MELO3C002941 (gene) Melon (DHL92) v4
Overview
Sequences
The following sequences are available for this feature:
Legend: exonfive_prime_UTRCDSpolypeptidethree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.GAGATTGGAAGGCCAGATAATTTATTTAAAGCGACACATAAGGTTTCCAATTAAGTTGGGAGATTGAAAAGGTTAAAAATCATGAATTAGCAAACTTTTGGAAAGTATAAAGGGAAGGGTTTTGAGTGGATATAGCCCAATTAAGTTGCTACTTTTTGGGGAGAAATTAGGATGTGGAGACTTAAGCTGGAAAAGGGAGAGAGGGAGGAATATTTGTTCAGTACAAACAACTTTATTGGAAGACAAACATGGGAATTTGATCCAAATGCAGGCACTCCTCAAGAGCGAGCTCAAGTTGAAGCTGCTCGTCAATCTTTTTATCAAAATCGAAATCATGTTCAATGTAGTAGTGACTTGCTTTGGAGATTCCAGGTTTTTGCTTTATTTATTTATTATTCTCTCCGATTGTAACAAAACGTTATAATATCATTTCATTTGCCATACTTTGAAGTTTGTTCAATTTTAGTTTCGAGTACTTTCAGTTTTGTATCAATTTAATCCCTAATCTTTGATATGTAACAACTTAGTTTTTTACTCTCAAATTTGTTTTGAACTTGTTAGATGATCTAGACTTTACATTAATTAGTTTGTTAGTTTATCGAAAAAAATCTCATTATTTTTACTAATTTCTGTGATAGATTATTAAATTATTAGATAACTAAAAATTAAATTGTTACTGACAAAGTTTAATTATAACTTGTTATTGCCTTTGTTTTTTGTTTGTCACTTTCTATCTTACCTTATGAAAAACATACCTATGGCTACTATATATTCATCTTTCTTATTTTTATGTGTCGAAAAAATTTGAAGAGATATTTTAAAATATAACAAAATAAATTAATAAAATATTTATTAACTATAACAAAATTTTAAATTTTATCAAAGATAGATATTAGCTAATAGATATCTATCATTGTGTTTATCATTTATAGAATTTGAAATTTTGGTATATTTTATAAATATTTTTAACGATTTTTTCATTTATAATATTTTCTCTAAATTAAAATTTATTATTTATTTTCCACATTTACTTTTTCTCATAGCAAATAAATGCATTAATTTATGGTTAAAGAGACCGTTGATTCAGGTGTACTTTAGAGTTTGTTGGATTTGAATCCATCAGACTTGAATGTACAATTTTAATATATGTTCTCAATACATCTTATATAATAGAACATACTACTAGTATACACGGTTGATTCTTTTTTTTTTTTCCTTCAATTTATTATTAATTATTAGTATTTTTAATATAAAATTTCAAAATATACTCTGAAATTTTTTGTTTTTATTATTATTTAACCCAACTGGATTGAAAAAATTTTATTTTGAAAAATATGTCACATGTCAAATTTTGATTGAAAAGAGTGTTTGAGGGTAAGGCTGATTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTAAGATAACGAGAAAAGTGAAGATGATCACTGATTTTGGAAGTTTTCCAGTTTCTAAGAGAGAAAAATTTCAAACAAACAATTCCAAAAGTGGTGGTGGAAGAGGGAAAAGGAAATGAGAAGGAAGTAATGATCAACACTGAAACCGTAAAGATTGCATTAAGAAGAGCTGCCACTTTCTTTGTAGCATTACAAAGCGACCATGGCCATTGGCCTGCCGAAAATGCTGGCCCTTTGTACTATTTTCCTCCTTTGGTAACTTAACTTTGTTCATGATCTAATTATTCAAATTATCTTTATTTAATTTTTGGTAAGTGCATGTATTTTCTTCGTTCATGTACTAACTTGCATTTTTTTTTTCCGAGGAAAGGTATTCGCTTTGTACATCACAAAAGATCTTACAACTATATTTTCACAAGAGCATCAAAAGGAAATTCTTCGTTATACTTACAATCATCAGGTGATAACTAATTGGCTAATATAGTTTAATTTGAATTCAAATTACTTGTTGTTTATTAAATATAATGTATGAACTAATGAATAAGATCGATTAAAATAATATATATGATGTAATGTAAGTAGGAATTACAACATCTTTGAATTGGAAATTGATGACATGTGTTTATCTACTAAATGAACCGAAACAGAATGAAGATGGTGGATGGGGATTATACATTGTGGGAGAAAGTTGCATGCTTTGTACTGTCCTGAACTATATTCAACTTCGTATTTTGGGAGAAGAAGCTGATAAAGAAGCTTGTTTTAGGGCTAGAAAATGGATTCTTGATCATGGAACTGCTCTTTACATACCTTCTTGGGGAAAGATTTGGCTTGCTGTGAGTATTATTATTTTAATTTTTCTATATTTAAGAATATAAAAGAAAATTACATTTTTAATCTTTAGGTTTTTGTATTGTTTATATTTCATCATCAGATTTCAAATTGTCATATCTTAAGTTCTTAAGTTCTTAAGTTCTATTTCAAGTCTTAAGTAGTAGTTTGGAATATCCAACTTAAAATGTGAGTGACGTAAGCTATTATAACGCACCTCATGTTTGAGGTTCAAATTATAATAGCAATTGTTTTTTCTTACTATTAATTATTACTCACAATTAACTATATACCATTATTACAAATCCCTTTTTTTCTTTTTTAACGTTATTCCTATTCTTTTACTTGTCATCTCTTCTTCTTTTATTATAGAGTTTCTTACCGATAATACTAACATAGACTATATCCCCAAATATTGAAGATTATCTACAAATTATAATAATTAAATGAGAGTGCCCCAAACACCCAAAGTTTTAAAATGTATCTTACAATTTTACGTTAGAGAAGATTTGTTTCAACTTGATTTATATGTTCTAAAATTTGCACTTTTAACCCTAACCATTATTTTTACTAAGCAATCCCTTTTTTGTTCATACCAGTAACGTTTATTAATTAATTTAATGGAACTAAAAGAACTATCATTTATTAAGTTTCACTACTTCTCTTTGCTATTAGAATTAAACCTAAACATTCCACTTTCACAGTTATTTTAAATTAACTAGTAAAAGGCACGTGTATGACATGTATAATATGTAGCTTTAGATTATAATAAACATTGCATGTCTATGTTTAGGTTGTACTAAATTTAAAGGTACGAAATTCAAAATGTAATAGAATTAGATGTATATGGTAAGAAGTTACAATAATTAGATTAAAATATAAGAATTATGTAATACTTGCATATATCAAAAAATGATTTCTTTATAAACAATATTTTTTGTACAATTTGAAGGTAACTTATTGTCACCTATGAGCTTGATCCAAACTTTTGTTGTTTTTATTGAAATTCCTCTAGATAGTGCAACATAAAGTTGTCTGTGTGCTTTGTTAATTGTCATTGCAAAGCATAAACGAATAGGGAATTGTTTTCTCTTGAACTTGAATGGATATCTATTGTCATTTGGTGAGTTTAATGGCATTCGTGGAAAAAAAAACTTGTTTTCCTACATGAACACCCATTGCTATTTCAGCATGTATAATATTTTTGCTAAATGATCGACATACCAATCTTGTCCAATGACACAATCCATGAGATGGATCCAAATTTTTCAATAAAAATATTGGTAGAAAAAATCAATGAAACCTTTTATATAGTAGAAAAAAATGTTACAACAACTTTTCAACTTTCAAATATTTAAATTTGTATTGTTAATTAAAATTAATATGATATTTAATTTTTAATTAATTTCTAAAATGTAAATGAAAAACTGTTTTCATTCCAAACTCTTCACATCCTACATACTTTAATTCCACTAAACTTAAATATAATTAATTCAAAAAGTAGTGGGTAAATAAAAAATCATTTGCATTCAACTTTTCACATTTTACATACTTTAATTCCACTGAACTTATGTATAATTAATTCAACAAGTAGTGAGAGAGGGTGTGACTTTTATAATTATATATATTATAAAAAAATTAAAAACAAAATTATCATAAAACTAAAGAGTGATTTGGAACATAGAACTAAACTCAAGGGTATAATAGATAGAAAAAAAATTTCCACATTAAAGTTTTTATATATACTATAGATATCTAACACCAAATTTAGAAGGTGAACATTTAAGAAAAAGTACAAAATTAAAGTATAAATCTTAAAATTTATGAAAAAAAATTAAAAAAAAAACTCAAATTTCAATATCAAAATTGTAGCCATATAAAATTTAGAAACTAAATTGATATCAAACTTAAAAATAAAAAATAAAAAATGTGATATCATAAATCACTTAAAAGCTTAAGCTAGTAAATGAAGGTAAATTCAATACACCCTCCTCCACATTTGTGGGCTTGAAATATCTAGAAAAATCCAACAAATAAAAAGGAATATTAAATAGATCGAAAATAACCTTGTAGAGATTTAAACATAGAATCTTCCTAAATTACCTATTTTGATACTATCTTAAACCATCTATTTACCCAAAAACTTAAGTTGATGGTAAATTTAATATAATATTCAATGTAATATTTCAAAATTTTAAGGTATAAATAGTAGCTGGAAGAGATTAAAAAATTATTGATAAAAAAGTTTTTTTTTTCTTTTTTCTTTTTTTAAATGGCATTAAATGGGCAATTTCCACATATATTATATAGGTATTAGGGTTGTACGAATGGGAGGGAACAATCCCAATGCCACCAGAAGTCTGGATGTTTGGATCATCAGAAGTGAGTATAAATCCAGGAGCACTGTTTTGCTATTGTAGATTGACATACCTTCCAATGTCCTACTTATATGGAAAGCGCTTTGTGGGTCCTCTCACTCCTCTCATTTTACAAATTCGTCAAGAAATCTACACCCAATCTTACACTCATATCAATTGGAATCCAGCAAGACATTATTGTGCAAAGGTACTATTCATTTTTTATGCATAATTATTTAACAAAGGTGATGAGAACGCAATCATAGCTTTGAATATTTGTTTGCTTATTGTTAGAGAAACTAGAAGTGAATTTGTTAGCTTAATTTTGATTACATGCTATGAAGGGTAGAAGTTGAATAACCACTCGCTTATAAAAATAAAAACCTGAATATTCTATAGAAATATCACTTGCTAGTTGATGTATTGTTCTAATAAGGATTGTTCTAAAGATAATTATTTGTTGTAAGTGTGTTGCAAACAAACTATAGCAATCAATCAACAAAATACAATGATTAATTCTAGTAGAACTACAATTTGAAATATGTTTGTATATATAGTTGAACGATTGGATATTTACTCTCAATTAAATTCAAAATCAAAAGAAGTGATAGAACTCTACAAATTAGATGAGATACTGTTATATTTTCTTTACCAATTCAGATTGTGAAACTAAACATGTTAATTCAGAATGCACAATTGAGAATAAATCAGAGAACAATAAAAGGAGCAAGAACGCAGCGATATATAGTGGTTCGACCAATTTTGGTCTACATCCACTTTGAGAATCAGTTTGGGAGGATTTTATTTAGAGCAAATATGAGGAACAATTACAGAAATTTACAAATCAACTATCTGTAATATAAGAGGCAAACCCAAAATATACCATCAACCAAGAATGAGAGACCCGCGGATGCTAGCTGAACTGAAGAATAAAACCAGCAGTACTGACCCCGAAAGAACGACGCTGACCGTCGACCACAGCCTGCAGACCGACGCTGCTCGTCGGAATAAACCCAGAAAGCCGACGCTGTCAACCGGAATGAACCCGAAAAAGACCGACCAACGGCGCTGAAAGAACCGGAAAGGACCGACGCCGAAACAACGCCGAAGCAAATCCCGAAAAAACCCGACGCCGCCTCTCGCTGTGAAAAACCGACCTGTTGTCGGAAAAATCACCACCGCGCCGCACCGATCAATCTTCCACCGCGCCTGTCTGATTTCCGCCGTCACTCTCTCTCTTTTTCTTGTCTTACAAAATCGGCTGCACCTCCCTCTTTTTTTCTTTGTCCTTTTCTTGTTGACCTAAAAGAAAAGAAAAAGATTGATATAATTTCAATTATGCCATCAGGCATAATTACCAATCTGCCCTCAATGTTAAATAAAGAAAAAACTCCATTATTTAACCTCTTAAATAATTTGTCAATTTTCACAAATCTCCCTCTTGACAAACTATTTAAGACACCAAACTGATTCTTCAAACTCCCTATCATCCAGATTTAACATTCAGCTCATCTAATAGGTATTTAAACCTATGAGCTGAAAGAGCTTTAGTTAGCATGTCTGACAAATTCTCAACTGTATGAACTTTGACCAGTTCCACGTCTTTCTGAGCAATGACGTTTCTTATGTAATGAAATTTGACATCGATATGCTTAGATCGTTCATGATGAGAAGGATTCTTCGCAAGATGAATAGCACTCTGGCTATCACAATGAATGATAGGAATAAACTCCTGCGATAACAACTCACCAACAATTCTTTTCAACCATACTGCTTCCTTAACTGCTTCACCAAGAGAAATATATTCTGACTCCGTAGTCGACAAAGCAACAACTGGCTGTAAGTTAACTTTCCAACTGACAACATTACCATATAAACGAAAAATGTGACCCGATAAGGACCTTCTTTTATCAAGATCTGCAGCATAGTCAGCATCTGTGAAACCTTCTAACAGTGTTGATTTATCACAATCCCTGCTATAACACAATGATACACTGGCACTACCTTTCAAATATCGTAACACCCATTTAACAGCTTTCCAATGTTCCTTCCCAGGATTTGACATAAATCTACTGATCATACTCATAGCATAACCCAAGTCAGGTCTAGTACAAATCATCAGATACATAATGCTCCCAACAGCATTACAATATGGGATATTAGACATCTCTATCCTTTCTTGTTTAGTAACAGGACATTGTGACGAAGAAAGTCTAAAGTGAGATGCTAAGGGTGTTGAAACCGCCTTGCTACCAGACATATTATACTTTTCAAGCAGTTTGATCACATAACTCTCCTGCGAGATGGTTAACAAACCTTTCTCTTTATCTCTCTTTACATCCATGCCTAGAATTCTCTTTAGTTCACCTAAATCTTTCATTTCAAACTCATTACTCAACTGTTTCTTGAGTTCACATATTTCAGCATAATCCTTAGACACTAGTATCATATCATCTACATACAACAGTAGATAGATGTACGTACCTTTTTGAGATTGTTTCCAGTAAACACAAGCATCATATGAGTTTCTGTGGAATCCCTGCTTTAGAATGAAAGTATCAAACCTGATGTACCACTGTCTTGGGGATTGTTTTAATCCATAGAGGGACTTGTGAAGTCGACAAACCATGTCTTCCTTACCCTTCACCTCATAGCCCTTAGGTTGAGCCATGTAGATCACTTCCTCCAATTCTCCATGAAGAAATGCTGTGGTGACGTCCATCTGTTCAATAAACATGTCAAAGGGAACAGCAATAGATAAAATTAATCTGATAGACGAATGCCTCACCACTGGAGAGAAAATCTCATGAAAATCAACTCCCTCCTTCTGAGTGTAGCCCTTGGCTACCAACCTAGCCTTATATCTAGGCTTACTGTTACCTCCTGTACCTGGCTTAATTTTGTAAATCCATTTTGATTGAATAAGTTTCTGATTAGGAGGCTTTGGAACCAATGACCATGTCTGATTCTTATGCAAAGAGAACAATTCTTCTTCCATGGCATCCTTCCATTGTTTCTTTGAATCAGATACAATTGCCTCTTCAAAGGTAAGAGGCTCTGCTTCAATACTGTCAGCTGCACAAGTGAGAGCATAAGCAACTAAGTCAGCATAACCATACCTTATAGGTGCATGTCTTTCCCTCTGAACTCTGTCACGGGTAAGCTGATAATTCTGTAGGTCATTGTTACTTGAGCTTTCTTCAATAAAAGCTCCCTCATCAATCAAAATCCTCTCCTGTTGAGATTGGATACCATCAAATTCAGACTGTTGTGTATCCTCTATTTCTGAAACCAGTGGCGGCTGATTATCTAAGTCAATTGATGGTCGTACTTCTGAAGCAATTCTAACTTCTGTCACAACATGATCACCCGTCTGTTGTTTCTGCTGCTCTTTAACACAGTAAGGCATTTCAGTCTCATTAAAAGTTACATCTCTACTGATAATGCATTTATTCATCCCTTTTTCAATGCACCAAAGTTTATAACCTTTGACACCCTGAGGATACCCAATAAACATGCACTTCAGTGCCCTCTTGTTCAATTTTCCATCTTTAACATGAGCATAAGCTGTGCATCCAAACACTCTAAGATGTTCTAAACTTGGAGCCTTACCTGTCCAGACCTCCTGAGGAGTCTTTAAGTTTAAAGCGGTAGAAGGACTCCTATTAATGAGATAACACGCTGTTTGGGCAGCTTCTCCCCAAAATTTCAATGGTAAAGAAGCATTAGTCAAGAGACACCTTGTACGTTCCATGATAGTTCTGTTAAACCTTTCAGCCAAACCATTTTGTTGTGGAGTGTATGTAACAGTAAAGTGCCTCGTGATTCCCTCAGATTTGCAAAACTGGTTGAATTTGTTATTTACAAACTCTAAACCATTATCTGTCCTCAGATACTTAACCTTCCTACCTGTTTAGTTCTCAACCTGCTTCTTCCATTCAAGGAATTTTCCAAAAGCTTCATCCTTTTGTTTCAATGGATAAATCCATACTTTTCTTGAGAAATCATCAATTATAGAGATAAAGTATCTCGAACCTCCCATAGAGACCTCTTTCGTAGGTCCCCACAAATCTGAGTGAACATAATCCAAAATACCTTTGGTTATGTGCTTCCCTTTCCCAAACTTTACTCTGGTAGACTTTCCCATTATACAGTGTTCACAAAATGGGAGTTCAACATTCTTAACTCCTCCTAGCAAACCTTGTTGGGATAGAGCTTGTAAGCCTCTTTCACTCACATGAGCTAGCCTTTTATGCCATAACATAGACATATTTGTAACTTTACCTGACGCGATAGCAGCACTGCCTGAAACTGTAGTACCTTCCAACACATATAGACCATGTCTTAAAGTTCCCCTCAGTTTAACTAGAGAACCTTTGGTAACTTTCATAACTCCATTTTCAGATTTTATGGTACAACCTGATCTATCTAATTCCCCAAGGGATATTAGATTACGTTTAAGTTTTGGTACATACCGCACATTAGTAAGTATTCTTACCATCCCATCATGTGTTGCAATTTGCACTGAACCAGTTCCTTTTACATCGCATGTACCATTGTCACCCAATAAGACCTTTCCCCCATCAACTTTCTGAAAGTTTGTCAGAAAATCTCGATGAGGAGTCATATGAAAAGTACACCCTGAATCCATGATCCAAGCATCCTGTATATCTCTGTGAGACACCATCAAAACCTCTGCAGACTCATACCCAGTCTCTGCTGAATCATACCCATCAGTGATCTCTGCTGAATTATACCCATCAGTAACATTCGCTTCACTGGTTGATGCTTCTCTGCTCTTATTCAAAGGGCAATTTTTCTTAAAGTGTCCTTCTTTATGACAAAGGAAACACTTTCTAGATTTTCCCTTGGATTTTGACCTGAAACTCCTCTCTTTACCTTTCCAGCTCTTTTTCTCACTCCTCCCTCTGGCCATTAGTAACTCGCCATCTTTGCGTTCTTTCTTGATCTCGAGATTTCTAGTTTTCAAGGCATCCAACACTATACTCATGGTCAATGAATCCCAACCATATTTAATAGCAGCCTTAACCTCTCGATATGTTTCTGGTAGTGAATTTAAAAGAATCACTGCTTGATTCTCATCCGACATCTTTTCACCAATGTTATTGAGATCAACTACAATCTTCTGAAATTCATCCAGATTCTCTTCTAAACTTTTACTTTGGTCCATTTTATATCCAAAGAACTTCTCCTTTATATATATTTTATTTGGCAATGACTTTGTCAAATAAAGGCTCTCTAGCTTTTTCCACAACTCCCCTGTAGTAGTAGCCTCATTCACTAGCCTAAGAACTTCATCTGACAGATACAGAAGAATAGTCGAATAGGCCATTTCATCCATATCTCTTTTTTCACTTTCTGTAATATTATCTGGAAGTCTCTCTTCATCTAAGATCTTTGCTACTTTATGTTGAACCAAAATAGCTCTAATCTTTTTTCTCCAAAGAGCAAAATCTCCATGTCCATTAAACTTGGACACTTCAAATCGTGTAGAAGCCATCTTTACAGAAAAGAAATTTAACCAAGATATGCCGACTTCGAACTACTACTCAAAACCCAAATTTCCTTTGGATCGAACGGAGCTCTGATACCACTTGTTATATTTTCTTTACCAATTCAGATTGTGAAACTAAACATGTTAATTCAGAATGCACAATTGAGAATAAATCAGAGAACAATAAAAGGAGCAAGAACGCAGCGATATATAGTGGTTCGACCAATTTTGGTCTACATCCACTTTGAGAATCAGTTTGGGAGGATTTTATTTAGAGCAAATATGAGAAACAATTACAGAAATTTACAAATCAACTATCTGTAATATAAGAGGCAAACCCAAAATATACCATCAACCAAGAATGAGAGACCCGCGGATGCTAGCTGAACTGAAGAATAAAACCAGCAGTACTGACCCCGAAAGAACGACGCTGACCGTCGACCACAGCCTGCAGACCGACGCTGCTCGTCGGAATAAACCCAGAAAGCCGACGCTGTCAATCGGAATGAACCCGAAAAAGACCGACCAACGGCGCTGAAAGAACCGGAAAGGACCGACGCCGAAACAACGCCGAAGCAAATCCCGAAAAAACCCGACGCCGCCTCTCGCTGTGAAAAACCGACCTGTTGTCGGAAAAATCACCGCCGCGCCGCACCGATCAATCTTCCGCCGCGCCTGTCTGATTTCCGCCGTCACTCTCTCTCTTTTTCTTGTCTTACAAAATCGGCTGCACCTCCCTCTTTTTTTCTTTGTCCTTTTCTTGTTGACCTAAAAGAAAAGAAAAAGATTGATATAATTTCAATTATGCCATCAGGCATAATTACCAATCTGCCCTCAATGTTAAATAAAGAAAAAACCCCATTATTTAACCTCTTAAATAATTTGTCAATTTTCACAGATACTCTGAGCAATAAAGAAACAAGTTGTTATTTATAGAATAGCTAAGTATTTAGTAACTCTAAATAAAAAAAATCAAATGATCAATTAATATATACAAAATTGAAACATTTATCAATTTTAATGCAATTGAATTGTTGCTTGACAAATCAAACATACTCGATCAAATAGAAGAAAATGCAAATCTAACTTTAAAATATGTTAAATTAGTGGATGATTGACCAATCTGATTGTTTCAATCTAATTTTGATATTTCAAACCATAGCACCTTTAACCTACATCTCATTAAATTCATTTCTTATTTTTCAATATTCAAATAAAGAATGTCTCACTTCAATGTTCCAACCAAAAGAAATTCAACAACATTAGTAAGTGATCTCAATGGAGGAACTTTTAACTCATTCACAATATTATATGTTATTTATGGGGCTCTCACAACATATTATGTTGATTTTGCGCTTGCTAAAATAGGAAGATAAATGCTTTGAACGTCCATTGATTCAAAAGTTAGCATGGGATGCTCTTCAATACTTCGGAGAGCCAATTTTAAACAGCAAGGCGTTTAAAAGGGTTCGAAATCGAGCTCTCCAAATAAATAAGCTCCACATTGATTATGAAGATCATTGTAGTCGATACATCACAATTGGATGTGTCGAAAAGGTTTGTGTTCTCATTATGCTTTTTTTATCATGTAATATTACGGAAATCGGATCCAAACCTCCCACTTTTAAAATAAAAATTGATGCCACAATGACCTAAATTTACTCTAGTAAAGTTAGTGGACTACTTAATTAATATTTGAGTTAATAATCCATCCTTCAATAACTACAATTTAATTCTAGTTTTTTTTTTATATTTTTAAAGCTAAGCTTGTAAAATACTATGTTTATTTTTATCTTTTGGTTTCTATCGTTTTATATCTACTTTGTGATAGTTTTTAAAAACTAAGCAAGGTTTTGATAGTTGAAATAAAAAAAAAAAAGAAATTATGTCATTTAGATAAGTATTCAGATGTTTGCCTTAGAATAATCAAAATTATGGGAAAGAAATTGAGAGAAAGTAATAAGTATATAGTTATAAAAAAGAATTTGAAAAATGATTATGAAATGGAATGTAAATAAATTAATATGAATTACATTGGCACGCAGCCATTATGCATGGTTGCTTGCTGGGCAGACGATCCTAATGGTGAAGCTTACAAGAAACATGTTGCAAGAGTTAAAGATTACTTATGGGTTGGTGAAGATGGAATGAAGATGCAAGTTAGTATTATAATTCTTCATTCCTTCATTATTCTCTTTTCGAGCATGTTATAAACTAAACATGTATGAATATTTCTCACTCTATATATATAAATCATTCTTATTTGAGCAGAGTTTTGGCAGCCAATCTTGGGATGCTGCCTTCGCCATTCAAGCAATTCTTGCTACTAAACTTCATGATGAATTCGCAAACACACTAAAAAAAGGACACGACTTCATAAAAAAATCACAGGTTACATACATATATATGGCACTTAATTATAATAATCATGATTAATTTAGAGAAATATTTATAAATTTTATATTTTGCCTTTTTAATTTTTTTTCTCATTTTGATATATATAAAGATAAAGGAAAATCCTCATGGAGATTTCAAAAGAATGTATCGTCACATATCAAAAGGAGGATGGACATTCTCTGATCAAGATCATGGATGACAAGTTTCTGATTGCACATCAGAAAATTTAGTGGTAATTATTATTTTTCTTTTTAACATCTTGTAAATTTTTATTATTTAAACGATTTAATTTGCTAATTAATTCTTATTATTAATAAATGTTTCAGTGTTGTTTGATGTTATCAACGATGTCTCCAGAAATTGTGGGAGATCCTATGGAACCACAATGCTTTTTCGATGCGGTTAACTTAATTCTTTCCTTACAGGTATTAATTGTTATTTAAAATAGTTTCAATAATTAATACTTTTTTTTTTCAAATACTTCAATATATATAGGTGTTTAAATTAAGCTTTAATGTCTATATATTAATACATATGTAATCTTTTTTCCTTTAAAACTATCGTGTTGTTATTAATCAAATAATTTAACGACTTAAACAAAAGTAAGTTGTTTGTTGTTAAAATAGGCAAAAAATGGAGGAATGTCAGCTTGGGAGCCAACTGGCACTGTACCTTCATGGTTAGAGGTAAAACAAATAATTTGTGATATATACGAAATTTCTTCACAATCTTCTCACATAAAAAAGAAAAAAAACATAAAGGAAGGAAGAAACAAGAGAGAGAAAAAAAAAGGCAAATTGTCAAAGATAGTAATATGGATAAAAAATTTACTCTTCATACAAAAAAAATCTGTGATGAGTTTTAGTCTTTTTTATGATTATTTAGTGGTGGTATTTACAGGGAGTGTAAATAGTTGGTTTGTTTTTTAATTACTTTTTAAAAAAATCCAAAAAGAGAGAGAGAGAGAGAGAGAGAGAGAGAAAAAAGGAGAAAAAAGGAAGAGATTATTGATTAATACTTGTTTTCATCCTACATTTTTCAGAAACTAAATCCAGTGGAATTCTTCGAATACTCAGTACTGGAGCGTGAGTATGTATATAATTAGTGTTTATTATTTTTAAGGCAAATTACGGGTTTGTTTAGATTCCTCCAGAAATATCGTTTTTATGTTGTATTTATTTTTAAATATTTTAAAATTAAAATGCACTTTTCCAAATATAACAAAATTAACCCTATATGTTTACAAAATATACTAAAATTTAAAACACTTCAAACCAAAGTTATTTATCGGTCTTTGTAAGACCATCAAACTTTTTCTTTAACAAGTCATGGTTCTCAAACCCTATAAATCTTATGATATGACTTTTTGTCTCCTCAAAAGTAAATTCATGAGGAGGCGATCTAAACAAACCCTATCCTACCTTACACTTCCCTACCTCTAATAGATCAATTCAATTTTATCTCTTTAAAGCTGTTGTTTGATGAATGATATCACTAAAATTAGATATGTAGAATGCACATCATCAGCAATACAAGCCCTAGTTCTATTTAAGAAGCTATTTCCAAGTCACAGGAGGAAGGAGATTGAGAATTTTATAGAAAAGGCAGTAAATTTCATTAAAAGAATGCAGAAAGAGGATGGATCATGGTATGGAAATTGGGGAATATGTCACATTTATGCTACTTTTTTTGCGGTTAAAGGATTAGTAGCAGCTGGATACACTTATGATAATTGCTTCCAAATATCAAAAGCTGTGGAGTTTCTACTTAAAATTCAATGTGAAGATGGTGGATGGGGAGAAAGCCATATTTCTTGTTCTAAAAAAGTACATACTCATCTTCCACACAATGCTTCCAATCTTGTTCAAACTTCTTTTGCTTTAATGGCTTTGATCCATTCTCAACAGGTTTGTTTTTTTTTTTTTTTTTTCTCTACTTTTTCATGAAACCACATCTTTAAGAAATATTTGCATCACAATAGAGAATTTTACGAACATCAACGATATTCTATTTACAATTTTCCTAAAAATATTTTTAAAACCCAATTATTAGCTCTAAAAATAATACTCATGACATTAATATCATGACACTAATAATGATTGCAGGCAAGGAGGGATCCAACTCCTCTGCACCGTGCTGCCAAACTACTAATTAATTCTCAATTGGAAGATGGTGATTACCCTCAACAGGTGTGCTAATTAATTAACCTTACATTTTCATGGGAAATTGTTCAAAATATTAAGCTTACCCGGATAAATTACTATATCATCTATTTCTAATAGACATAGAAATTGGTAGATTTATTTTCTCCTATTTTAGAGAAAAAAAAAACCTGTTTTTGATATCTAATTGATTTGTATTTATTATTTATTATTTAAGAAGTATGTTTATATGGCAGGAAATAGCTGGAGTTTTTACGGACACATGCATGCTACATTACGCACTATACAGGAATGTATTTCCACTATGGGCACTTGCAGAATATTATAATTTTGTTTCCTTTTCTTGACGTCTTTACCTCTTAGATTTGAGGTAAAACAATATTTATGTGTTGAATAATTATAACGCGTTGTGAAA GAGATTGGAAGGCCAGATAATTTATTTAAAGCGACACATAAGGTTTCCAATTAAGTTGGGAGATTGAAAAGGTTAAAAATCATGAATTAGCAAACTTTTGGAAAGTATAAAGGGAAGGGTTTTGAGTGGATATAGCCCAATTAAGTTGCTACTTTTTGGGGAGAAATTAGGATGTGGAGACTTAAGCTGGAAAAGGGAGAGAGGGAGGAATATTTGTTCAGTACAAACAACTTTATTGGAAGACAAACATGGGAATTTGATCCAAATGCAGGCACTCCTCAAGAGCGAGCTCAAGTTGAAGCTGCTCGTCAATCTTTTTATCAAAATCGAAATCATGTTCAATGTAGTAGTGACTTGCTTTGGAGATTCCAGTTTCTAAGAGAGAAAAATTTCAAACAAACAATTCCAAAAGTGGTGGTGGAAGAGGGAAAAGGAAATGAGAAGGAAGTAATGATCAACACTGAAACCGTAAAGATTGCATTAAGAAGAGCTGCCACTTTCTTTGTAGCATTACAAAGCGACCATGGCCATTGGCCTGCCGAAAATGCTGGCCCTTTGTACTATTTTCCTCCTTTGGTATTCGCTTTGTACATCACAAAAGATCTTACAACTATATTTTCACAAGAGCATCAAAAGGAAATTCTTCGTTATACTTACAATCATCAGAATGAAGATGGTGGATGGGGATTATACATTGTGGGAGAAAGTTGCATGCTTTGTACTGTCCTGAACTATATTCAACTTCGTATTTTGGGAGAAGAAGCTGATAAAGAAGCTTGTTTTAGGGCTAGAAAATGGATTCTTGATCATGGAACTGCTCTTTACATACCTTCTTGGGGAAAGATTTGGCTTGCTGTATTAGGGTTGTACGAATGGGAGGGAACAATCCCAATGCCACCAGAAGTCTGGATGTTTGGATCATCAGAAGTGAGTATAAATCCAGGAGCACTGTTTTGCTATTGTAGATTGACATACCTTCCAATGTCCTACTTATATGGAAAGCGCTTTGTGGGTCCTCTCACTCCTCTCATTTTACAAATTCGTCAAGAAATCTACACCCAATCTTACACTCATATCAATTGGAATCCAGCAAGACATTATTGTGCAAAGGAAGATAAATGCTTTGAACGTCCATTGATTCAAAAGTTAGCATGGGATGCTCTTCAATACTTCGGAGAGCCAATTTTAAACAGCAAGGCGTTTAAAAGGGTTCGAAATCGAGCTCTCCAAATAAATAAGCTCCACATTGATTATGAAGATCATTGTAGTCGATACATCACAATTGGATGTGTCGAAAAGCCATTATGCATGGTTGCTTGCTGGGCAGACGATCCTAATGGTGAAGCTTACAAGAAACATGTTGCAAGAGTTAAAGATTACTTATGGGTTGGTGAAGATGGAATGAAGATGCAAAGTTTTGGCAGCCAATCTTGGGATGCTGCCTTCGCCATTCAAGCAATTCTTGCTACTAAACTTCATGATGAATTCGCAAACACACTAAAAAAAGGACACGACTTCATAAAAAAATCACAGATAAAGGAAAATCCTCATGGAGATTTCAAAAGAATGTATCGTCACATATCAAAAGGAGGATGGACATTCTCTGATCAAGATCATGGATGACAAGTTTCTGATTGCACATCAGAAAATTTAGTGTGTTGTTTGATGTTATCAACGATGTCTCCAGAAATTGTGGGAGATCCTATGGAACCACAATGCTTTTTCGATGCGGTTAACTTAATTCTTTCCTTACAGGCAAAAAATGGAGGAATGTCAGCTTGGGAGCCAACTGGCACTGTACCTTCATGGTTAGAGGTAAAACAAATAATTTGTGATATATACGAAATTTCTTCACAATCTTCTCACATAAAAAAGAAAAAAAACATTGCAGGCAAGGAGGGATCCAACTCCTCTGCACCGTGCTGCCAAACTACTAATTAATTCTCAATTGGAAGATGGTGATTACCCTCAACAGGAAATAGCTGGAGTTTTTACGGACACATGCATGCTACATTACGCACTATACAGGAATGTATTTCCACTATGGGCACTTGCAGAATATTATAATTTTGTTTCCTTTTCTTGACGTCTTTACCTCTTAGATTTGAGGTAAAACAATATTTATGTGTTGAATAATTATAACGCGTTGTGAAA ATGTGGAGACTTAAGCTGGAAAAGGGAGAGAGGGAGGAATATTTGTTCAGTACAAACAACTTTATTGGAAGACAAACATGGGAATTTGATCCAAATGCAGGCACTCCTCAAGAGCGAGCTCAAGTTGAAGCTGCTCGTCAATCTTTTTATCAAAATCGAAATCATGTTCAATGTAGTAGTGACTTGCTTTGGAGATTCCAGTTTCTAAGAGAGAAAAATTTCAAACAAACAATTCCAAAAGTGGTGGTGGAAGAGGGAAAAGGAAATGAGAAGGAAGTAATGATCAACACTGAAACCGTAAAGATTGCATTAAGAAGAGCTGCCACTTTCTTTGTAGCATTACAAAGCGACCATGGCCATTGGCCTGCCGAAAATGCTGGCCCTTTGTACTATTTTCCTCCTTTGGTATTCGCTTTGTACATCACAAAAGATCTTACAACTATATTTTCACAAGAGCATCAAAAGGAAATTCTTCGTTATACTTACAATCATCAGAATGAAGATGGTGGATGGGGATTATACATTGTGGGAGAAAGTTGCATGCTTTGTACTGTCCTGAACTATATTCAACTTCGTATTTTGGGAGAAGAAGCTGATAAAGAAGCTTGTTTTAGGGCTAGAAAATGGATTCTTGATCATGGAACTGCTCTTTACATACCTTCTTGGGGAAAGATTTGGCTTGCTGTATTAGGGTTGTACGAATGGGAGGGAACAATCCCAATGCCACCAGAAGTCTGGATGTTTGGATCATCAGAAGTGAGTATAAATCCAGGAGCACTGTTTTGCTATTGTAGATTGACATACCTTCCAATGTCCTACTTATATGGAAAGCGCTTTGTGGGTCCTCTCACTCCTCTCATTTTACAAATTCGTCAAGAAATCTACACCCAATCTTACACTCATATCAATTGGAATCCAGCAAGACATTATTGTGCAAAGGAAGATAAATGCTTTGAACGTCCATTGATTCAAAAGTTAGCATGGGATGCTCTTCAATACTTCGGAGAGCCAATTTTAAACAGCAAGGCGTTTAAAAGGGTTCGAAATCGAGCTCTCCAAATAAATAAGCTCCACATTGATTATGAAGATCATTGTAGTCGATACATCACAATTGGATGTGTCGAAAAGCCATTATGCATGGTTGCTTGCTGGGCAGACGATCCTAATGGTGAAGCTTACAAGAAACATGTTGCAAGAGTTAAAGATTACTTATGGGTTGGTGAAGATGGAATGAAGATGCAAAGTTTTGGCAGCCAATCTTGGGATGCTGCCTTCGCCATTCAAGCAATTCTTGCTACTAAACTTCATGATGAATTCGCAAACACACTAAAAAAAGGACACGACTTCATAAAAAAATCACAGATAAAGGAAAATCCTCATGGAGATTTCAAAAGAATGTATCGTCACATATCAAAAGGAGGATGGACATTCTCTGATCAAGATCATGGATGA MWRLKLEKGEREEYLFSTNNFIGRQTWEFDPNAGTPQERAQVEAARQSFYQNRNHVQCSSDLLWRFQFLREKNFKQTIPKVVVEEGKGNEKEVMINTETVKIALRRAATFFVALQSDHGHWPAENAGPLYYFPPLVFALYITKDLTTIFSQEHQKEILRYTYNHQNEDGGWGLYIVGESCMLCTVLNYIQLRILGEEADKEACFRARKWILDHGTALYIPSWGKIWLAVLGLYEWEGTIPMPPEVWMFGSSEVSINPGALFCYCRLTYLPMSYLYGKRFVGPLTPLILQIRQEIYTQSYTHINWNPARHYCAKEDKCFERPLIQKLAWDALQYFGEPILNSKAFKRVRNRALQINKLHIDYEDHCSRYITIGCVEKPLCMVACWADDPNGEAYKKHVARVKDYLWVGEDGMKMQSFGSQSWDAAFAIQAILATKLHDEFANTLKKGHDFIKKSQIKENPHGDFKRMYRHISKGGWTFSDQDHG Homology
BLAST of MELO3C002941 vs. NCBI nr
Match: XP_008465828.2 (PREDICTED: LOW QUALITY PROTEIN: beta-amyrin synthase-like [Cucumis melo]) HSP 1 Score: 1033.1 bits (2670), Expect = 7.7e-298 Identity = 483/483 (100.00%), Postives = 483/483 (100.00%), Query Frame = 0
BLAST of MELO3C002941 vs. NCBI nr
Match: XP_031741416.1 (beta-amyrin synthase-like [Cucumis sativus] >KAE8648496.1 hypothetical protein Csa_008185 [Cucumis sativus]) HSP 1 Score: 992.3 bits (2564), Expect = 1.5e-285 Identity = 457/483 (94.62%), Postives = 475/483 (98.34%), Query Frame = 0
BLAST of MELO3C002941 vs. NCBI nr
Match: XP_008465722.1 (PREDICTED: beta-amyrin synthase-like isoform X1 [Cucumis melo]) HSP 1 Score: 922.2 bits (2382), Expect = 1.9e-264 Identity = 426/483 (88.20%), Postives = 449/483 (92.96%), Query Frame = 0
BLAST of MELO3C002941 vs. NCBI nr
Match: XP_038890187.1 (beta-amyrin synthase-like isoform X7 [Benincasa hispida]) HSP 1 Score: 917.5 bits (2370), Expect = 4.7e-263 Identity = 421/483 (87.16%), Postives = 456/483 (94.41%), Query Frame = 0
BLAST of MELO3C002941 vs. NCBI nr
Match: XP_038890182.1 (beta-amyrin synthase-like isoform X2 [Benincasa hispida]) HSP 1 Score: 917.5 bits (2370), Expect = 4.7e-263 Identity = 421/483 (87.16%), Postives = 456/483 (94.41%), Query Frame = 0
BLAST of MELO3C002941 vs. ExPASy Swiss-Prot
Match: E7DN63 (Beta-amyrin synthase OS=Solanum lycopersicum OX=4081 GN=TTS1 PE=1 SV=1) HSP 1 Score: 669.8 bits (1727), Expect = 2.2e-191 Identity = 305/486 (62.76%), Postives = 370/486 (76.13%), Query Frame = 0
BLAST of MELO3C002941 vs. ExPASy Swiss-Prot
Match: Q8W3Z1 (Beta-amyrin synthase OS=Betula platyphylla OX=78630 GN=OSCBPY PE=1 SV=1) HSP 1 Score: 667.9 bits (1722), Expect = 8.5e-191 Identity = 307/487 (63.04%), Postives = 369/487 (75.77%), Query Frame = 0
BLAST of MELO3C002941 vs. ExPASy Swiss-Prot
Match: Q2XPU7 (Lupeol synthase OS=Ricinus communis OX=3988 PE=1 SV=1) HSP 1 Score: 662.5 bits (1708), Expect = 3.6e-189 Identity = 305/486 (62.76%), Postives = 370/486 (76.13%), Query Frame = 0
BLAST of MELO3C002941 vs. ExPASy Swiss-Prot
Match: O82146 (Beta-amyrin synthase 2 OS=Panax ginseng OX=4054 GN=OSCPNY2 PE=2 SV=1) HSP 1 Score: 659.4 bits (1700), Expect = 3.0e-188 Identity = 305/486 (62.76%), Postives = 362/486 (74.49%), Query Frame = 0
BLAST of MELO3C002941 vs. ExPASy Swiss-Prot
Match: A8CDT2 (Beta-amyrin synthase OS=Bruguiera gymnorhiza OX=39984 GN=BAS PE=1 SV=1) HSP 1 Score: 657.5 bits (1695), Expect = 1.1e-187 Identity = 297/487 (60.99%), Postives = 364/487 (74.74%), Query Frame = 0
BLAST of MELO3C002941 vs. ExPASy TrEMBL
Match: A0A1S3CR81 (Terpene cyclase/mutase family member OS=Cucumis melo OX=3656 GN=LOC103503422 PE=3 SV=1) HSP 1 Score: 1033.1 bits (2670), Expect = 3.7e-298 Identity = 483/483 (100.00%), Postives = 483/483 (100.00%), Query Frame = 0
BLAST of MELO3C002941 vs. ExPASy TrEMBL
Match: A0A1S3CPW5 (Terpene cyclase/mutase family member OS=Cucumis melo OX=3656 GN=LOC103503335 PE=3 SV=1) HSP 1 Score: 922.2 bits (2382), Expect = 9.2e-265 Identity = 426/483 (88.20%), Postives = 449/483 (92.96%), Query Frame = 0
BLAST of MELO3C002941 vs. ExPASy TrEMBL
Match: A0A1S4E5G1 (Terpene cyclase/mutase family member OS=Cucumis melo OX=3656 GN=LOC103503335 PE=3 SV=1) HSP 1 Score: 916.8 bits (2368), Expect = 3.9e-263 Identity = 426/483 (88.20%), Postives = 448/483 (92.75%), Query Frame = 0
BLAST of MELO3C002941 vs. ExPASy TrEMBL
Match: A0A345Z0U7 (Terpene cyclase/mutase family member OS=Citrullus lanatus var. citroides OX=260673 PE=2 SV=1) HSP 1 Score: 892.5 bits (2305), Expect = 7.8e-256 Identity = 411/487 (84.39%), Postives = 445/487 (91.38%), Query Frame = 0
BLAST of MELO3C002941 vs. ExPASy TrEMBL
Match: A0A7I6MXU2 (Terpene cyclase/mutase family member OS=Siraitia grosvenorii OX=190515 PE=2 SV=1) HSP 1 Score: 821.6 bits (2121), Expect = 1.7e-234 Identity = 376/483 (77.85%), Postives = 422/483 (87.37%), Query Frame = 0
BLAST of MELO3C002941 vs. TAIR 10
Match: AT1G78950.1 (Terpenoid cyclases family protein ) HSP 1 Score: 634.4 bits (1635), Expect = 7.4e-182 Identity = 294/488 (60.25%), Postives = 359/488 (73.57%), Query Frame = 0
BLAST of MELO3C002941 vs. TAIR 10
Match: AT1G78955.1 (camelliol C synthase 1 ) HSP 1 Score: 629.8 bits (1623), Expect = 1.8e-180 Identity = 291/488 (59.63%), Postives = 359/488 (73.57%), Query Frame = 0
BLAST of MELO3C002941 vs. TAIR 10
Match: AT1G78960.1 (lupeol synthase 2 ) HSP 1 Score: 626.7 bits (1615), Expect = 1.5e-179 Identity = 293/488 (60.04%), Postives = 360/488 (73.77%), Query Frame = 0
BLAST of MELO3C002941 vs. TAIR 10
Match: AT1G78970.2 (lupeol synthase 1 ) HSP 1 Score: 600.5 bits (1547), Expect = 1.2e-171 Identity = 282/485 (58.14%), Postives = 354/485 (72.99%), Query Frame = 0
BLAST of MELO3C002941 vs. TAIR 10
Match: AT1G78970.1 (lupeol synthase 1 ) HSP 1 Score: 600.5 bits (1547), Expect = 1.2e-171 Identity = 282/485 (58.14%), Postives = 354/485 (72.99%), 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
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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