IVF0006229 (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.ATGAAAGGACAACAACAATGGAAAAATATTGCTTTAGTTTGTGTTTTTGTGATGTTAATTTCTAAGACGTATTCGTTGCCGCTTTCAACCAATGGAAGATGGATCGTCGATGCCACAACAGGCCAACGTGTGAAGTTAATGTGTGTAAATTGGCCAGGACACATGCAGGGTATGTTGGCAGAGGGTCTTCATCTTAGGCCACTTAATGATATTGCCGCATTGGTAGTGAAGTTGCGGTTCAATTGCGTGCGTTTGACATATTCAATTCATATGTTCACACGCCATGCTAATTTGACTGTTCAACAATCCTTTGAGAATTTTGATTTGAAGAATACCATCGCAGGAATAGCGCAAAACAATCCTTCTATATTGAACATGACACTTGTTCAGGCGTATGGAGCAGTGGTTGATTCACTTGCTGCACATAGAATCATGGTAGTTTCTGATAATCATATAAGTCAACCAAGATGGTGTTGTGACAATAATGATGGCAACGGCTTCTTTGGAGATCGATATTTGATCCTCAAGAATGGTTGCAAGGAATTAGTTTGGCAGCACAGAGCCTAAAAAGCAAATCACAAGTATGTTTTCTTAGAAGATAATTAAAAGTGGAACATACTTCAAATTATATGGACCAAATAATTAACATTTAAATAATCTATAATTTGTCATCGATTTAATATGACATGCTAACTATTTGCATGATAAATATATGTAAAAGGTGGTGGCAATGAGCTTGAGAAACGAACTGCGAGGACCAAACAAAACGTGGAGAAGTGGTTTCAATATATGAGCCAAGGAGCCAAGCTTATTCACCAAATTAACCCAAATGCTTTAGTAGTAGTTTCTGGATTGAGCTATGACACCGATCTTAGCTTCTTGAAGAATAGGTCAATGGGATTCAACTTGGACAATAAACTTGTATTTGAGGCTCATTTGTACTCCTTCACAAACAACATGGGTGATTTTTGGATGTCGAAGCCATTAAACACGTTTTGTGCTAGTGTCAACCAAGGATTTGAAGATCGAGCAGGGTTTCTTGTGAGAGGACAAAACCCAATACCACTATTTGTTAGCGAATTTGGGATTGACCAAACAGGCGTAAATGAGGGTCAAAAACGATTCTTGAACTGCTTTTTTACCTATCTTACTGAGAATGATTTTGATTGGGGATTATGGGCATTGCAAGGTAGCTACTATTATAGAGAGGTGTGAAAAATGCAGAAGAAACTTTTGGTGTCTTGGATTCCACTTTTGCAAAAGCAAAAAACTCTAAATTATTCCTCCAGAAGTTTCAACTTATGCAATCAAAACTTCAAGGTATAACTCCTCAAGTTTTAGGTCGCTTTTCTACTTTCACTTTAATTTATATCTTAAAAAGACGATTAATTTCTATCCAATTTTCATTTCTAGAATATTTTTTTTGTTCCATACTAATTGAAGAATCAAAATGATTGTCCTTAACACAGATCCAAGTTCAAATCTCATAACATCATTCATAATGTACCATCCTCTTAGCGGTGGGTGTGTGCGAATGAACAAAAAATACCAATTAGGAATCAGTAGCTGTAAGACTTCTAATCGTTGGAGTCATGAACAAGACGGTGCTCCTATTAAGTTGACAGGATCTATACTGTGTTTAAAAGCCATAGGAGTTGGGCTCCCTCCGATTCTCTCTCAAGACTGCTCAAGCCAACAAAGTATTTGGAAATATGGTTCAAATGCCAAATTGCAACTGGCCACTGTTGATGAACAAGGACAAGCCTTATGCTTGCAAAGAGCTTCTCATTCCCATCAAATTGTGACGAATAAGTGTTTGTGTTCTAATGATTCTCAATGCCAAGAAGATCCACAAAGCCAATGGTTTACACTTGTCCCATCAAATCTACGTCGCATTAATTGAGCTCGATATGTAATTATATATATATTTTGTTATTTGAACCTCATTTATTTCCACTCATGCAAATTATTATTCAATATTTTTTAGGGAAATAAACATATCCCAATTGTTCTCAATAATGTCAAGGAAATCCCACAACTAAAATTTGAGGAGTAAATTAAGTGTTATTACAATTTTTTTTCTTGAGAATTAAATATTAAATTTATTTAACTAAAATTAGAAATTTGAAAAATGAGTTCTTTCTATGTAAATTAAATTTAACATCATGTTCATGATAGCTATAACATGTTACTAAATAAATAGTAGTATTTTATAGATTATTAAATCAATCCATATCTAATTTTAATAACAAGTAATACTTTATCCACAATTACTTGATATATATCCATTTTTTTTTTAAATTTACACTTAAATTAATTGAATATTAGTAAAAATTACACTAATAATTATCTATATATTGTTTTCCTTAACAAGGTTGAGCCTTTTTTTTTCTATTAAGGAAAAATATTTGACTATTATAAAAAAGATATATATTTTCCTAAAAAGAGAAAAAAAGTTAGATAATAAAATAAGTAAAATTTAATATATGAACAGGAGTAGTGTTATAAACTTAAACTTTTAAAAAGGCAAATCGCAAGAAACCGGCTCTAAAATATGGTGGTAATTAATTTATACAATTAGATAAGTTTAAAAATTCAATTTTTATAATCACAACAAGTTTAAGGATATAATTTTAACACTTTTCACTACAAGAGTTTTCGTCTTTGCTGAGTAGGAAATCGTGGACAGTTCTTATAAAAAATGTGGACAGAGCTTCTGCCGACGTTTTTCTTGCGTGGACACGTTGCGCGGCCGAAACACTATCGTCTTTTCCTTTGCCCATGTTTTTACGTTGCGTCGGCAAAAATACCAACGCAAATTAAATTGTGGGCAGAAAAGATATTCGTGGGCAAAAATACCTTTCTGCCAACGTTTTTTTCGTGGGCAAAATAGTTTCTGCCAACGAAAGGATTTTTGTCAGGAAAGAAAAATTTCCCCCACGGTAAATTGGTTTTAAATAATATTTTTTTCTTTTTGCCAACGCACCAAACGACGCCACTGCTTTCTAATTGCCAATATATTTCTAGCCAAACAAAGAACGTGGCAAAACGATTTTAATTTTTTTACATGTATTATTAATATTGTATGCTTCTAAATTAAATTTCAAATATATAATAAATTTCCTGTCTATAACAAAATATATTGAACACTGCAACCAAAAATTTAAAAATCAAAATATTTTCAATCATTAATATTTTGTCAAAATATGACAATCCATAATTGAATACTTTGTCAAAATATGACAAACAATCATTCTCTAGCGTGCCAAGGTTCATGAGCTATATTAAATTTCATTTTGGCATACCAAAATGAAAAAGAAAAAATTACATATACAAAAAATGGTTAACTAAGCCAGAATGTTTTCATTCTCCGCTCCTTCAAACTACATAAACCTAAAAAAGATATATTAAATCGAATAAGTCTCATTCTAATGTGAGCGTTCAAATTAAACAAGATGCATGGCCTAAGTGTGACTTTCAAACCCGAAACCAACCTAAAAAGTCCTAAAAAAAAGTGTTTAGGAGACACTTTAACTCTCAAAACAACACTTACATGCCCCAAGTGTGACTAAAGATATGAAATTTGGGAAAACATTCATATTTTGATCAATAGAACAAATAGAAAGAATTGAAACGATATGACCATCGGGTAAAAGACATATATACAACAAAAAACGGCCAATATATAATAAAGATACTTGTTAACTTGATAGGGCTTACCAAGTAAACAATAGGCTTGGCTGTGAGCAATTGAAAAGTATTGAGAATCTCAACATTAGCAGCTTTCCAATCACCTAAACGAACATCTTTGCCTTCCTCAGGCGATGCCTTGACCTGAATTACGTCGGCATAAATATGTGTAAAAACGTGAGGTTTTTCTCCACGTAAATTACATCGGCAAATACTTAAAATATCTGCCCACACATCATACGTGGATATAAACTAAAATAAACGTCGGCAGAAATACAACTTAAAAAATTTCCTTAAAACCTCACAACTTTTTGCCAACATTTATATTTTCGTGGACAAAAACGATGATGTACCCACGCAATACGCAAATTTTGCCCACGTAAATATTTCGTCGGCAAAAATGAAGATGTGCCCACGTAATGAAAACTACTTCGACACATCATATCTTTGCCCGTAGAAACCAAAATTCTTGTAGTGTTTATAAATTTAAAAACAATTTATTAATCTTAAGAGAGGTTTTTGCCCTTTGTCTTCTTTTAAAATAATAACTAAAAGTTATATATCCAACAAGGTTTAAGGTCCCTAACTATTCCAACCAATGATATTTTTGTTCCTTTTGTTATCTCTACTTATTAAATATTGTCTAAAAAAAAAATTCAAACCAAGTTTTTGAAAAATTAAGGAAAACAGTGTTTAAGAATCCGATATTTTTATAATTTGACTAATAACTCAAAATTTAGATAAAACCATACAAGAGATTATTAGAAACAAACCAAATAAAAAAATAAAAAATCAAGGAAGATCTAATTCATCCGGACTAAACAACTAATCGATCTCACAAAAAATCCAAAGAATAAAATGAAACGAGTTTGTAATAGGTTTTAATTCTAAGCTCAATTGAGCGTTTTAAGTCCATTTGGTTATACCAAACTCATCTATTTCTCCTATAGTTTTCATACTCTACTTTTGTTTTTCTCTTTACTTGTGGAAGAACCTAAAAGGTTGCTCTTTTATACAGATCCAAGTTCAAATTTCACAACAACATTCATAATGTACCATCCTCTTAGCGGCGAGTGTGTGCGAATGAACAAAAGATATCAATTAGGAATCAGTAGTTGTAAGACTTCTAACCGTTGGAGTCATGAACAAGACGGTGCTCCTATTAAGTTGGCAGGATCTATATGTGTTTGAAAGCCATAGGAGTTGGGCTCCCCCCAATTCTCTCTCAAGACTGCTCAAGCCAACAAAGTATTTGGAAATATGGTTCAAATGCCAAATTGCAACTGGCCACTGTTGATGAACAAGGACAAGCCTTATGCTTGCAAAGAGCTTCTCATTCCCATCAAATTGTGACCAATAAGTGTTTGTATTCTAACGATTCTCAATGCCAAGAAGATCCACAAAGCCAATGGTTTACACTTGTCCCATCAAATCTACGTCTCATAGCTTAAAATATATATAGATTTGTTTGAACCTCATTTATTTCAATTCATGCAAATTATTATTCAAATATTTTTTAGGGAAATAAACTTATCTAATTGTTCTCATAATGTCGAGGAAATCCCACAACTAAAATTTGAGGAGGAAAAAAGGTATTATTAAATTTTTTTCCTTGAGAATTAAAAATAAATTTATTTGACTAAATTAGAAATTTTGAAAAATAACTTTATATGTAATTTAATATTATATTCATTATTGCCGTAACATGGTACCAAATAAATAATAATACACTATAAAATTAAAATCAACCATATCTAGTTTTAAAAACAAATTGGACTTTATCAACAATTATATGAATATATCAATTTTTGTTTTAAACTTACACTTGCATTGTTAAATTACACTAAATACTATATTTTTAATTTTNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNATGTGTGTAAATTGCCAGGACACATGCAGGGTATGTTGGCAGAGGGTCTTCATCTAGGCCACTTAATGATATTGCCGCATTGGTAGCGAAGTTGCGGTTCAATTGCGTGCGTTTGACATATTCAATTCATATGTTCACACGCCATGCTAATTTGACTGTTCAACAATCCTTTGAGAATTTTGATTTGAAGAATACCATCGCAGGAATAGCGCAAAACAATCCTTCTATATTGAACATGACACTTGTTCAGCGTAGGAGCAGTGGTTGATTCACTTGCTGCACATAGAATCATGGTAGTTTCTGATAATCATATAAGTCAACCAAGATGGTGTTGTGACAATAATGATGGCAACGGCTTCTTTGGAGATCGATATTTTGATCCTCAAGAATGGTTGCAAGGAATTAGTTTGGCAGCACAGAGCCTAAAAAGCAAATCACAAGTATGTTTTCTTTTTAAGAAGAATTAAAAGTGGAACATACTTCAAATTATATGGACCAAATAATTAACATTTAAATAATCTATCTAATTTGTCATCGATTTAATATGACATGCTAACTATTTGCATGATAATATATATGTAAAAGGTGGTGGCAATGAGCTTGAGAAACGAACTGCGAGGACCAAACCAAAACGTGGAGAAGTGGTTTCAATATATGAGCCAAGGAGCCAAGCTTATTCACCAAATTAACCCAAACGCTTTAGTAGTAGTTTCTGTTGAGCTATGACACCGATCTTAGCTTCTTGAAGAATAGGTCAATGGGATTCAACTTGGACAATAAACTTGTATTTGAGGCTCATTTGTACTCCTTCACAAACAACATGGGTGATTTTTGGATGTCGAAGCCATTAACACGTTTTGTGCTAGTGTCAACCAAGGATTTGAAGATCGAGCAGGGTTTCTTGTGAGAGGACAAACCCAATACCACTATTTGTTAGCGAATTTGGGATTGACCAAACAGGCGTAAATGAGGGTCAAAAACGATTCTTGAACTGCTTTTTTACCTATCTTACTGAGAATGATTTTGATTGGGGATTATGGGCATTGCAAGGTAGCTACTATTATAGAGAAGGTGTGAAAAATGCAAAGAAACTTTTGGTGTCTTGGATTCCACTTTTGCAAAAGCAAAAACTCTAAATTATTCCTCCAAAGTTTCAACTTATGCAATCAAAACTTCAAGGTATACTCCTCAAGTTTTAGGTCGCTTTTCTACTTTCACTTTAATTTATATCTTAAAAAGACGATTAATTTCTATCCAATTTTCATTTCTAGAATATTTTTTTTGTTCCATACTAATTGAAGAATCAAAATGATTGTCCTTAACACAGATCCAAGTTCAAATCTCATAACATCATTCATAATGTACCATCCTCTTAGCGGTGGGTGTGTGCGAATGAACAAAAATACCAATTAGGAATCAGTAGCTGTAAGACTTCTAATCGTTGGAGTCATGAACAAGACGGTGCCCTATTAAGTTGACAGGATCTATACTGTGTTTAAAAGCCATAGGAGTTGGGCTCCCTCCGATTCTCTCTCAAGACTGCTCAAGCCAACAAAGTATTTGGAAATATGGTTCAAATGCCAAATTGCAACTGGCCACTGTTGATGAACAAGGACAAGCCTTATGCTTGCAAAGAGCTTCTCATTCCCATCAAATTGTGACGAATAAGTGTTTGTGTTCTAATGATTCTCAATGCCAAGAAGATCCACAAAGCCAATGGTTTACACTTGTCCCATCAAATCTACGTCGCATTAATTGAGCTCGATATGTAATTATATATATATTTTGTTATTTGAACTCATTTATTTCCACTCATGCAAATTATTATTCAAATATTTTTTAGGGAAATAAACATATCCCAATTGTTCTCAATAATGTCAAGGAAATCCCACAACTAAAATTTGAGGAGTAAATTAAGTGTTATTACAATTTTTTTTTCTTGAGAATTAAATATTAAATTTATTTAACTAAAATTAGAAATTTGAAAAATGAGTTCTTTCTATGTAAATTAAATTTAACATCATGTTCATGATAGCTATAACATGTTACTAAATAAATAGTAGTATTTTATAAGATTAAAATCAATCCATATCTAATTTTAATAACAAGTAATACTTTATCCACAATTACTTGATATATATCCATTTTTTTTTTAAATTTACACTTAAATTAATTGAATATAGTAAAAATTACACTAATAATTATCTATATATTGTTTTCCTTAACAAGGTTGAGCCTTTTTTTTCTATTAAGGAAAATATTTGACTATTATAAAAAAGATATATAATTTTCCTAAAAAGAGAAAAAAAGTTAGATAATAAAATAAGTAAAATTTAATATATGAACAGGAGTAGTGTTTATAAACTTAAACTTTTAAAAAGGCAAATCGCAAGAAACCGCTCTAAAATATGGTGGTAATTAATTTATACAATTAGATAAGTTTAAAAATTCAATTTTTATAATCACAACAAGTTTAAGGATATAATTTTAACACTTTTCACTACAAGAGTTTTCGTCTTTGCTGAGTAGGAAATCGTGGACAGTTCTTATAAAAAATGTGGACAGAGCTTCTGCCGACGTTTTTCTTGCGTGGACACGTTGCGCGGCCGAAACACTATCGTCTTTTCCTTTGCCCATGTTTTTTACGTTGCGTCGGCAAAAATACCAACGCAAATTAAAATTGTGGGCAGAAAAGATATTCGTGGGCAAAAATACCTTTCTGCCAACGTTTTTTTCGTGGGCAAAAATAGTTTCTGCCAACGAAAGGATTTTTGTCAGGAAAGAAAAATTTCTCCCCACGGTAAATTTGTTTTTAAATAATATTTTTTTTCTTTTTGCCAACGCACCAAACGACGCCACTGCTTTCTAATTGCCAATATATTTCTAGCCAAACAAAGAACGTGGCAAAAACGATTTTAATTTTTTTTACATGTATTATTAATATTGTATGCTTCTAAATTAAATTTCAAATATATAATAAATTTCCTGTCTATAACAAAATATATTGAACACTGCAACCAAAAATTTAAAAATCAAAATATTTTCAATCATTAATATTTTGTCAAAATATGACAATCCATAATTGAATACTTTGTCAAAATATGACAAACAATCATTCTCTAGCGTGCCAAGGTTCATGAGCTATATTAAATTTCATTTTGGCATACCAAAATGAAAAAGAAAAAATTACATATACAAAAAATGGTTAACTAAGCCAGAATGTTTTCATTCTCCGCTCCTTCAAACTACATAAACCTAAAAAAGATATATTAAATCGAATAAGTCTCATTCTAATGTGAGCGTTCAAATTAAACAAGATGCATGGCCTAAGTGTGACTTTCAAACCCGAACCAACCTAAAAAGTCCTAAAAAAAAGTGTTTAGGAGACACTTTAACTCTCAAAACAACACTTACATGCCCAAGTGTGACTAAAGATATGAAATTTGGGAAAACATTCATATTTTGATCAATAGAACAAATAGAAAGAATTGAAAACGATATGACCATCGGGTAAAAGACATATATACAACAAAAAACGGCCAATATATAATAAAGATACTTGTTAACTTGATCTTACAAGTAAACAATAGGCTTGGCTGTGAGCAATTGAAAAGTATTGAGAATCTCAACATTAGCAGCTTTCCAATCACCTAAACGAACATCTTTGCCTTCCTCAGGCGATGCCTTGACCTGAATTACGTCGGCATAAATATGTGTAAAAAACGTGAGGTTTTTCGCCACGTAAATTACATCGGCAAATACTTAAAATATCTGCCCACACATCATACGTGGATATAAACTAAAATAAACGTCGGCAGAAATACAACTTAAAAAATTTCCTTAAAACCTCACAACTTTTTGCCAACATTTATATTTTCGTGGACAAAAACGATGATGTACCCACGCAATACGCAAATTTTGCCCACGTAAATATTTTCGTCGGCAAAAATGAAGATGTGCCCACGTAATGAAAACTACTTCGACACATCATATCTTTGCCCGTAGAAACCAAAATTCTTGTAGTGTTTATAAATTTAAAAACAATTATTAATCTTAAGAGAGGATTTTTGCCCTTCGTCTCTTTTAAAAATAATAACTAAAAGTTATATATCCAACAAGGTTTAAAGTCCCTAACTATTCCAACCAATGATATTTTTGTTCCTTTTGTTATCTCTACTTATTAAATATTGTCTTAAAAAAAATTCAAACCAAGTTTTTGAAAAATTAAGGAAAACAGTGTTTTAAGAATCCGATATTTTTATAATTTGACTAATAACTCAAAATTTAGATAAAAACCATACAAGAGATTATTAAGAAACAAACCCAAATAAAAAAAATAAAAAATCAAGGAAGATCTAATTCATACGGACTAAACAACTGAATAATCGATCTCACAAAAAATCCAAAGAATAAAATGAAACGAGTTTGTAATAGGTTTTAATTCTAAGCTCAATTGAGCGTTTTAAGTCCATTTGGTTATACCAAACTCATCTATTTCTCCTATAGTTTTCATACTCTACTTTTGTTTTTCTCTTTACTTGTGGAAGAACCTAAAAGGTTGCTCTTTTATACAGATCCAAGTTCAAATTTCACAACAACATTCATAATGTACCATCCTCTTAGCGGCGGGTGTGTGCGGATGAACAAAAGATATCAATTAGGAATCAGTAGCTGTAAGACTTCTAACCGCTGGAGTCATGAACAAGACGGTGCTCCTATTAAGTTGGCAGGATCTATATTGTGTTTGAAAGCCATAGGAATTGGGCTCCCCCCAATTCTCTCTCAAGACTGCTCAAGCCAACAAAGTATTTGGAAATATGGTTCAAATGCCAAATTGCAACTGGCCACTGTTGATGAACAAGGACAAGCCTTATGCTTGCAAAGAGCTTCTCATTCCCATCAAATTGTGACGAATAAGTGTTTGTGTTCTAATGATTCTCAATGCCAAGAAGATCCACAAAGCCAATGGTTTACACTTGTCCCATCAAATCTACGTCACATTAATTGA ATGAAAGGACAACAACAATGGAAAAATATTGCTTTAGTTTGTGTTTTTGTGATGTTAATTTCTAAGACGTATTCGTTGCCGCTTTCAACCAATGGAAGATGGATCGTCGATGCCACAACAGGCCAACGTGTGAAGTTAATGTGTGTAAATTGGCCAGGACACATGCAGGGTATGTTGGCAGAGGGTCTTCATCTTAGGCCACTTAATGATATTGCCGCATTGGTAGTGAAGTTGCGGTTCAATTGCGTGCGTTTGACATATTCAATTCATATGTTCACACGCCATGCTAATTTGACTGTTCAACAATCCTTTGAGAATTTTGATTTGAAGAATACCATCGCAGGAATAGCGCAAAACAATCCTTCTATATTGAACATGACACTTGTTCAGGCGTATGGAGCAGTGGTTGATTCACTTGCTGCACATAGAATCATGGTAGTTTCTGATAATCATATAAGTCAACCAAGATGGTGTTGTGACAATAATGATGGCAACGGCTTCTTTGGAGATCGATATTTGATCCTCAAGAATGGTGGTGGCAATGAGCTTGAGAAACGAACTGCGAGGACCAAACAAAACGTGGAGAAGTGGTTTCAATATATGAGCCAAGGAGCCAAGCTTATTCACCAAATTAACCCAAATGCTTTAGTAGTAGTTTCTGGATTGAGCTATGACACCGATCTTAGCTTCTTGAAGAATAGGTCAATGGGATTCAACTTGGACAATAAACTTGTATTTGAGGCTCATTTGTACTCCTTCACAAACAACATGGGTGATTTTTGGATGTCGAAGCCATTAAACACGTTTTGTGCTAGTGTCAACCAAGGATTTGAAGATCGAGCAGGGTTTCTTGTGAGAGGACAAAACCCAATACCACTATTTGTTAGCGAATTTGGGATTGACCAAACAGGCGTAAATGAGGGTCAAAAACGATTCTTGAACTGCTTTTTTACCTATCTTACTGAGAATGATTTTGATTGGGGATTATGGGCATTGCAAGGTAGCTACTATTATAGAGAGGTTTCAAATTTCACAACAACATTCATAATGTACCATCCTCTTAGCGGCGGGTGTGTGCGGATGAACAAAAGATATCAATTAGGAATCAGTAGCTGTAAGACTTCTAACCGCTGGAGTCATGAACAAGACGGTGCTCCTATTAAGTTGGCAGGATCTATATTGTGTTTGAAAGCCATAGGAATTGGGCTCCCCCCAATTCTCTCTCAAGACTGCTCAAGCCAACAAAGTATTTGGAAATATGGTTCAAATGCCAAATTGCAACTGGCCACTGTTGATGAACAAGGACAAGCCTTATGCTTGCAAAGAGCTTCTCATTCCCATCAAATTGTGACGAATAAGTGTTTGTGTTCTAATGATTCTCAATGCCAAGAAGATCCACAAAGCCAATGGTTTACACTTGTCCCATCAAATCTACGTCACATTAATTGA ATGAAAGGACAACAACAATGGAAAAATATTGCTTTAGTTTGTGTTTTTGTGATGTTAATTTCTAAGACGTATTCGTTGCCGCTTTCAACCAATGGAAGATGGATCGTCGATGCCACAACAGGCCAACGTGTGAAGTTAATGTGTGTAAATTGGCCAGGACACATGCAGGGTATGTTGGCAGAGGGTCTTCATCTTAGGCCACTTAATGATATTGCCGCATTGGTAGTGAAGTTGCGGTTCAATTGCGTGCGTTTGACATATTCAATTCATATGTTCACACGCCATGCTAATTTGACTGTTCAACAATCCTTTGAGAATTTTGATTTGAAGAATACCATCGCAGGAATAGCGCAAAACAATCCTTCTATATTGAACATGACACTTGTTCAGGCGTATGGAGCAGTGGTTGATTCACTTGCTGCACATAGAATCATGGTAGTTTCTGATAATCATATAAGTCAACCAAGATGGTGTTGTGACAATAATGATGGCAACGGCTTCTTTGGAGATCGATATTTGATCCTCAAGAATGGTGGTGGCAATGAGCTTGAGAAACGAACTGCGAGGACCAAACAAAACGTGGAGAAGTGGTTTCAATATATGAGCCAAGGAGCCAAGCTTATTCACCAAATTAACCCAAATGCTTTAGTAGTAGTTTCTGGATTGAGCTATGACACCGATCTTAGCTTCTTGAAGAATAGGTCAATGGGATTCAACTTGGACAATAAACTTGTATTTGAGGCTCATTTGTACTCCTTCACAAACAACATGGGTGATTTTTGGATGTCGAAGCCATTAAACACGTTTTGTGCTAGTGTCAACCAAGGATTTGAAGATCGAGCAGGGTTTCTTGTGAGAGGACAAAACCCAATACCACTATTTGTTAGCGAATTTGGGATTGACCAAACAGGCGTAAATGAGGGTCAAAAACGATTCTTGAACTGCTTTTTTACCTATCTTACTGAGAATGATTTTGATTGGGGATTATGGGCATTGCAAGGTAGCTACTATTATAGAGAGGTTTCAAATTTCACAACAACATTCATAATGTACCATCCTCTTAGCGGCGGGTGTGTGCGGATGAACAAAAGATATCAATTAGGAATCAGTAGCTGTAAGACTTCTAACCGCTGGAGTCATGAACAAGACGGTGCTCCTATTAAGTTGGCAGGATCTATATTGTGTTTGAAAGCCATAGGAATTGGGCTCCCCCCAATTCTCTCTCAAGACTGCTCAAGCCAACAAAGTATTTGGAAATATGGTTCAAATGCCAAATTGCAACTGGCCACTGTTGATGAACAAGGACAAGCCTTATGCTTGCAAAGAGCTTCTCATTCCCATCAAATTGTGACGAATAAGTGTTTGTGTTCTAATGATTCTCAATGCCAAGAAGATCCACAAAGCCAATGGTTTACACTTGTCCCATCAAATCTACGTCACATTAATTGA MKGQQQWKNIALVCVFVMLISKTYSLPLSTNGRWIVDATTGQRVKLMCVNWPGHMQGMLAEGLHLRPLNDIAALVVKLRFNCVRLTYSIHMFTRHANLTVQQSFENFDLKNTIAGIAQNNPSILNMTLVQAYGAVVDSLAAHRIMVVSDNHISQPRWCCDNNDGNGFFGDRYLILKNGGGNELEKRTARTKQNVEKWFQYMSQGAKLIHQINPNALVVVSGLSYDTDLSFLKNRSMGFNLDNKLVFEAHLYSFTNNMGDFWMSKPLNTFCASVNQGFEDRAGFLVRGQNPIPLFVSEFGIDQTGVNEGQKRFLNCFFTYLTENDFDWGLWALQGSYYYREVSNFTTTFIMYHPLSGGCVRMNKRYQLGISSCKTSNRWSHEQDGAPIKLAGSILCLKAIGIGLPPILSQDCSSQQSIWKYGSNAKLQLATVDEQGQALCLQRASHSHQIVTNKCLCSNDSQCQEDPQSQWFTLVPSNLRHIN Homology
BLAST of IVF0006229 vs. ExPASy Swiss-Prot
Match: C0HLA0 (Glycosyl hydrolase 5 family protein OS=Chamaecyparis obtusa OX=13415 PE=1 SV=1) HSP 1 Score: 349.0 bits (894), Expect = 8.7e-95 Identity = 201/535 (37.57%), Postives = 280/535 (52.34%), Query Frame = 0
BLAST of IVF0006229 vs. ExPASy TrEMBL
Match: A0A5A7UGS0 (Mannan endo-1,4-beta-mannosidase OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold231G00740 PE=3 SV=1) HSP 1 Score: 887.9 bits (2293), Expect = 1.9e-254 Identity = 441/521 (84.64%), Postives = 450/521 (86.37%), Query Frame = 0
BLAST of IVF0006229 vs. ExPASy TrEMBL
Match: A0A5D3DAU2 (Mannan endo-1,4-beta-mannosidase OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold480G001170 PE=3 SV=1) HSP 1 Score: 885.6 bits (2287), Expect = 9.5e-254 Identity = 440/521 (84.45%), Postives = 449/521 (86.18%), Query Frame = 0
BLAST of IVF0006229 vs. ExPASy TrEMBL
Match: A0A5A7UKF5 (Mannan endo-1,4-beta-mannosidase OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold318G00930 PE=3 SV=1) HSP 1 Score: 884.0 bits (2283), Expect = 2.8e-253 Identity = 439/521 (84.26%), Postives = 448/521 (85.99%), Query Frame = 0
BLAST of IVF0006229 vs. ExPASy TrEMBL
Match: A0A5A7UH31 (Mannan endo-1,4-beta-mannosidase OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold231G00730 PE=3 SV=1) HSP 1 Score: 880.9 bits (2275), Expect = 2.4e-252 Identity = 434/481 (90.23%), Postives = 441/481 (91.68%), Query Frame = 0
BLAST of IVF0006229 vs. ExPASy TrEMBL
Match: A0A5D3CGT4 (Mannan endo-1,4-beta-mannosidase OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold66G00030 PE=3 SV=1) HSP 1 Score: 871.3 bits (2250), Expect = 1.9e-249 Identity = 423/499 (84.77%), Postives = 450/499 (90.18%), Query Frame = 0
BLAST of IVF0006229 vs. NCBI nr
Match: KAA0055143.1 (endoglucanase-like [Cucumis melo var. makuwa]) HSP 1 Score: 880 bits (2274), Expect = 0.0 Identity = 441/521 (84.64%), Postives = 450/521 (86.37%), Query Frame = 0
BLAST of IVF0006229 vs. NCBI nr
Match: TYK20717.1 (endoglucanase-like [Cucumis melo var. makuwa]) HSP 1 Score: 878 bits (2268), Expect = 0.0 Identity = 440/521 (84.45%), Postives = 449/521 (86.18%), Query Frame = 0
BLAST of IVF0006229 vs. NCBI nr
Match: KAA0054031.1 (endoglucanase-like [Cucumis melo var. makuwa]) HSP 1 Score: 876 bits (2264), Expect = 0.0 Identity = 439/521 (84.26%), Postives = 448/521 (85.99%), Query Frame = 0
BLAST of IVF0006229 vs. NCBI nr
Match: KAA0055142.1 (endoglucanase-like [Cucumis melo var. makuwa]) HSP 1 Score: 873 bits (2256), Expect = 0.0 Identity = 434/481 (90.23%), Postives = 441/481 (91.68%), Query Frame = 0
BLAST of IVF0006229 vs. NCBI nr
Match: TYK11103.1 (endoglucanase-like [Cucumis melo var. makuwa]) HSP 1 Score: 864 bits (2232), Expect = 2.02e-314 Identity = 423/499 (84.77%), Postives = 450/499 (90.18%), Query Frame = 0
BLAST of IVF0006229 vs. TAIR 10
Match: AT3G26130.1 (Cellulase (glycosyl hydrolase family 5) protein ) HSP 1 Score: 364.4 bits (934), Expect = 1.4e-100 Identity = 207/529 (39.13%), Postives = 283/529 (53.50%), Query Frame = 0
BLAST of IVF0006229 vs. TAIR 10
Match: AT1G13130.1 (Cellulase (glycosyl hydrolase family 5) protein ) HSP 1 Score: 337.4 bits (864), Expect = 1.9e-92 Identity = 190/527 (36.05%), Postives = 283/527 (53.70%), Query Frame = 0
BLAST of IVF0006229 vs. TAIR 10
Match: AT3G26140.1 (Cellulase (glycosyl hydrolase family 5) protein ) HSP 1 Score: 336.3 bits (861), Expect = 4.1e-92 Identity = 195/513 (38.01%), Postives = 276/513 (53.80%), Query Frame = 0
BLAST of IVF0006229 vs. TAIR 10
Match: AT5G16700.1 (Glycosyl hydrolase superfamily protein ) HSP 1 Score: 300.1 bits (767), Expect = 3.3e-81 Identity = 177/494 (35.83%), Postives = 260/494 (52.63%), Query Frame = 0
BLAST of IVF0006229 vs. TAIR 10
Match: AT5G17500.1 (Glycosyl hydrolase superfamily protein ) HSP 1 Score: 292.0 bits (746), Expect = 9.0e-79 Identity = 179/524 (34.16%), Postives = 264/524 (50.38%), 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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