RNA

Accession Number TCMCG079R25087
RNA Id XM_017574940.1
Length 1882bp
Gene LOC108338193
GeneID 108338193
Topology linear
Data_file_division PLN
Organism Vigna angularis
Definition PREDICTED: Vigna angularis trans-cinnamate 4-monooxygenase (LOC108338193), mRNA
dblink BioProject:PRJNA328963
Molecule type mRNA

Sequence:   AGCTACCGTCACAATCTCTTCTATAAAACCCCCAACCGCGCCACGCTTCCCAAATCACTCAACAAACCAAATAAACCAAACCGTACCACTTTTTTTCAATTCACCACCGTCACGTCACCAAAATGGATCTCCTCCTACTGGAGAAGACCCTCCTCGGCCTCTTCCTAGCGGCGGTGGTTGCCATTGTTGTCTCCAAGCTCCGCGGCAAGCGCTTCAAGCTCCCGCCGGGCCCACTCCCTGTTCCCATCTTCGGCAACTGGCTCCAGGTTGGCGACGACCTCAACCACCGCAACCTCACTCAACTCGCCAAGCGCTTCGGCGACATCTTCCTCCTCCGCATGGGGCAGCGCAACCTGGTCGTGGTTTCCTCGCCGGACCTCGCCAAGGAGGTGCTGCACACTCAGGGAGTGGAGTTCGGCTCCCGCACCCGCAACGTCGTCTTCGACATCTTCACCGGCGAGGGCCAGGACATGGTCTTCACCGTCTACGGCGAGCACTGGCGCAAGATGCGACGCATCATGACCGTGCCCTTCTTCACCAACAAGGTCGTCCAGCAGTACCGCCACGGTTGGGAGGCGGAGGCCGCCGCCGTTGTGGACGACGTCAGGAAGAATCCCGAAGCGGCAGTCTCCGGCGTGGTGATCCGCCGCAGGCTCCAGCTCATGATGTACAACAACATGTACCGCATCATGTTCGACCGGAGATTCGAGAGCGAGGAGGACCCTCTGTTCCAGCGTCTCAGAGCGCTGAACGGCGAGAGGAGTCGGTTGGCTCAGAGCTTTGAGTATAACTATGGCGATTTCATTCCCATCTTGAGACCCTTCTTGAAGGGTTACTTGAAGATTTGCAAGGAGGTGAAAGAAACCAGGTTGAAGCTTTTCAAGGATTACTTCGTGGACGAGAGGAAGAATATTGGAAGCACGAAGAGCACTAACAACGAAGGACTTAAATGTGCTATTGATCACATTTTGGATGCTGAGAAAAAGGGCGAGATCAACGAAGACAACGTACTTTACATTGTTGAGAACATCAACGTTGCTGCAATTGAAACAACTCTCTGGTCAATTGAATGGGGTATTGCTGAGCTTGTGAACCATCCAGAGATTCAGCAGAAAGTGAGGGATGAAATTGACAGAGTTCTTGGAGCAGGGCATCAGGTGACTGAGCCAGATATCCAAAAGCTTCCATACCTTCAAGCAGTGGTGAAGGAAACCCTTCGCCTCAGAATGGCAATCCCTCTCCTTGTCCCACACATGAACCTCCACGATGCTAAGCTTGGTGGCTTTGACATCCCAGCTGAAAGCAAGATTTTGGTGAATGCATGGTGGCTGGCGAACAACCCTGCACACTGGAAGAAGCCAGAAGAGTTCAGGCCTGAGAGGTTCTTCGAAGAGGAATCGCATGTGGAAGCGAATGGCAATGACTTCAGGTACCTTCCCTTTGGTGTTGGGAGAAGAAGCTGCCCCGGAATCATTCTTGCATTGCCCATTCTTGGCATCACTTTGGGACAATTGGTCCAAAACTTTGAGCTCTTGCCTCCCCCTGGGCAGTCCCAGATTGACACCAGTGAGAAAGGAGGACAGTTTAGCTTGCACATACTAAAGCATTCCACCATTGTTGCAAAGCCAAGGTCCTTTTAGACTTCACCACATCATCATTACCAATCCCCTTTATTATTTTTTCTTTCTTACTCTCCCTGTATTATCGATCTTTCAAAATGGGGTTGCTCCATGCCATGTATAATTGGCCTCCTGATGGGTAGGTGGTGATGTATCTGTTGGTCCCATTGTAATTCTCTCACAACTTCAACTCATGAATGATTTTGAGATGGTTTTGTAATAAACTTACACTTTTGTCTCTAATACTTCACCCACATTTCATC