RNA

Accession Number TCMCG022R18791
RNA Id XM_010064556.3
Length 1928bp
Gene LOC104450122
GeneID 104450122
Topology linear
Data_file_division PLN
Organism Eucalyptus grandis
Definition PREDICTED: Eucalyptus grandis probable bifunctional methylthioribulose-1-phosphate dehydratase/enolase-phosphatase E1 (LOC104450122), mRNA
dblink BioProject:PRJNA698663
Molecule type mRNA

Sequence:   GCCATTTTCTTTCTCTCCTGCGCACACGACAAAAGGCTGCTCGGCAACCCAGCCTCCAGTCTAAGCTCACCATCTCCGAATCTCTCTCTCTCTCTCTCTAACGGACCCGATGGCCGCCGCGACGGCGACGCCGGAGAACGGCGGGGGAGTGGCGACTGCGTCTCAGGCGTACCTGGAGAGCAAAGCGGTGAAGGACACCAGGAGCTTGATGTCGGAGCTCTGTCGCCACTTCTACACCCTGGGGTGGATGTACGGGACGGGCGGCAGCATCGCCATGAAGGTCCACGACGACTCCGTGCCGCGGCCTCACCAGCTCGTCCTCTTGTCCCCCTCCGGAGTCCAGAAGGAGAGAATGGAACCCGAGGACATGTACGTGTTGTCTGCCGATGGTTCTACCTTGTCTTCGCCGTCTCCGAAGCCTTACCCAAATAAGGCACCTAAGTGTACGGACAGCACTGCTGTTTTCTTGAAGATATTTGAGTTACGCAATCCAGGAGCTGCCATCCACAGTCATGGGGTGGAATCATGCCTTGCAACCATGCTCAATCCCTTAGCAAAGGAATTTAGAATTACTCATATGGAGATGATTAAAGGAATCCAAGGGCATGGTTATTATGACGAACTTGTGATCCCAATCATAGAGAATACCGCTCATGAATATCAACTCACGGAATCTCTTGCAAAAGCGATAGAAGCGTACCCAAGAGCGACAGCTGTACTTGTTCGGAACCATGGTATATATTCATGGGGAGACTCATGGATCAGTGCTAAAACACAGGCTGAATGTTACCATTATCTCTTTGATGCGGCGATCAAACTTCATCAAATGGGTTTGGATTGGTCATCTCCAAATCATGGCCCTCTTCAATATGGCAAAGGCACATTAGCTGATGATGGGAAGGCTGGAATAATTGGATCTGGTCTTCAAATCAAGCCGCTTCCGAGCTGCATTCTTCTGGACATTGAAGGAACCACTACTCCAATATCATTTGTGACTGAAGTTCTCTTTCCATATGCACGGGATAATGTTGGGAGGCATTTGTCTGCGACATTTGAAACTGTAGAAACTCAAGATGACATCAAATTGTTAAGGAGCCAGGTTGAAGATGATTTGGCAAAAGGTGTTCTTGGGGCCTTGCCCATTCCTCCAGATGAGGAAGGGAAANGGAAAGTTATAGCGGCTTTGGTTGCTAACATTGAAGCAATGATAAAAGCTGATCGCAAGATCACTGCCTTGAAACAATTGCAAGGTCACATATGGCGATCTGGGTTTCAGAATCAAGAATTGAAGGGAGTGGTATTTGAGGATGTACCGGTGGCTCTTGAAAAATGGAATGCCCTGGGCATAAAGGTATACATATATTCTAGTGGCAGCAGATTAGCACAAAGACTCTTATTTGGGAATACAAATCATGGAGATCTGAGGAAGTATCTGTATGGATTTTTTGACACTACAGTGGGGAACAAAAAAGAAACAAATAGTTATGTCGAGATATCGGAGTCACTAGGAGTTGATAAGCCATCGGAGGTATTATTTCTGACTGATATCTATCAAGAAGCTGTTGCTGCAAAGAATGCAGGCCTTCAGGTGATTGTCTCTGTCCGGCCTGGAAATGGACCTCTTCCAGAAAATCATGGGTTCAAAACAATCCATTCATTCATAGATATCTGATGGCAGAGTTTGGCGTAGTCATCCTGAATCTAGTATTGGTAGATGGCTCATCGATTCTCATGTTATCTTGCTCGTGTTATTGGTTATGGATCAGACGTGTAGTGCGTGTTTGTTTTTCCAACCATCATAGCAAGTTAACAGCACATTGACCTCTATTGCGTATCCTGACAAAGAACAACCTCTGTTGCCTGTCCCTCATGTAGTCAGTAGACCTTGTATATCAAGAAATGTATGCACATGTCCTTACTTATTGTTA