MELO.jh101942.1 (gene) Melon (Harukei-3) v1.41
Overview
Sequences
The following sequences are available for this feature:
Legend: exonCDSpolypeptide Hold the cursor over a type above to highlight its positions in the sequence below.ATGGTTTCGGGTCGGGTAGATGGTTTCGGCTTCGGATCTGATGAAAGGCGCGGGTCTGTGAAGGCGCTTGGATCGGGTCGGTGGTACAGACGGCTGGAGACACGCTCGGCTGTGGGACGGGTCAGATCTGATGGTTTTGGGTCAGATCTGATGGTTTCGGCTGAAGACACGTTGGGATCGGACGGGTCAGCGACGGCTGGAGACAGGCTTCACGGAGATTCAAGCGACGTCGGAGGTCGGAGACTGGAGTGTGAAGCTTCGACAGATGTGGTGGTAGGCTCGGGATCGACTGGGTTTCACGGAGGCCGGCTCGCACGCGCAAAGGGAAAACAGGTGCAGCTTCGGGTTCGCGGAGATCTGAAAGGCGACTGGGTTTCACGGAGGCGGGCGTCGGATGGGTTGCGGCGACGGCGGCGGCGGTTTGAACAGTAACTAGTTAAAGAGGCTCTGATACCATGTCAATCTATTTAGATGAATATTATTGTGTAGCTTTACATCAAGAGAAAGGGGTATAAATACAAGGTTGTATGGAATGAAAAAGACAACAAATAATACAAGATAATACAAAATAAAATAAGATAATATCTTCAATTTTCTTATGGACAAAATATACATTAATAGTATTTAAGCAGCTATGTTTTATGGACCACACAAAGAATTTGCACTCCTTTGGTAGATTTAATTTCTAGAAGATTGGGGGGGGGGGGTCATATTGGTGTATTAGGCCTTGTAAGTCTGGAAAAACTACCGCATTTGCTGATGCAACCGTGAAGTCACTATTTTTTTTTGGAATCCACCTTAATCTGTTTTGTCCTTGGGAAGGTGATGAAATTTGGAGGCCAAACTTTGACAAAGTTCCAAATGCTTTGTTCCATATCATTTAGAGGCCTTCTTAGATTTATGGACCATGATTTTTTATTTCTGTCCTAGAGATCCTTAATGGTTGCATTTTGGGAAAGAGATAAAGCATACAACCTTGGATATTTTAAGGCAAGAGAGGGCTCACTACACCATTTACTATGCCAAAAAGACAGCTTATCACCATTGTTGAAAATCCAGTTGCTATGTTTATCGAACTAGGCTGAGTTCATTTGTGATGGATCTCCAAGAAGCCTTTTTGCTGCTAAATCTTCCTTTTGTTGGTATATCACCAATGAAAACTCCTTTATATTTAGGAGATATGAGATTTGTCCATAAAGATCTTACCTCCAAATAAAAACGCCAAATCCATTTACATAGGAGGGTTTTGTTGGTATCTTTGAGTCTAGATATTTCAAGACCACCTTTGCCCTCTGGGGATATGACCAACTTCCAATTTGCTAAGTGTGAGTGACAGCTCTCTTCGTTGTTTCTCTAAAGAAAATCCCTCCAATTTTTTTATATGTTAGTTGTAGACTTTGATAGAAGCTTTAAACACCAAGACCTGATAGGTGGGCAGACTAGAAAGAGACGATTAGATTAGTGTTAGTTTGCCACCTCTAGGGCAATGTGCATACTTCCGATTGTTCAACTTTTTATGGATCGTTTTCTTTATATTTTCACAGAAGCTTTCTGAGTTTGGATTACCACTTAAGAGAACTCCCAAGTAATCAATTGGTAGAGGATTTATTGGGAAGTTAAGAAGATTTTTGAATTCTTCCAGGCAGCTTGTAGAAACGTTTATTAAAGAGATGGATGATTTTGTGCAGTTTATAGGGATATAGGCTCTTCAATGTTGTATCTTCGTTTTCCTCAAAAAGAAGGATATCATCAGCAAAGAAAATATGATTTAAATAGCACACTACAAGAATTTTTGGCTCTGCCAATAGTTTTTTCTGACAATAAAGAAAACTATGGGCAAAGATATGATGTGCCAACGTAAATTCATTTTCATGGGCACATATTCATTTTTGCAAATGAAAATATATACGTGGGCAAAAGGTTGTGTATTGTGTAAGCGTATCATCGTTTTTACCAATGAAAATATATACGTGGGTAAAAAGTTGTGTCGTGTAAAGGAAAATATTTAAGTTGAATTTCTGTCGACGTTTATTGTAGTTTATGGCCGAACTTGATTAACAAAGTTTCTTATGTTGTTTACTTCTGCTGTCCCTCTAGCTATTACTACTGTTAAATACTTTAGATTTAACTAAACGTTAATTTGATTATCTCATACTGTTTTTCAAAATTTCAAAAATTCAAAATTTTACGATCACGACCAGTACATTATATAAAGTCATGATTTTGGTCCCTAAGTTAAGAAACTTATTAAATATTTAATGGAGGTTGACGTGGTAATTTCATTCCCAAAAAAAAAAAAAGAAATAAGAAGAGCCACAACTATAACTTTTGCATTTTATTGATTTGTTACGTTAACTCTTTTCTCTACTTCGTTGAACGCCCCCACTCCTCGGTTTAATTACAATACTTTTGTTAAAAAACAAAGAAAGACACTTTTTCTCCCTACTTTTGTTGGCTAGATTGTGTCTTTCTCGATGTAACGTAACAGATTAGAAAAACTCTATGTTTAGCCTTTATAAATATATCCTTATTGCTTCACAAGGAGTAAATTCATACTCTTCCTTAAACACTTGAATTCATCTTCTTCCCTAAAAACGTGTTGCATTGAGTACTATTGAAGCTTCTAGGATTGTAGGGCACCACATAGCCTAGGTGTTACTTCTCTTTGTTCTGTAAGTCCTCTCCTCCTATATAAACAAATATTTCAAGTAAGTTCTCCTTTTGCTAGCTAGATTTTCTCATTAAAAAATATTTTTATATAACGAGGAGATATACAAATGATACATAGTTTTTGGGCAAAGGTAATGAATACAAACTATAAAGTTGTAGTTGAAAAGAAGAAATGGAAGTTTATTTTGGATGGTGAAGGTGTGTAATTATTTAGTTTTCATTATACTTTATAAATAATCTTCATTTTTCCTTTTTCTTAATACGTTTGACTGATCATCTTCCATTTAATGTAGCATTAATACTTACGTTAGAAAATCAACTATTAATAAAAACAATCTTTTCAACTCTTTCTTAATAATATATTGACTTATTAATTTTAAAATAGTCACAAACATTGATTTGCATTTCAAAGTTTATTTGAGTCCATATGATCAAATCCAACTTGAAGAAGTATATGTCTTTAATAATTAAGAGGTTGGAAAGGTTTGAATTCACTTATTACCACCAATATATTTTATAGCATCGAAACGGAGGAATGTACAATTTTCTTTTGTCCATGAATTTTTAGTTCACGTGATTTAGTTCGGTGGTAACGTGTTAAATACGCTATCCATTTCTATTTAATTCAAGTTCGTTTCGTAATTTTATGTTCTTAATTGATTCTGCTATAGGTTTTGAGCAATTCATACGTAAAATTTGGTGTTAAAGCTATTTTGTAGCAAATTTGGGTGAATACAGATTAGAATAATAGCATCAACCGAGGTAAACCAAGTCAAGTGAATGATCGAAAGAAGTCGATTGTAACGACCCAACTTTTCGGACTAAGCTGAGGTCATTACTTTACTACTAAGACACTTCATCGTCAAATATAAAGATTTCAAAAAACCTACTTAACATCATCAAACATTCGAAAATGAGGAAACTGTCCTCGAGCCCTATTTCGAACAATTTCAAAAGTTCAGAACATCGTCTAAGAAATCATCAAAACAAAACAAAACAAATAGATGTCCTAACCATGACTCATTTTAAATCCTCAATACAAAAATAGTAAAGACATTAAGCGGAAGCATTAAAAATAGACGTTCCCATATGGCGTTCACGTATCCTTCTTACCCATTGTCGGTTTACCTCTCCCGTTACCTTTGCCTGAAAAAGTTAAACATAAAAGGATGAGTATAAGATATACCCAGTAAGAGACCCACTACTTGTCCCGTTAAGGGTAAGAATAGTTAGCTTCCTATTATAAGTACCCTACAACATAACATTCTAGTGATCCCGTAGGATACACACATCAGTTTAGTGATCCCGTAAGATGCACATATCAGTTGAGTGATCCCGTCAGATACACACATCAATCTAGTGATCTCGTAGGATACGCAACTTAGTCTAGTGATCTCAAAGGATGCACAATATGTGGTGATCCCGTAGGACACCGTGCCTGCAAGGTATACGACCCTATAGATAAAGCTAACAGTTACACCTCATTCCATTATAAACAGTAGGGGTGAAAAAAACCGACCCGACCCGATTTGGTTCGATTTGGGTTGGACTGGTTAGTAACAACAACGTTACTGAACCGAACCAAACCGATTTGATTTGATTCGGGTCGGGTTGGGTTTAAAATAACCGATTAGGTTAAAATTTTTCTTCGTCTGCGGGCACTTCATTTCCTCTCCTCTTCGACTCTTCTTCACCTCTTCGTCTGGCGTCGGCATCATCTCTTTGTCTTCATCACCTCGCCACTCCATCGTCTTCCTCACTTCGCCATTCCATCGTCTTCATCACTTCGCCATTCCTCGTAACCTTCAAGATCCTCAGATTCTCAGGTATTTTTGGGTTTTTTTTCCTGCTTATTTGGTGTTATTGCCTATTGAATGTTCATATAGGAACTTGGATGTTGGGTTTCTTTTTTTAATTTTTTAATCGGTAGACTGTTGTTTTCTCAAGTTGTCATATGGGTTCTTGTTTATGATGGAATTATCTTAACTTGAGGGGGTATGGAATCTTTGGTATAGCCGTATAGGGACCAATGTCATTTGGGTTCTTGTAAATGATACGAATGATCATTCTGATTTGGAAGTGTATCTTCATAATGTTTGAAAGATGTTTCCTGTGGAAGGGACATAAGTAGAAAATGGAGAAATGGAGAGAAGAAATATGAAGAAATTAACAAAGGAAAGAGTACTGAAGGGTAAAAAAGAAAAGAGAGAAATGGGATTTGATTTAGTTTGGGTAAAAAAGAAATTACAATTGTTTTTTATCCTCTCTGTTTCTACATAGCAATTTGGTTGGTTCTCCAATGTTCCCTATCTTTAAATTTGATTTACTTTTCTGTAAGTTTTATTTGTTCATCTGGATTTAATGCTCTTATATAGGGAGTTGAATCCTTTGTATTCTATTTGATTCTCACTCCACTTCTTTGTAGTTCATGTTCTTGATGTTAGACGTTATGTTTTTGCTAAAGCTGGCAAGTTGTTTTGCACCGTCTTGTTGACTCTGCTAGTTTTCTTTAGCTTGGTTTCTTATTTTTTTTGGAAAAAAATTGAATGAAAAATGATTTTAACAAGGAAGCTCTCTTCTATTTTCTTTTCCATCGTTGGTTCTCTCACTTGTCACCTCCATAGAGCATCAGTGTATCTATAAACTTGAAACAATCTTTTTAGATCCTTATGTTTTTCCCTTGTAATTCAGTTGTTCTGTTTCTCTCCCTTGCTGGTTAAATTTTTTTTGTTGGCCAACGATTGCAGTGTTTGTGTGGCCTAAAATATCAATCCAGAACTCGTGTCTTAACCAATGATTTGTGCACTACAAATTCTATTTTATAGTGTTTCTTTTGGGATGTTTGTTCGTTTATATGCTTATCCTTGAAATCTCATGAATCTTTTTTGCGTGCCCATTTCTTTAATATCTTTGAACCATCTGCCATTAGGGAAAGTATCTTGTTAGCTAAGAGAGTTTCTCTGTTTCATTTATGAACATCTTGTTTGATTATCACTAGTACTTGACAATAGTCATTAAAAATTTCATTTGTTCATTAGTTTCCAAAACATTTCTAAGAATTCTTTCGTTTCTTTTGCCATTTTTCTTGTCAGTTGTTTTGATGGGGTGTGTGCAAAGTTTGAGAAATTGGTTGCTAATATCATTTGATTCAAAAAAACAATTTAAATGAAAAGACATAGCATCATAGTGCTGTTAGATTTTATTTGCTGCTACATGATTTCTTAGATAGCTCAAATTCTTTTCGCCCTTTCTCTATGTATTTTTCTTTTTTATAGTGACATTCCTTATTATTTTAGTTAAATTTAGTTTTGGTACAAAATATTAACACATTTCTTCTTGAAGAATTCTCTATTTGGTATATGTTTGTTTTGTTTTTTTTTTTTGTTGATTCTTCATTTTATTTTCTAATCCTTTTTTAAAGATTTATTTTTCTTTGTTTCATTACTGCATTCAGAGTACTGCCTTTCTTTGTTTTGTCTCCTCTTTTTATTTAACATTTAGAGTACTGCCTTTCTTTGTTTCTTTCTCTTTTATAGTACTGGTACGCTTTTCTTAATTTTCTCCTTTGTTTTGTCTCCTCTTTTTATTTAACATTTAGAGTACTGCCTTTCTTTGTTTCTTTCTCTTTTACAGTACTGGTACGCTTTTCCTTAATTTTCTCCTTTGTTTTGTCTCCTCTTTTTATTTAACATTTCTTGTTTTTCAAACTTTAGTACACTCAAATGAACTTTCTACTTTCTTCATGTTTGAAACCAAAAAAAATTTAATCAGCAGCACTGAATCAGGCAGCAGCTAGTGAGTTCTACACTGCCACATAACGCTTTCCAAATTGAACTTCTACATCTTTCCTTAAAGACTTACCGAGTGTTTAAACTCAACATGATGATTTTCCTTTTAGGATAATCCCTTAACCTCTATCAAGGGACCTATAACCTAAACCTAAAGATTTAACTTTTTCTTCCAGAAGGATGATTTCTTAAGATACATCTTAGTTTTAGACATACTCATAGACTTTAGAAAGATTCAAAACCTCTCATCTTTTGAACGGAAAATCATATAAATTATCATTGGACTACGTTCGCTTAATCACCCAATCATATAAAAATTTACTCAATCACTGAGTTTTCAATTCTCAAGATGTTTACCTTATTCATTGTTTAAAATGCATGAGCTTCTGTGTGAATCAATTATTGATTTGAGTGTTTCTTTTTTTATGTATTTTGTTTGATGATTATTAGGATGACTTCATTCTCGGTAGACGAGACTTCAAATTAAAGTTGTTCTAGTCCAGTGTTAGGAAAAAGAAAATCGGTTAAACCACCATCATCGGTATGAGAACATTTTATAAAAGTAGAAGGATGTGATCCTAAATATCCTAGGGCTGCTTGTAAACATTGTGGGACTTCATATGCTTGTGATTCCAAAAGAAATGGTACCATTAATTTAAAAAGACATTTAGAGAAATGTAAGATGTATGTAAATCCATTGAAAGATAATGTTGAAGGAGATGGAGATTCTGAAAGTAGTTTGATGGCTGCATCATTCACTCAAGAAAATTGTAGAAAAATGCTTGCTAGGATGGTTATCTTGGATGAATTGCCATTTAAGTTCGTACAAAGTGAAGGGTTTCATCAATTTTGTCGGGCATTAAATCCAAAGTTTGTTATTCCATCAAGAGTAACCGTTAAAAAATGTATATGAATGAGAAAAAAAAGTTAAAAAATGTATTAACTCGAAGTGACCAAAGAGTTTTTTCATAAACTTTGTTTGATCCAAGAAATAATTCGTGAATACTCATCGTATGAGAATGCATTATTGAGTCAAATGACATTAAGCATGCAGACAAAATTCAACAAGTATTGGGGTATAACTACAAGTGAGAAGATCCACTAGAAGAAATCTGGTCTTTAATGTCGGGTGGAAAAAATGAAAAATAAGCTTTAATGTCGGTTTTCAAAAGGCGGATGTTTAATGTCGGTTTTAAACCGACATTAAAGCTTTATCTTTAATGTCGGTTTAAAACCGACATTAAACATCATGTTTTTTAGAACCGACATTAAAGGTCTTTTTTATTTTATTTTTTATTTTTTTAATTTTGTAAAAAGTTGAATTTTTCTCTCTCTTACTTTACTCTTTTCTCCTTTCTTCTCTACCAAACCCTACGAAAGAAGGTTTTCTTTCAACATTTCTTCCCTTTCTTCCTTTCTAAATCTCATCACTTTCTCCCCTCTCTTCTTGGTTCAACATTTCTTGGTTCAACACCTGGCTCTGAGCTTTCTGTTGAGGAGCGAAATCTTCTCTCTGTCGCTTACAAGAACGTGATTGGCTCACTTCGAGCTGCTTGGCGGATTGTTTCTTCCATCGAGCAAAAGGAGGAGAGTCGTAAGAATGAAGAGCATGTTGTTCTTGTTAAGGATTATAGATCAAAGGTTGAGTCTGAGCTTTCCGATGTCTGCGCGAGTATTTTGCAGCTTTTGGACTCGAATCTTATTCCATCTGCCTCTGCTAGTGAGTCTAAGGTCTTCTACTTGAAGATGAAAGGGGATTACCATAGGTATTTGGCGGAGTTTAAGGTTGGAGATGAGAGTGGGTGTTTTCTATTATAAAACTTTATGCTAGATTTGCAAGTATGTTATCAGTCATTACAATTGCAATCTCTCTTTGTATCTCGATTTTCTTACTATATGCAATGTTTTCAGGACATCACAAAAGCAAGAAAGATACCGAAGCGTGCTTTGCCTATTATTTGCTTCAGAGAAGTCAGCCCCCCATTGTCGGTTGCTTCAAACACTTCCATTATAGATTCAGGTTATTTGACTTAGCTATAACTTAAAGCAAGCTTCATTTTGTTGTTCTAGTTTGCTGTCTTAGCCTTGTGTTTGACTTTGAGCATTTTATCTCTAAGATGTATATTTAGTAACATGTTCTAAGGTTGTTTTTCTTTCCTTGAAATAAAAGAAAGTAACGTAAATTTAGTAACAAAAATTGAGTGTTGTCATGGGGTTTCTGCTCTATAATACCATTATAGTGCAGAGAAGGAAAAGAATGAGAAAGAATCAAATATAATATAGTGACCTTTATGTGTTGTTTGTAGGGGGGAAGAGTTATGGCTGTTCTGAAAATGCGGGTGCTGCAGGAACGTATTACGATGCTGTGCCTCGAAGCCTTATTGTTAGCAATGACAACTTATCTACTCAGACGGATACACTTCTTCTAACATTTCCCAAGCAGCCTCTTTGGACAAATGTGTACATTCAAAACCATGCTAAGGCTTTGGTTCCTTTGTTTTGGAGCCGTGTACAGGTTATATATCTCTGAGTATATGCTTCCACGATTATGCAGATTATTATTTCTCTGATTTCTGTTCTCATGTGGATCATGCAGCTTGAGTGTTTTTGGACCTGGACTTCTTGAGTTGCCTTTTTTTTTTTTGTTATAATCAATGCCATCTTTCTATTAATGGGAAGTGTTGTATTTTTTCCCTTTCTTAGAGAAGAAAGAGTAATTTCATCAGAAAAAGGATTTAAATAACCAGAATTCCAAGAAAAGGGCAGATACTTGCTTGTTTGGTGGTTCGTTGAAAAGTAATCAATCATCACATTCAAATAATAACAAATTTTGTTACTTCTTTGGGAGTGTTTTTTTAAAGAAGTGATTATATGATTTGTTTATAAGTGATTTATTAAAAGTGATTCTCATCCAATCATCTTCATATTTGGATTTATGATTTTAAACATGATTTTCATTCAATCAAAGTTGATGTTGAGTGATTAAAGATATTTTTGGGATTGATTTTGAACTTGACAGAAAGTGATTTTAAACCTTTCAAAATCACTCCAAGACATGCCCCATCCTAACCTATTAACCTAAGCTCAGCTTTAGGATTAAGTTTCAATTTTAGACGTCCCATTTGAGAGAATTCGATTTTGTTTTATTTTTTTTTTTTGAGTGGAAATGAATGTTTGCTGATGTGTAATTTCATCTTAGCATGCAAATTTTTTCTACCTTGCTATTTTGAGACTTGCTTGCAAGTATTACCAAATATATGAGGAAGGTATTGCAAGTACAAATTGTTGTTTCTTATTCTACAAAGTAGGTTCTAAGAAGACCATTTAAAAAGGTTATGTGTGATCGAGGTACTCTACAATTTTTAAAAATATAACATCAAACAATTGACTAAGACACTTCGCAGTCTTCCAAATTCGTACTCTCTTTGATTCAACATATTGTTTCTCCAATGGTAGAACAATTTCTTTCTATTATGTACTTCTATGGTGAAATGCTGCTGATTCTTCACATAGGTTCAAGGACAAATTCATTTATCAGTTGGTGCAGTCCTGTCCTTTGGGCTTGCTCATTACGCATCATCAGAATTTGAGTTAATTGCAGAAGAGCTTCTTATGAGCAATTCTGTTATTAAGGCAAGTAGCAGCTCCTTTTGTTTCCCATCTATCGAGAGCTATATTTTAGCCAAAAATTATTCTTTGGACTTTCTCAAGAGTGTGTTTCATATGTAATTAACATTTTCAACACAGTACTGATTCATGAAGTTTTTGTTTCCCTTTTAACTCGTGGTGGCATGACTAGCCATGGCACTATATCTTGGACACATGACAAAAATCAAGCCAATCTTTCCTGTTTGTTATGGGGTATTTGGCAGAAGAGAAATAGTAGAATCTTTTGTGGGATTGAGAGGGAACCTTTCTCTTGGGCGCCTCGCCAACTTTACTGTTTCTTTCTTTCTGTTATTTTCTAAACTAACAGTTTTACTGTTTCTCTCTAGGCATTATAATAAGTTCTTTTTATATTATTTCTTAGGTCATAATTCTTTTTAAACTAGAGACCCTTCCTCTAGGGTGCTCCTTTCGTGGGATTTTGTTTATTTTATTATTTTTTATGCCCTTATATTCCAACTTGTAAGTTATTGCAGTCCTGCAAAAGTTTCTTCCTTGGGCCTGTTTGTTCAATTAAGGCACGTTGAAAAACGACTTTTTGGGGCATTTTGATGTTTTTAATCCTTTTCTTCGGTCCCCATTACTACTTCAATAGGCTAAAAAATTTCATATTTTCTTTGTTTTTGATTGGTTGGTACTTGGTTATTGTGGATTACAGAGCCTGAGTTATGTTTGTCAATTATTTTTCTTTTTCCGTTAATAAACAGATGTATATATCATTTTTTTTAAATGTGAAAAACTGAGCTATCATTGATATGGCAGATATAAGAGCATGCACATTTTTTTTATTGTTTGTTTGTACCAAGTGTTGAATATCTACTTGATAATATTAAGGTTGGGCCTAAGTCATTCCTCCGAGGACCTTTGGACGATTCAAAAGCCAATAAGACGTAAGTTTTCTAATGTATGATCGTAGATCAGTAATTTCGTTTTTGTTTCCCTAACTTTTCTATAAATTTGCAGGAGACCACGACCCTACTGTGAACTTTCTGATTGTCCAGCGGAACTACTTCACCCCCCTGAAGATTGTAACGTGAATTCCACATTGCCCTTCACTCTTCAGGTGTCTCATTAGCCAGATTGACCACTAAGTAGTTATCTTGTGTGGAGAATATTATTTTTGAGATTTATTCATTACACTGAACATGCTTTTCATTGTCTAGTCTGATATTTGTTTGCTTGGCTTGTTTCTGCAGATTTGTCGAGTTGAAGATCTAACGGTTGAAGGCACCATAACTGGATCTGTTATTCACTTTCACTGGGTCAGGGATATATTTGTTTACCTATCTGGTGCAATTAGTGCTTCTGGTCTTGGTATGCATTTTTCTTCCAATTATTTTGTTCTTACCTGGCAGGTTCAAGTAGTTTTAATGAAAAATTGTTAATATATCGCAGCTTCATCTTAACTGAAGGTTGAACATATTACATTACACTATTGTAGATAAATTAAAGTTTTCTGTTGTGCTTCGGCTATGTATCGTTTTTCTTCTTCTTCTTTTTTTCCATTTAAATTGGTATCTTAGTTTTATCTTGCATCCTTTGTGGGTTTTCGTTATTAAGAACTTTTCATCCTTTTCTGCAATTTCAATACTTCAAACAGCTTTGTTATTCATATAAATGGTTTATTTGGATATTGTTTGTAGATAATTGAAGTGATATCGGGTTGAAAGCTAAGCGATTGTGTAGAAATGGTCAAGCGACCGTTGAAAATTGAAGACTGAGAAGGCATTTAGGATTTTTAATTATTTAATTCTTGTATTAGAATCTTTTTTCATGTACTATTGTAGAATGTATATATAAACATAATATTAATATTTTATTTTGTGTATTCAAATGTAAAAGACAAATGTTATAGTTTCTAACATAATATGAATTTCATTGATTTGTTGGCGTGTGAAAAACATATTTATCTACATTGACCCAATGTCGGTCTATAGGACAATAATGTAACAATTAAATAAAAACAAATTTGTAAAAATGAATAAAAAAACTAGGCTTTAATGTCGGTTTTAAACCGACATATCAGAGTTCAACCGACATTAAAGAGCTTCAATAACACTATCAAAGATGTCGGTTGAAAACTGACAAACCGACATTAAAGAGGGCTTTAATGTCGTTTTTAAACCGACATTAAAGCCCAACCGACATTAAAGGGCTTCAATAACACCATCAAAGATGTCGGTTGAAAACTGACATTAAAGGCCTTTAATGTCGTTTTTAAACCGACATTAAAGAGGCCTTTAATGTCGTTTTTAAACCGACATTTAAGACCTTTAATAACGCTCACAAAGATGTCGGTTGCTAAGTGACATTAAAGGCCTTTAATGTCGGTTTTAAACCGACATTAAAGGCCAAAATTCTTGTAGTGATTTTGTCAATCTCAACTAGCACTCTCATCAAACGCTACATCTCTTCTTGTGAGAATTTTGCCATTAAGATGGTTATATAATCAATATGCTTTGGATTAAGTACAATAACCAACAAAAATGCATTTTCGAATTTTTTATCAAGTTTTTTACGAGCTTGAGAAGGTACCAAAGCATAAGAAATACAACTAAAAACTCTCAAATGACTTACATTGGGTTTTTTGCCATACCAAGCTTCAAATGGAGTTTTATTCATGACAGCCTTTGTTGGTGAGATGTTCAGTAGGTAG ATGGTTTCGGGTCGGGTAGATGGTTTCGGCTTCGGATCTGATGAAAGGCGCGGGTCTGTGAAGGCGCTTGGATCGGGTCGGTGGTACAGACGGCTGGAGACACGCTCGGCTGTGGGACGGGTCAGATCTGATGGTTTTGGGTCAGATCTGATGGTTTCGGCTGAAGACACGTTGGGATCGGACGGGTCAGCGACGGCTGGAGACAGGCTTCACGGAGATTCAAGCGACGTCGGAGGTCGGAGACTGGAGTGTGAAGCTTCGACAGATGTGGTGGTAGGCTCGGGATCGACTGGGTTTCACGGAGGCCGGCTCGCACGCGCAAAGGGAAAACAGGTGCAGCTTCGGGTTCGCGGAGATCTGAAAGGCGACTGGGTTTCACGGAGGCGGGCGTCGGATGGGTTGCGGCGACGGCGGCGGCGGTTTGAACAGTTAAAATTTTTCTTCGTCTGCGGGCACTTCATTTCCTCTCCTCTTCGACTCTTCTTCACCTCTTCGTCTGGCGTCGGCATCATCTCTTTGTCTTCATCACCTCGCCACTCCATCGTCTTCCTCACTTCGCCATTCCATCGTCTTCATCACTTCGCCATTCCTCGTAACCTTCAAGATCCTCAGATTCTCAGGATGACTTCATTCTCGGAGCGAAATCTTCTCTCTGTCGCTTACAAGAACGTGATTGGCTCACTTCGAGCTGCTTGGCGGATTGTTTCTTCCATCGAGCAAAAGGAGGAGAGTCGTAAGAATGAAGAGCATGTTGTTCTTGTTAAGGATTATAGATCAAAGGTTGAGTCTGAGCTTTCCGATGTCTGCGCGAGTATTTTGCAGCTTTTGGACTCGAATCTTATTCCATCTGCCTCTGCTAGTGAGTCTAAGGTCTTCTACTTGAAGATGAAAGGGGATTACCATAGGTATTTGGCGGAGTTTAAGGACATCACAAAAGCAAGAAAGATACCGAAGCGTGCTTTGCCTATTATTTGCTTCAGAGAAGTCAGCCCCCCATTGTCGGTTGCTTCAAACACTTCCATTATAGATTCAGGGGGGAAGAGTTATGGCTGTTCTGAAAATGCGGGTGCTGCAGGAACGTATTACGATGCTGTGCCTCGAAGCCTTATTGTTAGCAATGACAACTTATCTACTCAGACGGATACACTTCTTCTAACATTTCCCAAGCAGCCTCTTTGGACAAATGTGTACATTCAAAACCATGCTAAGGCTTTGGTTCCTTTGTTTTGGAGCCGTGTACAGGTTCAAGGACAAATTCATTTATCAGTTGGTGCAGTCCTGTCCTTTGGGCTTGCTCATTACGCATCATCAGAATTTGAGTTAATTGCAGAAGAGCTTCTTATGAGCAATTCTGTTATTAAGGCAAGTAGCAGCTCCTTTTGTTTCCCATCTATCGAGAGCTATATTTTAGCCAAAAATTATTCTTTGGACTTTCTCAAGAGTGTGTTTCATATGAGACCACGACCCTACTGTGAACTTTCTGATTGTCCAGCGGAACTACTTCACCCCCCTGAAGATTGTAACGTGAATTCCACATTGCCCTTCACTCTTCAGATTTGTCGAGTTGAAGATCTAACGGTTGAAGGCACCATAACTGGATCTGTTATTCACTTTCACTGGGTCAGGGATATATTTGTTTACCTATCTGGTGCAATTAGTGCTTCTGGTCTTGCCTTTGTTGGTGAGATGTTCAGTAGGTAG ATGGTTTCGGGTCGGGTAGATGGTTTCGGCTTCGGATCTGATGAAAGGCGCGGGTCTGTGAAGGCGCTTGGATCGGGTCGGTGGTACAGACGGCTGGAGACACGCTCGGCTGTGGGACGGGTCAGATCTGATGGTTTTGGGTCAGATCTGATGGTTTCGGCTGAAGACACGTTGGGATCGGACGGGTCAGCGACGGCTGGAGACAGGCTTCACGGAGATTCAAGCGACGTCGGAGGTCGGAGACTGGAGTGTGAAGCTTCGACAGATGTGGTGGTAGGCTCGGGATCGACTGGGTTTCACGGAGGCCGGCTCGCACGCGCAAAGGGAAAACAGGTGCAGCTTCGGGTTCGCGGAGATCTGAAAGGCGACTGGGTTTCACGGAGGCGGGCGTCGGATGGGTTGCGGCGACGGCGGCGGCGGTTTGAACAGTTAAAATTTTTCTTCGTCTGCGGGCACTTCATTTCCTCTCCTCTTCGACTCTTCTTCACCTCTTCGTCTGGCGTCGGCATCATCTCTTTGTCTTCATCACCTCGCCACTCCATCGTCTTCCTCACTTCGCCATTCCATCGTCTTCATCACTTCGCCATTCCTCGTAACCTTCAAGATCCTCAGATTCTCAGGATGACTTCATTCTCGGAGCGAAATCTTCTCTCTGTCGCTTACAAGAACGTGATTGGCTCACTTCGAGCTGCTTGGCGGATTGTTTCTTCCATCGAGCAAAAGGAGGAGAGTCGTAAGAATGAAGAGCATGTTGTTCTTGTTAAGGATTATAGATCAAAGGTTGAGTCTGAGCTTTCCGATGTCTGCGCGAGTATTTTGCAGCTTTTGGACTCGAATCTTATTCCATCTGCCTCTGCTAGTGAGTCTAAGGTCTTCTACTTGAAGATGAAAGGGGATTACCATAGGTATTTGGCGGAGTTTAAGGACATCACAAAAGCAAGAAAGATACCGAAGCGTGCTTTGCCTATTATTTGCTTCAGAGAAGTCAGCCCCCCATTGTCGGTTGCTTCAAACACTTCCATTATAGATTCAGGGGGGAAGAGTTATGGCTGTTCTGAAAATGCGGGTGCTGCAGGAACGTATTACGATGCTGTGCCTCGAAGCCTTATTGTTAGCAATGACAACTTATCTACTCAGACGGATACACTTCTTCTAACATTTCCCAAGCAGCCTCTTTGGACAAATGTGTACATTCAAAACCATGCTAAGGCTTTGGTTCCTTTGTTTTGGAGCCGTGTACAGGTTCAAGGACAAATTCATTTATCAGTTGGTGCAGTCCTGTCCTTTGGGCTTGCTCATTACGCATCATCAGAATTTGAGTTAATTGCAGAAGAGCTTCTTATGAGCAATTCTGTTATTAAGGCAAGTAGCAGCTCCTTTTGTTTCCCATCTATCGAGAGCTATATTTTAGCCAAAAATTATTCTTTGGACTTTCTCAAGAGTGTGTTTCATATGAGACCACGACCCTACTGTGAACTTTCTGATTGTCCAGCGGAACTACTTCACCCCCCTGAAGATTGTAACGTGAATTCCACATTGCCCTTCACTCTTCAGATTTGTCGAGTTGAAGATCTAACGGTTGAAGGCACCATAACTGGATCTGTTATTCACTTTCACTGGGTCAGGGATATATTTGTTTACCTATCTGGTGCAATTAGTGCTTCTGGTCTTGCCTTTGTTGGTGAGATGTTCAGTAGGTAG MVSGRVDGFGFGSDERRGSVKALGSGRWYRRLETRSAVGRVRSDGFGSDLMVSAEDTLGSDGSATAGDRLHGDSSDVGGRRLECEASTDVVVGSGSTGFHGGRLARAKGKQVQLRVRGDLKGDWVSRRRASDGLRRRRRRFEQLKFFFVCGHFISSPLRLFFTSSSGVGIISLSSSPRHSIVFLTSPFHRLHHFAIPRNLQDPQILRMTSFSERNLLSVAYKNVIGSLRAAWRIVSSIEQKEESRKNEEHVVLVKDYRSKVESELSDVCASILQLLDSNLIPSASASESKVFYLKMKGDYHRYLAEFKDITKARKIPKRALPIICFREVSPPLSVASNTSIIDSGGKSYGCSENAGAAGTYYDAVPRSLIVSNDNLSTQTDTLLLTFPKQPLWTNVYIQNHAKALVPLFWSRVQVQGQIHLSVGAVLSFGLAHYASSEFELIAEELLMSNSVIKASSSSFCFPSIESYILAKNYSLDFLKSVFHMRPRPYCELSDCPAELLHPPEDCNVNSTLPFTLQICRVEDLTVEGTITGSVIHFHWVRDIFVYLSGAISASGLAFVGEMFSR Homology
BLAST of MELO.jh101942.1 vs. NCBI nr
Match: KAA0055986.1 (GMP synthase [Cucumis melo var. makuwa]) HSP 1 Score: 672 bits (1735), Expect = 5.66e-238 Identity = 342/354 (96.61%), Postives = 344/354 (97.18%), Query Frame = 0
BLAST of MELO.jh101942.1 vs. NCBI nr
Match: KAA0060837.1 (14-3-3-like protein B [Cucumis melo var. makuwa]) HSP 1 Score: 459 bits (1180), Expect = 5.67e-155 Identity = 239/247 (96.76%), Postives = 242/247 (97.98%), Query Frame = 0
BLAST of MELO.jh101942.1 vs. NCBI nr
Match: TYK10764.1 (uncharacterized protein E5676_scaffold332G00770 [Cucumis melo var. makuwa]) HSP 1 Score: 338 bits (866), Expect = 1.61e-98 Identity = 192/297 (64.65%), Postives = 196/297 (65.99%), Query Frame = 0
BLAST of MELO.jh101942.1 vs. NCBI nr
Match: KGN60585.2 (hypothetical protein Csa_019418 [Cucumis sativus]) HSP 1 Score: 337 bits (864), Expect = 2.70e-98 Identity = 191/297 (64.31%), Postives = 197/297 (66.33%), Query Frame = 0
BLAST of MELO.jh101942.1 vs. NCBI nr
Match: XP_011648618.2 (LOW QUALITY PROTEIN: uncharacterized protein LOC101212069 [Cucumis sativus]) HSP 1 Score: 337 bits (864), Expect = 3.09e-98 Identity = 191/297 (64.31%), Postives = 197/297 (66.33%), Query Frame = 0
BLAST of MELO.jh101942.1 vs. ExPASy Swiss-Prot
Match: P48348 (14-3-3-like protein GF14 kappa OS=Arabidopsis thaliana OX=3702 GN=GRF8 PE=1 SV=2) HSP 1 Score: 169.5 bits (428), Expect = 1.1e-40 Identity = 87/96 (90.62%), Postives = 93/96 (96.88%), Query Frame = 0
BLAST of MELO.jh101942.1 vs. ExPASy Swiss-Prot
Match: P48349 (14-3-3-like protein GF14 lambda OS=Arabidopsis thaliana OX=3702 GN=GRF6 PE=1 SV=1) HSP 1 Score: 168.7 bits (426), Expect = 1.9e-40 Identity = 87/96 (90.62%), Postives = 92/96 (95.83%), Query Frame = 0
BLAST of MELO.jh101942.1 vs. ExPASy Swiss-Prot
Match: P93206 (14-3-3 protein 1 OS=Solanum lycopersicum OX=4081 GN=TFT1 PE=3 SV=2) HSP 1 Score: 167.9 bits (424), Expect = 3.2e-40 Identity = 87/96 (90.62%), Postives = 91/96 (94.79%), Query Frame = 0
BLAST of MELO.jh101942.1 vs. ExPASy Swiss-Prot
Match: O49996 (14-3-3-like protein D OS=Nicotiana tabacum OX=4097 PE=2 SV=1) HSP 1 Score: 166.8 bits (421), Expect = 7.2e-40 Identity = 104/198 (52.53%), Postives = 129/198 (65.15%), Query Frame = 0
BLAST of MELO.jh101942.1 vs. ExPASy Swiss-Prot
Match: Q96451 (14-3-3-like protein B (Fragment) OS=Glycine max OX=3847 GN=GF14B PE=2 SV=1) HSP 1 Score: 166.0 bits (419), Expect = 1.2e-39 Identity = 85/96 (88.54%), Postives = 91/96 (94.79%), Query Frame = 0
BLAST of MELO.jh101942.1 vs. ExPASy TrEMBL
Match: A0A5A7UNW5 (GMP synthase OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold319G001280 PE=3 SV=1) HSP 1 Score: 672 bits (1735), Expect = 2.74e-238 Identity = 342/354 (96.61%), Postives = 344/354 (97.18%), Query Frame = 0
BLAST of MELO.jh101942.1 vs. ExPASy TrEMBL
Match: A0A5A7V1W6 (14-3-3-like protein B OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold137G00660 PE=3 SV=1) HSP 1 Score: 459 bits (1180), Expect = 2.74e-155 Identity = 239/247 (96.76%), Postives = 242/247 (97.98%), Query Frame = 0
BLAST of MELO.jh101942.1 vs. ExPASy TrEMBL
Match: A0A5D3CHT8 (Uncharacterized protein OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold332G00770 PE=4 SV=1) HSP 1 Score: 338 bits (866), Expect = 7.79e-99 Identity = 192/297 (64.65%), Postives = 196/297 (65.99%), Query Frame = 0
BLAST of MELO.jh101942.1 vs. ExPASy TrEMBL
Match: A0A0A0LIP4 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_2G000650 PE=4 SV=1) HSP 1 Score: 337 bits (864), Expect = 1.49e-98 Identity = 191/297 (64.31%), Postives = 197/297 (66.33%), Query Frame = 0
BLAST of MELO.jh101942.1 vs. ExPASy TrEMBL
Match: A0A5A7V766 (Uncharacterized protein OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold41G00700 PE=4 SV=1) HSP 1 Score: 334 bits (857), Expect = 1.40e-97 Identity = 191/300 (63.67%), Postives = 199/300 (66.33%), Query Frame = 0
BLAST of MELO.jh101942.1 vs. TAIR 10
Match: AT4G32920.1 (glycine-rich protein ) HSP 1 Score: 219.5 bits (558), Expect = 6.6e-57 Identity = 134/298 (44.97%), Postives = 159/298 (53.36%), Query Frame = 0
BLAST of MELO.jh101942.1 vs. TAIR 10
Match: AT4G32920.2 (glycine-rich protein ) HSP 1 Score: 219.5 bits (558), Expect = 6.6e-57 Identity = 134/298 (44.97%), Postives = 159/298 (53.36%), Query Frame = 0
BLAST of MELO.jh101942.1 vs. TAIR 10
Match: AT4G32920.3 (glycine-rich protein ) HSP 1 Score: 219.5 bits (558), Expect = 6.6e-57 Identity = 134/298 (44.97%), Postives = 159/298 (53.36%), Query Frame = 0
BLAST of MELO.jh101942.1 vs. TAIR 10
Match: AT5G11700.1 (LOCATED IN: vacuole; EXPRESSED IN: 24 plant structures; EXPRESSED DURING: 13 growth stages; BEST Arabidopsis thaliana protein match is: glycine-rich protein (TAIR:AT4G32920.3); Has 1807 Blast hits to 1807 proteins in 277 species: Archae - 0; Bacteria - 0; Metazoa - 736; Fungi - 347; Plants - 385; Viruses - 0; Other Eukaryotes - 339 (source: NCBI BLink). ) HSP 1 Score: 218.8 bits (556), Expect = 1.1e-56 Identity = 134/291 (46.05%), Postives = 160/291 (54.98%), Query Frame = 0
BLAST of MELO.jh101942.1 vs. TAIR 10
Match: AT5G11700.2 (BEST Arabidopsis thaliana protein match is: glycine-rich protein (TAIR:AT4G32920.3); Has 8203 Blast hits to 3102 proteins in 389 species: Archae - 3; Bacteria - 5624; Metazoa - 852; Fungi - 139; Plants - 704; Viruses - 77; Other Eukaryotes - 804 (source: NCBI BLink). ) HSP 1 Score: 218.8 bits (556), Expect = 1.1e-56 Identity = 134/291 (46.05%), Postives = 160/291 (54.98%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Melon (Harukei-3) v1.41
Date Performed: 2021-10-25
Relationships
The following mRNA feature(s) are a part of this gene:
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