RNA

Accession Number TCMCG046R07823
RNA Id XM_008788298.2
Length 1876bp
Gene LOC103704834
GeneID 103704834
Topology linear
Data_file_division PLN
Organism Phoenix dactylifera
Definition PREDICTED: Phoenix dactylifera probable thiamine biosynthetic bifunctional enzyme, chloroplastic (LOC103704834), transcript variant X3, mRNA
dblink BioProject:PRJNA249070
Molecule type mRNA

Sequence:   TCTCCCAAACACGAGACTCCCGTTGATTTTTCCGCCGACGGCCCGAGTTCACGCCGGCCGGAGAGGGGTCTTCGTCGCCAGAGCGAGCGCTAGGGCTCCCATGATCGCACCGATGTCGGAAGCCATGGACGCTGAGAACGGAGGGAGGGGACAGCGGAATATGCCGCACGTTCTTACGGTCGCCGGCTCGGACTCCGGCGCCGGCGCCGGAGTCCAGGCCGACATCAAGGCGTGCGGGGCGCTCGGGGTTTACTGCTCTTCGGTTATCACCGCCGTCACGGCGCAGAACACCGTCGGCGTTCAGGGAGTTCATCCGGTTCCGGAGGAGTTCGTAGCAGAGCAGTTGCGATCAGTGCTTTCCGACATGGAAGTCGATATAGTGAAGACAGGGATGCTTCCTTCGGTTGGAGTAGTTAAAGTTTTATGTGATAGTCTTAAAGAGTTCCCTGTTCGAGCTTTAGTGGTGGACCCAGTTATGGTATCTACAAGTGGGGATATGCTTTCTGAACCATCTACCCTTGCTGGGTATCGGAACGAGCTTTTTGCGATGGCTGATATTGTTACCCCAAATTTGAAAGAAGCATCAGCTCTACTTGGGGGTGTGTCTCTGAGAACAGTGGCTGACATGTGTTCTGCAGCAAAATCCATACATAATTTAGGTCCTAGATATGTGCTTGTGAAGGGTGGGGATTTACCAGATTCGTCAGATGCCATTGATATATTCTTTGATGGAGAAGAATGTCATGAGCTATATGGATCACGCATAAAGACTCGCAACACTCATGGAACTGGGTGCACTCTGGCTTCATGTATAGCAGCAGAGCTAGCAAAAGGTTCTCCAATGTTGCATGCTGTTCAGACAGCCAAGGCCTTTGTGGAGAGTGCTCTTAATTATAGCAAGGATATTGTCATTGGGAATGGACCTCAAGGGCCTTTTGATCACCTATTCAGGCTTAAGAGTCAGAACGACAATGTAGGCCTGAAACCACAATTTGATGCAAATGATCTGTTTTTGTATGCTGTCACTGATTCTGGAATGAACAACAAGTGGGATCGTTCGATTACAGATGCTGTTAAAGCTTCCATCGAAGGAGGTGCCACGATTATTCAGTTAAGAGAAAAGGATGCTGAAACACGAAATTTTGTGGAAGCAGCTATGGCGTGCATGGAAATTTGCCGGTCCCATGGTGTGCCGCTGCTGATCAATGATCGGGTCGATGTTGCCCTTGCTTGTGATGCTGATGGTGTGCATGTGGGACAGTCTGACATGCCAGCACGAGTTGTTCGCAAGTTATTAGGACCACGAAAGATCATTGGTGTCTCCTGCAAGACCCCAGCTCAAGCTGAACAGGCCTGGATCGATGGTGCTGACTACATTGGCTGTGGTGGTGTTTTTCCAACTACCACAAAGGAAAACAATCTTACTGTCGGATTGGATGGCTTGAAGGCTGTTTGTTTGGCCTCCAAGTTGCCAGTGGTTGCAATTGGTGGTATCGGTCCCGGGAATGCTCATTCAGTGATGAAAATTGGTGCCCCGAATCTGAAAGGTGTTGCAGCAGTATCTTCTCTATTTGATCGTGCTTGTATTGTTAGCGAAGCCCAAAGGCTGAGGTCGGTCTTGATGGATGCATCATCAAGGGCAAGGTTATCAGTTTGAGCTCCTAGAAACACAGTTTATTTTTTCCATGGAAGAGGACTCAAGCTCTGTATGCTTCATCTTTTGACGAGTATTGCAAATAATACCTGGAATGACTCAACTTATAGGAATTGTTGGCGATCAGGTGGATGTGTGCTCTTTTACTATTTTTGTGGACATTTAGATGGCTAATTATGAAATGACATGGATAGGTGTAACATAGCTTTTGTTCTTTTAAAA