CTTACAATGGCCCGGTCTATTTCATACTCATTTAAAAGACTTATTGTGAGTTTTTTGGCTGTAACCTTAATATGCTTGTG GAGCATGAATTCCTCAAGAGTCGATGAAAACTTTAGTGCACGGGATTCTCAGGAAGTGGAAAAACTATTTTATGTCGAAT CCGGAAAGTGTAAAATGCGTTATGTGAATCCCTTTAATGCGGAGTTTTTGAAAATCAATCACCCAAAGGCATTTATACCG TGCACAAATGAAAGTGATCTTATTTCTGTACACTACGATAAAATATTGAATCAATATGTGCTCCATACAAATGAGGAAGT ACTACATGAGCTCTCCGAGTCAAAAACGAATGACTTTGCTTGTTTTTATCAGAAAATTATTTATGGTCAATCAGCGGAGC ATTACGACGGGAAAGGTGTAAAAACAAAAATCAGTCAGAATCATTTGGTGCCCTTGGATGTCGAAGGGATGTTGGTGGAG TGCAGGACAGCTGACGAAATGAGAGTCCTTCAAAGAGATGCCTTCGTGTTTGTGCAATACAAGGATCCACCACAGAATGT GAAGCCAGTTAAAAAGGCCAGTGTTATTATGTACGGTATAGATACCGTCTCAAGGACCAATCTTCGCCGCATGATGCCCA TGGTATTCGAGTTCCTAAAGTCTCCGGGATGGTACGAAATGATGGGCTACAATAAGGTCGCGGATAATTCATTTCCCAAC ATATTCGCTATGCTCACTGGCTTTTCACCCGAGTCGGCAGAGACTCAAATTTGTAACACGGATGTTGATGGATGTTTGGA TAAAATACCTTTTATATGGAAGGATTTCAAGAAAGACGGTTATTTGACGGCTTATGCTGAAGATGAGGAGCACTCGAATA CCTTCAATTATGCAAAGCCAGGCTTCGCAGTGAAGCCCACCGATTATTATTTTCGACCTTTTCTAACCGCCCTGGAAAAT GAAACTTTTATCCAATATTGCCCGGGTTGCGTAATGAAATATTGTCTGGGGCGTCGACTTGCCAGCAGCTATATCTTCGA TTACTGCCGCCAGTTTATGCAACGATTCGTGGCCGATCGACCTATTTGGGGCATGTTTTGGACGAATCATTACAGCCACG ATGATTTATTTATGCTTTCGGCCATGCAACACAAAATCCTAGAAGATCTGCTCAGTTTTGAAAAGGATGGGGTTTTCGAG CATACCATAATGATATTCTTCTCGGATCACGGAGCTCGTTTCGGTCCCCTTATGTACACGAAAGAAGCTTTTCTAGAGGA GCGTCTGCCCATGATGTTTATTTACTTGCCACCCTGGTTCCGGAAGAAATATCCCCGCTATGTGGAGGCTCTCGCCCAGA ATCAGAATCGGTTGAGTTCCAACTTCGACCTGTACAATACCTTGAAACACATTATAAACATTGAAGGATTGGTGGAGGAT ACCAAGTGGTCCTACGACTGCCCCCAGTGTCAGTCGCTATTCTACCCATTGCCAGAAAGTCGAAGCTGCTCAGAGGCTGC CATACCGGAGGCTTACTGTACTTGCCACAACTACGAGGAAATCAAGGAAGATCAAGGAACTTGGCGCTTGGCCAATCTGG TTGTTGATCGCATGAACAAATACCTTCATTACCATAATCTGCAGAATCTGTGTAGCAATCTTACCCTGAGAGTAATCAAC AGCACCGAAGTAAGAATGGATGATAAGGACGTCGATCTAGCGAATGGAATGCGACACTACCATACCAAATTTCAGGTTCA TCAGAATTTGGCTGAGTTCTTTGCCACCGTTCTGTACGATAAGCAGACAGAAGAGCTCCAAATGAATGTGGAGCTCATCA GTCGAACTAATATGTATGGTACCGATTCAGAGTGCGTTAACAATAAGATTCAAAAGTTATATTGCGTTTGCTTGTCAAAG CTGCGAGCTATAATAAAGTAAAAATATACTTGGAAGTTCAAT
Transcript terminates at site supported by polyadenylated cDNA.
5' UTR based on RNA-Seq data.
Translation start supported by identification of signal sequence (Pei et al., 2018, PMID: 29890119).