
IVF0003778 (gene) Melon (IVF77) v1
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.ATGGAGGGGTTAATTTTTAGACTAAACCACTTCACCCTCCACATCACTCTCTCGCTCTCTTTCTCTCTTCCCGATTCCTTTCTCCCTCGGCCCTCTCGGTTCTTCTTCACACACGCCAGCGCCGCCGTGCCCTCCACTGCACGCTACCAACCGCCTGACGCGGCCGCTCCTGCTTCAATTCGACGGTATTTTCTTTCTCACTCCGTGGAATTCTCTCTCTACCGATTTTCCTTCCCCTTCCTCACTCTCTTCTCGGTCACAGCGCCGCCGCCAGCCGCTGAGCAGTGGATAGGAGTTTTGGTGATTTTAATTTGGGTTTCTTGTTGCTTCTTGATTACCCATAACTTCCTTAGATTAATCTAATCTGCCCACTACGTATTGGTCCTAGATTCGTGATTGGGAAGGAGATTGGTACGGCATCCAGCACGTGATAAGATTTTTTCGGTGAATCTCACATAGGTCTTATGCTCTGTTCCCTTTTGATTTCACCATGTTTGTTTTAATTTGGGCTTCTAACTCTTAATTTTCATGTAAAGCTTAGGCCTGACACATTATTGGAGGGTTTGAGAAGCACCGGGATCAAGACGGTTTGGGTAAGTGATTTAAGGATTTTAAGGTGGTTTTACCATACGAGTTAGATCATATTGGACTTAATTTTGGTTTGTGTTTTATGATTTGAACGGGGGTTCCCTAAGCTGTGGAGATTGTTGGAAGTTGGCTTTTAATTTTAAGTTAAGTAGTTTTATTGTTGGAATGCCTTAGGGGGACGGTTAGGCGTTTATGATACATTCGATGTGAATGTTTGCAATAGCCATGGTTTTTGAATGCCTTCAATTGTTGACGCCCATAATTTGTGAATGACATGATTATTATGTGAAGCGAATGAAAGACTGTACGCGTGCTCACGCACACACACATATCATGTTAGTGGAGTATGTGATATTTCTGAATGAAAAAATCTGTTATGTTGTACCATATTGGGAATTGATTTCTTCATGTATGACCTTATGCATGTGTGAGTACTCACAAGAATCATGAAATGTAGTTTCCCTCCTTTTCTTGCATGATGTAATTGCACGAAAACGGTGAATTTTCAGGGACTCTAATGCATGAAAGTGGTGAATGTTGTGTCTTTGTCCTAGATTTTTAAAAAACTAACATGGTGATGTGTCCACGTCATGTTGTATCCATATCTGTATTTTTTAGGTCTGAAGTAGTTATGTTGTTATAATTGACATTTGAATAGTAAAACAGAGTATTACAGTTGGTTTCATTCCAGCTGATACCAACAACATTATCTCAGTTTCCAGATGACTCAGGGGTTCATGGTAGTTAGATGTTACCAAAACAACAGTTGTCTTACTGCCCAAAAGATTATAAGAAAAAGAAAAACAACCTCCTTTACTTTGTATTTGAATTATAATCTACAGTAAGTGGACTTCAAGGTTCTTTCTTTCCCTCTGTAGCTATGAAACGAGGATACTCAGAATCCCCATCGGCATCTCTGGGGCCTCCACAATCCAGATTCAAGTACAACCCAGAAGGTGCCATTTTAATTGGTTTTGTTATATGGTTTCAGTTTGTGCTACTCTTCAGATTTTACCAATAAGTTTTTGCACTTTTCGATATGTTCTTGTGATATTTTTTCACATGGGTTTACTTTTAGCTTGTTTGTCTATTGATAGTGAAACTACTATAACATAGATATGTCGTTATATTTCAATTCAAGTTTAGGATTACTGTAATTGCTGTGGTTTTCATTTTATAGGTGATGCTGAGTTCTTAGAAGATGAAAGCACCAAGATTTTTGCTCGGAAAGTCGCTGAACATTACAGTGCTAGGACGAATCAAACTTTGGAAGAGCGAGAAGCTAGTGTTATCATCCATTTAAAGAAACTTAACAATTGGTGTGTATTGTATTTTGATTAGTATATAATATATATTTTTTAAACATATGTTTGATTCTCAATCCTTTATTATCTTAATGGTTTGTTCTTACTGGGTAGATTAAAAGTGTCTTGGTTCAGCTTTATGCTCGCCGAGGGGATGCTGTTCTTGATCTTGCCTGCGGGAAGGTAATGGATCTCTTTAATCTATAAGTGTTGCTATACTTCACTCCTGAGTTGTGAACTCTTTGCTTTTGCACTTGCTAGGGTGGTGATCTTATCAAATGGGATAAGGCCAGAATTGGATATTATGTTGGCATCGATATAGCCGAAGGATCAGTAAGTGGAAACTCTAGCTGGTGTTGTTCATTTGGCAGTTATTCTAGACTGTCTCTGCTTCATTAGTTTTCATAACTTCTTAGTAGAATAATAAAGAATTTCTTGGATTGTTGTCCTCTTATTTACTTAAGCTTGTGCCTTGTGATGGAATCAGTTACATAAGGTCATTACGGTGTCTTATTTCAGATAGAAGATTGCCGTACTCGTTACAATGGTGACGCCGACCATCATCAGCGTCGTAAAAAGTTTTCATTTCCAGCCCGCCTAATATGTGGAGATTGTTATGAGGTAGTGAAACTTAAAATGAACAGCCAGTGAATTTAAATCCTCTTCTTTCCCTGTGCACACATTCTTGATTTCTTTACTGTTGAGCTTTTCAATGTAGTACTGGCCATTATAGCGATCATCGATCAGTGCAGTCAGTGTTTTTGAAATTAGATATCACAATCACCTAACATATGTGAATATGATTCTATGAAAAAAAGGACGTAGTGTGAATATGATTATAATTTTTGTTGAACACTGTCCAATTGACCTGGAAATTTGGCCTATTAGGCAAGGCTGGATCATGTCTTAGCAGATGATGCTCCATTCGACATTTGCAGTTGCCAGGTGAGTGATATCAAAGATTTATGCCCTTCGTGTTAGTTAACGTTTGGTACCTGCTTTCACTATTAGATCTTTCGCGATTAGCATCATCCAAACTATTAAACAATAATATAAACTCACTCAAATTCAAATATCAGCCAGATGGATGGATGTTTCTACCCATACATGTAATTCTTATAGAAAATTTATGCAATTGGAGAATATCAGTAGATTCCGCAAGAGTTTATTCCAACAAATCCTCAACCTTCCATTGAAATAAAACTTGCAGTTTGCATTGCATTATTCTTGGTCTACTGAGGCTCGTGCACGACGTGCCTTAGCCAATATATCAGCTCTTCTCCGCCCAGGAGGTATTCTCATTGGAACCATGCCAGATGCTAATGTGATTGTCAAAAAGCTTAGAGAAGGTATTTTTCTTGTTTTAACGTTCCAGCTTTCCATCTCGTATATCACATACCATAGCTGTCCCAAACTCTTCTGGGAATGACATAAATACACAATATAATAAGATTTTCATTGTATTAAATCATCTAGCAATGGAAATGTTTGGTCCAAGTAAGAACTTATCCGTTGACTAGCAGAGAAATGGGCGGTATCGTAATTCATATAAGTGGAGATGTTAATATATTAATTTATTTATTGTACCTTGGTTTTTACATGATGTCAACCACCATTCATCATCATACCCTACGTTTCGTACTACCGGAGTTATTTCTTAACATTAACGTAAAAGAGAACATTAATGTCTTTGAAATAGTATTTTTATTATTATTTTATTTTTTATTTATATATATATATATATATATATATATATATATATATATATATATACTTTCATTGAGAAAAAAATATGAAAGAATACAAGGACGTGAAAGGGAAATTTCACAAACCACCCTTTAACTATGGGTTTGTTACAATTAACCCTTAAAGTTTTAATTTGATCAATTAGCCCCCTATACTTCATTAAGTGTTGCAATAAGCCACTTGTGTTTGTTGAGGTTCAATTAGAAAAGGACCATCGTGTCAGTTAACATATCCATAAAATAAAAAAAAGACTAAAATAGAATCAAGTTTATGAAGAAGCGTGGTCGGAGACCCCATTGGCAACAATTGTGAATTCATGAAGGATGGAACAGTAGTGGCAGTGGAACTTGAAGCAGCTTCAAATTCCCGATTGAGTTAGCCAAAACTAAAACTGCCCAATAATTGCAGCTATCATAAGATTTTTCTCGATATAGAAGGGTGTTCGATGATAAGTTTAACTCTTTCCATTCTTTTTGGACTCTTGTGCAACATACGGCCTCTTGGTGGTGTACAAACTACAAAGGTTATTTTGTAATTACAACCTTCTCATGATTATAAAACAACTGGAAAACACTTAATGTTTAGTCTTTTGTTGGAGGGTTTTCTTGATCCCTCGCCCTTTGGCTGTTTTCTACTTACTGATTTATATATAAAATTTCTTTGTTTATTGTTAGAATTGAGTATTTATGGAAAGATTATGGGAAGATTTACCTATTTCCTAAATCTTTTCTTTTTTATTCTATTTATTCTCCCTCATTGTACGTATTACTTTTTAGAAAATAATAAAACAACAATATGGTTTTTTTTCCTGGTACTCGGGTTTCCACGTAAGCTTTGGTCTCGTGTTTATTGCTCTCAGTATGATATTAGAGCAAAGCAACAACGAAACCTTAGAAAACGATTTAAGAGGAACCCAAACCAAACCAGTCGTTGCCGTTGCCATCGTCATGGAAAAATTAGTCCAACAGCTTCAAAAACTGCCAATCTATGCAGTAGGTCTGCCCTCGCTGCTGTCCGCGGAACCCTCTAACCAAAATCTCTCTCATGCGTCGCCTCTGTCAAGCGCGTGGGCCCACACACTGCCACCCTTTTGTCTCACAGCCCATCCCAATCCCTTCTACTTGCCGTCGGCTGTCCAATGGTCATACCCTTCCAATCAACTGTAGCCTCACGCGTCGCCCATGCCTTCCAATTATAGACAACCACCACAAAACTGTCAGATCTATTCGTTTGCATGTCGCCGTCTGTCGACCCTTTACAGCAACCCTTTATCTACAATAATGGGATTGATGGTATCCGTAACATATTGGGGGTTGAAGCGGGCAACTCTTCGACACGTTCCAAACCAACTGAGTTGTCGATGTATTCCAAGAACCTGGTAATTTTGCTTCCTAATGTGCCTTCGAATTATATGACTAACTCTGTTGCCTTTAGTGCCTGATTCTCAACCATGATAATGAGAAGAATTGTGGGAAACCAATCCTCGTTTGGGTGCACTACAAGAAACGACACACCAAGGATCAATGTTGGAAACTCCACAGTCGTTCCCATGAGGTAACAAACAATGTTCCTCCCACGAGCAACATGACTCAGGTTGTGCTGATGTAAGGGAGTTTGCCAGCACCTCTCAATCCACTGGTCCTACTACTAGCCAAACCAACCCTATTGCTAGCAAGACCAGTCAGGTATGCCTCCTCTACTGCAACCCTACTCTAGGCGCCATTGCTTAGTCAGGTATGCCTCAGTCCCTTGGCCTCATTAGTGTTGATGGGAAACATCCCTGGATTTTGGACTTAGGGGGCCACATATCACTTGACATGTTTTTTAAAGCACTTTGTCTTTTATACCCCCTGTGTTGGTAATGAGAAAATTTTGATAGCTGATGGTACTTCCCTAATTGGTGGCAAAGTAAAAATAGTTCTCTTTGACGGTTTCTCTCTCCAGAATGTTTTACATGTGCCTAAGTTGTCTTACAATTTGTTATCTATCAGTAAGATCACCATGAGCAGCACTGTAAAGTTACCTTCTTACTGATTTGTTTGTTTTCAAACCTTGAGCTCAGAGAGGGCGATTAGCATTGACCGACATAGCAGGGGATTTTACATCCTTGATGATGATACCTCTGGTAGTAGCATCTCTAGTACCAATTTACTATCCTCTTATTTTAGCACTTTTGAACATGACTTAATGTTATGGCATTTTTGGTTGGTTCACCCGAACTTTACTTATTTAAAATATTTGTTTCCCCATCTATTTTCTAAAATTGATGTCTCCTCTCTATCTTGTGATGTGTATACTCCGGCAAAACAACATCGGGTTTCTTTTCTTTCACAACCATCTAAACCCACACAACCATTTACACTTATCTATAGTGACGTTTGGGGTCCTTCCAAGGTCACCACCTCATCTCAGAAACGGTGGTTGTAACTTTCATTGATGATCATATCGGTCTCACCTGGGTCTACCTTATCATCAATAAATCTAACGTTTCCTCTATTTTCCAAAAATTCTATTACACCATTGAAACACAATTCCATATAGAAATTGCAATTCTTTGGACTGATAATGGTCGAGAATTCCAAAACCATAACCTTAGTGAATTCCTAGCCTCTAAGGAGATTGTTCACTAAAACTCGTGTGCCTACACTCAACAAAATGGGGTGACGAGCGAAAAAACTGTCATCTTCTGGAAGTAGCCCCTTCTTTTATGCTATCTACTTCTCTTCCTTCATACCTGTGGGGAGATGCTATTCTTACAGCAACTTATTTAATTAATAGAATGCCTTCTCGTATCCTCCAGCTTTAGACTCCCTTAGATTGTCTTAAGGAGTCCTGCCCTTCTACTCGTTTAATTTCTTAGGTTCCCTTTCGTGTGTTTGGATGCAGTGCTAATGTCCATAATTTTGGCCCTAATCAGACTAAATTTACCCCTCAGGCTTAGACATGTGTGTTTATCGGGTATCCCTTCATTAGCATGGTTATAAATGTTTTCATCCCCCGTTTAGGGGGAGAGTGTGAGTGAAGAGTCTAATACCTTAGAGTTTATTGAACCTACTCCTAGTACCATGTCTGACTTCGATCTCTCTTTGTCCTACCCACAAACCAAGTTCCTTGGAAAATGTATTACAGGAGGAATCTTAGAAAGGAAGTTAGGTTTCCTACTAGTCACCTGCCAGCTATAGTCCAAAACTTTGAACTTCCTCGAGATCAAGGTATGGAAAATCTTACTAAACCTTGTACTGATAATAATATGAGTGAGAATGACAGGTTTAATGTTCTTGAAAATGTGGAAAAAAAGAACAATGGTGATAAGACTGAGATAGGTACGTTGATTTGCCAACCGAGATAGGTACGTTGGGATGTTTTCCTGCTGACACTCCTATTGAATTCAACTGTAAACTAGGAAACTCTGATGATCAAGTTTCTGTTGATAAAGAACAATATCAGTGCCCTGTGGGTAAATTGATTTACTTATCCCATACTCTTCCTGATATTTTCTTTATTGTGAGTGTTGTCAACTAGTTTATGCATGTTCCCTATGAGGAACACATGAAAGCTGTCAACAGAATTATGAGATACTTGGAAACGACACCTAGTAAAGGGTTGATGTTTAGAAAGATAGGCAGAAAGACTATTGAGGCATATATTGACTCAAACTGGGCAGGATCTGTTGTTGATAGAAAGTCTACCTTCGGTTACTTACCTTCGCTTGGAGCAATCTTGTAACTTGGAGGAGTTAGAAGCAAAGTGTTGTAGCTAGGAGCAGCGCTGAGGCCGAATAGCTCGTTTTGGAATATATGAGTAAATTTGGCTCCGGAAAGTCCTGTCTGATCTTCATCAGGAGCGTGAGACATTGTTGAAGCTTTTTTGTGACAATAAAGCCGCTATTAGTATTGCTAATAACCCAGTTCAACATGATAGATCTAAACATGTTGAGATTGTTCGACATTTCATCAAAAAAAAAGACTTCAGTGGGAGCATATACATTCCATACATTCCTTCAAGCTAACAGGTTGTTGATGTTCTCACCAAGGTGCTTCTCAGATCAAATTTCGACTCTTGTGTTAGCAAGTTCGACCTCATTGATATTTATATCCCAACTTGAGGGGAGTGTTAGAATTAGTGAGCTTTGGCCCTTAGAGTATTTATGGAAAGATTATGGAAGACTTACCCTATTTCTTAAATCTTTTCCTTTTTTATTCTATTGTATATTCTATTTATTCTCCCTCATTATACCTATTATTTATCAGAAAATAATAGAGCAACAATATCGTGGTTTTTCTCCCGGTACTGGTTTTCGTGTAAGCATTGTTTTCGTGTTTATTGCTTTCAATACTTGTAGAAAAAAAGGAAAGCCAATTTCAGCTATCATAAGGTTTTCTCCTTTATAATAAAACTTAGGAGTTTGTAATTTTTCCCCACAATTTCTATGGCTGCCACTGTCTATTTGGTCAAAGAAATTTGATCAATACACTAAAACCCAGAAGTTTGCCGGAATTGAGATGTATAAAGTGGAACTGGGAAGTTAGATGCGCAAATTGATGTGATTGAAGACTTCAAAACGACTTCTTCATTCTTTCTTCCTTCTCCTACTGCACCTTTGAACTCTCTCTCTCTTCTCTCTTCAAAGCAATCTCTTTATTCTCCTTCGCCACCTTTTCTGGCCAAACGCAGCTGAAGTTGCTACAAGAGTGTTGTTGCCACTATCCTGCAATGGCCCAGGACTGCCGCTGGTCCTACGCCTCCGACTCCTTTTAGCATGACTTTTATAATATTTTTAGATATGTAAATTCACAAGCTTGCCCTTTGCTAACTACACATCAACTAACGGAAGGGTCTAATTGTAACAGACCTCATAGTTCATGAGTGGTTTGTGCAATTTCCTCATAGTTCATGAGTGGTTTGTGCAATTTTTCTAAAGAAAACAAACCTACAAGACGCAACCCCACCCCATTGAAAAAGAAAAAGGATATCCAGCTAAGTAGGATATTATCTATTGAATAATTAGAAGAAAAGCATCAACACCAAAGCCCAAGACACATGAAACCTCAATAAGGACCAAACCTCTAAACACTCTATTGTTTCTCATCCCCCAAATGTTCCACAGCACAAGACACACCCCAGCAAACTACAACAACCACCTTTCTCGAAACTCCTTCATCATGACACAAATATCCCTTTGATCAGCTGTTTGAACGTCAAACTCCTGCATGTAGCAAATCCAAATGGATCTAGCAAACTGACAATGCCAAAGAAGTGATCCAGGTTAATGCCCTCGAAATCCTTAGCCATTACTCATAACAAGGGATTAATATACGTATATTAATATATGCCACTGTCAAAGAATTAAAAGCACATAAATACCAGTATAACTAACCTAATGACTTGAGTTATAAAAACTATGTCGGGTGTGCTTACTATTTGTGCAAGCAATGAAGAGCTAGAAGAGGGCGTGCTTTAGGAGCTTTTAACAAGAAGAAGTTGTTTTGCTAGTCATCCTTGAGCGAGATTCTGGTAAACTATTCCTGGAAGTTTTGTCATCAGAATGTGTCAAATGGTCTGCCCTTTCAACTGAGGCTTAGATATATTCTCCTCAAGATTGGTTCTTTAGGCGTGTTTCTGAAGTCATGGTAGCAGCTTGTCAGCTTGTATAGTTAATGATTCTTTAACAAGATCAGATGTTCTTTGGTTGGTTTCGAGATAACACAGTTCTTTCATTTTTGTCCTCTTGAGATGCATCTTCCTCAAGCTCTTCAAAGATTACTTCTTTCATGGTTATAGTTCTTTGAAGCACTTTTGTTTCCTTTCCCAACATTTCATTTGTATCGACTGTTCTTTCGGTTGCTGTTTTGATTGTGTTTCTGCCTCGTTTGGAGTTTGTTAAACTTTTGGGTCCTCGTTTTGTTAGTCTATGTGTATAGATTCTGGATCTTTTGTCTAGCTCTTTATATAGTTCTCTGTACATTGAGCATTCATCTCATTTCGTTATATTAATGTTGAGGCTCATTTCCTTAAGAAAGAAATCTAATAACTTTTAGGGTATGTAGTATTCATTTGTCAAAGCTGAAGTTGATATTTTGAAGTTTGAAACAAACAAAATTAAGGCCAAGTTCTAAGAGAGGAATAATGTTATCCTTCCAATCAAATCCAAAGCATCTGCTATAAGAAGATTCGCATGCTACCTTCACCTCACTCTTTGGTTGTTTAGAGATGAGCTCTTACTGTACCACACTTTATAAATTGTGATGTGGTATGGTACTGTATGTTTTGAATTTACTTTAAAGAATGTACTCCTATTTGTATTTCCACTTGACTCTATTGGAGATGAATTTTGGGGTTGGTTAGATTGAACTCATTGTTATACCGTTGGTTAATTGGGATTTTGGTAATTGCCAAGTCGCTCATTCTCGTAGGTTGGGGTTTGTAAATTGTAATTAGGGTTGGTGTTACTTTTGGTGGGATCGTATTTTTGTATATCCTCGTACATTCTTTCATAATTTTCAATAGAAGTTTGGTTTTCTTTTATGTGTGTGTGTGTGTGAAGACATTATTGACCAGATATGCTTTTCGGTTATGAATATGCAGCTCAAGGCTTGATGTTTGGAAATAGCGTCTATTGGATACGCTTTGATGAAGAATATGCTGAAAAGGTGAAAGCTGACAAATCCATTTAGTAACTGGTCCCCTGCTTTAATATACCATTTAGCTGTTTTCTTGAGATTGCGATTGACATTTATTCACTTTTGCTTGGTTCAGAAATTTAGTGCTTCCAGCCCCTTTGGTATAAAGTACTTGTTTCATCTAGAGGTACCTAATATATTGGTGTTGCATTTGTTAGTTTGCTCCATTTCCTTAGAGGTGACTGTTCATAGCCTTTTGGCTATGTTTCTTTGATTTTAATTTATATTGGAGATGTCTTCTTGTTGCAGGATGCTGTTGATTGCCCCGAGTGGATTGTCCCGTTTCATGTTTTCAAATCATTGGCTGAAGAGGTAATGGCTTATCTGGAAACTTGAAAGTCTTGCAGAGCAAGAAAACTTGACAAATATTTTTATGAAACATTTTTTCTTCTTGCCCTCTCTCTACTCGTGAGACAACTATGTTTAGTTTCCAGATAATGAACTCTCAAATGCTATTCTGCTTTGTTCTTGTTATAAAAAAGGCTAATCTTCTTTGTTCTCATAGAAAACTTGTTTCTTTGAACTAATAAATGTGTACTATAGGCAAGTCAAGTGTGTTTTACTAGTTTCTTCGATTTTTGGTAGCCTGGTTATTTTAATGTTAAGTAGTTGTCGTGTGGAAAATAGAGATTATTTTATTCTGTTTGCTTCTGGTAATTTCAATCTGGATGAAAAGAGTTAATCACAGCTTTCTTACTTCAAAGCAATGGTCTTAAATGGTTTGAAGAGGAAATTGTTGATTTTATGCATTCCCATTGGAAGAAAATTTCTTCAGACGAGATAGGGTAGATGTGGAAATTTGCCATTTAATTAAAGAGGTACAACCAATCTAGTCAGAGTTGAACGAATTTCCATCTCCATGAGCAGGGCTTGGAGAAGCATTGTGTGCCTTTGGAATCAACAAAAAGAGATGGTTAGTCTTTTAAGAAATGAACAAGAAGACTTTGCTAGAGTATTTGACTGAAATAAGTTGGGAAGATTTTGAAATGCAAGGAGTTTGCCTCCAGCCTGGTCACAAAGTTTGAATTCTGTGGTTTCCATGTATAAGGGGATGGAATTCCAACCTCAGTCTTGTTGGTTTCAAAAAGAAAAGGAGGTTCTTAAGCTCAGATGGAATTCATTTTTGGTTATTTCAATAATTGAATGCATTTGATGATTGGAGAGAGATTTCTCAAACTCTAATCTGAAGATTCATTTTGAAGAGGATTGTCTTGCTGGTCCTTTTTTGGCAAACAAATCACTCTTTGGTAGGTTGTTAAAAAGAGGCCTTAGTGAAAGGGGAAGGTGGCAGAAAATTGGAAATTTCCATTGTAACATGGCTGAGATGGTCAGTGATTGTGGAGGCTGGATTACATTGCATTCCAGGGACTTACCTTTATGATTTTGGAGTTGCGGTTGCATTGAAGCTCTTGGTATTTTGGGCAAAATGTTCTCAGACACTAGATTTGCTGGTTTGTAACTTGTCAGCATTGAAGTAGAATATAATCTGTAGTTTTTTTTCCAAATGAGGACGAATCTGGAAGATCCCATTCTGGGAAATTTTGTTGTACGTGTAGTGGAAAGCAGTGAATCTGATTTACTCACTGCTAGATTTTCTTGGTGGGTTGTTTCCATCTTTAATTTTGCTGAGAAATGAGTTTGTCCAAGAGTTTTTTCAGCTTCTGTGGGATCTTCTCAAGAGCATTCAATGGGGGATTCATCTCCTTTCGGCTTTCACCAGGTTTTATTCTTCCAACCAATATAATTGTTTCCGAAAGTGCCATATAAGAGGGTTTTTGGATGGCAGTGACTGACCCAATTTTCAGTAAATTCAGATTATAGATGGATCTTTGATTTCCTCTCCGAGGATCCCTATAGCACTTCTCCTATTTTGGAAGGAAATATCCCTGTGCTGTCGGTGCCAAACACGACATTTTTGAAGCTCCCTAAAACTCTATAGATATTATTGTGGACCTTTCTCTCTCTTTTGAACTTGTGTGATGTTCCCTGTTTAAGTAGGGGTTTGCTTTCAACTTTTTCCCCTTCGTCATATCTGGTTTTGTCACAGATCTCTCTTCGTGGTATTGCTGCTGATTATTCTTTTTGTTGGTCTAGCTTCAGTTATTCTTTGGTGTCATGGTTTTGCTTCCATGATTTTTCTGTTTCTTCAATGCGCATTGTTCTTTCGTTGCTTTATTTGTTTCTTTTATTTTTGGAAGTTTCTTTTTTGTTTGATTGCTTGATCTTTTCGTTTCCTATGGGAGTTTGTTTTACTTGAACCTTTTATTCTTTACATATTGAGTTTATTTCTTTACATATTGAGTTTATTTCTTGTCTTAAAAACGTGCAGTATGACTTAGAGTTGGTTTTTGTCAAGAACTCGCATGAATTTGTGCACGAGTACTTGAAAAAACCAGAATTCGTGGATCTAATGCGACGACTTGGTGCCTTGGGTGATGGCAACCAAGATCAAAGTAAGTTTTGGCTGTAGCTTATTCGCTCTATGGAATGGGGTCTTTTGGATGTGTCGAGTAGAGATTTTCATTCTTGCCTCATTGAATGCAGGTACATTATCTCCGGACGAGTGGGAAGTGGCGTATCTGTACCTTTCGTTTGTTTTGAGAAAGGTATGTCCTGAGTCTTGTGTTTGTGGTTTACTATTAGAGTGACTTTCGGGTATTGATGTAAATGTCCGTTTATTTATCAGCGAGGCCAACCCGACAGGACACAGGCACCAAATAGAAGAGACAGGGGGCAAATGCAAATAGGAAAGGAGGACATAATGTACATTTCAACTGATTAA ATGGAGGGGTTAATTTTTAGACTAAACCACTTCACCCTCCACATCACTCTCTCGCTCTCTTTCTCTCTTCCCGATTCCTTTCTCCCTCGGCCCTCTCGGTTCTTCTTCACACACGCCAGCGCCGCCGTGCCCTCCACTGCACGCTACCAACCGCCTGACGCGGCCGCTCCTGCTTCAATTCGACGGTATTTTCTTTCTCACTCCGTGGAATTCTCTCTCTACCGATTTTCCTTCCCCTTCCTCACTCTCTTCTCGATTCGTGATTGGGAAGGAGATTGGTACGGCATCCAGCACGTGATAAGATTTTTTCGGCCTGACACATTATTGGAGGGTTTGAGAAGCACCGGGATCAAGACGGTTTGGGTAACTATGAAACGAGGATACTCAGAATCCCCATCGGCATCTCTGGGGCCTCCACAATCCAGATTCAAGTACAACCCAGAAGGTGATGCTGAGTTCTTAGAAGATGAAAGCACCAAGATTTTTGCTCGGAAAGTCGCTGAACATTACAGTGCTAGGACGAATCAAACTTTGGAAGAGCGAGAAGCTAGTGTTATCATCCATTTAAAGAAACTTAACAATTGGTGTATTAAAAGTGTCTTGGTTCAGCTTTATGCTCGCCGAGGGGATGCTGTTCTTGATCTTGCCTGCGGGAAGGGTGGTGATCTTATCAAATGGGATAAGGCCAGAATTGGATATTATGTTGGCATCGATATAGCCGAAGGATCAATAGAAGATTGCCGTACTCGTTACAATGGTGACGCCGACCATCATCAGCGTCGTAAAAAGTTTTCATTTCCAGCCCGCCTAATATGTGGAGATTGTTATGAGGCAAGGCTGGATCATGTCTTAGCAGATGATGCTCCATTCGACATTTGCAGTTGCCAGTTTGCATTGCATTATTCTTGGTCTACTGAGGCTCGTGCACGACGTGCCTTAGCCAATATATCAGCTCTTCTCCGCCCAGGAGGTATTCTCATTGGAACCATGCCAGATGCTAATGTGATTGTCAAAAAGCTTAGAGAAGCTCAAGGCTTGATGTTTGGAAATAGCGTCTATTGGATACGCTTTGATGAAGAATATGCTGAAAAGAAATTTAGTGCTTCCAGCCCCTTTGGTATAAAGTACTTGTTTCATCTAGAGGATGCTGTTGATTGCCCCGAGTGGATTGTCCCGTTTCATGTTTTCAAATCATTGGCTGAAGAGTATGACTTAGAGTTGGTTTTTGTCAAGAACTCGCATGAATTTGTGCACGAGTACTTGAAAAAACCAGAATTCGTGGATCTAATGCGACGACTTGGTGCCTTGGGTGATGGCAACCAAGATCAAAGTACATTATCTCCGGACGAGTGGGAAGTGGCGTATCTGTACCTTTCGTTTGTTTTGAGAAAGCGAGGCCAACCCGACAGGACACAGGCACCAAATAGAAGAGACAGGGGGCAAATGCAAATAGGAAAGGAGGACATAATGTACATTTCAACTGATTAA ATGGAGGGGTTAATTTTTAGACTAAACCACTTCACCCTCCACATCACTCTCTCGCTCTCTTTCTCTCTTCCCGATTCCTTTCTCCCTCGGCCCTCTCGGTTCTTCTTCACACACGCCAGCGCCGCCGTGCCCTCCACTGCACGCTACCAACCGCCTGACGCGGCCGCTCCTGCTTCAATTCGACGGTATTTTCTTTCTCACTCCGTGGAATTCTCTCTCTACCGATTTTCCTTCCCCTTCCTCACTCTCTTCTCGATTCGTGATTGGGAAGGAGATTGGTACGGCATCCAGCACGTGATAAGATTTTTTCGGCCTGACACATTATTGGAGGGTTTGAGAAGCACCGGGATCAAGACGGTTTGGGTAACTATGAAACGAGGATACTCAGAATCCCCATCGGCATCTCTGGGGCCTCCACAATCCAGATTCAAGTACAACCCAGAAGGTGATGCTGAGTTCTTAGAAGATGAAAGCACCAAGATTTTTGCTCGGAAAGTCGCTGAACATTACAGTGCTAGGACGAATCAAACTTTGGAAGAGCGAGAAGCTAGTGTTATCATCCATTTAAAGAAACTTAACAATTGGTGTATTAAAAGTGTCTTGGTTCAGCTTTATGCTCGCCGAGGGGATGCTGTTCTTGATCTTGCCTGCGGGAAGGGTGGTGATCTTATCAAATGGGATAAGGCCAGAATTGGATATTATGTTGGCATCGATATAGCCGAAGGATCAATAGAAGATTGCCGTACTCGTTACAATGGTGACGCCGACCATCATCAGCGTCGTAAAAAGTTTTCATTTCCAGCCCGCCTAATATGTGGAGATTGTTATGAGGCAAGGCTGGATCATGTCTTAGCAGATGATGCTCCATTCGACATTTGCAGTTGCCAGTTTGCATTGCATTATTCTTGGTCTACTGAGGCTCGTGCACGACGTGCCTTAGCCAATATATCAGCTCTTCTCCGCCCAGGAGGTATTCTCATTGGAACCATGCCAGATGCTAATGTGATTGTCAAAAAGCTTAGAGAAGCTCAAGGCTTGATGTTTGGAAATAGCGTCTATTGGATACGCTTTGATGAAGAATATGCTGAAAAGAAATTTAGTGCTTCCAGCCCCTTTGGTATAAAGTACTTGTTTCATCTAGAGGATGCTGTTGATTGCCCCGAGTGGATTGTCCCGTTTCATGTTTTCAAATCATTGGCTGAAGAGTATGACTTAGAGTTGGTTTTTGTCAAGAACTCGCATGAATTTGTGCACGAGTACTTGAAAAAACCAGAATTCGTGGATCTAATGCGACGACTTGGTGCCTTGGGTGATGGCAACCAAGATCAAAGTACATTATCTCCGGACGAGTGGGAAGTGGCGTATCTGTACCTTTCGTTTGTTTTGAGAAAGCGAGGCCAACCCGACAGGACACAGGCACCAAATAGAAGAGACAGGGGGCAAATGCAAATAGGAAAGGAGGACATAATGTACATTTCAACTGATTAA MEGLIFRLNHFTLHITLSLSFSLPDSFLPRPSRFFFTHASAAVPSTARYQPPDAAAPASIRRYFLSHSVEFSLYRFSFPFLTLFSIRDWEGDWYGIQHVIRFFRPDTLLEGLRSTGIKTVWVTMKRGYSESPSASLGPPQSRFKYNPEGDAEFLEDESTKIFARKVAEHYSARTNQTLEEREASVIIHLKKLNNWCIKSVLVQLYARRGDAVLDLACGKGGDLIKWDKARIGYYVGIDIAEGSIEDCRTRYNGDADHHQRRKKFSFPARLICGDCYEARLDHVLADDAPFDICSCQFALHYSWSTEARARRALANISALLRPGGILIGTMPDANVIVKKLREAQGLMFGNSVYWIRFDEEYAEKKFSASSPFGIKYLFHLEDAVDCPEWIVPFHVFKSLAEEYDLELVFVKNSHEFVHEYLKKPEFVDLMRRLGALGDGNQDQSTLSPDEWEVAYLYLSFVLRKRGQPDRTQAPNRRDRGQMQIGKEDIMYISTD Homology
BLAST of IVF0003778 vs. ExPASy Swiss-Prot
Match: Q9LHQ7 (mRNA cap guanine-N7 methyltransferase 1 OS=Arabidopsis thaliana OX=3702 GN=At3g20650 PE=2 SV=1) HSP 1 Score: 644.4 bits (1661), Expect = 1.0e-183 Identity = 302/371 (81.40%), Postives = 338/371 (91.11%), Query Frame = 0
BLAST of IVF0003778 vs. ExPASy Swiss-Prot
Match: Q6Z9U7 (mRNA cap guanine-N7 methyltransferase 1 OS=Oryza sativa subsp. japonica OX=39947 GN=Os08g0180000 PE=2 SV=1) HSP 1 Score: 548.1 bits (1411), Expect = 1.0e-154 Identity = 270/373 (72.39%), Postives = 304/373 (81.50%), Query Frame = 0
BLAST of IVF0003778 vs. ExPASy Swiss-Prot
Match: O74880 (mRNA cap guanine-N7 methyltransferase OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) OX=284812 GN=pcm1 PE=1 SV=2) HSP 1 Score: 223.0 bits (567), Expect = 7.4e-57 Identity = 127/309 (41.10%), Postives = 182/309 (58.90%), Query Frame = 0
BLAST of IVF0003778 vs. ExPASy Swiss-Prot
Match: Q1MTD3 (mRNA cap guanine-N7 methyltransferase OS=Danio rerio OX=7955 GN=rnmt PE=3 SV=1) HSP 1 Score: 208.4 bits (529), Expect = 1.9e-52 Identity = 137/377 (36.34%), Postives = 184/377 (48.81%), Query Frame = 0
BLAST of IVF0003778 vs. ExPASy Swiss-Prot
Match: P0CO65 (mRNA cap guanine-N7 methyltransferase OS=Cryptococcus neoformans var. neoformans serotype D (strain B-3501A) OX=283643 GN=ABD1 PE=3 SV=1) HSP 1 Score: 206.8 bits (525), Expect = 5.5e-52 Identity = 122/305 (40.00%), Postives = 171/305 (56.07%), Query Frame = 0
BLAST of IVF0003778 vs. ExPASy TrEMBL
Match: A0A1S3BYZ2 (mRNA cap guanine-N7 methyltransferase OS=Cucumis melo OX=3656 GN=LOC103494970 PE=3 SV=1) HSP 1 Score: 761.5 bits (1965), Expect = 2.1e-216 Identity = 371/372 (99.73%), Postives = 371/372 (99.73%), Query Frame = 0
BLAST of IVF0003778 vs. ExPASy TrEMBL
Match: A0A5A7V904 (mRNA cap guanine-N7 methyltransferase OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold977G00540 PE=3 SV=1) HSP 1 Score: 761.5 bits (1965), Expect = 2.1e-216 Identity = 371/372 (99.73%), Postives = 371/372 (99.73%), Query Frame = 0
BLAST of IVF0003778 vs. ExPASy TrEMBL
Match: A0A0A0L829 (mRNA (guanine-N(7)-)-methyltransferase OS=Cucumis sativus OX=3659 GN=Csa_3G402470 PE=3 SV=1) HSP 1 Score: 752.3 bits (1941), Expect = 1.3e-213 Identity = 386/451 (85.59%), Postives = 401/451 (88.91%), Query Frame = 0
BLAST of IVF0003778 vs. ExPASy TrEMBL
Match: A0A6J1CCB4 (mRNA cap guanine-N7 methyltransferase OS=Momordica charantia OX=3673 GN=LOC111010374 PE=3 SV=1) HSP 1 Score: 738.8 bits (1906), Expect = 1.5e-209 Identity = 358/372 (96.24%), Postives = 365/372 (98.12%), Query Frame = 0
BLAST of IVF0003778 vs. ExPASy TrEMBL
Match: A0A6J1FQM6 (mRNA cap guanine-N7 methyltransferase OS=Cucurbita moschata OX=3662 GN=LOC111446362 PE=3 SV=1) HSP 1 Score: 734.6 bits (1895), Expect = 2.8e-208 Identity = 355/370 (95.95%), Postives = 363/370 (98.11%), Query Frame = 0
BLAST of IVF0003778 vs. NCBI nr
Match: XP_008454588.1 (PREDICTED: mRNA cap guanine-N7 methyltransferase 1 [Cucumis melo] >XP_008454592.1 PREDICTED: mRNA cap guanine-N7 methyltransferase 1 [Cucumis melo] >XP_008454593.1 PREDICTED: mRNA cap guanine-N7 methyltransferase 1 [Cucumis melo] >XP_008454594.1 PREDICTED: mRNA cap guanine-N7 methyltransferase 1 [Cucumis melo] >XP_008454595.1 PREDICTED: mRNA cap guanine-N7 methyltransferase 1 [Cucumis melo] >XP_008454596.1 PREDICTED: mRNA cap guanine-N7 methyltransferase 1 [Cucumis melo] >XP_016901599.1 PREDICTED: mRNA cap guanine-N7 methyltransferase 1 [Cucumis melo] >XP_016901600.1 PREDICTED: mRNA cap guanine-N7 methyltransferase 1 [Cucumis melo] >KAA0063467.1 mRNA cap guanine-N7 methyltransferase 1 [Cucumis melo var. makuwa]) HSP 1 Score: 758 bits (1958), Expect = 1.70e-274 Identity = 371/372 (99.73%), Postives = 371/372 (99.73%), Query Frame = 0
BLAST of IVF0003778 vs. NCBI nr
Match: XP_038898964.1 (mRNA cap guanine-N7 methyltransferase 1 [Benincasa hispida] >XP_038898965.1 mRNA cap guanine-N7 methyltransferase 1 [Benincasa hispida] >XP_038898966.1 mRNA cap guanine-N7 methyltransferase 1 [Benincasa hispida] >XP_038898967.1 mRNA cap guanine-N7 methyltransferase 1 [Benincasa hispida]) HSP 1 Score: 748 bits (1931), Expect = 2.20e-270 Identity = 366/372 (98.39%), Postives = 367/372 (98.66%), Query Frame = 0
BLAST of IVF0003778 vs. NCBI nr
Match: XP_004151971.1 (mRNA cap guanine-N7 methyltransferase 1 [Cucumis sativus] >XP_011651453.1 mRNA cap guanine-N7 methyltransferase 1 [Cucumis sativus] >XP_031738161.1 mRNA cap guanine-N7 methyltransferase 1 [Cucumis sativus] >XP_031738162.1 mRNA cap guanine-N7 methyltransferase 1 [Cucumis sativus] >KAE8650676.1 hypothetical protein Csa_011400 [Cucumis sativus]) HSP 1 Score: 741 bits (1913), Expect = 1.17e-267 Identity = 365/372 (98.12%), Postives = 368/372 (98.92%), Query Frame = 0
BLAST of IVF0003778 vs. NCBI nr
Match: XP_022139445.1 (mRNA cap guanine-N7 methyltransferase 1 [Momordica charantia]) HSP 1 Score: 736 bits (1899), Expect = 1.65e-265 Identity = 358/372 (96.24%), Postives = 365/372 (98.12%), Query Frame = 0
BLAST of IVF0003778 vs. NCBI nr
Match: XP_022940918.1 (mRNA cap guanine-N7 methyltransferase 1 [Cucurbita moschata] >XP_023524710.1 mRNA cap guanine-N7 methyltransferase 1 [Cucurbita pepo subsp. pepo] >KAG6607835.1 mRNA cap guanine-N7 methyltransferase 1, partial [Cucurbita argyrosperma subsp. sororia] >KAG7015233.1 mRNA cap guanine-N7 methyltransferase 1 [Cucurbita argyrosperma subsp. argyrosperma]) HSP 1 Score: 731 bits (1887), Expect = 1.11e-263 Identity = 355/370 (95.95%), Postives = 363/370 (98.11%), Query Frame = 0
BLAST of IVF0003778 vs. TAIR 10
Match: AT3G20650.1 (mRNA capping enzyme family protein ) HSP 1 Score: 644.4 bits (1661), Expect = 7.3e-185 Identity = 302/371 (81.40%), Postives = 338/371 (91.11%), Query Frame = 0
BLAST of IVF0003778 vs. TAIR 10
Match: AT3G20650.2 (mRNA capping enzyme family protein ) HSP 1 Score: 637.5 bits (1643), Expect = 8.9e-183 Identity = 301/371 (81.13%), Postives = 337/371 (90.84%), Query Frame = 0
BLAST of IVF0003778 vs. TAIR 10
Match: AT3G52210.1 (S-adenosyl-L-methionine-dependent methyltransferases superfamily protein ) HSP 1 Score: 89.7 bits (221), Expect = 6.9e-18 Identity = 76/282 (26.95%), Postives = 127/282 (45.04%), Query Frame = 0
BLAST of IVF0003778 vs. TAIR 10
Match: AT3G52210.3 (S-adenosyl-L-methionine-dependent methyltransferases superfamily protein ) HSP 1 Score: 87.8 bits (216), Expect = 2.6e-17 Identity = 74/282 (26.24%), Postives = 124/282 (43.97%), Query Frame = 0
BLAST of IVF0003778 vs. TAIR 10
Match: AT3G52210.2 (S-adenosyl-L-methionine-dependent methyltransferases superfamily protein ) HSP 1 Score: 80.1 bits (196), Expect = 5.5e-15 Identity = 67/234 (28.63%), Postives = 106/234 (45.30%), 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 Position : 0 Zoom : x 1
Relationships
The following mRNA feature(s) are a part of this gene:
GO Annotation
GO Assignments
This gene is annotated with the following GO terms.
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