RNA

Accession Number TCMCG081R02912
RNA Id XM_002267203.4
Length 2844bp
Gene LOC100263333
GeneID 100263333
Topology linear
Data_file_division PLN
Organism Vitis vinifera
Definition PREDICTED: Vitis vinifera ATP-dependent DNA helicase DDM1 (LOC100263333), transcript variant X1, mRNA
dblink BioProject:PRJNA33471
Molecule type mRNA

Sequence:   TTCTTTGGGCAAATACTAAACTTCGTTTTCCCGCCTAGACCTGTGCAGGAAAGAGAAGAGAAAAATAAATAATATTTTGGAGCATCGCACTGTATATGTTTCGCCTCCACTCTCCCTTGTTTCCAGAACTGTCCATCTTCTCTTGTCGGTTGTGGTCTGCTCTCTGTAACCACCAACACCGCAGCTCTCAAGATTGTTAGGGTTAGAAAATGGTACCTGGTAACGAAGTAAAGGATGACGCCTCTGCGGATTCTCCGACTTCAGTCCTGGAGGATGAGGGTATTTGTGAGGAGAAAATTAAAGTTAAGATGGAGGATGACATACTTCATCCCCTCGATGCAAAAAATGGAGATTCTTCTCTTATATCCGGAACCATGGCAAAGGAAGAAGAGATGCTGATGAAAGAACGGGTGAAGGAAGAGGATGCAGAACAAGTAGTGACTCAGGAGGCCCCCCACTTGAATGACAGCCAGTTCACTAAATTGGATGAGCTTCTAACACAGACCCAGCTGTACTCAGAGTTTTTGCTGGAAAAAATGGATTCCATCACATTTAATCGTGTGGAGGAGAAAGAGAGTGAAATTGTTGAAGTAAAAAAGAGGGGTCGTGGTTCAAAAAGAAAAGCGGAATATAACAATAGGAAGGCCAAGAGAGCAGTTGCAGCCATGCTTACAAGATCTAAAGAAGGAGCTACTCCTGAAGATGTGAACCTCACCGAGGAGGAGAGAGCTGAGAAAGAGCAGGCTGGACTTGTACCCTTGTTGACAGGTGGAAAATTGAAGTCTTATCAGATCAAAGGTGTGAAGTGGCTGATCTCACTATGGCAAAATGGACTGAATGGGATCCTTGCAGATCAAATGGGGCTTGGAAAGACAATTCAAACTATTGGCTTCCTTGCACATTTAAAAGGAAAGGGGTTAGATGGCCCCTATTTGGTCATTGCTCCTCTTTCTACTCTCTCAAACTGGGCAAATGAAATAAAAAGGTTTGTGCCCTCAATAAATGCAATCATCTACCATGGCAATAGGAAAGAAAGAGATCAAATACGAATGAAGTATATGCCAAGAACAATTGGCCCCAAATTTCCTATAATTCTGACTTCTTATGAGGTTGCATTAAATGATGCTAGAAAGTATCTAAGGCATTACAATTGGAAATATCTTGTGGTTGATGAGGGGCACAGATTGAAGAACAGTAAATGCAAATTACTGAAGGAACTGAAGTTGTTACCCGTAGAAAATAAGCTTCTGCTCACTGGGACTCCTCTGCAGAACAACCTGGCAGAGCTTTGGTCTTTGTTAAACTTCATATTGCCTGATATTTTCTCATCCCATGAAGAATTTGAGTCCTGGTTTGATCTGTCAGGCAAGTGCAATAATGAAGCAGTGGTGGAAGAATTGGAAGAGAGGAAAAGGGCTCAAGTGGTGTCAAAACTTCATGCTATATTGCGTCCCTTTCTCCTTCGGAGAATGAAGTCAGATGTTGAGCAGATGCTTCCCAGAAAAAAAGAGATTATTTTGTATGCCACCATGACTGAGCATCAAAAGAATTTCAAGGATCATTTGGTTAATAAGACATTGGAGAATTATTTAAAAGAGAAAGCAAGCACTGGGCGTGGTGTGAAAGGAAAGCTTAACAATTTAATGGTCCAACTTCGGAAGAACTGTAACCATCCTGACCTCTTAGAGTCTGCCTTTGATGGTTCATATCTCTATCCTCCTGTAGAACAGATAGTTGAACAGTGTGGCAAATTCCGCTTGCTGGACAGATTGTTGGCAAGGTTATTTGCCCGCAAGCATAAAGTTCTGATCTTCTCTCAGTGGACTAAGATTTTGGATATAATGGAATACTATTTTAGCGAGAAAGGACTTGAAGTTTGTAGAATTGATGGTAGTGTGAGGCTGGATGAAAGAAAAAGACAGATTGAGGAGTTCAATGATATGAACAGCAATTGTAGAGTATTTCTTCTCAGCACTCGAGCTGGTGGGCTAGGTATCAATCTCACTGCAGCTGATACTTGTATATTGTATGACAGTGACTGGAACCCTCAAATGGATCTGCAGGCCATGGATAGATGTCATAGGATAGGTCAAACCAAGCCTGTTCATGTTTACCGGCTTGCAACTGCCCAATCTATAGAGGGCCGCATGCTGAAAAGAGCTTTCAGTAAGTTGAAACTTGAACATGTTGTGATTGGGAAAGGCCAGTTCCAGCAAGAACGAATCAAACCTAATATGGATGTTTTGGAGGAAGAGGATCTGCTACAACTGCTTCAAGATCAAGAAGATTCTGAAGATAAGTTGATACAGACAGACATCAGTGAAGAAGATCTGGACCGGATCTTGGATCGCAGTGACTTGATTGGTGATACCTCCAATGATGATGGGAGGTCTAACTCTGCCGCGGATGCCTTTCCCCTGAAGGGCCCTGGTTGGGAAGTGATGACACCAACCGCAAGTGGAGGCATGCTCTCTACCCTTAATAGCTAATAAAGGTTCTCTGATTGGGAGGTAGGAGCCAGGTATCTGTGTAAGAATGCTGGGTGTTTTGGTGTCTCTGGGCTTCAATTTTTTCACGTCATGGTTTTGTGTGAACCGAAGTATGCTCTGAAATTGAGCTCACTTTCAATTTTGTGAATGTCTGAAAAGATATACTTGGAAAGAGAGCTGATTTTTCGTTAGCCCCTTCTCCCAGACAGAGTCAAGAGGTTAATACCTTGAAGGTGATATATATGTAGACATTGCCATATTACTTAATGTACCTTGTACACCAGTATATTTTCTTAACTATCACAATCGTCGTATTTGTATTATGTATTTGGATTTGGATTCCAGTTGGACGCCA