IVF0008481 (gene) Melon (IVF77) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: five_prime_UTRexonpolypeptideCDSthree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.AGAATATTTAACAATGGATCTCCTTCTTTCCCTCAATGAACTCCTCCCTAACAAACCACACTTCAACTTTTGAACATACACATTACATACAAAATTAGGGCTACACTACGTACAATTGAATCTGTTCATCTCCGAGATCTACACCTTCAGCCCTTGCTCCAGTAGCATCGTATTTAGGTACTTGATTTGTTCATTCTGTTCCTTTCTTTAACCTCATTTCTTAAATTTCAGTTCGATTCATCAGAATAACAAAAAGCGAAGAAATATCCTCTGTTATTTGATAAATAGTTTGCTTTGATACTAACTTTATGGTGGTGATCGAAAGTTTTTGGTTAACCATTCCTTGTCTGCTATGTTCAATCGGATACTGTTGGTTAATTGAATATTAAATTAAACCAATTATTCGACATGTTTGAAGTAGCTTCGTGTCGCAGGCATGTCGGCGACAGAAACAGAACACAACACGTTGTGAAATAGAATGCATGGGCAGCTTTTATCCGTCTAAGCAATTCAGTTACTTTAATTGTATTGTATTCAACTTTGTATCCTGGATTTAATTGTTCTCTTTATAGATAGTTTTTCTTAAGATAGCGTCAATGTTATCGATTACAATGGGGGTAGCCGTTGAAGTAGAATCGTGTTACCATTATTGAAGTGAATTCATGTTTGTGATGATGCTAGGTACCTGTTGTTTCTGTAGCTGAGGAATACCATGTCGAACAAGTTAGGGGCAATGACAGGAAGGAACTGTAGAACTTATGAAATGTTAACTTCCCAACTGACTTCGTACTAGGGATTGGGGAATGCCCAGTATGAGTAACAACAACTCAAATGTTACGCAGGCAGAAAAAATTAAATGCCGAGCCAATAAAGCATTTACAGGTAACACATGCCACTTGTATTCATGTTATACATTATTTCATTTGTTTTGTTTTGTTTTTGTTTTTTTTTTTTTACTTTTTCATTGATGAAGAAAATCAGTGATTCCGTGATCGATGATTTTAACTCTCAGAATTACATACACCAACTGGCTTTTTCTAGTTAGGTTGTTATTAAGAGACATTTGTTACTACAACTATACTGATATGTTTCAATTTATGGTTGTATTTTATTTTATTCTATAACATGGACTTTCGTTCTTCAATGGTATAAATGAAAAAGAAACTGTTCTTGGGCTGGACAGAGCAGTTTATTGTCTTTTTAATGATATAACTGACAATAAACCACACACGCAGTGGATTTTATCTTTCACTCAATAAAGACTATTTCATCAATAGTTACATGTCTGGTGATGTTATTGCTAATATGCCTTCTGTCTGTGAGCTGTGCTAATCTTTGTTTTAAATTCCAGCTCACAAATATGCTCAAGCTATTGATTTATATACACAAGCTATTGAACTCAACAATCAGAATGCTATATATTGGGCAAATCGAGCATTTGCACGCATTAAGCTAGAGGAGTATGGTAGCGCACTAGAGGATGCATCAAAAGCTATTGAAGTCAATCCTAGATATTCCAAGGCACACTTTCAAAATTAAGCTTTGATTGCTATTTATGGCTTTTCTTCTAATAAAGTTATTATTTATGTGTATTTGAATATATGTTAGTATATTGTCATACCAGGGTTATTACAGGCGTGGTGCTGCTTATCTTGCCATGGGGAAGTTTAAAGAAGCACTTAAAGATTTTCAGCAGGTGCTGTTAATTTTTCTTTTGACAATATGTGGGATAGAGGAATCAAATCTTTAACTTCGTACATATACTGTGCTAGTTGAGTTATGGTCATTTTAGCAGGATCCACTTACATCTTCGAACAGGCTATTATTTCTTTTATGTTTTCCTTCTCATAAGGAACTCAAAGTTGGTTTTGTAAAGTCTATTTTGAATGTGAATGCTACGGTACATGAACAATAACCTTTTGTTTTGGGTTAGTTATACAAATTACCTAGTTTTGACTTTTGAGGAAGGCCATTGCAAAGTGGGGTAGTCAGAACTGTTATTATGGGAAGCATATTAGAAATTTAATTAGCCAAGGATTTTTCTCTTAGGATTTGATCATGAGAGAGCTAAGTGAGTGGAAGGGAAGGTAGGCAATAACCAATAGCAATATTTTAGTTGATTTATGGTTGAAAATCTAGTGGCTTCAAGTACCTCAAACGACTTGGAAATTCTTGTATTTCTTTATAATTTAGGACTATTTTCAAATATAGCAAAATGAACCAAAATATTTACAAAATATAGCAAAAATGTCACCGTCTATCTATGATGGACCGTAATAGACCGTGATAGACTACTATCTGTGTCTATCTATCATTCATGATAGACAAAGATAGTAGTCTATCTTCTATTGTGGTCTATCAATATTTTGTTATATTCGTACATATTTTCATAAGTTTTGTCATTTAATTTTCCTATAATTTATCCTTCAATATCATTTACTTTCGTTGGTTTCTATCACTAATTTGCATAATTGGTTATTCCTTCACTGTTAGATCACAGCACTTTATACACGATAATTTTATAATTATTTAATTAATTAATTACTTATTTTTTTAAATGACAATACTCTTGTGCCCTTGTTCATGTATTGGTAAATTTTGATTTTTTTTAACCGAGACCTTTGTTTTTATATGGAAAAAAAGTATCCATCTGGTGCAACTGTAAGTGTGAGATCTCCTTCCTAATCCCCTTCATTTTGACTTATCATAAGAAAATTTATTAATTCGTGAGATGAATTATTCTAGCAGAATGTTAGAGTGGTCAGTTCCTTTTAGCTTCATCCATGCTTCTTAATTTTTTCCATTTATAGTTGTAATTTATCAAAAACACACAGGTGATAAATGGAAAAAGTTAATTCGAAGATGGCTCTTATCTTTTAGATATTCTAGTTCTTGGTCATGTTTCATTTGAAGACATTCATTCTGTCACTGAGATTTTTCAGATTTATTGCATACTGTGTGGATTATCACTAAGATTCCTTATTTTCAAAGTCATTCTTGGATCGTAGCATCCTGGAATTAACTTTTTGTGTTTTTTTGTATGTCTTTTACTTTATAAACTGAAGCTCAAGAAGATGTGTCCTAATGATCCTGACACCATCCGGAAGTTGAAGGAATGTGAGAAAGCAATTGGGAAGCTTAATTCTGAAGAAGTTGTTGCAGCTCCAGTACCGGAAACGGATTCTGTGACCAATTCTATTGATGTGCACCGTATAGGTAAAATTTTTATTCCATATTTTAGTCTATTTTATAATGCTTCTGCTTGACGACTGTTACTTTTCAATGAAAACCGTTACTTCTCTAAAAAAAAATTAAAAACATTTTTCCAGAAGTTTTACAGAGGCTAAATTTGGATGCATAGGCAATTTTGCTGGTTTGGCATCTAAAAGACCATTGCCTTCTAATATTTGAAGACAATACTTTCTTTGAGAAAGGGAAGGGACATTATTGGATCACGAGATGTCAAGACCAAGAAAATATTTCACAGATCTGAGATCTTTGAGCATGAAGTCTATTTAGTCTTTACCTTAGCCATTTTCTGAACAAATGGTCCAGTGAGGATAATGTCTTCAACATATACTTGGATAGCTAAAAAAGTTGGTCCTTTTCCATGCGTGAATAATGAGTATTCAGATTTTGATTGCACAAATTTGTGACTTTGCAAAGCACTTGAAAATTTAGGGAACCATTATTGCAATGCTTGTTGCAAACCATAGATCGGTCAATTCAAACGACAAACAAGCTTCTCCCCCTTTTAGCATGTTGATTTGATTTGTATTTTCCAAATGACATTTTCATTTACACTTCTTCAGAAAAATCATTTAGGAAAACATTATTAACGTCCATTTGTACAAGAGGCCAATTAACGGTTGTGGCTAAAGTCAAAAGAACTTTTTAACTGTCACTTTCTTTGCCACAGGAGAAAAGGTTAGAAATCAATTCCTTATTATTGATTATGTCCTTTGGCAACCAATGTTGTTTTATATTAACTAATTGTTCCATCAGCTTTGTATTTAACATGGTAGACCCATTTATAGCCAATTCTATGATGTTCTTTTTGGAGAGAAACAATAGTCCGAGTATGTGTTCTTTCCATAGCAGAAACCTTTTCTTGGATAGTTCGTCACCAATGAGAGAAGGGAACAGCTTGATGATAAGAACAAGGCTCATATTCTGTGGTGACATTTTAAAGGAAAGTCTTATGAGACTCAGAACATTGATTATAGTTTAGGTAGTCTTCAAAGGGATAAGGATAAGATTTTGTGTCATGTAACATTGGAAATCTTTCAACCTACTGTACTGTTGCCGTGAATGATCACCAACATTTATATTAGTTTCTGGAATATCATCAGAATATCGAGTTCCAATGGTTTGTGGGATTGGTGTAAAATCAGTTACTTGCATATCAGTTTTGGAAATGATGGTAGTATCATTAATTTGTAGGACAGAATCTGATGCCTGAGAAATTTAGTTGATAAAGGGTAGGAAGTTTTGGAAGAGATTGAGAATGATGGACGATTGCATTTTATGAAGAGCATAGACGGGCTATGTGAGAGTTTATCGGGAACTTTATTAACTCAAAATTAATGAATACAAAGTTAGTCCTCTGTATAAATATATGAGGAGATAACTGCTTGTAACAAAATATAACAATTACAATACTGGTTAACAACTATAACAGAAATCAGTTTCTAATGAACTTATGTGTAATAAATTTAGTTAAGTGAGAGGTGGTGACAAAACCCTTTAATGTTGTGGTGGTTTAGATTTTGGGAATCTAAGGGTCTAAAATAGTGGCGTTCTCTTTTGAATGGATTGTGAGTTAAAAGGCATTTCCAGAAACCCTTGGAAAGGTATGGCAGGAAAGATACTTTCTTTTGGAGGATAAATGGTTGTGGATAGACTCCTCTACTCTCTTTTTCTTATGTACGATTTTTCCCAGGTTTCATTCCATGTTTTTCCTTACTCTCTATATTCTTCTTTGCCTGTTATGGATTCCCAAACGATGATTATTGTTCCTTTCTCTCATTGATTAGAGAGTTTTGCTGTATGTCAAGGAGAAGGTATGCGTAGTATACCTCCTAACAAGAACACTCAAGGATAACACTGAAACCTCAAACACTCAATTATGGAAATATATTAAAATATGCTGTAATATCCCAAGAAAAGTAACAAGGTAACACTAGCCTTTCGAGAGGGCTAGATTCTCCCAAATTTCCATAAGGAAATACCACCAAAATTCAAAAGTAACAAGGTAACCACTAGCCTTTCGAGAGGGCTAGATTCTCCCAAATTTCCATAAGGAAACACCACCAAAATTCTTCACATTTCTAACCTTACTTGCACCTATTATTTATGGCCCAAAACACCTAACCAACTTAATGTGTAATCATTAGAATACCCCTTACTACTAATCCTAGTGTTTCCCCAACTAGAGTCTTACAGTATGTTTGTATTTGGAGTCCTTTTCCTGCCCGTTGTTTGGTCAATCCCTTTCCTTGACTAGTTCTATCTTTGTCACGTTATGAAAGATGAAAATTCCAAAAACTGTTGGAGTTTCTTTTCTGAGGTTTGCCATTGAGGTTTGCTGTGTTCAAAGAGTTATTTTTCCATCCTCCCTCTCAAGAAAAAAGGAGAAGGTTTTTGTGGCATGTAAGGACGTGTGGGGTTCTACATTCTATGGGCCGTTTGAGGGTTGAGGAATAATGGAGTCTTTAGAGGGCTTGAGAGGTCTTCAAGTGATGTTTAAGCTCTTATATGAGTTAACATTCAGTTACAAAACCTCTTTTTTTAATAATCCGCTAGGTCTCATTTTACATGATTGGTGGTCTTTTCTTTAGTTTGCCTCTTTTTTTATGGCTTTTCTTAATGCCCTTGCATTCTGTAATGACTCTTTAAAGATATGCAAAGCTATTAGCTAATTGAAAATATCATAACCTTGGACAAGACAATAAATTTCATTCGAGCTAAAAGTACAAAACCTCTCTACAAGTCTGATGTTTAAAATTTATTTTTCCATGTACTTCATCATTATAGGGGTAAGTTCAACGTCAGTGCCGACCCAAATGGCTATAGTAGCAGCAGCAGTAGCAACTACAGCAATTGCAATTTCAACTCTTAGCACAAAAGTTGCCACAGTAGTAGCTGCTGTAGCAGTGGTGGTGCTGATAATCATGGGCACACGTTTGTGGGGCGGCAGTGGATGTGTTATCAATGCAAAGACTCTAGGTTTTCTTTCCTTTTCTCTCGAAGTAGTCAAAATCCCTTTAATTTAGAATTCACTAACTTGATTTGATAATTGATGAACTCATGTTTTAGGAATGCTCTTTCAGTCAAAGACTATTTTAGACTGTATTTCTAACTTCAAATTTTCTTCAAGTGATCCAGTCACAATGGATGAGGAATTTGGAATTTGTGGGTCTGTTTGTGTCTCTCTCTTTTAATTAAAAAACCTAGTAAATTTAGTACACTCAGAATTCTATCCGTCTGTTACTTTTTAATGCATGAGTACTGAGAAGTTTGTTTGTTCTATTAATGGATTTTTATTTCCTATTAGGAAAGCAGTCAAATCAATTTGGTTTTTGCCCTGTAATAAATTGTAAAAAAGTTATGTAAAAGATGGAAAAAGACAACAAAAGAGGTCTACAATTATCTCATTATTGCATATCTAGTATTTGCATCATTTGATTTTTCTTCAATGTTCGTTCATTTTCACTCTTCTCATAATATTAAATCATGAATAGAGGATTTATGAGTGGCTTTGCTGGACATTGTCAATAGTTCCATCTTTTCTTCTCAAGTGTAGATGTTGAACCGCAGTATTCTGGAGCAAGAATAGAGGGAGATACCATAACGTTGGATTTTGTGAAGAAAATGATAGATAATTTCAAGAACCAGAAACCCTTGCACAGGCGGTATGTGTTGCACCTCCCATAATAGTTAATAGTTACTGTATTTAGCATGTCTAATGAGCTTAGTTGTTTTAGTGATGTGCATTTTTCTTTAGATATGTTTTCCAGATTCTCCAGCAAACGAAAAAAATATTGAAAGCTCTTCCTTCATTAGTTGATATAACAATTCCTGAAGGCAAGTGCATAACAGTTTGTGGTGATGTCCATGGTCAGGTCAGTATTACATTCTTTTAGAAAGGTATATATGATTCTTAGGTTTGATGATAATTTTGATTTTTGAGTACACTATCTAATCCATAAGACCTAGGTAATGAAATTTCTGATTCTTGATGGACTTTGACCTGGAGCTCCTTAATCCATGCCTGTCGGTTAGGATACCACCTGACAAGAGGGCTCAAGAACACAAAGAACAAACAACAAGAACAGTAAAAGGATAGGATTGTGGGGAAATATATTGAAAATATGCTATAAGATCATAAGATCGATTAACTATGTAACCCCCAGCCTTTCGAGAGGGCTGGACTCTTCCCAAATTCCCAACTATGAACATCCCACAAAATACTTCACACTGACCTCACAATCCACTCCTATTTATAGCTAAAACCCTAACCAACTTACTAGCTATTCACTAATTTGCCTCTTCTAATAACCATTCTAATCTTTTGATAATAACTCCTATATATTATGATAATAACTCCCATACTAATATTAGTCAAGGTGTACCTTTGTGTTTCTGTTTTGTTGGGGATATGATGATTGGCATTATGGGGTGTCAGTTGACATGTCCGGGTGCACCTCCTGATCCCTATAGGTTTCCCTTGCTTACGACTTCTTTATTGCTCTTTTTGTATAACTCTCTTATACTCTGAGTTCTTATTAATAAAGAAGTTTTGTCTCCGTTTCAAAAAAAATTTATGTTTCATCTTTTGATGTTTGCAGTTTTATGATCTCTTAAATATTTTTGAGCTGAATGGTCTGCCTTCAGAAGATAATCCATATCTGTTTAATGGCGACTTTGTGGATAGGGGATCATTTTCTTTGGAGGTCATTCTGACCTTGTTTGCCGTTAAATGCATGTCTCCATCAGGTAAATTGAATAGAATTCCAATGTGTTAGGAGCCTTCATTTTTGTATCTGAAGTTGAACCCCACATATTCACCTCTAGCAGATATTATAAGATTAAGAGGTTTGACCAGTCGTTTTGTTTCCTTTATATATGCTGCACACTTTCTATGGAGGTTGATCACTATAATACAATCTACTTTTAGTTGTTCATCAAACCTTTTTCTGGTACTTTTAGTTGTTGGGTTTATGTTCATGTTTTTAAGGACGGATCAGTAAATTCTAGTCTAATCAATCCGCCTTTTCTTATTCAGCTATACATCTATCTAGAGGAAATCATGAGAGTAAGACTATGAACAAAATGTATGGTTTTGAAGGCGAGGTTAAGACAAAGCTGAATGGAACATTTGTAGAACTATTTGCAGAAGTATTCTGTTGTTTGCCTTTGGCTTATGTATTGAATGAGAAGGTTTTTGTCGTTCATGGAGGCCTTTTCAGTGTTGATGGGGTAAAACTATCTGACATTAGAATGATAAACCGTTTTTGTGAACCTCCGGAGAAAGGTAAAGTTGATCATTTGATATCTTTTCCTGTCTTCCTTGCATTTATGTTTGAAATAGAGTTACATTGAAATGGATGTGGTGATCATATTTTTGCACAAAAGATTTCTGCTAATCAGTTGTTAGTTTGCCCCATCATTGTTTGATAACACTTCATTTCTTTTGTTGGGGTATATGAACTACTTTTACTGTTGTTTTAATCAACCCAAAGGCATTATAAAGTGAAATCATTACCTTTTCCATATGGAATTAGTGAATTACTAGGTCCCCTATCCATTTTCTATTCAGGATTAATGAGCGATTTGCTATGGAGTGATCCTCACCCTTATCCTGGAAGAGGCCCTAGTAAACGTGGCGTCGGTCTTTCCTTTGGTGCAGACGTAACAAAAAGATTTTTGGAGGACAATAACTTAGGTATTTGTCATGTAATTTATGGCTTGGCTTGACTTGACGCCTCTGCGCAGATAATTCATTTTATAATTTGAGGATTCTATACTGAAAGTCTGAAACCACAGACTTACTCGTTCGGTCTCACGAGGTGAAGGATGAAGGGTATGAAATTGCGCATGATGGTAAACTCATCACCGTATTTTCTGCTCCAAATTACTGTGATCAAGTAAGTTATTTTCTTTAAAGAATATGAATATTGTAAATGAGATTAGTACAATTCAAATTACAACTTGGAGTTGATTGCTCTACTTGTCAACCCACAAGACTGAAAGTTAAAAGCCAACAAGAGGAGAAAAAATAAAACCCTAGCAAGTGTCATCAGGCTGACGTGCCTTAAAAGCCAGGCTGAATTTGAGCTTTCATTGTTCTGGATACAAAGGGAACAAGAACTATGAAAGTTTGCTGTCATGTAGCTTTTCTTTTAATGCTTACTTTCAGCGGAAGCTCAACTTAATTGAGATGTCTTGGTGCACCCCTTAATCCCTCTTGCCTGTGAATGTTTTAAAATAACTCTCTAGAAGTAGAAGTGACAACTCTTTGTTCCCTCTTGTAGTACTCTTTGAAGTTGTTTTATAGTGACCCTTTGAATTTATTTTACTCGGCATGCTACTGCAGTCTTTGGATTTTAAATGAGTTTGCACTATCCATCGTTTGATTGATGTTAGAATGAGCATAGCTCAATTGATATATGAGTGTACTAGTAACCACGAGATATATAATTCAAATGTGTAGTTTGATTGACATTATGACTCGTAACCGATATATAGTTCAAATCTGTAGTTTAATTGGCATTGATAAGCTATCTTCCTATTGCAGATGGGTAATAAAGGTGCTTTCATTCGTTTTGAAGCACCCGATATGAAGCCAACCATTGTTACATTCTCTGCCGTGGTCAGTTTTTCCATCCTCTTCCTCATTCCTATAACCTTCTCCCTTGCTCTCGACTCTTATTTCTTCAGGGTAGTGTGGTTTAACTGTTGATTTTCTCCGGTCATGCAGCCACATCCCGACGTGAAGCCTATGGCTTATGCAAACTTCTTCCAGTTCTTTCAATAACTAACATTAACTGCTTTTAAACCAAAGTTTACGTTATACAGGAATCACTTAAGAAGCTGGTGCCAAAATGGCAAATGCAGTAACAATCTCTATTCATTCTTTAACATACAATAGTCATTAATTATTTTGCCACTGACTTGTGTAGTTATACAGGGAAGTGGGAAATTTCCTTCATTTTCTGGCCAAGGGTTGACTTTCTTCTCTTTTCTTTCTTCACTTTTTACCTTTTTTTTATTTTTTTTTTGGGGG AGAATATTTAACAATGGATCTCCTTCTTTCCCTCAATGAACTCCTCCCTAACAAACCACACTTCAACTTTTGAACATACACATTACATACAAAATTAGGGCTACACTACGTACAATTGAATCTGTTCATCTCCGAGATCTACACCTTCAGCCCTTGCTCCAGTAGCATCGTATTTAGGTACCTGTTGTTTCTGTAGCTGAGGAATACCATGTCGAACAAGTTAGGGGCAATGACAGGAAGGAACTGTAGAACTTATGAAATGTTAACTTCCCAACTGACTTCGTACTAGGGATTGGGGAATGCCCAGTATGAGTAACAACAACTCAAATGTTACGCAGGCAGAAAAAATTAAATGCCGAGCCAATAAAGCATTTACAGCTCACAAATATGCTCAAGCTATTGATTTATATACACAAGCTATTGAACTCAACAATCAGAATGCTATATATTGGGCAAATCGAGCATTTGCACGCATTAAGCTAGAGGAGTATGGTAGCGCACTAGAGGATGCATCAAAAGCTATTGAAGTCAATCCTAGATATTCCAAGGGTTATTACAGGCGTGGTGCTGCTTATCTTGCCATGGGGAAGTTTAAAGAAGCACTTAAAGATTTTCAGCAGCTCAAGAAGATGTGTCCTAATGATCCTGACACCATCCGGAAGTTGAAGGAATGTGAGAAAGCAATTGGGAAGCTTAATTCTGAAGAAGTTGTTGCAGCTCCAGTACCGGAAACGGATTCTGTGACCAATTCTATTGATGTGCACCGTATAGGGGTAAGTTCAACGTCAGTGCCGACCCAAATGGCTATAGTAGCAGCAGCAGTAGCAACTACAGCAATTGCAATTTCAACTCTTAGCACAAAAGTTGCCACAGTAGTAGCTGCTGTAGCAGTGGTGGTGCTGATAATCATGGGCACACGTTTGTGGGGCGGCAGTGGATGTGTTATCAATGCAAAGACTCTAGATGTTGAACCGCAGTATTCTGGAGCAAGAATAGAGGGAGATACCATAACGTTGGATTTTGTGAAGAAAATGATAGATAATTTCAAGAACCAGAAACCCTTGCACAGGCGATATGTTTTCCAGATTCTCCAGCAAACGAAAAAAATATTGAAAGCTCTTCCTTCATTAGTTGATATAACAATTCCTGAAGGCAAGTGCATAACAGTTTGTGGTGATGTCCATGGTCAGTTTTATGATCTCTTAAATATTTTTGAGCTGAATGGTCTGCCTTCAGAAGATAATCCATATCTGTTTAATGGCGACTTTGTGGATAGGGGATCATTTTCTTTGGAGGTCATTCTGACCTTGTTTGCCGTTAAATGCATGTCTCCATCAGCTATACATCTATCTAGAGGAAATCATGAGAGTAAGACTATGAACAAAATGTATGGTTTTGAAGGCGAGGTTAAGACAAAGCTGAATGGAACATTTGTAGAACTATTTGCAGAAGTATTCTGTTGTTTGCCTTTGGCTTATGTATTGAATGAGAAGGTTTTTGTCGTTCATGGAGGCCTTTTCAGTGTTGATGGGGTAAAACTATCTGACATTAGAATGATAAACCGTTTTTGTGAACCTCCGGAGAAAGGATTAATGAGCGATTTGCTATGGAGTGATCCTCACCCTTATCCTGGAAGAGGCCCTAGTAAACGTGGCGTCGGTCTTTCCTTTGGTGCAGACGTAACAAAAAGATTTTTGGAGGACAATAACTTAGACTTACTCGTTCGGTCTCACGAGGTGAAGGATGAAGGGTATGAAATTGCGCATGATGGTAAACTCATCACCGTATTTTCTGCTCCAAATTACTGTGATCAAATGGGTAATAAAGGTGCTTTCATTCGTTTTGAAGCACCCGATATGAAGCCAACCATTGTTACATTCTCTGCCGTGGTCAGTTTTTCCATCCTCTTCCTCATTCCTATAACCTTCTCCCTTGCTCTCGACTCTTATTTCTTCAGGGTAGTGTGGTTTAACTGTTGATTTTCTCCGGTCATGCAGCCACATCCCGACGTGAAGCCTATGGCTTATGCAAACTTCTTCCAGTTCTTTCAATAACTAACATTAACTGCTTTTAAACCAAAGTTTACGTTATACAGGAATCACTTAAGAAGCTGGTGCCAAAATGGCAAATGCAGTAACAATCTCTATTCATTCTTTAACATACAATAGTCATTAATTATTTTGCCACTGACTTGTGTAGTTATACAGGGAAGTGGGAAATTTCCTTCATTTTCTGGCCAAGGGTTGACTTTCTTCTCTTTTCTTTCTTCACTTTTTACCTTTTTTTTATTTTTTTTTTGGGGG ATGCCCAGTATGAGTAACAACAACTCAAATGTTACGCAGGCAGAAAAAATTAAATGCCGAGCCAATAAAGCATTTACAGCTCACAAATATGCTCAAGCTATTGATTTATATACACAAGCTATTGAACTCAACAATCAGAATGCTATATATTGGGCAAATCGAGCATTTGCACGCATTAAGCTAGAGGAGTATGGTAGCGCACTAGAGGATGCATCAAAAGCTATTGAAGTCAATCCTAGATATTCCAAGGGTTATTACAGGCGTGGTGCTGCTTATCTTGCCATGGGGAAGTTTAAAGAAGCACTTAAAGATTTTCAGCAGCTCAAGAAGATGTGTCCTAATGATCCTGACACCATCCGGAAGTTGAAGGAATGTGAGAAAGCAATTGGGAAGCTTAATTCTGAAGAAGTTGTTGCAGCTCCAGTACCGGAAACGGATTCTGTGACCAATTCTATTGATGTGCACCGTATAGGGGTAAGTTCAACGTCAGTGCCGACCCAAATGGCTATAGTAGCAGCAGCAGTAGCAACTACAGCAATTGCAATTTCAACTCTTAGCACAAAAGTTGCCACAGTAGTAGCTGCTGTAGCAGTGGTGGTGCTGATAATCATGGGCACACGTTTGTGGGGCGGCAGTGGATGTGTTATCAATGCAAAGACTCTAGATGTTGAACCGCAGTATTCTGGAGCAAGAATAGAGGGAGATACCATAACGTTGGATTTTGTGAAGAAAATGATAGATAATTTCAAGAACCAGAAACCCTTGCACAGGCGATATGTTTTCCAGATTCTCCAGCAAACGAAAAAAATATTGAAAGCTCTTCCTTCATTAGTTGATATAACAATTCCTGAAGGCAAGTGCATAACAGTTTGTGGTGATGTCCATGGTCAGTTTTATGATCTCTTAAATATTTTTGAGCTGAATGGTCTGCCTTCAGAAGATAATCCATATCTGTTTAATGGCGACTTTGTGGATAGGGGATCATTTTCTTTGGAGGTCATTCTGACCTTGTTTGCCGTTAAATGCATGTCTCCATCAGCTATACATCTATCTAGAGGAAATCATGAGAGTAAGACTATGAACAAAATGTATGGTTTTGAAGGCGAGGTTAAGACAAAGCTGAATGGAACATTTGTAGAACTATTTGCAGAAGTATTCTGTTGTTTGCCTTTGGCTTATGTATTGAATGAGAAGGTTTTTGTCGTTCATGGAGGCCTTTTCAGTGTTGATGGGGTAAAACTATCTGACATTAGAATGATAAACCGTTTTTGTGAACCTCCGGAGAAAGGATTAATGAGCGATTTGCTATGGAGTGATCCTCACCCTTATCCTGGAAGAGGCCCTAGTAAACGTGGCGTCGGTCTTTCCTTTGGTGCAGACGTAACAAAAAGATTTTTGGAGGACAATAACTTAGACTTACTCGTTCGGTCTCACGAGGTGAAGGATGAAGGGTATGAAATTGCGCATGATGGTAAACTCATCACCGTATTTTCTGCTCCAAATTACTGTGATCAAATGGGTAATAAAGGTGCTTTCATTCGTTTTGAAGCACCCGATATGAAGCCAACCATTGTTACATTCTCTGCCGTGGTCAGTTTTTCCATCCTCTTCCTCATTCCTATAACCTTCTCCCTTGCTCTCGACTCTTATTTCTTCAGGGTAGTGTGGTTTAACTGTTGA MPSMSNNNSNVTQAEKIKCRANKAFTAHKYAQAIDLYTQAIELNNQNAIYWANRAFARIKLEEYGSALEDASKAIEVNPRYSKGYYRRGAAYLAMGKFKEALKDFQQLKKMCPNDPDTIRKLKECEKAIGKLNSEEVVAAPVPETDSVTNSIDVHRIGVSSTSVPTQMAIVAAAVATTAIAISTLSTKVATVVAAVAVVVLIIMGTRLWGGSGCVINAKTLDVEPQYSGARIEGDTITLDFVKKMIDNFKNQKPLHRRYVFQILQQTKKILKALPSLVDITIPEGKCITVCGDVHGQFYDLLNIFELNGLPSEDNPYLFNGDFVDRGSFSLEVILTLFAVKCMSPSAIHLSRGNHESKTMNKMYGFEGEVKTKLNGTFVELFAEVFCCLPLAYVLNEKVFVVHGGLFSVDGVKLSDIRMINRFCEPPEKGLMSDLLWSDPHPYPGRGPSKRGVGLSFGADVTKRFLEDNNLDLLVRSHEVKDEGYEIAHDGKLITVFSAPNYCDQMGNKGAFIRFEAPDMKPTIVTFSAVVSFSILFLIPITFSLALDSYFFRVVWFNC Homology
BLAST of IVF0008481 vs. ExPASy Swiss-Prot
Match: Q84K11 (Serine/threonine-protein phosphatase 5 OS=Solanum lycopersicum OX=4081 GN=PP5 PE=1 SV=1) HSP 1 Score: 789.3 bits (2037), Expect = 2.9e-227 Identity = 393/537 (73.18%), Postives = 458/537 (85.29%), Query Frame = 0
BLAST of IVF0008481 vs. ExPASy Swiss-Prot
Match: Q84XU2 (Serine/threonine-protein phosphatase 5 OS=Arabidopsis thaliana OX=3702 GN=PAPP5 PE=1 SV=1) HSP 1 Score: 760.0 bits (1961), Expect = 1.9e-218 Identity = 381/528 (72.16%), Postives = 444/528 (84.09%), Query Frame = 0
BLAST of IVF0008481 vs. ExPASy Swiss-Prot
Match: P53041 (Serine/threonine-protein phosphatase 5 OS=Homo sapiens OX=9606 GN=PPP5C PE=1 SV=1) HSP 1 Score: 485.3 bits (1248), Expect = 9.0e-136 Identity = 249/518 (48.07%), Postives = 327/518 (63.13%), Query Frame = 0
BLAST of IVF0008481 vs. ExPASy Swiss-Prot
Match: P53042 (Serine/threonine-protein phosphatase 5 OS=Rattus norvegicus OX=10116 GN=Ppp5c PE=1 SV=1) HSP 1 Score: 483.4 bits (1243), Expect = 3.4e-135 Identity = 249/518 (48.07%), Postives = 325/518 (62.74%), Query Frame = 0
BLAST of IVF0008481 vs. ExPASy Swiss-Prot
Match: Q60676 (Serine/threonine-protein phosphatase 5 OS=Mus musculus OX=10090 GN=Ppp5c PE=1 SV=3) HSP 1 Score: 482.6 bits (1241), Expect = 5.9e-135 Identity = 249/523 (47.61%), Postives = 327/523 (62.52%), Query Frame = 0
BLAST of IVF0008481 vs. ExPASy TrEMBL
Match: A0A1S4E158 (Serine/threonine-protein phosphatase 5 OS=Cucumis melo OX=3656 GN=LOC103496329 PE=3 SV=1) HSP 1 Score: 1048.1 bits (2709), Expect = 1.3e-302 Identity = 530/530 (100.00%), Postives = 530/530 (100.00%), Query Frame = 0
BLAST of IVF0008481 vs. ExPASy TrEMBL
Match: A0A5D3DA66 (Serine/threonine-protein phosphatase 5 OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold519G00240 PE=3 SV=1) HSP 1 Score: 1048.1 bits (2709), Expect = 1.3e-302 Identity = 530/530 (100.00%), Postives = 530/530 (100.00%), Query Frame = 0
BLAST of IVF0008481 vs. ExPASy TrEMBL
Match: A0A5A7UFK9 (Serine/threonine-protein phosphatase 5 OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold24G003380 PE=3 SV=1) HSP 1 Score: 1026.5 bits (2653), Expect = 4.0e-296 Identity = 523/530 (98.68%), Postives = 523/530 (98.68%), Query Frame = 0
BLAST of IVF0008481 vs. ExPASy TrEMBL
Match: A0A0A0KC15 (Serine/threonine-protein phosphatase 5 OS=Cucumis sativus OX=3659 GN=Csa_6G169880 PE=3 SV=1) HSP 1 Score: 1007.7 bits (2604), Expect = 1.9e-290 Identity = 507/527 (96.20%), Postives = 515/527 (97.72%), Query Frame = 0
BLAST of IVF0008481 vs. ExPASy TrEMBL
Match: A0A1S4E161 (Serine/threonine-protein phosphatase 5 OS=Cucumis melo OX=3656 GN=LOC103496329 PE=3 SV=1) HSP 1 Score: 918.3 bits (2372), Expect = 1.5e-263 Identity = 466/530 (87.92%), Postives = 466/530 (87.92%), Query Frame = 0
BLAST of IVF0008481 vs. NCBI nr
Match: XP_008456372.1 (PREDICTED: serine/threonine-protein phosphatase 5-like isoform X1 [Cucumis melo] >XP_016901962.1 PREDICTED: serine/threonine-protein phosphatase 5-like isoform X1 [Cucumis melo] >TYK20399.1 serine/threonine-protein phosphatase 5-like isoform X1 [Cucumis melo var. makuwa]) HSP 1 Score: 1045 bits (2703), Expect = 0.0 Identity = 530/530 (100.00%), Postives = 530/530 (100.00%), Query Frame = 0
BLAST of IVF0008481 vs. NCBI nr
Match: KAA0054552.1 (serine/threonine-protein phosphatase 5-like isoform X1 [Cucumis melo var. makuwa]) HSP 1 Score: 1024 bits (2647), Expect = 0.0 Identity = 523/530 (98.68%), Postives = 523/530 (98.68%), Query Frame = 0
BLAST of IVF0008481 vs. NCBI nr
Match: XP_011657104.1 (serine/threonine-protein phosphatase 5 isoform X1 [Cucumis sativus] >KGN47023.1 hypothetical protein Csa_020950 [Cucumis sativus]) HSP 1 Score: 1005 bits (2599), Expect = 0.0 Identity = 507/527 (96.20%), Postives = 515/527 (97.72%), Query Frame = 0
BLAST of IVF0008481 vs. NCBI nr
Match: XP_038901673.1 (serine/threonine-protein phosphatase 5-like [Benincasa hispida]) HSP 1 Score: 927 bits (2397), Expect = 0.0 Identity = 473/532 (88.91%), Postives = 500/532 (93.98%), Query Frame = 0
BLAST of IVF0008481 vs. NCBI nr
Match: XP_016901964.1 (PREDICTED: serine/threonine-protein phosphatase 5-like isoform X3 [Cucumis melo]) HSP 1 Score: 914 bits (2363), Expect = 0.0 Identity = 466/530 (87.92%), Postives = 466/530 (87.92%), Query Frame = 0
BLAST of IVF0008481 vs. TAIR 10
Match: AT2G42810.2 (protein phosphatase 5.2 ) HSP 1 Score: 760.0 bits (1961), Expect = 1.3e-219 Identity = 381/528 (72.16%), Postives = 444/528 (84.09%), Query Frame = 0
BLAST of IVF0008481 vs. TAIR 10
Match: AT2G42810.1 (protein phosphatase 5.2 ) HSP 1 Score: 732.3 bits (1889), Expect = 3.0e-211 Identity = 363/525 (69.14%), Postives = 416/525 (79.24%), Query Frame = 0
BLAST of IVF0008481 vs. TAIR 10
Match: AT2G29400.1 (type one protein phosphatase 1 ) HSP 1 Score: 226.9 bits (577), Expect = 4.1e-59 Identity = 117/284 (41.20%), Postives = 174/284 (61.27%), Query Frame = 0
BLAST of IVF0008481 vs. TAIR 10
Match: AT5G27840.1 (Calcineurin-like metallo-phosphoesterase superfamily protein ) HSP 1 Score: 219.2 bits (557), Expect = 8.6e-57 Identity = 125/307 (40.72%), Postives = 176/307 (57.33%), Query Frame = 0
BLAST of IVF0008481 vs. TAIR 10
Match: AT5G27840.2 (Calcineurin-like metallo-phosphoesterase superfamily protein ) HSP 1 Score: 219.2 bits (557), Expect = 8.6e-57 Identity = 127/314 (40.45%), Postives = 178/314 (56.69%), 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.
|