
MELO3C008835 (gene) Melon (DHL92) v4
Overview
Sequences
The following sequences are available for this feature:
Legend: exonfive_prime_UTRpolypeptideCDSthree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.GGGGTTCTATCGAACAACGGATAATCATCATCATTATTACCGTAATAAAGCTACAATTTTGGAGTATATTTTCCTTATATTTAAACACAAATATTCTTATTTTGCTCTCTCTTCTTCTATAATTATTCTTGTATTCTGGGTATTTTATCAATGAATTATACAATTATTCCATCAAAATAATAATCATCACGATGTTTTTTCTAACTTCTGTAAAAAGTTCTGAACCATTTCTGTAATCTATGTCGCACGCCCTTGAACACAAAAGAATCGACACAGTCGTCTTCTCTAACTCTCGCTTTTGCCTGAGACCGCCGGAAAAGACAGCAGCATAGTCAAATAATGGAGGCCATTCTAAAGGTGAAAACGTTCTTCTTCCTTCATTTTCCTTTGTTTCTGGATATGGGGTTATGTTTGTTGTGGTTGCTATGGCTGTTTTTGGACTTGCACTTCTTTGTAGTTGAGTTAATAGTGAACTATAAGGACAGTATTTGTGAAATAAATTTGTGGGTATTGAAAATTGTTATGATTTGGTTGCTGTTGCAGAGGTACTTTGGATTCTCGGCGTTTAGGCCGTATCAGAAAGAAGTCATTCAAGGCATTCTTCGTGGGAAGGATTGCTTGGTGGTTAAGGGTACTGGAAGCGGGAAATCCTTATGGTAGCTTGTTCTTAATCATTTTGTATTTGTATTTATTGCATTTTGTTAATGGGGTTTGCGTGTTATTGTTTGTTTAAGTAGTGATTTATTTTTATCTTTACTTGTTAAAGTTATCAGGTACCGCCTTTGGTAGTTGGAAAGACTGGCATAGTTGTTAGCCCTCTTATATCATTAATGCAGGATCAGGTAATCGATTATTGTCATTACCATTGTTTTGCTTTCCGTGAAACTCAAGGTGGACGCCAGCTGAATCGGACTCCCATGAATGTGAAAAAAGAAGAAAGCCATTGTTCTGTTGCTCTCTTTTGCCATTGGATTTTAGATCCCATGTTCTATTTTCCTAAGCCAGTTTTGGATTATGGATCCATAGGTAATGGCTTTAAAACAAAGAGGGATCAAGTCTGAGTACCTTGGAAGTAGTCAGACTGATTACACAGTTCAAGACAAGGCAGAGAGGGGTCAATATAATATATTGTTCATGACACCAGAAAAGGCATGCTCTGTATCCATGAGGTATACATTAGTGGAGCACATGTAAAGTTAATTCTATGTCTTACATTATTCTTCCTCTGCTCTTTCTGTGCATCCATGGGATCTCTTCCCACTTCCAGTTCCCATCTGCTGTCTTGTTTGATCATAAGTTCTATTTGTTCCGATAGTTATGCAAATGTATTCTTAAATACTTTTAAATGTAGACTTAAATTATGGTATTTGAGTCCTGTAAGGATGGCTTGGTATTACTAGCTGCACATTATACTGGAGCAAATTTTAGTACTTTCGTATCTAGGAATTGGATGTGTGAAGTGGGATAGATTTGTACAATACTGAAGCCATGTGAGGTAGTTTCTGATGGAATTCATACACATTTACTTGGTAGAAAAAGATGGTTTAAAAGGATATTTATGATACATGGCATTCTAATATCCTATCTTGACTAACACCTTTTTATTTATTTTTGAACTTCATTTCTGCAGTTTTTGGTCAAAATTAAAGAAGGAAGGAATTTGTTTGTTTGCCGTTGATGAAGCACACTGCATTTCAGAGTGGGGGCATGATTTTAGGTTAATTTTACGTCTTTTTTATTTTTCTCTTATTTTTGTTAAAAATATTGTATAATTAAATTTACCATAACCTATCAACTTAAGCTATTAAGTTGAGTGGTGGTTTAACAATTTTCAACTTTTCTCCCATGGACCCTATTCTGAGTTAAGTGGCTTATTGGTTTTGAGATTGGTTGTATGTTACTTTGTTGTCCAATTGTCCCCAACATCGAGCTCCTGTCTACATTTTTGAACATCAGTTTACGAAACAGGGAGAACCATGCTTTCAAAATTTCATCTTAGGAATGGGTTTATGCATCACTCGGTTTGTAAGGATTTAGTGTATTATAGAAACTAGAATGTAAAGACTGTGGTTGTTCATAGAAGTTGAGTGCATTCCTCATTGATGAGCTTGTTACATTGTATGAATGTGAGGAAAGACTTTTCCTTTCTCCTTTGAACTAGCTTTAGAGGTTGATAGAGCTCATAGACACCAACAACTCGTGGTGTCTGAGGATAAGTTAAAATAAATCTAATGGTTCGCAGGCCAAGCTAATAGTGTAAGTAACTGAAGCAGCTGCGGAAATTATTAACAATTATGATCAAATGTAGCAATTTTCTTATCTTATGCAGTGTTTGAATAAGTTAAAAAAGGAAGAGTACCCTTTTTTTTAAAATAATTTTATTAGCATGAAAGTACCAAAGGACAAGGGGACATGGCATGCAGCTTAGCCAAGCGAGAAGAAATTAGATGTACAGTTTTCACTTTTCAGCTACGAAAGTTGCTGGGGAATAGATTTTTAGCTCTTGTTTAGCTAAGTTCTTTGCATCGACGTGAGAAAACATATTGTTGATTTTATGTTTCTTTATGTTCAATGTGGAGTTTTCTTCTCTCCAATTTAGTACTTCTCTTAATTGTTCTATAAACTATTGGGTTCTGATCATAGGGTAGAATACAAACAGCTGGACAAACTTCGCGATGTTCTACCAGGTCTTCCATTTGTTGCACTGACTGCCACTGCAACTGAAAAGTAGGTAGCTAAATTTCTTCAAATTACACCAGTTACTTTCTCTTTTCTATGCTTCTTTGTTTTTGTTGTTGGACTGAAAACGTCCCTTAGCAGAGCTATCACATACTGCATCCCAATGGTTTGTGTTGTTATTGAACTCCATTGCTCTATCTATGGTGAACTGTTTTGTTTGAAGGTTGACCTTTCTTACTAATATATATTTGGATAGATTCCGTTAAATATCATATAAAAGATTCTCTCTTTTCATTGTAAATTTATTCTTTTATTTTGCCTAGGAGATAACGGACTTCTGATTTTTTGATTGAGATTGTATGCCTTAACTAGTTGAGCGAAGCTTGTATTTATTGAAATTTTACTTGTATGATGGAGAAAAGTGGAACTCTTGTACGGCACATGTTTTCTAGTTAATAGCCCCATGGCTGTATTGGCATTCTATTTATAAGCCATAGCAATGAGATTATGCACGGTTCCATTCAATAATTTGGTGCATTATAAGGATATTTTGTGATTTTTTTAAATTTCAATTTTTATGCTCTTAAATTTATTTCCTTGGATCATTTCAGTTTTCAGTACATTTTCTTGGGAAATGAATTCCTTGGGTATTTATTTCATATATTGTTCTAGGGTTCGGAGTGACATTATTAATTCTTTGAAGATGAAAGACCCACAAGTTACCATTGGTTCATTCGATCGAACAAATCTTTTTTATGGAGTCAGGTCTTTTGATCGTGGTCCATTATTCATGAATAAGCTAGTGCTTGATATCTCTAAGTATGTAGCCTCTGGTGGTTCAACTATCATTTACTGCACGACAATTAAAGATGTTGAGCAGGTATATTCTTTTGCTTCTAGTTCTTACAAATGCCACATCCAAGTTCACTGTTAAAAAGTATAGGCAAAGAAATAGGCATAGGTAAAAAAATATTTGCATACTTACCTAGCATGACAAATTGAGGGCATCGAGCAACATGATTATTTCGTTATTGTTAATTATCTTTGAGATTTTATATGCCTTCATGATGGGCTGGTGCAACAATTTGTGCATCATGCACTTTCAGGTTTATGCTGTTGAGCTTATTGATTGGTTCTTTGTAAATTTTGGTCCGAATTTTTCCTAGATATCCAAGGCACTTGAAGAAGCAGGGATTAGTGCTGGAATTTATCACGCTCAAATGGACAAAGAATCACGTGCAGAATCCCACAGGTTATACCAATAGTTCGTGGCAACTATGGAGCTGAATTCTATTGATGCTCTATATAATCAATAATACTGGCAACCATAGCTCATTTAGCCTTTTATTTGTTTGGTTCTCTGATTGTAACACCTTTTCTTTAATCAGACTATTTATAAGGGATGAAGTGCAAGTCATGGTTGCCACTGTTGCTTTTGGTATGGGTATTGACAAACCAAATGTAAGACAGGTGATACATTATGGCTGCCCAAAGAGTCTAGAATCTTATTATCAGGAAAGTGGGCGATGTGGTAGAGATGGTATTGCTTCTGTTTGCTGGCTTTATTACACGAGAAGTGATTTTGCTAAAGCAAACTTCTATTGTGGTGAATCACTAACTGTATGAATCATGCTTTCGTTCTTAAATTACTTACCATTCTATTTGATGAAAAATTTACTTTTCCTTGTGGTGTATGTGTATATAGTTTAAAATTTGAACTGGATTCTTCTATATTTGCTTTCTTTTGTTAGGAAAACCAAAGAACAGCCATTATGGAATCATTGATGGCTGCACAGCAGTATTGTTCTATCGCAACTTGCAGAAGAAACTTCTTGCTCAGTTATTTTGGGGAAAAATCTGAGTCTGAAAAATGTGGTTTGTCTTTTACTAGGTTTTGTTCTTTAAATCTTGTCAATTCTTATGACAATCTTCCAGTACTCTGATTCTGACCTTGAGCTGACATCTTTGTCCACAGTTCCTGTCATTCTATTTTGTAAAGAGCATATTGTCGTGTGTTTTCTTTTCTTTCCTAATTCTTCCCTTTGGCTAAGTGGTTTTGGAGGATTAGACCGTTTAGCATAAGATTAGTTTTAGCATGATATGTATGCACATGGGTGAAGCTCTAAAGTGATTTCGAAGATATTGGAAAATTGTCTCTCTTATTGTTTATATGTTTACAGGCATACCAATTGTAATTTTTGTGGGGCAAGAATTCATATTTTAGGAGGATAACCTTGAGTTGGTGTTTAATCCTTGTACAATCAATTCCTTTGATTCTATACACTATCACTCTATTAGATGCTGAAGCATTTGGACAGTTTTTAACTGTCTCTGTAATTTGAGATCTCTGAGCCACTGTTTGTTCAATACTCGTAATCATAGAGGCTGCGGTTGTTATATGTGTATGCTTTCAGTTACACATGGTGTACATCTCCCAGTCCACAGTTATCGAGAGAAAATGTTTACCGTCCACCCTTGAAACACAAAGAGATGTGTTGCAGATTTGTGTGGCTCAGATTTTTCTGTAGGAAATGTGTATGAACAGGAATCTACGACCCTTCCATAGTTATTTATTATTCCAATGAAGAGAGGGATATTGTTGGTAGAGTATACTTCAAAGTTTCTGTAAGACCTCCTATTATTAATGTGTATAAGAGGAGGGGTAAGAAAGGAAAGTTACATGACAGCAAGGAGGAAAGAGAGAATGGAAATGAAATAGTGGATTAGTGGAGCAGCAAGTGGGCCCTACAGGATCATGTTGTTTGTCTTATTCGGCCAAATGTCTTATAAATAGCAAGGGGAGGGTAGCATTCTAGGTATGAGAGATTTATAAAGAATGTTTTGAGAAAGAATAGAGATTGGCGGCTGGGGAACCCTACCTTAGCCTAGGAGAATAGGTTGGTTGGTTCTTTACTGTTTTCCTTGTTTTATTTCCTAGTTATTTCTATCATATATCTTGTATCTACTGTTTTTTTGGCAATATAAATATATAAACACAGAGTGCTGCCTCTGTTTTTGCCCTTGAGTTAGTAAGAGAATATAAGAAAGAAGTGAGAATCCTCACAATTGGTATCAGAGCCTTGTCAAACTGGGAGTGATTACAAGACTGATGGCACAACGACAAATGGAAGAAAGGCTGGAGGGAACGGAAAAAGAGGTGTTGAGCCTCAAGGAAATGATGCTGGAGATGAAGAAGAGTATGGACAGATTGGCCGATGAGTTGAGGGACCAGTCTTATAAGAAAAAAGAAGAATCTGGTACATCCGACGGGTCCATTATGAAAATGAAAGGAAAAATGGAAGAGACAGATGTAACTGGAGAAATACATACCCACCAGATCGATCGAAGCAAATATAAGAAGCTGGAAATGCCCATGTTTCTGGGAGAAAATCCAGAATCCTGGGTTTACCGGGCAGAGCATTTTTTGAAATCAACAACTTACCAGAAGCAGAAAAGGTCAAGGTGGCAGTGGTGAGCTTTGGACAAGATGAAGTGGACTGGTACAGGTGGAGCCACAATAGGAGAAAGGTGGAATCGTGGGAAGATCTGAAGACCAGAATGTTCGAATTCTTCAGGGATACTGGACAGAAAAGCTTGGGGGCTAGGCTAATACGCATTCAACAAGAAGGCTCCTACAGTGATTATGTTAAGAAGTTCGTAAACTACTCGGCACCTCTCCCACATATGGCTGAAAGCGTGCTCCGTGATGCCTTCTTAACTGGCTTAGAACCTGCGCTTCAAGCTGAAGTGATGAGTCGACACCCTCAAACACTAGAAGATTGTATGATGGCAGCCCAGTTGGTGAATGACCGGAACTTAGCACTCAAGTTGGCTCAAGCAGAGATGGGTATTATCGAGCCAAAAAGAAGCGAATCAGTTGGTAATAAGGTGCAATGGAACAACGAAAAAGGGATGTTGAGGAAAAATGAGTTCCAAATGAAGCAAATAACTATACCCCTCAAGGGAAGTTATCAAAAAGGAGAGCCCCCCGTTAAAAGACTGTCTGATGCCGAATTTAGAGCACGTTTAGACAAGGGTCTCTGTTTTAGGTGTAATGAGAAATATTCTCATGGACATCGATGCAAAATCAAAGAAAAAAGGGAGCTCATGCTTTTTATCTTGAATGAAGAAGAAAGCACCGAGGAAGGGGAAGGTTCAGAGGCACCAAACACAGAACCAGCAGAGATCAATCAGTTGGGAGAACCAGAAGAAACTATGATCGAATACCGGGCCATCACCAGTTTGACAACTAAAGGAACTATGAAGCTGAGAGGAATAGTCAAAGGAAAAGAGGTTATTGTATTGATTGACAGTGGGGCAACCCACAACTTCATTCATCATGAGCTGGTCAAGGAAAGGAAAATCCCCATCAATAGAAACACTCAGTTTGGGATTACTATTGGCGATGGCACAAGTTGTAAAGGAGAGGGCATTTGTAGCAAAGTAGAAATCCAGCTTGAAGGGCTAAGAGTAGTAACTGATCTGTTGGTTGTGGGATTGGGGACAATAGACGTGGTGCTGGGAATGCAATGGTTGGATACAACAGGCACCATGAAGATTCATTGGCCATCGTTGACAATGGTCTTTTGGAAGGAAGGGAATAAGGTGGTTTTAAAAGGAGACCCGGCTTTGATAAGGGCAGAATGTTCACTCAAGACCTTAGAGAAAACATGGGAAGCGGAAGATCAAGGTTTTTTGCTTGATTGGCAAAGATATGAGATCGAAAATGAGGATGCTGATAGCAAAAACACGAGCCATACAGGAGATGAAGAGGGATTACCAATGATCCAGTTCTTACTCCATCAATACTCTGATGTGTTTAAAAGTCCGACCACTCTACCACCCAAGAGAAGCATTGATCACCGCATACTCACTCTACCGGGGCAGAAGCCAATCAATGTCCGACCTTATAAGTACGGCCATCAACAGAAAGAAGAGATAGAAAAGCTAGTCATTGAAATGCTGCAGACCGGAATCATTAGACCAAGTCACAGCCCTTTCTCAAGTCCAGTGCTGTTAGTCAAGAAAAAAGATGGGGGCTGGAGGTTTTGTGTCGATTACAGGAAGCTAAATAAGATTACAATAGCTGATAAGTTTCCCATTCCGGTTATTGAAGAACTCTTGGATGAGTTACATGGGGCCACGGTGTTTTCCAAATTAGATTTAAAGTCAGGTTACCATCAAATACGAATGAGAGAAGAAGATATCGAGAAGACTGCGTTTAGGACGCATGAAGGCCATTACGAATTCGTGGTAATGCCATTTGGTTTAACCAACGCTCCTGCCACTTTTCAATCCTTAATGAATCAGGTATTTAAGCCTTTTCTCCGACGTTGTGTTTTGGTTTTCTTTGATGATATACTAGTCTATAGTTCGGACATAACAGAACACGAGAACACTTGGGAATGGTGTTTGCAACACTAAGAGACAACCAGTTGTATGCTAATCGCAAGAAATGCGTTTTTGCTCACTCACAAATACATTACTTAGGCCATGTTATCTCCAAACATGGAGTGGAGGCAGATCAGGATAAAGTTAAAAGTATGCTACAGTGGCCGAAACCCAAAGATGTGACAGGTTTAAGGGGTTTTTTGGGGCTGACGGGCTACTATAGGCGTTTTGTCAAAGGTTATGGTGAGATTGCAGCACCACTGACTAAACTACTGCAGAAGAACGCTTTCAAATGGGATGAGAATGCCACCCTTGCATTTGAAAGTCTGAAATCTGCAATGTCTACCATACCAGTACTGGCTTTACCCGATTGGTCTCTACCCTTTATGATAGAAACTGATGCCTCAGGTAGTGGATTGGGAGCAGTATTATCCCAGAACAGCCATCCCATAGCATTCTTCAGTCAGAAATTGTCTACAAGGGCTCAAGCCAAGTCCATATACGAGAGAGAATTGATGGCTGTAGTATTATCCGTGCAAAAGTGGCGGCACTATCTTTTAGGAAGGAGATTCACCATTATGTCAGACCAAAAAGCTCTAAAGTTTTTATTGGAGCAGAGAGAGGTACAACCACAATTCCAAAAGTGGTTAACCAAGTTATTGGGATATGACTTTGAAATTTTGTACCAACCGGGACTTCAAAATAAGGCAGCAGATGCACTTTCAAGGATGGATCATTCAATAGAATTGAAGGCGTTGTCAACAACAGGGATTGTAGACATGGAAGTAGTTACAAAGGAAGTCGAGAAAGATGAAGAACTTCAACTCCTAATCCAACAGTTGCAGAATAACCCAGCATTGGAGGGCAAATACTCTTTAACAAATGGCACGCTAATGTATAAAGGAAGGGTGGTGCTGTCCAAATCATCGTCAATTATACCCAGCCTTTTACACACCTTCCATGATTCGATTTTGGGGGGGCCATTCAGGATTTTTGAGGACTTACAAGCGAATGAGTGGTGAGCTGTTTTGGAAAGGTATGAAAGAAGACATCAAGAAGTATGTGGAACAGTGTGAAATCTGCCAAAGAAATAAGAGTGAAGCAACCAAACCGGCAGGGGTTCTACAACCATTACCCATACCCGACCGCATATTGGAAGATTGGACTATGGACTTCATCGAAGGATTGCCTAAAGCAGGAGGTATGAACGTGATTATGGTGGTTGTAGACCGGCTGAGTAAATATGCTTACTTTGTCACCATGAAGCATCCGTTTTCAGCAAAGCAAGTTGCCATGGAATTCATTGATAAGATGGTTCGAAGACACGGTATCCCTAAGTCAATTATATCAGATAGGGACAAAATATTTGTAAGCAACTTTTGGAAAGAACTATTTTATGCCATGAATACCATCCTTAAACGAAGCACTGCCTTTCATCCTCAAACGGATGGCCAAACAGAACGAGTCAATCAGTGTTTAGAAACCTACTTACGGTGCTTTTGTAATGAGCAACCAAACAAATGGCATCAGTTCATTCCATGGGCAGAGTTATGGTACAACACCACATTCCATTCGTCAACACGCACAACTCCTTTTCAGACTGTGTATGGTAGACCCCCACCACCCCTGATATCCTATGGAGATAAGAAGACACCTAATGATGAAGTTGAAGCATTGCTGAAGGAAAGAGATTTGGCTATTAGTGCGCTCAAGGAGAACCTCACGATCGCTCAAAACAGAATGAAGAAGTTTGCGGACTCAAAGAGGAGAGAACTTAAGTTTAAAGTAGGAGATGAAGTCTATCTAAAGTTAAGACCCTACCGGCAGCGCTCCTTAGCAAGAAAAAGGGCAGAAAAGCTAGCTCCTAAATATTATGGCCCATATCGCATCACTGAAACCATAGGAGAAGTGGCATACCGACTTGATCTACCACCCGAAGCATCAATTCATAATGTTTTCCACATATCACAGCTCAAACTGAAACTAGGCAACCAACACAACGTCCAAATCCAACAACCACAGCTCACAGCAGAGTTCGAATTACAACTTTGGCCGGAGACAGTCTTAGGCATACGTTGGAGTCCTGAATTGGGAGCCAATGAATGGCTGGTGAAATGGAAAGGATTGCCAGACAGTGAAGCCACCTGGGAATCAGTTTACTCAATGAATCAACAGTTTCCTTCATTCCACCTTGAGGACAAGGTTAGTTTGGAACCCCGGGGTATTGTAAGACCTCCTATTATTAATGTGTATAAGAGGAGGGGTAAGAAAGGAAAGTTACATGACAGCAAGGAGGAAAGAGAGAATGGAAATGAAATAGTGGATTAGTGGAGCAGCAAGTGGGCCCTACAGGATCATGTTGTTTGTCTTATTCGGCCAAATGTCTTATAAATAGCAAGGGGAGGGTAGCATTCTAGGTATGAGAGATTTATAAAGAATGTTTTGAGAAAGAATAGAGATTGGCGGCTGGGGAACCCTACCTTAGCCTAGGAGAATAGGTTGGTTGGTTCTTTACTGTTTTCCTTGTTTTATTTCCTAGTTATTTCTATCATATATCTTGTATCTACTGTTTTTTTGGCAATATAAATATATAAACACAGAGTGCTGCCTCTGTTTTTGCCCTTGAGTTAGTAAGAGAATATAAGAAAGAAGTGAGAATCCTCACAGTTTCCTTTAGTCTTTGGTCCTCTTGATCAGTTAAAATTTCTTCTTAAGCTTTATCTATATACTATTTTCTTCCTTGGTAAGGGTTATCCTCTATCTGGGACTTCTAAAGATATTTGTTTTTCTCTTTATTCCAATGGTTGAGTATTTGATTTTTCAAGATCTTCTTTTGTACTCCTCTTTAAATGTGTTGCTGGAAGTTGAAACGCTGATATAATGCTTGATTAAAAATCTTCATTTAGTGCCGTCGATAGATTGATTAGAACTTGTTGTTTGATAATGATGATGGCATGGTTGATTCTTTTGTAATTTACACACACACGTACACACACATTTATGAAAAAAGCACTTTTGGAAAGCTTGTTCAGCTACTTCCCTGTAATTTTATTTAGTTGTTGACTATCAACGCCTCTGGCAGGAAATTGTGATAACTGCATAGACTCACAAAAGGAGCGTGACATGTCAAAAGAGGCATTTCTTCTACTGGCCTGCATCCAATCTTGCTGGGGTACATGGGGACTGAACATGTATGTGGATATTCTTCGTGGATCTAGAGTAAGTTCTTAGCTATATGAAACTTTGGAACTTCTGAATCAAAGATTACCCTTCTTTTTCAATTCATTTTAATCCCCTGGGTGTCATGCCCTGTAGTTTAGTAGAGCACCCTTCCATGGTATTGCATTGTGAAATTTTCTATAACAATATTCTGCCCGAGGAACGATCACATTATAACATACTTGACATTTGTTTTCTGATTTTTACTTCTTGCTTAATCTCTAACATTCTTTCATCGCTTGCAGGCAAAAAAGATACTTAATGCTCAGTTTGATATGCTTCCACTTCATGGACTTGGAAGAGAATACTCATCAAATTGGTGGAAAGCACTAGCTAGTCAATTAATTTTTAACGGTAGGTGAAGGAACTTGAATTGCCTTTATTTAAATGGGGATTCAGCTAAAAGTACTTGAGCATTGTAGGTATTTTTTTTGTCATGCTCAGGCAGTGTCTTAAATGCAACATTCCTAACTAAAGTACTTGAAAAACTCAAGCATTTCCCTTAAACGGGTACTTGAGTTTTCCTCTGAGTTAATAATCGGATAAAAAGGAGGTACATTCGTCATAAAACCGAACTCCACTGTTTTCTTCGTCAGACTTACAAAACAGAACTTTGGTTGTTATCTATAGCAGGTTTTAAGTTTTCATTGAGCATATATTAGTATAATTTTTTTTACTTGTTGCTGGAAATGCTTTGTGAGTTTCTTTTTGTATTGATAAGAAATAGTTCATCTTTTATGAATTGTAGTGTTTAAGGTATTTTGGTAAAATTTGTATTGTGCAGGCTATTTGACAGAGAACATACGCGATGTTTACAGAACCATAAGGTCATCTACTTTCACCCAATCTTTTACTTCTGCAACTTAACTTTAGAGTTTTACAGTTATCCATCCGTTTTCAAATTTTATCAATAGGAAAGCTAATGATTTCGTGTGAACATCTCCTCTCCTGTCCAGTCAATCAATCTTATATTCTTCTAATTATCTGAAATTGAAACTGACAATTAGAATAATTCTTCCTTCTTAACAATAGTATCAGTGCAAAAGGGCAAAAATTTCTCAATTCTGTCAGACAGGACTGCCTACCACCTCTATTTTTGCCGGTGACGAGTGAAATGATTGGTGAGAGAAAATGACAGTGCATTAAGTGAAGCTGGGAAAATGGAAATTTTGGGCACTTACTTTCAGAGGTTTGCATGTTAAATTTCATGCCTTGTTTATGTTTTCTATTGGATACACGTGGAAGGATTGAGATAGTTATCTTCTGAAAATAGCTAAGTTGCCCATAAACTATATTACATACTCATGGGTTTAGTTAATAGAAGTCTATGTGGCAATAATTGTCATTATTTGTTATATTGGTTTCATTATTATACTTTGAGCATTAATCTTTTCAATTCATCAATGAAAAATCTTGTTTTCTT GGGGTTCTATCGAACAACGGATAATCATCATCATTATTACCGTAATAAAGCTACAATTTTGGAGTATATTTTCCTTATATTTAAACACAAATATTCTTATTTTGCTCTCTCTTCTTCTATAATTATTCTTGTATTCTGGGTATTTTATCAATGAATTATACAATTATTCCATCAAAATAATAATCATCACGATGTTTTTTCTAACTTCTGTAAAAAGTTCTGAACCATTTCTGTAATCTATGTCGCACGCCCTTGAACACAAAAGAATCGACACAGTCGTCTTCTCTAACTCTCGCTTTTGCCTGAGACCGCCGGAAAAGACAGCAGCATAGTCAAATAATGGAGGCCATTCTAAAGAGGTACTTTGGATTCTCGGCGTTTAGGCCGTATCAGAAAGAAGTCATTCAAGGCATTCTTCGTGGGAAGGATTGCTTGGTGGTTAAGGGTACTGGAAGCGGGAAATCCTTATGTTATCAGGTACCGCCTTTGGTAGTTGGAAAGACTGGCATAGTTGTTAGCCCTCTTATATCATTAATGCAGGATCAGGTAATGGCTTTAAAACAAAGAGGGATCAAGTCTGAGTACCTTGGAAGTAGTCAGACTGATTACACAGTTCAAGACAAGGCAGAGAGGGGTCAATATAATATATTGTTCATGACACCAGAAAAGGCATGCTCTGTATCCATGAGTTTTTGGTCAAAATTAAAGAAGGAAGGAATTTGTTTGTTTGCCGTTGATGAAGCACACTGCATTTCAGAGTGGGGGCATGATTTTAGGGTAGAATACAAACAGCTGGACAAACTTCGCGATGTTCTACCAGGTCTTCCATTTGTTGCACTGACTGCCACTGCAACTGAAAAGGTTCGGAGTGACATTATTAATTCTTTGAAGATGAAAGACCCACAAGTTACCATTGGTTCATTCGATCGAACAAATCTTTTTTATGGAGTCAGGTCTTTTGATCGTGGTCCATTATTCATGAATAAGCTAGTGCTTGATATCTCTAAGTATGTAGCCTCTGGTGGTTCAACTATCATTTACTGCACGACAATTAAAGATGTTGAGCAGATATCCAAGGCACTTGAAGAAGCAGGGATTAGTGCTGGAATTTATCACGCTCAAATGGACAAAGAATCACGTGCAGAATCCCACAGACTATTTATAAGGGATGAAGTGCAAGTCATGGTTGCCACTGTTGCTTTTGGTATGGGTATTGACAAACCAAATGTAAGACAGGTGATACATTATGGCTGCCCAAAGAGTCTAGAATCTTATTATCAGGAAAGTGGGCGATGTGGTAGAGATGGTATTGCTTCTGTTTGCTGGCTTTATTACACGAGAAGTGATTTTGCTAAAGCAAACTTCTATTGTGGTGAATCACTAACTGAAAACCAAAGAACAGCCATTATGGAATCATTGATGGCTGCACAGCAGTATTGTTCTATCGCAACTTGCAGAAGAAACTTCTTGCTCAGTTATTTTGGGGAAAAATCTGAGTCTGAAAAATGTGGAAATTGTGATAACTGCATAGACTCACAAAAGGAGCGTGACATGTCAAAAGAGGCATTTCTTCTACTGGCCTGCATCCAATCTTGCTGGGGTACATGGGGACTGAACATGTATGTGGATATTCTTCGTGGATCTAGAGCAAAAAAGATACTTAATGCTCAGTTTGATATGCTTCCACTTCATGGACTTGGAAGAGAATACTCATCAAATTGGTGGAAAGCACTAGCTAGTCAATTAATTTTTAACGGCTATTTGACAGAGAACATACGCGATGTTTACAGAACCATAAGTATCAGTGCAAAAGGGCAAAAATTTCTCAATTCTGTCAGACAGGACTGCCTACCACCTCTATTTTTGCCGGTGACGAGTGAAATGATTGGTGAGAGAAAATGACAGTGCATTAAGTGAAGCTGGGAAAATGGAAATTTTGGGCACTTACTTTCAGAGGTTTGCATGTTAAATTTCATGCCTTGTTTATGTTTTCTATTGGATACACGTGGAAGGATTGAGATAGTTATCTTCTGAAAATAGCTAAGTTGCCCATAAACTATATTACATACTCATGGGTTTAGTTAATAGAAGTCTATGTGGCAATAATTGTCATTATTTGTTATATTGGTTTCATTATTATACTTTGAGCATTAATCTTTTCAATTCATCAATGAAAAATCTTGTTTTCTT ATGGAGGCCATTCTAAAGAGGTACTTTGGATTCTCGGCGTTTAGGCCGTATCAGAAAGAAGTCATTCAAGGCATTCTTCGTGGGAAGGATTGCTTGGTGGTTAAGGGTACTGGAAGCGGGAAATCCTTATGTTATCAGGTACCGCCTTTGGTAGTTGGAAAGACTGGCATAGTTGTTAGCCCTCTTATATCATTAATGCAGGATCAGGTAATGGCTTTAAAACAAAGAGGGATCAAGTCTGAGTACCTTGGAAGTAGTCAGACTGATTACACAGTTCAAGACAAGGCAGAGAGGGGTCAATATAATATATTGTTCATGACACCAGAAAAGGCATGCTCTGTATCCATGAGTTTTTGGTCAAAATTAAAGAAGGAAGGAATTTGTTTGTTTGCCGTTGATGAAGCACACTGCATTTCAGAGTGGGGGCATGATTTTAGGGTAGAATACAAACAGCTGGACAAACTTCGCGATGTTCTACCAGGTCTTCCATTTGTTGCACTGACTGCCACTGCAACTGAAAAGGTTCGGAGTGACATTATTAATTCTTTGAAGATGAAAGACCCACAAGTTACCATTGGTTCATTCGATCGAACAAATCTTTTTTATGGAGTCAGGTCTTTTGATCGTGGTCCATTATTCATGAATAAGCTAGTGCTTGATATCTCTAAGTATGTAGCCTCTGGTGGTTCAACTATCATTTACTGCACGACAATTAAAGATGTTGAGCAGATATCCAAGGCACTTGAAGAAGCAGGGATTAGTGCTGGAATTTATCACGCTCAAATGGACAAAGAATCACGTGCAGAATCCCACAGACTATTTATAAGGGATGAAGTGCAAGTCATGGTTGCCACTGTTGCTTTTGGTATGGGTATTGACAAACCAAATGTAAGACAGGTGATACATTATGGCTGCCCAAAGAGTCTAGAATCTTATTATCAGGAAAGTGGGCGATGTGGTAGAGATGGTATTGCTTCTGTTTGCTGGCTTTATTACACGAGAAGTGATTTTGCTAAAGCAAACTTCTATTGTGGTGAATCACTAACTGAAAACCAAAGAACAGCCATTATGGAATCATTGATGGCTGCACAGCAGTATTGTTCTATCGCAACTTGCAGAAGAAACTTCTTGCTCAGTTATTTTGGGGAAAAATCTGAGTCTGAAAAATGTGGAAATTGTGATAACTGCATAGACTCACAAAAGGAGCGTGACATGTCAAAAGAGGCATTTCTTCTACTGGCCTGCATCCAATCTTGCTGGGGTACATGGGGACTGAACATGTATGTGGATATTCTTCGTGGATCTAGAGCAAAAAAGATACTTAATGCTCAGTTTGATATGCTTCCACTTCATGGACTTGGAAGAGAATACTCATCAAATTGGTGGAAAGCACTAGCTAGTCAATTAATTTTTAACGGCTATTTGACAGAGAACATACGCGATGTTTACAGAACCATAAGTATCAGTGCAAAAGGGCAAAAATTTCTCAATTCTGTCAGACAGGACTGCCTACCACCTCTATTTTTGCCGGTGACGAGTGAAATGATTGGTGAGAGAAAATGA MEAILKRYFGFSAFRPYQKEVIQGILRGKDCLVVKGTGSGKSLCYQVPPLVVGKTGIVVSPLISLMQDQVMALKQRGIKSEYLGSSQTDYTVQDKAERGQYNILFMTPEKACSVSMSFWSKLKKEGICLFAVDEAHCISEWGHDFRVEYKQLDKLRDVLPGLPFVALTATATEKVRSDIINSLKMKDPQVTIGSFDRTNLFYGVRSFDRGPLFMNKLVLDISKYVASGGSTIIYCTTIKDVEQISKALEEAGISAGIYHAQMDKESRAESHRLFIRDEVQVMVATVAFGMGIDKPNVRQVIHYGCPKSLESYYQESGRCGRDGIASVCWLYYTRSDFAKANFYCGESLTENQRTAIMESLMAAQQYCSIATCRRNFLLSYFGEKSESEKCGNCDNCIDSQKERDMSKEAFLLLACIQSCWGTWGLNMYVDILRGSRAKKILNAQFDMLPLHGLGREYSSNWWKALASQLIFNGYLTENIRDVYRTISISAKGQKFLNSVRQDCLPPLFLPVTSEMIGERK Homology
BLAST of MELO3C008835 vs. NCBI nr
Match: XP_008442012.1 (PREDICTED: ATP-dependent DNA helicase RecQ-like isoform X1 [Cucumis melo] >XP_008442013.1 PREDICTED: ATP-dependent DNA helicase RecQ-like isoform X1 [Cucumis melo]) HSP 1 Score: 1063.5 bits (2749), Expect = 5.7e-307 Identity = 520/520 (100.00%), Postives = 520/520 (100.00%), Query Frame = 0
BLAST of MELO3C008835 vs. NCBI nr
Match: XP_031740511.1 (uncharacterized protein LOC105434398 isoform X2 [Cucumis sativus] >XP_031740512.1 uncharacterized protein LOC105434398 isoform X2 [Cucumis sativus] >KAE8649367.1 hypothetical protein Csa_019144 [Cucumis sativus]) HSP 1 Score: 1015.8 bits (2625), Expect = 1.4e-292 Identity = 496/520 (95.38%), Postives = 507/520 (97.50%), Query Frame = 0
BLAST of MELO3C008835 vs. NCBI nr
Match: XP_011653464.1 (uncharacterized protein LOC105434398 isoform X1 [Cucumis sativus] >XP_031740510.1 uncharacterized protein LOC105434398 isoform X1 [Cucumis sativus]) HSP 1 Score: 1015.8 bits (2625), Expect = 1.4e-292 Identity = 496/520 (95.38%), Postives = 507/520 (97.50%), Query Frame = 0
BLAST of MELO3C008835 vs. NCBI nr
Match: KAA0041768.1 (ATP-dependent DNA helicase RecQ-like isoform X1 [Cucumis melo var. makuwa]) HSP 1 Score: 987.6 bits (2552), Expect = 4.0e-284 Identity = 483/492 (98.17%), Postives = 485/492 (98.58%), Query Frame = 0
BLAST of MELO3C008835 vs. NCBI nr
Match: XP_008442014.1 (PREDICTED: ATP-dependent DNA helicase RecQ-like isoform X2 [Cucumis melo]) HSP 1 Score: 985.7 bits (2547), Expect = 1.5e-283 Identity = 489/520 (94.04%), Postives = 489/520 (94.04%), Query Frame = 0
BLAST of MELO3C008835 vs. ExPASy Swiss-Prot
Match: O93530 (Werner syndrome ATP-dependent helicase homolog OS=Xenopus laevis OX=8355 GN=wrn PE=2 SV=1) HSP 1 Score: 378.3 bits (970), Expect = 1.4e-103 Identity = 221/544 (40.62%), Postives = 319/544 (58.64%), Query Frame = 0
BLAST of MELO3C008835 vs. ExPASy Swiss-Prot
Match: Q14191 (Werner syndrome ATP-dependent helicase OS=Homo sapiens OX=9606 GN=WRN PE=1 SV=2) HSP 1 Score: 377.5 bits (968), Expect = 2.5e-103 Identity = 206/523 (39.39%), Postives = 311/523 (59.46%), Query Frame = 0
BLAST of MELO3C008835 vs. ExPASy Swiss-Prot
Match: O09053 (Werner syndrome ATP-dependent helicase homolog OS=Mus musculus OX=10090 GN=Wrn PE=1 SV=3) HSP 1 Score: 371.7 bits (953), Expect = 1.4e-101 Identity = 214/537 (39.85%), Postives = 307/537 (57.17%), Query Frame = 0
BLAST of MELO3C008835 vs. ExPASy Swiss-Prot
Match: P15043 (ATP-dependent DNA helicase RecQ OS=Escherichia coli (strain K12) OX=83333 GN=recQ PE=1 SV=5) HSP 1 Score: 369.8 bits (948), Expect = 5.1e-101 Identity = 206/484 (42.56%), Postives = 286/484 (59.09%), Query Frame = 0
BLAST of MELO3C008835 vs. ExPASy Swiss-Prot
Match: P71359 (ATP-dependent DNA helicase RecQ OS=Haemophilus influenzae (strain ATCC 51907 / DSM 11121 / KW20 / Rd) OX=71421 GN=recQ PE=3 SV=1) HSP 1 Score: 367.5 bits (942), Expect = 2.6e-100 Identity = 199/497 (40.04%), Postives = 292/497 (58.75%), Query Frame = 0
BLAST of MELO3C008835 vs. ExPASy TrEMBL
Match: A0A1S3B5D1 (ATP-dependent DNA helicase OS=Cucumis melo OX=3656 GN=LOC103486003 PE=3 SV=1) HSP 1 Score: 1063.5 bits (2749), Expect = 2.8e-307 Identity = 520/520 (100.00%), Postives = 520/520 (100.00%), Query Frame = 0
BLAST of MELO3C008835 vs. ExPASy TrEMBL
Match: A0A5A7TFY6 (ATP-dependent DNA helicase OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold67G001180 PE=3 SV=1) HSP 1 Score: 987.6 bits (2552), Expect = 1.9e-284 Identity = 483/492 (98.17%), Postives = 485/492 (98.58%), Query Frame = 0
BLAST of MELO3C008835 vs. ExPASy TrEMBL
Match: A0A1S3B485 (ATP-dependent DNA helicase OS=Cucumis melo OX=3656 GN=LOC103486003 PE=3 SV=1) HSP 1 Score: 985.7 bits (2547), Expect = 7.3e-284 Identity = 489/520 (94.04%), Postives = 489/520 (94.04%), Query Frame = 0
BLAST of MELO3C008835 vs. ExPASy TrEMBL
Match: A0A1S3B4Q2 (ATP-dependent DNA helicase OS=Cucumis melo OX=3656 GN=LOC103486004 PE=3 SV=1) HSP 1 Score: 963.0 bits (2488), Expect = 5.1e-277 Identity = 468/520 (90.00%), Postives = 490/520 (94.23%), Query Frame = 0
BLAST of MELO3C008835 vs. ExPASy TrEMBL
Match: A0A1S4DU87 (ATP-dependent DNA helicase RecQ-like isoform X3 OS=Cucumis melo OX=3656 GN=LOC103486003 PE=3 SV=1) HSP 1 Score: 951.4 bits (2458), Expect = 1.5e-273 Identity = 474/520 (91.15%), Postives = 474/520 (91.15%), Query Frame = 0
BLAST of MELO3C008835 vs. TAIR 10
Match: AT1G31360.1 (RECQ helicase L2 ) HSP 1 Score: 310.1 bits (793), Expect = 3.4e-84 Identity = 181/422 (42.89%), Postives = 259/422 (61.37%), Query Frame = 0
BLAST of MELO3C008835 vs. TAIR 10
Match: AT1G10930.1 (DNA helicase (RECQl4A) ) HSP 1 Score: 303.5 bits (776), Expect = 3.2e-82 Identity = 179/519 (34.49%), Postives = 272/519 (52.41%), Query Frame = 0
BLAST of MELO3C008835 vs. TAIR 10
Match: AT1G60930.1 (RECQ helicase L4B ) HSP 1 Score: 302.0 bits (772), Expect = 9.4e-82 Identity = 185/521 (35.51%), Postives = 279/521 (53.55%), Query Frame = 0
BLAST of MELO3C008835 vs. TAIR 10
Match: AT4G35740.1 (DEAD/DEAH box RNA helicase family protein ) HSP 1 Score: 291.2 bits (744), Expect = 1.7e-78 Identity = 168/408 (41.18%), Postives = 241/408 (59.07%), Query Frame = 0
BLAST of MELO3C008835 vs. TAIR 10
Match: AT5G27680.1 (RECQ helicase SIM ) HSP 1 Score: 278.5 bits (711), Expect = 1.1e-74 Identity = 196/632 (31.01%), Postives = 296/632 (46.84%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Melon (DHL92) v4
Date Performed: 2022-08-06 Position : 0 Zoom : x 1
Relationships
The following mRNA feature(s) are a part of this gene:
GO Annotation
GO Assignments
This gene is annotated with the following GO terms.
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