Gene Details:

Functional Descriptions:

  • DgbZIP3 interacts with DgbZIP2 to increase the expression of DgPOD for cold stress tolerance in chrysanthemum.
  • Overexpression of DgbZIP3 led to increased tolerance of chrysanthemum (Chrysanthemum morifolium Ramat.) to cold stress, whereas antisense suppression of DgbZIP3 resulted in decreased tolerance.
  • Overexpression of DgbZIP3 led to increased tolerance of chrysanthemum to cold stress, whereas antisense suppression of DgbZIP3 resulted in decreased tolerance.
  • The above results show that DgbZIP3 interacts with DgbZIP2 to regulate the expression of DgPOD to promote an increase in peroxidase activity, thereby regulating the balance of reactive oxygen species and improving the tolerance of chrysanthemum to low-temperature stress.

Literature:

Gene Resources:

Orthologs:

Sequences:

cDNA Sequence
  • >evm.TU.scaffold_1724.47-Cmo
    ATGAATAACAATAACAATAACTATAACAGTAACAAAAAGGAAGATGAACAGTTCGACTATGATTTTGAAGAACTGTATTCAATCGCACCTGATTTTCATCATCATCCGTCAGTCGCTGCCGGAGGTGGAGGAGGTTTGTTTGACGGTGTCGGATTTGACCGGAAATGCTACGCCGGTGGTGATCTGCCTCTTCCGTACACTAATTCGGATAACGTAAATAGATTTTCAAACTGTGGTGGAATGGCCGCAAACCCTCTCTGGTCTCAAAATCTTACTCCGAAGAACTCTAGTGTCACGATGACTATGGATTCCCAGTCGTCGATATGTGCTGATAGTCCAACCTCGGATACCAAACCAAAGGTTAGGCGGGATAACAATGTGATTGGGGCAACCAGTGATGATGAACAATCAGATGATGATGATACGGAGATTGAAGCTGGTCAATGTGAGCAGAGCAATGATCAAATGGATGTTAAACGGATTAAAAGGATGGTTTCAAACAGAGAATCTGCCAGGCGCTCAAGAAAAAGAAAGCAAGCACATCTAACAGATCTTGAGCAACAAGTGGAACAACTGCGAGGAGAGTACTCAACTTTGTTCAAGCAACTAACAAATGCTAGCCAACAGTTTAAAGATGCTTCAACTAACAACCGAGTGCTCAAGTCAGATGTGGAAGCCTTGAGAGCTAAGGTGAAGCTGGCAGAAGATATGGTCGCTAGGGGCTCATTAACATCTAGCCTAAGCCACCTTATTCAGAACCATTTAACCACTCCCCCGATGTTCAACAGTCAAAACATGTCTCGAATGGGCAACGTCTGTCCAACCATAACTGTTCGTGGGGATGACCATGGGTCCCACCCTGGCCTTTCTGTTCCAGGTCAACACGTGATGGTTGGACTAGGTACTAATCCTGACATTTTTAACGGTAATGTGAAAAATGGTATAAGTAGTGATGCTGGAAGCTGTGTATCTGATATATGGCCTTTGGATTCTCATCGTAACGTTTGA
CDS Sequence
  • >evm.TU.scaffold_1724.47-Cmo
    ATGAATAACAATAACAATAACTATAACAGTAACAAAAAGGAAGATGAACAGTTCGACTATGATTTTGAAGAACTGTATTCAATCGCACCTGATTTTCATCATCATCCGTCAGTCGCTGCCGGAGGTGGAGGAGGTTTGTTTGACGGTGTCGGATTTGACCGGAAATGCTACGCCGGTGGTGATCTGCCTCTTCCGTACACTAATTCGGATAACGTAAATAGATTTTCAAACTGTGGTGGAATGGCCGCAAACCCTCTCTGGTCTCAAAATCTTACTCCGAAGAACTCTAGTGTCACGATGACTATGGATTCCCAGTCGTCGATATGTGCTGATAGTCCAACCTCGGATACCAAACCAAAGGTTAGGCGGGATAACAATGTGATTGGGGCAACCAGTGATGATGAACAATCAGATGATGATGATACGGAGATTGAAGCTGGTCAATGTGAGCAGAGCAATGATCAAATGGATGTTAAACGGATTAAAAGGATGGTTTCAAACAGAGAATCTGCCAGGCGCTCAAGAAAAAGAAAGCAAGCACATCTAACAGATCTTGAGCAACAAGTGGAACAACTGCGAGGAGAGTACTCAACTTTGTTCAAGCAACTAACAAATGCTAGCCAACAGTTTAAAGATGCTTCAACTAACAACCGAGTGCTCAAGTCAGATGTGGAAGCCTTGAGAGCTAAGGTGAAGCTGGCAGAAGATATGGTCGCTAGGGGCTCATTAACATCTAGCCTAAGCCACCTTATTCAGAACCATTTAACCACTCCCCCGATGTTCAACAGTCAAAACATGTCTCGAATGGGCAACGTCTGTCCAACCATAACTGTTCGTGGGGATGACCATGGGTCCCACCCTGGCCTTTCTGTTCCAGGTCAACACGTGATGGTTGGACTAGGTACTAATCCTGACATTTTTAACGGTAATGTGAAAAATGGTATAAGTAGTGATGCTGGAAGCTGTGTATCTGATATATGGCCTTTGGATTCTCATCGTAACGTTTGA
Protein Sequence
  • >evm.TU.scaffold_1724.47-Cmo
    MNNNNNNYNSNKKEDEQFDYDFEELYSIAPDFHHHPSVAAGGGGGLFDGVGFDRKCYAGGDLPLPYTNSDNVNRFSNCGGMAANPLWSQNLTPKNSSVTMTMDSQSSICADSPTSDTKPKVRRDNNVIGATSDDEQSDDDDTEIEAGQCEQSNDQMDVKRIKRMVSNRESARRSRKRKQAHLTDLEQQVEQLRGEYSTLFKQLTNASQQFKDASTNNRVLKSDVEALRAKVKLAEDMVARGSLTSSLSHLIQNHLTTPPMFNSQNMSRMGNVCPTITVRGDDHGSHPGLSVPGQHVMVGLGTNPDIFNGNVKNGISSDAGSCVSDIWPLDSHRN