KF177345OpenDNA sequence record
PX091360nad1 · Callicarpa nudiflora
FASTA sequence
Coordinates shown at the beginning and end of each 60-nucleotide line.
>PX091360|Callicarpa nudiflora|nad1
1ATGTACATAGCTCTTCCAGCTGAAATACTTGGAATAATTCTACCACTTCTACTAGGAGTA61GCCTTTTTAGTGCTAGCTGAACGTAAAGTAATGGCTTTTGTGCAACGTCGAAAGGGTCCT121GATGTAGTGGGATCGTTTGGATTGTTACAACCTCTAGCAGATGGTTTGAAATTGATTCTA181AAAGAACCTATTTCACCAAGTAGTGCTAATTTCTCCCTTTTTAGAATGGCTCCAGTGGCT241ACATTTATGTTAAGTCTGGTCGCTCGGGCCGTTGTACCTTTTGATTATGGTATGGTATTG301TCAGATCCGAACATAGGGCTACTTTATTTGTTTGCCATATCTTCGCTAGGTGTTTATGGA361ATTATTATAGCAGGTCGGTCTAGTAATTCGAAATATGCCTCTCTAGGAGCATTACGATCT421GCAGCTCAAATGGTCCCTTATGAAGTCTCTATTGGTCTTATTCTTATTGTGCGCCTTGTG481AGCGCGTTTGGATCCGCGAAGGCAATCGCTCGGCTGTTCCCCTAACCCAACCCGGGAACG541GACCGGAGGGAACCGCAGCATGGGGAATGTCCGCGTCTCGTCGCAAGGCTCATTTTTAGT601TGTGGGTCATAGGGCGGGCAGCTTTATCGGCTCAAGGGCCGGGGCACAAGGGTCCTGGTA661CTATCCAGGTGCGAAGAACCCCGGAGGTGACTGCAATGAGCAGAAATCTCACTCACGGGC721CTAAACGACGAGCAAACACTCGAACGTGAGAGCAAGGGATCACCCAACGAATGGACGAGC781TCAAAGGGGGGAGTGAGGCAAGAACCATGCTTTCAGAGAAGTGGTGGTCCGAATCTTATC841TGAACTGCGAGAATAACTGACTAAGCCGTGCCATAAGGGGTCATTCTCCAAACGGGACGG901GGTCAAGCTTTTAGGTTGTTTAAGTAGGTTGGGTGACAGATCGGCCATAGGAGTACTCCG961GGATATAAACCAGGGCAACAAAAGTGGAGCATACGACGATGCCGCCCGTTTTCATTTCGT1021GGAAGTCCCCGGCAGAGGAAAGGGCTGTAGGTGATGGCGCGTTCTGCTTCTTATCTAGAG1081AGGGGCGCTGAAATCCTTTCTATTGGTTCGTGCGCGGCAGCTGGTATAGATGAAGAAAGG1141CGGGCCGTCGGGACCTATTCTATTATATTCTATTAATAGGCGGAAAAGCGAAATAGGAAA1201GCGGCCGAGCTGACTGATGAGTGCCTTTTTAGCCTTTAGAAAAAAGGCTCTCATGTGAAG1261CTAACATGGCTGGCTACATTCAAGTATAGCCAAATCACGATGAGACGGGACGGACGGTCA1321GAGGCCGCAGCGGGACTACCACTTGGGATGGGAATGGCTCAGCCCACATGCATCATTTGA1381TGAAAGCACTCCAGTCCAGGCGCCTCCTCGAAGTGCTTTGTCAACCACGCTTTCCCTCCC1441TCAAAACAATGCTCCTCGCTAAATGCCCTTCCTGGGGCTTGCCTTGCCTCAACATCTAAA1501TAAAGAAAGGGCGGGCGCCGAAGCAGCCCAGCCTCTTCAAGAAAGCTTTGCTTGGTAGGC1561GCTGCCTACTCACTCGGACAATGCTCTGAACACTTTCGTGTGCAGTTCCGCCCCCTTATC1621CCATGCTGAGTCACAGGCAGCGCCTCGAAAAGCACGGACGAGCCGCATGCAGGGAAACTT1681GCACGTGTGGTTCTGGCCGGGGACCCCGGTATACTGTACTAATATGTGTAGGTCCCCGTA1741ATTCGAGTGAGATTGTCATGGCGCAAAAGCAGATATGGTCCGGTATTCCCTTGTTCCCTG1801TATTGGTTATGTTCTTTATTTCTCGTCTAGCAGAAACTAATCGAGCTCCGTTTGATCTCC1861CAGAAGCGGAAGCTGAATCAGTTGCAGGCTATAATGTAGAATATGCGCGGGATGCGATCC1921TTAATAGTTCACTGTTGGCGGAAGCCAATGTCCCGGGGTCCCGTCCATGCACATCGCTCT1981CTCCAGGAGGTTGGCCGCCTATCCTAGATCTTCCCATTTCCAAGAAGATCCCCGGCTCGA2041TCTGGTTTAGTATCAAGGTGATTCTCTTTCTGTTCCTATATATATGGGTCCGTGCAGCAT2101TTCCACGATATCGTTATGATCAATTAATGGGACTTGGCCGGAAAGTGTTCTTGCCTCTAT2161CATTAGCTCGGGTAGTCGTCGTTTCTGGTGTTTTAGTCACCTTTCAATGGCTCCCTTAA
ATGTACATAGCTCTTCCAGCTGAAATACTTGGAATAATTCTACCACTTCTACTAGGAGTAGCCTTTTTAGTGCTAGCTGAACGTAAAGTAATGGCTTTTGTGCAACGTCGAAAGGGTCCTGATGTAGTGGGATCGTTTGGATTGTTACAACCTCTAGCAGATGGTTTGAAATTGATTCTAAAAGAACCTATTTCACCAAGTAGTGCTAATTTCTCCCTTTTTAGAATGGCTCCAGTGGCTACATTTATGTTAAGTCTGGTCGCTCGGGCCGTTGTACCTTTTGATTATGGTATGGTATTGTCAGATCCGAACATAGGGCTACTTTATTTGTTTGCCATATCTTCGCTAGGTGTTTATGGAATTATTATAGCAGGTCGGTCTAGTAATTCGAAATATGCCTCTCTAGGAGCATTACGATCTGCAGCTCAAATGGTCCCTTATGAAGTCTCTATTGGTCTTATTCTTATTGTGCGCCTTGTGAGCGCGTTTGGATCCGCGAAGGCAATCGCTCGGCTGTTCCCCTAACCCAACCCGGGAACGGACCGGAGGGAACCGCAGCATGGGGAATGTCCGCGTCTCGTCGCAAGGCTCATTTTTAGTTGTGGGTCATAGGGCGGGCAGCTTTATCGGCTCAAGGGCCGGGGCACAAGGGTCCTGGTACTATCCAGGTGCGAAGAACCCCGGAGGTGACTGCAATGAGCAGAAATCTCACTCACGGGCCTAAACGACGAGCAAACACTCGAACGTGAGAGCAAGGGATCACCCAACGAATGGACGAGCTCAAAGGGGGGAGTGAGGCAAGAACCATGCTTTCAGAGAAGTGGTGGTCCGAATCTTATCTGAACTGCGAGAATAACTGACTAAGCCGTGCCATAAGGGGTCATTCTCCAAACGGGACGGGGTCAAGCTTTTAGGTTGTTTAAGTAGGTTGGGTGACAGATCGGCCATAGGAGTACTCCGGGATATAAACCAGGGCAACAAAAGTGGAGCATACGACGATGCCGCCCGTTTTCATTTCGTGGAAGTCCCCGGCAGAGGAAAGGGCTGTAGGTGATGGCGCGTTCTGCTTCTTATCTAGAGAGGGGCGCTGAAATCCTTTCTATTGGTTCGTGCGCGGCAGCTGGTATAGATGAAGAAAGGCGGGCCGTCGGGACCTATTCTATTATATTCTATTAATAGGCGGAAAAGCGAAATAGGAAAGCGGCCGAGCTGACTGATGAGTGCCTTTTTAGCCTTTAGAAAAAAGGCTCTCATGTGAAGCTAACATGGCTGGCTACATTCAAGTATAGCCAAATCACGATGAGACGGGACGGACGGTCAGAGGCCGCAGCGGGACTACCACTTGGGATGGGAATGGCTCAGCCCACATGCATCATTTGATGAAAGCACTCCAGTCCAGGCGCCTCCTCGAAGTGCTTTGTCAACCACGCTTTCCCTCCCTCAAAACAATGCTCCTCGCTAAATGCCCTTCCTGGGGCTTGCCTTGCCTCAACATCTAAATAAAGAAAGGGCGGGCGCCGAAGCAGCCCAGCCTCTTCAAGAAAGCTTTGCTTGGTAGGCGCTGCCTACTCACTCGGACAATGCTCTGAACACTTTCGTGTGCAGTTCCGCCCCCTTATCCCATGCTGAGTCACAGGCAGCGCCTCGAAAAGCACGGACGAGCCGCATGCAGGGAAACTTGCACGTGTGGTTCTGGCCGGGGACCCCGGTATACTGTACTAATATGTGTAGGTCCCCGTAATTCGAGTGAGATTGTCATGGCGCAAAAGCAGATATGGTCCGGTATTCCCTTGTTCCCTGTATTGGTTATGTTCTTTATTTCTCGTCTAGCAGAAACTAATCGAGCTCCGTTTGATCTCCCAGAAGCGGAAGCTGAATCAGTTGCAGGCTATAATGTAGAATATGCGCGGGATGCGATCCTTAATAGTTCACTGTTGGCGGAAGCCAATGTCCCGGGGTCCCGTCCATGCACATCGCTCTCTCCAGGAGGTTGGCCGCCTATCCTAGATCTTCCCATTTCCAAGAAGATCCCCGGCTCGATCTGGTTTAGTATCAAGGTGATTCTCTTTCTGTTCCTATATATATGGGTCCGTGCAGCATTTCCACGATATCGTTATGATCAATTAATGGGACTTGGCCGGAAAGTGTTCTTGCCTCTATCATTAGCTCGGGTAGTCGTCGTTTCTGGTGTTTTAGTCACCTTTCAATGGCTCCCTTAA
Copy exports the uninterrupted nucleotide string. FASTA headers retain accession, species and gene context.
Related species records
Other publication-safe DNA records for nad1.