MELO3C021009 (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.TGACTACTCTGCAGTTATTTATGCCATGTTCCTCGAGTTTAAAGAGGAACTAGATAACCTTGCGGGAGAGTCGTCGTTGGTGGGCGGCAATTCGGGTGAGTCTAATAATGGTATACATTTTAACTTAGGATTATTTCAATTTTTCTCTAACATTATATGTTCTTATAATTTATTGAGCAGATACTTGTTACCATCTACGACTTCAACTCAATGATCAAGCAATGAATAGGTTCATTGAGCATAAAATGGTCAACACCTTTAAAGAGTTTCAGGGAGGTTGTCATAATAACTTCAAAAAGTACAGCGACCCCGAGGAGACTTGTGCCAACCCATCATACCTATCGGTGGGATGTGATGAGGATTGACACTACCTTTATGACCACTACATGAGTCGTACATTCCAGGTGAACAACTCAACCCTTTGTCAAGGTTAATTATGATTTTGACTTTTAATATATATAAGAAATAAACAATATTCTTGTTTTCATGCAGAAGTAATCACGAATGAACAAGGCTGCTAGACAGAAGCAGCCTTACAATCATAGCAGCAGGTCAAAGTCGTTTCGACAACTTTAGCCCGAGCTCGATGAGCAAAGAGGGGAGTCGGTCGACCGTGTGAAGTTGTTTCGACAAACACACATTCAAGACGGGACGTTCGTGTCACAGGCTGTGGAGGATGCGCATGTAAGTTATCCAAGCAATACTTCTGCTCTTATTTGTCCTCTTTAATATATAATATATTTTTTACTTACTAAGATAGTTTCTAAATTTGTTGCAAAATCAAGTGCTAAAACTCTAGTCCCAGCCTACCCCATAGGGTACTCAGTCACTCTCTGGGGACAAGATATGCAAGACGGTGTTGGGTAGACGATCAGGTTACTCAAAAGACCTTGGTTGGGGACCCAAGCCCAAGGCCCACAAGATGACCAATACGAGCAATTCCACGATCTCATGTCCTCAGTCCACTGTATAGCTCTAATTATAGGCTAAGCTTGATCAAGCTATGCAATAGACTGAAGAACAGACAAGAAATCACGATGCGTTAGTTCATAAGTGGAACGAATGCGGAAGCTCATAGAAGACATGACTCGAGCACAACAAGGACCATCACATAATTCCTAGCTTTGCGGTACGTATATATGTTTCTATTATTCTTAAGTTCTTGAAATGACAGTATACAGTGATGATATGCATATAATGTACTTGTTGTGTTTTTGTCCTAAAACTCGTAGATAGTAAATATAATTAATCGACAGTTGTTAATAAAGTGTTTTATTATTATAATTTAGTAAGTGTTTTTGATTATATTATTAGTTTTTTCTTAATAATCTAAATCCAATAAACTAACATCCTAAGCTATTTGATGAGTCTTGAACAGTATGTAGAAACATATAGGGATCAATGTTCAAGATCAGCTTAAGGGGTCTATAGTATAGGGTTAAGGTTGGGTACCTTATCCTGTTAACACTATGGATACGGCTCACTTTGTATTTGATACAAACACATTGATCCAATGCGTTCATGTATGCGACATGCGAGTGAGGGTATCCTATACAATGAGTTTGCATAAGACTGGACCACGAAATAGTAATCACTAGATATAACTCCGTTAACTAGTTGGATTTCTATTTCATTAGGATAACCTAGGTGACTTAGTCTTAATCCTGAGTGTATTATGAACTCATGTTTGCGAGGGATTGTCCTTTGATTTGTACGGGTGAGAGTGGCCAAATTGCCGACTCAATATACTTATCATTTTGGGGACAAAACCGAGTGGGAAGTTAGGAACATAATCACATAAGATGGAATTCACTCCTTCTCACCTTTAGGGTAAGTAGATAAGTGTTCCCTTAAATAGTGTCTCCGGGACTTGAACAAAGGGCCCTACCCTCTCTATGGTACGAGAGGGAATTTCTGTTTAGTGATTGGACCATAAACAGGTTGTTCATTAGAGGAGCACTGATATTTAAGAACTAGAAGTAACCTAGGGGTAAAACGGTAATTTGACCCAACTGGTGTTACGAACACTTGTGAAGGACTAACTTATTGGTATTGGTATATATCCGTGGACACAGAAATATATCTACAGTGAGAAGAGTTCAGCTGTGAGTCTTTAGTGGAGTGTACACACAGTTAACGAATATTGATTAATGTGGTTAATGAGTTTAGCTAATTAATCCATATCGTTGTAGCTTTTTATCTGTATGTCCATTAGGTCCCCTTTCTAGCTCATAAAGAGTAATGAGATTTATTTGTATTGGTTGTAATTTGAAATGTTCAAATTTACTTTGGGAATTAATATAATGTATATTGATACATCATAATATAAAGTTTATATTTTAATTAGACTTTATTATATAAATTTAATTTTGGATATGATTCAAAATTAAATTACGAGAGAATAAAATATTTGAATGAGTTCAAATATTAGTTTAATGTGAATTAGATTCATATTAAAACTATAGATTAAAATTTAATGTGTATGTGATACATGTTAAAACTATAGGTTATGAGAGAAATTTATATTTGAATATGATTCAAATTTTTGATTAAATTTAATATAAGATATTTAATTTAGAAATTCATTAATTGGAGAATTAATTAATAGTTTAGTTTAATTTGGTTTAATTAAATTTGATTTAATTAAATTAATTAATTAAAACTATAGGTTATGCGAGAGATATTCATTTAAATATGATTTAAATGAAATATTATTTAAATATGATTTAATTAATTAATTATTTAATATAATTAATTAATTATTTTAATATATATTTATTTAATATTTATTTATTAAATTAATAAGGAACGTGGGTGGTCTTCCCACGTTCCCATTTATTCTCTCTAACTTCCCTCTTCTTCCATCTAAAGAAGAGGGAATTATTTGCGTAACAAAAACACAGAAAGTGTTCTGTGATTTTTTAAGGAAAAAAGGATCATCGCATTCTCTCTAGAAATCGTTTTCTCTCTAAAACAATTCCCTCAATTCAATTTTGGTACCCATAAACCATCTCAATTAGAGAATAGGAAGGTTTCCAAGCGGTGGTGCCTCAAGTTAGTGTTTGGTAGATTCAGGGCCGTCAACGAGAGTAAGTTATTCTTCTTTGTATTCTCTTCACAACATATTTAACCATAAAAATTAGTTTTGTAATTTTTTCCAATGTATTGATATTTTTTAAGGTTCCAATTAAAAGTGGGTCTCTGTAATTCTTCCGCTGGAAAGGGTTTTCATCCATTCAGTACTAAACTTAGTCACTTTTGTATCATTGTAGGACCTACAGTGTAGAATGGCGTACGAGGCTCATTAAGAGACGTACGTTATGAAGTACGACTTTCTTTGCATTTTTCTAGAACGAGGAATATTTTTTATTTGTATTATGAACGTTGTTACATTTTTTGAACTTCTTTATATTATGGAAATTTAATTTTTTGTTGAATTTGTGTTTTTATTTTATAATTTACTAATTTCTTTTGAATTTTCTTTAATTGAATTGAAAACAAATGCGAATATTTAAGGAAATAAATCTTAAAGGAAAATGTTTCAGGAAAAAAAATAAAAACTTACATATTTAAAATATTTCTCGATGCAGTACATATGTTGAGAATATGGTACAAATGTTACGTCGGGGATGGTTATTGCCGACGCATGGATGACGTCGGATATACAAACATTGAAAGTCGTTATTTCCGACGCATAGCTGATGTTGAAATTATGGACGTTGGAGAGGACTTGTTGCCGAAGCATCGAAGACATCGGTAAAGATGACATCCGGAGAAGATTATTCCCTGCGCCTTGTTGGTGACGCATCGGGAATCTGTCTCCCAACGCATTTATTTCGATGGTCGTCTCATGAATATATCAAGAAGTTTGCAAGAAGGTTTTATGAGCTCAAGTTGTGTTGAAACCATATCTTAACATTAACTATTCAAAGCAACAGAAAATCTAAGTCTTTGAGTTTTGAGTTATCATTGAAGTTTGTTTTTAACACCATAGATGCTGGTAGCTTTTTTATGAAAGCTGATCAAGTTAAACTATTATTAGAAGGAAAGTATAATGAGATCTCTATTTTGTTGAAAATTCTCTCATGATTTATTTATATGATACTTATATGAAATTAGTTGGACTTCTTGTTTTGAAAGGTGGAGGATGGAGGTGAAAGTCCAAGGGTTTTGGAAAATTTCAAATTCTTATATGAGGTACAAGTTTGGGCTTTTGTTAGAAGTTTGGGCTATTGTAATTAAGTATGTAAGCTCTTGTACACATATGTCCAATTTGTTAAAATATAATTAGTTCTTTAATGGAAAGATTGGGTTGATTCAATTGTTCAACTAATATGTAGTTTAGCACATTTGTGTACTCTCTTGCTTTACTTATGTTCGTTATTGTTGAACTTCAAAACAGGTGCAAGATAAATTATATGGATATTTTAGAGTATACAATTTTTCATTTGAAAAAAAAGTCGTGACATGTAAAGCGTGTCAAGAATAAACAAAGTCTGGACGCGCAAAAAATGTCAACTAATCTTCCTTGACGCTTAAAAACGGTAAAAAGTGAAAAAGAACCCTTTATTATTGACACTGGATTGCTTGACGCGTAAATAATGTCAAGTAATTTCATATACTTGACAGTTATAAACTGTTAAGTATAATTTTACTTGACGCTTAAAAATTGTCAAGTAAAACCTTCTTATTCTTGATACTGGATTACTTAACGCATTGAAAACCGACAAGTAAACAAATACTTGACATGTAAAAGTGTCAAGTAAACCCTTTTTTTGTAGTAGTGTAGGGAGAAACACCATATGACTTTCACTAGAACATTCTTAACCTCTTTTGAATTTTTAGGAATCTTCCATCTTGACATATCACAAGAGGGGCATACAATTGCATTAGAGAGTTCTTTCCTAAACAAACAACAATCATTCCTACATGCATGAATCTTCTCGTACTTCATTCCAAGAGTACACAAATTTTTTTTTGGTTCATAAGTAGAAGTAGAGATTTCATGAGGAGCAGGTAGTTTTAACACAAAATTTCTAGTTCAATTTTTTTTTGATTTCATGAGATTTCACAAATTAATTTTAACAACTCGGTGAAACTCTTATCACTCTATCTAAACTTAGCTTTCAAATTATTTAACTTCTTGTATATCTTCAAAATTTTCTGACTTGTGATTAAAATAATTGTGTGCAGCCTCAAACATTCCAATTGTGTCATCAACATCGTCCTCATCAATTTCTTCTCTTGCACTACTAAAGACACTTTTATTATTAATCTTTATGGGTAGTGATTCACCATGAAAACTTGATAACTTTGATCGATGCTATTGAAAAATAAGTGATATCTAATTGTATTCACATCTAAAGTCTTTGCATTTACGCATTTTAAACAAGGACAAGTCATGACGTTTGATATAGTCAAATGTTTCAACCCATTTTTAATAAACATCTCAACTTCGAAAGCATAATCAGTTGACATTCTATTCTTTTTCATCCATGACCGATCTAGATGCAACTTAATCTACAAAAAAAAGTAAAAAAGCAACAAGGAATAGTTAAGTAATCTTAAACTTGTAAACTTAATTATAACCAACAATAATACATAAAAAGTTGAAAACTAAATATAATCAATAAAAACTTCTATATACACTCAAACAACCAAACAATTAGAACAAAGCAAGACTATCAAAGAAGCACATATGTCACTAACAATTGGAACAAAGCAAGACTAGCTATACGATCGTTTACCCTCTTATGCGATCGTTTAGCTTTATCTACAATCGTTTACCCTTTAACGTGATCGTTTAGCTTTCTACCTTCAAACCATTGACTAACTTTCTATATACGATCGTGTAAGAAGTAAGTAAACGATTGTTTAACAAAATACTCCTTCAAAACTAAATGATCGTGATTGTTTGTAGGATTTATGAATGGGCACAAACACAAACAGATCGGGCATGAGCACGACAAATCAGGACACCAAACAAAAGGCGACAACTGGACACCTAAGAAACGATCTGGGACGACACGTTTAAGATTTGGGATGTCGAAGATCTAGGATGATGAGACGATCTGAGACGTACGACGGTGGTGGCAAGATGATCTGGGAGAACACGACGATGGTGGCACAACTTGACTTAGTAGATCTTCGAAGATCTAGGATCGTGCGACGGTGGATGGTGCGGTGGTGGTGGACACGAAGGACGACACGATGTCGCGATGTGCTCGACGACGGTGGTTCAACGATGGAAGAGTGACTGATTGAGAAGAAAGGGTTTGGGTGGGGAGTTTAGTGTGAGATGAGAGGGAAGAAAGTGAGTAAAGTGAGGGGATACTTAATTTTGCAAAAAAAAAAAAAAAAACAATTAAGGATAGTTTAATGTCGATTTTAAACCGACATTAATTCTTCCTCTTTGATGTCGGTTTAAAACCGATAATAAACATCAATGAAAAGAAGTTTTTTTTTGCAAAAACATGCATGTTTTTCTTAAGTTAATCCAAACGTGACTTAATATAGTTTAGAAAAATGATTTTCGATTATTTTTTATCTAAGAAAACAAATAGAAAATAATGGTGGTTACGTTGATGTAAACTACTTAATCTGATACAACTATATATATCTATCTAATTTCAACTTACACATGGCCAACAAAAACTTAGTTTAACTGACATTTAAGTATAATAGTATCTATAAGATCAGTGTTTCAAATTTTTCTACCGCAATTATTATATTAAAAAAAATCAACTAACACTAAAGAAGTATCACATCAATTGATCTAAATGAAGAATGAGTTGTCGAACTTTGAGATTAATAACTCAACTCGTTAAATATGTTCTATGGAAAGGTCATAGCTGTGATCCCACTCTATCATTGTTGCACACTTTAGAAAAAGTGACAGGCCTACACAACTATATAATTTATCATAGAATAAAATTAATGAATATATAAAAGTTAATATATATATTTTTATCTCGGGGATTGTTTCTTAAAGGTTGTGTTTGATAGAAAATAAAGAATTCAATAACACCCTGGAAAATCATAAAAAATAAAAAATTTGATAAAATATAGTAAAATTTCAAATTCTATCGACGATAATAATTGATAGAAATTCATATGCTTTTATTAGTCATATTAATAGGTGCTAATAGAAATTTATCGGTGCCTATATATCATTGATGTAATCCAAAATTTTGCTATATGTCGTAGATATTTTAGTTTTTTTTAATATTTAAAATTGTCCCAAACTAATTTGTACATAATTTATGTAATTTAGAAATTGAATTTTTGTTTAGGGGTTTTTATAAAAAATATAATATATTGGTAATATATTTATAGAACAATTTCGAAAACGAAAAAAACCCATGAGCCCACAATGGAAAATAACCAAAAATACTCTAGTCAATACGCAATTAATCGGCCACACACTTACATGAGTAATCTTCTTCTAAACAATCATGTACTACAGTCTAAACGATCTACAATCGTTAAGGTCGTGATACATGATCGTGTAGTTCTTTTTAACGATGGAAAAAAGGATTTTATTATTTTAAACGATCGTGTTAACTATGGTAAGCGATCATTTAGATTATATACATACGATCATGTGATTCTTTTTAAACGATGGGAAAAAGGCTTCAAATTTAAATGATCGTGTGGACTATACTAAACGATCGTGTTGACTATGGTAAGTAATGTTTAGATCATATCAACACGATTGTGTAGTTCTTTTAAATGATAGAAAAATGGTTTCAAATTTTAAAAATTGCGTTGACCATGGTAAAAATCGTATTGACAAAGGAAAACAATCGTTTAGATCATGTAAAAATGATAATATAGACGATATTGATATTCTCGAATATGAGGAAGATGAAGTAGCTTCAAAAAATCTTGTCGAAAATAGTGAAGATAAAATAGGAGAGTTAAATTAAAGTACAGAATAATAAATCATTTAAAATAAAATAAAAAAAATATGGAAGATGAGATAAAAAAATTTGGAAGAAAGAAATAACAAAGAACAGAGAAGAAGAAAGAGAAGTGACACAAAGGTGAACTTGAAAATTATGAAAATATTTTACGACTGTTGTTTTTTTTGTTACGGTCTTAAATATTTTTTGGTTTTGTTACTTTTACGTAAATTAATCTTGAACTTAAATAATAATTTAAAATAGTTGGATACTATATTTTTGGTTAATATATGATCACGTAAAATATGTAAACCAATAAATTATTGAGACGACAAATATATTTAACTATTAAAAGTTTGGCAAAATTACAGGTTTGATTCATAAATTAAACTCAATGTGGTTATACCTATTTAAATATCTTTTCATCAACACACTTAATAAGGAAATAAATGGCAATGATTGGAGCTGGAGCATTAAACGATACCTTTATGTCCAAACTAAGGTTCAACTTTTATGTATCAAAAGACATCTTTGCATTTAAGAGCCACTAAAAATTCCAAAATCCAGCTGATTCATCCATATCAACAGTGATAATGTACGTATTTATATTTGTGATAAAGTTGGAATGGTGATAGATGAATTTAGTCAGTTAGTTGAAAAATTGTGACATTGCAAGTGTCTTTTTAGCACTTGCCTACATTTATCATCAATAGAATTGAAATTTGAATAAATGAATAATCTTTTTTATCAAAGAGTCTAGTTTCTCCTGCTTTTATAATTTGTTTTGTATATTCTTGTTTTAGAATGCGTGTTTAGGACTTTTGATCTAATTTGATAAACTCTTTCTTATGTTTTAACTTTCTTGAGGTCCTGTATTGATTGTTAGATCGATGATGAGAGTTAGTGTTAGTATTGTTATGGATCACCTTGAATAAAAGGAGAGTACACTCCCGAACATAATTGAAGCAGTTCTCTAACTTAAAAATATATCTCAAATTAACATGTCATAGATTCAAATCTATACTCCGACAAAATGGTAAATTATGTCAATGGAAAGATATAAGTCAATGGTTAAAGAAGGCGAAGGACATCCTCCACAATTAAGCATGACCCTCCTTTAAAAGTGCATGCCTCACACGTCTCTCTATTTCTCTATTATCTCTCTGTCTTTTGTGTGTGAGTTGTTTTATGTTTCTTTTTTTAACTCTCATTTCCCCATACTACTCGGAAATACTAAAAAATATATATATATATATATTTTTTTTTTTAATTGAATAACAATAATTCAATTCAATATTTTGTTTTTAATTTAGGTCTTTTTCTCCCCCTTCCTTATCCCTAACTTCCTCATTCGAACCTCTTTCTGGTTTTCAATTTTCCCCTCTTGGGAGGGTCCCCCCTCCCCCCCAGCCCCCCTCTCTCTCTATTCATTATTTCTTTACAAATATCCATCAAATTTCTCTCTCTCTTTCTCTCCCTCCCTCTCTCTCTCTCCTCTTTCAAATGCTACATTTTTTTGTAGTTCATCAACTTTGGTGAATGATTGCGTGTTCTTAGCCCAAAAGAGACCATTTTTTTTTTTTGATGAATTTTCTTTCATATTCATAGTCAAAAGAGAGATAGGAAAACCCCATTTGGGTTTTATTATTATTTTTGTAATTGATTGATTCATTGATTTATTTGAGATTATTGTGGGGGATATTATTGTTATATCACTATTATTTTTGATAAAAAGATACAAAATTGAGATTTGGTGAAGAAAAAGAAAAGGAAAAAGAAAATGAGTTGCTTTCCATGTTTTTCATCTCATGGGAAAGCAGCAAAAAGAACAAAGAGTGGTAGAAGGGAACAATCTGTTTCATTACATTCACGTAGTAATAAACATAATCAACAACAACATCAACCACTTCCACAACAACATCACCATCATGCTCCTGCTCCTCCTCCTCGTCCTACTCCTACAGGTTCCATTTATTTCATTTTCTATCTTTATTTTTATGTAAATGCCGAAATAGGGTTAGAGATATTGAATATCTCGACGGGGACCAACCCAACTATGTTTGTGGAAATAGGGTTAGAGGTTGAAATCTGGACCGAGATAAAAAAAAAAAAAAAAAAAATGGTGGAAACATATATCCCAAACCTAGCTTCGTGATTCTAGGTCATATTATAAATTTAGACTTTAGCTTTCAAAAAGTTCCGATTTACATTTGGTTTTGATTCTAGTATCTTCTCCATTTAGTTTTTGTTACTTAAATGTTGTGGGTAGGGTAATTAAGGATTTTTCTTTTCTTTTCTTCTTCTTCTTCTTCTTCTTCTTCTTGTTTTTTTTTTTTTTTTTTAAAAGTTCAATAGAAATGGGGCTTCCAATCCTTACTAATTAGTTGTTAATGATTAAACATGCTAGCTATATTCCAGCGAGCTATAAATTTTGTTTAAAATTTATTTACCACTTTGGTTAGGTTGAGATGTTACTTTGATCTCTATAATATATTTTTTTTTTGTTTATTTTCGTTAATTTTATATTTGATTCATTTTCATCCTTGAAACTTTGAAAAACTGATCATTTTGATTCTTAAGAAATAATCATTCTAAAAAATAAGAAACAAAATAAAAATGTAAGGTTTAAAGTATAATTACAAAAGAAAGAACCTTTTGTTTTTAATTATTATTATTCATTGGCTTGTTCTCTAATAACGCTAAGATCGTGTCAAACAATTTTTTTTTTAATATATAGTCAAAACCAACATGTCTCACATTAACGAAATTAACTAGAAAATTCAAAATCATAATCGAAAAGTTGAGAGAACAAATCTCCTCAAAGTCACTCTTACAAGTTAGTTGCTATATATATGATCAAAACTATATCTATCTATATATATATATAAATGTGTATTTGAACATGGATATTATAAATGAACAGAAAATCCAAAAGCAAACCCTGTGCAAAAGGAAGCTATAGAGAAAGAAAAAGAAAAAGAGAAAGAGAAAGAGAAAGAGAAAGAGATTGGGGAAAAGAATAACATTGCAGCACAAACCTTCACTTTTAGAGAGTTGGCCACTGCTACAAAGAATTTCCGTCAAGAATGTCTCATTGGTGAAGGAGGTTTTGGGAGAGTTTATAAAGGCAAACTCGATAAAACTAACCAGGTAATGCCTACACAAACCTTCACTCATCACCTGCTTATTTTCTTTAGGGTTCGTTTGATATATATATATATATATATATATGTTTTTGTTTTTTTTAAAATGACCTTTAATTTTATGTTATTTGTTAACAATTATAACATTATATTCTTCTTGTTTAAGATTTTGGTTTAATGTTATGTGTTAGAATTTCTTCTTAAATTTAAAGTTATAGTTCACATCTATATATTAATAATCCTAAGCTTATTCTTTCAAATGACATGAAATATTGATTTCAAGAGAGCTCAATTGTCATTGATCGTCTTTGTAGTCCACCTAATCTCATAGATTTTTAAAAGAATTTTGAAACAAATGTTTTAAAGTTTTGTTTCTTTAAATGGAATGGTAATTTCCATAATTTTATTTGTTTAATGGACTCTAAAACCATGTTTTTTTAAAAATAATTTTATATTTCAGGTTCAAATTATAATAGTTTATGTTTTTGACTATTCTATCCATAATTGAGTATAGTATCCCCTATATCAAATTATTATTAATTGGTACGATATTTACTATTTCCTATGAATCCTTCCTCATCTTTATTAATTTGAACTTTAATAGTCTGCCCACTATTTAAATATAAACTAATTATAATTTATAAACTATAATAACTACTAACCATGAACCATAATAATTACATACTATAATAATAAGTTGAATGCTTCCAACTCTCTAAAAACTTATTGTTATTTAATTTATTGAAATGTTATTTTGTATGTGTGAGATGTGACAGGTGGTGGCAGTGAAGCAGCTGGATAGAAATGGATTGCAAGGGAACAGAGAGTTTCTTGTGGAAGTTCTGATGCTAAGCCTTTTACACCATCAAAACCTTGTCAATCTCATTGGCTATTGTGCTGATGGTGATCAAAGACTCTTGGTCTATGAGTACATGCCTTTGGGATCTTTAGAAGATCATCTGCTAGGTTAAATTTCTAAAACACAACTCTTAATTATTTATTGATCAAATCTGCCCTAAACATTAACTTTTCGCACTAATTAACTTCATCCTCTTATGAATTTTTCCTTTTTCAAAATAAACAAATATGCATATGTGATCAGACTAGTAATTAATAAGCTCTACTAGAAATAGTTCAGTATATATATATATATATATATATATATATATATATATATATATATATATATATATATATATATACATAAAATAAATGCTAGTTTCACCCTGCTCTCCATGGAAGTTTTGAGCAAAAAGACGACGAGATGACTCATTAAACTTGTGTGTGCTTTTCATTTGGTATTTATAGATCTTCCATTTGAAAGAAAGGCATTGGATTGGGGAACAAGGATGAAAGTAGGGTTGGGAGCAGCAAAAGGGTTGGAGTACTTGCATGACAAAGCCAACCCACCAGTGATATATAGAGACTTGAAAGCATCAAACATCCTATTGGACAATGATTTCAATGCAAAGCTATCAGATTTTGGACTTGCAAAGCTTGGTCCTGTTGGGGACAAATCCCATGTTTCCTCTAGAGTTATGGGAACCTATGGATATTGTGCTCCTGAGTATCAGAGGACTGGCCAACTCACTCCAAAATCTGATGTTTATAGCTTTGGAGTTGTCTTATTGGAACTCATCACCGGCAAGAGAGTTATTGACAACACTCGTCCAGCTAAACAACAAAACTTGGTCGCTTGGGTGAGTCAACTTTCTCTTGACCCTATCTTACATTTTTAACGAAATGTTGACACTGATTTGTTTTATTATTGTTAGATAGAATAATAAACATCTCGTATAAATAGAAGAAACTCCATAGATATAAATATATAGGGTTATAAAAAGCATCCATATAACCCTAATTCCATCAACTGTTCTTTTGTGTTTCTTCTACGTGCAGGCATATCCAATATTTAAGGAACCAACTAGATTCAAGGAGTTGGCAGATCCTCTTCTTGGTGGAGACTTTCCTGTGAGGGGTCTGAACCAAGCGGTTGCGGTTGCCGCCATGTGCCTTCATGAGGAAGCAACAGCCCGACCATTGATTAGTGACGTCGTCACTGCTCTCAGCTTCTTGGGAGCAGAAACCACGCAATCATCACCGTCTTCATCGTCAGGTGATGTCCCATCACCAATTGATGATCAAGATCTTATCAATCTATCCAACAAACCCATCGACTATTTTCACGACGACGAAACAGCTGAGGCACGCCAAAGAGCAGTTGCAGAAGCCATCGAATGGGGTTCAACGTCCAAGCAAAATGCTGCTGCTTCACGCCCGGGAAGTCATTCTTCCTTGTAAATATAATAAAAAAACTCTCTCATATTCCATATTATATATATGCAACGTGTTATTTAACCTATGTTGTATTCTCCACAATTTTCTCTTGATTGTTTCGATGGAAAAATGGAAAGAAATATTATATTGAAGAAGAAGAGAGAAGGAAAAACTTAAAAGGAGATGCAAAAATATAGAAAAACAAGGTAGGGTTGTGTAGGGCTTTGTGTGCTTTAAATTCTTTTATTTATCAAATCAATCATTGTCCTTTCTTCCTCACACTCGTTGCC TGACTACTCTGCAGTTATTTATGCCATGTTCCTCGAGTTTAAAGAGGAACTAGATAACCTTGCGGGAGAGTCGTCGTTGGTGGGCGGCAATTCGGATACTTGTTACCATCTACGACTTCAACTCAATGATCAAGCAATGAATAGGTTCATTGAGCATAAAATGGTCAACACCTTTAAAGAGTTTCAGGGAGGTTGTCATAGTTTTTCATCTCATGGGAAAGCAGCAAAAAGAACAAAGAGTGGTAGAAGGGAACAATCTGTTTCATTACATTCACGTAGTAATAAACATAATCAACAACAACATCAACCACTTCCACAACAACATCACCATCATGCTCCTGCTCCTCCTCCTCGTCCTACTCCTACAGAAAATCCAAAAGCAAACCCTGTGCAAAAGGAAGCTATAGAGAAAGAAAAAGAAAAAGAGAAAGAGAAAGAGAAAGAGAAAGAGATTGGGGAAAAGAATAACATTGCAGCACAAACCTTCACTTTTAGAGAGTTGGCCACTGCTACAAAGAATTTCCGTCAAGAATGTCTCATTGGTGAAGGAGGTTTTGGGAGAGTTTATAAAGGCAAACTCGATAAAACTAACCAGGTGGTGGCAGTGAAGCAGCTGGATAGAAATGGATTGCAAGGGAACAGAGAGTTTCTTGTGGAAGTTCTGATGCTAAGCCTTTTACACCATCAAAACCTTGTCAATCTCATTGGCTATTGTGCTGATGGTGATCAAAGACTCTTGGTCTATGAGTACATGCCTTTGGGATCTTTAGAAGATCATCTGCTAGATCTTCCATTTGAAAGAAAGGCATTGGATTGGGGAACAAGGATGAAAGTAGGGTTGGGAGCAGCAAAAGGGTTGGAGTACTTGCATGACAAAGCCAACCCACCAGTGATATATAGAGACTTGAAAGCATCAAACATCCTATTGGACAATGATTTCAATGCAAAGCTATCAGATTTTGGACTTGCAAAGCTTGGTCCTGTTGGGGACAAATCCCATGTTTCCTCTAGAGTTATGGGAACCTATGGATATTGTGCTCCTGAGTATCAGAGGACTGGCCAACTCACTCCAAAATCTGATGTTTATAGCTTTGGAGTTGTCTTATTGGAACTCATCACCGGCAAGAGAGTTATTGACAACACTCGTCCAGCTAAACAACAAAACTTGGTCGCTTGGGCATATCCAATATTTAAGGAACCAACTAGATTCAAGGAGTTGGCAGATCCTCTTCTTGGTGGAGACTTTCCTGTGAGGGGTCTGAACCAAGCGGTTGCGGTTGCCGCCATGTGCCTTCATGAGGAAGCAACAGCCCGACCATTGATTAGTGACGTCGTCACTGCTCTCAGCTTCTTGGGAGCAGAAACCACGCAATCATCACCGTCTTCATCGTCAGGTGATGTCCCATCACCAATTGATGATCAAGATCTTATCAATCTATCCAACAAACCCATCGACTATTTTCACGACGACGAAACAGCTGAGGCACGCCAAAGAGCAGTTGCAGAAGCCATCGAATGGGGTTCAACGTCCAAGCAAAATGCTGCTGCTTCACGCCCGGGAAGTCATTCTTCCTTGTAAATATAATAAAAAAACTCTCTCATATTCCATATTATATATATGCAACGTGTTATTTAACCTATGTTGTATTCTCCACAATTTTCTCTTGATTGTTTCGATGGAAAAATGGAAAGAAATATTATATTGAAGAAGAAGAGAGAAGGAAAAACTTAAAAGGAGATGCAAAAATATAGAAAAACAAGGTAGGGTTGTGTAGGGCTTTGTGTGCTTTAAATTCTTTTATTTATCAAATCAATCATTGTCCTTTCTTCCTCACACTCGTTGCC ATGTTCCTCGAGTTTAAAGAGGAACTAGATAACCTTGCGGGAGAGTCGTCGTTGGTGGGCGGCAATTCGGATACTTGTTACCATCTACGACTTCAACTCAATGATCAAGCAATGAATAGGTTCATTGAGCATAAAATGGTCAACACCTTTAAAGAGTTTCAGGGAGGTTGTCATAGTTTTTCATCTCATGGGAAAGCAGCAAAAAGAACAAAGAGTGGTAGAAGGGAACAATCTGTTTCATTACATTCACGTAGTAATAAACATAATCAACAACAACATCAACCACTTCCACAACAACATCACCATCATGCTCCTGCTCCTCCTCCTCGTCCTACTCCTACAGAAAATCCAAAAGCAAACCCTGTGCAAAAGGAAGCTATAGAGAAAGAAAAAGAAAAAGAGAAAGAGAAAGAGAAAGAGAAAGAGATTGGGGAAAAGAATAACATTGCAGCACAAACCTTCACTTTTAGAGAGTTGGCCACTGCTACAAAGAATTTCCGTCAAGAATGTCTCATTGGTGAAGGAGGTTTTGGGAGAGTTTATAAAGGCAAACTCGATAAAACTAACCAGGTGGTGGCAGTGAAGCAGCTGGATAGAAATGGATTGCAAGGGAACAGAGAGTTTCTTGTGGAAGTTCTGATGCTAAGCCTTTTACACCATCAAAACCTTGTCAATCTCATTGGCTATTGTGCTGATGGTGATCAAAGACTCTTGGTCTATGAGTACATGCCTTTGGGATCTTTAGAAGATCATCTGCTAGATCTTCCATTTGAAAGAAAGGCATTGGATTGGGGAACAAGGATGAAAGTAGGGTTGGGAGCAGCAAAAGGGTTGGAGTACTTGCATGACAAAGCCAACCCACCAGTGATATATAGAGACTTGAAAGCATCAAACATCCTATTGGACAATGATTTCAATGCAAAGCTATCAGATTTTGGACTTGCAAAGCTTGGTCCTGTTGGGGACAAATCCCATGTTTCCTCTAGAGTTATGGGAACCTATGGATATTGTGCTCCTGAGTATCAGAGGACTGGCCAACTCACTCCAAAATCTGATGTTTATAGCTTTGGAGTTGTCTTATTGGAACTCATCACCGGCAAGAGAGTTATTGACAACACTCGTCCAGCTAAACAACAAAACTTGGTCGCTTGGGCATATCCAATATTTAAGGAACCAACTAGATTCAAGGAGTTGGCAGATCCTCTTCTTGGTGGAGACTTTCCTGTGAGGGGTCTGAACCAAGCGGTTGCGGTTGCCGCCATGTGCCTTCATGAGGAAGCAACAGCCCGACCATTGATTAGTGACGTCGTCACTGCTCTCAGCTTCTTGGGAGCAGAAACCACGCAATCATCACCGTCTTCATCGTCAGGTGATGTCCCATCACCAATTGATGATCAAGATCTTATCAATCTATCCAACAAACCCATCGACTATTTTCACGACGACGAAACAGCTGAGGCACGCCAAAGAGCAGTTGCAGAAGCCATCGAATGGGGTTCAACGTCCAAGCAAAATGCTGCTGCTTCACGCCCGGGAAGTCATTCTTCCTTGTAA MFLEFKEELDNLAGESSLVGGNSDTCYHLRLQLNDQAMNRFIEHKMVNTFKEFQGGCHSFSSHGKAAKRTKSGRREQSVSLHSRSNKHNQQQHQPLPQQHHHHAPAPPPRPTPTENPKANPVQKEAIEKEKEKEKEKEKEKEIGEKNNIAAQTFTFRELATATKNFRQECLIGEGGFGRVYKGKLDKTNQVVAVKQLDRNGLQGNREFLVEVLMLSLLHHQNLVNLIGYCADGDQRLLVYEYMPLGSLEDHLLDLPFERKALDWGTRMKVGLGAAKGLEYLHDKANPPVIYRDLKASNILLDNDFNAKLSDFGLAKLGPVGDKSHVSSRVMGTYGYCAPEYQRTGQLTPKSDVYSFGVVLLELITGKRVIDNTRPAKQQNLVAWAYPIFKEPTRFKELADPLLGGDFPVRGLNQAVAVAAMCLHEEATARPLISDVVTALSFLGAETTQSSPSSSSGDVPSPIDDQDLINLSNKPIDYFHDDETAEARQRAVAEAIEWGSTSKQNAAASRPGSHSSL Homology
BLAST of MELO3C021009 vs. NCBI nr
Match: XP_008458110.2 (PREDICTED: serine/threonine-protein kinase At3g07070 [Cucumis melo]) HSP 1 Score: 1003.8 bits (2594), Expect = 5.3e-289 Identity = 514/518 (99.23%), Postives = 514/518 (99.23%), Query Frame = 0
BLAST of MELO3C021009 vs. NCBI nr
Match: XP_011659181.1 (probable serine/threonine-protein kinase PBL25 [Cucumis sativus] >KGN44588.1 hypothetical protein Csa_016739 [Cucumis sativus]) HSP 1 Score: 844.7 bits (2181), Expect = 4.1e-241 Identity = 437/460 (95.00%), Postives = 445/460 (96.74%), Query Frame = 0
BLAST of MELO3C021009 vs. NCBI nr
Match: TYK21491.1 (serine/threonine-protein kinase [Cucumis melo var. makuwa]) HSP 1 Score: 802.0 bits (2070), Expect = 3.1e-228 Identity = 434/518 (83.78%), Postives = 444/518 (85.71%), Query Frame = 0
BLAST of MELO3C021009 vs. NCBI nr
Match: XP_038899485.1 (probable serine/threonine-protein kinase PBL25 [Benincasa hispida]) HSP 1 Score: 760.0 bits (1961), Expect = 1.3e-215 Identity = 405/460 (88.04%), Postives = 416/460 (90.43%), Query Frame = 0
BLAST of MELO3C021009 vs. NCBI nr
Match: KAA0026298.1 (serine/threonine-protein kinase [Cucumis melo var. makuwa]) HSP 1 Score: 729.2 bits (1881), Expect = 2.5e-206 Identity = 367/372 (98.66%), Postives = 368/372 (98.92%), Query Frame = 0
BLAST of MELO3C021009 vs. ExPASy Swiss-Prot
Match: Q9SFT7 (Probable serine/threonine-protein kinase PBL26 OS=Arabidopsis thaliana OX=3702 GN=PBL26 PE=2 SV=1) HSP 1 Score: 531.9 bits (1369), Expect = 7.8e-150 Identity = 277/395 (70.13%), Postives = 313/395 (79.24%), Query Frame = 0
BLAST of MELO3C021009 vs. ExPASy Swiss-Prot
Match: Q9LRY1 (Probable serine/threonine-protein kinase PBL25 OS=Arabidopsis thaliana OX=3702 GN=PBL25 PE=2 SV=1) HSP 1 Score: 507.3 bits (1305), Expect = 2.1e-142 Identity = 250/332 (75.30%), Postives = 281/332 (84.64%), Query Frame = 0
BLAST of MELO3C021009 vs. ExPASy Swiss-Prot
Match: Q1PDV6 (Serine/threonine-protein kinase PBL27 OS=Arabidopsis thaliana OX=3702 GN=PBL27 PE=1 SV=1) HSP 1 Score: 476.1 bits (1224), Expect = 5.1e-133 Identity = 245/350 (70.00%), Postives = 282/350 (80.57%), Query Frame = 0
BLAST of MELO3C021009 vs. ExPASy Swiss-Prot
Match: Q1PE89 (Probable serine/threonine-protein kinase PBL24 OS=Arabidopsis thaliana OX=3702 GN=PBL24 PE=2 SV=1) HSP 1 Score: 474.6 bits (1220), Expect = 1.5e-132 Identity = 246/358 (68.72%), Postives = 280/358 (78.21%), Query Frame = 0
BLAST of MELO3C021009 vs. ExPASy Swiss-Prot
Match: Q6I5Q6 (Receptor-like cytoplasmic kinase 185 OS=Oryza sativa subsp. japonica OX=39947 GN=RLCK185 PE=1 SV=1) HSP 1 Score: 472.2 bits (1214), Expect = 7.3e-132 Identity = 245/371 (66.04%), Postives = 286/371 (77.09%), Query Frame = 0
BLAST of MELO3C021009 vs. ExPASy TrEMBL
Match: A0A1S3C8C3 (serine/threonine-protein kinase At3g07070 OS=Cucumis melo OX=3656 GN=LOC103497640 PE=4 SV=1) HSP 1 Score: 1003.8 bits (2594), Expect = 2.6e-289 Identity = 514/518 (99.23%), Postives = 514/518 (99.23%), Query Frame = 0
BLAST of MELO3C021009 vs. ExPASy TrEMBL
Match: A0A0A0K554 (Protein kinase domain-containing protein OS=Cucumis sativus OX=3659 GN=Csa_7G338620 PE=3 SV=1) HSP 1 Score: 844.7 bits (2181), Expect = 2.0e-241 Identity = 437/460 (95.00%), Postives = 445/460 (96.74%), Query Frame = 0
BLAST of MELO3C021009 vs. ExPASy TrEMBL
Match: A0A5D3DCU1 (Serine/threonine-protein kinase OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold305G00280 PE=4 SV=1) HSP 1 Score: 802.0 bits (2070), Expect = 1.5e-228 Identity = 434/518 (83.78%), Postives = 444/518 (85.71%), Query Frame = 0
BLAST of MELO3C021009 vs. ExPASy TrEMBL
Match: A0A5A7SJK0 (Serine/threonine-protein kinase OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold19G003070 PE=3 SV=1) HSP 1 Score: 729.2 bits (1881), Expect = 1.2e-206 Identity = 367/372 (98.66%), Postives = 368/372 (98.92%), Query Frame = 0
BLAST of MELO3C021009 vs. ExPASy TrEMBL
Match: A0A6J1GQ93 (probable serine/threonine-protein kinase PBL26 OS=Cucurbita moschata OX=3662 GN=LOC111456112 PE=3 SV=1) HSP 1 Score: 712.6 bits (1838), Expect = 1.2e-201 Identity = 384/464 (82.76%), Postives = 400/464 (86.21%), Query Frame = 0
BLAST of MELO3C021009 vs. TAIR 10
Match: AT3G07070.1 (Protein kinase superfamily protein ) HSP 1 Score: 531.9 bits (1369), Expect = 5.5e-151 Identity = 277/395 (70.13%), Postives = 313/395 (79.24%), Query Frame = 0
BLAST of MELO3C021009 vs. TAIR 10
Match: AT3G24790.1 (Protein kinase superfamily protein ) HSP 1 Score: 507.3 bits (1305), Expect = 1.5e-143 Identity = 250/332 (75.30%), Postives = 281/332 (84.64%), Query Frame = 0
BLAST of MELO3C021009 vs. TAIR 10
Match: AT5G18610.1 (Protein kinase superfamily protein ) HSP 1 Score: 476.1 bits (1224), Expect = 3.6e-134 Identity = 245/350 (70.00%), Postives = 282/350 (80.57%), Query Frame = 0
BLAST of MELO3C021009 vs. TAIR 10
Match: AT5G18610.2 (Protein kinase superfamily protein ) HSP 1 Score: 476.1 bits (1224), Expect = 3.6e-134 Identity = 245/350 (70.00%), Postives = 282/350 (80.57%), Query Frame = 0
BLAST of MELO3C021009 vs. TAIR 10
Match: AT4G13190.1 (Protein kinase superfamily protein ) HSP 1 Score: 474.6 bits (1220), Expect = 1.0e-133 Identity = 246/358 (68.72%), Postives = 280/358 (78.21%), 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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