IVF0000391 (gene) Melon (IVF77) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: polypeptideexonCDS Hold the cursor over a type above to highlight its positions in the sequence below.ATGCTTTTGGGAGTTCGATTATACAATATATGGCGATGGCAGACATCTCCAGTACTCTCTACTTCTAATGCTTTCTACTTCAATAGCCACTTCTCAACGTTTTCTCTTCACAAGGTATATTGCCGATTCTTCCAATATGCTGTAGTTGAATAGTATACTCGTGTTAATGTCACCACCTCAATCCAAAATTAGGTGCTAATCATTCTGCACTTACCAGGAACTATATTCCTTGGCTGAGAGTAACGATGACACATTTCTACCATGGTTGGAACAAAAAGCAGAGACGAAGATCTCGTCAGTGCTTTCTATTGGGAAATCTTCCATTGGAAGGTATTCACACTTCTTTGACTTCCGCGGCTCTGCCATTACATTCTTACAAGGGTTGAACAATTTTAATCAATATCATACGTTTTCTAACTGTAGGTTTCTGTTGCTTCTGAGACTATACGGGTGGGAGATTGTATTTTAAAGGTTCCTTTCAATGTGGTATAGTGTAAACAACTTCTTGATGAATTTTATAGTACTTAGGAGAATGTATTTAAAATATTGTTGTAAGATATTTTTTTCTTTGCAGCAAATTTCACCTGATATTCTTCCTCTACCCATTAGAGATCTTTTAGGCAATGAGATTGGAAATGTTGCCAAGCTCGCTGTTGTAATTCTTCTTGAACAGAAACTGGGCCTGGTAAGGACTTGGTTTGGTTGGTTATTTCGAAGATGAGAGCTATATTTGCATTCATCTGTGGTATTAACTCGAACAAGAAAAACCAATTGAGATTTTCAATTTTGATGAATGAGTTATTTTCTTCATGCTAGGGTTCTGAGTGGGCGCCTTACATCATTCGACTTCCTCAACCATCGGAAATGCATAACACAGTTAGTATTCTGCCTTCTCCCGTTATGTTGGAAACAATATCACGTTGAAGGAGCTGATATATGGAAACGACATACGTGTTATATCAGCTTGGCAAATATGACCAACCATATATAGGTTGAACATTTTTTGTGTGTGCGCGCGCGTTTCTAATAATCCTAAACCAAACAAGAATTACTTATGGAATAAATTCCATACATAATCCTGCATTCTCAATATGTGGTCGGACTATAAATTATGTGGATAAAGTTTTTGCAGTTTTCCATGGATGTTCGCCGAGAAACTACATGCTATGAAGTTATAGTAATTCTCTCTGTTTTGTTTGATCTTCCTTATCTTTCTCTTATTAATATATATGTGGATGTGTATGCCTGTCCGTGTATAGCAAGCACACCAAGTCATTAATATTTTATTCTACTGCATGTCATAAAAGGTTGCATAACATCTCACCAATTCTTTTTACCAAAAACAAGGAAAAAAGCTCATCAGCTAGTTTCATCATGGCTTTTTTTGGCAGCAATTTGGTCGTAGGGGTCATTATTTTTCTTCTGTTTCTTTCATATTTGTTTTGTTTCCCCTGAATCATTCTTTATTTTTCTTCATCTGAATCAATTTCTGTTTTATTAATGAGCTGCTGAAATTTCTAAGCTTTCAATAATACGATGTTCGACACTAATTTGGAAAAGCTCACAGAGAACATGTTGGCTCTGACTCTTGCCCTTTTGAGTCTTTGCAGATATTTTGGAAAGAAAGTGAGTTGGAGATGATTCGTAAAAGCTCTTTATATGAGGAATCACTTAATCAAAGATCGCAAATCAAAAGGGAATTTCGGGCAATCAGGAAAGTAAGTGCTTTGCTTTAACTAAATAATTCTTTTTATAGCTTGACATTAGAGGGTGCCATGCTGATTCTATATTAGTATCTTCATATGCAAAGTTTCTATTCCCTAGTTCAATGATTAAGTTTTAATTGAACTCTGAACTTGATCGACTTTTTAATATGTCCCGATAAAATCAGGTATATTACATCATCAAGTTAAAAAATCTTTATTTTGTAGTATGAACTTTTTTGGTCAATCAGAATTGCAAAATGGAATCCTAGCTTTGCATCTAGGTATTATATGAGTTGTGCCATTCTTTGTTGTTAGCACTAATGTTTTTTTATGTTTGTATATATTATATATATTGTAAATATTTACAAATTACATACAAAATAGCATTTTATTAGACCATGTTTATCAATTTGTTTCAATCTATTTTCGACTTGAGGTTACTTTTGAAGTTTGATTGATTTTCCTAATGCTATGCATACATCATATGATTTCAGGCTCTGGAAGCCTTTCCTGAAATTATTGATAGGATCAGTTGCGATGATTTCATGCATGCATATGCCCTTGGTAGGTAAATTCTGTCAAGACGGTTGGTATGTCAGTTTTGATGTTTTCCTCTTCTGACGTGCATATGTAGTGAAGCCAAACAGTTTGAGTTGCTATCAGTTTGCAATTCCTTGAAACTTTTTGTTATACATTTTCATTACTTTACTATTGTTTGACAGTTACTTCTAGAGCATGGAGAAGCACCGAGGGTGTCTCTCTGGTATTCTTTTATTAGACGAAGTGATATTTCTTTTCTATTGTACACCAAAAGCTTTGATTTGGTTGCATACATTTTTTGTGAGCTCGAGCAGATTTCTTAGTACAAAAGAAGCTTTGCTTTAGTTATATTTGTATAATTTAATATTTTTGACAGATTCCATTTGCAGATTTTTTAAATCACAATAGTGCTTCAGAAGCAATGGTACTAAATGATGATGACAAACAGCTCTCTGAGGTCCCCTCCTCTCTCTCTGGTCATAAACCCTATTTTCTGGAAGTTAACATAATGTTACTTGAAATCTACTCCATCTATGGAAGTTCTTTTGCTGTCCATCATGATATTTTCCTTACGCTCTTAGTTGACCTGGCATTCTCTTGACATGGATGTTCTAGCTTCATAGTTACCTCTGTCTTCAAACCAACAATTCCTTTTGTAATTGATATCATTAGTTTGTTTTATTGCTTATTTACTATTATACGTTTTTCTCCTCAACTAAGCTTTCTTTTTTGACTTTCAAGTTTCTGAATATATATGTCTAGGTTGTTGCTGATCGTGATTATGCCCCTGGTGAACATGTAAGTTTTCATTTTGATTTTTAACTTCAACTAAATATACAAGGTTCAGGTGGAGTGATTTATTTATTCGTTCACCTTCAGTTTTGCTCTATCAACATAGCAAACAAACTTCCCTTCAGTGGCTCTCCATGTTTTTTGGCTATTATCTTTAAGTTATGGTTATATGCTTATATTTCATTAATTTAAAAAAAAAAAACTATAATTTTTTCTGAACCATGGATGTGTACAAACTACTTGTATGATATGAAGTCTTAACATATTTTCAATCTTTTTTCAACCTTTGATACTTGTAGAAGCTTACCATTGTTAATTACATGATCTGTGAAATCTACTTGCACGGGAGAAGTTGGAATTGAGATTTTGTTAAGCTTTAAGGTCCCTCTTACTATTATATCCAGCACACCACACACCACACACCACAGAACAATAAATCAGCCGCACACTACAGTATAAGAGGAGAAGAGATATGATATATATATATCAGCCAAATAAGAGGGCTGCTCTCTCCCCATTGAACAGCACTGTTCATACAAAAGTACCAAAATATTCAGATCCCCAACCCTAGCCCAAAACACCCAGATATATACCCCTCCTGCTACTGCCACGTATTGTTAGGACCACTGGCAATCCTAACAACCATGTTTTCTATGTTGAAATATCCTTCTTACCCTTCATTTGATAAACTTCGGTGATTGGAGGCCTAGCAATACTCCCATGGAGAAGAGTCACCTTGTCCTCAAGGTGGAAATCAGGATATTGGTTTGCGAGCATCGCGTAGGATTCCCATGTTGCTTCATGACTTGGTTGATCTTTCCACTGGACTAGATATTCCCAATCTCTTTCGGCATCATTCCAACGAAATTGTGTCACATTTTCGGGTTCCAAAACTAACTCCATTTGATCATTGAGTGCTGCTATGTCTGGCTGGATTTGATGTTTGTCACCCATTGCCTTTTTAAGTTTCGAAACATGGAAAACTTGGTGTATTTTGGCAGTCTCCGGTAGGTCCAGCAGGTAGGCTACCTCTCCCACTCTACCCAACACCATATATGGCCCAAAGTACCTAGGAGATAACTTTTCACAACGCCTCTTTGCTATCGACTGCCGTCTATAGGGCTATAATTTCAAATATACCCAATCTACAATGTCAAACACCACGTCCCGACGGTGTACATCGGCAAACTTCTTCATTTGCTCTTGGGTATGTTTGTCTCTTCAAGGCCTCTAACGTTTCATCCCGCGATTGCAATTGATAATCCACCGAATCATTTGGCGTTGTGCCCACTTGGCCATAAGAAATCATAGGAGGAGGGGGCTGCCCATATATTACAGCATAGGGGGTAGTCTTGATCGAAGCTTGATAATTGGTGTTGTACCAATACTCGGCCCACACAATCTTATCGCTCCATGTCTTCGGTTTCTCTTGACACAAACATCTCAAATATAGTTCCAAACATTTGCTAACCACCTCCATCTGCCTGTCCGTTTGGGGTGATACGCCATGCTTCTCTTCAATTGGGTGCCTTGCAAACGAAATAATTCTTTCCAAAAGTGACTTTAAAAACATTTGGTCACGATCGACACTATCGAACGGGGTATCCTTGGAGGCGCACCACCTCCTTAATGAACACCATGGCTACCGTTTTGGCCGAGAACGGGTGGCCCAAGGTGATGAAATGAGCATATTTGCTTAGTCGATCCACTACCACTAATACAGTGTCAAATCTCTTGGACCGTGGTAATCCCTCTACAAAATCCACGGATATATCCTCCCAAATCCAGTTGGGAATAGGAAGGGGCTGTAGTAGTTTGGCCGGTGATAACGCTTGGACCTTATTCTGTTGGCACTCATGACATTGCTCCACATATAATTTAACATCATTCTTCATTCCTTCCCAAAACAACTTCGTAGCGATCCTTTTATAGGTGCATAATTGCCTGAATGTCCCCTGATGACTGAGTTATGGAAGGTGTGTAAGATGGTCGGAATTAAACTCGATGTCCTAGGGAGGACTAATCTGCCTCTATAAAACAGCCTGCCTTGTCGAATTGTATAACGAGGAATACAATCGGGATCCACCAATAATTGGTCAAAGATTGCCCTTAACTTTGCATCCTCTTGAACCTCCTTTTCAACCACCACGATATCGAGTATGGATAGTATTGAAATCACGTTCCGCTGGGCCTCAATTGGAATGCATGATAAAGCATCTGCCGCTTTGTTCTCCAGTCCAGCCCTATAAAAGATCTCGAAGTCGAATCCCATTAACTTCATTAGCCATTTTTGGACACCCGGTATCAGCTCTCTTTGTTCCAGAATATGCCTCAAAGCTTTCTGATCAGTATAACACCACAAAACGATGCCCCAACAAATAATGCCGCCATTTTTCCACCGCTAAGACAATGACCATTAGCTCTCTCTCGCGCGCTAATTCCGATAGTTTTTGACTAAAATAAGCAATCGATCTCTTGTTTTGTGACAACACGGCTCCTAATCCGAACTTCGATGCATTTGTCTCTATCTCAAACAGCTGCTAGAAATCCAGTAAAGCTAGGACCGGTAGTGTAACCATGGCCTTCTTTAGGGTCTTGAATGCTTTCATGGCTTCCTCTAATCAATGGAAATTATTTTTCTTTGTCAACCGTGTGAGGGGTGTAGCAATGGCACCATAATTTGCTACAAAACGGCGATATTATCCAGTCAACCCCAAAAACCCTCTAAGCTCTCTTACATTCTTCAGCACTGGCCATTCGAACATGGCTTTAATCTTGTCTTGGTCCGCCTCTACTCCCTTGGCTGAGACCCAATGGTCCCAAGTATTCAATTCGATCTTTCGCAAAGTGGCATTTCTTCCGGTTGGCAAAAAGGTAATGTTTCTCAATAAGTGGAACACCACTATAAGGTGCGCTAAATGAGTCTCTACATCCTTGTTGTACACAAGTATATCGTCAAAAAATACCAGCAAAAATTTACATAAATAAGGTCGAAAAACCTGATTCATAAGGGCTTGGAATGTCGCGGGTGCGTTGGTAAGACCAAACGGCATGACTAGAAACTCGTAGTCCCCCTCGCGTGTTCGAAATGCTGTTTTCTTCACATCCTCATCACGTACCCTGATTTGATGGTACCCGAATTTTAAATCTATTTTGGAGAAGATACTTGCTTCGTTCAGCTCATCCAACAGCTCATCAATCATGGGAATTGGGAATTTATCGGGCATCGTTGCTCTATTCAATGCTCTATAATCAATGTAGAATCTCCATCCCCTGTCCTTCTTCTTCACTAGGATCAAGGGACTAGAGAAGGGGCTGACGCTGGGCCGAATAATACTCGAATTGAGTATCTCATTCACTAGCTTCTCAATTTCATTTTTCTGGGCATGTGGGTAACGGTACGGCCTCACATTGATGGGGTCTGTGCCCTCCTTCAGTTGAATTCGGTGGTCAACCTGCCTCATTGGTGGTAATTTCGCCGGCATGTTAAATATATCTATAATTGCAGTTCGAGCTGCTCGAATTTCGGCCGCAATTCCTCTACTGATTCTTTAATTATAAGTTGTCTGTCCGTTTTTGAGATGCCCATGGCTCTGAAATTTATTAGAAAGCCCTGATCCTCCAGGTGCCATTGCTTCACCAACATTTTCAGAGATACTTCCATCCTAGTCAACGATGGATCCTCTTTTAAGATTACTTTGGTGTCTCCGACCATGAATGTCATCGCTAATTCCTTCTAGTCAATGGTCATTGCTCCTTGCTTTCGAAGCCACTGCATACCAAGAACCAGGTCCAGATTACCCAACTCCAGTGGTAGAAAATCATCCACTATCGTTAGCACCGAAGCCCCACTGTGACCCCTTGCACATTCCTCTCCCCTGAACAGCCTTTTCGGAGCCCATAATAAGCCCATAGTTGGTCGTCTCTGCTATAGGGATGTTCAGTTCTTCCACCAATTTCAATGAGATGAAATTGTGGGTGGCTCCACAGTCGATCATGATCATAATCTCTCGATCTTCCACCATACCTTTGACCTTAAACGTGCCTGGGGCCGTGAGACCCACCACCGAATTCAAAGATAACTCCACGACGGGACTTACTTCTACCATGCCTCCCTTGTTCATTATATCTTCCATCTCCGCATCGTCAAGGTTATCGGATACCACACACAGTCGAAGCTCCTTATTTTTGCAGCGATGCGCCTTACTAAATGGTTCGTCACATCTGTAACACAAACCTTTATCTCTTCTCGCCTGAAGCTTCGAATCAGTCCATCGCTGAAAGGGTTGTTCGCGTCGGCTTCCTCCTCCCGTGGCATTAGGTTGAAACGCATTTGATTTGGTGGGGGGAAACTTTTTCGATGATTGTTACCATTTTTGTGGCCGGGCCTTCCGAATTTTTTGGTGTGATTTTCTGGGTCGTTTTTGTCTCTTTTAGGTACGGGGTTGGGCTGCTTTTAGCCGCCTCAATTTTTTCCACTGCTAGTTGGGCTGCCTCCATCATGTCCTCAAGGCCCACGACCCGCATGGAAAACACCTCTGTCCTAATATTGGATCCAGCCCATTGGTAAAAGTTCCCTTCAATACGTCTTTTGCTATCTCCGGCAATGGTGCCAATAGTTCTTCAAACCGCTACAAATATTCCTTCACCGTTCCTTCCTGTTTGATTGCAAGGAATCTCGCGCACGACGTTCTGTGTTCTCTACTCCGAAGCCGATTATACATTCTTTCCTTTAACTCTTTCCATGATTTGAATTGTTTCCGATTTTCTGCCCACCTAAACCAGCTCAAGCCTTTTCCCTCCAAACTCACTACAGCAATCTTCAACTTCTCACGTTCATTCAAGAGATGCATTTGGAAATAATGCTATGCTCTATAGAACTAACCATTCAGGTCTTCCCCATAAAAACGGGCATCTCCAATTTTTTAAACTTGATTCGATCCTGTCCGGCCCCTGTTTCTATGCTCATGGACGTTTCTGCCTCATCCGCTTCCTCTTCGACAACTTCTTCAGTTCGGACCTTCCTCTTTCCCGTGCTTACCCCAGTCAGCTTTGATCCTCCTAGTTGTCTCTGATGGTCTTCGTACATCGCTGTCAACATGGCATGCATTTTTTTTTACATTTTTCTCCAACAACGGCAGCCTCTGGACCTCTTGCTTAATCGCTTCAATCTCAGCTTCTGAAGCAGTTAAATGATCTTCTATCAGTTTTTTGCGTCATTTTCTTCCACCTCCCCAGAGTGTCAACTCGCTATGATACCACTGTTAAGCTTCAAGGTCCCTGTAACTATTATATCCAACACATCACACACAGAACAATAAACCAGCCACACACACTACAGTATAAGAGGAGAAGAGATATGATATATATATATATATATATATATATTTATTTATTTATTTATTCAAAGTAGACAATCAAACCACAAAAGAGTTCTAGAACAATATCAGCCAAATAAGAGGGCTGCTCTTTTCCCAATGAACAGCAGGGTTCATACAAAAATACCAAAATATTCAGATCCCCAACCCTAGCCCAAAACACCCTATTGTTAGGACCAAAATATATACCCCCTCCTTCTACTGCCATGTATTGTTAGGACCATTGACAATTCTAATAACCGTATTGTCTATGTTGAAATATCCTTCTTATTCTTTCTTTGATAAACTTTGGTGATTGGAGGCCTAGCAGATTTTCCATGGATCTACAGATTTCTTCTCTTGAAAGTTTCGATTTGAGCAGTTTCATGGTTTGCATATTGTTTCTACATATGACTCATACATGATATTGTCTCATGTACATGCTTTATTGGTTACTTCTGTGATTATATTGCAATCAATCGCAAGCAATCACAAGCCAATACAATCCATTTTAATTGATGTAATACATTTGATCTTGTTATCCTTAAATTTACTAGGGCTATTCAACAGGTACTAATAAGGTATGGGAAGTATTCAAATGCTACGTTGATGTTGGATTTTGGGTTTACGCTTCCATACAACATTCATGATCAGGTAAGTTATGGCAATTTAGATTGAAGAAAATTATTGAGGCAATGGAGAACTATGGTTATTGTATAGCTGTTCCTCTAAAAAAAAGTTGGAAGTATTATTGTAATTCCACTTGATGATAATTTCAATCAATTAGGACTTCCTTTTAGGATTTAAAGCGGTCTTCTTAGTTTGATCCTAGGAAACACAACACGACACGGCGATACCCCTGATTTCTAAAAAAGTAGGACACAACACGTTAGTGTCACGTTGCATTTTTTTAAATAGTATATGTAATTTGTAGATAAATTAATCATTTATGTTAGAACATAACAATATTTCTTTAAAACATAAATAATGAGTACATTAGTTAGAGTTCATTAAAAAATTTAAATTCCAATACAAATACAAAATCCTAAATAGAAATCACACTTTCATCCAAAACAAAAAGTAAAAACTAAACTAGAAGCTTAAAACAACATTCTCAAACTTCCATAACATCTTCAACCTCACAATTGTTAGCCTCATTTCCACTAGGACTAGTACCATCATCAATAAAAACTACTGCCCCTAAATCTGGTTCATCTAATGATAAATGGACCACTTCAAGCATCCCAACATCTTCAAAAGAATCTCCAGCAATATTCCATAATTTTGTCTGCCCTTGTGAATATTTTGGAGTTCTTCTTGACAAAAAACACAAATTACTACGAACATATACCAGATCATCTGCACATCGAGGTAGCAACTTGTTTCGCCTAGCTGAATTAATAAATGAATATGTGCTCCAATTCCTCTAACAACATGAAGATGAGGAAGGTTGACCCAGTAGCTTAAAAAACGTGAGATGAAAAAACTACAATGAAAAGAAGTAATAAAGGGGGGAGAATGTCTACCCTTTAATGAAAAAGAGGGAAAACCTTAAAATGAGCGGCGGTCTTGTCCTAGCAAGGAATCAAATCGGATCACCAATCTTCTAATCGAAGAGGTGGATATCAGTGTTGTCTGATTGGAGCGGGCGAGCAGTGGTCGTCGGCTGGTCTGATCGGAGGGGAGTGGCTGAATGTCAAAGGATTAGAGAGTGGAGACCTAGGGTTTGTTGATTGATGGGAGAGAGGGCCAAACATGGAAGACTTTTAGAGGGGCTGGGTTTTATTTGTTAAAAAAATATTTTTTTTTTGAAAAGGAGACAAACTTCAATATTATTAATAAACTCAAAGTACAAGAGAGTTATACGTTGTGAGTAATAGAGTAGCTTAGAAATGGGGGAGAGAGAGAGATAGGATCAGTAGGTGTACCTGGACATCTCAACTAGGTCGACACCCCTTTAGCACCCTCATCATATCCAAAATACAAGAACAATACTAAGGACTTGAAAAGACCAAGATAACAACCAAAATAACAATAAGTTTCTTATAGTAGATAGAAGCAAAGCTGAAAAGTAAAAAGTAGAAATACAAATTAAACCCCGTCAAAACTACAAAAACACAAATTGTGAACTAGCAATTGCGGAAACTGCATTTAATCTCTTCAAATGAAGGCAGTCCAGTTGAGGCAGATGTCCTGTATGGAGTAGTAAACTTTGAATTCTGCATGTGAAGAACACCAAGATGTCAACCCACTCCCTTTTCTTATCGTGGAAGGTGCGTTGGTTACGTCCAAACTAAATCTCTGCTAGGAGCGCTTTTATCGAATTAATCCAAATAAGAAAATGTTTTTTTTTATAAATAGGGCCCCCTCAATAATTGGAACACATTGGCGCTTAACAAACCATCAAAGACCCAAGCTTTTTTGAGCATAGAAAATATGCTAAAGCAGCAATTAGATGAGAAGGGACAGAAAATGAATAAGTGTATTTTTAAAAAATATTAAGAATAATAATAAAAAATGCCCACTCCCAGCGTGTCATCCAGTGATGTCCTTGCATGTTGGCGCTTGTCAGAATAATAAAAAAGGAAAAGAAAAAAGATGACACAATTTTGTGTGTTTGACACATGTCAGGTGAGCATGTTCGACACCGACACTCTATCCAAAATGCAGTGTCCACGTTTCATAGGTTTGATTCTTTATGTCATCTTACAACCAACAAATGCAAACAATTTTCTTTGGTTTTTCTAATTCTCTCAATCTTGCATGAAGTTGTTATGTAAGTGCATGGCTCTTGGATGGACAAACCCCTGATCCTCCTCTTCAACATCAACCTTCTCCTATTTGATCAATCTCTCCCATGCTTGACTAGGGCAACCTCTCCTTGCTTTCAGACATTTTCACATTTAGGATAATAACTATTTTTTTTCTCTTGATCTTTAGGAAAAGAATTGGATGTGTAGGATGATACTTGTATATTTTGGTAATGCTATTTATCATTTGAATTCGCTTCTTTTACTTTTAAAATTCTTTTTTGAAGATGATGCTCTTTATTATTATTATTTTTTTGTATGGATTCTCATTTGAATGTTGAATTGTATATGTCTACATGGAAATATGGCATACTCAGGTTCAGGTCCAGGTTAAAACTGTTAAAGGTGATCCTTTGGCGAGAATAAAGTTGGAACTTTGGCGAAGAAGTTGCACACCAGGTACCGACTATGTTAAAGGTGTTTACTCCACTGGGAATTCTTTCACCATCAGGTTAGTATCTTATCAAAAACTAGTTTAATATTTTTAGCTTAAGCCTTGAACTCTCTTTTATCCCCTTGGAGGAGTTTTTTGTAACTTCATTTTTTTTCTCTAAAGGAAACAAGCCTCTCCAGTTTTTGTAATTTCATTTAGATGGAATTCCTCTCTATTTGTAAACTCCAAATTATTAATGGAACTTTTTCTTGTCCCAAGAGGGGGGAGATTCAATTTAAAATAAAAACTTAACTTTAATTGGAAAAAAATGAAAAAGAAAAGCCAGCATAGAGTAAACGAGTAAAAAGAAAAAGAAAAGAAAGAATCAAACTAGAAAGAACCTCCAATCAACTAAAATAACGCTCAACAACTAATTACAAAAAGGCTTAGCCACGGCCACTGGAGTGCAAGGAAATGTTGAATTTGGACCTAATAAAGGCACAAATATCAATTGATGACCTCTGAAGTTCTCTTAAGACCATATTATTCCACCCCAAAAGCTCCCACTAAGCAGCAAACTCTAACAAGCCATAAAAAATTTCCCCTTTTAAATTTATTATTATTCTCTTATATAAGTTTCAGGTGATTTTGTGTAAAATAAAGATACAACTCCCAAGTTTAAATTTCTAAGAAATTCCTGTGTTTGATACTTGAGGTATGGATCAATTCTCCGAATCAAATTCTGAACACTATTTCTCTCGGTTGGAGTTCCTTCTTGCAGAGAGAGCTCCCTCTTTTGGTGGGCTTGTCTTTTGTGTGTCCATATGTTCTTTCATTTTTTCTCAATGAAAGTTCCTTTTTCCAAAAAAAAAAAAAAAAAAAAATCCAAATAGAATTGTTCGTGTTACATGCAGTATATGCTATATGGAAGAGTCCTGTTTTGAGTTTAACGATTTGTTGTTCTGAGTTGCTTCCCATGCGGTGATGGACGGCATGCTGAAAAAAGTATATGAATTGAATGTTTACGTATATTGGAAATTTATGTTTGTATATAAATGCAGTCAAGTAAAGATAATGAACGTCTGAGTGAGAAGAATTTTTTTTGCTTGGTCTGTCACCCGCCCATATAAACTTTTCGAGGGCAAATATATTCAATAGAGTTTGCTGGAGTTCGAGTAATAGAATACTGACTATAGCAAAATTTAGATAATCAAACCTGGATAGAAATCCCATTTCTCTACATTGTGAAAGTACAAGAAGGCTAATACAACAAGGTTGTACTTTTTCACGCACTTTGCCCATTCAACTTTCCTCCCTCATAATCTTACATTGACTAGGTTGATCTAAATGGATTTACCTGTTTCACTTATTTGTTTGTATTTGTATTCTGGGCTTGCGTCAGCTCTGTGAAGCAAATAGTTTCTTTTTCTATTACAACTTTTGTAATTCTTATACACCATCAGGGAAGTGAGATGTGCCACAGGGAAAGGGAGAGGGCTTCCCCAATCACTTCGTGCATTTGCTCGTATTTTGTCTTGCACTAATCCTCAGGGTTTGTATCTCCCTATTTATTGGCTGTCATTTCTGCATTGGCATGACTCAAGTTTGATATCTTGATTCTTGATTGTACAGAGTTAAATGAATTAAGTTATGAAGCCGTTAATGGTGATGGTCGATTGGCTCGAATTCCACTGAAGAATGTCAATAAAGAAGTTGAAGCACATCGGATTTTGCTCTCTCAATTCAAACAATTAGTTGAAGAGTATAATGCATCTATTGAGGTAATCACACTCCAAAATCAATTTGTTCGACAAAAAGTTGTTTGGGAAAGAAAATTACTGTACGGTTCTAGTTTTTTGGTCTAGTTTTCATTTGGTTTCTAGTTTTCAAAATGTATTTCTACCCTTGTTTTCATTTGGCCTCTAGGCTCAAGATTTACACTTTCAACCTTGATTTTTCACCAAAGACTCGCTTTTAATCTTTGGTGTTAATGTCTATGCATTAATATAAAATAGTGAAATTTGTTTTCACTAATTTTCCATCACTATTAAAATTAATTAAGAAATTCACATCACAATTATTTTAAATTAATTAATTCAAAGTTAACCTCAAAGACAAAAGTGCGTAGCTGGAAAAACTCGGAAAAATATATAAATTATTGAAACCTACGGACGGATGAAATTAAACTCAAAACTCAGAAAAAGATGTAACATTATTAAACCCATAAACCAAATGGAATTTAAACTCAAAACTGAATGGGTAAAGTGTAACTTATTGAAAACTTAAGGACCAAATGAAAACTAACTCAAAATTTAGGGACCAAGAAGATATTTTTCCCATATCTTTTTATAGTAAGTTATGCAGTATGCGATGCATGTATCAGACTAGATTTTGATTTTCTGGTTGTGATTATTGGTGAAATTCTGTAATATTTATAGCTGGATGGTTGAAGAGTTTTGGTTATTGACTTTAGTCAGAGCCATCTTTGTGACATTTTTTCCATTATTCCATTTCTTTCCTAATGTATTACTGTTTTGAATGCTGACACACTATATGTCCACTGGTTCTGCTTACCTTTAGTAGTGGCATTTGGCCTGAGGTCAGGCTTGGGTGACTGGTGAGTTTGGCTTTAGATTCTCCTAACTAGGGTTTAGGAAACACAATTACAAACAAATTGATAGAAATATATTGCAATGTCAAAATAAATTACAATGTTGATAGCCCTTCAAAAGGGGCTATGTCTCTGCCAAAACAATAACAAAACCCAAAATCGATGCTTCCCCTATTCAACTTCCTTTATTATAACCAAAACACCACTTAACTAATTACTACTATGTTCTTACTACTATTCTACAAACATTCCAAATATATCGCTCACTAGTACTCTCACAACTTCCTAGCTCTAACCTACATCTGGGGGAGAAGTTGCCAAACCTGGGTTTAAAAATTCAGGTTTATTTCAAACTTCCCAAAACCTCTCAAACCTAGTGTTAAAAACGGTAAAGTAAAGTAGACACCGAGCAACATGAAAACCTGAGTACCGGGTGAAAAACTACTATTGACTTTCTTATTAATTTCTCATATTAACAAGAGATATAAGAGGGAAGATAAATAGACAAAATATTTATGATAAAAGAGGAAAGGAAATTAGGGTAAATCCTTTTTTGGGCCAAGCTCACTAATTCTAACACTTAACAAATGCAAACTTTCAAGTCAAACCTTTGTCTCAAATATTGGGAGCTAAATATATTTGTGAACGTATGTGTGTGTAGATATATATATCCCAAACATGTGTGCACACACACGTATATATTTCAAACTCGATCGCTTTGGACTGGAAAATATATGTCATATTGTTGGATGCAGGCAATGTCACCAATATTGGAAAAGTTAACCTTTTCTTTCTTATGTTGCTCAATTCCTTGCATTGCTTTCTGTTGTATATTGAGATTTTGTGATACTGATATGGGTAACGGGTTTGTATATTTTTGGTGCATCCAATCCAAAGCCTTCAAAGATTACTTTATACAGGATATTTGCTTAGATTGGAATGCTTTCATTTTTTCAATTTAATTATGTCTTTCATTATCTTGTTGCTTTGTATTTGTCGCTTTTGGGAATTTGAGATCTATCATTAAAACCTCCTTTTGGGATGTGATGAGGGTGCTATGGATGTGTAAACCTAGTTGAGATGTCTTGATGTACTTGTTGATCCAATTGTCAAATGATTCCTATTGGTTATTATGTATCATTGTAATATGAGTATTTGGTCTGTTTTCATTTCATTGATGAAAAGTAATTGCAATATGAGAATTGGTCCAGTCTCTTTTTGTTTCATCAATAAAAAGTGATGTCTTTGATTTTAAATATGTATATATACGGTGTACTTCTTAGACAAGCTAAATCTTCTTGTACTGGTCATTCAGGCAATAGAGCCGGTTGATTCTCCTTGTCTGTGCAGAAAGTTGGCACGACGAAGGCTAATGGCCCAACATCTTCTTACCGGTGAGGTTCGCATCCTCAAGTCTGCTATTGCTTGGCTGGAAAATTATTGTGATGCCATTTAG ATGCTTTTGGGAGTTCGATTATACAATATATGGCGATGGCAGACATCTCCAGTACTCTCTACTTCTAATGCTTTCTACTTCAATAGCCACTTCTCAACGTTTTCTCTTCACAAGGAACTATATTCCTTGGCTGAGAGTAACGATGACACATTTCTACCATGGTTGGAACAAAAAGCAGAGACGAAGATCTCGTCAGTTTCTGTTGCTTCTGAGACTATACGGGTGGGAGATTGTATTTTAAAGGTTCCTTTCAATGTGCAAATTTCACCTGATATTCTTCCTCTACCCATTAGAGATCTTTTAGGCAATGAGATTGGAAATGTTGCCAAGCTCGCTGTTGTAATTCTTCTTGAACAGAAACTGGGCCTGGGTTCTGAGTGGGCGCCTTACATCATTCGACTTCCTCAACCATCGGAAATGCATAACACAATATTTTGGAAAGAAAGTGAGTTGGAGATGATTCGTAAAAGCTCTTTATATGAGGAATCACTTAATCAAAGATCGCAAATCAAAAGGGAATTTCGGGCAATCAGGAAAGCTCTGGAAGCCTTTCCTGAAATTATTGATAGGATCAGTTGCGATGATTTCATGCATGCATATGCCCTTGTTACTTCTAGAGCATGGAGAAGCACCGAGGGTGTCTCTCTGATTCCATTTGCAGATTTTTTAAATCACAATAGTGCTTCAGAAGCAATGGTACTAAATGATGATGACAAACAGCTCTCTGAGGTTGTTGCTGATCGTGATTATGCCCCTGGTGAACATGTACTAATAAGGTATGGGAAGTATTCAAATGCTACGTTGATGTTGGATTTTGGGTTTACGCTTCCATACAACATTCATGATCAGGTTCAGGTCCAGGTTAAAACTGTTAAAGGTGATCCTTTGGCGAGAATAAAGTTGGAACTTTGGCGAAGAAGTTGCACACCAGGTACCGACTATGTTAAAGGTGTTTACTCCACTGGGAATTCTTTCACCATCAGGGAAGTGAGATGTGCCACAGGGAAAGGGAGAGGGCTTCCCCAATCACTTCGTGCATTTGCTCGTATTTTGTCTTGCACTAATCCTCAGGAGTTAAATGAATTAAGTTATGAAGCCGTTAATGGTGATGGTCGATTGGCTCGAATTCCACTGAAGAATGTCAATAAAGAAGTTGAAGCACATCGGATTTTGCTCTCTCAATTCAAACAATTAGTTGAAGAGTATAATGCATCTATTGAGGCAATAGAGCCGGTTGATTCTCCTTGTCTGTGCAGAAAGTTGGCACGACGAAGGCTAATGGCCCAACATCTTCTTACCGGTGAGGTTCGCATCCTCAAGTCTGCTATTGCTTGGCTGGAAAATTATTGTGATGCCATTTAG ATGCTTTTGGGAGTTCGATTATACAATATATGGCGATGGCAGACATCTCCAGTACTCTCTACTTCTAATGCTTTCTACTTCAATAGCCACTTCTCAACGTTTTCTCTTCACAAGGAACTATATTCCTTGGCTGAGAGTAACGATGACACATTTCTACCATGGTTGGAACAAAAAGCAGAGACGAAGATCTCGTCAGTTTCTGTTGCTTCTGAGACTATACGGGTGGGAGATTGTATTTTAAAGGTTCCTTTCAATGTGCAAATTTCACCTGATATTCTTCCTCTACCCATTAGAGATCTTTTAGGCAATGAGATTGGAAATGTTGCCAAGCTCGCTGTTGTAATTCTTCTTGAACAGAAACTGGGCCTGGGTTCTGAGTGGGCGCCTTACATCATTCGACTTCCTCAACCATCGGAAATGCATAACACAATATTTTGGAAAGAAAGTGAGTTGGAGATGATTCGTAAAAGCTCTTTATATGAGGAATCACTTAATCAAAGATCGCAAATCAAAAGGGAATTTCGGGCAATCAGGAAAGCTCTGGAAGCCTTTCCTGAAATTATTGATAGGATCAGTTGCGATGATTTCATGCATGCATATGCCCTTGTTACTTCTAGAGCATGGAGAAGCACCGAGGGTGTCTCTCTGATTCCATTTGCAGATTTTTTAAATCACAATAGTGCTTCAGAAGCAATGGTACTAAATGATGATGACAAACAGCTCTCTGAGGTTGTTGCTGATCGTGATTATGCCCCTGGTGAACATGTACTAATAAGGTATGGGAAGTATTCAAATGCTACGTTGATGTTGGATTTTGGGTTTACGCTTCCATACAACATTCATGATCAGGTTCAGGTCCAGGTTAAAACTGTTAAAGGTGATCCTTTGGCGAGAATAAAGTTGGAACTTTGGCGAAGAAGTTGCACACCAGGTACCGACTATGTTAAAGGTGTTTACTCCACTGGGAATTCTTTCACCATCAGGGAAGTGAGATGTGCCACAGGGAAAGGGAGAGGGCTTCCCCAATCACTTCGTGCATTTGCTCGTATTTTGTCTTGCACTAATCCTCAGGAGTTAAATGAATTAAGTTATGAAGCCGTTAATGGTGATGGTCGATTGGCTCGAATTCCACTGAAGAATGTCAATAAAGAAGTTGAAGCACATCGGATTTTGCTCTCTCAATTCAAACAATTAGTTGAAGAGTATAATGCATCTATTGAGGCAATAGAGCCGGTTGATTCTCCTTGTCTGTGCAGAAAGTTGGCACGACGAAGGCTAATGGCCCAACATCTTCTTACCGGTGAGGTTCGCATCCTCAAGTCTGCTATTGCTTGGCTGGAAAATTATTGTGATGCCATTTAG MLLGVRLYNIWRWQTSPVLSTSNAFYFNSHFSTFSLHKELYSLAESNDDTFLPWLEQKAETKISSVSVASETIRVGDCILKVPFNVQISPDILPLPIRDLLGNEIGNVAKLAVVILLEQKLGLGSEWAPYIIRLPQPSEMHNTIFWKESELEMIRKSSLYEESLNQRSQIKREFRAIRKALEAFPEIIDRISCDDFMHAYALVTSRAWRSTEGVSLIPFADFLNHNSASEAMVLNDDDKQLSEVVADRDYAPGEHVLIRYGKYSNATLMLDFGFTLPYNIHDQVQVQVKTVKGDPLARIKLELWRRSCTPGTDYVKGVYSTGNSFTIREVRCATGKGRGLPQSLRAFARILSCTNPQELNELSYEAVNGDGRLARIPLKNVNKEVEAHRILLSQFKQLVEEYNASIEAIEPVDSPCLCRKLARRRLMAQHLLTGEVRILKSAIAWLENYCDAI Homology
BLAST of IVF0000391 vs. ExPASy Swiss-Prot
Match: Q5ZML9 (Actin-histidine N-methyltransferase OS=Gallus gallus OX=9031 GN=SETD3 PE=2 SV=1) HSP 1 Score: 91.7 bits (226), Expect = 2.4e-17 Identity = 93/361 (25.76%), Postives = 160/361 (44.32%), Query Frame = 0
BLAST of IVF0000391 vs. ExPASy Swiss-Prot
Match: B0VX69 (Actin-histidine N-methyltransferase OS=Callithrix jacchus OX=9483 GN=SETD3 PE=3 SV=2) HSP 1 Score: 90.9 bits (224), Expect = 4.0e-17 Identity = 99/368 (26.90%), Postives = 163/368 (44.29%), Query Frame = 0
BLAST of IVF0000391 vs. ExPASy Swiss-Prot
Match: Q91WC0 (Actin-histidine N-methyltransferase OS=Mus musculus OX=10090 GN=Setd3 PE=1 SV=1) HSP 1 Score: 90.9 bits (224), Expect = 4.0e-17 Identity = 99/369 (26.83%), Postives = 165/369 (44.72%), Query Frame = 0
BLAST of IVF0000391 vs. ExPASy Swiss-Prot
Match: A9X1D0 (Actin-histidine N-methyltransferase OS=Papio anubis OX=9555 GN=SETD3 PE=3 SV=1) HSP 1 Score: 90.9 bits (224), Expect = 4.0e-17 Identity = 99/368 (26.90%), Postives = 163/368 (44.29%), Query Frame = 0
BLAST of IVF0000391 vs. ExPASy Swiss-Prot
Match: B1MTJ4 (Actin-histidine N-methyltransferase OS=Plecturocebus moloch OX=9523 GN=SETD3 PE=3 SV=2) HSP 1 Score: 90.9 bits (224), Expect = 4.0e-17 Identity = 99/368 (26.90%), Postives = 163/368 (44.29%), Query Frame = 0
BLAST of IVF0000391 vs. ExPASy TrEMBL
Match: A0A1S3CJW1 (ribulose-1,5 bisphosphate carboxylase/oxygenase large subunit N-methyltransferase, chloroplastic isoform X2 OS=Cucumis melo OX=3656 GN=LOC103501651 PE=4 SV=1) HSP 1 Score: 888.6 bits (2295), Expect = 1.1e-254 Identity = 449/464 (96.77%), Postives = 449/464 (96.77%), Query Frame = 0
BLAST of IVF0000391 vs. ExPASy TrEMBL
Match: A0A1S3CJF6 (histone-lysine N-methyltransferase setd3 isoform X1 OS=Cucumis melo OX=3656 GN=LOC103501651 PE=4 SV=1) HSP 1 Score: 882.1 bits (2278), Expect = 9.9e-253 Identity = 449/470 (95.53%), Postives = 449/470 (95.53%), Query Frame = 0
BLAST of IVF0000391 vs. ExPASy TrEMBL
Match: A0A0A0KNP0 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_5G505750 PE=4 SV=1) HSP 1 Score: 815.1 bits (2104), Expect = 1.5e-232 Identity = 417/464 (89.87%), Postives = 429/464 (92.46%), Query Frame = 0
BLAST of IVF0000391 vs. ExPASy TrEMBL
Match: A0A1S3CL08 (histone-lysine N-methyltransferase setd3 isoform X3 OS=Cucumis melo OX=3656 GN=LOC103501651 PE=4 SV=1) HSP 1 Score: 790.4 bits (2040), Expect = 3.9e-225 Identity = 403/426 (94.60%), Postives = 404/426 (94.84%), Query Frame = 0
BLAST of IVF0000391 vs. ExPASy TrEMBL
Match: A0A6J1GPC6 (fructose-bisphosphate aldolase-lysine N-methyltransferase, chloroplastic isoform X1 OS=Cucurbita moschata OX=3662 GN=LOC111455914 PE=4 SV=1) HSP 1 Score: 714.9 bits (1844), Expect = 2.1e-202 Identity = 362/472 (76.69%), Postives = 401/472 (84.96%), Query Frame = 0
BLAST of IVF0000391 vs. NCBI nr
Match: XP_008463512.1 (PREDICTED: ribulose-1,5 bisphosphate carboxylase/oxygenase large subunit N-methyltransferase, chloroplastic isoform X2 [Cucumis melo]) HSP 1 Score: 880 bits (2275), Expect = 0.0 Identity = 449/464 (96.77%), Postives = 449/464 (96.77%), Query Frame = 0
BLAST of IVF0000391 vs. NCBI nr
Match: XP_008463502.1 (PREDICTED: histone-lysine N-methyltransferase setd3 isoform X1 [Cucumis melo] >XP_008463504.1 PREDICTED: histone-lysine N-methyltransferase setd3 isoform X1 [Cucumis melo] >XP_008463505.1 PREDICTED: histone-lysine N-methyltransferase setd3 isoform X1 [Cucumis melo] >XP_008463506.1 PREDICTED: histone-lysine N-methyltransferase setd3 isoform X1 [Cucumis melo] >XP_008463507.1 PREDICTED: histone-lysine N-methyltransferase setd3 isoform X1 [Cucumis melo] >XP_008463508.1 PREDICTED: histone-lysine N-methyltransferase setd3 isoform X1 [Cucumis melo] >XP_008463509.1 PREDICTED: histone-lysine N-methyltransferase setd3 isoform X1 [Cucumis melo] >XP_008463510.1 PREDICTED: histone-lysine N-methyltransferase setd3 isoform X1 [Cucumis melo] >XP_008463511.1 PREDICTED: histone-lysine N-methyltransferase setd3 isoform X1 [Cucumis melo]) HSP 1 Score: 874 bits (2258), Expect = 0.0 Identity = 449/470 (95.53%), Postives = 449/470 (95.53%), Query Frame = 0
BLAST of IVF0000391 vs. NCBI nr
Match: XP_011655345.1 (actin-histidine N-methyltransferase [Cucumis sativus] >KAE8648532.1 hypothetical protein Csa_007975 [Cucumis sativus]) HSP 1 Score: 820 bits (2117), Expect = 6.50e-298 Identity = 421/464 (90.73%), Postives = 431/464 (92.89%), Query Frame = 0
BLAST of IVF0000391 vs. NCBI nr
Match: XP_008463513.1 (PREDICTED: histone-lysine N-methyltransferase setd3 isoform X3 [Cucumis melo]) HSP 1 Score: 781 bits (2018), Expect = 3.06e-283 Identity = 403/426 (94.60%), Postives = 404/426 (94.84%), Query Frame = 0
BLAST of IVF0000391 vs. NCBI nr
Match: XP_038889895.1 (fructose-bisphosphate aldolase-lysine N-methyltransferase, chloroplastic isoform X3 [Benincasa hispida]) HSP 1 Score: 771 bits (1992), Expect = 7.14e-279 Identity = 394/464 (84.91%), Postives = 420/464 (90.52%), Query Frame = 0
BLAST of IVF0000391 vs. TAIR 10
Match: AT3G55080.1 (SET domain-containing protein ) HSP 1 Score: 427.6 bits (1098), Expect = 1.3e-119 Identity = 223/457 (48.80%), Postives = 313/457 (68.49%), Query Frame = 0
BLAST of IVF0000391 vs. TAIR 10
Match: AT3G55080.2 (SET domain-containing protein ) HSP 1 Score: 358.2 bits (918), Expect = 9.6e-99 Identity = 176/349 (50.43%), Postives = 254/349 (72.78%), Query Frame = 0
BLAST of IVF0000391 vs. TAIR 10
Match: AT3G07670.1 (Rubisco methyltransferase family protein ) HSP 1 Score: 99.4 bits (246), Expect = 8.0e-21 Identity = 106/401 (26.43%), Postives = 173/401 (43.14%), Query Frame = 0
BLAST of IVF0000391 vs. TAIR 10
Match: AT1G14030.1 (Rubisco methyltransferase family protein ) HSP 1 Score: 87.8 bits (216), Expect = 2.4e-17 Identity = 101/422 (23.93%), Postives = 174/422 (41.23%), Query Frame = 0
BLAST of IVF0000391 vs. TAIR 10
Match: AT5G14260.3 (Rubisco methyltransferase family protein ) HSP 1 Score: 72.4 bits (176), Expect = 1.1e-12 Identity = 79/324 (24.38%), Postives = 138/324 (42.59%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Melon (IVF77) v1
Date Performed: 2021-10-25
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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