGGTTCAGTATCCGAGGCC
AATGCTCAGGTATATATAATTTCATACACTGCAAATATTCTCTTTTTTTTTATTACTAGGATTACACTGGATATATCGTT
GAAATATTCTTCTTTCTTTTGTTGTAATAACGGATCAATACTATTTTGGGCAACTATTATAAAACTTAGAAAAGAAGTCA
TTAATTAGCACTCTCTTCGTCTTCATTTATGGGAGTTTCGAGTTTTAAACTTATAAACTTTGACAATGAATTGCAACATA
CATTAGAGATGCATAGGTTTTCAAGTCTTGTGGGCGGAGTTTGAGGGGGTAAAGAGGGTTCATCTGAATCCCTTTTGCCA
AAAGTAACATTAACACCTTAGTGTTTTTGTTATTATATTGCACATATATAGATATATAGGTGTTCTATTTAACAATATGT
GGCATACATTACAAGTTAGCGCTCTTGTGGTAACTGTAAATAAAAATGTTGTTCAATGAATCCCAGTATTACCAGCAAGA
AGCCTCCAAACTGCGCGCACAAATTGGAAATCTGATGAACCAAAACAGGTGAAGTTTTTAAAATCTTCTTTATCTTTACC
TTTTAACAATTCCATGTGTGTGTTTTTACTATGTTGTTTTCAGTTTAACCTTAACTGCATTGGTTCAGGAACATGATGGG
TGAAGCTCTTGCTGGAATGAAACTCAAAGAACTGAAGAATCTGGAGCAAAGAATTGAAAAAGGGATTAGCAAAATCCGAT
CCAAAAAGGTATTTAAATTAGTAACATTTTCTAACAACTATTTAGTACGATGATGGTATGAAATGAGATTAAATGAAATA
ATTCATATAGCAAACCCTAACTTATTTGGGACTGAGACGTTAGCTATTGTTTTGACGAAAATTACAATTTCTAGTTTCTT
AACATTTGACGCTCAAATTACAGAATGAGCTGTTGTTTGCTGAAATTGAGTATATGCAGAAGAGGGTAAGTCATAGTACA
ATCTTTCATATACTTAGTTTTCATTTCAAGTTAATCGATCTATTTTTCGGTCATAATGTTTTCTATTTCATGTCAAATTT
GTAACTTAATGGACACCAGCAGGAAGTTGATTTACACAACAACAATCAGTACCTGAGAGCAAAGGTCTATTTGTTTCTCT
ATCTAGTACTATTGTAGTTGACTTTTAAGTGCATCTGAAATACCCATAGTCGTCTATTTACATTCTTGCACTCAATAATC
AATCAATTCGTTTAAGTACTAATTTAATACGCAGAAACTCATTGGTTTTGTTTTTGTGAGTAAATTTAAACAGATTGCTG
AAACTGAGAGAGCTCAGCATCAGCATCAGCAGATGAACTTGATGCCAGGGAGTTCATCAAACTATCATGAGCTTGTGCCT
CCACCTCAGCAATTCGATACTCGAAACTATCTACAAGTTAATGGATTGCAAACCAACAACCATTACCCTAGACAAGACCA
ACCCCCTATTCAACTAGTGTGAGTTTTCCTCTCTTTTCTAATATAAACATGGTGCTAAGTCAAACTAAGACATAAAATGA
AGCGGTATTAAAGGTATGTCTTTTTTTTCTTATTTGTTGAACAGCTAATGTGCTTGAGAGATTGTCTTCTTTCTGATGTG
ATCTACATATAATCCACAAAAGAAGACTGCTATTAAGCTTGAAGATTAATGGAACTTAAGTATGTATACCATATTATTAA
TTACTTGTTGCATGA
CCTTAGTCCAAAGTCTCTTCCATTTTCTGCATCTACAAAATCCTCTTCATATATTATATACTAATTTGCAACCAAAAAAC
TTAAAAATCTTCTCTTTCCTTTCCTTACAAGGTTAGTCATCAATTTTAAAACCATTTCTTGGATTCATATAACTAAATAT
CATATGGGGTTAGGGATTCTTTTTCTTTTTGTCTATGTAGAACAAAAAGTTCAAATCTTGATCAATTTTTTTTTTTGTGA
TGTAGGTGAAGTAATGGACTTCCAAAGTGATCTAACCAGAGAGATCTCACCACAAAGGAAACTAGGAAGGGGGAAAATTG
AGATCAAAAGGATCGAAAACACGACGAATCGACAAGTAACATTCTGCAAGAGGCGCAATGGTTTGCTTAAAAAGGCTTAT
GAATTGTCTGTGCTCTGTGATGCTGAGGTTGCTTTGGTTGTCTTCTCAAACAGAGGCAGACTCTATGAGTATGCCAACAA
CAGGTAAATTAATTAAATTTCTAATCTTTTATAATTAAGTAATTAATACCTCTACTATAGTACATTTTTTTTTTTAAAAA
AAAAATATTATTTATATTTGAAGGTGAAGAAGGGTGTTTCTTGTTTTTTTTTATGTCATTTGTCTTTCTTAAAAAAGAGA
ATTTTTGATTTAGTTTTGGAAAGTTTGAATCTTTTATACATCTTATGATGATACATAAATGTTAAGGGAGATCTAAACTT
AACTACTATAGTTGTGAAGTTTTTTTTAATTAAATACTTTTGAGCAAAGATTGACTTTCCTTTCTTTTTGTGTTAATATT
TTTGTTACAATTTTGGTCTATTTGAGGGTAGTTTTTTTTTAATTTTTTATGATCCCATTTTGTTGATAGACATGTAAGAT
GTATAGATCTGTTTGTTGTAAGAAAATAAGTGGAAATTTTGAGAAAGTACTCTCATCAGAACTCTTAGATCAGCATATAC
TTTCTTCCTCCATGCTCATAAAAAAAAATTAAAAAAAAACTCTTCACACACACAAAATGAAGGGAAAAAAAAAGGTGTCA
AATTTTAATTGGCTATAACATAAAAATTCATTAATTCTTGTTTTGTGATAAGATTAATATGACATGTATCCAATCAAAAA
CAAGATTAGGGTTTTGTACTTCATTCACTACTAATAATATCAGTGAAAGAAGTACTCTTTTTTGTCATGAGTCAAACTTG
CCCTAATTAGGGTTTTTTAAACTTATTTTATGCTATAAAAAAAATTATTACTATTTTATTTTATTTTTGCTTCTAAGTTT
ATATTTGCCTTTCTTATAATCAAAATATCAGATATGGTAGAAAAAATTAACCAATCAGAGTTTAAAAAGATTTCAATAAT
AGACAAAAGTTGACATTCTTCTTCACTTGCTATTTGTTGAAATGTTTTACACCATTTAGGTAATGGGGTCATCAACACTC
TACCTTTTTATTTTTTTTTACAAAAAATTGTTACATGTGAGAGTGGTTGGTATAAGTTTTTTTTTTTTTAATTCTCAGTT
ACAAGAATCTTTGGTCACGTCATACAAGATTTTACACTTGTTGACAAATTTGATGAGAAAAGACACATTATAGTAAATTA
AAGGAATGGTATTAATTTCCTTCTTTGATTTCTCTTTTAATTTCCAACTCTAATGGTGAAAACTCACAAACACAAAATTA
ATTATTTTTGGTTTGAGATATCTCAGTTTAATGCTTTCACAAAGGTTCTGTAAATGTTTGAACTTAAACAGCAAAGAAAC
AGAAGTTGTAAGAAAAGAGAAATTGTAAACCAATCAAATATTTTTTACTCAAACTAGGGTACACTTATTAGCTATGTTAT
ATCAAATACACCAAGAGGATCTTATTCATAGATATAATTACGTAACTTTTTTTATTTCAAAAACAAAAAAGTTACTTGTA
GTTTTTTTTTTAAAAAAAACTTTCTATTATTTTCTGACAACTCTTTAATTTTAATTTTTCATGTGCACGTCACCACTAGC
CACTACCAGAAAACATGGACTTTATGCGTAATCTTCATTTAATTGACGTTAAAAAGCTTCTAGTTGATTGATTCTTCTTA
CAAACCGTCGTTTATCTGAAGCTAAATGAAATTAACTGTTCGTAGCTAATTTCTTGTTTTCTAATACTGTATGTGTTTAA
AAATTACAAGATTAAATAATATTATTGGTACATTTGACATTATTTTAACTTAAGACCACACAATTTAAGTCATTTTCTAA
TTTTATTTTTTTTAGAAAATGGTATATCAAGTTAACATCAGACAAACAAATAAAAACGAGTGAAACAGTAACAGGGACAG
AGCTAGATGGAGGTTTTTGATTCAGACGAACTGAGTAGCTTCTCTGTATACCACATATTTATACTAGAAAATTCAGTACA
TAACTTGTGTATCCCTAATAAGACGGATTGATAACTCAATGATAAAGAAACGGAATGAAATTTAGAATCGGAAACTCCTA
ATATTGATTCCGCATCTGTCCTCTCGATAGTAAATGTATGATAGGGATGAGAGATAGGGTGAGGGTACAAGTTTTAATTG
TGAACCAATGAGAGAATTCTGCTGAAAATATGAGACAGACAGACAAGACTCTATCAAACTATTCACTTTACCTTACAATA
AGGATTGAAACAAAACCCTAGGTGGGTAAAAAGCTATAGTTGATGGGTATTACCCAAGGAATAAACTGTAATTATGACGT
GGCAATAATCTGAACCGTTGAAAGACTGGACCAATCATGTTGTGGGAAATTGTGCCAGGTTGGCAGAGAGCAGCCAATCA
GTAGCTCGGGGAAATTAAGGTAGTATAGCAGAGTCATTCCCTCAATGTTTGGTTTTTTATATATATTTTGTTTCTTCAGT
CTTAGGTCTAAAATTTATATACTACTAGAAAATATTGTATCAAATGTCATGTTTGAGTGGACACATTGAGTTTCTGACTC
GAACCAACACTATTTTTAAAAAATAAAAATCAAGTTTGCGTGTTGGCATAAATTAGCATGAAATAAATAATAAAGTATTT
GGATTTTCTTTACCTTTTAAACAAAAGGGAGGCTTTTTTTTAAAAAAATAATTATTATTATTATTTTCAAGGTGAAAGGG
AGTAAGAGAAGTAAATATGACGTATGTTTTATAAAAAAAAATTTAGCAGGTTTACCATCGATGTTTGATATCTATTTTGA
GGGCAGATATATTTGAGTGCGTGTTGGAAATTCCACTTTGGGAGGAAAAACACTTTTTTATCGAAGATAGACTCAATATA
CAGGACTGATCGAAATTGAAACTTTTGATTAAGTATGATTGAGTGTTTTAAAATTATATGTAAATCTAAATAATTCAAAA
CGAGTAACTAACATCCTTATTTCTTAGTACGTAGTTAGTTGCATAGAAAAATCCATATTTTCTTGTCTTTCATGTGAGGG
ACTTTTATGTGTCCTCACTTAAATTTTGATTTTGATTTGATTGCCATGAAAGATTTAGTGATCTTATATATGGTCTATGG
ACTCTTAATTATGACCATCTAATTTTATAGTCATATAGAGTAGTAATTTGTATATAATATATATATATATATATATATAT
ATATATTTGTATGTGATTTTGTCTGTCAATAGACTAGTTTTTTTATGATTGAAAAGAAGCTATCAATCTAACATGTTGAT
GGTGTAGTGTGAAAGCAACAATCGAGAGGTACAAGAAAGCATGCTCAGATTCCTCAAACACTGGTTCAGTATCCGAGGCC
AATGCTCAGGTATATATAATTTCATACACTGCAAATATTCTCTTTTTTTTTATTACTAGGATTACACTGGATATATCGTT
GAAATATTCTTCTTTCTTTTGTTGTAATAACGGATCAATACTATTTTGGGCAACTATTATAAAACTTAGAAAAGAAGTCA
TTAATTAGCACTCTCTTCGTCTTCATTTATGGGAGTTTCGAGTTTTAAACTTATAAACTTTGACAATGAATTGCAACATA
CATTAGAGATGCATAGGTTTTCAAGTCTTGTGGGCGGAGTTTGAGGGGGTAAAGAGGGTTCATCTGAATCCCTTTTGCCA
AAAGTAACATTAACACCTTAGTGTTTTTGTTATTATATTGCACATATATAGATATATAGGTGTTCTATTTAACAATATGT
GGCATACATTACAAGTTAGCGCTCTTGTGGTAACTGTAAATAAAAATGTTGTTCAATGAATCCCAGTATTACCAGCAAGA
AGCCTCCAAACTGCGCGCACAAATTGGAAATCTGATGAACCAAAACAGGTGAAGTTTTTAAAATCTTCTTTATCTTTACC
TTTTAACAATTCCATGTGTGTGTTTTTACTATGTTGTTTTCAGTTTAACCTTAACTGCATTGGTTCAGGAACATGATGGG
TGAAGCTCTTGCTGGAATGAAACTCAAAGAACTGAAGAATCTGGAGCAAAGAATTGAAAAAGGGATTAGCAAAATCCGAT
CCAAAAAGGTATTTAAATTAGTAACATTTTCTAACAACTATTTAGTACGATGATGGTATGAAATGAGATTAAATGAAATA
ATTCATATAGCAAACCCTAACTTATTTGGGACTGAGACGTTAGCTATTGTTTTGACGAAAATTACAATTTCTAGTTTCTT
AACATTTGACGCTCAAATTACAGAATGAGCTGTTGTTTGCTGAAATTGAGTATATGCAGAAGAGGGTAAGTCATAGTACA
ATCTTTCATATACTTAGTTTTCATTTCAAGTTAATCGATCTATTTTTCGGTCATAATGTTTTCTATTTCATGTCAAATTT
GTAACTTAATGGACACCAGCAGGAAGTTGATTTACACAACAACAATCAGTACCTGAGAGCAAAGGTCTATTTGTTTCTCT
ATCTAGTACTATTGTAGTTGACTTTTAAGTGCATCTGAAATACCCATAGTCGTCTATTTACATTCTTGCACTCAATAATC
AATCAATTCGTTTAAGTACTAATTTAATACGCAGAAACTCATTGGTTTTGTTTTTGTGAGTAAATTTAAACAGATTGCTG
AAACTGAGAGAGCTCAGCATCAGCATCAGCAGATGAACTTGATGCCAGGGAGTTCATCAAACTATCATGAGCTTGTGCCT
CCACCTCAGCAATTCGATACTCGAAACTATCTACAAGTTAATGGATTGCAAACCAACAACCATTACCCTAGACAAGACCA
ACCCCCTATTCAACTAGTGTGAGTTTTCCTCTCTTTTCTAATATAAACATGGTGCTAAGTCAAACTAAGACATAAAATGA
AGCGGTATTAAAGGTATGTCTTTTTTTTCTTATTTGTTGAACAGCTAATGTGCTTGAGAGATTGTCTTCTTTCTGATGTG
ATCTACATATAATCCACAAAAGAAGACTGCTATTAAGCTTGAAGATTAATGGAACTTAAGTATGTATACCATATTATTAA
TTACTTGTTGCATGA
Download sequence region |
Get flanking sequences on SL2.50ch02
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![]() ![]() | terms associated with this mRNA |
![]() ![]() | spliced cDNA sequence, including UTRs |
>Solyc02g071730.2.1 MADS-box transcription factor AGAMOUS (AHRD V1 **-* Q8GTY3_HELAN); contains Interpro domain(s) IPR002100 Transcription factor, MADS-box IPR002487 Transcription factor, K-box
CCTTAGTCCAAAGTCTCTTCCATTTTCTGCATCTACAAAATCCTCTTCATATATTATATACTAATTTGCAACCAAAAAAC
TTAAAAATCTTCTCTTTCCTTTCCTTACAAGGTGAAGTAATGGACTTCCAAAGTGATCTAACCAGAGAGATCTCACCACA
AAGGAAACTAGGAAGGGGGAAAATTGAGATCAAAAGGATCGAAAACACGACGAATCGACAAGTAACATTCTGCAAGAGGC
GCAATGGTTTGCTTAAAAAGGCTTATGAATTGTCTGTGCTCTGTGATGCTGAGGTTGCTTTGGTTGTCTTCTCAAACAGA
GGCAGACTCTATGAGTATGCCAACAACAGTGTGAAAGCAACAATCGAGAGGTACAAGAAAGCATGCTCAGATTCCTCAAA
CACTGGTTCAGTATCCGAGGCCAATGCTCAGTATTACCAGCAAGAAGCCTCCAAACTGCGCGCACAAATTGGAAATCTGA
TGAACCAAAACAGGAACATGATGGGTGAAGCTCTTGCTGGAATGAAACTCAAAGAACTGAAGAATCTGGAGCAAAGAATT
GAAAAAGGGATTAGCAAAATCCGATCCAAAAAGAATGAGCTGTTGTTTGCTGAAATTGAGTATATGCAGAAGAGGGAAGT
TGATTTACACAACAACAATCAGTACCTGAGAGCAAAGATTGCTGAAACTGAGAGAGCTCAGCATCAGCATCAGCAGATGA
ACTTGATGCCAGGGAGTTCATCAAACTATCATGAGCTTGTGCCTCCACCTCAGCAATTCGATACTCGAAACTATCTACAA
GTTAATGGATTGCAAACCAACAACCATTACCCTAGACAAGACCAACCCCCTATTCAACTAGTCTAATGTGCTTGAGAGAT
TGTCTTCTTTCTGATGTGATCTACATATAATCCACAAAAGAAGACTGCTATTAAGCTTGAAGATTAATGGAACTTAAGTA
TGTATACCATATTATTAATTACTTGTTGCATGA
CCTTAGTCCAAAGTCTCTTCCATTTTCTGCATCTACAAAATCCTCTTCATATATTATATACTAATTTGCAACCAAAAAAC
TTAAAAATCTTCTCTTTCCTTTCCTTACAAGGTGAAGTAATGGACTTCCAAAGTGATCTAACCAGAGAGATCTCACCACA
AAGGAAACTAGGAAGGGGGAAAATTGAGATCAAAAGGATCGAAAACACGACGAATCGACAAGTAACATTCTGCAAGAGGC
GCAATGGTTTGCTTAAAAAGGCTTATGAATTGTCTGTGCTCTGTGATGCTGAGGTTGCTTTGGTTGTCTTCTCAAACAGA
GGCAGACTCTATGAGTATGCCAACAACAGTGTGAAAGCAACAATCGAGAGGTACAAGAAAGCATGCTCAGATTCCTCAAA
CACTGGTTCAGTATCCGAGGCCAATGCTCAGTATTACCAGCAAGAAGCCTCCAAACTGCGCGCACAAATTGGAAATCTGA
TGAACCAAAACAGGAACATGATGGGTGAAGCTCTTGCTGGAATGAAACTCAAAGAACTGAAGAATCTGGAGCAAAGAATT
GAAAAAGGGATTAGCAAAATCCGATCCAAAAAGAATGAGCTGTTGTTTGCTGAAATTGAGTATATGCAGAAGAGGGAAGT
TGATTTACACAACAACAATCAGTACCTGAGAGCAAAGATTGCTGAAACTGAGAGAGCTCAGCATCAGCATCAGCAGATGA
ACTTGATGCCAGGGAGTTCATCAAACTATCATGAGCTTGTGCCTCCACCTCAGCAATTCGATACTCGAAACTATCTACAA
GTTAATGGATTGCAAACCAACAACCATTACCCTAGACAAGACCAACCCCCTATTCAACTAGTCTAATGTGCTTGAGAGAT
TGTCTTCTTTCTGATGTGATCTACATATAATCCACAAAAGAAGACTGCTATTAAGCTTGAAGATTAATGGAACTTAAGTA
TGTATACCATATTATTAATTACTTGTTGCATGA
![]() ![]() | translated polypeptide sequence |
>Solyc02g071730.2.1 MADS-box transcription factor AGAMOUS (AHRD V1 **-* Q8GTY3_HELAN); contains Interpro domain(s) IPR002100 Transcription factor, MADS-box IPR002487 Transcription factor, K-box
MDFQSDLTREISPQRKLGRGKIEIKRIENTTNRQVTFCKRRNGLLKKAYELSVLCDAEVALVVFSNRGRLYEYANNSVKA
TIERYKKACSDSSNTGSVSEANAQYYQQEASKLRAQIGNLMNQNRNMMGEALAGMKLKELKNLEQRIEKGISKIRSKKNE
LLFAEIEYMQKREVDLHNNNQYLRAKIAETERAQHQHQQMNLMPGSSSNYHELVPPPQQFDTRNYLQVNGLQTNNHYPRQ
DQPPIQLV*
MDFQSDLTREISPQRKLGRGKIEIKRIENTTNRQVTFCKRRNGLLKKAYELSVLCDAEVALVVFSNRGRLYEYANNSVKA
TIERYKKACSDSSNTGSVSEANAQYYQQEASKLRAQIGNLMNQNRNMMGEALAGMKLKELKNLEQRIEKGISKIRSKKNE
LLFAEIEYMQKREVDLHNNNQYLRAKIAETERAQHQHQQMNLMPGSSSNYHELVPPPQQFDTRNYLQVNGLQTNNHYPRQ
DQPPIQLV*
![]() ![]() |
![]() ![]() | [Associate new unigene] |
Unigene ID:
![]() ![]() | [Associate new genbank sequence] |
Other genome matches | None |
![]() ![]() | [Associate publication] [Matching publications] |
Isolation of the tomato AGAMOUS gene TAG1 and analysis of its homeotic role in transgenic plants.
The Plant cell (1994)
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To understand the details of the homeotic systems that govern flower development in tomato and to establish the ground rules for the judicious manipulation of this floral system, we have isolated the tomato AGAMOUS gene, designated TAG1, and examined its developmental role in antisense and sense transgenic plants. The AGAMOUS gene of Arabidopsis is necessary for the proper development of stamens and carpels and the prevention of indeterminate growth of the floral meristem. Early in flower development, TAG1 RNA accumulates uniformly in the cells fated to differentiate into stamens and carpels and later becomes restricted to specific cell types within these organs. Transgenic plants that express TAG1 antisense RNA display homeotic conversion of third whorl stamens into petaloid organs and the replacement of fourth whorl carpels with pseudocarpels bearing indeterminate floral meristems with nested perianth flowers. A complementary phenotype was observed in transgenic plants expressing the TAG1 sense RNA in that first whorl sepals were converted into mature pericarpic leaves and sterile stamens replaced the second whorl petals.
Pnueli, L. Hareven, D. Rounsley, S. Yanofsky, M. Lifschitz, E.
The Plant cell.
1994.
6(2).
163-73.
MADS-box genes expressed during tomato seed and fruit development.
Plant molecular biology (2003)
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MADS-box genes in plants are putative transcription factors involved in regulating numerous developmental processes, such as meristem and organ identity in inflorescences and in flowers. Recent reports indicate that they are involved in other processes than flower development such as the establishment of developing embryos, seed coat and ultimately in root and fruit development. We have identified seven tomato MADS-box genes that are highly expressed during the first steps of tomato fruit development. According to comparisons of their deduced amino acid sequences, they were classified into two groups: (1) already identified tomato MADS-box genes previously defined as flower identity genes (TAG1, TDR4 and TDR6) and (2) new tomato MADS-box genes (TAGL1, TAGL2, TAGL11 and TAGL12). With the exception of TAGL12, which is expressed near uniformly in every tissue, the other genes show an induction during the tomato fruit development phase I (anthesis) and phase II, when active cell division occurs. In situ hybridization analyses show a specific expression pattern for each gene within the fruit and embryo sac tissues suggesting an important role in the establishment of tissue identity. Yeast two-hybrid analyses indicate that some of these proteins could potentially form dimers suggesting they could act together to accomplish their proposed role.
Busi, MV. Bustamante, C. D'Angelo, C. Hidalgo, Cuevas. Boggio, SB. Valle, EM. Zabaleta, E.
Plant molecular biology.
2003.
52(4).
801-15.
Interaction study of MADS-domain proteins in tomato.
Journal of experimental botany (2008)
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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.
![]() ![]() | [Add ontology annotations] |
biological_process
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cellular_component
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molecular_function
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plant_anatomy
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