KF177345OpenDNA sequence record
PP992923nad1 · Salvia rosmarinus
FASTA sequence
Coordinates shown at the beginning and end of each 60-nucleotide line.
>PP992923|Salvia rosmarinus|nad1
1ATGTACATAGCTGTTCCAGCTGAAATACTTGGAATAATTCTACCACTTCTACTAGGAGTA61GCCTTTTTAGTGCTAGCTGAACGTAAAGTAATGGCTTTTGTGCAACGTCGAAAGGGTCCT121GATGTAGTGGGATCGTTTGGATTGTTACAACCTCTAGCAGATGGTTTGAAATTGATTCTA181AAAGAACCTATTTCACCAAGTAGTGCTAATTTCTCCCTTTTTAGAATGGCTCCAGTGGCT241ACATTTATGTTAAGTCTGGTCGCTCGGGCCGTTGTACCTTTTGATTATGGTATGGTATTG301TCAGATCCGAACATAGGGCTACTTTATTTGTTTGCCATATCTTCGCTAGGTGTTTATGGA361ATTATTATAGCAGGTCGGTCTCTATATTCGAAATATGCCTCTCTAGGAGCATTACGATCT421GCAGCTCAAATGGTCCCTTATGAAGTCTCTATTGGTCTTATTCTTATTGTGCGCCTTGTG481AGCGCGTTTGGATCCGCGAAGGCAATCGCTCGGCTGTTCCCCTAACCCAACCCGGGAACG541GACCGGAGGGAACCGCAGCATGGGGAATGTCCGCGTCTCGTCGCAAGGCTCATTTTGAGT601TGTGGGTCATAGGGCGGGCAGCTTTATCGGCTCAAGGGCCGGGGCACAAGGGTCCTGGTA661CTATCCAGGTGCGAAGAACCCCGGAGGTGACTGCAATGAGCAGAAATCTCACTCACGGGC721CTAAACGACGAGCAAACACTCGAACGTGAGAGCAAGGGATCACCCAACGAATGGACGAGC781TCAAAGGGGAGTGAGGCAAGAACCATGCTTTCAGAGAAGTGGTGGTCCGAATCTTATCTG841AACTGCGAGAATAACTGACTAAGCCGTGCCATAAGGGGTCATTCTCCAAACGGGACGGGG901TCAAGCTTTTAGGTTGTTTAAGTAGGTTGGGTGACAGATCGGCCATAGGAGTACTCCGGG961ATATAAACCAGGGCAACAAAAGTGGAGCATACGACGATGCCGCCCGTTTTCATTTCGTGG1021AAGTCCCCGGCAGAGGAAAGGGCTGTAGGTGATGGCGCGTTCTGCTTCTTATCTAGAGAG1081GGGGCTGAAATCCTTTCTATTGGTTCGTGCGCGGCATCTGGTATAGATGAAGAAAGGCGG1141GCCGTCGGGACCTATTCTATTATATTCTATTAATAGGCGGAAAAGCGAAATAGGAAAGCG1201GCCGAGCTGACTGATGAGTGCCTTTTTAGCCTTTAGAAAAAGGCTCTCATGTGAAGCTAA1261CATGGCTGGCTACATTCAAGTATAGCCAAATCACGATGAGACGGGACGGACGGTCAGAGG1321CCGCAGCGGGACTACCACTTGGGATGGGAATGGCTCAGCCCACATGCATCATTTGATGAA1381AGCACTCCAGTCCAGGCGCCTCCTCGAAGTGCTTTGTCAACCACGCTTTCCCTCCCTCAA1441AACAATGCTCCTCGCTAAATGCCCTTCCTGGGGCTTGCCTTGCCTCAACATCTAAATAAA1501GAAAGGGCGGGCGCCGAAAAAAGCAGCCCAGCCTCTTCAAGAAAGCTTTGCTTGGTAGGC1561GCTGCCTACTCACTCGGACAATGCTCTGAACACTTTCGTGTGCAGTTCCGCCCCTTATCC1621CATGCTGAGTCACAGGCAGCGCCTCGAAAAGCACGGACGAGCCGCATGCAGGGAAACTTG1681CACGTGTGGTTCTGGCCGGGGACCCCGGTATACTGTACTAATATGTGTAGGTCCCCGTAA1741TTCGAGTGAGATTGTCATGGCGCAAAAGCAGATATGGTCCGGTATTCCCTTGTTCCCTGT1801ATTGGTTATGTTCTTTATTTCTTGTCTAGCAGAAACTAATCGAGCTCCCTTTGATCTCCC1861AGAAGCGGAAGCTGAATCAGTTGCAGGCTATAATGTAGAATATGCGCGGGATGCGATCCT1921TAATAGTTCACTGTTGGCGGAAGCCAATGTCCCGGGGTCCCGGGGACTCATTCTGACTGA1981AAAAAGGGGCGGGTCTTTACCAACTTCAAAATATTCGATTTTCCTACGCGAGCCTTATTG2041AAATTGAAAAGGCCCCAACCTATAGATATAGATAGGGTGTTAGCGCTTTAGTTTGATTGC2101AGGGCGCGTTAGCGCTTGACTAATAAGATAGAAAGGGCTTTTCTTGCTTGTTTAGTAAAG2161TCTCGCTTTTTATATTTATATTTATAGAAATAGGTGCTTGCTAGGGCACTCTTCATTCGA2221AACTAATGAGTGTCCGGTAGGGGCTTTCTGCCTTGTTATCAAAAGGGGAGTTGGGTAAAG2281CAAACTCCCTCCTTGGAGGAGCACGGGCTTAGTCAAGTAGAACCGGGTTGCGCTGCTTGA2341TGCTCTGATCGAAAACAAATCAGTGGGGCCATGCCGGTACGACTGAATATGCGTTAGAAA2401GGTCAATCCCTCCCCTACGACACCAAAAAACCGGGCCGAGCTTCTAAACAGCCCGCCCGC2461TTCCATATAACAATATCGTGGCAACGTAGACCTAAGTGGTCATATTGAATCCTTGGGAAC2521CATCACAAGTACGGCCGGCCTATATTATATTTGAACGAAAATGCCGTGTCGTCCAGCGGA2581GCCTATAAGAAGGTGACTCGCGCAGACAGCTGACTCCTTTTCAATAGAAAAGAATAGCCA2641AACCAACCCAGCTGGCTGGTCAATCTCAGAGATCTTATCGGCCGGCAAACCGGAGACGGA2701CGACCACGGTCCCGACCTTACCAGCACCGGAGGTGTACTAATCAATGAACCCCAGAAACC2761TACTTTCTTTTCTGACAAAATCAACCAAGCCTAAGCGGTCACGACAACATCCAAAGGCCA2821CCTTTGGATTCTTAAGTAGGGGGCAAGGAGGAGCACGTAGGAATGCCGACCACTACATAA2881GCCACTAGTGGCTCAGAGAAAGCGAGCAGCACCTTGTATAGGTTGGGCGGAGCTTGAAGA2941AGCGAGCCCTATCAGAATCAGAGAAAGCCATTGCGCGCTAGCCTAGCTAGCTAACGTTTT3001TCAGCTGGCTGTTATCTTAGTTGTAGCGCGCCTTCCTCCTTCTCTCACTTCGGAAAGATT3061TAGCAGTCTTTTTGATGACCTGGTCGAGAGAGTACGATACATCGGTGTAAAAGATTGAGT3121TGGATCTGTGAGGTTGGTTATAGTAAGGCCTGGTCGGAAGGTGTTCTTGCCTCTATCATT3181AGCTCGGGTAGTCTCCAGTGA
ATGTACATAGCTGTTCCAGCTGAAATACTTGGAATAATTCTACCACTTCTACTAGGAGTAGCCTTTTTAGTGCTAGCTGAACGTAAAGTAATGGCTTTTGTGCAACGTCGAAAGGGTCCTGATGTAGTGGGATCGTTTGGATTGTTACAACCTCTAGCAGATGGTTTGAAATTGATTCTAAAAGAACCTATTTCACCAAGTAGTGCTAATTTCTCCCTTTTTAGAATGGCTCCAGTGGCTACATTTATGTTAAGTCTGGTCGCTCGGGCCGTTGTACCTTTTGATTATGGTATGGTATTGTCAGATCCGAACATAGGGCTACTTTATTTGTTTGCCATATCTTCGCTAGGTGTTTATGGAATTATTATAGCAGGTCGGTCTCTATATTCGAAATATGCCTCTCTAGGAGCATTACGATCTGCAGCTCAAATGGTCCCTTATGAAGTCTCTATTGGTCTTATTCTTATTGTGCGCCTTGTGAGCGCGTTTGGATCCGCGAAGGCAATCGCTCGGCTGTTCCCCTAACCCAACCCGGGAACGGACCGGAGGGAACCGCAGCATGGGGAATGTCCGCGTCTCGTCGCAAGGCTCATTTTGAGTTGTGGGTCATAGGGCGGGCAGCTTTATCGGCTCAAGGGCCGGGGCACAAGGGTCCTGGTACTATCCAGGTGCGAAGAACCCCGGAGGTGACTGCAATGAGCAGAAATCTCACTCACGGGCCTAAACGACGAGCAAACACTCGAACGTGAGAGCAAGGGATCACCCAACGAATGGACGAGCTCAAAGGGGAGTGAGGCAAGAACCATGCTTTCAGAGAAGTGGTGGTCCGAATCTTATCTGAACTGCGAGAATAACTGACTAAGCCGTGCCATAAGGGGTCATTCTCCAAACGGGACGGGGTCAAGCTTTTAGGTTGTTTAAGTAGGTTGGGTGACAGATCGGCCATAGGAGTACTCCGGGATATAAACCAGGGCAACAAAAGTGGAGCATACGACGATGCCGCCCGTTTTCATTTCGTGGAAGTCCCCGGCAGAGGAAAGGGCTGTAGGTGATGGCGCGTTCTGCTTCTTATCTAGAGAGGGGGCTGAAATCCTTTCTATTGGTTCGTGCGCGGCATCTGGTATAGATGAAGAAAGGCGGGCCGTCGGGACCTATTCTATTATATTCTATTAATAGGCGGAAAAGCGAAATAGGAAAGCGGCCGAGCTGACTGATGAGTGCCTTTTTAGCCTTTAGAAAAAGGCTCTCATGTGAAGCTAACATGGCTGGCTACATTCAAGTATAGCCAAATCACGATGAGACGGGACGGACGGTCAGAGGCCGCAGCGGGACTACCACTTGGGATGGGAATGGCTCAGCCCACATGCATCATTTGATGAAAGCACTCCAGTCCAGGCGCCTCCTCGAAGTGCTTTGTCAACCACGCTTTCCCTCCCTCAAAACAATGCTCCTCGCTAAATGCCCTTCCTGGGGCTTGCCTTGCCTCAACATCTAAATAAAGAAAGGGCGGGCGCCGAAAAAAGCAGCCCAGCCTCTTCAAGAAAGCTTTGCTTGGTAGGCGCTGCCTACTCACTCGGACAATGCTCTGAACACTTTCGTGTGCAGTTCCGCCCCTTATCCCATGCTGAGTCACAGGCAGCGCCTCGAAAAGCACGGACGAGCCGCATGCAGGGAAACTTGCACGTGTGGTTCTGGCCGGGGACCCCGGTATACTGTACTAATATGTGTAGGTCCCCGTAATTCGAGTGAGATTGTCATGGCGCAAAAGCAGATATGGTCCGGTATTCCCTTGTTCCCTGTATTGGTTATGTTCTTTATTTCTTGTCTAGCAGAAACTAATCGAGCTCCCTTTGATCTCCCAGAAGCGGAAGCTGAATCAGTTGCAGGCTATAATGTAGAATATGCGCGGGATGCGATCCTTAATAGTTCACTGTTGGCGGAAGCCAATGTCCCGGGGTCCCGGGGACTCATTCTGACTGAAAAAAGGGGCGGGTCTTTACCAACTTCAAAATATTCGATTTTCCTACGCGAGCCTTATTGAAATTGAAAAGGCCCCAACCTATAGATATAGATAGGGTGTTAGCGCTTTAGTTTGATTGCAGGGCGCGTTAGCGCTTGACTAATAAGATAGAAAGGGCTTTTCTTGCTTGTTTAGTAAAGTCTCGCTTTTTATATTTATATTTATAGAAATAGGTGCTTGCTAGGGCACTCTTCATTCGAAACTAATGAGTGTCCGGTAGGGGCTTTCTGCCTTGTTATCAAAAGGGGAGTTGGGTAAAGCAAACTCCCTCCTTGGAGGAGCACGGGCTTAGTCAAGTAGAACCGGGTTGCGCTGCTTGATGCTCTGATCGAAAACAAATCAGTGGGGCCATGCCGGTACGACTGAATATGCGTTAGAAAGGTCAATCCCTCCCCTACGACACCAAAAAACCGGGCCGAGCTTCTAAACAGCCCGCCCGCTTCCATATAACAATATCGTGGCAACGTAGACCTAAGTGGTCATATTGAATCCTTGGGAACCATCACAAGTACGGCCGGCCTATATTATATTTGAACGAAAATGCCGTGTCGTCCAGCGGAGCCTATAAGAAGGTGACTCGCGCAGACAGCTGACTCCTTTTCAATAGAAAAGAATAGCCAAACCAACCCAGCTGGCTGGTCAATCTCAGAGATCTTATCGGCCGGCAAACCGGAGACGGACGACCACGGTCCCGACCTTACCAGCACCGGAGGTGTACTAATCAATGAACCCCAGAAACCTACTTTCTTTTCTGACAAAATCAACCAAGCCTAAGCGGTCACGACAACATCCAAAGGCCACCTTTGGATTCTTAAGTAGGGGGCAAGGAGGAGCACGTAGGAATGCCGACCACTACATAAGCCACTAGTGGCTCAGAGAAAGCGAGCAGCACCTTGTATAGGTTGGGCGGAGCTTGAAGAAGCGAGCCCTATCAGAATCAGAGAAAGCCATTGCGCGCTAGCCTAGCTAGCTAACGTTTTTCAGCTGGCTGTTATCTTAGTTGTAGCGCGCCTTCCTCCTTCTCTCACTTCGGAAAGATTTAGCAGTCTTTTTGATGACCTGGTCGAGAGAGTACGATACATCGGTGTAAAAGATTGAGTTGGATCTGTGAGGTTGGTTATAGTAAGGCCTGGTCGGAAGGTGTTCTTGCCTCTATCATTAGCTCGGGTAGTCTCCAGTGA
Copy exports the uninterrupted nucleotide string. FASTA headers retain accession, species and gene context.
Related species records
Other publication-safe DNA records for nad1.