MELO3C004131 (gene) Melon (DHL92) v4
Overview
Sequences
The following sequences are available for this feature:
Legend: polypeptideexonCDSthree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.ATGTCTGCTCAGATCCAAAGATCCAATCGATCTCCTCTTCTCCTCTTCACACTCTCTCTTCTCGCTCTTTCCGTTCTCTTCATCCTTGTTTTCTTATCTCCTTCCAATCCCAATCCAAATCCCACTTCCTTCCACTCTCCAATTTCCTCTCTCAAACCCGAAACTTCCTTCGTCGTTTCACTCGAGCACTTTCTCACTCACAAGGCTCCTAAATCCCCTCCGCTACGCGATGACACCGCTCCTGTTGCCGGAGATGTTGAAGACGCCTCAAGGAAGCTCGATGAGGCACTTTCTGAGGCAGAAATGGAGCGGGTGGTTCGAGATCCGTACTATCCGTTGGGATCTCCAATTAGAGTTTATGTGTATGAAATGCCGTGGAAATTCACTTATGATTTGCTCTGGACGTTCAGGAATACCTACAGAGAGACCTCTAATCTCACCTCCAATGGCAGCCCCGTCCACCGCCTTATTGAACAGGTATTTAGTTATGAATTTTATGCTTACCTCACTTGTGGCTTCGAGAATTTACATTGTTCTCGAGTGATTTTCAATATTACATTGTTTTGTAATTATCAATATTAATTGACCGAAAATGCCATTATTGATCTGAATACGAGATGCTCTTATATTGACTCGAAGTTTTATTAATAGATTAGGACTGTTAATCTAGTATATATAATATACTTAACGAGTGAACTTGTTTGAATCGCATTTCTTACGTGGACTGAAAACGGTGTTTATAACATTATTCTACTTGATATCAATTATGGAGGTCAAATTATTTCATTTAAAATTTCAGAGAACATAAGACGATTCTACTGTTTGAAAGTGGATTACTTTTTTTGTAGCATATTCATGTTAGATACGTTTATCTCGTCTCTTGTTGATGTTATGAAGTGATGAGCCTTATGTAGAACTCTATGAGCTTCTTGCTCGTTGTGTATAGATGCAGTTTTAGTATTCCATATACCTAAGTATTTATTTCAGAATTACAAGTTTCTATTTGTCGTAAATAAAATGCCAAAAATGGGTTTCTGTTGTAGCACTCTATTGATTACTGGCTGTGGGCCGACTTAATCGCTCCAGAGTCAGAGAGACTGCTGAAAGGTGTGGTGAGGGTTCATCGGCAGGAGGAAGCAGATCTCTTCTATATTCCCTTCTTCACAACTATCAGCTTCTTCTTGTTGGAGAAACAACAGTGCAAAGCACTTTACAGGGTGTGAGTGAGCTTCCAAGGTTTTCTTTTATTATTTTTTTCAGTTGTTATGCATGTCATGCCTATATCATATTAGTCTTTTCTTTAAGGAGGAAGTGGATTTATTTAATTAATCAGAAGAGGGGGAAGAACTGCTCTAAAGCGAGCAATCTCTAGATGTGAGCAGGTAGTCGTTTTAAGGGAGGATACAGTTGCCAAGCTGATTCCCATTAGTTGTATAGGATAGGAAGAGATCCTGTTGGCTCTGAAACTAAATGCTGCCAATTTACACGAAAGCTTAAGCTGGTGGTCGAAAGCTTAAGCTGGTGGTTGAAGGCAAATTTAATTATATATCACCAACACTCCCTCTCACTTGTGGGCGAAATATTTGAAAGGCCCAACAAGTGGAAATCAATTTTACCTCACTTGTGGGCTGAAATGTTTGAAAGACCCAGCAAGTGGAAATTAATTTTTAATTGGGGGAAAACAACAATGCAAGGGCTTGAACACAGGACCTCCCTGGATCACCTGCTCTGATACCATATTAAACTGCCAATTCACACAAAAGCTTAAGCTGGTGGTTGAAGGCAAATTTAATTATATATCACCAATAGTTACAATGACCAAGGTATTCAATAATAGTTAACCATGATATGTGCATAGTCCCAATACTTAGAAGAGAGCAGCCTAAAGGAAAGGACTTTTGTGGGATTTGGAATTGTTGTTGATTGGTTAGGGTGGCCCTATGTTGAGGTGAACTTTTGAGAATCCTAGTGGTTGAGGAATAAGGAGTACCATGGATTCATTAAACCCATTAAGTACTTGAATTTGTTTATCTCACTTGGCAATGAAAGTTTGGCTTGGTCCAGTCATAGAGGCTAGCCGATCTGATCATGGCTCTAATAGATTGATTTCTTGTTCTTTTATTTTGAAGTATCAGAACTTTAGGGTTCACTGAGACCGAAAAGTTCCAAAATGAAATTCGACGTTCAGTGCAATTTCTATTTCCTGGTGCTAATTATGATTATTTTGGAATTTTATTTTTGTTCAAAATACAGTACTTTTGTTTGTGCTCCATAAAGCATTGATGTACTTTTACATGTGGATCCAGGAGGCTCTGAAATGGGTGACAGATCAACCTGCATGGAAGCGATCTGAAGGCAGGGATCACATACTTCCAGTTCATCATCCATGGTCTTTTAAGACCGTTAGAAAATTTATGAAGAATGCCATTTGGTTACTACCAGATATGGACTCAACGGGGAACTGGTAGAGAATTAACATGATAGAACCTCTTAGAAGATATTGATGTTCTTTTGAAGCTTGATTAAATGACATGTACCCAATATCTTTAGGTACAAGCCTGGACAAGTCTATCTGGAAAAGGACCTTATACTTCCCTATGTTCCAAATGTTGATTTATGTGACAGCAAATGCTTAGCAAACCAGCAATCAAAGAGAAGCATACTCCTCTTTTTCCGTGGTCGGCTCAAAAGAAATGCAGTAAGTTTTGTTTGATAAATATTGGTAGAATTTTCTGCACTTCACACTTTTTCTTATGCATTTGTTTAATGTATAGTAAGATGTATGAACTTTCTTTAGTGAGACGCATGAACTTTTTTGGGTAAGTTATGAGTTGATTCCTTAAACGGAACCAAATACAGCCATGTAAAATTTAAACTTAGCTGGCGATGGATGAGTGCTTTGGTAATAGACTAGAATCATAATTCAAGCACAGCCCTTGATAGACTATTCTACTTACTCTTAGGGAGGAAAGATACGGGCAAAACTTGGTGGAGAGCTAAGTGGTGCAGATGATGTACTAATAGAAGAAGGAACGGCTGGAGAAGGAGGGAAAGCTGCAGCTCAGACTGGAATGCGCAAGTAATATTTAAGTTTTTATTTTAACCTCTTCTGCATTCTCTTTTGTTACCGTTGCAGATTTCAGATTGTCCAACGTTTCTTCCATTTCCAGGTCCATCTTTTGCTTAAGTCCTGCCGGCGACACACCATCATCTGCCAGATTGTTTGATGCTATCGTCAGCGGCTGCATTCCTGTCATTGTTAGTGATGAATTGGAGCTTCCATTTGAAGGAATACTTGATTACAGGAAGGTAAATTGATGTATCAGTGTCACTTTCTTTTTAATATTTATTGGTAACGTATTTAATTTGCTGTTACATTAATGAATTTGAGACATTTCTTTACATTAAAAATATTGCAACTGATATAATCTTTGGTTATACAAAATTGAAATTTCAATTTCATAGTTCAACCAAAATCGTATCAAAAAACTTCTGGAAAGCAGTAAAAGAAAAATTTTCTTTTTATATCCGTGAGTGTCAGGCCAGCTTACATTTATCTCAACTAAACTCAATAAAAATAAAGAATTAATAAATTGTTTGTCTATCTAGACTATATTGTCAATAGCATGATTTCTTCTTACTGAATAGGTTGCGAAAGAGTATGCAAGAATTGTGGAACGTTTCTCTCTGATGTCCTAGAACTTAAATGGCATTTTCCTCTTGCAGATCGCTCTATTTGTTTCCTCTAGCGATGCTCTAAAATCAGGATGGCTTTTAACATATTTGAGGAGTTTTAGTGCTGCTGATATCAGAAGATTGCAACAAAATCTCGCCAAGGTGTGTAGCTCCTCCAAAATATAAGTAATTCTAATAATACCTTTATAGTGCTATTTCTTGCTTTGTCAAAGTTTTTGGTTCGAATAACTTTCTATGCACTTCTTCTTGGGTATGCGGCTAAGCGAGGTGGATCATATATCATTCTAGTACTTGGTGTTTTACATCTTGAATGATCTTTGTTCCTCAACTGAGATACCCTAGTTGGTGTCCATAATCGATTACTATAGGTTATGGCTATTTCTTTGTTGGGGCCTTTTTGGAATTACATTTCAACCACATAAGAGTTTCTAAAACAGCAATGGATTAATTTTAGCATTATTGAAAGCAATTAACAACAACCCGAGACTTACGTGGAAACCCGAGAACCGGGAGAAAAACCACGATACTTTAGTTTTTATTATTTTTCTTATGAACAAAAACAATAGGTACAAAGGGAGTATAAATAGAGTACAATAGGAATAAGAAAGGAAAAGATTTAGGAAATATTTAGGAAATAAAATCTTATATTTTATTTTTTCCAAAAGTATATTTTATTCTTTCCAAAAGTACTAATTCTAACACTCCCCCTCAAGTTGGGAGGTAAATATCAATGAGTCCCAACTTGCTAACGCAAAGGTCGAAGTGTGGTCGGAGAAGCCCCTTGGTAAGAACATCAGCAATCTGTTGGCTTGAAGGAATGTACGGAATGCATATGCTTCCACTGTCAAGTCTTTCTTTGATGAAATGCCGATCAATCTCAACATGTTTAGTTCTATCATGTTGCACTGGGTTGTTAGCAATACTAATAGCGGCTTTATTATCACAAAAAAGCTTCAATGGTGTCTCACATTCCTGATGAAGATCTGACAAGACTTTCTGGAGCCAAATTTCCTCACATATTCCCAGACTCATAGCTCTGTATTCAGCCTCAGCACTGCTCCTGGCCACAACACTTTGCTTCTTACTCCTCCAAGTTACAAGATTGCCCCAAACAAAGGTACAATAACCGGATGTAGACTTTCTATCAATAACAGATCCTGCCCAATCTGAGTCAGTATATGCCTCAATGGTCTTTCTATTTGTTTTTCTAAACATCAACCCTTTACCAAGTGTATTTTTCAAGTATCTCAGGATTCTGTTAACAGCTTCCATATGTTTCTCATAGGGAGCCTGCATAAACTGGCTGACAACACTCACAGCAAAGGAAATATCCGGACGAGTATGGGATAAGTAAATTAATTTACCTACAAGGCGCTGATATTGTTCTTTATCAACTGGAACTTGATCATCAGAGTTTCCTAGTTTACAGTTGAATTCAATAGGAGTATCAGCAGGACGACATCCCAACATACCTGTCTCGGTTAGCAAATCAAGGGTGTATTTTCTCTGAGACACGGAAATACCTTCTTTTGATCTAGCCACCTCCATTCCAAGGAAATATTTCAGATTTCCCAAGTCTTTGATTTCAAATTCATCACCCATTCTTTGCTTTAGTTGACTGATTTCTGTTTGATCATCTCCAGTCAAAACAATGTCATCCACATAAACAATTAGAATAGCTATCTTTCCTGTTTTGGAAGCCTTTGTAAATAAAGTATGGTCAGAGTGCCCTTGACTGTACCCTTGGGACTTGACAAAGGTAGTGAATCTGTCAAACCATGCTCTCGGAGACTGTTTCAGACCATATAGAGATTTTTGGAGTTTACACACCTCCTGACCAAATTGGGCTTCAAATCCTGGTGGGGGGCTCATGTAGACTTCCTCCACAAGGTCTCCATTCAAAAAAGCATTCTTAACATCCAGCTGGTATAGAGGCCAATCTTTGTTCACAGCAACAGATAGCAGGACTCTAACAGTATTCAATTTAGCAACTGGAGAAAAAGTTTCTGAATAGTCAATACCATAGGTTTGAGTGAACCCCTTTGCAACTAACCTTGCCTTGTGTCTATCAAGCGTACCATCTGCTTTGTATTTGAGAGAGAATATCCATTTGCATCCTACAGTTTTATGTCCCTTGGGTAGAGCACAGATCTCCCAAGTTCTATTCTTTTCGAGAGCCTTCATCTCTTCCATAACAGCATTCTTCCATTCAGGACACTCTAGAGCAGTGTAGATATTTTTCGGTATTATGGTAGAGTCAAGGTTTGCTGTAAACGCTCTAAACTGTGGAGAGAGATTATCATAGGAAACATAGTTGCAAATGAGATGTTTAGTGCATGATCTGGTACCTTTTCTCAATGCAATTGGAATGTCAAGAGAGGGATCATACTCATCAAGTTTTCTTGTATGACCCTGTTCAGCTTCATCGTTACTAGTTTCTATTCTAACCTCAGTCTCATCATCACGGTTCTTTTCTTCCATATTTTCAAGAACAGCAACATCAGACTTGTCATTCTCACTCATTGTATTATTAGTACAAGGTTTTGTAGGGTTTTCCATACCTTGGTCTCGAGGAGGTTCGAAATTTTGGACTGGAGCCGGCGGTTGACTAGTAGGGGACCCAACTTCCTTTCTGAGATTCCTCCTGTAATATGTTTTCCAGGGAACTTGGTTTGTGGGTAAGATTATGGGATGAGGATCAATGTCAGACACGGTAATAAGAGTAGGTTCAACAAATTCAAAGGTGTTGTTAGACTCTTCACTCACATTCTCCCCCTGAAGATGGCTAACAGGAAAGTAGGGTCGGTTTTCACAGAAAGTAACGTCCATAGTGACAAAATATTTCCTAGACGGCGGGTGAAAACATTTATAACCGTGTTGGTGAAGGGGATACCCAACAAACACACAGGCCTGAGCCCGAGGGGTAAATTTGGTCTGATTAGGGCCGAAATTATGGACATAGGCGGTGCACCCAAACACACGAAGAGGAACCTCAGAAACAAGACGAGTAGAGGGGTAAGACTCCTTAAGACAATCTAAGGGAGTCTGAAGGTGGAGGATACGAGAAGGCATTCTATTGATTAAGTGAGCAGCTGTAAGAATAGCATCTCCCCACAGGTATGATGGAAGGGAAGTGGAAAGCATAAGTGAACGGGCTACTTCCACAAGGTGTCAGTTTTTTCGTTCGGCCACTCCATTTTGTTGAGGAGTGTAGGCACATGAGGTTTGGTGAACAATCCCCTTGGAGGCTAGAAATTCACTAAGGTTATGGTTTTGGAATTCCCGACCATTATCACTTCGAAGAATTGCAATTTTTGTATGAAATTGTGTTTTGATAGTATGATAGAAGTTTTGGAAAATGGATGGAACCTCGGATTTATCTGAGATAAGGTAGACCCAGGTGAGACGGGTATGGTCATCAATGAAAGTTACAAACCACCGCTTTCCCGAGGAGGTGGTGACCTTGGAAGGACCCCAAACGTCACTATGGATGAGGTTAAACGGTTGTGTAGGTTTATATGGTTGTGAGGGAAAAGAGACTCGATGTTGTTTTGCCCGGATACACACATCACAAGATAGAGAAGAGACATCAACTTTAGAAAAAAGGTGGGGAAATAAATGTTGCATATATGTAAAGTTTGGGTGGCCCAGTCGAAAATGCCACAACATACAGTCTTGTTCAGAAGTGCTAAAGTAGGATGACAGTAAACTAACCCTAGACAAACTACTACATGAGGTATCATCATCAAGGATGTAAAGTCCCCTGCTATGCCGGGCAGTGCCAATCGTCCTCCCCGAGCTCATGTCCTGAAAATAAACCGATTCAGGTAAGAAGATAGCTTTACAATGCAACTCACGAGTGATCTTGCTTATAGATAACAAATTGTAAGACAGTTTAGGGACATGCAAAACATTCTGGAGAGCAAAACCGTCAAAGGGAACTATTTGTCCTTTGCCAGCGATCGGAGCTAGAGAGCCATCGGCTATTCGGATTTTTTCATTACCGGCACACGGGGCATATGAGATAAAGTGTTCTGAAGAACCTGTCAAGTGATTTATAGCCCCCGAGTCTAAGATCCAGGGATTCTTCCCATCAACGCTAATAAGCCCAAGGAACTGAGGCATACCTGACTGAGCAATGGCACCCAGAGTCGGAGTCTTGGTCTGGCTCACAGTAGGATCAGTTGATTGAGAAGTGCTAGCAGGTGTAGTCTCACTAATGTAGGCACGTCCTGAGTTCTGTTTCTCGTTGGACGACCGTTTCTTACCTCCTGGGGGACGACCGTGGAGTTTCCAACACTGATCCTTGGTGTGCCATTGTTTCTTGCAGTGCTCACACACAGGAATTGACTTCCCATTATTCTTGTCACTATCATGATTTGAGGACCGAGCGCTAAAGGCTGCGGAGTCAATGGTAGGGGTAGTCAATACACCCATGGCATTAGTGCGATCCTCTTCCAGGCGGACTTCAAAACAAACTTCCATTAGCGAGGGAAGAGGTCTTTGTCCGAGTATACGACCACAAACATTATCAAATTTGGGATTAAGTCCTGCAAGGAAGTCATAAACACGATCAGCCTCTTCAAGTTTAGCATATTGTGTACTGTCATTTGGTGTGTCCCAAATTGTCTCTCTGCACAAATCCATCTCTTGCCAGAGGAGAGAGAGCTTGTTAAAATAGGTAGTTACGTCCAGGGTCCCTTGTTTGCAATTATGGACCTGTTTTCGCAGTGTATATAACCGAGAGGCATTCTGTCGTTTCGAGTAAAGGGTCTGAGTTGTATCCCACAAATCTTTTGCTGTGGCTGCATATAGTAAAGGCTTGCCGATCTGTGGTTCCATACTATTAATCAGCATGGACCGAATAAGTGAGTCCTCTCCTTTCCAGAGTCGTTCCAAGGCGTCTCCTGGTGGAGGACGTACAGTCTCTCCAGTTAAGAATCCGAACTGGTATCGACCTTCGAGGAACATCTTTATTGATTGGGACCAAGAAAAATAATTTTGACCATTTAATTTTTCGCCTGAAAAATTCCCTGTAGACGAACCCAAAGAGCCAGTTATATAATTTGACTGTGAATTAGGGAACGAAGTTACCGGGTTCTTGGAATACATCGGCAACTCGGTTGGTTTGGAATGCGTTGAAGATTCGCCCGCTTCAATGTCTGATCTGTTTTGGGGTTGATCAATTCTGTTACCAGAAAACAGCGGTTGCTGTAAAGGGTCAACGTACAGCTGCTGCTTACTGTACTGATTTGACAAATTTACGGTTGAGGGATGCTGTCCGGAGCTCGTAGACGGCGCATGAGGATGCGGATGGCCGGAAGGGTTTGACGGCTGGACATCCGACGGCGCGTAGAAGGGAACGGGATGGGGCGGTGACGTGAAACGGCGGCGGCGCGTGGGCCCACGCGCCGGACACGAGCGGCGCGTGAATCAACTTCTGGTCAGACGGCAACGCGTACGGCTGCGGAACCACTCCCGTTGGGTAGATCGGCGGTTTCTGTAGGTTCTGGAGCAGTTTCTCCATGGCGGCGGCGGTGACGGGTTCAGTTTCGATCTGGGTTTCTCCTAGGTTATTTTCTAGGGTTTCGTTATTGCTTTGCTCTGATACCATATTGAAAGCAATTAACAACAACCCGAGACTTACGTGGAAACCCGAGAACCGGGAGAAAAACCACGATACTTTAGTTTTTATTATTTTTCTTATGAACAAAAACAATAGGTACAAAGGGAGTATAAATAGAGTACAATAGGAATAAGAAAGGAAAAGATTTAGGAAATATTTAGGAAATAAAATCTTATATTTTATTTTTTCCAAAAGTATATTTTATTCTTTCCAAAAGTACTAATTCTAACAAGCATCTTATTATTTTTACCGCTCTTGGGTGAATTTCATGCTCACATTTGCAATCTTTATTATCTTTGTGCCCTTTGGAAGAGTTTTTTTTTTCTTGGTCAACTTCCTTAGCTTGGGGTTAGGCTCGCCTCCCATCGTGAAACTAATCTCTTCTCTTCTTTCATGGCATCTGTCAGTTATCAAGACATTTCGTTTACTCCAATCCAGCTCAACCCATGGGTCCGGAAGACTTGGCTTGGAAAATGGTTAGCTTCTCATCCTTTATCTCTACTTGTCCTGATCTTGGGAGGTTAACAATTATTTGTCTTGTGTCAAATATCTAATCGTAGTCGAAGGGCATGCTTGCTATTCTTACATGTTTAAATCACTTCAAAACATATGCCTTTAGAGTAATTTTGAAAATCAAACGTTAAAAGTGATTTTGAATGGTCAAAGATTTGTTTTAGAGTAAATTTGAATAAGATGAAAGTGGTTTTAATCATTTTAAAATCATTATGTTCATCCAGAATTAGTATAATATAACAAACTTTTTTGCCAACCAAAGTCCAACTACTAGCACATGTGGGTGTTCCTTTTTCTTCTACGAAGAAATCAAGAAGGCGATGTTTTTAGCAAGGAATCAATTATAACAATCCTAGACTATTGTAGTTTGGTTATAATAGTTGTTTTGAGTATAAATTATTTTAGTTTGGGTTATAATAATATGTCTTTGAGGTGTAAACTATTTTAATTTGCGAAAGAAACAATAAACATGTAGACGTAAGATAATAAAAATTGTAGTAAATTGTAAATACTATAATCAATGAGGGTTTTGAAATAGTGTTGACGGTAGCTAATTGAAGGTTACAAATCAGTATTTACGTAGCAAGGAGTGCTTCTGAGAATGAAAAGAAGTTTGGCAGCTTGGTTACAGTTTCAGCAAATTTTTGAGGTGAAGTAATTGAATGCGAGTGTGATCAAAGCTTAAAATATACTTTGATATATTAAATTGGGGAGTTTCATTGATATTGATGTTATGTTTGATTGAAAATGTTCATATAGTATTTGAAATATAAATATGAATATCGACATCAATATTTTAACCGCCGTTTTTCAATTGTTGCGGTGAAGATTGGTGGCAAGTTGGTGAATATAAAGCTTCATACGAGGAGGTCCCAACGCGTAGTAAAAGAATCTAGAAGTGTATGCAGTTGTGATTGTAGGCGTTCCAATTTTACCGACTCTCCTCCTTCTTCATTATAATCTCTCCTTTTTCAACTCATCGCTAATGCTTCAATTGGGAGGAAAAGTCATCCAGAGGATTAGATTTCTTCAATGCTAGAGTTGCATAGGGAGAGGGGATTGGCTTTTCCTTTTTACTCTTCACCTTTATTTGGATTTTGTAGTGGATGATCTATTTTTTATTCTTCTTTATCAATTTTCACTTGTAAAAGTTCGAAAGTTTCAAAATTGTTAAGAGTTAAAAAAATTATTCGATATTCTTTTGAGTTCTATAAATAACTTATTAAATACT ATGTCTGCTCAGATCCAAAGATCCAATCGATCTCCTCTTCTCCTCTTCACACTCTCTCTTCTCGCTCTTTCCGTTCTCTTCATCCTTGTTTTCTTATCTCCTTCCAATCCCAATCCAAATCCCACTTCCTTCCACTCTCCAATTTCCTCTCTCAAACCCGAAACTTCCTTCGTCGTTTCACTCGAGCACTTTCTCACTCACAAGGCTCCTAAATCCCCTCCGCTACGCGATGACACCGCTCCTGTTGCCGGAGATGTTGAAGACGCCTCAAGGAAGCTCGATGAGGCACTTTCTGAGGCAGAAATGGAGCGGGTGGTTCGAGATCCGTACTATCCGTTGGGATCTCCAATTAGAGTTTATGTGTATGAAATGCCGTGGAAATTCACTTATGATTTGCTCTGGACGTTCAGGAATACCTACAGAGAGACCTCTAATCTCACCTCCAATGGCAGCCCCGTCCACCGCCTTATTGAACAGCACTCTATTGATTACTGGCTGTGGGCCGACTTAATCGCTCCAGAGTCAGAGAGACTGCTGAAAGGTGTGGTGAGGGTTCATCGGCAGGAGGAAGCAGATCTCTTCTATATTCCCTTCTTCACAACTATCAGCTTCTTCTTGTTGGAGAAACAACAGTGCAAAGCACTTTACAGGGAGGCTCTGAAATGGGTGACAGATCAACCTGCATGGAAGCGATCTGAAGGCAGGGATCACATACTTCCAGTTCATCATCCATGGTCTTTTAAGACCGTTAGAAAATTTATGAAGAATGCCATTTGGTTACTACCAGATATGGACTCAACGGGGAACTGGTACAAGCCTGGACAAGTCTATCTGGAAAAGGACCTTATACTTCCCTATGTTCCAAATGTTGATTTATGTGACAGCAAATGCTTAGCAAACCAGCAATCAAAGAGAAGCATACTCCTCTTTTTCCGTGGTCGGCTCAAAAGAAATGCAGGAGGAAAGATACGGGCAAAACTTGGTGGAGAGCTAAGTGGTGCAGATGATGTACTAATAGAAGAAGGAACGGCTGGAGAAGGAGGGAAAGCTGCAGCTCAGACTGGAATGCGCAAGTCCATCTTTTGCTTAAGTCCTGCCGGCGACACACCATCATCTGCCAGATTGTTTGATGCTATCGTCAGCGGCTGCATTCCTGTCATTGTTAGTGATGAATTGGAGCTTCCATTTGAAGGAATACTTGATTACAGGAAGATCGCTCTATTTGTTTCCTCTAGCGATGCTCTAAAATCAGGATGGCTTTTAACATATTTGAGGAGTTTTAGTGCTGCTGATATCAGAAGATTGCAACAAAATCTCGCCAAGTTATCAAGACATTTCGTTTACTCCAATCCAGCTCAACCCATGGGTCCGGAAGACTTGGCTTGGAAAATGATTGGTGGCAAGTTGGTGAATATAAAGCTTCATACGAGGAGGTCCCAACGCGTAGTAAAAGAATCTAGAAGTGTATGCAGTTGTGATTGTAGGCGTTCCAATTTTACCGACTCTCCTCCTTCTTCATTATAATCTCTCCTTTTTCAACTCATCGCTAATGCTTCAATTGGGAGGAAAAGTCATCCAGAGGATTAGATTTCTTCAATGCTAGAGTTGCATAGGGAGAGGGGATTGGCTTTTCCTTTTTACTCTTCACCTTTATTTGGATTTTGTAGTGGATGATCTATTTTTTATTCTTCTTTATCAATTTTCACTTGTAAAAGTTCGAAAGTTTCAAAATTGTTAAGAGTTAAAAAAATTATTCGATATTCTTTTGAGTTCTATAAATAACTTATTAAATACT ATGTCTGCTCAGATCCAAAGATCCAATCGATCTCCTCTTCTCCTCTTCACACTCTCTCTTCTCGCTCTTTCCGTTCTCTTCATCCTTGTTTTCTTATCTCCTTCCAATCCCAATCCAAATCCCACTTCCTTCCACTCTCCAATTTCCTCTCTCAAACCCGAAACTTCCTTCGTCGTTTCACTCGAGCACTTTCTCACTCACAAGGCTCCTAAATCCCCTCCGCTACGCGATGACACCGCTCCTGTTGCCGGAGATGTTGAAGACGCCTCAAGGAAGCTCGATGAGGCACTTTCTGAGGCAGAAATGGAGCGGGTGGTTCGAGATCCGTACTATCCGTTGGGATCTCCAATTAGAGTTTATGTGTATGAAATGCCGTGGAAATTCACTTATGATTTGCTCTGGACGTTCAGGAATACCTACAGAGAGACCTCTAATCTCACCTCCAATGGCAGCCCCGTCCACCGCCTTATTGAACAGCACTCTATTGATTACTGGCTGTGGGCCGACTTAATCGCTCCAGAGTCAGAGAGACTGCTGAAAGGTGTGGTGAGGGTTCATCGGCAGGAGGAAGCAGATCTCTTCTATATTCCCTTCTTCACAACTATCAGCTTCTTCTTGTTGGAGAAACAACAGTGCAAAGCACTTTACAGGGAGGCTCTGAAATGGGTGACAGATCAACCTGCATGGAAGCGATCTGAAGGCAGGGATCACATACTTCCAGTTCATCATCCATGGTCTTTTAAGACCGTTAGAAAATTTATGAAGAATGCCATTTGGTTACTACCAGATATGGACTCAACGGGGAACTGGTACAAGCCTGGACAAGTCTATCTGGAAAAGGACCTTATACTTCCCTATGTTCCAAATGTTGATTTATGTGACAGCAAATGCTTAGCAAACCAGCAATCAAAGAGAAGCATACTCCTCTTTTTCCGTGGTCGGCTCAAAAGAAATGCAGGAGGAAAGATACGGGCAAAACTTGGTGGAGAGCTAAGTGGTGCAGATGATGTACTAATAGAAGAAGGAACGGCTGGAGAAGGAGGGAAAGCTGCAGCTCAGACTGGAATGCGCAAGTCCATCTTTTGCTTAAGTCCTGCCGGCGACACACCATCATCTGCCAGATTGTTTGATGCTATCGTCAGCGGCTGCATTCCTGTCATTGTTAGTGATGAATTGGAGCTTCCATTTGAAGGAATACTTGATTACAGGAAGATCGCTCTATTTGTTTCCTCTAGCGATGCTCTAAAATCAGGATGGCTTTTAACATATTTGAGGAGTTTTAGTGCTGCTGATATCAGAAGATTGCAACAAAATCTCGCCAAGTTATCAAGACATTTCGTTTACTCCAATCCAGCTCAACCCATGGGTCCGGAAGACTTGGCTTGGAAAATGATTGGTGGCAAGTTGGTGAATATAAAGCTTCATACGAGGAGGTCCCAACGCGTAGTAAAAGAATCTAGAAGTGTATGCAGTTGTGATTGTAGGCGTTCCAATTTTACCGACTCTCCTCCTTCTTCATTATAA MSAQIQRSNRSPLLLFTLSLLALSVLFILVFLSPSNPNPNPTSFHSPISSLKPETSFVVSLEHFLTHKAPKSPPLRDDTAPVAGDVEDASRKLDEALSEAEMERVVRDPYYPLGSPIRVYVYEMPWKFTYDLLWTFRNTYRETSNLTSNGSPVHRLIEQHSIDYWLWADLIAPESERLLKGVVRVHRQEEADLFYIPFFTTISFFLLEKQQCKALYREALKWVTDQPAWKRSEGRDHILPVHHPWSFKTVRKFMKNAIWLLPDMDSTGNWYKPGQVYLEKDLILPYVPNVDLCDSKCLANQQSKRSILLFFRGRLKRNAGGKIRAKLGGELSGADDVLIEEGTAGEGGKAAAQTGMRKSIFCLSPAGDTPSSARLFDAIVSGCIPVIVSDELELPFEGILDYRKIALFVSSSDALKSGWLLTYLRSFSAADIRRLQQNLAKLSRHFVYSNPAQPMGPEDLAWKMIGGKLVNIKLHTRRSQRVVKESRSVCSCDCRRSNFTDSPPSSL Homology
BLAST of MELO3C004131 vs. NCBI nr
Match: XP_008452796.1 (PREDICTED: probable arabinosyltransferase ARAD1 isoform X1 [Cucumis melo]) HSP 1 Score: 1023.8 bits (2646), Expect = 4.9e-295 Identity = 507/507 (100.00%), Postives = 507/507 (100.00%), Query Frame = 0
BLAST of MELO3C004131 vs. NCBI nr
Match: XP_004144725.1 (probable arabinosyltransferase ARAD1 isoform X1 [Cucumis sativus] >KGN61051.1 hypothetical protein Csa_021274 [Cucumis sativus]) HSP 1 Score: 1004.6 bits (2596), Expect = 3.1e-289 Identity = 495/507 (97.63%), Postives = 505/507 (99.61%), Query Frame = 0
BLAST of MELO3C004131 vs. NCBI nr
Match: XP_038889547.1 (probable arabinosyltransferase ARAD1 [Benincasa hispida]) HSP 1 Score: 964.9 bits (2493), Expect = 2.7e-277 Identity = 476/504 (94.44%), Postives = 489/504 (97.02%), Query Frame = 0
BLAST of MELO3C004131 vs. NCBI nr
Match: KAG6599146.1 (putative arabinosyltransferase ARAD1, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 946.4 bits (2445), Expect = 9.9e-272 Identity = 467/507 (92.11%), Postives = 486/507 (95.86%), Query Frame = 0
BLAST of MELO3C004131 vs. NCBI nr
Match: XP_023546780.1 (probable arabinosyltransferase ARAD1 [Cucurbita pepo subsp. pepo]) HSP 1 Score: 944.5 bits (2440), Expect = 3.8e-271 Identity = 467/507 (92.11%), Postives = 483/507 (95.27%), Query Frame = 0
BLAST of MELO3C004131 vs. ExPASy Swiss-Prot
Match: Q6DBG8 (Probable arabinosyltransferase ARAD1 OS=Arabidopsis thaliana OX=3702 GN=ARAD1 PE=1 SV=1) HSP 1 Score: 240.7 bits (613), Expect = 3.5e-62 Identity = 141/401 (35.16%), Postives = 218/401 (54.36%), Query Frame = 0
BLAST of MELO3C004131 vs. ExPASy Swiss-Prot
Match: Q9FLA5 (Probable arabinosyltransferase ARAD2 OS=Arabidopsis thaliana OX=3702 GN=ARAD2 PE=1 SV=1) HSP 1 Score: 224.2 bits (570), Expect = 3.4e-57 Identity = 136/388 (35.05%), Postives = 211/388 (54.38%), Query Frame = 0
BLAST of MELO3C004131 vs. ExPASy Swiss-Prot
Match: Q9ZUV3 (Probable glucuronoxylan glucuronosyltransferase IRX7 OS=Arabidopsis thaliana OX=3702 GN=IRX7 PE=2 SV=1) HSP 1 Score: 109.4 bits (272), Expect = 1.2e-22 Identity = 94/389 (24.16%), Postives = 175/389 (44.99%), Query Frame = 0
BLAST of MELO3C004131 vs. ExPASy Swiss-Prot
Match: Q6NMM8 (Probable glucuronoxylan glucuronosyltransferase F8H OS=Arabidopsis thaliana OX=3702 GN=F8H PE=2 SV=1) HSP 1 Score: 107.8 bits (268), Expect = 3.6e-22 Identity = 98/400 (24.50%), Postives = 176/400 (44.00%), Query Frame = 0
BLAST of MELO3C004131 vs. ExPASy Swiss-Prot
Match: Q33AH8 (Probable glucuronosyltransferase GUT1 OS=Oryza sativa subsp. japonica OX=39947 GN=GUT1 PE=2 SV=2) HSP 1 Score: 99.4 bits (246), Expect = 1.3e-19 Identity = 99/373 (26.54%), Postives = 164/373 (43.97%), Query Frame = 0
BLAST of MELO3C004131 vs. ExPASy TrEMBL
Match: A0A1S3BUQ5 (probable arabinosyltransferase ARAD1 isoform X1 OS=Cucumis melo OX=3656 GN=LOC103493707 PE=3 SV=1) HSP 1 Score: 1023.8 bits (2646), Expect = 2.4e-295 Identity = 507/507 (100.00%), Postives = 507/507 (100.00%), Query Frame = 0
BLAST of MELO3C004131 vs. ExPASy TrEMBL
Match: A0A0A0LM68 (Exostosin domain-containing protein OS=Cucumis sativus OX=3659 GN=Csa_2G035510 PE=3 SV=1) HSP 1 Score: 1004.6 bits (2596), Expect = 1.5e-289 Identity = 495/507 (97.63%), Postives = 505/507 (99.61%), Query Frame = 0
BLAST of MELO3C004131 vs. ExPASy TrEMBL
Match: A0A6J1KHS9 (probable arabinosyltransferase ARAD1 OS=Cucurbita maxima OX=3661 GN=LOC111493960 PE=3 SV=1) HSP 1 Score: 944.1 bits (2439), Expect = 2.4e-271 Identity = 466/507 (91.91%), Postives = 483/507 (95.27%), Query Frame = 0
BLAST of MELO3C004131 vs. ExPASy TrEMBL
Match: A0A1S4DYI2 (probable arabinosyltransferase ARAD1 isoform X2 OS=Cucumis melo OX=3656 GN=LOC103493707 PE=3 SV=1) HSP 1 Score: 939.1 bits (2426), Expect = 7.6e-270 Identity = 464/464 (100.00%), Postives = 464/464 (100.00%), Query Frame = 0
BLAST of MELO3C004131 vs. ExPASy TrEMBL
Match: A0A6J1G2P5 (probable arabinosyltransferase ARAD1 OS=Cucurbita moschata OX=3662 GN=LOC111450257 PE=3 SV=1) HSP 1 Score: 937.2 bits (2421), Expect = 2.9e-269 Identity = 465/507 (91.72%), Postives = 485/507 (95.66%), Query Frame = 0
BLAST of MELO3C004131 vs. TAIR 10
Match: AT5G16890.1 (Exostosin family protein ) HSP 1 Score: 728.8 bits (1880), Expect = 3.0e-210 Identity = 362/498 (72.69%), Postives = 410/498 (82.33%), Query Frame = 0
BLAST of MELO3C004131 vs. TAIR 10
Match: AT2G35100.1 (Exostosin family protein ) HSP 1 Score: 240.7 bits (613), Expect = 2.5e-63 Identity = 141/401 (35.16%), Postives = 218/401 (54.36%), Query Frame = 0
BLAST of MELO3C004131 vs. TAIR 10
Match: AT5G44930.1 (Exostosin family protein ) HSP 1 Score: 224.2 bits (570), Expect = 2.4e-58 Identity = 136/388 (35.05%), Postives = 211/388 (54.38%), Query Frame = 0
BLAST of MELO3C004131 vs. TAIR 10
Match: AT5G44930.2 (Exostosin family protein ) HSP 1 Score: 224.2 bits (570), Expect = 2.4e-58 Identity = 136/388 (35.05%), Postives = 211/388 (54.38%), Query Frame = 0
BLAST of MELO3C004131 vs. TAIR 10
Match: AT3G03650.1 (Exostosin family protein ) HSP 1 Score: 223.4 bits (568), Expect = 4.1e-58 Identity = 159/498 (31.93%), Postives = 238/498 (47.79%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Melon (DHL92) v4
Date Performed: 2022-08-06
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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