Gene Details:

Functional Descriptions:

  • Overexpression of DgATX led to increased tolerance, whereas the DgATX mutant resulted in decreased tolerance of chrysanthemum to cold stresses.
  • DgATX expression was also responsive to low temperature.
  • The dgmyb DgATX double mutant was more susceptible to low temperature than the dgmyb and DgATX mutants.

Literature:

Gene Resources:

Orthologs:

Sequences:

cDNA Sequence
  • >evm.TU.scaffold_546.78-Cmo
    ATGGATATTGATTCTCTGTTTTCCGATCAAATATCCATTCTCCTCGAACCACCTTCACATGTTCAAATTCAGGAGTACTTCAATGAGCTTATTACAATTAATAAACATTGTAATGGGATTCAAGTCAAACCCACCAATCTTTATGGAAAAGGTGTTTATGCTGAAATGGATTTTGAAGAAGGGGACCTTGTTTTGAAGGACCAAATGCTTGTTGGTGTGCAGCATTCCTCAAATAAGGTTGATTGTCTTGTATGTAGTTGCTGCTTTCGTTTTATTGGTTCAATTGAACTTCAAATTGGTAGGAAGCTCTATCTGCAGGGTTTAGGCAGTGAAACAGATTGTTCTGGTATGGTATCCTCGGATGGTTCTGACATGGATGATCATGTAGAGTCTCAAAAGTGCTCTTCTACAAGTTCTAGAAATAAATTTCAGCTTCCTACCGAGACAGTAGAATCTTTAATGCATGAGAAATTAGCATTGCCATACTCAAATGAGTTCCCGTTGCCTTCGGTTATCAATTGTCCTGGTGGATGTAAAGAAGTTTACTACTGTAGCAAATCTTGTGCACAGGCTGATTGGGATGTATGCCATTCTCTACTTTGTACTGGAGATGGGTCGATAAGCCATAAGGCACTCTTAAAATTTGTAGAACATGCCAATGAGACGAATGACATTTTCCTTCTTGCTGCCAAGGCGATTTCTTCTACAATCTTAAAATACAAGAAGTTGAAAGCAGCATTTAGTAAAGAGAAAAAGAAGAATAACATTTCTGATGTTTTAGGCAACCATAATTTTTCTCTTCTTTTGAAGGCTTGGAAGCCTATATCAATGGGATACAAGAAAAGGTGGTGGGATTGCATATCTTTGCCCGATGATGTTGATACTTCTGATGAAGCCGCATTTAGAATGCAGATAAGACAACTGGCTTTTGAGTCACTGGAACTCTTGAAGGCAGCCATATTGGATGAGGAATGTTTGCCATTGTTCTCCCTGGAAATATACGGGCATATTATCGGCATGTTTGAGCTAAATAACCTTGATTTAGTTGTAGCATCTCCAGTGGAGGATTACTTTTTGCACATAGATGATCTACCAGAAGCTGGAAAGAAAGAAGTTGAGGAAATAACGCGGCCAATTCTTGATGCTCTAGGGGAGGACTATTCAATTTGTTGCCAAGGCACAGCATTTTACCCTCTCCAGAGTTGCATGAATCATTCTTGTTGTCCTAGTGCTAAGGCTTTTAAACGGGAGGAGGACAGAGATGGACAAGCAGCCATACTTGCATGCAGGTCCATCAAGAAGGGAGAAGAGGTTACCATATCATACATAGATGAAGACCTCGAATTGAAAGAGAGACGAGCACTGCTTGCAGATTATGGTTTTAATTGCAAATGCCCCAGGTGTATGGAAGAAGAAGCATAG
CDS Sequence
  • >evm.TU.scaffold_546.78-Cmo
    ATGGATATTGATTCTCTGTTTTCCGATCAAATATCCATTCTCCTCGAACCACCTTCACATGTTCAAATTCAGGAGTACTTCAATGAGCTTATTACAATTAATAAACATTGTAATGGGATTCAAGTCAAACCCACCAATCTTTATGGAAAAGGTGTTTATGCTGAAATGGATTTTGAAGAAGGGGACCTTGTTTTGAAGGACCAAATGCTTGTTGGTGTGCAGCATTCCTCAAATAAGGTTGATTGTCTTGTATGTAGTTGCTGCTTTCGTTTTATTGGTTCAATTGAACTTCAAATTGGTAGGAAGCTCTATCTGCAGGGTTTAGGCAGTGAAACAGATTGTTCTGGTATGGTATCCTCGGATGGTTCTGACATGGATGATCATGTAGAGTCTCAAAAGTGCTCTTCTACAAGTTCTAGAAATAAATTTCAGCTTCCTACCGAGACAGTAGAATCTTTAATGCATGAGAAATTAGCATTGCCATACTCAAATGAGTTCCCGTTGCCTTCGGTTATCAATTGTCCTGGTGGATGTAAAGAAGTTTACTACTGTAGCAAATCTTGTGCACAGGCTGATTGGGATGTATGCCATTCTCTACTTTGTACTGGAGATGGGTCGATAAGCCATAAGGCACTCTTAAAATTTGTAGAACATGCCAATGAGACGAATGACATTTTCCTTCTTGCTGCCAAGGCGATTTCTTCTACAATCTTAAAATACAAGAAGTTGAAAGCAGCATTTAGTAAAGAGAAAAAGAAGAATAACATTTCTGATGTTTTAGGCAACCATAATTTTTCTCTTCTTTTGAAGGCTTGGAAGCCTATATCAATGGGATACAAGAAAAGGTGGTGGGATTGCATATCTTTGCCCGATGATGTTGATACTTCTGATGAAGCCGCATTTAGAATGCAGATAAGACAACTGGCTTTTGAGTCACTGGAACTCTTGAAGGCAGCCATATTGGATGAGGAATGTTTGCCATTGTTCTCCCTGGAAATATACGGGCATATTATCGGCATGTTTGAGCTAAATAACCTTGATTTAGTTGTAGCATCTCCAGTGGAGGATTACTTTTTGCACATAGATGATCTACCAGAAGCTGGAAAGAAAGAAGTTGAGGAAATAACGCGGCCAATTCTTGATGCTCTAGGGGAGGACTATTCAATTTGTTGCCAAGGCACAGCATTTTACCCTCTCCAGAGTTGCATGAATCATTCTTGTTGTCCTAGTGCTAAGGCTTTTAAACGGGAGGAGGACAGAGATGGACAAGCAGCCATACTTGCATGCAGGTCCATCAAGAAGGGAGAAGAGGTTACCATATCATACATAGATGAAGACCTCGAATTGAAAGAGAGACGAGCACTGCTTGCAGATTATGGTTTTAATTGCAAATGCCCCAGGTGTATGGAAGAAGAAGCATAG
Protein Sequence
  • >evm.TU.scaffold_546.78-Cmo
    MDIDSLFSDQISILLEPPSHVQIQEYFNELITINKHCNGIQVKPTNLYGKGVYAEMDFEEGDLVLKDQMLVGVQHSSNKVDCLVCSCCFRFIGSIELQIGRKLYLQGLGSETDCSGMVSSDGSDMDDHVESQKCSSTSSRNKFQLPTETVESLMHEKLALPYSNEFPLPSVINCPGGCKEVYYCSKSCAQADWDVCHSLLCTGDGSISHKALLKFVEHANETNDIFLLAAKAISSTILKYKKLKAAFSKEKKKNNISDVLGNHNFSLLLKAWKPISMGYKKRWWDCISLPDDVDTSDEAAFRMQIRQLAFESLELLKAAILDEECLPLFSLEIYGHIIGMFELNNLDLVVASPVEDYFLHIDDLPEAGKKEVEEITRPILDALGEDYSICCQGTAFYPLQSCMNHSCCPSAKAFKREEDRDGQAAILACRSIKKGEEVTISYIDEDLELKERRALLADYGFNCKCPRCMEEEA