Gene Details:

Functional Descriptions:

  • The Tomato Guanylate-Binding Protein SlGBP1 Enables Fruit Tissue Differentiation by Maintaining Endopolyploid Cells in a Non-Proliferative State.
  • The data indicate that disruption of the SlGBP1 gene, encoding GUANYLATE BINDING PROTEIN1, induces early termination of endoreduplication followed by late divisions of polyploid mesocarp cells, which consequently acquire the characteristics of young proliferative cells.
  • SlGBP1 acts as an inhibitor of cell division, a function conserved with the human hGBP-1 protein.
  • This study reveals a crucial role of plant GBPs in the control of cell cycle genes, and thus, in cell fate maintenance. We propose that SlGBP1 acts as an inhibitor of cell division, a function conserved with the human hGBP-1 protein.

Literature:

Gene Resources:

Sequences:

cDNA Sequence
  • >Solyc10g008950.3.1
    ACTCTAATTATCAAATATAGATAATAGTGCCCTCCTCTTTTTCCCGATCAGGACAATTCGTTGATTCGTTTTATCCTTCTATCTATTTAATCTATAGTGCTGCCTTTTTTTCGATCGAAAACAAGTGCGTTGGTTCGTTTTTTCAAATTAAATTGTTTTATCAACTTTAAACTTAAAAGACGTCTATTGACTGTCCTCACAGTCTTATAAAGTAAGAAATCATTTCCTCCACACCGATTCCATTTCCCTCTTTTTCTAATCAAATTCTCTCTCTCTACTAATACCCATGAGGAGGCTATTCGGTAGAGGTTCCGCCGGAGAGTCGCCGCAGCAATCTTCTCCGTCACCGTCGCCGTCGCCTCCACAGACTTCTCCTCCATCCTCTGTCAACATTGCTGCCGGTCCAGCCAGACCGATTCGTTTCGTGTATTGCGATGAGAAAGGGAAGTTCCAGATCGATCCAGAGGCACTTGCTATACTTCAACTCGTCAAAGAGCCTGTTGGTATTGTCTCCGTTTGTGGTCGTGCTCGTCAAGGCAAGAGCTTTATACTTAACCAGCTTCTTGGCAGGAGTAGCGGTTTTCAAGTGGCTGCAACTCATCGGCCATGCACAAAAGGTATCTGGCTGTGGAGTTCACCTTTAAGGAGAACAGCTCTTGATGGAACAGAATACAACCTGTTACTGCTGGACACAGAAGGAATTGATGCTTATGATCAAACGGGTACATATAGCACACAGATATTCTCCCTGGCAGTCCTTCTTTCAAGTATGTTTGTATATAACCAGATGGGAGGTATAGATGAAGCTGCGCTTGACCGCCTCTCTCTTGTCACTGAAATGACTAGACATATTCGTGTTAGAGCCTCTGGAGGAAGGGCCAGTTCTTCTGAGCTTGGGCAGTTCTCCCCAGTCTTCGTTTGGTTGCTTAGGGATTTTTATTTGGATTTGGTTGAGGACAACCGCAAAATAACTCCACGGGACTACCTTGAACTTGCATTGAGGCCAGTTCAAGGTGGTGGGAAAGATGTTGCTGCTAAAAACGAGATTAGGGACTCCATTCGTGCTCTTTTCCCTGACAGAGAATGCTTCCCCCTTGTGCGGCCTCTGAGCAATGAAAATGAGCTTCAACGGCTAGATCAAATACCATTGGAAAACCTCAGGCCAGAGTTCAAAGCAGGTCTTGATGCTTTGACAAGATTTGTTTTTGAGAGGACGAGACCCAAGCAAGTTGGAGCAACTATTATGACTGGACCGCTCTTTGCTCGCATAACTCAGTCCTTCCTGGATGCTCTTAACAATGGTGCAGTGCCCACCATTACCTCTTCATGGCAGAGTGTTGAGGAAGCTGAGTGTCAAAGGGCATACGATTCGGCTGCTGAGAGATACATGTCTTCATTTGATCGTTCCAAGCCTCCGGAGGAAGGTGCACTAAGAGAAGCACACGAGGATGCATCTCAAAAGGCCATGGCAGAATTTAATTCTACTGCTGTGGGGGCTGGATCCATCAGGATGAAATATGAGAAGCGTCTCCAAAATTTCATAAAAAAAGCATTTGAGGAGCTTAAAAAGGATGCCTTTAGGGAGGCTTATCTACAATGTTCAAATGCCATACAGGACATGGAAAAGGAACTGAGGTTGGCTTGCCATGCTCCTGATGCAAATATAGATAGTGTGCTTAAGGTTCTTGATCGTCTAGTGTCCAAGTATGAAGCAACTTGTCAGGGTCCTGAGAAATGGAGAAAATTGATAGTCTTCTTACAGCAAAGCTTGGAAGGTCCACTTTTTGATCTCATCAAGAAGCAAACAGACAAACTTGGATCGGAGAAAACTAGTCTTGCATTAAAGTGCCGCGCCATTGAGGATAAGATGAATTTACTTAACAAACAACTGGAAGCTAGTGAGAAGTATAAATCCGAATATTTGAAGCGTTATGAAGATGCCATCAATGACAAGAAGCAGCTTGCAGATGATTACACGAGTCGTATCACAAATTTGCAGAGTAAATATAGTTCATTGGAAGAAAGATATTCAAGCTTATCAAAAACATTCACTTCAGCTAAACATGAGTCCTCAGAATGGAAAAGAAAATATGAACAGCTTCTGTTGAAGCAGAAGGCTAATGAAGACCAATCAAGTGCAGAAGTATCTGTTCTGAAGTCCAGAACTGCTGCCGCTGAAGCAAGGCTGGCTGCTGCCAAAGAGCAAGCTGAATCGGCTCAAGAGGAGGCGGAGGAGTGGAAACGTAAATATGACATTGCCGTCAAGGAAGTTAAGAATGCTCTTGAGAAGGCAGCGTCTGTTCAAGAGCGAGCAAACAAGGAAACCCAGTTGAGAGAAGATGCTTTAAGGGATGAGTTTTCAAGCACCCTGGCGGATAAGGAAGAAGAAATTAAAGACAAGGCATATAAGCTTGAGCATGCTGAGCAGCGTTTAGCAACACTGACTTTGGAGTTGAGGACTGCTGATTCAAAGGTGAGGAACTATGGTCTAGAAGTGTCAGCCTTGAAGGTTGAAATCAAGGAATTGGGTGAAAGGATAGAGAATATAAAGGATACTGCACAATCATTTGAAAGAGAAGCTAAGATTCTGGAACAGGAGAAGGTTCATCTGGAGCAGAAGTACCGGTCAGAGTTCGATCGATTTGAGGATGTTCAGGATAGATGTAAATCAGCTGAAAGAGAGGCAAAAAGGGCGACTGAGCTTGCTGATAAAGCAAGGGCTGAAGCAGCTGCGGCCCTGAAAGAGAAGAATGAAATTCAACGGTTAGCTATGGAAAGATTAGCTCAGATTGAGAAGGCTGACAGAGCTATTGAAAAGTTAGAGAGGGAAAGGGAAGACTTGACTGATGAAGTAGGGAGGTATCATCGCGCTGAGAAGGATGCAAGGTCAAAAGTTGCAATGCTGGAGGCCCGAGTAGAAGAAAGGGAAAAGGAAATTGAGATGCTACTGAAATCAAATAATGAACAAAGGGCCAGTACTGTGCAAGTCCTTGAAAGTCTGTTAGAGACTGAGCGTGCAGCGCGGTCTGAAGCAACCAATAGGGCGGAAGCACTCTCTCTTCAGTTGCAAGCTACACAAGGAAAGCTAGATCTTCTTCAACAACAGTTAACTGCAGTTCGGCTGAATGAAACTGCACTGGATAGCAAACTTAGAACTGCTTCCCATGGCAAACGTGCCAGGATAGATGAATACGAAGCTGGAATTGAATCTGTCCATGACATGGATACAAATGATAGACCAATCAGAGGAAATAAGAGGTCCAAGAGTACAACCAGTCCCTTAAAGTATACCTCCCCAGAAGATGGAGGTTCTGTATTCAGAGGAGAAGATGATGGTCATAGTCAACAAACGAATGGTGAAGATTATACAAAGTTTACTGTGCAGAAACTAAAGCAGGAACTTACAAAGCATAACTTTGGCGCTGAACTGCTCCAACTGAAGAACGCAAACAAGAAGGATATCTTAGCTTTGTATGAGAAATGCGTCCTCCAGAAATCATAGCTTTCAGTGTGCCGGGTTGTGTAGAAAGGTTGTAAGTATCTCAGTTATAGTCAAAAGCATACTACTTCTGGATTACAAAATTATGTGTTTGCATCCTAAAAACATCCTTTTAAGTTCTATAGGGCTTCTACCCCATTAGGTAGCTATACAATCTTGCTATATGCTGCTGCCGCCATCGGGGCTTTTCGTGTGACATAATAGTTTTCATTCTGGTGTGCACTCTAACTTAGGTATTTTTGTTTGAGCCTTCCTAGTGTGGCAGTGGAAGATGGTTTAGAGAGATTATGAAAGTGAGATCACCAGACATCCCTTGTTGTCTCTTTCTTTCTCCATTTGTGCAGTTATTGGTGTTTAGTGAGTACTTAATCCTCGTGTGATTAGTAGTATTAGTATTCTCTTGATTTGCTAAATTTGACAAGTGAAG
CDS Sequence
  • >Solyc10g008950.3.1
    ATGAGGAGGCTATTCGGTAGAGGTTCCGCCGGAGAGTCGCCGCAGCAATCTTCTCCGTCACCGTCGCCGTCGCCTCCACAGACTTCTCCTCCATCCTCTGTCAACATTGCTGCCGGTCCAGCCAGACCGATTCGTTTCGTGTATTGCGATGAGAAAGGGAAGTTCCAGATCGATCCAGAGGCACTTGCTATACTTCAACTCGTCAAAGAGCCTGTTGGTATTGTCTCCGTTTGTGGTCGTGCTCGTCAAGGCAAGAGCTTTATACTTAACCAGCTTCTTGGCAGGAGTAGCGGTTTTCAAGTGGCTGCAACTCATCGGCCATGCACAAAAGGTATCTGGCTGTGGAGTTCACCTTTAAGGAGAACAGCTCTTGATGGAACAGAATACAACCTGTTACTGCTGGACACAGAAGGAATTGATGCTTATGATCAAACGGGTACATATAGCACACAGATATTCTCCCTGGCAGTCCTTCTTTCAAGTATGTTTGTATATAACCAGATGGGAGGTATAGATGAAGCTGCGCTTGACCGCCTCTCTCTTGTCACTGAAATGACTAGACATATTCGTGTTAGAGCCTCTGGAGGAAGGGCCAGTTCTTCTGAGCTTGGGCAGTTCTCCCCAGTCTTCGTTTGGTTGCTTAGGGATTTTTATTTGGATTTGGTTGAGGACAACCGCAAAATAACTCCACGGGACTACCTTGAACTTGCATTGAGGCCAGTTCAAGGTGGTGGGAAAGATGTTGCTGCTAAAAACGAGATTAGGGACTCCATTCGTGCTCTTTTCCCTGACAGAGAATGCTTCCCCCTTGTGCGGCCTCTGAGCAATGAAAATGAGCTTCAACGGCTAGATCAAATACCATTGGAAAACCTCAGGCCAGAGTTCAAAGCAGGTCTTGATGCTTTGACAAGATTTGTTTTTGAGAGGACGAGACCCAAGCAAGTTGGAGCAACTATTATGACTGGACCGCTCTTTGCTCGCATAACTCAGTCCTTCCTGGATGCTCTTAACAATGGTGCAGTGCCCACCATTACCTCTTCATGGCAGAGTGTTGAGGAAGCTGAGTGTCAAAGGGCATACGATTCGGCTGCTGAGAGATACATGTCTTCATTTGATCGTTCCAAGCCTCCGGAGGAAGGTGCACTAAGAGAAGCACACGAGGATGCATCTCAAAAGGCCATGGCAGAATTTAATTCTACTGCTGTGGGGGCTGGATCCATCAGGATGAAATATGAGAAGCGTCTCCAAAATTTCATAAAAAAAGCATTTGAGGAGCTTAAAAAGGATGCCTTTAGGGAGGCTTATCTACAATGTTCAAATGCCATACAGGACATGGAAAAGGAACTGAGGTTGGCTTGCCATGCTCCTGATGCAAATATAGATAGTGTGCTTAAGGTTCTTGATCGTCTAGTGTCCAAGTATGAAGCAACTTGTCAGGGTCCTGAGAAATGGAGAAAATTGATAGTCTTCTTACAGCAAAGCTTGGAAGGTCCACTTTTTGATCTCATCAAGAAGCAAACAGACAAACTTGGATCGGAGAAAACTAGTCTTGCATTAAAGTGCCGCGCCATTGAGGATAAGATGAATTTACTTAACAAACAACTGGAAGCTAGTGAGAAGTATAAATCCGAATATTTGAAGCGTTATGAAGATGCCATCAATGACAAGAAGCAGCTTGCAGATGATTACACGAGTCGTATCACAAATTTGCAGAGTAAATATAGTTCATTGGAAGAAAGATATTCAAGCTTATCAAAAACATTCACTTCAGCTAAACATGAGTCCTCAGAATGGAAAAGAAAATATGAACAGCTTCTGTTGAAGCAGAAGGCTAATGAAGACCAATCAAGTGCAGAAGTATCTGTTCTGAAGTCCAGAACTGCTGCCGCTGAAGCAAGGCTGGCTGCTGCCAAAGAGCAAGCTGAATCGGCTCAAGAGGAGGCGGAGGAGTGGAAACGTAAATATGACATTGCCGTCAAGGAAGTTAAGAATGCTCTTGAGAAGGCAGCGTCTGTTCAAGAGCGAGCAAACAAGGAAACCCAGTTGAGAGAAGATGCTTTAAGGGATGAGTTTTCAAGCACCCTGGCGGATAAGGAAGAAGAAATTAAAGACAAGGCATATAAGCTTGAGCATGCTGAGCAGCGTTTAGCAACACTGACTTTGGAGTTGAGGACTGCTGATTCAAAGGTGAGGAACTATGGTCTAGAAGTGTCAGCCTTGAAGGTTGAAATCAAGGAATTGGGTGAAAGGATAGAGAATATAAAGGATACTGCACAATCATTTGAAAGAGAAGCTAAGATTCTGGAACAGGAGAAGGTTCATCTGGAGCAGAAGTACCGGTCAGAGTTCGATCGATTTGAGGATGTTCAGGATAGATGTAAATCAGCTGAAAGAGAGGCAAAAAGGGCGACTGAGCTTGCTGATAAAGCAAGGGCTGAAGCAGCTGCGGCCCTGAAAGAGAAGAATGAAATTCAACGGTTAGCTATGGAAAGATTAGCTCAGATTGAGAAGGCTGACAGAGCTATTGAAAAGTTAGAGAGGGAAAGGGAAGACTTGACTGATGAAGTAGGGAGGTATCATCGCGCTGAGAAGGATGCAAGGTCAAAAGTTGCAATGCTGGAGGCCCGAGTAGAAGAAAGGGAAAAGGAAATTGAGATGCTACTGAAATCAAATAATGAACAAAGGGCCAGTACTGTGCAAGTCCTTGAAAGTCTGTTAGAGACTGAGCGTGCAGCGCGGTCTGAAGCAACCAATAGGGCGGAAGCACTCTCTCTTCAGTTGCAAGCTACACAAGGAAAGCTAGATCTTCTTCAACAACAGTTAACTGCAGTTCGGCTGAATGAAACTGCACTGGATAGCAAACTTAGAACTGCTTCCCATGGCAAACGTGCCAGGATAGATGAATACGAAGCTGGAATTGAATCTGTCCATGACATGGATACAAATGATAGACCAATCAGAGGAAATAAGAGGTCCAAGAGTACAACCAGTCCCTTAAAGTATACCTCCCCAGAAGATGGAGGTTCTGTATTCAGAGGAGAAGATGATGGTCATAGTCAACAAACGAATGGTGAAGATTATACAAAGTTTACTGTGCAGAAACTAAAGCAGGAACTTACAAAGCATAACTTTGGCGCTGAACTGCTCCAACTGAAGAACGCAAACAAGAAGGATATCTTAGCTTTGTATGAGAAATGCGTCCTCCAGAAATCATAG
Protein Sequence
  • >Solyc10g008950.3.1
    MRRLFGRGSAGESPQQSSPSPSPSPPQTSPPSSVNIAAGPARPIRFVYCDEKGKFQIDPEALAILQLVKEPVGIVSVCGRARQGKSFILNQLLGRSSGFQVAATHRPCTKGIWLWSSPLRRTALDGTEYNLLLLDTEGIDAYDQTGTYSTQIFSLAVLLSSMFVYNQMGGIDEAALDRLSLVTEMTRHIRVRASGGRASSSELGQFSPVFVWLLRDFYLDLVEDNRKITPRDYLELALRPVQGGGKDVAAKNEIRDSIRALFPDRECFPLVRPLSNENELQRLDQIPLENLRPEFKAGLDALTRFVFERTRPKQVGATIMTGPLFARITQSFLDALNNGAVPTITSSWQSVEEAECQRAYDSAAERYMSSFDRSKPPEEGALREAHEDASQKAMAEFNSTAVGAGSIRMKYEKRLQNFIKKAFEELKKDAFREAYLQCSNAIQDMEKELRLACHAPDANIDSVLKVLDRLVSKYEATCQGPEKWRKLIVFLQQSLEGPLFDLIKKQTDKLGSEKTSLALKCRAIEDKMNLLNKQLEASEKYKSEYLKRYEDAINDKKQLADDYTSRITNLQSKYSSLEERYSSLSKTFTSAKHESSEWKRKYEQLLLKQKANEDQSSAEVSVLKSRTAAAEARLAAAKEQAESAQEEAEEWKRKYDIAVKEVKNALEKAASVQERANKETQLREDALRDEFSSTLADKEEEIKDKAYKLEHAEQRLATLTLELRTADSKVRNYGLEVSALKVEIKELGERIENIKDTAQSFEREAKILEQEKVHLEQKYRSEFDRFEDVQDRCKSAEREAKRATELADKARAEAAAALKEKNEIQRLAMERLAQIEKADRAIEKLEREREDLTDEVGRYHRAEKDARSKVAMLEARVEEREKEIEMLLKSNNEQRASTVQVLESLLETERAARSEATNRAEALSLQLQATQGKLDLLQQQLTAVRLNETALDSKLRTASHGKRARIDEYEAGIESVHDMDTNDRPIRGNKRSKSTTSPLKYTSPEDGGSVFRGEDDGHSQQTNGEDYTKFTVQKLKQELTKHNFGAELLQLKNANKKDILALYEKCVLQKS*