Gene Details:

Functional Descriptions:

  • Characterization of TaCOMT genes and development of gene-specific markers could enable marker-assisted selection in wheat breeding. In the present study.
  • Overexpression of TaCOMT Improves Melatonin Production and Enhances Drought Tolerance in Transgenic Arabidopsis.
  • TaCOMT Conferred Drought Tolerance in Transgenic Arabidopsis.

Literature:

Gene Resources:

Sequences:

cDNA Sequence
  • >Traes_1AL_D9035D5E0.1
    CATCGCTCAGTCGCTCGCTCACACTCAACGCCACGTAGCAGCAGCTCGGCTCCGGCGGGGCAGAAGCAAGCAGAGATGGGGTCGATCGCCGCCGGCGCCGACGAGGATGCGTGCATGTACGCTCTCCAGCTCGTCTCGTCGTCGATCCTCCCGATGACGCTGAAGAACGCCATCGAGCTGGGGCTCCTCGAGACCCTGATGGCCGCCGGCGGCAAGTTCTTGACTCCCGCTGAGGTGGCAGCCAAGCTCCCGTCCGCGGCGAATCCGGAAGCGCCGGACATGGTGGACCGTATGCTCCGTCTGTTGGCCTCGTACAACGTGGTGTCGTGCAGGACGGAGGAGGGCAAGGACGGCCGCCTCTCCCGGCGGTACGGCGCCGCGCCCGTGTGCAAGTACCTCACCCCCAACGAGGACGGCGTGTCCATGTCGGCGCTCGCGCTCATGAACCAAGACAAGGTCCTCATGGAGAGCTGGTACTATCTCAAGGATGCGGTCCTCGACGGTGGCATCCCGTTCAACAAGGCGTACGGGATGTCGGCGTTCGAGTACCACGGCACGGACCCACGCTTCAACCGCGTCTTCAACGAGGGGATGAAGAACCATTCCATCATCATCACCAAGAAGCTCCTCGAGTCCTACAAGGGCTTCGAGGGCCTCGGCACCCTCGTCGACGTGGGCGGTGGCGTCGGCGCCACCGTGGCCGCCATCACCGCTCACTACCCCACCATCAAGGGCATCAACTTTGACCTTCCCCACGTCATCAGTGAGGCGCCGCCGTTCCCCGGTGTCACCCACGTCGGCGGGGACATGTTCCAGAAGGTGCCCTCGGCCGACGCCATCCTCATGAAGTGGATCCTCCACGACTGGAGCGACGAGCACTGCGCGACGCTGCTCAAGAACTGCTACGACGCGTTGCCGGCGCACGGCAAGGTGGTGCTCGTGGAGTGCATCCTGCCGGTGAACCCGGAGGCGACGCCTAAGGCGCAGGGGGTGTTCCATGTCGACATGATCATGCTCGCGCACAACCCGGGTGGCAGGGAGAGGTACGAGAGGGAGTTCGAGGCCCTGGCCAAGGGCGCCGGGTTCGCCGCCATGAAGACTACTTACATCTACGCCAACGCATGGGCCATCGAGTTCACTAAGTAGATGATCCATGACAACGAGTCTACCTCTCTGATGCATCCACCTGCATGTGTACTTTCTCTTCGTTTTTCCTTCAAAAAAAATTTCACTCTCTGAGTCAATCTAAAATCTAATGTTTGTGTCGTCGATTGATTCGAAATGTACTACCATTAGAACCGTCGGTTGATTTGAAATGTACAACCATAAAAAAAAAAAAAAAAA
CDS Sequence
  • >Traes_1AL_D9035D5E0.1
    ATGGGGTCGATCGCCGCCGGCGCCGACGAGGATGCGTGCATGTACGCTCTCCAGCTCGTCTCGTCGTCGATCCTCCCGATGACGCTGAAGAACGCCATCGAGCTGGGGCTCCTCGAGACCCTGATGGCCGCCGGCGGCAAGTTCTTGACTCCCGCTGAGGTGGCAGCCAAGCTCCCGTCCGCGGCGAATCCGGAAGCGCCGGACATGGTGGACCGTATGCTCCGTCTGTTGGCCTCGTACAACGTGGTGTCGTGCAGGACGGAGGAGGGCAAGGACGGCCGCCTCTCCCGGCGGTACGGCGCCGCGCCCGTGTGCAAGTACCTCACCCCCAACGAGGACGGCGTGTCCATGTCGGCGCTCGCGCTCATGAACCAAGACAAGGTCCTCATGGAGAGCTGGTACTATCTCAAGGATGCGGTCCTCGACGGTGGCATCCCGTTCAACAAGGCGTACGGGATGTCGGCGTTCGAGTACCACGGCACGGACCCACGCTTCAACCGCGTCTTCAACGAGGGGATGAAGAACCATTCCATCATCATCACCAAGAAGCTCCTCGAGTCCTACAAGGGCTTCGAGGGCCTCGGCACCCTCGTCGACGTGGGCGGTGGCGTCGGCGCCACCGTGGCCGCCATCACCGCTCACTACCCCACCATCAAGGGCATCAACTTTGACCTTCCCCACGTCATCAGTGAGGCGCCGCCGTTCCCCGGTGTCACCCACGTCGGCGGGGACATGTTCCAGAAGGTGCCCTCGGCCGACGCCATCCTCATGAAGTGGATCCTCCACGACTGGAGCGACGAGCACTGCGCGACGCTGCTCAAGAACTGCTACGACGCGTTGCCGGCGCACGGCAAGGTGGTGCTCGTGGAGTGCATCCTGCCGGTGAACCCGGAGGCGACGCCTAAGGCGCAGGGGGTGTTCCATGTCGACATGATCATGCTCGCGCACAACCCGGGTGGCAGGGAGAGGTACGAGAGGGAGTTCGAGGCCCTGGCCAAGGGCGCCGGGTTCGCCGCCATGAAGACTACTTACATCTACGCCAACGCATGGGCCATCGAGTTCACTAAGTAG
Protein Sequence
  • >Traes_1AL_D9035D5E0.1
    MGSIAAGADEDACMYALQLVSSSILPMTLKNAIELGLLETLMAAGGKFLTPAEVAAKLPSAANPEAPDMVDRMLRLLASYNVVSCRTEEGKDGRLSRRYGAAPVCKYLTPNEDGVSMSALALMNQDKVLMESWYYLKDAVLDGGIPFNKAYGMSAFEYHGTDPRFNRVFNEGMKNHSIIITKKLLESYKGFEGLGTLVDVGGGVGATVAAITAHYPTIKGINFDLPHVISEAPPFPGVTHVGGDMFQKVPSADAILMKWILHDWSDEHCATLLKNCYDALPAHGKVVLVECILPVNPEATPKAQGVFHVDMIMLAHNPGGRERYEREFEALAKGAGFAAMKTTYIYANAWAIEFTK