IVF0024364 (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.ATGGCGACAGATCATGGGTCCACCGCCATAAAGGTCCTCGAGATCTGCACGGTAGCTCCTCCGCCCGGATCCACCGTGCCGGCCACTCTTCCCCTGACCTTCTTCGACATCCTCTGGTTCCGCTTCCCTCCCGTTGAACGCCTCTTCTTCTACAAATCTCCGGTGCCATTCCACGTCATCGTTTCAAACCTCAAAAAATCTCTCTCTCTCGTCCTCCAACACTACCTCCCCCTCGCCGGAGCAATCGTCTGGCCGGAAAATTCCCCCAAACCGGCCGTCGAGACCGCAGCCGGCGACGGAATTGTGCTTACAGTCGCGGAGTCCGACGACGTCTTCGACCATCTCGTCGGCGACGGGTTGCGTGAAGAGGCGAAACTTCAGCCGTTAGTGGCGGAGCTTGCCGCGGAGGAGGAGCGGGCAGCGGTGGTGGCTGTGCAGGTAACTTGGTTTGGGAATGGTAGATTTAGCATCGGAATAACTTCACATCACGCGATTCTGGACGGAAGGTCGTCGACTTCGTTCATGAAATCGTGGGCCGGATTATGTAAGAATTTGGTTGGGGGCGGTGACATTTTTTTCCGGCGGCTGAGACGATGCCGTTTTATGATCGCAGCGTGGTGACCGACAACGTGGGACTTGAAGCCATTTATTTGGAATGCTGGTTGGCCCATGAAGGACCCAACAATAGAAGCTTGAAATTTTGGGACGTCAAAACTCCGCCAGATTTATTCCGAGGTAAACAATAATATCTATAATTTATTCAAGGTTGAATTATAAAAAAATACCCATAAATTTATGTATCAAAAATATGAATGAAATTTCAAATTAATGAGTTCAGAAAATATCAGCTTAGTTTTTAGTAGAAATCCTTACAAATACTTTTGAATTTTCAAAAATTTAAACATAATCTTAACCTAATAAAAGTTTAAAAAAAAATAATAAGAAAAAACCGTTAATTATTCATAGTAACAAAGAAAACTTTTAAAAATAAAAAATGTTTAAAAAAATTGATCAATTTATTTGAAGTTTTTTTAAATTAAAAAAAATAATTTAAAACAATTATATATATAGATATCTTCAAATAATCTCATATTTCTCTTAATTTTTCAATTCTTAGTTGCATCTATTTTCTAAACCATTAAAATAAAATAAAATTTTTAAGTTAAAACCAACATGAAATAATCTCACAAATTTCAAAAATCAATATCTCCTCATAAAACATATCAAAATGATAAAAAGTCAAATAAAAAAGTATTTATCTATTAAAATGTACTCAACTAAAAAAAGTACAATTTTGTTAAAATATTTTAGTCTTGAAATCATTTGGCACCTTCTTTTTATTATGTTTTTCTCATATTGTAGTTCATATACCCTAATTAAAGTGCTCAATCTTATTTTATTTCTTTATTTATTTTAGATAAATAAGTGTCAAATAATTTTTTTTGGAAAAAAAAAAGGAGTAGGACATTGAGGAAGGGGTGAGAAAAATATGGAAACAAAGACATCATTCAGGATTATATGTTTTTATTGTTACAGTAGCGAGAGTATTTTTTTTTTAAAAAAAAAAAAGAAATCTTAAATTTAGAAGATTTTTGAAAGTTTAGAAAGTGTAGGACATAAAACAACAACAAATTCCTTGAAAAACTAACAAGGGGATACCTTTGAAAATTTTGAAACTTTAGTGACATTTTTTACCAAAAGTGTAGAGTTCACTTATAATTTATAATTTTGCCTTCATTTAATCAGAGCAATAATAGTTCAGGTACTAATTTAAATGATTTTAATAAATCATTTCACTTGCAGGAGATACTCAACCACATAACGGTTGAAATTGAAACTTAGTTATAGATAATAGTATTCAAAATTTAATCACGTTCTATCGTTATATGTTTAGTCTAATGTATAAATTCAATTTTCTATTTTAGTTTTTATTTTTGTTCTTTACAAACAAACTATTAGTGTGGTTTTTTTCTTATGGCAAAGGTAGGAGTTAGAAGTAAATTATATTTTGGGTTAGATTACATGTAGTTAGTATTCATTTGAAATACACTTTTAGGTCTTTTATTGATAAAATAAATAGTTTCAAAAGAAAATTAGAATATTTGGTAGTCAAACAAAACATACAAAACATTTTTAAAGTATATTTTAAATAATTTTTATTAAAAAAATTAAATAAAAATGAGTTTTTTTGAAGAAAAAAAATTCTTAAATCAATCCGATTAGATGTTTCATCTTTGAAGGTTTGGGCATATGTATAGTAGGTCCCTAACCTATCCATTGTGTACTCGATCGGCCCATGCACTCCCAAATTTGTTTTTAATATAATGATCCTTGACAAATTAAATGCAATATTTTTACTTTCTTAACTATAGTCTATTATATATGTGTGAGATTGTGTGTGAACCTCTTTCAATTTTGTAATTAATTATATATTTTTTTAAAAAAATTGAAGTAAAAAAAAAAAAAAAAAAAAGACTCAATTTGTACATAGAAAATTTAGGAACTAAATACTATGTACCAAATTTTAACTATTTTTGTTAGTGCTAACACAAATATGGTGGAACTTGGAATAATAATTCAAACTATAGAATGCTAAATACCTTGAGTTATTTTGATATGAACACTTCTTTTCATATTCATCCTCTAATTATGGAAACTAAGATTTCAAAATTTTTTGAGATCCAAATATTGTAAGATTGTTTACAAAATCACTAAGTTAAGCTAAAAACATGTAGTTTAGAAAATGTGTATTTCTAGAAAGTATAAATTTAAAAATTAAAAGAAAATGCATTCAACACAAAATATAGAAAAAGGTTAGAAGAGAAGTGTGAAAAAAATGTATTTAATTAGGATAAAATAGGCCCGAGGTATTCAATAGGGAAGCAAAATAAGATTTTGTTTCCCTTTTATGGTAGGAGAGTAGGTTTCAAGTTCGACCTTGAACACCAAAAATCATATTATTATCACTAAATCAAACTCACTTCTAGATATAAAATGAGAAATAATAATAATAAGAAAAATTTGCATAAAACCCCTAAGCTATGCGGTTGATTGCATTCATACCCTCCGACTTTCGTCCCTAGAGTTTGTTAATGAATGCAATTAACCTCTTTCTTGAATGAATCTTTATTACTTTAACTGTGATCAGACATTTTAAAATTTAAAAAAATAAAAATAATTTCTCATCTCACATCTTTTCCTCCCTCCTCCATCTTTTCCTTCCATCTACGTCTACATCTACATCATCAAAGAAATCTTGAAACGACACTATAAAGTAACTTCCTAAATCTTATTATCCAAATTTATCTCTCTTTTAGGTGCACTTTTTGTGCCTTCCCAAGGCTTGACAACCATTGTAGAAACCACTGTCACTATTGCCATCATCGCAACTTTCGTTGCTGCAGAGGCCATTGCTGTCTCTTCAAAATTTAACCCTTAATCGCCCTCTTTTCCTTCTTCTTCAACCTTTCTCCAAACTCCATCTCTATCTTCTTTCTGATGCAACCGATAACTTTTGTACTCTCTTTCATCGCGTGTTTTCCTAATTCAATAAAATGTTCATGCTTTTTATAAAGATATAACCCTTTATATTAAACTGAGTTCATTACTACTAAAATTAATTAAAGACTTTTTTTTTTATTGAAGATGGATGAGAACACTAAACTTTCATTGAAAACTTCAAATAATCATTTATAAATCATAAATAATGTATAGAAATAAAAGCTAGAAGATAAAATTCTAGATCAGATCCTATCTAACTTTGAAATAAAAATAATATAAAATAATCTATGAATTTGATAAATTCAAATAAGAATACAAAGATCAAATACAAAGAAAAATGTGAAAGGCAGAAGCAACAAAAGTCCTCTATGGCAAGTCGCAGCCACTTCTTGTTATTCGCCAAGCTTTCTTCTACCTCTATCTCCGCCTGAAAAATTAAACATAAAAAGAGTTAGTATAAACATATAGTCAGTAAGAGACCCACTACTAGTCCCGCTAGGTGTCTATTAACTTCCCACTAAGGTCCCGTAAAGAAGTACCTAAATACTAGCATGCTCCTAAACACATGCAATCTAGTGATCATGTAGGAACACATTATTTATGAAGGGTGAACTCGAAGGAACACCTGGGAGAAACTGGTCTTCGGTGAACCCGAAGGAACACCTAAGAGAAACTGGTCTTCAGTGAACCTGAAAGAACACTTAAGAGAATCGGGCTGTAAGTGACCCCATTAGATCACTCATAAAACATACCATGACAGACTTGTGGTCTCGTCGAACCACACAGTCATGAAAAGGTAATCCCGAGGGACTCTCATATGGGTACGACATTAATAAACAAAGTTAACAGAACACTTACCCATAGCATGTAGCATATCATAAACATCATAAACATGACATTAATATCAATCATAACGTCCTTAATCATGCGATTAATATATCATGTATCATCATCAACATAATATTAATCATCAATATCAGTCCGCACTATCAGTTATCAAAATAAATCATCAACATCAACACATTATGCATCTTAACTACATTAATGCATAATTGAAATTTACATGCAAGCTCTTAACTTCAGTTCGAAGGTCTAGAAGAGAATCTCTTACATCAATATTACCTTAACCAAAATTATTTCTAACAGTTACGGTCAAGCTTTCTAAATAATAGGACCTAAACAACAAAGGAACCCAATAACTAAAAATAATAATTTTTAATGATTGACTAATGACCCAAAAATCATTTTAATTCAACTTACCCAAAATCGAGATTGAATTCCAATTCAACCTTGATTTGGAAAAATTCATATATAGCTTAGTTCTTCCAATTTAATCTAGCCAAACCTTCAAGAAAAATTCCAAATTAAAATCCAACATTAACTTTATTTAGGACCAAAATCAATATTTGTTAGGCATACCTAAAATCCAATCAAATACTCACCAAAACTTACCAAAACTTGCTCAAAATAGGTGGAAAAATGCAAAATAATGTTGGCAGCTCGACTAAGCAAGGAGCGGCTCGAATCTGGCTTAAGTCTATATGTGCGGCTTGGAGTAGGGGAAATTAGGTCGAGCTCAAAGGAACGGCTTGCACGCGGCTCGCGAAAGGATTTGGCTCGATTTAGTTTGCACGTACGACTCAGATAAAGGAATAGGGCTCGACTTAGCTTGTGCGTGCAGCTCGAACAGAGGAGGGATGTGACGGTCGAGCAGAGGCGAGTGAAGACAATCTGATGCGTGGTAGACGGGTTGACGGAGTTAGTGGTGATGGACAGAGACGGGTGACACATACAGCGAGGCAAAACAGCGTGGAACAACTTAGACTTCGATGATGCTTGCGACGTAGAACAAGAAACGATGGGGTTAAGCTTCACGGTGACAAATGAAGAGAGAGATGACTGATAGCATGATGAAAACGATCAGAGATGGACGACGGAAAGAGTGGTGACAGCAGTGGAGCTAGGATTTTCCAAGGAAGGAGAAGATAAATGAGGAAGAAAATGAAGTGCATGCAAACCAAGAAGGTCTTTTTAAAATAATAATAATATTATTATTTTACTTTATCTTTTTACTTTTACCTTTTCAAATGAAAAACAAACCACTCTCTTTCCTCATTTAATCCAATCCAATCAACTCCTTCTTTTTCCAAAAATAAAATAACAATTAGATCTTCTCTCTCCATTTAATACCCATCAAATCATCTTAATATAATTATTTTTCCATTCCTTTAAAACTAATTTATTAATTAATTAATTAATTAATTATATATATATATATATATATATATATATATAATGAATCAAAATCATTAAATCTCACAAAATTAATTAACCAATATCAAATCCTTAATAGCATCAAATTCCTGATCTTCAAATTAATTAAATATTCTTCCAAGTAAATATTTAATTAATTAGAATTTCCACAAAATCAACCAATTATCTCAAAATAATACCTCAATAATTCCAACATCTCTTTGTTATTTATTTGATGATCATTTTTTAAGAGGAAAGAGATTTAAAAGATTAAAAGCAAATAAAGCAAATGAAACAAAATGAGAGAAAGGAGAAGTGTAGTGTACCAACCATTTTTGTTACTCACACTTGTTACTAAAATAAACGCCTCTATTTATAGGCGAGGGTTGATGTGACAGTACATTCTACACTCCATTAATTCTTCTGATAAAGTTGTGTTGTCGATGCCGCAGATGTTCTTTTGTCCTTTTTCTAACATTCGCGCAAACCATTTTTGTTTGCTAGTGCTTCAGATCGCCTAGCTTGTTATGATCGCCACCTTGCTAGCTGCACGTGTCTCCTCGCGAAATGTAGATTGTCAAGCTATACTTCTTTTTGCATAAAAAAGGGAGAAAGTTCTTTTGTAGTTCGTGATGCATAACTTGATCGATTCTCCGACTTTTCTTCGCGTTTTCTTCCAATCTTATGCATTAAGGCTTCATTATTTTACATAAAAGGTTATAATAACTTGTATTTCTACAAGTTATCAAACATAGAACTTACACATCTAGCAGGAACTTAAAACAAACTTTATATAATAATTAAGTGTAGCCCATCTAAATAATCAAGTACAATGAGTTTGTTATAAACGAATACAAACTAGAGTTCATATGAGTCAAAGACTAATACTTACAACAAATAACTTACAAACTATAGCTAAACTCAAGTACAGACCATAAGTACTTCTAGAACAAGGCATACTAGTATGAAACTCAAAATGCACTAGTAGATAGACGGATGAAGTAAGGTGTCAGGTCCATGATCTCTACCTGAAAAGTAAGAAAACGTTTTTAGAAAGAGTGAGCTAAAACTCAATCGTTGACTAGCTTTTAAATCCGCAAATCAATGTGTAGTAAACAACTTATCAAATACATTTTAAGTAAATCAAATACATAGTTCTCAAAATTAAACAATTGTGTCAAACATTTCTCTTTCACTTCCTATATCTTGAATCTTTGTACTTTACAAGAAAAAATTTTAGGCATCAATAGCGCTCTATCTTGTAATGGCTACTATGAGATGAAAAATCTAAGCATTTGTAGAATGCCCTCATCTTTACCTAGTCATAGTGATAGGTTTCTAGGCATCTATTGAATACCCTCATCACAGGACCTCTGTGCACAGGAAAAACTCCCCTGGCAGGGTTGCCACAAATCTCTAGATATATCTTAGGTATAGACTAAAACATGCTCAAAACATTTCCTGCTTAAAACATTATATCAAATTAAAACAACATGTTATATAAATCTCTTGCATTTAGCAAGTCTTAAATCTGTAAAACAAGCTTTATTTAAACAACATTTAACCTAAATACTTTCAGAAACTCAGCATCCATATGCTTGCCCATAAATTAATGTATAAAAGATACATTCTCAATAAACTTATTAGTCAAACTCATGTTTTTCAAAATTTTCTAAACTTGAAACTTATGCTTTGGAAATCTAACTATTTAAATCAAGTACAATTCTGAAATATGTTAACTCAAAGCATGCTTTAAACATAAACTTAGTAAATCCTGTTTAGGAATCAATTTCAAATTGATTTTTCTCACTCACAGGTGGTAGTTAATTCCTTGTCCTATAATTTTTTTTCAATCTCCTCTTGCCTTGAAATTAGTTAATTTAAACTCATTTTAGACCTTTAAAATCAGAAAACATCAAAACTTAGCCCAAAACTCACAAAAACACCAAAATTGCTAAAAAATGGTGTTATGGCACGACTAACTGTTGAGCATGGGCGATGGGTAGCATGTACAAGCACACAAGTCTATCCCAGGTGCTTGGCCATGTGCTAGCTTAGCACGCCCCACAGTCGCATGACACTGTACTATGCCCCATTTTACATATGCATTCGGGCACCTTTGAGCGCACATGGCCTGTTGCATGGCCTAGGCGCGACCCCATATTTTAAAGACCTTTACGACTCACAAGGACTTGGTAAAGGAAGGAGAAGATTTGAAAAGAAATTCTAAGAAAAACTTATTATGTAACAAGATTTAAGTGACATGGCTAAGGAAGAGGAAATTTTTGGTGAAGTGTTAAGAAAAGAATGCTGGGAGGTTATGTGGGCGACCACAAGAGGAGTAAAAAAACTCTATGAAGGTGGGCAGGCATTATTAGCATGTATAGATGGCCCAGGCTTGATTGCTATGGCTTAAACGAGGAGAACCTCTAAAGACATGTAATAGGCTGCCAAATGAGCTAAGGTAATGATTTGTAGATTTGTTGGTTACTTTATGCTTGACTTGTTTAATAATAAATTCATTAATATGTCATTGAGACTTTATGTCTGCGACTACGCTACGCAATAAGACATGATTGTCATATACAACATGCTCACTATATCTCTAAGTGAGGATTGTGCAATAAAAGGTACACATCCTTTCCACACGTGACTAGTACTCCTGCATTAAGTACAAGTTTTCCTATCGCTTGCTCAAGTGTAAGTGAAGCGATATGTTTCTTGGGTAAGTCAAGGTCGCACACAGGGAATTGCTACCAAACTTAGTTATAATGTTTACTTCTTTCCAAGCGGTGTAAATATCCATACAGTATAAAGTGTGTGTAAATGTGTATGTGTGTATTAAATCTACTATTTACACTAGAGATTCTGTAGAAGGTGATGTGAAATGGTATGAATATGGAGAATGAACTAACTTGCACTAAGAAAATATGAAGGAAACTCTCTGCGTTATAGGCGATTAAGTCATGCGACTATCCTTGATGTGATAGAGATTACATACCCAACTTCTAATTTAAGGTAAGCACCTCTCGATGCTTAAAGGCCACACTTGTTCACCTCTCAGGATACAAATGGTAAATATGAACTATGTGATAGCTATCTAGATTTCACTATTTATAAGGGTCATATTGCTTCTCTTTTAAGGTGGACAACCTCTCACCGTCAAGATACAACACTTGTTCTCCTTTCGAGACACAAATGATGGAGGTCAATTGCCAAAATGGATTTTGTTTCCAAACTCCTTCTAGTATGCGTTTAACTATGTCTTTGTTATTTACTCTATTGAGTAGTTGGCAATAAACGTTAGCCAAGCAATGAACCTTATAAGTGCTCTTCTCAAGCACTTATCATGAACTTAAACTACTTATAACCGTTCAGCAAGATAAACAGTAAAGAAGTGACATAATGGCAATGAATATAAATGCAATGTGTTGATTGAATTAAGGCTTTCAGCCATTGAAATGTACAAATGTCAAAACATTACAAAGAAAGTACAAAAATAGAATGTAAAGAAGATTAGTTGAGTTGCAAAATGCCTTATGAGCATCCCTTGGCTCTTTTACAAGTTAGGAGGAAAAATGGTGGTTTCTCTCTCTAATCTCACTTTATGCTCTCACTCAGAAGTTGATCGGAGAAGAGGAGAAGAGGGAAAATACTTCTACAAAAGGGGAAAAACTACTCTTTTTTGACGATACTACTCTTTTTTTACGACCCTTAGGAAGATAGATCTCTCTAGAGCTCTCTAGTTCTTAGTCCATGCAGACCTCCTTTACATGGTGAAGATGGAGGTGTTTTATAGGCAACTTTGGGCTAGAAGCTTCTATTCCTCTACACATTTCAGTGCCAAAAAGCAGACTTGTCAAGTCACATCAACTCCAACTACCATTCTTGTCTTCTTTAGTGAATCTTTTCGCGTGATGATGTGACATATTGCCTAGTAAAGTTAACCGTCAGGCAACCTTCCTAGTTTAAGCTTTCGCAGGCATTCTTCTTACGATTCATTATAATTCTTATTTTCCTCATTATTTGCAATAGAAGCACTAAAATCATGAAAAACAGGTGTGGAGACTTATGTAAGTTATATTCTCTTATCTTTATGAATTTGCAGTAAAAGCTACGTTTTAACACTTTGTCCTATGTTTAGACTCCATTGTTTTACTTAAAAGACCATAATAACTTGTATTTCTACAAGTTATCAGGTAATCTCTAAAATACACATTTTAAGCGGTCAATGGTCGATGGAGAACCTCTAGTGCTAGGCAAGAAAGGCAAGATTGGGCAACCACATATTGAGAAATAACCTCTAAAGAAGTCATGGGGAGAAAGAGGGTGCTAGGTAAAATGATTGGTTAAGAGGTTAGCAAGGATTGGTAAGGGCTATGCTAGAAGATTGTTGACAGCTAGGCCAGATGACTTACTAAGAGGTTAGTAAGTGTGGAAAGTAGGCGGCCAAGAGCTAGGCGAGGAAGTTGTGCACGCGAGGAAGCTTATGACCATTGAGATTAGCAAGGCATTTGAGTAAGCAATGTGGTTGGTTATGGTTAATCGATTTAATAGAAATTCAGGTGTCTTAAGCATGTTTCATGCATTTTGTAGATAAGTAGGAGGTGATTAAGTAGCAATGTGGAATTAGGAGGCTGATTAAGGAAATTAAGAGGCAAATTAAGGAAGTTAGAGGTGTCAATTCAGTTTCATTCAAGGGTTCATCATAAATAGGCAATTTCAGACAAGGATTTCTCACAATCCACTCGTGCCATTTGCTTTAAATTACTTTCAAAAGTTCACAAATTGAGTCTAGTTTCTAGACTAGGGCTACCAGACAAATTTAAGTTGAGAAGGATTTAGTTTGAGTTGAAGAAATAGAGAAATGTCAGTTTTCTGGGCATTTTAAGTAAGGTGCACTTTTCGAAAGCCATAAAATGCATCTCTTGGAATTTGTAGATAAAATTTTGAGGTCAAAAAGATCTTAAAGAAAATTCTAAACCAAGGGCTAACAACAAGTGTAGTGAGTGATTAAATGATTTCTATAATGTTTCTTAAAGCATGATTGATAAGTTATTGCTTAAAGCATGTTTCAAGAAAAATGTTTAGGATTACTAATTTGCTATTGAGTTTGCTAAAGTTCAATGTTCAAGTATTTACAAGTTGATTTCCAAAAGACTTAGGTTCAACTAAATTCTATAGCTATGTCGTCAAAACTATGTTTCAAGGTTTTCAACTATGTTTTATTGTAGCCAAAATCTTCCATGAGTCCTATTGTACACCTTCGTACTGATAGTAGGATTGATAAGTCTATTTTAACTATGAGCCATCAAAATAGATTTAAATTATTATGCCTTAAAGTAGGAGGATACCAGTGAAAGTTATTTCATATCGACTATATCGTCTTAGGACGAAGAGGTTTAATACTGCATATAGCTATGAATCATGTCTTCCAAAAGCTCTATGCCATGTTATTCAAAGTTCCAATATTTTCAAGTACCATACTATGAAATGAATTTCTATTGTTTAATGATTACTAAGTCAAGGTTTCATGCTAAACCGTTTATGAAAATACATTTCATAAAACCATCACTCACTAAGTCTTTTGACTTACTCTTTCAAAATAAACTTAGGGATGAAAAAGAAATAAATACTAGTGACAAAAAAATTAATCTTATATATGCTAGGGGCGTACTTGGGTTTGGTTTTGTTGGGTCGGGTTGAAGTTATTTTTTGGACCAACTCGAAAATTTGGGTTAGTTGGATTGAAAACCTAAAAGACCCAGACAAAGTCTCTAACCCAATAACCCAACTCTAGTTGGGTTATAACTTTTTTTTTTTAATTTTAAATATTTAAGTTTATCAATAACACATACAATTAATAACTAAAATCTCATTTAAATTCAAATATAGAATACCAAATATGTATGATATTTAATAGAAACTTCAAACAAAAGACAAATGTCATAACGATTCTAAAAGAAAAATAATAAAAATTCACAAATAGATTAATTTATATTTACATATTATCTAATATCTATGTAATTCGAATTAGGTTCGATCAACTCAAGCATAATTTTTTAGTTCGAATTAGGTTCGATCAACTCAAGCATAATTTTTTAGCCCCCTTACAACCCAATCCTACTTGATGAAAATAGAAAAATGTTTAAGCCAACCCAAATTTTAGGTTTTAGAGGGGTAGTCCACAAAGTATTTGAAAACCCCTATTATATGCAAAGTCCATAAGCACCACCGACATATAAAATAGGAATTCTGAAGTGTGGTTTTGAATGATTGTGGTAATGTAATGTAATATTTGAGAAAATAAATTGTGAATTGGTCGTTGAAAGGCACATTCAAGTTAAGTCCCCAAGATATCCAAAAACTGAAGCAACATGTACTCAAACACCGGAACCCGGTCAAACCGCCGCCACACATCTCCACCTACACGGTGGCGATGGGGTACACGTGGGTGTGCGCCTCTGCCGTGGCTGACGAGGAAATTAGCATCGGAGTGACGATGGACGCCCGAGGGAGAGTCTACCCACCTCTACCGGCGACATACTTTGGGAACTGCGTGGTGGGGAGGTCAACCGCCTTGGAGAGGGGGAAACTGTTAGGGGAAAACGGAGTAATCGCCGCGGTGGAGACGATATCGGAGATGATTAAAAGCTTGAAAGAAGAGGGACCTTTGAAGGGCGCAGAAAACTGGGTTTTGTTGATGACGCAAACCGTTGTAAATAACGATTACAAGCTGATTTCCACGGCTGGATCGCCGAGATTTGAGGTGTATAGCGTGGATTTCGGTTGGGGGAAGCCTGAGAAGGTGGAAGTTGTGTCGATTAACCGTACCGGAGCGGTTTGTATCTCGGAAAGCCGAAACGGCGGCGGAGTGGAACTTGGGTGGACGGCGAAGAGGGATGTTATGGAAAATTTCGCTAAGCTTTTTGCTGAAGGTCTTCAACAACTTTGA ATGGCGACAGATCATGGGTCCACCGCCATAAAGGTCCTCGAGATCTGCACGGTAGCTCCTCCGCCCGGATCCACCGTGCCGGCCACTCTTCCCCTGACCTTCTTCGACATCCTCTGGTTCCGCTTCCCTCCCGTTGAACGCCTCTTCTTCTACAAATCTCCGGTGCCATTCCACGTCATCGTTTCAAACCTCAAAAAATCTCTCTCTCTCGTCCTCCAACACTACCTCCCCCTCGCCGGAGCAATCGTCTGGCCGGAAAATTCCCCCAAACCGGCCGTCGAGACCGCAGCCGGCGACGGAATTGTGCTTACAGTCGCGGAGTCCGACGACGTCTTCGACCATCTCGTCGGCGACGGGTTGCGTGAAGAGGCGAAACTTCAGCCGTTAGTGGCGGAGCTTGCCGCGGAGGAGGAGCGGGCAGCGGTGGTGGCTGTGCAGGTAACTTGGTTTGGGAATGGTAGATTTAGCATCGGAATAACTTCACATCACGCGATTCTGGACGGAAGGTCGTCGACTTCGTTCATGAAATCGTGGGCCGGATTATGTAAGAATTTGGTTGGGGGCGGTGACATTTTTTTCCGGCGGCTGAGACGATGCCGCACATTCAAGTTAAGTCCCCAAGATATCCAAAAACTGAAGCAACATGTACTCAAACACCGGAACCCGGTCAAACCGCCGCCACACATCTCCACCTACACGGTGGCGATGGGGTACACGTGGGTGTGCGCCTCTGCCGTGGCTGACGAGGAAATTAGCATCGGAGTGACGATGGACGCCCGAGGGAGAGTCTACCCACCTCTACCGGCGACATACTTTGGGAACTGCGTGGTGGGGAGGTCAACCGCCTTGGAGAGGGGGAAACTGTTAGGGGAAAACGGAGTAATCGCCGCGGTGGAGACGATATCGGAGATGATTAAAAGCTTGAAAGAAGAGGGACCTTTGAAGGGCGCAGAAAACTGGGTTTTGTTGATGACGCAAACCGTTGTAAATAACGATTACAAGCTGATTTCCACGGCTGGATCGCCGAGATTTGAGGTGTATAGCGTGGATTTCGGTTGGGGGAAGCCTGAGAAGGTGGAAGTTGTGTCGATTAACCGTACCGGAGCGGTTTGTATCTCGGAAAGCCGAAACGGCGGCGGAGTGGAACTTGGGTGGACGGCGAAGAGGGATGTTATGGAAAATTTCGCTAAGCTTTTTGCTGAAGGTCTTCAACAACTTTGA ATGGCGACAGATCATGGGTCCACCGCCATAAAGGTCCTCGAGATCTGCACGGTAGCTCCTCCGCCCGGATCCACCGTGCCGGCCACTCTTCCCCTGACCTTCTTCGACATCCTCTGGTTCCGCTTCCCTCCCGTTGAACGCCTCTTCTTCTACAAATCTCCGGTGCCATTCCACGTCATCGTTTCAAACCTCAAAAAATCTCTCTCTCTCGTCCTCCAACACTACCTCCCCCTCGCCGGAGCAATCGTCTGGCCGGAAAATTCCCCCAAACCGGCCGTCGAGACCGCAGCCGGCGACGGAATTGTGCTTACAGTCGCGGAGTCCGACGACGTCTTCGACCATCTCGTCGGCGACGGGTTGCGTGAAGAGGCGAAACTTCAGCCGTTAGTGGCGGAGCTTGCCGCGGAGGAGGAGCGGGCAGCGGTGGTGGCTGTGCAGGTAACTTGGTTTGGGAATGGTAGATTTAGCATCGGAATAACTTCACATCACGCGATTCTGGACGGAAGGTCGTCGACTTCGTTCATGAAATCGTGGGCCGGATTATGTAAGAATTTGGTTGGGGGCGGTGACATTTTTTTCCGGCGGCTGAGACGATGCCGCACATTCAAGTTAAGTCCCCAAGATATCCAAAAACTGAAGCAACATGTACTCAAACACCGGAACCCGGTCAAACCGCCGCCACACATCTCCACCTACACGGTGGCGATGGGGTACACGTGGGTGTGCGCCTCTGCCGTGGCTGACGAGGAAATTAGCATCGGAGTGACGATGGACGCCCGAGGGAGAGTCTACCCACCTCTACCGGCGACATACTTTGGGAACTGCGTGGTGGGGAGGTCAACCGCCTTGGAGAGGGGGAAACTGTTAGGGGAAAACGGAGTAATCGCCGCGGTGGAGACGATATCGGAGATGATTAAAAGCTTGAAAGAAGAGGGACCTTTGAAGGGCGCAGAAAACTGGGTTTTGTTGATGACGCAAACCGTTGTAAATAACGATTACAAGCTGATTTCCACGGCTGGATCGCCGAGATTTGAGGTGTATAGCGTGGATTTCGGTTGGGGGAAGCCTGAGAAGGTGGAAGTTGTGTCGATTAACCGTACCGGAGCGGTTTGTATCTCGGAAAGCCGAAACGGCGGCGGAGTGGAACTTGGGTGGACGGCGAAGAGGGATGTTATGGAAAATTTCGCTAAGCTTTTTGCTGAAGGTCTTCAACAACTTTGA MATDHGSTAIKVLEICTVAPPPGSTVPATLPLTFFDILWFRFPPVERLFFYKSPVPFHVIVSNLKKSLSLVLQHYLPLAGAIVWPENSPKPAVETAAGDGIVLTVAESDDVFDHLVGDGLREEAKLQPLVAELAAEEERAAVVAVQVTWFGNGRFSIGITSHHAILDGRSSTSFMKSWAGLCKNLVGGGDIFFRRLRRCRTFKLSPQDIQKLKQHVLKHRNPVKPPPHISTYTVAMGYTWVCASAVADEEISIGVTMDARGRVYPPLPATYFGNCVVGRSTALERGKLLGENGVIAAVETISEMIKSLKEEGPLKGAENWVLLMTQTVVNNDYKLISTAGSPRFEVYSVDFGWGKPEKVEVVSINRTGAVCISESRNGGGVELGWTAKRDVMENFAKLFAEGLQQL Homology
BLAST of IVF0024364 vs. ExPASy Swiss-Prot
Match: Q940Z5 (Phenolic glucoside malonyltransferase 1 OS=Arabidopsis thaliana OX=3702 GN=PMAT1 PE=1 SV=1) HSP 1 Score: 249.6 bits (636), Expect = 6.1e-65 Identity = 166/476 (34.87%), Postives = 238/476 (50.00%), Query Frame = 0
BLAST of IVF0024364 vs. ExPASy Swiss-Prot
Match: Q9LJB4 (Malonyl-CoA:anthocyanidin 5-O-glucoside-6''-O-malonyltransferase OS=Arabidopsis thaliana OX=3702 GN=5MAT PE=1 SV=1) HSP 1 Score: 246.1 bits (627), Expect = 6.7e-64 Identity = 162/456 (35.53%), Postives = 242/456 (53.07%), Query Frame = 0
BLAST of IVF0024364 vs. ExPASy Swiss-Prot
Match: Q9LRQ8 (Phenolic glucoside malonyltransferase 2 OS=Arabidopsis thaliana OX=3702 GN=PMAT2 PE=1 SV=1) HSP 1 Score: 240.4 bits (612), Expect = 3.7e-62 Identity = 154/453 (34.00%), Postives = 231/453 (50.99%), Query Frame = 0
BLAST of IVF0024364 vs. ExPASy Swiss-Prot
Match: Q8W1W9 (Malonyl-coenzyme:anthocyanin 5-O-glucoside-6'''-O-malonyltransferase OS=Salvia splendens OX=180675 GN=5MAT1 PE=1 SV=1) HSP 1 Score: 226.1 bits (575), Expect = 7.2e-58 Identity = 155/457 (33.92%), Postives = 225/457 (49.23%), Query Frame = 0
BLAST of IVF0024364 vs. ExPASy Swiss-Prot
Match: Q9ZWR8 (Anthocyanin 5-aromatic acyltransferase OS=Gentiana triflora OX=55190 PE=1 SV=1) HSP 1 Score: 226.1 bits (575), Expect = 7.2e-58 Identity = 154/466 (33.05%), Postives = 225/466 (48.28%), Query Frame = 0
BLAST of IVF0024364 vs. ExPASy TrEMBL
Match: A0A1S3CNS2 (phenolic glucoside malonyltransferase 1-like isoform X1 OS=Cucumis melo OX=3656 GN=LOC103503024 PE=3 SV=1) HSP 1 Score: 771.9 bits (1992), Expect = 1.3e-219 Identity = 397/452 (87.83%), Postives = 400/452 (88.50%), Query Frame = 0
BLAST of IVF0024364 vs. ExPASy TrEMBL
Match: A0A6J1GBE9 (phenolic glucoside malonyltransferase 2-like OS=Cucurbita moschata OX=3662 GN=LOC111452446 PE=3 SV=1) HSP 1 Score: 492.7 bits (1267), Expect = 1.5e-135 Identity = 270/461 (58.57%), Postives = 321/461 (69.63%), Query Frame = 0
BLAST of IVF0024364 vs. ExPASy TrEMBL
Match: A0A6J1K841 (phenolic glucoside malonyltransferase 1-like OS=Cucurbita maxima OX=3661 GN=LOC111492563 PE=3 SV=1) HSP 1 Score: 476.1 bits (1224), Expect = 1.5e-130 Identity = 264/462 (57.14%), Postives = 317/462 (68.61%), Query Frame = 0
BLAST of IVF0024364 vs. ExPASy TrEMBL
Match: A0A5D3C3F1 (Phenolic glucoside malonyltransferase 1-like isoform X2 OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold1085G00150 PE=3 SV=1) HSP 1 Score: 388.7 bits (997), Expect = 3.1e-104 Identity = 193/193 (100.00%), Postives = 193/193 (100.00%), Query Frame = 0
BLAST of IVF0024364 vs. ExPASy TrEMBL
Match: A0A1S3CP69 (phenolic glucoside malonyltransferase 1-like isoform X2 OS=Cucumis melo OX=3656 GN=LOC103503024 PE=3 SV=1) HSP 1 Score: 386.0 bits (990), Expect = 2.0e-103 Identity = 192/193 (99.48%), Postives = 192/193 (99.48%), Query Frame = 0
BLAST of IVF0024364 vs. NCBI nr
Match: XP_008465393.1 (PREDICTED: phenolic glucoside malonyltransferase 1-like isoform X1 [Cucumis melo]) HSP 1 Score: 773 bits (1997), Expect = 4.63e-280 Identity = 397/452 (87.83%), Postives = 400/452 (88.50%), Query Frame = 0
BLAST of IVF0024364 vs. NCBI nr
Match: XP_004145869.2 (phenolic glucoside malonyltransferase 1 [Cucumis sativus] >KAE8650582.1 hypothetical protein Csa_010647 [Cucumis sativus]) HSP 1 Score: 706 bits (1821), Expect = 8.35e-254 Identity = 360/446 (80.72%), Postives = 381/446 (85.43%), Query Frame = 0
BLAST of IVF0024364 vs. NCBI nr
Match: XP_038875303.1 (malonyl-CoA:anthocyanidin 5-O-glucoside-6''-O-malonyltransferase-like [Benincasa hispida] >XP_038875311.1 malonyl-CoA:anthocyanidin 5-O-glucoside-6''-O-malonyltransferase-like [Benincasa hispida] >XP_038878095.1 malonyl-CoA:anthocyanidin 5-O-glucoside-6''-O-malonyltransferase-like [Benincasa hispida]) HSP 1 Score: 586 bits (1511), Expect = 1.25e-206 Identity = 307/456 (67.32%), Postives = 346/456 (75.88%), Query Frame = 0
BLAST of IVF0024364 vs. NCBI nr
Match: KAG6607032.1 (Phenolic glucoside malonyltransferase 2, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 494 bits (1271), Expect = 3.73e-170 Identity = 270/461 (58.57%), Postives = 322/461 (69.85%), Query Frame = 0
BLAST of IVF0024364 vs. NCBI nr
Match: XP_022948949.1 (phenolic glucoside malonyltransferase 2-like [Cucurbita moschata]) HSP 1 Score: 494 bits (1271), Expect = 5.46e-170 Identity = 270/461 (58.57%), Postives = 321/461 (69.63%), Query Frame = 0
BLAST of IVF0024364 vs. TAIR 10
Match: AT5G39050.1 (HXXXD-type acyl-transferase family protein ) HSP 1 Score: 249.6 bits (636), Expect = 4.3e-66 Identity = 166/476 (34.87%), Postives = 238/476 (50.00%), Query Frame = 0
BLAST of IVF0024364 vs. TAIR 10
Match: AT3G29590.1 (HXXXD-type acyl-transferase family protein ) HSP 1 Score: 246.1 bits (627), Expect = 4.8e-65 Identity = 162/456 (35.53%), Postives = 242/456 (53.07%), Query Frame = 0
BLAST of IVF0024364 vs. TAIR 10
Match: AT5G39090.1 (HXXXD-type acyl-transferase family protein ) HSP 1 Score: 245.0 bits (624), Expect = 1.1e-64 Identity = 159/449 (35.41%), Postives = 229/449 (51.00%), Query Frame = 0
BLAST of IVF0024364 vs. TAIR 10
Match: AT3G29670.1 (HXXXD-type acyl-transferase family protein ) HSP 1 Score: 240.4 bits (612), Expect = 2.6e-63 Identity = 154/453 (34.00%), Postives = 231/453 (50.99%), Query Frame = 0
BLAST of IVF0024364 vs. TAIR 10
Match: AT3G29635.1 (HXXXD-type acyl-transferase family protein ) HSP 1 Score: 231.1 bits (588), Expect = 1.6e-60 Identity = 161/462 (34.85%), Postives = 237/462 (51.30%), 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
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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