Overview
Sequences
The following sequences are available for this feature:
Legend: polypeptideexonCDSthree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.ATGAAGTACGTAATACGTAGTGGGACGAAATTTTCATATTAGACGATTAAATGAGTATGCTCAAAATTTATTTATTATGTATTTGTTTTAGGAGGATAAATATTTTATTAAAAATATGGATAAATAATAATTTAAAATATCCGTGCATGCATGGGATTTAATCTAGTTAGTTACGGAGTAATATACTACTGAATCTCCCTAGCATAGTTTTTTTTTTTTTTTTTGAATCTACTCCGTATTATAGAGAGCTCAACCTCTTATCAAATACTCCGTACACTTGATAATTATAGCAATTTTCCAAGGTTATCGACTAAGTATGTTGGACAGCTATGTTCATTAGAAGCATCCTCCTCCAGTTTTTGGTCATCTGAGCTTTCCTCATCTTCTACCAATACAGGGTCGAACAAGGGATTCATACTCCCATAACCTCTGCCAGCCTGACTATAGGTCGGCGCTTGCCCTAAATTAGGGTTGTGGATGGTTTCATCCTCCATCGTTGGGAAATCTTCTTCCATGGGGATTGCGTCCGTATTGATTGCCATTGTTTTACTTTTTTTTGTTTGATCTTTGAAGCAGATCACTCTTTTCGCTCCAAAGCCCTAGGGTTCGTCTTTCGCTTTTTACCATCGCTCAAAATAATTCCGGGTTATGATATTTGATTGATTGATTGATGATGTAAACTATGACATTGGTTATACCCTAACACACTCTAAGTTGAAAGTCCTGAACTTGCCACGTTTTTCTCTTTCTATCTCTTGTATTTTATTTGATCTTTTTATAATCTTGTTTCTCCCCTCTAACCTCTCATTCTCCTTCTTCAATTTGGCAATAGAGAGATGTTTTCTAGAGCTTGTTCCCGGATTTCGAGGACTGGGTTGAATCCATTTCGTTGGCGTTATCCTTGTTTGTCAGCTTCAAATTCAGCTGTTGCCGCATATTATCAATTGTTAAGCAACTCTAATCCCACAATAACTCCTTCGTTGTCCAAGGTATATGGGTGCCAAAATTGCTTGTAGGCTTCATCATTTTCATAAAACCCATATGATGAACATTATATGTATATTACCCTTCGTGTTTAATGAATTCGTATTGTTTCCATGTGCAGTATGCCTGGGGATCTATAGGAAATACATCTTGCAGTTTCAGTCATGATGCAAGACATCATATTCATTATAGTGCAACGTCCACAGTTGAGGTTAGGTGTGACTTTTGCAGATACAACATTCAACTATGTTTTGTTGATTCCCATCCTAGTTGATACATGTTTCTTCTTGTAAAGACATTAATAGCTGGGTCTACCTTCCAGAATTATGTGCACTTTTCCCTCATTGTTTGGGTAATGACTAAATTAAGGAACCTGTTAGTTGGTTTCTGATGTTTGATGATGGGTGAAGCGGGAAACTAAAACTATTTTTAAAGTTCTCTGATGTTAACTTTCTGGTGGTTGATGACTGCACATAAAAACTGTTTTGAACTCTAGTTGTTCTCTATGGACTTTTGACTTCATATTCTTTTGGTAAATTGGTCTTTTTTTGGCAAATAAAAAGTGTTATTATTGGTCAAGGATAAACATTACAAACAAGCACCAGAACACCTAGGCTAAGTAAGAATCCCCCCCTTCTAGGAAGGTTTGGGAGACCCCACGAGCCACGTAAATCAAGCACTGTTTCGTCTTTTTAGTGCATCTACAAGAAACAATAAACAAAATTATATGAGCTACTGTACCACACCTATCTAATTTGTTATTAAAAACCATATAATTCCTTTGCAACCAAACTGCATAGACTGTCTCCGTAATGCCATGCTATGTACTCTGTCTGCATCTCTAGTACTCCTCCTGCACTTCCTTGTTGCCCACTAAACTTATTCTTGGAAATTCAGAATATTCCCAGTCAAACCCACCTTCTGCATCACTGTGCTCCAAACATCCCTTAAATAAGTACACTAAAAGAACAGATGTTCAAGTGTTTCAGTTTGCTGACAGGAAACACAAAGTCCATCGGAACTGATGTTCTAGTTCAGTAACCTCTCTGTAGTTGTAGGTCTGTTCTCTATAGCCATCCATAGAGTAAAAGTACTTTTAAGGCTACCTTTGTTGTTGCATATAAGCCTCCTCCAGTCAACCTTTGGACCAACTTCCCTTATATGAGCATACACCTTCTGTATTCTGAATTTACTAGCATGAACAAATTGCTCACCACCACCTGCATTCTGTAATATTTCTCTACTTTGCCAGATTTTCCATAAGGACCAAGTAAGCCCATTAGCAATAGGCGTAGTCAAGAAATCTTTCTTTTTTATATAGTACATGTGTACCCATTTCACCCACAACCTATCTTGTGTCATGGACAGTGCCCAACAATGTTTGATCACAGCAGCTGCATTCCATGTTATCAAGTCTTTCAAGTTCCACCCACCACAGGTTTTAGGCAAACACATTTGTGCCCAAGAGATAGGAGCTCTCCTAGACCCAAAATCCTTTCCCTTCCACAGAAAACCCCTCATATTCTCTACATTTATTTTACCACTTTTTTAGGCATGAATTGTTTTTGGCATCAGATACCAAATAGGACAGATTTAAATCAATTGCACTCTGCCAGCATATGACAGCAATTTTACTGCCTAGCTTCTAATTTGAGCACCTGTTTTTTCAATCAGAGGTTTGCAATCAGTGTACCTCAGTTTTCTTGTAGTGGGAGGTACACCAAGGTACTTGAATTGGAAAGTACCTTTGGGAATACCTAAACTATTAATGATAATGTCTTCATCAGAAGTAGGGATGTCAGCCAAGTAAACATCACTTCTACTCAAATTAGCAGCAAGACCAGACGCTTCTGAAAATTTAGTAAAAGCATCAAAGATAACCTTTACTGAGTGAACGTCATCCCTAGCAAACAGCAAACATCAAGTGAGTAATGCCTAAATTTTTGCACCTTGGATGGAATTTGAATGCAGGATTTGAAGAAGCCTTCTGTAGAGGCATGTAGAAAGATATTCCATGAGAACAGCAAAGAGAAAAGGACACACAAGATCTCCTTGTCTTAGACCCTTTTTTCTGGAATAGGTTCAGTGGGAAACCCATTAACCGAATAGAATGTAGATAGAATATGAAACAGCCAAGACAATCCAATGAACAAACACAGCAGGGAAGCCCAACTCACACAACATAGCTTGAAAAAATGGCCACTCTAAAGAATTATAGACCTTTTTCAAGTCAACCTTGATCATGCATCTCAGATAACTATTTTTCCTAGAGTAGCATTTAATCAACTCAGCTGCTAGGAGAATGTTAATCAGATTAGCTCTACTAGGAATGAATCAAGCTTGAGCTCAATTTACCACTTCACCAATAACTAATTGCATTCTTGTAGTCAGAATTTTGGAAATAAGTTTATACACAACTGAACACCATGCAATGGGTCTGAAGCCCTTAAATCTAGAAGCAGTTTGGATTTTAGTAATCAAGGTTACCACCGTATTGTTAACTTGGTTCAACATCTACCTGTCTCAAAAAATTCCTTCACAACGAAGTAACACCTCCTTTAATAACCTCCCATGATTTTAGGTAGAATAAACTGTTGTGCCCATCCAACTGCGGAGCTTTGTTGACATCAATGCCTTTCAAAACAATATCAATTTCAGCATCTGTAATGGGTTTCACCAGGTGGTCAGCACCCATAGCAGTCAGTTGCTTTCCTTGCCTCGCAACAGTGATGTCAATACCTTGTATGTTAGTAGCAGCAGTTCCAATCAAGCTCCTATAATACCCTCCAATTTCTCTCTTTATATCAGCTTCTGTTGTCAGTTAAACCCCAGCAGAGTCATACAAAACCTCAATGCTATTCTATCATTTCTTTCCTTCATTGCACTAAAGAAGAATTTCGAGTTAGGGTCACCTAGCTGTCACCACTGAACCCTGGATTTCTGCTTGAAAGCACTCGCTTGGACATCTAAGAATTTCTTCAACTGAGCTAGCTTCTCCTTTTCCTCACATTGCAGATTCACATCAGAGTAGTTGGTAACCAGTTGACCTGGATTACCTCCAACTCATTTCTGATGAGATCAATTCTCTCATCAAGTTTAGGCATTTAATTGGTCTTATTCTTCTGCAAAGGCATTTAATTTCAATCATGCTTCTGTTGTGTCTGTTATTGTACTTTTCCACTGAAAAGTTGCAGAATTACTTTTGCAGGACCAATCTGATCCGTTTTCCCTCGTTGCTGATGAGTTATCACTCCTAGCTGATAGATTGCGGTCAATGGTGGTTGCAGAGGTTTAATAGTTATTCGTATTTTGTATTGCAAATGAATAAGTACTGTTTGGATGGAAAATGGGTTACTAAAAAGTGGACATTGTATGATGTTTATGTTATTCACTTCTTGCAGGTCCCTAAGTTGGCATCCGCTGCTGAATATTTCTTCAAAATGGGAGTTGAAGGAAAGCGCTTTCGCCCTACAGTATGTGTTGATTGCATATATACTAGGATTGTAACAATATTCTGTGCCATGAACCATGAGGGGACATATTGCTCATTAGTTTCCTTGGAAAATGAGATTTCATGTGGACAGCCACCAAACACGTAATCACAGGAGTCGTTTTTTTTCGATTTAGTGCTTTTGGATTTGTGAAGTTTTCCCAGTCTGGTTTATTGATAGCATCATAACTGACAGATGCTTTCACCATTACTGACTTGGCTCACTTAATTTGTTATTTATGAATATCTTATTTTGTTCTTCATCGAGAAAAGTTCCTTTGTAGAGGGTGCGAAGGGTCTCTTAAGTCTTAATTCATATTTTTATTACCACTTATATAAGTAAAAAAATTTAGGCTTAAAACTGTGTGAGATAGATGCCTATTTTTTAGACCTTTATGCTTGCTTTCATTTCGCCCTGTATGCATATTGTAAAATTTAGATAGTTCATCTGGCTTAATTTTTTCATTAGACTTGGTAGTCTTGATTTCTTATCTTGCCTTTTTTAAGAATTGAAGTTTTTGCTTTATGCAGGTTTTATTATTGATGGCAACAGCTTTAAACATGCCTGTATCTATGTCTTCTGCTGATAGACTATCACCTGCTAGAGTAGTTGATAATTTGGAAACACAACTTCGTAGAAGACAACAGTGCATTGCGGAGATCACAGAGATGATCCATGTCAGTATACAGTTACTTATTTCATTTACTCTCTTTGATATTCTCCCTTCCCTTTTGTTTAGTGTTGCTCAAACTTGTTATTGTCAAAGTTTAGTCTACAAGCTAGGTTCCTCCTTTTGAACTCGTGGGTTCCCCTTGGTTATTTTCTGTTAAGCTCTCCATTATTTTCAAAATAAATAAATTAGGTTTGTTCTGCTTGGCTTCTCTATATTCAGTAATAATGCAGAAATTAATGGTCATGATGATTTGATAATTGGAGTTGATTGTAGTTCTCTTTTTTATTTTTTATAATGAACTTTAAATTGAAATTTCCTTTACTTCCTTCTCTCTTCCTTAAGTAATTTATATCTATTGCTACTCTTCATTTTGTTTGATTGTCATTTTGGCTACTGGTTAGTACATGTAACCCCCCCCCCNCCCCCCCCCCCCCCCCACACACACAACGTTGAGTGCGAATCGTGCGATGGATTGGATCGATTCGGACCCTGCTTCAGGTCTGACCCAAGTCTGAGTCCATTCTGCCATTAAAAAATCTGCTATTTTTTTGGGGTTGTAGTACATTTGTCAGTGCATATAAAAAAGCCAAACGTTTCATGCCTCTTCTTCCACTCCTTCTCTCTCCTCTACATCTTCCCCTTATACTTCCCCTGCCCAAACATGGAGTCCGAATTTGACTTTACACATTTCACATTTCCAGTTTTTGGTGATATTCGTTTATGACTTTGTTGATTTTTTTTTTTAAGGAATCATTAGGTGTCCTTATCCGGATTAAGAGGTACCGTCATTGTTACCTGGTTCGCTAGTATGAGATTGGGTATGGGTTCACAATTCGTTGCCTAATTTGCTAAATTAGACCAAAAAGGTATCATTTTCATGTTATAGTTCGCTTTTTTGGTTCGCGGTTCGTGGGGTATTAGGGAATTAGGTAACACTGGGTACTGTCGTTCGTCGGATCCGGACTTGGGGTCGGATATTGGGTCCGTTTGTGGTCTGACCCGACCCATTGCCAATAATTAGTAAATCTTGACTGCCTACATTTATCTGAAGCTGTATCCATTGTAATTTTGTCGCTGTTTTTCGCTGTTGAAGTTGTTTGTCTTGTTGGTATGGGAATATTTTTGTTGGTCTATCGTTAGATCTTTGTTTGATGCTGGCTTCAGGGGCAGTCACATAACCTGATACTTTTTACATCTGTTGTCCTTGTTTGCCGAAACTGTAGCACAGTCTTTTGGCTTCATCTTTTGTACACGATGCATGTTTGTGTATTTCATCACTTGATCCATAAGTGAATTACGGAATTCTGTATTAGCTGAAGGCATCCTCTTAACTGTCAGTGTGTAGAAAGCTTCAGGAAATACTAAATAGTGGTTGAAATGGGTATCATCTATTGGTCTCAACTAAAACTCTTTTGTTGCCTTAGGTGGCAAGTCTTCTTCACGATGACGTATTGGATGATGCTGATACAAGACGTGGTGTTAGTTCATTGAACTCATTGATGGGGAATAAGGTAATGTTTTCAGTTTTTTGTAGCATGTCAAATGTGGTAGATAACATAATAGGTCTTTATAGTTTTTAAGTTATTAAATAGAAGTAGTTGCTCTCTACTGTTTGCTAAACTGTAGTATTGGAAAGCCTTAGCACTTTCTATAGTGATCTTTGATGATTTCATTAGTTCCTTGTATTTTTATAAAGAGCGCTACGTGTCTACATGTTTATTTACCGTTGGTGGTCTGCCCTTCCGTATCCTCCAACCCCTGATTTAACGGTGGAGCTAAATGTTATTTTCCAATCAATTAAAAACTGACAAGGAGAGATTTCTGTAGACCTGGATGGGAAAATGCTGTGAGACATTTTGATGGAGATAGATGCTTGGATTAAGATAAAAATATAGCTTTTCGCAACCATAATGCTCTCAAGGGTAAACTACCTAGAACAAACTTCGAGGTTTTATGTCACCAACAATGCATAAAGGACAAATTGCCAACAAGGTATAACAATCTAAAGACGACTCAATTAACTTAATATCTAGAAATTGAATTTTGATTCATTAATCACTTTAAGTAACCAAGTTTACAAGACTCATATTTGTAGTTTTCTTTGAAGAATTTTCATGAGGAGATAAAAACTTGAATATAGATTTTCAATGGCTGAAATATCATAATATTCCTTTAACTAAAGTTTTAGTGGAAACAACTTCATCAATCAAGCGTCTTATAAAGTTAGCTTCCCAAAGGGTAAAAAATCTTCTTACATCACATAGCTTGTGGTCCCACTTGTAGAAGTAGACAGCAGGTTAACAAAAGGTGGTGGTATTAAAATAAAAGGACAAATATAAGATGGTTATAGGAAGTAGCTCTCTATATAGAACGTGTTTCACTCATTGGACCTATGAACACACAATCATAACAAAGATCCATTATTTGACAAAGAATAAGAACAATAGTTCAATACACATCTTCAATCCTTTCTGAACAAAGCCTTAGTTTCATATTAGTTTTGGATGCAGAATCCACAAGTCTCAACACCTTAGCTTTAAAAAGCGCGTTTGGGCTCAAGGCACATGCCTTGTCACGTTAGCCGTGAGGCATCTACAAAAGGCGCGCGCCTTATGCGCTTTTTCCCGGGCTCAAGGCTCAAACGCCTTATGAGCCTTATGTGGTAACACCGTAACAAGCAATAATTTCTTTTCTTTTTTAGAACAGGCCAAAACTCTGTGACTTTAACGACAATTCCACTGTTTTCCTTTGTCTCTTTCAGATATAAACTCCTCCTTTTTCTATTTTAAAGTAACTGTTTTATGTAAGCTGTGGCACACTTCTTTGTGAATCTAAATAAACAGTGAGTGACTAAAATGTTTCCTAAACCTTCCTTATTCCCTTTTTGTTTTCTTATCCCCTTAAAAAGGCTTTTAATATTCTGTAGTTACTATTTTATCCCTTTGTAACAGCAAGTGATACTATTTTGCTATGTTACTTGGAAACCTTTCTTTGTGAATCTAAATAAAGAGTCAGTGACTAAAAAGTTACCCAAATCTTCCTTATTCCCCCTTTTGTTTTCTTTTCCCCCCTAAAAAGGCTTTTAAGTTTCTACAGTTACTATTTTATCCCTTTGTAACAGCAAGTGATACTATTTTGCTATGTTACTTGGACACCCTGGTTACCGGTGGTTGACTGGTGGTATCGGGTGTCAACACAACATGACACGAATTTTCAACACCTATTTCGAAAAAGGATCCAATCAAGTGTCGGGAACGGAGGAGAAGAGGAAAAAAATAATCAAAAAGTTAAATTTTTGGTATCCAAGATGAAGATTGTCATCGGTGAATAAATAAGTCTTACCGGGTGTTACACGGATCAATAAGAAGTTAGGTTAACTTAGTGCCCTCTTTGTTTTAAAAAAATACGGGGTGAGGATTTTCCAAAACTTTTATGATAGCCGTGTCTAAAGAACTAGTCAAGACACTCCTTTGACCATGTCGCTGTGTCGGTGTCAGACATGACACCTAAATCCGTGTCTGAGCAATATAGTTGTTTTGATCTTTTTTACAGAAAGACACTAGCGTTAGGCATGACACCTAAATCTGTGTCTGTGCATTATAGTTGTTTTGATTTTTTTACATAAAATAAAAGGAAAAAATTATTTTAAATAATCCAACCTTTCAACGATTTTCCGTTATTAATCCAACCTTTGCATGCCATTAACTTTCATTGCACCTATCCGGTTACCAACCCGATTCTTAACAACTAACTTATACACGTGTCAGACAATAATTCGTTATTTTTTTTCTCTTTCGACCCTTCTCGCATTTTACCCCTCATGCTCTGCTTTTCTCTCTCCTTTTGCTGCACCTCCGCAACATCCAACATCTCTGCCGCCACTGCCCTTCCCTTCCACCGCAATCCTGTTGCCTCTGCCACACCTTCTGGGCTCTGTCCACCACCTACACCACCTACAGCAGCCACCTTGCATCCTCTCCTTCCCTTCATTCGTGGGTCTGTTCAAATTATCAAGACCAGTCTTGCTCTTCAAATCAATATGAAGTATACATTAAGCTTCTTATCAACATCTTGGATATGTATAATTGTTCATAAAACTCAACATTATAATTGATTCATTAAGCCCATCCATAAGTTTACTAAACTGTTTTTTCAATACCTGATAAAAATGATACTAAGTATAATGAGGAGTAACTCTGAAGGCCTCAAGGGTCTAAAGTTGAAGAAGTTTTCAATTAAGGAGTAGCTTCAGGCGGGAATGGAGGTATAAAGAAGGATGAGAACATGAAGAAGAAGGCTATGGAGGTAGAAGGAAGGAGGCTAGAACACAAAAAATTAAATTAAATTTGAAGGATATGACCTTTTTAGCCAGTTACCGGTCATTTGGGCTCAATAAAGGTTAATGGGGTACAAAGATTGGATTATCAAATAATAATTCAAAAGTTGGATTATTAACAGAAAATCGTCGAAAGGTTGAATTTTTTAACAGCTTTTCCAAAAAAATTAACATTTTGTATTTTACCACCTAAAAGAAATCTGAATTTGTGTTTTACTGCCTCTGTTTTCCTGAATTCTACTCACTCGCTTGCATTTTACACGGCCTCCAATGCCCTAGTTTGACTATTAATATCTTGAATTGTATATTAGTAAAAATTCTAAAAAATTGATATTTTGAAATCCATAACGATAAGAATCCAACAAGATCCCACATGATAATGTTTACTCTTATACATACACCAAGATATATGGTCAAAGTTTTTAGTACTGACAAATGAATATGGGTAGAACTCGAGAAAAGAGGTACCACCTAAAAATCAAACTTTTATTTTACCACGTAAAAACAAAAATAAATAAACTGTTTTACTACCTTTTACAACAAAATTAACGGCATCGTTAGTGGACCCACAAATTAAGCTTCCCTCAAATTCTTTACCATTTTCTGCGATTTTCTTTATTCCTCATTTTCATTCAATTCTTCACCTTTCTTCTTTACTTCTTTCCAATTCTTAACCACCTATTTTTGCACTCCGAATCTCCAATTAATCAAATTACAAACTTATATTATACAACATGCTTAATAATCATCAAGTATAAGTTTGGAAAATAAACTTACATTTTTATTTGATGCATGATAATCAACAAAAGTAAATCAAGATCAACAAAATTAACAAACAACAACACGTGTTTGTTGTTGTTCTTTGCCGCAGCAGGAAGAGAGGGAAGAATTACGAGGTGGAGATGATGATTTAATGGCGTGAGAAGAAGATGATGGTGATAAAATTGACATAAAAAAAAGGTTTATATTAGTTCTTAATAAGATCAATTAGCATTCCCTATCCTCAATTTGTAAAAACAATAAGCATTCAACAAATCCCCAATTTCAATTTCATATAAATTCTGATTTTATTTTTTTGCGTTTTGGGGTTAATTTCATTAATTGAATCAAAATAATTCAGCAGACCAACATACACAATTCGCATGCCCAAATCATTTACACACAAATATTAGTTCAATTCTGTCTAAATTATCATCAATTTCAACTGTTGACTACCTACCAAATTTGATGCAAATTAATCAAAAACACATACCGTATTGTACCTTAGATTCTGATTTTTTCACCCAACAACTTCGAAAATCTGAAAAAAAAAAAATGAAAGCCCTCAATCAATTCAAGATTTTGATGCAATTTATTTTTTGGCAAATGCCGGATTTTATCAACCAAACATAACAAGTACAAAGGCTAAACAGCCAAAAGACACAAACACAAAGATAGCTAAAACCCGAATTAATAATCCCTTCTAGGAAGGCACCACTGACAAGGGCAACAAAAATACTTATAAACTCGATCCATATTTATGGAGATCCTTAAGACAAAAACACCTACTATAGTCATACGTTTGTATTTCCTTAAAGACGTTTGGAGCAGTTTTCTGAAGTTCCTCTGCCTCCAAATGCAGTAAATTGCTACAAAACAGCCATTCAGTTTATGCTTGACCGAATTTCTACGTAAGTAAGAAACAACAATAAGTTTCTCAGTTTCCCAGTTAGCACATCTTCTTTCAATACCAATCCATTTCAACACAAGAGTCCACACCTCCGCAGAGTAAGGGCAACAGAAGAAAAGATGAGAAATACTCTCATCCTCATCTCGGATCACAAATAACCCCAAAATTAGTTAACCTGTCAGTAGTGGCAAGTCTGCCCAACACCGCAAGCCAACCGATAAAAACACACTTTGGAGGGGCAGGGTTGTTACATACCACTATACCAGCTTTCTCCAGGAGACGGGCGTTGTGACACCTTTTAGATCATGATATACTTTCCTTGTAGAAAAAGAGGCCTGATCAAGGATCCTATCAACGTAACTCAGTTTAACTAACTGCTTCCGCGCATCAAAGATCTTGCAAATGACCCACGAGGCTTGAGAAGGAGTCTGCATTGTGAGCCAATTGTTATGCTTGATGTAGTAAATATGCACCCAACGAATCCAGAGCTAATTTTGATGCAAAATTGTGACTTAAGAGAAGATTATATGGACTTGTAGTTATTGTGATGATGAACATCGTGAAAATTTATAAGGAAAATGTTGTACTAGCCGTTGAAGTGGGGCCCAGTAAGTCAGTAACGGTTCCGTTAACTTTGCTGTTAAGTAGTGGTAAAATTAAATTTTTATTTTTTAGGTGGTAAAATAAAAGTTTGAGATTTTTAGGTGGTAAAGCACAAAATTGGATTTTTTAGGTGGTAAAACAAAACATTTCCGAATAAATACCACAAAAAATTAGAATAATTGTGCGTCTTGCCTACGAAAGGCACGCGCCTTCGCCCATAAACTAAGCTCAACACGCTACAACTCGTGAACTAAGGCACACGCCTTCGCCCATAAACTAAGCTCAACACGCTACAACTCGTGAACTAAGGCACACGCCTTCGCCCTTAAAACTAAGCTCAACACGCTACAACTCGTGAACTAGTCTCTCTCTAGATAATCAGGTTGCTTGTTGTTTGTGGTCTTCATACTTAAGGATGTTTTTCCCATTTCAGAGTTCATAAAGAAATTCTTATTTGCATGTGCATGCACATGTAGATTATTCTGATTATCCTAATCCCTTCTGCAATATATCTTTCTTCTCTTGTCAGCAAATTATTATGATTATTCTGATTATATAATATGTTAAAAAAGTATATTAATTGCCGTGTTCCCGCACCTGGTTCCAAATTTAGGACTGTCCCATCTCCTAAAGATTAAGGCATGATAAGTCGGATTTGGACAATTGCCTATACTTGTATCCAACACCAGTAAACAAGTCTAAGCAACTTAACCCTTATCTTACTCTGCTTTTCTGTGGAATCTTTGGGGATATGGGTTCAGCTCGGAGGAGAAAAGTAGATATGGCCGAAGAGGAATCGGAGATATTAGACTTGCCCTTCATTTAGATTCGGGGTTTAATTTGAATTTAGTTCTGAAATTTAAGCTATTAATTGATAAGGATGTAGACTATTGCTTTAGGGATTTCGATGCTTGATGAAAGAGAAATGATGATAATGATATCAATTTCATCAATGGCTGGAGAGGAGATAGATATCTTTTGTTGACAAAAGAAAAATGTCAAAGGGGGCAAAAGCAGGCAAAGTATGATGGAAGATAAAGGAAGGGAGAACAGTCAAAGGATTAAGGGACCATTTATAGGAGGGGGTTTAATATTTTATGCTGCTCTATTCACTATTGAACTGGAAGATGTTAGACATCTTCTTTCTGTTCACACATTACTTTAGTTTGTGATTATATTTTTTTCCTTTTTATTATTGAGCAAGTACAAGTATCTTGATGATGATGAATTGATGATAATGATATGCTCCCCCACCTCCAATTGTCTAACGAGGTCTTCTTATACAATGTTCCTCTCCTCCTTCCCCCCTCCAAAAAAGGAAGTGAATTATTGAAATACCCATCAAGTCAAAGGGTGTCATTTTTTTTATTACTTCGTGTGTTATTTTGAACAATTATCATTTTTTAAGAACTATTGTTATATTATGACCTTTTGTGTCATTTTTGGGGTTTCATTTTATGACTTCATGTTAATTTTTCTAAGTCTTACTTTTATGATATTTGGTGTCGTTTTTACAAGTATATCACATCATTTCAAAGGGGCCGCAAGGGAACTTCACACTACACACACACACGCACAACACCAATCTACACACACAAGCACAATAGCACACACTATTATATTTCCTTCCTTCTTTTAATATAGCAATATTTTTACAGACATAGATTATGTATCTATACTAATATAATAAAAAAATATCATAACCCGGGATCTTATTAGATTCGTTTCAATAAGTATTTTCAAAATATTAACTATTTATAATTATTACAGACATATAATTAAAGATATTGATGATATAAGGTTTGTATGTATGTCTATTTCTGGGATATTATTATGGATTTCCTAAGCGCGTTTCTTGATTTCATCTGTTTAATACATTACAGTTGGCTGTTCTAGCGGGTGATTTCTTGCTCTCTAGGGCTTGTGTAGCTCTGGCCTCTTTACAGAATACTGAGGTAAATGTTTAAATATTTTAAGACGTCGATTGTGACTCTACATTGTTTACTTTCCCACGGCCTGTGGTGGTTTGATAATTGTTTGTGAGAAAGTCAGATCTGGGGCAAGTTTCAAATGAGGATGAGTTTTGCAGGTTGTATCGTTACTTGCCAAGGTTGTAGAGCATCTTGTCACTGGTGAGACAATGCAAATGACAACAACATCCGAGCAGCGTTTAAAGTATGTCGTTTCTCTTGGAGTTATTTTTGCGTATCTGTTGTAGTCATGTTTTGTTTGCAAGGGGTTTAGCGCTAGAGATGCTTTTGTCGATAATAGCCGTTAGCCATTTCATTATTCAGCTACTTAAAAGGTGTGAAAGGTAGAACGTTGTTTGGAAAGGATAAAAGTAGGGTGGAACAGTTACAACATTCTTGTATGAAAACGAGTGTCTAAAATGAGAATAGAAGGGAAACAGTGCAGAGTTGAACTTGCAAGAGGCTGGCTACAATATGAGATGAAGATATTCAGGGTAAACTGCTTCTTAGTTGACTCGGTTACATAATTTATGTAGTGGATTACTGAATACGGCCTATATTACTTGATATTGCTTATTGAAAGATTTTTTTTACCCCGTCCCTTCTCTTTCTTTCCTTTCTCTCCTCTCAGAGACACCTCAACCACTAAACGGATAGCTGATCACCACCAGCCACCACGACCCCCATCCGTCCAGCCCTAACAATTTCCACCTCCATCCCCATCCATCCAACCCTAACAAATTCCACCTCCATCCCCATCCATCCAACCCTAACAATTTCCACCTCCATCCCCATCCGTCCAACCCTAACAAGTTCCACCTCCATCCACCTGCCATTACTTTAAAAAAAGTTACACCGGCAACCTAAGCCGCATCGGTGGATTTCGTGCACCTAGGTGGCAGCACCCACGGCAGATACCTTTGCTTGGTCTGGGAGAAATCCACAGACGCCATCTTGGTTGCTAGCATTAAAAAAATTTAAAGTCATGGTGGCGGTGGTAGGTAGGTGGTGGGCTGGCGGAAGATGTTGTTGCCACTGTGGTGGGTCGTTAGGTGGTGGTGGTGGCTAATGGAGGATGTTGGTGGAAGTGGGCGTCTGTTTGTAGTGGTGGAAGATGGTGAGAGAGTAAGGAAGAGAAAAAGTAAGGGACGCCGTTTTATCCTTTCCCTTGGCGGTATCCTGCAATCTTGGGCAGTGTTTAGTGAGGCCCTTAACCTAACATCTAAGGAAGTAAGAGAGTGAGAAGAAGAAAATGTTATATGAAGGTGAATATATGGTTAGTTCATTATTTTGGTATTTAAACTTTTACACGTAAATGACAACGGATTTGTTTTAGATAATATGATTTCCAGTGGATTCATTGTAATGTTGGCGAATAAATTTCGGGTTATCAAGGCTATTCAATTTTGTGGTTATTTAGAATTGTGAACCTCATAGGTTCTATTGCCAGTTTGCAACTATTTTTATATGTTTGCATTACCTGTGCAAAGACAGAAGTTAAATCTATGACAAGTGATGACTCTTACGGTCTTATTAATACTGTTCAGATTGTTGTTTTCTCTTTTCAAAACCCAGGAATTATAACCTCTTGATCTCTAACTAATTAAATCCTTTATAGTCACGTGACAAATTTCCAAATTATTTTCAAGTAGTTCTTTTGTTCCTGGTGCTGTGGACCTGTGGCATCTAATGTCCAACTATATGAACTTTTTCTCAAGTTACTGCTTTTCATGCGATTTCTCAAGGTTCAGATAGAATGGTTGTGCACAACCCTGATACTATTTTTATTTAATTACATCAGTTAGAGTTTCCGCTTACTAAGCACAAACTCGTTCATTAAAGATACGCGTTCATTAATATCTTTAATTCTGAAATTATAAAAGTTAATATCTTGAAAGTATATAATCTAGACAAAACTAGCAAGATCCCTTATGACTATTTTTCTTTACGTATAAATAAAAAAACTGGTCATCATGTGGTGGTGTGTGAATAGTGTGAAAGACCAATTGATGCAATTAGTAAAGAACGGAGGAAGGAATTGCTCTGTGTTAATATTTAGCTATGCCTTATCATGTACACAGCTAATATTTTGGTTCATTTCTACTTGCAGCATGCAGTATTACATGGAGAAGACCTACTTCAAGACAGCATCATTGATATCAAATAGCTGCAAAGCAATTGCTCTCCTTGCGGGACATACTGCCGAAGCTGCAACGTTAGCTTACGAGTATGGGAAAAATCTGGTGAGTGACACTGTGTCACCATCTTTTATTTCTGGTAGATGTTGAAGGAAGATTGAGATATTCTCTTTGTCTATTATGATTGTAATGAAAAAGAGAAATGCTTCTCAAGTTTTTGAAGACTTCTGGGTAGAGCTTCCTTATAGTGTACAGTAATCTGCATCAGAAAATGAATATGCCTATGTTAAGTGAGAGGAAAACGGTCTAGTTTGCCTGCTGGATCAAAACGAGCCTATCAAGGGATGGCAACGGGTCAAACATGGACCGGATCCGGACTTTTGTATTTGATTCCTGATCCGACCCAGAATTTTGAAGATCTAAGTTCTATAAAACCCACGACTGTAATTTATAAAACCAATGTAGAATGAGAGTTTAAGATGTCAATATAATACCTTCTAATGCCTGCATCAATCATTACCAGAGATAATGGGAATCATATTGAACTGCTTTCTATAGATCCAGTTTTCTGTGCTCCAGATGGGTGGCCTCCATTCTTTTTTTTCTGGAAGTATTTTGAAATAGCTTATTACCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCCCTCTCTCTCTTTCTCTCTCTCATTGTACTTTGTTTCTGTATACCGATGAGTGATGATTTCATAGGCCTTATGGTCCTTTTGTCTGTCTATATGACAAGTTAGGGAATGGTCTTATTAATTCTGAGGTTTGTAAGGGGACTCTTTGCACCTGTTACATCCTTAAATTTACATTGCTCCATAGTGATGAAAAAAACTTCTGCTAAATTAGTCTCCTAAACACTAAAGCACCTTTCTGGGAGCTCATTATGGATGTCTGTGATGAAGTTAGACACCTTGTGGAAGCCATTTCCTGTTATCTTTAATTTTGGAATGTTCATTTCATCCTGATGGCTTTTTATACCATGTGTTCGGGTGTAGAAGCTGGGGTGATGAATCTGGAAACACCTTGCCCTGCTTCAAGGAAACGTTAGCTAACCTCGGGTGTTTAACCGAGGAAAACCCCCTCCGATGGTAAAGCCAGTAACTAGCTAACCTCGGGGGGGGGGGGGGGGGNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNGGGGGGGGGGGGGGGGGGGGATCTGGAAGCACGTTACCCTGCTTCGAGCAAATGTTAGCTGACCTCGGGGATTAACCCGGGAATCCTCCTCCTATGCAGTAGAAGAGTTCCCTAACGAATGCTCAAAGGGGGTATTTATAGTCGTACCTGATTGAGTCTGATACTGCCACACGAACGGTAGGGATGTGCTCTGACGGTTTGTCATTCTGGTCAGTCAGTTGGAAATGGATTATTGCTTGTCTTGCTTCATTGGTTCCTTTCTGGCTACAGAGTTTTGGTCTAGCATTGTAGCGTCCTGGGAGGTGGCGTAGTATCCTGTATACCATGATTTTCAGATCTGTTGCAGCTTGTCTGTCTATAAGTTCATACGTACTGCAAAAAACTAGCAGTTGTTTTGCTGATCATCTTAAATAATAGTTTCACTATGAGATAATTTTATATTTAAGCAGCCTTCTGTTAAATAATATCAGTACATATTGTTTATTACATTTACATTTCTTTTTTTCCTCCCCAGGGATTGGCGTATCAACTGATAGATGATGTTCTTGATTTCACGGGCACGTCTGCATCACTTGGAAAGGGTTCACTTTCTGATATTCGTCATGTAATCTTTTACCTCTTTTCTATGAGAGAATTTTAAAAATATACAAAAACTCTTCTTTAAGGAAGTGAACTCTTTATTTGAACCCTGAAGGCCATGTTTATTTGACAAGCCAATTGTACAGTAACTTTGATTTGGTGGTCAATTTCATGGAAGATGGGAAAAAAAAAAAAAAAAAAAAAAAAACGTTTATTGCAATGTTATCACTCAATTAGCAATGCCCATGGCGGGTAGTACATTATCTGCATTACTGTCACAGAAATTTTGTGCTCAGTTTTATTCTGTGGTAGAACTGCCATGCTATTATTATGACAGTCCAGTGTATGAGTTAAAAAATGATTTCTTCTTAATCGATATATTAAGACACGCACATTCACTTGTACGTAATTATGTATTAACGAAGTATTAATAAGTTGATATATGTTCTCTTATTTTTACATATGGCACTAGATTCTTTGATATTTTTTAGGTCTTCTTTAAGGGTTAGGAACGTAGCCATGTAGGTTTGCATCTGAACCTCCTCAGACCCCACTGATTACTATTGGGTTATAGTTGATGTCTTTTGTGTCTTCAGTGACTAAGTGCTTCATGTCGCTATCTTTTCCACAGGGGATCATCACAGCTCCTTTGTTGTTTGCCATAGAAGAGTTCCCTCAGTTGGGTGAAGTTGTGCAGCGAGGCTTGGAAAACCCTGCAGATATAGATCTTGTATGTTTTCAAGTGAACTTCATGTTAAAATCCTGCTTTGTTTCTTGTTTGTGAATTATGCATATTTAAATGCTTTTATTTATGTTGGGTGTCAATTGTTGTAGTAAACTTCTGTTCCATTTTCCTTCAAAGATTTACCTTCATTTTTATAGGAAGTACTGTCACAGATTTCTCAATGATTGACCGGACATTCTTTTGTGACTTTGCAATCGTTTTCGCGAGGCGGGAAGTATTTATGTGGAAGTTGTCTGCCCGTTTGATCAAACCCCTACGTCATCATATTTTCCTAATTATTTTTTATGACTGTCTCTGCATATCTTCTTTTCTCCACTTGATCATGTGTTGTTTGGTCCTATGAAGTTCCCTTGGTACTCGAATTAACTTTCTTATCCCAGGGCAATAAACTAGTGTACAATCGAATACCTGGAGTGATAGAGTATCCAGTAATTTGATAGGATTCTGAAACCTAAGGCACATCTAGTATACTCAGCTAAAGGCATTTTGTCTGGCTCTATAATCTGATTGGCCAGTCTCTTTGGAATGATGTTGAGTTTTGTATAATCTTATAGCTTATTCTATGTAAAATTTTGAGGTACAAAAGTTAACCTCAAGTATATACGTGGTTTTTGACAGAAACGTTTTTGAAAAGTTGATAACCCCGACCCGGCCACAAGAGAAAAAGCAGAGTGGCAGGGCAACGGTACCAGATGTTAAGGAGAGAGAAGTGAGCAGGTCTCGATGAGAGCCCAAGCGAGTCTCTCATGTTTTATAGTCTAACCTGCATTATAGATATGCTAGTAGTTTCCTTCTAAACAGTCTGGGGTAGGGTTCCATACCTGTTTGGGTTCTATTAGCTAGAATTATAAAGAGGTTTCTGGGACCTTAATGTGAAGCAGGTTCATCCACAATTATCTAGGAACTTTTTTGCATTAGCTAAGTTTAGAGTTGTGGGGGTGTTGGTACCTAAGACGTTGGATGGAATCTCGTCTACATCATTGCCCTTTTTGTCTCTCTCTAATAAGGACGTGTTCTAACCAGATGAGTATAGAAGATATGGACAACTATCCGCCAAAACTGGGTTTGTATTTCGAAGAAAGCCTTATGTAGTTGGGAATTCTTTTGTGATGTGCCAGATAAAGGGGGTAGGAGTTTATTTTTGGTGGATTGTCGTCCTACTTTGGCCTTATCGGGTAATCACCAAAGCGTGTAGATAGATCTTTTGCATAAGAGAAATTAACTTTTCTTCGTTGTTCTTTGTACCTTTAAGAAGAATTGTGTTTGCTTGTATGTCTTTTGAGTTAACTAGATTAATTGCCAGTAGTAGGCACCAGCAGCTTGTTTTATTTTGTGCGGAATGTAGTAATGTACTCCATAATTGTTGTCTAATCTGTTATAATTTTTTTCATTTAGGCTCTGGATTACCTAGGGAAAAGTCAAGGAATACAGAAAGCAAAGGAATTAGCAGTGAAGCATGCAAACCTAGCGGCTGAAGCTATTGATTCTCTACCCGAGAGTGATGACGAGGATGTTAGAAGGTCAAGACGTGCACTTATAGATCTTACACACAGAGTCATTAACAGAACAAAGTGAACAAAGATAACTTAAAGCTTCTGAAGCCCACGATTTGTTTAATCTATTTATTATAAGTTTATGTATAATGGGGTGGTATCAAGGATACCCATTTGCCTCTTTATTCTTTCACAGGTTCAAATATGTTCTTTTGCTCAAGTTCAAAGCAAAGGCTCATGCATAAGATTTTTAGTTAGAATAGAACTGTAGGTCTATAGAGAACTCTCAGGTATACGAGTAGTGAACATAGCAAAACTAAAGCCTTTTTCTGAATATTTGTTTTAGAAATACAATTAAAAGAACTTTTGTGGGCTATCCTATCCTATGGACTCTGTCGTGTCTGCTTTGTTTTCTACACTTCTTTCTCAACTTCCATGTTTTTACATTGTTTTCTTATGTATTTTTATTTAACTTAAGAGCTCCTCTCTTTTATTTTTTTATATTATCATTATCATTACC ATGAAGGTTGTGGATGGTTTCATCCTCCATCGTTGGGAAATCTTCTTCCATGGGGATTGCGTCCGTATTGATTGCCATTGTTTTACTTTTTTTTGTTTGATCTTTGAAGCAGATCACTCTTTTCGCTCCAAAGCCCTAGGAGAGATGTTTTCTAGAGCTTGTTCCCGGATTTCGAGGACTGGGTTGAATCCATTTCGTTGGCGTTATCCTTGTTTGTCAGCTTCAAATTCAGCTGTTGCCGCATATTATCAATTGTTAAGCAACTCTAATCCCACAATAACTCCTTCGTTGTCCAAGTATGCCTGGGGATCTATAGGAAATACATCTTGCAGTTTCAGTCATGATGCAAGACATCATATTCATTATAGTGCAACGTCCACAGTTGAGGACCAATCTGATCCGTTTTCCCTCGTTGCTGATGAGTTATCACTCCTAGCTGATAGATTGCGGTCAATGGTGGTTGCAGAGGTCCCTAAGTTGGCATCCGCTGCTGAATATTTCTTCAAAATGGGAGTTGAAGGAAAGCGCTTTCGCCCTACAGTTTTATTATTGATGGCAACAGCTTTAAACATGCCTGTATCTATGTCTTCTGCTGATAGACTATCACCTGCTAGAGTAGTTGATAATTTGGAAACACAACTTCGTAGAAGACAACAGTGCATTGCGGAGATCACAGAGATGATCCATGTGGCAAGTCTTCTTCACGATGACGTATTGGATGATGCTGATACAAGACGTGGTGTTAGTTCATTGAACTCATTGATGGGGAATAAGTTGGCTGTTCTAGCGGGTGATTTCTTGCTCTCTAGGGCTTGTGTAGCTCTGGCCTCTTTACAGAATACTGAGGTTGTATCGTTACTTGCCAAGGTTGTAGAGCATCTTGTCACTGGTGAGACAATGCAAATGACAACAACATCCGAGCAGCGTTTAAACATGCAGTATTACATGGAGAAGACCTACTTCAAGACAGCATCATTGATATCAAATAGCTGCAAAGCAATTGCTCTCCTTGCGGGACATACTGCCGAAGCTGCAACGTTAGCTTACGAGTATGGGAAAAATCTGGGATTGGCGTATCAACTGATAGATGATGTTCTTGATTTCACGGGCACGTCTGCATCACTTGGAAAGGGTTCACTTTCTGATATTCGTCATGGGATCATCACAGCTCCTTTGTTGTTTGCCATAGAAGAGTTCCCTCAGTTGGGTGAAGTTGTGCAGCGAGGCTTGGAAAACCCTGCAGATATAGATCTTGCTCTGGATTACCTAGGGAAAAGTCAAGGAATACAGAAAGCAAAGGAATTAGCAGTGAAGCATGCAAACCTAGCGGCTGAAGCTATTGATTCTCTACCCGAGAGTGATGACGAGGATGTTAGAAGGTCAAGACGTGCACTTATAGATCTTACACACAGAGTCATTAACAGAACAAAGTGAACAAAGATAACTTAAAGCTTCTGAAGCCCACGATTTGTTTAATCTATTTATTATAAGTTTATGTATAATGGGGTGGTATCAAGGATACCCATTTGCCTCTTTATTCTTTCACAGGTTCAAATATGTTCTTTTGCTCAAGTTCAAAGCAAAGGCTCATGCATAAGATTTTTAGTTAGAATAGAACTGTAGGTCTATAGAGAACTCTCAGGTATACGAGTAGTGAACATAGCAAAACTAAAGCCTTTTTCTGAATATTTGTTTTAGAAATACAATTAAAAGAACTTTTGTGGGCTATCCTATCCTATGGACTCTGTCGTGTCTGCTTTGTTTTCTACACTTCTTTCTCAACTTCCATGTTTTTACATTGTTTTCTTATGTATTTTTATTTAACTTAAGAGCTCCTCTCTTTTATTTTTTTATATTATCATTATCATTACC ATGAAGGTTGTGGATGGTTTCATCCTCCATCGTTGGGAAATCTTCTTCCATGGGGATTGCGTCCGTATTGATTGCCATTGTTTTACTTTTTTTTGTTTGATCTTTGAAGCAGATCACTCTTTTCGCTCCAAAGCCCTAGGAGAGATGTTTTCTAGAGCTTGTTCCCGGATTTCGAGGACTGGGTTGAATCCATTTCGTTGGCGTTATCCTTGTTTGTCAGCTTCAAATTCAGCTGTTGCCGCATATTATCAATTGTTAAGCAACTCTAATCCCACAATAACTCCTTCGTTGTCCAAGTATGCCTGGGGATCTATAGGAAATACATCTTGCAGTTTCAGTCATGATGCAAGACATCATATTCATTATAGTGCAACGTCCACAGTTGAGGACCAATCTGATCCGTTTTCCCTCGTTGCTGATGAGTTATCACTCCTAGCTGATAGATTGCGGTCAATGGTGGTTGCAGAGGTCCCTAAGTTGGCATCCGCTGCTGAATATTTCTTCAAAATGGGAGTTGAAGGAAAGCGCTTTCGCCCTACAGTTTTATTATTGATGGCAACAGCTTTAAACATGCCTGTATCTATGTCTTCTGCTGATAGACTATCACCTGCTAGAGTAGTTGATAATTTGGAAACACAACTTCGTAGAAGACAACAGTGCATTGCGGAGATCACAGAGATGATCCATGTGGCAAGTCTTCTTCACGATGACGTATTGGATGATGCTGATACAAGACGTGGTGTTAGTTCATTGAACTCATTGATGGGGAATAAGTTGGCTGTTCTAGCGGGTGATTTCTTGCTCTCTAGGGCTTGTGTAGCTCTGGCCTCTTTACAGAATACTGAGGTTGTATCGTTACTTGCCAAGGTTGTAGAGCATCTTGTCACTGGTGAGACAATGCAAATGACAACAACATCCGAGCAGCGTTTAAACATGCAGTATTACATGGAGAAGACCTACTTCAAGACAGCATCATTGATATCAAATAGCTGCAAAGCAATTGCTCTCCTTGCGGGACATACTGCCGAAGCTGCAACGTTAGCTTACGAGTATGGGAAAAATCTGGGATTGGCGTATCAACTGATAGATGATGTTCTTGATTTCACGGGCACGTCTGCATCACTTGGAAAGGGTTCACTTTCTGATATTCGTCATGGGATCATCACAGCTCCTTTGTTGTTTGCCATAGAAGAGTTCCCTCAGTTGGGTGAAGTTGTGCAGCGAGGCTTGGAAAACCCTGCAGATATAGATCTTGCTCTGGATTACCTAGGGAAAAGTCAAGGAATACAGAAAGCAAAGGAATTAGCAGTGAAGCATGCAAACCTAGCGGCTGAAGCTATTGATTCTCTACCCGAGAGTGATGACGAGGATGTTAGAAGGTCAAGACGTGCACTTATAGATCTTACACACAGAGTCATTAACAGAACAAAGTGA MKVVDGFILHRWEIFFHGDCVRIDCHCFTFFCLIFEADHSFRSKALGEMFSRACSRISRTGLNPFRWRYPCLSASNSAVAAYYQLLSNSNPTITPSLSKYAWGSIGNTSCSFSHDARHHIHYSATSTVEDQSDPFSLVADELSLLADRLRSMVVAEVPKLASAAEYFFKMGVEGKRFRPTVLLLMATALNMPVSMSSADRLSPARVVDNLETQLRRRQQCIAEITEMIHVASLLHDDVLDDADTRRGVSSLNSLMGNKLAVLAGDFLLSRACVALASLQNTEVVSLLAKVVEHLVTGETMQMTTTSEQRLNMQYYMEKTYFKTASLISNSCKAIALLAGHTAEAATLAYEYGKNLGLAYQLIDDVLDFTGTSASLGKGSLSDIRHGIITAPLLFAIEEFPQLGEVVQRGLENPADIDLALDYLGKSQGIQKAKELAVKHANLAAEAIDSLPESDDEDVRRSRRALIDLTHRVINRTK Relationships
This mRNA is a part of the following gene feature(s):
The following polypeptide feature(s) derives from this mRNA:
The following exon feature(s) are a part of this mRNA:
The following CDS feature(s) are a part of this mRNA:
The following three_prime_UTR feature(s) are a part of this mRNA:
Homology
BLAST of Spo20450.1 vs. NCBI nr
Match: gi|902169073|gb|KNA07599.1| (hypothetical protein SOVF_170370 [Spinacia oleracea]) HSP 1 Score: 793.9 bits (2049), Expect = 1.600e-226 Identity = 417/429 (97.20%), Postives = 422/429 (98.37%), Query Frame = 1
BLAST of Spo20450.1 vs. NCBI nr
Match: gi|902160469|gb|KNA06450.1| (hypothetical protein SOVF_180910 [Spinacia oleracea]) HSP 1 Score: 757.7 bits (1955), Expect = 1.200e-215 Identity = 405/429 (94.41%), Postives = 405/429 (94.41%), Query Frame = 1
BLAST of Spo20450.1 vs. NCBI nr
Match: gi|731311692|ref|XP_010670594.1| (PREDICTED: solanesyl-diphosphate synthase 1, mitochondrial isoform X1 [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 688.3 bits (1775), Expect = 9.300e-195 Identity = 369/431 (85.61%), Postives = 395/431 (91.65%), Query Frame = 1
BLAST of Spo20450.1 vs. NCBI nr
Match: gi|731311694|ref|XP_010670597.1| (PREDICTED: solanesyl-diphosphate synthase 1, mitochondrial isoform X2 [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 577.8 bits (1488), Expect = 1.800e-161 Identity = 300/326 (92.02%), Postives = 320/326 (98.16%), Query Frame = 1
BLAST of Spo20450.1 vs. NCBI nr
Match: gi|359489044|ref|XP_002268229.2| (PREDICTED: solanesyl diphosphate synthase 3, chloroplastic/mitochondrial isoform X1 [Vitis vinifera]) HSP 1 Score: 569.7 bits (1467), Expect = 4.800e-159 Identity = 305/378 (80.69%), Postives = 336/378 (88.89%), Query Frame = 1
BLAST of Spo20450.1 vs. UniProtKB/TrEMBL
Match: A0A0K9QK47_SPIOL (Uncharacterized protein OS=Spinacia oleracea GN=SOVF_170370 PE=3 SV=1) HSP 1 Score: 793.9 bits (2049), Expect = 1.100e-226 Identity = 417/429 (97.20%), Postives = 422/429 (98.37%), Query Frame = 1
BLAST of Spo20450.1 vs. UniProtKB/TrEMBL
Match: A0A0K9QGV3_SPIOL (Uncharacterized protein OS=Spinacia oleracea GN=SOVF_180910 PE=3 SV=1) HSP 1 Score: 757.7 bits (1955), Expect = 8.700e-216 Identity = 405/429 (94.41%), Postives = 405/429 (94.41%), Query Frame = 1
BLAST of Spo20450.1 vs. UniProtKB/TrEMBL
Match: A0A0J8D3X1_BETVU (Uncharacterized protein OS=Beta vulgaris subsp. vulgaris GN=BVRB_1g004830 PE=3 SV=1) HSP 1 Score: 688.3 bits (1775), Expect = 6.500e-195 Identity = 369/431 (85.61%), Postives = 395/431 (91.65%), Query Frame = 1
BLAST of Spo20450.1 vs. UniProtKB/TrEMBL
Match: D7UB76_VITVI (Putative uncharacterized protein OS=Vitis vinifera GN=VIT_15s0024g00850 PE=3 SV=1) HSP 1 Score: 569.7 bits (1467), Expect = 3.300e-159 Identity = 305/378 (80.69%), Postives = 336/378 (88.89%), Query Frame = 1
BLAST of Spo20450.1 vs. UniProtKB/TrEMBL
Match: K7NBK7_SIRGR (Geranyl diphosphate synthase OS=Siraitia grosvenorii PE=2 SV=1) HSP 1 Score: 561.6 bits (1446), Expect = 9.100e-157 Identity = 308/429 (71.79%), Postives = 352/429 (82.05%), Query Frame = 1
BLAST of Spo20450.1 vs. ExPASy Swiss-Prot
Match: SPS1_ORYSJ (Solanesyl-diphosphate synthase 1, mitochondrial OS=Oryza sativa subsp. japonica GN=SPS1 PE=1 SV=1) HSP 1 Score: 510.8 bits (1314), Expect = 1.700e-143 Identity = 271/369 (73.44%), Postives = 316/369 (85.64%), Query Frame = 1
BLAST of Spo20450.1 vs. ExPASy Swiss-Prot
Match: SPS3_ARATH (Solanesyl diphosphate synthase 3, chloroplastic/mitochondrial OS=Arabidopsis thaliana GN=SPS3 PE=1 SV=1) HSP 1 Score: 491.1 bits (1263), Expect = 1.400e-137 Identity = 270/433 (62.36%), Postives = 344/433 (79.45%), Query Frame = 1
BLAST of Spo20450.1 vs. ExPASy Swiss-Prot
Match: COQ1_NEUCR (Probable hexaprenyl pyrophosphate synthase, mitochondrial OS=Neurospora crassa (strain ATCC 24698 / 74-OR23-1A / CBS 708.71 / DSM 1257 / FGSC 987) GN=NCU02305 PE=3 SV=1) HSP 1 Score: 253.1 bits (645), Expect = 6.200e-66 Identity = 159/376 (42.29%), Postives = 221/376 (58.78%), Query Frame = 1
BLAST of Spo20450.1 vs. ExPASy Swiss-Prot
Match: DPS1_MOUSE (Decaprenyl-diphosphate synthase subunit 1 OS=Mus musculus GN=Pdss1 PE=1 SV=1) HSP 1 Score: 245.7 bits (626), Expect = 9.900e-64 Identity = 144/353 (40.79%), Postives = 213/353 (60.34%), Query Frame = 1
BLAST of Spo20450.1 vs. ExPASy Swiss-Prot
Match: DPS1_HUMAN (Decaprenyl-diphosphate synthase subunit 1 OS=Homo sapiens GN=PDSS1 PE=1 SV=1) HSP 1 Score: 243.4 bits (620), Expect = 4.900e-63 Identity = 142/355 (40.00%), Postives = 212/355 (59.72%), Query Frame = 1
BLAST of Spo20450.1 vs. TAIR (Arabidopsis)
Match: AT2G34630.2 (geranyl diphosphate synthase 1) HSP 1 Score: 491.1 bits (1263), Expect = 7.700e-139 Identity = 270/433 (62.36%), Postives = 344/433 (79.45%), Query Frame = 1
BLAST of Spo20450.1 vs. TAIR (Arabidopsis)
Match: AT1G17050.1 (solanesyl diphosphate synthase 2) HSP 1 Score: 220.7 bits (561), Expect = 1.900e-57 Identity = 127/319 (39.81%), Postives = 201/319 (63.01%), Query Frame = 1
BLAST of Spo20450.1 vs. TAIR (Arabidopsis)
Match: AT1G78510.1 (solanesyl diphosphate synthase 1) HSP 1 Score: 211.8 bits (538), Expect = 9.000e-55 Identity = 127/319 (39.81%), Postives = 200/319 (62.70%), Query Frame = 1
BLAST of Spo20450.1 vs. TAIR (Arabidopsis)
Match: AT3G14510.1 (Polyprenyl synthetase family protein) HSP 1 Score: 90.5 bits (223), Expect = 3.000e-18 Identity = 86/279 (30.82%), Postives = 134/279 (48.03%), Query Frame = 1
BLAST of Spo20450.1 vs. TAIR (Arabidopsis)
Match: AT3G29430.1 (Terpenoid synthases superfamily protein) HSP 1 Score: 89.4 bits (220), Expect = 6.700e-18 Identity = 70/200 (35.00%), Postives = 107/200 (53.50%), Query Frame = 1
The following BLAST results are available for this feature:
BLAST of Spo20450.1 vs. NCBI nr
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. NCBI nr) Total hits: 5
BLAST of Spo20450.1 vs. UniProtKB/TrEMBL
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. UniprotKB/TrEMBL) Total hits: 5
BLAST of Spo20450.1 vs. ExPASy Swiss-Prot
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. ExPASy SwissProt) Total hits: 5
BLAST of Spo20450.1 vs. TAIR (Arabidopsis)
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. TAIR) Total hits: 5
InterPro
Analysis Name: InterPro Annotations of S. oleracea
Date Performed: 2018-06-29
GO Annotation
GO Assignments
This mRNA is annotated with the following GO terms.
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