Gene Details:

Functional Descriptions:

  • We conclude that Se14 is a novel photoperiod-sensitivity gene that has a suppressive effect on floral transition (flowering time) under long day-length conditions through the modification of chromatin structure by H3K4me3 demethylation in the promoter region of RFT1.

Literature:

Gene Resources:

  • NCBI ID:
  • UniProt accessions:

Sequences:

cDNA Sequence
  • >LOC_Os03g05680.1
    GCACACCGTCTTCGCAATCTCCTTTGGTCGGCTGCCCAATCCTCCCTTCCCTTCCTCTCCTCAAACCCCCCCAACCCAAATGCTCCCCTCCGCTCCCCGTCCCCGCCTCCCAAAACCCTAGCCCTCTCGCCGCGCGCTCCCCCCCTGATGCCGCCCCAGCCTCCGCCGGCGGCGTCGGCGTCGGCCAGTGCCCCGGATCCCGCCGTCCCGGCTTGGCTCAGGGGGCTCCCCCGCGCGCCCGAGTACCGCCCGACGGAGTCCGAGTTCGCCGACCCCATCGCCTTCCTCTCCCGCGTGGAGCGCGAGGCCGCCGCCTACGGCATCTGCAAGGTCATCCCGCCCCACCCGCGCCCTTCCCGCCGCTTCGTCTTCGCCCACCTCAACCGCTCCCTCGTCTCCTCCTGCGACGCCCCCGCGCCCTCTCCCGCCGCCGCCTCCGACTCGTCCATTCCTCCATCCTCCTCCTCGCCGCCGCCGGTCTCCGCCGCGGTGTTCACGACACGGCACCAGGAGCTCGGCAACCCGCGGCGTGGACGCCCGACGCCGCAGGTGCTTAAGCAGGTGTGGCAGAGTGGGGAGCGGTACACGCTCGACCAGTTTGAGTCCAAGTCCCGCGCCTTCTCAAAGACGCACCTCGCTGGACTCCACGAACCGACTGCGCTCGCGGTGGAATCACTCTTCTGGAAGGCGTCGGCGGACCGTCCTATCTATATTGAGTACGCCAATGATGTCCCTGGCTCTGGGTTTGCTGCACCCGTGCAGTTGCAACGCAAGAAGAAGCAGAAAAGAGAGACTGCCCCGATGGACGAATGGGAGAAGAGTTCAGGCTGGAGGCTGTCAAATAGCCCATGGAACCTGCAAGCAATTGCGCGGGCTCCTGGTTCGCTCACACGGTTTATGCCTGACGATGTTCCTGGGGTGACTTCTCCAATGGTTTACATTGGCATGCTGTTCAGCTGGTTTGCGTGGCATGTGGAGGATCATGATCTGCATAGTCTCAACTTCCTCCACACTGGCGCACCTAAGACGTGGTATGCGGTTCCTGGTGATAGGGCTGTTGAGCTTGAGGAAGTTATCCGTGTACATGGCTATGGAGGCAACACTGATCGGATCGCGTCACTAGCAGTGCTTGGTGAGAAAACAACACTAATGTCCCCAGAGGTCCTTATAGACAATGATTGGTGCAATATCCTGGTGAGTTTGTGGTGACATTCCCAAGGGCTTACCATGTCGGGTTTAGCCATGGATTCAATTGTGGAGAAGCTGCCAATTTTGCGACTCCCCAATGGTTGAAGTTTGCTAAAGAGGCTGCAGTTCGAAGGGCTGTGATGAATTATCTTCCAATGCTCTCCCATCAACAACTATTGTACTTGCTAGCAGTTTCATTTATATCCAGGAACCCTAGAGAACTACTGTCTGGAATCCGAACTTCTCGTCTAAGAGATCGTAAAAAAGAAGACCGAGAACTGTTGGTCAAACAGGAATTCTTGCAGGATATGATTAGTGAAAATGAACTTATATGTTCATTTCTTGGAAAAA
CDS Sequence
  • >LOC_Os03g05680.1
    ATGCCGCCCCAGCCTCCGCCGGCGGCGTCGGCGTCGGCCAGTGCCCCGGATCCCGCCGTCCCGGCTTGGCTCAGGGGGCTCCCCCGCGCGCCCGAGTACCGCCCGACGGAGTCCGAGTTCGCCGACCCCATCGCCTTCCTCTCCCGCGTGGAGCGCGAGGCCGCCGCCTACGGCATCTGCAAGGTCATCCCGCCCCACCCGCGCCCTTCCCGCCGCTTCGTCTTCGCCCACCTCAACCGCTCCCTCGTCTCCTCCTGCGACGCCCCCGCGCCCTCTCCCGCCGCCGCCTCCGACTCGTCCATTCCTCCATCCTCCTCCTCGCCGCCGCCGGTCTCCGCCGCGGTGTTCACGACACGGCACCAGGAGCTCGGCAACCCGCGGCGTGGACGCCCGACGCCGCAGGTGCTTAAGCAGGTGTGGCAGAGTGGGGAGCGGTACACGCTCGACCAGTTTGAGTCCAAGTCCCGCGCCTTCTCAAAGACGCACCTCGCTGGACTCCACGAACCGACTGCGCTCGCGGTGGAATCACTCTTCTGGAAGGCGTCGGCGGACCGTCCTATCTATATTGAGTACGCCAATGATGTCCCTGGCTCTGGGTTTGCTGCACCCGTGCAGTTGCAACGCAAGAAGAAGCAGAAAAGAGAGACTGCCCCGATGGACGAATGGGAGAAGAGTTCAGGCTGGAGGCTGTCAAATAGCCCATGGAACCTGCAAGCAATTGCGCGGGCTCCTGGTTCGCTCACACGGTTTATGCCTGACGATGTTCCTGGGGTGACTTCTCCAATGGTTTACATTGGCATGCTGTTCAGCTGGTTTGCGTGGCATGTGGAGGATCATGATCTGCATAGTCTCAACTTCCTCCACACTGGCGCACCTAAGACGTGGTATGCGGTTCCTGGTGATAGGGCTGTTGAGCTTGAGGAAGTTATCCGTGTACATGGCTATGGAGGCAACACTGATCGGATCGCGTCACTAGCAGTGCTTGGTGAGAAAACAACACTAATGTCCCCAGAGGTCCTTATAGACAATGATTGGTGCAATATCCTGGTGAGTTTGTGGTGA
Protein Sequence
  • >LOC_Os03g05680.1
    MPPQPPPAASASASAPDPAVPAWLRGLPRAPEYRPTESEFADPIAFLSRVEREAAAYGICKVIPPHPRPSRRFVFAHLNRSLVSSCDAPAPSPAAASDSSIPPSSSSPPPVSAAVFTTRHQELGNPRRGRPTPQVLKQVWQSGERYTLDQFESKSRAFSKTHLAGLHEPTALAVESLFWKASADRPIYIEYANDVPGSGFAAPVQLQRKKKQKRETAPMDEWEKSSGWRLSNSPWNLQAIARAPGSLTRFMPDDVPGVTSPMVYIGMLFSWFAWHVEDHDLHSLNFLHTGAPKTWYAVPGDRAVELEEVIRVHGYGGNTDRIASLAVLGEKTTLMSPEVLIDNDWCNILVSLW*