13
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1 >NM_001009242.1 Felis catus rhodopsin (RHO), mRNA
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2 ATGAACGGGACGGAGGGCCCGAACTTCTACGTGCCCTTCTCCAACAAAACGGGTGTGGTACGCAGCCCCTTCGAGTACCC
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3 ACAGTACTACCTGGCTGAGCCATGGCAGTTCTCCATGCTGGCCGCCTACATGTTCCTGCTCATCGTGCTTGGCTTCCCCA
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4 TCAACTTCCTCACGCTCTACGTCACGGTCCAGCACAAGAAGCTGCGCACGCCTCTCAACTACATCCTGCTCAACCTGGCC
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5 GTGGCTGACCTCTTCATGGTCTTCGGTGGCTTCACCACCACCCTCTACACCTCTCTGCATGGATACTTTGTCTTTGGGCC
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6 CACAGGATGCAATTTGGAGGGCTTCTTTGCCACACTGGGCGGTGAAATTGCCCTGTGGTCTTTGGTGGTCCTGGCCATTG
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7 AGCGGTACGTGGTGGTGTGTAAGCCCATGAGCAACTTCCGCTTTGGGGAGAACCATGCCATAATGGGCGTCGCTTTCACC
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8 TGGGTCATGGCACTGGCCTGCGCTGCACCCCCCCTCGTTGGTTGGTCCAGGTACATCCCTGAAGGCATGCAGTGTTCATG
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9 CGGGATCGACTACTACACACTCAAGCCAGAAGTCAACAACGAGTCCTTTGTCATCTACATGTTCGTGGTCCACTTCACCA
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10 TCCCCATGATCGTCATCTTCTTTTGCTACGGGCAGCTTGTCTTCACAGTCAAGGAGGCGGCAGCCCAGCAGCAGGAGTCA
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11 GCCACCACCCAGAAGGCTGAGAAGGAGGTCACTCGCATGGTCATCATCATGGTCATTGCTTTCCTGATCTGTTGGGTGCC
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12 CTACGCCAGCGTGGCATTCTACATCTTCACCCACCAGGGGTCCAACTTTGGCCCCATCTTCATGACACTCCCGGCGTTCT
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13 TCGCAAAGTCCTCCTCCATCTACAACCCTGTCATCTACATCATGATGAACAAGCAGTTCCGGAACTGCATGCTCACTACC
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14 CTCTGCTGTGGCAAGAACCCACTGGGTGATGACGAGGCTTCCACAACCGGTTCCAAGACGGAGACCAGCCAGGTGGCACC
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15 GGCCTAA
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16 >U59921.1 Bufo bufo rhodopsin mRNA, complete cds
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17 TCTTTCTAGTTTGGGGGGGGGGACTTTAAAGAGCCGCCAATATGAACGGAACAGAAGGCCCAAACTTTTACATACCCATG
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18 TCCAACAAGACTGGGGTGGTGCGAAGCCCCTTTGAATACCCTCAGTATTACCTGGCAGAGCCATGGCAATATTCCATTCT
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19 GTGCGCGTACATGTTCCTGCTCATTCTACTTGGGTTCCCAATCAACTTCATGACCTTGTACGTCACCATCCAGCACAAGA
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20 AGCTCCGGACACCCTTAAACTATATCCTGCTGAATTTGGCCTTTGCCAACCACTTCATGGTCCTGTGTGGATTCACGGTG
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21 ACAATGTACTCCTCAATGAACGGATACTTCATCCTCGGAGCCACCGGTTGCTATGTTGAAGGCTTCTTCGCTACCCTTGG
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22 TGGTGAAATCGCCCTTTGGTCCCTGGTGGTCTTGGCCATTGAACGATACGTGGTCGTCTGTAAGCCCATGAGCAACTTCC
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23 GATTTAGTGAGAACCATGCCGTCATGGGCGTAGCGTTCACCTGGATAATGGCTTTGTCCTGTGCTGTTCCTCCACTCCTT
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24 GGATGGTCCAGGTACATCCCCGAGGGCATGCAGTGCTCCTGCGGAGTCGACTACTACACCCTGAAGCCCGAGGTCAACAA
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25 CGAGTCCTTCGTCATCTACATGTTCGTCGTCCACTTCACCATCCCCCTGATTATCATTTTCTTCTGCTATGGCCGCCTGG
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26 TGTGCACTGTGAAAGAGGCTGCAGCTCAACAGCAAGAGTCCGCCACCACCCAGAAGGCCGAGAAAGAGGTGACCAGGATG
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27 GTGATCATCATGGTGGTCTTCTTCCTTATCTGTTGGGTCCCCTACGCCTCTGTCGCTTTCTTCATCTTCAGCAATCAGGG
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28 CTCTGAGTTCGGCCCCATCTTCATGACCGTCCCAGCTTTCTTTGCCAAGAGTTCTTCCATCTACAACCCCGTCATCTACA
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29 TCATGCTCAACAAGCAGTTCCGTAACTGCATGATCACCACCCTGTGCTGCGGCAAGAATCCCTTTGGAGAAGACGATGCC
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30 TCCTCTGCCGCCACCTCCAAGACAGAGGCTTCTTCTGTTTCTTCCAGCCAGGTGTCTCCTGCATAAGACCTTCCACCAGG
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31 CCTGTCTCAGGGTCCGCTGCCTCACACAGCTCCCACCGCCCCAACTCCGTCTCCTGCTCGCTAAGGCGGCGAAGTTCCCC
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32 TTCCATTACATAAAACGTATCTGTTCAAGAAAGGCGACGACGAAGGAGAAGAAGAGGAGCCCCCCCGAACCCCTTCGCTG
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33 CTGCTGAAAACGACTTGATTGCTTCTGCAACGCAACGGGGCCTTACGGCAGCGAAGGGGTTGTCATCCGGACGCGCCAAG
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34 AATTCCTTCGAGACTGTAAATATCTTAAAGGAACCGTCCTGCTAGTTACCGACGCCGCTCCTGTAGCCGCCGTTCCCCCG
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35 CACTCCGGCCGGTTCATACCTCTTATTTTTTTGCAATGCAACAGAAAATAATATTTTTGTTCCCACGGCTTTTCCCGGTC
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36 AGGTCTGGTAGTGGCGGAGATTGGCCGACCCCTCGCACCTGTAATAAAGCGCAG
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37 >GQ290303.1 Cynopterus brachyotis voucher 20020434 rhodopsin (RHO) gene, exons 1 through 5 and partial cds
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38 GTGCCCTTCTCCAACAAGACAGGCGTGGTGCGCAGTCCCTTCGAGCATCCACAGTACTACCTGGCCGAGCCATGGCAGTT
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39 CTCCATGCTGGCCGCCTACATGTTTCTGCTGATCGTGCTCGGCTTCCCCATCAACTTCCTCACGCTCTATGTCACGGTTC
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40 AGCACAAGAAGCTGCGTACGCCTCTCAACTACATCCTGCTCAACCTGGCCGTGGCCGACCTCTTCATGGTCTTCGGAGGC
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41 TTCACCACCACCCTCTACACCTCCCTGCATGGATACTTTGTCTTCGGGCCTACGGGATGCAATCTGGAGGGCTTTTTTGC
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42 CACCCTGGGAGGTATGAGCTGAGATGCGGGTAAGGAGGAGGCATAGAGGCATCTGGGAACAGTCCCAAGCTTGGGGTGAA
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43 GGCTAAGAGGCCTTCTTCCTTGTTCTGTCATTGGCGTCGTCCGAAGCCCTCACTTAATCAACAAACAGTTTGGTGGTGAG
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44 GCGCTGAGCTCCATTTGGAGAGGGCAGGTATCGAGCACTGTTTTATCCCCCCTGGAGTGGTGCCATTGCCTTGCTTTACA
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45 GCAAAGAAACTGAGGATGAGAGGAGTCGAGGGTCTTGCCAGGTCACATCATGGCAGAGACAGAGCTGAGTTTCAACCCTG
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46 CATCTATGTGCAGTTTCCCTTGGAGCAGCTATGTTAGGTCAGACCCACGGTGGGCACTGGGGAGAGAGCTGCACAAGACA
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47 GGTCCCTNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNN
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48 NNNNNNNNNNNNNNNNNNNNNNNNNNNTTCCTGATTGCCAGGAGTGATGTGCAGCGCAAATGTCTGAATTCCATTATTAT
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49 GTGCTCCTTCTTCCTCTGAGCCAAACATCCATCTTCATGGCTCCTAGAATTGGGTCCCACCCACATGAGCAGGTCATTTT
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50 GTTTCCCTAGAGGGGAGAGGTCACTGCTGTGGAGGGAGGGAAGGTTCGTCCCGCTCCATGTTTCTGTTGTCTCTGCAATG
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51 CCTTTCTCTAGGGACTCTGCCTATTGCCCCAAGAAGGACACATTCTTCTGTAAAAACTCCCTCCTGGGTTCCCAGTCTAA
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52 TCAAGACCTCTAAACTGATTTCCATGTCCCTCATGAACCCAAAGCTCTAACTGAATTAAACTTCTCAGGACTTACTCCAC
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53 TCTCCTCGTCCATCATGCAGCCCCTCTGCCCAGCACCCTATCTCCTCTTCTTCCCAGTGTCTGAGCCCACTGTACCCTGA
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54 GACTTCGCTCCAGGCCTGCCCCAGGCTGCCTTCTCAGGTGCCCTCTCCCACATAGGAGGAGCACGGCCTCCTTAGACAGA
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55 CGTGGGGTGCAGGTTGGTGGCATGCTGACTGATAGCTGACTGCCTTGCAGGTGAAATTGCCCTGTGGTCCTTGGTGGTCC
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56 TGGCCATCGAGCGGTACGTGGTGGTATGCAAGCCCATGAGCAACTTCCGCTTCGGGGAGAACCACGCCATCATGGGCCTT
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57 GCCCTCACCTGGGTCATGGCACTGGCCTGCGCCGCGCCCCCGCTAGTCGGCTGGTCCAGGTAATGGCACTGAACAGAAGG
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58 GAAGTGCCTCTGAGGTCTTCTTAGGGTCCCCCAGCTGGGACTCAAACCTAGGGCTGTCTGGTTCCAGGCACGGAACTGGC
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59 GACTCCACTGGGGTTGGGGTTTAGGGCAAGGAAGGAGAGGATCAGACCCTAATGTTGTTACGTGGGTTGGTCCGCATGTC
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60 AAGGAGAATCCAAGACACCCAATCCTTCACCTTGGCTGTGCCCCTAATCCTCATCTAAGCCAGGTTCAGATTCCAATCCT
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61 CTTTGGCCCAGTGCTCCGTGGGAAGCTCCCTCTGACCTTGGGCCTCAGCGCCTGGGGTTGCTGAGCCTTCCTAGTATAGG
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62 TGGTGACATCGTAGCCCCTGGGACCTGGATCCTGCCCAGTCTGCAGGCCATCATCTCCAAATGGGGCTGAGATGAGATGT
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63 GAGGAAAGAGGGGAGACAGTGGTTTGGAAAACTGGACTGGTGGCTTTTTTGGGTTTCCAGAGGACTCATCTTCCTCTGCT
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64 TCTAGAATATTCCCACTCTCTCTTCCCTTTCCTCATTCTTCCTGGGTTATTTTTTTTTCCCTTTGCTGAATTCGAGCCCC
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65 ATTCCCTCCAGCCTCTTTCCCTGTCTTATCTAGCCCAGTCCAGTTATATTCTCATAGGCAGAGGCAACAGATGCTCCAAA
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66 TTTTCTGAGGTCGGTTCCAACATCGCCACCCTCTAAAATCAGTGAAACATCCTAACTACATGCCTCATAGTCCTCCTGTT
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67 TCCAAAAACTGCAAAGATCTCCTGGTTACCCTGTATGCCCATCTTTGGGCTAGAAAATCCTCTCACCCTGTTAATAGTAA
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68 GACCCTGGTTTGTACAAACTGCCTCAAACACAGAGTTTAGGGGCTTTTCCCTTCTCTCCGCCAACCTCTGACAGGCAGAG
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69 TCTGAGGCCTGGCCTCCAGCTGCTGCGGGGAGCAGGTCTGGTAAAGAATCCTGTGCAGGTCAGTGGTATACAGGTCCTGT
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70 CAGGTGACAGCCTGGGCGAGAGACTGGAAAGTATCAGGATAACACGGCTGCCAGACGAACAACAAAACAACACTGAATTC
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71 ACAAGGCGCATTCGAATCCTCTCTCAGTCCATTTGATCCTCAGTCACACAGCCGAGTAGACACTTTATCAACTCATTTAA
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72 CAGAAAGGGAAAGTGAAGCCCAGAGCGAGGCCAGCAACGTGGCAGGTCACTCTGGTCATCTAGGGCCTGTTCCCAACTCT
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73 TTCACATGTGGGTCTCCAATATGTTCCCTCCTGTCCCAATCTCTGCCGGCCCTCAGGTACATCCCAGAGGGCATGCAGTG
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74 CTCATGTGGAATCGACTACTACACCCTCAAGCCGGAGGTCAACAACGAGTCCTTTGTCATCTACATGTTCGTGGTCCACT
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75 TCACCATCCCTATGATTGTCATATTCTTTTGCTATGGACAGCTGGTCTTCACCGTCAAGGAGGTAAGGTCATGTGTTGGG
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76 CACTGGGGACATGCACACTGAGTGAATGGAGCCCAGCTCCATTCCCAGAGTTGCCACAGTCTGGACACCTGACCTTGTGT
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77 CCCTGCAGGCAGCTGCCCAGCAGCAGGAGTCAGCCACCACCCAGAAGGCCGAGAAGGAGGTCACCCGTATGGTCATCATC
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78 ATGGTCATTGCTTTCCTAATCTGTTGGCTGCCGTATGCCGGCGTGGCATTCTACATCTTCACCCACCAGGGCTCTAACTT
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79 TGGCCCCATCTTCATGACCCTCCCGGCATTCTTTGCCAAGTCGTCCTCCATCTACAACCCTGTCATCTATATCATGATGA
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80 ACAAGCAGGTGCCAGGTGGTAGGGAGGGAGGGTCTGGGTCCCCCAGGCTGCAGGCACTGCCCACAGAGGACAAGCCACAT
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81 CCTTGACTAGGCAGACCCCAGTCTTCCCATCTGCAAAATTAGGCAGGGGAGTTCGTCTCCCCCAGGCATCAGAGACATCG
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82 GGGAGAAATGCACATTTCTGGAGATGAATCAGCATCTCAGGGTGGGCCCAGGAACCTGCACTTCTAAAAACCATTCCACA
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83 TGACTCTGAGGCTAGCATGAGAAGTGATGATCCACATGGTTCTGGAGGCCTGCTTTAAAAGTCAAGTGGTCAAAGTCCCA
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84 AGCCTGGGAACGGGATGGTGCCAGTCTCCATTAAAGAGATCAAAAGGAGCTAGAAAGTCTTGTGATGAAAGATGAAGGGA
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85 TAAAGCCGTCCTTTAACACAGATCAGTGATTTCTCTGCAGAATCCATGACCCAGTGGGAAAAAGTGGTCCCTGGAGTCAG
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86 GCATATTGGATTCAAATCCTAGCTCTGCTATTTTCTAGCTATGTAACCTTGGGCAAGTCATCTCCCTTCTCTGTGCTTCA
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87 GTTTCTTCTTTCATAGAAAGGGTAAAATCCCAAACTCTTGGGTTAAATGAGATAACTTACATAGCCCTTGATATGCAGAG
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88 GCATTATGGAATGTCGTTAGTGACAAAGTTCCCTTGGGTTTGGTCCCTGGTATCTCTGGAGTGAGATTGCATATGTTCCC
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89 TTCAGAGGGTCAGATTTGGGATGAGAGTGGAGGCTGCGAGGGCCTGAGTGGGAAGGGATTGGAGGCAAATCTCACCAACC
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90 ATGTCAGTTTGCTACACACACTTTGGGTGGACCCTGACCCTGACTCATGCTTCTTGCCTTCCAGTTCCGGAACTGCATGC
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91 TCACTACCCTCTGCTGTGGCAAGAACCCACTGGGTGACGATGAGGCCTCCACCACTGCCTC
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92 >GQ290312.1 Myotis ricketti voucher GQX10 rhodopsin (RHO) mRNA, partial cds
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93 GTGCCCTTCTCCAACAAGACGGGTGTGGTGCGCAGCCCCTTCGAGTACCCGCAGTACTACCTGGCTGAGCCCTGGCAGTT
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94 CTCCATGCTGGCTGCCTACATGTTTCTGCTGATCGTGCTCGGATTCCCCATCAACTTCCTCACGCTCTACGTCACCGTCC
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95 AGCACAAGAAGCTGCGCACGCCTCTCAACTACATCCTGCTCAACCTGGCTGTGGCCAACCTCTTCATGGTCTTTGGAGGC
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96 TTCACCACCACCCTGTATACCTCTATGCATGGATACTTCGTCTTCGGGGCCACGGGATGCAATCTGGAGGGCTTCTTTGC
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97 CACGCTGGGCGGTGAAATCGCCCTGTGGTCCCTGGTGGTCCTGGCCATCGAGCGGTATGTGGTGGTCTGCAAGCCCATGA
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98 GCAACTTCCGCTTTGGGGAGAACCACGCCATCATGGGCCTCGCCTTCACGTGGGTCATGGCACTGGCCTGCGCTGCACCC
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99 CCACTAGCCGGCTGGTCCAGGTACATCCCAGAGGGCATGCAGTGCTCGTGTGGGATTGACTACTACACGCTCAAACCGGA
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100 GGTCAACAACGAGTCCTTCGTCATCTACATGTTCGTGGTCCACTTCACCATCCCCATGATTGTCATTTTCTTCTGCTACG
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101 GACAGCTGGTGTTCACAGTGAAGGAGGCGGCTGCCCAGCAGCAGGAGTCAGCCACCACCCAGAAGGCCGAGAAGGAAGTC
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102 ACGCGCATGGTCATCATCATGGTCGTTGCGTTCCTAATCTGTTGGCTGCCCTACGCCAGCGTGGCATTCTACATCTTTAC
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103 CCACCAGGGCTCTAACTTTGGCCCTGTCTTCATGACCATCCCGGCATTCTTCGCCAAGTCATCCTCCATCTACAACCCGG
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104 TCATCTATATCATGATGAACAAGCAGTTCCGGAACTGCATGCTCACCACCCTCTGCTGTGGCAAGAACCCACTGGGTGAT
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105 GACGAAGCATCCACCACTGCCTC
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106 >AB062417.1 Synthetic construct Bos taurus gene for rhodopsin, complete cds
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107 ATGAACGGGACCGAGGGCCCAAACTTCTACGTGCCTTTCTCCAACAAGACGGGCGTCGTACGCAGCCCCTTCGAGGCGCC
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108 GCAGTACTACCTGGCTGAGCCATGGCAGTTCAGCATGCTGGCCGCCTACATGTTCCTGCTGATCATGCTTGGCTTCCCCA
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109 TCAACTTCCTCACGCTGTACGTCACAGTCCAGCACAAGAAGCTGAGGACCCCCCTCAACTACATCCTGCTCAACCTGGCC
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110 GTGGCAGATCTCTTCATGGTGTTCGGGGGCTTCACCACCACCCTGTATACCTCTCTGCACGGGTACTTCGTGTTCGGTCC
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111 GACGGGCTGCAACCTCGAGGGCTTCTTTGCCACCTTAGGCGGTGAAATTGCACTGTGGTCCTTGGTGGTGCTAGCCATCG
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112 AGCGGTACGTAGTGGTGTGCAAGCCCATGAGCAACTTCCGCTTCGGGGAGAACCACGCCATCATGGGCGTCGCATTCACC
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113 TGGGTCATGGCTCTGGCCTGTGCGGCCCCCCCCCTCGTCGGCTGGTCTAGATACATCCCGGAGGGGATGCAGTGCTCGTG
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114 CGGGATCGATTACTACACGCCCCACGAGGAGACCAACAATGAGTCGTTCGTCATCTACATGTTCGTTGTACACTTCATCA
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115 TCCCCCTGATTGTCATATTCTTCTGCTACGGGCAGCTGGTCTTCACCGTCAAGGAGGCTGCAGCCCAGCAGCAGGAGTCG
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116 GCCACCACTCAGAAGGCCGAGAAGGAGGTCACGCGTATGGTCATCATCATGGTCATCGCTTTCCTCATATGCTGGCTGCC
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117 CTACGCAGGTGTGGCGTTCTACATCTTCACCCATCAGGGATCCGACTTTGGCCCCATCTTCATGACCATCCCGGCTTTCT
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118 TTGCCAAGACGTCTGCCGTCTATAACCCCGTCATCTACATCATGATGAACAAGCAGTTCCGGAACTGCATGGTCACCACT
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119 CTCTGCTGTGGCAAGAACCCCCTAGGTGACGACGAGGCCTCCACGACCGTGTCCAAGACAGAGACCAGCCAAGTGGCCCC
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120 TGCCTAA
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121 >AB043817.1 Conger myriaster conf gene for fresh water form rod opsin, complete cds
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122 CCGCTACTGACGAACCGCAACCATGAACGGCACTGAGGGACCTAACTTCTACATCCCCATGTCAAACGCCACTGGTGTAG
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123 TGAGGAGTCCATTTGAATACCCGCAGTACTACCTTGCAGAACCATGGGCTTTCTCAGCTCTGTCTGCCTACATGTTCTTC
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124 CTGATTATCGCCGGATTCCCCATCAACTTCCTCACCCTGTATGTCACCATCGAACATAAGAAACTGAGGACCCCACTGAA
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125 CTACATTCTGCTGAACCTGGCCGTGGCCGACCTCTTCATGGTGTTTGGCGGATTCACCACCACGATGTACACCTCCATGC
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126 ACGGCTACTTTGTCTTCGGCCCCACCGGCTGCAACATCGAAGGGTTCTTCGCCACCCTCGGCGGCGAGATTGCCCTCTGG
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127 TGCCTCGTTGTCCTGGCCATTGAAAGGTGGATGGTCGTCTGCAAGCCAGTGACCAATTTCCGCTTCGGTGAGAGCCATGC
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128 CATCATGGGTGTCATGGTGACCTGGACCATGGCATTGGCCTGTGCCCTCCCCCCTCTCTTCGGCTGGTCTCGGTACATTC
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129 CGGAAGGTCTGCAGTGCTCGTGCGGGATCGACTACTATACCCGGGCGCCTGGGATCAACAATGAGTCCTTTGTGATCTAC
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130 ATGTTTACCTGCCACTTCTCCATCCCACTCGCCGTCATCTCTTTCTGCTACGGCCGACTGGTGTGCACCGTCAAAGAGGC
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131 CGCTGCCCAGCAACAGGAGTCCGAGACCACCCAGAGGGCTGAGCGGGAGGTCACCCGCATGGTCGTCATCATGGTCATCT
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132 CCTTCCTGGTCTGCTGGGTGCCCTATGCCAGTGTGGCCTGGTACATCTTTACCCACCAGGGAAGCACTTTTGGGCCCATC
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133 TTCATGACCATTCCATCCTTCTTTGCCAAGAGTTCAGCCCTCTACAACCCCATGATCTACATCTGCATGAACAAGCAGTT
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134 CCGCCATTGCATGATCACCACCCTCTGCTGTGGGAAGAACCCCTTCGAGGAGGAGGATGGAGCGTCCGCCACTAGCTCTA
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135 AAACTGAGGCTTCATCCGTGTCCTCCAGCTCTGTCTCCCCGGCATAAACCTTGTTTGACCGAACACCACGCATCAACACA
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136 AAGACCAAGAATGCTGACTAAATGCTAACATTTCAGGGAAATCCAAAGACTTTTTACTATTTTTTTACACAACCATATAG
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137 GTTGCAAACAGAGGTTTAGCCCTGTTTACAGGTTGTCATCAATGTGATGTCAGTATGTACAATATAGTCAACTTGATAGC
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138 AAGTTGTTGGCTTATTTCAGATTGTATGGGCAATGTAATCAACCATATGTGAAATAAATTGCAA
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