Gene Details:

Functional Descriptions:

  • UDP-glucosyltransferase OsUGT75A promotes submergence tolerance during rice seed germination.
  • Herein, we report that natural variation of rice coleoptile length subjected to submergence is determined by the glucosyltransferase encoding gene OsUGT75A.
  • OsUGT75A regulates coleoptile length via decreasing free abscisic acid (ABA) and jasmonic acid (JA) levels by promoting glycosylation of these two phytohormones under submergence.
  • Moreover, we find that OsUGT75A accelerates coleoptile length through mediating the interactions between JASMONATE ZIMDOMAIN (OsJAZ) and ABSCISIC ACID-INSENSITIVE (OsABI) proteins.
  • Thus, we propose that OsUGT75A is a useful target in breeding of rice varieties suitable for direct seeding cultivation.

Literature:

Gene Resources:

  • NCBI ID:
  • UniProt accessions:

Sequences:

cDNA Sequence
  • >LOC_Os11g25990.1
    ATGCATTTCTTGATCGTGTCGGGGGCGGCGCAGGGGCAGATCACGCCGGCGAGGCGGCTGGCGCGCGCGCTGGTGGCGGCGGCGGAGCCTGGGGTGATCATCAGGGCCACGCTGGCCGTGCCGCTGTCGGCGCTGAGGAGGATGTTCCCCGGGAAGGCGGCCGGCGCAGCCGCCGGTGAAGGGGCCGTGGTGCTGTCGGACGGGGCCGGCGTCGACTACGCCGCGTTCACCGACGGGTTCGACGACGGGTTCCAGCCCGAGCGGTGCGACGGCGCGGCGTTCGTCGGGAGGCTCCAGCTCGTCGGCCCGGCGTCGCTGGCCCGGCTGGCGGCGGCGCTGCGCGCGCGGGGGAGGCCCGTGACGTGCGTCGTGTACACCCTGCTCCTTCCGTTCGCCGCCGCCGTCGCCAGGGACCTCGACGTGCCGGCGTACTTCTTCTGGACCATGCCGGCGGCCGTGCTTTCAGTCTACTACCATTACTTCCACGGCCGCCATGGCCTCGTCGACGCCGCCGCCGGAGTCCGGGACGACCCCAACCGCCGCGTCCAAGTCCCCGGCCTCGAGTTCCTCCGCGCCCGCGACCTCCCGTCGCTGCTCACCGGGTCAAGCCCCTACCTCCCGGCCTTCCGGGAGATGTTCCACGTCGTCGAGGCCACCGCCGCCGCGTCGTGCCATGCCCATGGCCAGAGTGGCGCGAAGCCGTGGGTGCTTGTGAACACCTTCGACGCGCTCGAGCCGAAGGCGCTCGCGTCCGTCCCCGGCATTGACCTCATCCCGGTTGGACCCATGGTCACCGACACGGAGGCCGACGGCGGCGGCGACCTCTTCGAGCAAGACGACGACGCAGGCTACATGCAATGGCTCGACAAGCAGCGGGACGCCTCCGTCGTGTACGTCGCGTTCGGCAGCCTCGCCGTGCTCTCGCCGAGGCAGCTGGAGGAGATACGCCACTGCCTCGAGGTGACCGGACGGCCCTTCCTCTGGGTGGTCCGGCGCGACAGCCGCGACGGCGGCGGCGGCGGCGGCGCGGCCACCGGATTATTGCCGCCGGCAGGCGGGATGGTGGTGGAGTGGTGCAGCCAGGCGCGCGTGCTGGCGCACCGGGCGGTGGGGTGCTTCGTCACCCACTGCGGGTGGAACTCGACGCTGGAGACCGTCGCGTGCGGCGTGCCAGCGGTAATGGCGCCGCAGTGGTCCGACCAGGCGACGAACGCGCGCATGGCCGAGGCGCGGTGGGGCGTCGGCGTGCGCGCGGAGACCGCGGCCGACGGCACCGTGCTCTCGTCGGAGCTCTCACGCGGCATCGACGCCGTCATGGGGGACAGCGACGGCGCCCGCGCGATACGCCGGCGCGCAAGAACATGGAAGGCGCGCGCCGCCATGGCGCTGGACGCCGCCGCCGACGACGCCGAGTTTGACGGGGACGCCACGGCGGCGCGCAACCTGAGACGATTTGTGCAGGGCGTACGTAGCAGAGAACGGGAGCGCGAGCAAAAGCAAGCAGGGCAGAGTTAA
CDS Sequence
  • >LOC_Os11g25990.1
    ATGCATTTCTTGATCGTGTCGGGGGCGGCGCAGGGGCAGATCACGCCGGCGAGGCGGCTGGCGCGCGCGCTGGTGGCGGCGGCGGAGCCTGGGGTGATCATCAGGGCCACGCTGGCCGTGCCGCTGTCGGCGCTGAGGAGGATGTTCCCCGGGAAGGCGGCCGGCGCAGCCGCCGGTGAAGGGGCCGTGGTGCTGTCGGACGGGGCCGGCGTCGACTACGCCGCGTTCACCGACGGGTTCGACGACGGGTTCCAGCCCGAGCGGTGCGACGGCGCGGCGTTCGTCGGGAGGCTCCAGCTCGTCGGCCCGGCGTCGCTGGCCCGGCTGGCGGCGGCGCTGCGCGCGCGGGGGAGGCCCGTGACGTGCGTCGTGTACACCCTGCTCCTTCCGTTCGCCGCCGCCGTCGCCAGGGACCTCGACGTGCCGGCGTACTTCTTCTGGACCATGCCGGCGGCCGTGCTTTCAGTCTACTACCATTACTTCCACGGCCGCCATGGCCTCGTCGACGCCGCCGCCGGAGTCCGGGACGACCCCAACCGCCGCGTCCAAGTCCCCGGCCTCGAGTTCCTCCGCGCCCGCGACCTCCCGTCGCTGCTCACCGGGTCAAGCCCCTACCTCCCGGCCTTCCGGGAGATGTTCCACGTCGTCGAGGCCACCGCCGCCGCGTCGTGCCATGCCCATGGCCAGAGTGGCGCGAAGCCGTGGGTGCTTGTGAACACCTTCGACGCGCTCGAGCCGAAGGCGCTCGCGTCCGTCCCCGGCATTGACCTCATCCCGGTTGGACCCATGGTCACCGACACGGAGGCCGACGGCGGCGGCGACCTCTTCGAGCAAGACGACGACGCAGGCTACATGCAATGGCTCGACAAGCAGCGGGACGCCTCCGTCGTGTACGTCGCGTTCGGCAGCCTCGCCGTGCTCTCGCCGAGGCAGCTGGAGGAGATACGCCACTGCCTCGAGGTGACCGGACGGCCCTTCCTCTGGGTGGTCCGGCGCGACAGCCGCGACGGCGGCGGCGGCGGCGGCGCGGCCACCGGATTATTGCCGCCGGCAGGCGGGATGGTGGTGGAGTGGTGCAGCCAGGCGCGCGTGCTGGCGCACCGGGCGGTGGGGTGCTTCGTCACCCACTGCGGGTGGAACTCGACGCTGGAGACCGTCGCGTGCGGCGTGCCAGCGGTAATGGCGCCGCAGTGGTCCGACCAGGCGACGAACGCGCGCATGGCCGAGGCGCGGTGGGGCGTCGGCGTGCGCGCGGAGACCGCGGCCGACGGCACCGTGCTCTCGTCGGAGCTCTCACGCGGCATCGACGCCGTCATGGGGGACAGCGACGGCGCCCGCGCGATACGCCGGCGCGCAAGAACATGGAAGGCGCGCGCCGCCATGGCGCTGGACGCCGCCGCCGACGACGCCGAGTTTGACGGGGACGCCACGGCGGCGCGCAACCTGAGACGATTTGTGCAGGGCGTACGTAGCAGAGAACGGGAGCGCGAGCAAAAGCAAGCAGGGCAGAGTTAA
Protein Sequence
  • >LOC_Os11g25990.1
    MHFLIVSGAAQGQITPARRLARALVAAAEPGVIIRATLAVPLSALRRMFPGKAAGAAAGEGAVVLSDGAGVDYAAFTDGFDDGFQPERCDGAAFVGRLQLVGPASLARLAAALRARGRPVTCVVYTLLLPFAAAVARDLDVPAYFFWTMPAAVLSVYYHYFHGRHGLVDAAAGVRDDPNRRVQVPGLEFLRARDLPSLLTGSSPYLPAFREMFHVVEATAAASCHAHGQSGAKPWVLVNTFDALEPKALASVPGIDLIPVGPMVTDTEADGGGDLFEQDDDAGYMQWLDKQRDASVVYVAFGSLAVLSPRQLEEIRHCLEVTGRPFLWVVRRDSRDGGGGGGAATGLLPPAGGMVVEWCSQARVLAHRAVGCFVTHCGWNSTLETVACGVPAVMAPQWSDQATNARMAEARWGVGVRAETAADGTVLSSELSRGIDAVMGDSDGARAIRRRARTWKARAAMALDAAADDAEFDGDATAARNLRRFVQGVRSREREREQKQAGQS*