RNA

Accession Number TCMCG006R50920
RNA Id XM_013847821.2
Length 2015bp
Gene LOC106407045
GeneID 106407045
Topology linear
Data_file_division PLN
Organism Brassica napus
Definition PREDICTED: Brassica napus universal stress protein PHOS34-like (LOC106407045), transcript variant X1, mRNA
dblink BioProject:PRJNA293435
Molecule type mRNA

Sequence:   AAAACAGTTAAAATAGAGTCCAAAGGAAATCAGTCGTAACTCGAAATCCACACGTTTCTTTTAGCATGAAAGGGACACATGCCCACTATACGAACCATCACCACGCTTCAGCGACAAGGACATCTCCGGCGAAGATCTAATCGGCTGGCTCACCGGAAACAGAGCCCCGTTCAAAGCGCCTCGCCGTCGACGACATCAGGAGATGAAAACGTCACTATGTACAACACCTTAGTCTTTAGCGTGAGATCTCCATACATCGTAGAAAAAAAATCAAATGAGAATGATTTGATTCTCCATTGAAAACCAACAGACCCACAAGAGAACTAAAGCCAAATGATCTCTCTTCTTAATTTGAAGTTTCTATGGAAGAACAACGTTCTCGATCCAATCGAGCAACAAAACCGATAGAAACAGAGATAGCTTGAAAAAGATAAGATATGACAAAAGTCGGGATAAACCCGGAGAAGACCAACGTCACCACCGCGAAGAGAAGTGAGACGTGGAGCCAAGAGCCAACGGAAACATCGGAAGAGCTGATGTACCGTCGGAGCCAAAAGCCGGCTGACCACCAAAAAGAAGATGTGACGCCGGAGACCAAAGCCGGCGAAATCAGTGCTGAGAGAGCCACTGTTTCCCGGAAACTGAAGCCCAATAAATGAGAGTCATGGCCGGAAAAGGAAACCGACCAAAAAAACAGAGCTTTGGTCTCTACTCAACTCCTCCTTGTTAAAGATTACAGTGACGGAACAGAGAGGAGAGAGAGACCGGGATGGGTAAAATATGTGGCCAACAGTTCCACTACTCAGCACGTTCGCGTATTTTTCAAAAAATGAACATTCAATAATACTAAGAGCTAATCCATTATCCAAACCATTAGAGCAATAAATAACGCATAAAAAAATTATACGTTAAGTATATTCTTCATCTTCATATAGTAATCAAAGAAGTTTCTATAATCATCAAATCGGAAGCAAGAGAGAGAGAGAAGAAACATGAACCCAGATTCCGATCACCCTCACCTCCCCACCATCAAGATCCACCACCCCTCCTCCCCTCGCCACTCCCACCACCACCACCACTCCTCCTCCACTCCCTCCGCCGCAACCCCCACCCCCACCGCCGGCGCCCGCCGTAAAATCGGAGTCGCGGTCGACCTCTCGGAGGAAAGCTCCTTCGCCGTCCGCTGGGCCGTCGATCACTACATCCGCCCCGGAGACGCCGTCGTCATCCTCCACGTCTCCCCCACCTCCGTCCTCTTCGGCGCCGACTGGGGCCCTCAGCCTCCTTCCTCCGCCGATCAGACGCCTCCGAAGCCTAGCCAGGAGGATTTCGACGCGTTCACGGCCTCAAAGGTGTCCGATCTGGCGAGGCCGTTGAAGGAAGCGGGGTTCCCTCACAAGATCCACGTGGTGAAGGATCACGATATGAGGGAGAGGCTGTGTCTCGAGATCGAGAGGCTTGGTTTGAGCGCGGTGATCATGGGGAGCCGAGGGTTTGGAGCTGAGAAGAGAGGGAGCGATGGGAAGCTTGGCTCTGTTAGTGATTATTGCGTTCACCATTGTGTTTGTCCTGTTGTTGTGGTTAGGTATCCTGATGATCGGGATGGTCCTGCTCCTCCTGGGAATGGTACTCGGGATGCTATTGTCACTGTTAAGTCAGGTAGGGATGATGATGATCAGGATGCTGATGCTTCTTCTGCTCATCATGAACACATCAAAGATGAGTAATGCGTCTTCGAGGCTCATTGGATCCACCCTCTTCACAGCAAGTTTGTTAGGTACCACTGATGCATGGAAACAATGGGGTTTAAGCGGATTTGTGCAGAGGAGTGTGTTCGTGTGTGTGTTTGTGCTATCTTTTGCAATCAATAGGTCTCTGGAATCTCCTCTGGATTCATTATTAGTCCTCTTTTCTTTTATATGATTCACCATGTATGATTTTCACATTAAAACAATGAAGTAGTTAGTATGAACACTGAAACCCTTTAAGGATTATGATATTCATCTTCAATCTGA