MELO3C005285 (gene) Melon (DHL92) v3.5.1
The following sequences are available for this feature:
Legend: polypeptideCDS Hold the cursor over a type above to highlight its positions in the sequence below.CCCCACCCACGCGATGCCGTCTTCCTTCGTCGTTTTTCACTTTTTCAAGTTTCAGCCTTCCTTCGTCTCTCTTCGTCTCTCTTCGTCTCTCTGTAGTTCGATTTCTATCTACAACCCACACGCCCCTGTTCAATTTCATCTTCTCATTCTCACCGCCGGTCTCATCCTCGCCGTGAAGATCCTTCGTCTTCCGCCTTGAAGATCCGCCGGCCTTCAAGTTCCTTCGTCTTTAGTTACAAAATGTTAGAGCAATTAGATTTTGTAAAAAATATTAAAGTCTGAAAATCTTGAATTGGAGAATGGTTCAGAAGAGACCCAAGACTTTGGTCACAACATCAAAATTAGTCAGAAATGAGGACTCACCAGAACTTCTTCGATCTGAGAAACCCAAATCTAAAAGATATGACCTTTTCTTTTCGATGAACAAGGTCCTTCTGTTTTGCTTGGCATTTCGATTCGCAAATGCATTTTTGTTGCAGACTTATTTTAACCCAGATGAACACTGGCAAGCTCTTGAAGTTGCCCACTACATCACCTTCGGGTAACATTTATAATGACCCTTCCACTTCTAATTTTTCTGATTTCTGGGATTTAATTTCTTGATGAGTTAGCTTTAAGAAGCTTCAGAATGCTTCAGGTAATTTAGTGATGGGTTTCGTTTAGCAGGTATGGTCATCTGACATGGGAGTGGAAGAGGGGAATCCGTAGCTACTTGCATCCTCTGTTGTTTGCTTTTCTTTACAAAGTTCTTGCTTTACTCGGCGTTGATACTCCATTGCTTATGGTAAAATATTCTATAACCTAGTGGAACTGTTTGATTGGCTGTGGCAAATTGAATTGTGAAATTCTGCTGGCCATGCTTTATAGATAAAAGCTCCGAGGCTGTTGCAATCTATATTCTCAGCTGTTGGTGATTTTTACTTGTACAGACTCTCCCGTGCCCTCTTTGGTGATTATGTTGCAAAATGGGCTGTATCCTTGAGTTGATGATTGACATACATGATATATTCAATGTTCAGTATATTTGAACTCTCATCCAACCATATTTTTTTTGAATGAAAAAGGAGAAATGTATTATTCTGTTAGATCACTAATTATATTTCAATATGAACATAGGTGTAAAACGGAAAAGGAGATGGTTACTAGGAAGGAAGAAATGTCCAAGAGAGGTAGGCCCACAGTTAGTTAGAGAAGGGGAGGTTAATATGAAGCAGCAGGAGGGTAGTGTAATGAGGTTTTATCTTGTTTTTCATGTTGGACTTTGCTTCTTCCCTTGAGGATTGGAGGAAGAAAAGTCTGTAATTGCCTTAGGGGTTTCCTTGATTTCAATAAGAGGAAGTCTTCTCTCGATTCCTATCATATTAATTTAGTCTTAATATACTTAACTCTACTTCAGCTATTTTCCCAACTTACAAACTGGTTTATGTTCTTCTGCTTCAACCGAACACTATCAAACAGCTTAGAGACCGTTCTAACACTTGCCAGCTTGTATTATTGGCCATGTATAAGTGTTGTTCCCACCAGAATTTCCAAGGTTTCAAGGAAGTTGGCTTTGTTTATGGCAGCTTTATCATGCGGTATTCGACCAACGAGTGCGATTACGTGGCTGTATGTTGGTCTGCTTGAGCTGTTTTCAGCAAATGACCGACTAAGATTTATTTTTCTAGAGGCTGCTCCTATTGGGTATGTACTATATAACATATTTAACTTCTTGTTTTTGGTTCATAAATAGGTTTTACATTTTCCCCTCCTTTACGATAGTTTTCTTTGAACTTCAGTTTTAAAATTAGCGAGGTAAAAACCAAGTTGAGAAGTTTATCGTTGGTCGTTGTGGACAAAGTTGTTATCAGCCGTTTGGGTGTTATCTTTTCTTTCTTTCTTTCTTTATTTTTTTTATTTTTTATTTTTTATTTTTTTGTGGGTGTGGGGGAGGATGTGAAATTAATCAAGGAAAAACCTGTGGACGTGTAGGAAAGGTGACCAAGTTAGGATATATGTGGATAAAAGCCAAACTTTTGTTTTCCTTCTATGGCTTATCATTGGAAGTTAGAAAGGAAAAGAGAGTTATTTCTTTCTGCTTCTTCTTACACTTTCAATTTTGAAGGATGCACATTCCACTTTATGGAAGTTTTACGAAGTCCTTTTCTTTATGGTGTCTATTTATTATTCATCAAGGGTAATTTCCATAGCTCAGTTTATCGAAATTATTATCTTTGAAGTTTGATAATCTCATAACTTAGAAGAAACTGAATCCTGTTTATCACTTTCAGCTCTTGAATAATTTGAAAACTGGAGTAAATTAAAAATCTACAAAGTTAGCTGGGAATGGTAGTAATAAGTTATAACCAATCTAGGACCAATCTTATACTTTTGCCATTTTATTTACTCATGCAGTTTTCTTTTGACCTTCTCCCATCTATGGATCTAATACTAACGAAGATTAAGAAAAGTTCATTGGGAGAAGGTTGAGTGTTGCATAGTTCATTGGCTCCCTTCCAGTATTTATTTTTTTTAAAACACAAACTGGATAGCTTTTTTGTTATTGAACTGATGAACAAAATTTAGACAAACTAATTGTTTACCTCATTTTTTCCCACCTCTCGGAAAACATCATGGAAAAAGTAAAAACAAACACAAATTCAATAATGCAAGTCAAACCACAGTTTGAACCATGCACAATTGTGTCTCTTTCTAATATCTTGTCTCCGAATATCCATGGTCATTCTGTTTTCCGGCACGGCGGCCCTGGTTGTAAAGCAGTTCTCACCTTCACCCCGTCTCCAACAACATTTTTGTTGATGTTATCATTTTCCCTTCGAGTATTTATTGATGCAGATTTTGTGATTTTCCTTTTAAAATTGACAACAGTTGAAGCTCTGTTTTAATTCTTGTCAGCCCCCCTTCTATTGGGTTTGGCCTACGTTTAGGTACGTTTTTCTTTTAATGAAAGTGGGTTTCTTAATATTCAGATTCTCAGTTAAACTATTACTACTGCTATTTCTGCCATTTTTTGCTTACGTTTCTTCTCCAAAGGAAACAAAATTCTAAATCCATGTAAACTCTCGATTGTGGTTCATTGTAGTTATTGGGAGATATTTAGTTCACAAGCTTTTTAAGTGTCAGTTTCTAATTTATTGTGAATGATGTTGGTGCGAATGATGGATGATGTAGGTTCTTATCGGTTGCAACCTTTGTTTGTCGCTTTCCTGAAATGATAAAATGATTGCTCTCCTCATTTATTTTCTTGGTCAAATAATTTGCGTGCCACTCCGTCAACTATTTAAGAGTTTCTTGCACTTGTTGACTTAAACTTTCTTAATATTTTAGAGTAATTACATCTCTTCTTATCCCTATAATTTTTCATATCAGGTCTTTGGTGCTTGGGATTACGTTTTTGTTAGATAGAGTAATGTACGGCTCTTGGACATTAGTCCCCCTTAATTTTCTGAGATTCAACGTTTTTTCCTCTGGAGGAGATTTTTATGGAACTCACAAATGGCACTGGTACTTCACTCAGGGGTTTAGTGCCATGCTCTTCAGTTTCATTCCATTTTCCATTTCTGGCATCGTCGCTTCAAGAAAATGGAAACTCTCGGGTCTTCTCGTTTGGGTTCTAGGGATTCACAGTCTACTTGGTCACAAAGAGTTCAGGTACTTATTTTTGTTTCACTATTGAAATTTGAAAACACCTTACCTAAATAATGTTGCATTGGTTTGAAGTATGTGTTTGTTTGTTTACTTTGTCACAGATTCGTCCTGCCCATTCTTCCGATAGCATTGATGTTCTCTGGCTATTCATTGGCCGCTCTTAGATCTCAAACTTCTCCAAATAGTAAAAGGGAAAAGTCAAGAAACTTGCACACTAAACGCCCTATGAAAATGAGTTTGGCCACAATATTTTTGCTAGCTACAAATATCCCAATGGGTTTATACATGAGTTTGGTTCATCAGGTATTTATCTATATTGACCAACGAGTATAAAGAAATATATAAAGCTGGTTGTCTTTTTTGGTTTTTCTGCTCTCTTATTTAAACAGAAGGCCTATTGCACAGAGAGGAACGGAGGACGTAATGAATCATCTGGCAAGAGAAGCTGCGAATGGGAAAGTTAAAAGGATCCTTTTTTTGATGCCATGTCATTCGACCCCTTACTATTCCACTCTGCACCAAAACTTACCAATGCAGTTTCTAGACTGCACACCGAGGTCGATAAAACCATTTTTTTCGTTTTCTTTTTCTTTGCTTTTTCTGATAGGAAACTGAAATCATTCATGATATGATGAAATGAAATACGAAAGAATCGAATAATAATAATTACACACATCCATTGGTTATGAGGTAGATAAACTAATTACAATAAGAGAACTGCATTTTCGTGATATAGGTTCTCTTTAACTCTTATATGCATGCATTGCTTTTCGATCAAAGGTTTCAACAAAATTCTTATCCATGATTTGATTATGTCCAAAGTATCCTTTTATCTTTTTCTAGTGTGACCTAAGGGTAGCAGAGAGATTAAAGAGTAAAGATGTCACCGAGTCTTGAAAATTTCCATCCAAAGGTGGTGTCTTTGTATAAAAAAATCTTGAGACATAAGCACAACTACTGAAAAGGTGGATTTGTGATTCTTCACTGTTTAAGCACATGAGATTATTGAAAAAAATAAACACGAAACCAAGGCTTACGTAGAAGCCTAAGAACTAGGAGAAAAACCACGATATTTTAATTTTTTTTTTGTTTTTCTAATGTATGAATACAGTAGGTACAAAGAGAGAGAATAAATAGAATACAATAAGAAGTAAAAAGGGAAAATCTTCCACATTCTTTTCAAAAATACTCTAAGGGCCAAACCCACTAATTCTAACACTCTCTCTCAAGTTGGGACGTAAATATCAATGAGGCCTAACTTGCTAAAGCAAAAGTTGAAGTTTTGTCTGAGAAGCCCTTTGGTGAGAATATCATCAACCTGTTGGCTCGAAGCAATGTACGGAATGCATATGTTCCCACTATCAAATCTTTCTTTGATGAACTTCCGATCAATTATTAGAAATACTTATAGCGGCTTTATTATCACAAAAAAGCTTCAATGGTATCTCACATTTCTGATGAAAATTTGATCGGACTTTCTGGAGCCAAATTTCCTCACATATTCCCAAACTCATAGCTTTGTATTCAACCTCAGCGCTACTCCTGACCACAACACTTTGCTTCTTACTCCTCCAAGTTACAAGATTGCCCCAAACAAAGGTAAAATAATCAGAGGTAAACTTTCTCATTCAACAACAAATTCCATCCAATCTGAGTCAATATATGCCTCAATGGTCTTTTTGTCTATCTTTCTAAACATCAGTCCTTTACCAGATGTTTTTGTTTTCAAGTATCTTAGATTTCTGTTGACAACTTCCATGTGTACCTCATAAGGAGTCTGCATAAACTGACTGACAACACTTACAGCAAAGGAAATATCAGGACGGGTATGGGAAAAGTAAATCAATTTACCCACGAGGTGTTGATATTGTTCTTTATCAACTGGAACTTGATTATCAAAGTTTCCTAGTTTACAGTTGAATTCAATGAGTGTCAGCAGGACGAAATCCCAACATGCCTATCTCGGTTAGCAAATCAAGGGTGTATTTTCTCTGTGACACGAAGATACCTTCTTTAGATCTAGCCACCTCCATTCCAAGGAAATACTTCAAATTTCCGAAATCCTTGATTTCAAATTCATCACTCATTCTTTACCTCAGTTGATTGATTTCTGCCTGATCATCTCCAGTCAAAACAATGTCATCCACACAAACTATTAGAACAACAATCTTCTCTATCTTAGAAACCTTTGTAAATAAAGTGTGATCAGAGTGCCTCTGACTATACCATTGGGACTTGACAAAGGTAGTGAATCTGTCAAACCATGCTCTGGGAGATTGTTTCAGACCATATAGGGATGTCTGAAGTTCACACACCTGCTGACCAAACTGAGCTTCAAATCCAGGCAGGGGGCTCATGTAGACTTCCTCCACAAGGTCTCCATCTAGGAAAGCAGTCTTAAAATTCAGCTGGTATAGAGGCCAAATCTTTGTTCACGACAATAGATAGCAAGAGTCTAATAGTATTCAATTTAGCAACTGGAGAAAAAGTTTCTAAATAGTCAATACCATAGGTTTGAGTAAATTCCTTTGCAATTAACTTTGCCTTGTGTCTGTCAAGAGTACCATCTGCTTTGTATTTGAGAGTGAACACCCATTTGCATCCATTCAGTTTTGTACACCTTGGGTAGAACACAAATCTACCAAATTCTATTCTTTTCTAGAGCCTTCATCTCTTCCATGATAGCATTCTTCCATTCAGAATACTCTAAAGCAGTGTGGATATTTTTCGGTATTATGGTAGAGTTAAGGTTTGCTGTAAAAACCCTAAACCATGGAGAGAGATTATCACAGGAAACATAGTTGCAAATGGGATGTTTAGTACAAGACCTAGTACCTTTTCTCAGAGTAATGAGAATGTCAAGAGAGGGATCATATTCATCAAGTTTCCCTATATGACCCTGTTTAGCTTCATTATTATTGGTTTTTGTTCTGACGTTAGTCTTATCACCACTGTTCTTTTCTTCCACGTTTTTACGAACAACAACATTAGACCTGTCATTCTCACTTATCGTATTATTAGTACAAGGTTCAATAGGATTTTCCATACCTTGATCTCGAGTAGGTTTCAGAGTCTCTAACTGGAGCCGGTGGCTGATTAGTAAGGAACCCGGCTTCCTTTCTGAGATTCCTCATGTAATACGTTTTCCAGGGAACTTGGTTTGTAGGTAGGACTATGGGATGAGGATCAATGTCAAACACTGTACTAGGAGTAGGTTCGATAAATTCAAAGGTGCTATTAGAACTCTTCACTCACACTCTCCCTTGAAGATGGCTAATGGAAAGTAGGCTCGGTCTTCACAGAAAGTAACATCCATAGGGACGAAGTATTTCCTAGATGGCAAGTGAAAACATTTATAACTGCATTGGTGAAGGAGGATACCCAACAAACACACAAGCTTAAGTCCGAGGGGTAAATTTGGTCTGATTAGGATAGAAGAACTTCAGAAACAAAACGAGTAGAGGGGTAGGACTCCTTAAGACAATCTAAGGGAGTTTGAAGGTGGCGGATACAAGAAGACATTTTATTGATTAAATGAGTTATTGTAAGAATAACATCTCCCCACAGGTATGAAGGAAAGGAATTGGATAGCATAAGGGAACGGGCTACTCCCAGAAGGTGATAGTTTTTTTGCTTGGCCTCTCCATTTTGTTGGGGAGTGTAGGCCCATGAGTTTTGGTGAACAATGCCCTTGAAGGCTAGAAATTCACTAAGGTTATGGTTTTTGAATTCCTGACCATTATCACTTTGATGAATAACAATTTTTTTTTATGGAATAGTGTTTCATTGGTGTGATAGAAGTTTTGGAAAATAGAGGAAACCTCAAATTTATCGGTGATAAGGTAGACCCAGGTAAGACGAGTATGATCATCAATGAAAGTTACAAACCACCAATTCCCAAGTGAGGTGATGATCTTGGAGGGACCCCAAAAGTCACTATGAATAAGGGTAAACAGTTGTGTGGGTTTATATGGTTGTGAGGGAAAAGAAACTCGATGTTGTTTTACCCGAATGCACGCATCACAAGATAACGAGGAGACATCAATTTTAGAAAGAAGATAGGGAAACAAATATTTCAAGTATTCGGGTGACCTAACCGAAATGGCCACAACATAAAGTCATGTTCAGAAGTGCTAAAATAGGAAGACAATAAATTAGTCCTAGATATACTACTGCCAAAGGTATCATCATCAAAGATGTAATGTTCTTGCTATGTCGGGCAGTGCCAATCGTCCTCCCTGAACTTAAGTCCTGAAAGCAAACAGATTCAGGTAAGAAAGTAGCTTTACAGTGCAGCTCACCGGTGTTTTTACTAATCGATAACAAAGTCTAAGAAAGCTTAGACACATGCAAAACATTCTGGAGAGAAAAACCATCAAAGAGAACTATTTGTACTTTGCCAGCAATTAAGGCTAAAGAACCATCGACTATTCGGATTTTCTCATTACCGGCACAGGGGGTATAAGAGACAAAGTGCTTCGAAAAACCTGTCAAGTAATCTGTGGCTCCCAAGTCCAAGATCAAAGGATTCTTCCCATCAACACTAATAAGGCCCAAGGGACTGAGGCTAACTTGACTGAGCAATGACGTCAAGAGTTGGAGAGCTGATCTGGCTAGCAGTAGGGCTAATTGGCTGAGAGGTGCTGGCAGTCTCTCTAACATCGGTACGCCCTAAGTTTTGTTGCTCGTTGGAGGAATGTTTGTTACCTCTTAGAGACTGACCGTGGAGTTTCCAACACTAATCCTTGGGATACCATTGTTTCTTGTAGTGCTCACAAATGAGAATTGGTTTCCCACTATTCTTATCATTATCATGGGTTAAGGATCGAGCACTAAAGGCAGGAGAGTTAGTTATATAATTTGAAGGCACGTTAGAAAGCGAAATTATCAGGTTCTTGGAATACATCGGCAACTCAGTTAGTTTGGAGTGCGTCGAAGACTCGCCCACTTCAACCCCCGATCTGTTATGAATACCATCAGTCCCGTTAAAGGGGTTGCTCCAAAAGATCGACAGACAACGACACACCAACGGATATATTTGACAATTTCTGTGGTGGTTGTCTATAATCAGAGGGCATGAGCGGCGCGTAGGGTTGCGGATGACCAAAAGGGCATGACCGTTGGATAGCTGACAACGAGTAGAAGAGATTGGGATGGGCGGTGAGACAAAATGGTGGAGGCGCATGGGCCCACGTGTAGAGGCGGCACGTGAGAAAGATTTTGGTTGAAGGGTTGCTTAGACGACGGGGAGGGTGGTCCCACTGTGTAGATTGGTAGTTTTTGAAGCATTTCGAATAATTTCCATGATGGCGGCCGATTTGGTCTAGGTTCCTGTTAATTTTTTTTTTTTCTAGGGTTTCGTTGTTGCTTTACTTTGATACCATATTGAAAGCAATAAACACGAAACCAAAGTTTACATGAAAACTCGAGAACTAGGTGAAAAACTACGATGTTTTTAGTTTTATTGTTTTCTAATGAATGAATACAATAGGTACAAATTCAGGGAGAATAAATAGAATACAATAAGAAGTAAAAAAGGAAAAGATTTAGGAAAAAGGAAAAATCTTCCATATTCTTTCCAAAAATACTCTAAGGGTCAAGCCCACTAATTCTAGTAGAAATATTATAATCAAAGGTGTTGTTGGTTGATACAAGAATGACCCGAACCACCAAGAAAGCTTGTGATACTCGACAACTAACTTTTAGTTATTGTTGTTCATTTGCGATGCTTGATATGTGCCCATGTATCTTGCAGCGTAGAGAAAGGAAGCCTAGTTGAGTCGGAGCGTTTCTTGATGAATCCACTTGATTTTTCAATAGAATTTGCTAAGAATTGGACAGTCCCAAGTCACATTGTATTGTTTGATTCAGAGGAGAGACTACTGAAGGACTTTCTGATATCGCATTCTTTCAAGGAGGTTAGATTTGTTGTATTATTGTATTTGCTATTCATTAATCAATAAATCACAACTCCTAAGCTAATTGTGCCATACTTGTGTTTTGTCAAATGAAGGATAAAAGGTTCTTCCATGCTCACTTCAAGGTGGATCGTGATCTTCAATCTTCGGTGGTTTTATATGTCATAACTGTTTAATCTCAATAACTTGCCATTTCTTTTCTCAATGAGATCAGTTTTCAATAGATGTTTTTTCTTTTTTTTTCGTTGACAAATTTTGTGAGAATATTTAGTTGTTTCGAGTTGTACATTTTTCCGCTACCTAATAATATTTTTATACCAATTAATGTACTTTTAACC CCCCACCCACGCGATGCCGTCTTCCTTCGTCGTTTTTCACTTTTTCAAGTTTCAGCCTTCCTTCGTCTCTCTTCGTCTCTCTTCGTCTCTCTGTAGTTCGATTTCTATCTACAACCCACACGCCCCTGTTCAATTTCATCTTCTCATTCTCACCGCCGGTCTCATCCTCGCCGTGAAGATCCTTCGTCTTCCGCCTTGAAGATCCGCCGGCCTTCAAGTTCCTTCGTCTTTAGTTACAAAATGTTAGAGCAATTAGATTTTGTAAAAAATATTAAAGTCTGAAAATCTTGAATTGGAGAATGGTTCAGAAGAGACCCAAGACTTTGGTCACAACATCAAAATTAGTCAGAAATGAGGACTCACCAGAACTTCTTCGATCTGAGAAACCCAAATCTAAAAGATATGACCTTTTCTTTTCGATGAACAAGGTCCTTCTGTTTTGCTTGGCATTTCGATTCGCAAATGCATTTTTGTTGCAGACTTATTTTAACCCAGATGAACACTGGCAAGCTCTTGAAGTTGCCCACTACATCACCTTCGGGTATGGTCATCTGACATGGGAGTGGAAGAGGGGAATCCGTAGCTACTTGCATCCTCTGTTGTTTGCTTTTCTTTACAAAGTTCTTGCTTTACTCGGCGTTGATACTCCATTGCTTATGATAAAAGCTCCGAGGCTGTTGCAATCTATATTCTCAGCTGTTGGTGATTTTTACTTGTACAGACTCTCCCGTGCCCTCTTTGGTGATTATGTTGCAAAATGGGCTCTATTTTCCCAACTTACAAACTGGTTTATGTTCTTCTGCTTCAACCGAACACTATCAAACAGCTTAGAGACCGTTCTAACACTTGCCAGCTTGTATTATTGGCCATGTATAAGTGTTGTTCCCACCAGAATTTCCAAGGTTTCAAGGAAGTTGGCTTTGTTTATGGCAGCTTTATCATGCGGTATTCGACCAACGAGTGCGATTACGTGGCTGTATGTTGGTCTGCTTGAGCTGTTTTCAGCAAATGACCGACTAAGATTTATTTTTCTAGAGGCTGCTCCTATTGGGTCTTTGGTGCTTGGGATTACGTTTTTGTTAGATAGAGTAATGTACGGCTCTTGGACATTAGTCCCCCTTAATTTTCTGAGATTCAACGTTTTTTCCTCTGGAGGAGATTTTTATGGAACTCACAAATGGCACTGGTACTTCACTCAGGGGTTTAGTGCCATGCTCTTCAGTTTCATTCCATTTTCCATTTCTGGCATCGTCGCTTCAAGAAAATGGAAACTCTCGGGTCTTCTCGTTTGGGTTCTAGGGATTCACAGTCTACTTGGTCACAAAGAGTTCAGATTCGTCCTGCCCATTCTTCCGATAGCATTGATGTTCTCTGGCTATTCATTGGCCGCTCTTAGATCTCAAACTTCTCCAAATAGTAAAAGGGAAAAGTCAAGAAACTTGCACACTAAACGCCCTATGAAAATGAGTTTGGCCACAATATTTTTGCTAGCTACAAATATCCCAATGGGTTTATACATGAGTTTGGTTCATCAGAGAGGAACGGAGGACGTAATGAATCATCTGGCAAGAGAAGCTGCGAATGGGAAAGTTAAAAGGATCCTTTTTTTGATGCCATGTCATTCGACCCCTTACTATTCCACTCTGCACCAAAACTTACCAATGCAGTTTCTAGACTGCACACCGAGCGTAGAGAAAGGAAGCCTAGTTGAGTCGGAGCGTTTCTTGATGAATCCACTTGATTTTTCAATAGAATTTGCTAAGAATTGGACAGTCCCAAGTCACATTGTATTGTTTGATTCAGAGGAGAGACTACTGAAGGACTTTCTGATATCGCATTCTTTCAAGGAGGATAAAAGGTTCTTCCATGCTCACTTCAAGGTGGATCGTGATCTTCAATCTTCGGTGGTTTTATATGTCATAACTGTTTAATCTCAATAACTTGCCATTTCTTTTCTCAATGAGATCAGTTTTCAATAGATGTTTTTTCTTTTTTTTTCGTTGACAAATTTTGTGAGAATATTTAGTTGTTTCGAGTTGTACATTTTTCCGCTACCTAATAATATTTTTATACCAATTAATGTACTTTTAACC ATGGTTCAGAAGAGACCCAAGACTTTGGTCACAACATCAAAATTAGTCAGAAATGAGGACTCACCAGAACTTCTTCGATCTGAGAAACCCAAATCTAAAAGATATGACCTTTTCTTTTCGATGAACAAGGTCCTTCTGTTTTGCTTGGCATTTCGATTCGCAAATGCATTTTTGTTGCAGACTTATTTTAACCCAGATGAACACTGGCAAGCTCTTGAAGTTGCCCACTACATCACCTTCGGGTATGGTCATCTGACATGGGAGTGGAAGAGGGGAATCCGTAGCTACTTGCATCCTCTGTTGTTTGCTTTTCTTTACAAAGTTCTTGCTTTACTCGGCGTTGATACTCCATTGCTTATGATAAAAGCTCCGAGGCTGTTGCAATCTATATTCTCAGCTGTTGGTGATTTTTACTTGTACAGACTCTCCCGTGCCCTCTTTGGTGATTATGTTGCAAAATGGGCTCTATTTTCCCAACTTACAAACTGGTTTATGTTCTTCTGCTTCAACCGAACACTATCAAACAGCTTAGAGACCGTTCTAACACTTGCCAGCTTGTATTATTGGCCATGTATAAGTGTTGTTCCCACCAGAATTTCCAAGGTTTCAAGGAAGTTGGCTTTGTTTATGGCAGCTTTATCATGCGGTATTCGACCAACGAGTGCGATTACGTGGCTGTATGTTGGTCTGCTTGAGCTGTTTTCAGCAAATGACCGACTAAGATTTATTTTTCTAGAGGCTGCTCCTATTGGGTCTTTGGTGCTTGGGATTACGTTTTTGTTAGATAGAGTAATGTACGGCTCTTGGACATTAGTCCCCCTTAATTTTCTGAGATTCAACGTTTTTTCCTCTGGAGGAGATTTTTATGGAACTCACAAATGGCACTGGTACTTCACTCAGGGGTTTAGTGCCATGCTCTTCAGTTTCATTCCATTTTCCATTTCTGGCATCGTCGCTTCAAGAAAATGGAAACTCTCGGGTCTTCTCGTTTGGGTTCTAGGGATTCACAGTCTACTTGGTCACAAAGAGTTCAGATTCGTCCTGCCCATTCTTCCGATAGCATTGATGTTCTCTGGCTATTCATTGGCCGCTCTTAGATCTCAAACTTCTCCAAATAGTAAAAGGGAAAAGTCAAGAAACTTGCACACTAAACGCCCTATGAAAATGAGTTTGGCCACAATATTTTTGCTAGCTACAAATATCCCAATGGGTTTATACATGAGTTTGGTTCATCAGAGAGGAACGGAGGACGTAATGAATCATCTGGCAAGAGAAGCTGCGAATGGGAAAGTTAAAAGGATCCTTTTTTTGATGCCATGTCATTCGACCCCTTACTATTCCACTCTGCACCAAAACTTACCAATGCAGTTTCTAGACTGCACACCGAGCGTAGAGAAAGGAAGCCTAGTTGAGTCGGAGCGTTTCTTGATGAATCCACTTGATTTTTCAATAGAATTTGCTAAGAATTGGACAGTCCCAAGTCACATTGTATTGTTTGATTCAGAGGAGAGACTACTGAAGGACTTTCTGATATCGCATTCTTTCAAGGAGGATAAAAGGTTCTTCCATGCTCACTTCAAGGTGGATCGTGATCTTCAATCTTCGGTGGTTTTATATGTCATAACTGTTTAA MVQKRPKTLVTTSKLVRNEDSPELLRSEKPKSKRYDLFFSMNKVLLFCLAFRFANAFLLQTYFNPDEHWQALEVAHYITFGYGHLTWEWKRGIRSYLHPLLFAFLYKVLALLGVDTPLLMIKAPRLLQSIFSAVGDFYLYRLSRALFGDYVAKWALFSQLTNWFMFFCFNRTLSNSLETVLTLASLYYWPCISVVPTRISKVSRKLALFMAALSCGIRPTSAITWLYVGLLELFSANDRLRFIFLEAAPIGSLVLGITFLLDRVMYGSWTLVPLNFLRFNVFSSGGDFYGTHKWHWYFTQGFSAMLFSFIPFSISGIVASRKWKLSGLLVWVLGIHSLLGHKEFRFVLPILPIALMFSGYSLAALRSQTSPNSKREKSRNLHTKRPMKMSLATIFLLATNIPMGLYMSLVHQRGTEDVMNHLAREAANGKVKRILFLMPCHSTPYYSTLHQNLPMQFLDCTPSVEKGSLVESERFLMNPLDFSIEFAKNWTVPSHIVLFDSEERLLKDFLISHSFKEDKRFFHAHFKVDRDLQSSVVLYVITV*
BLAST of MELO3C005285 vs. Swiss-Prot
Match: PIGB_HUMAN (GPI mannosyltransferase 3 OS=Homo sapiens GN=PIGB PE=1 SV=1) HSP 1 Score: 398.3 bits (1022), Expect = 1.4e-109 Identity = 215/534 (40.26%), Postives = 310/534 (58.05%), Query Frame = 1
BLAST of MELO3C005285 vs. Swiss-Prot
Match: PIGB_BOVIN (GPI mannosyltransferase 3 OS=Bos taurus GN=PIGB PE=2 SV=1) HSP 1 Score: 397.9 bits (1021), Expect = 1.8e-109 Identity = 204/495 (41.21%), Postives = 297/495 (60.00%), Query Frame = 1
BLAST of MELO3C005285 vs. Swiss-Prot
Match: PIGB_MOUSE (GPI mannosyltransferase 3 OS=Mus musculus GN=Pigb PE=2 SV=2) HSP 1 Score: 394.4 bits (1012), Expect = 2.0e-108 Identity = 208/519 (40.08%), Postives = 301/519 (58.00%), Query Frame = 1
BLAST of MELO3C005285 vs. Swiss-Prot
Match: PIGB_DANRE (GPI mannosyltransferase 3 OS=Danio rerio GN=pigb PE=2 SV=1) HSP 1 Score: 360.1 bits (923), Expect = 4.1e-98 Identity = 204/546 (37.36%), Postives = 306/546 (56.04%), Query Frame = 1
BLAST of MELO3C005285 vs. Swiss-Prot
Match: PIGB_XENLA (GPI mannosyltransferase 3 OS=Xenopus laevis GN=pigb PE=2 SV=1) HSP 1 Score: 349.4 bits (895), Expect = 7.3e-95 Identity = 193/533 (36.21%), Postives = 288/533 (54.03%), Query Frame = 1
BLAST of MELO3C005285 vs. TrEMBL
Match: D7U1I6_VITVI (Mannosyltransferase OS=Vitis vinifera GN=VIT_11s0037g01100 PE=3 SV=1) HSP 1 Score: 781.2 bits (2016), Expect = 8.3e-223 Identity = 365/523 (69.79%), Postives = 435/523 (83.17%), Query Frame = 1
BLAST of MELO3C005285 vs. TrEMBL
Match: M5XBX8_PRUPE (Mannosyltransferase OS=Prunus persica GN=PRUPE_ppa003843mg PE=3 SV=1) HSP 1 Score: 777.7 bits (2007), Expect = 9.2e-222 Identity = 368/543 (67.77%), Postives = 443/543 (81.58%), Query Frame = 1
BLAST of MELO3C005285 vs. TrEMBL
Match: W9S9F9_9ROSA (Mannosyltransferase OS=Morus notabilis GN=L484_023024 PE=3 SV=1) HSP 1 Score: 774.2 bits (1998), Expect = 1.0e-220 Identity = 363/531 (68.36%), Postives = 441/531 (83.05%), Query Frame = 1
BLAST of MELO3C005285 vs. TrEMBL
Match: A0A061GR19_THECC (Mannosyltransferase OS=Theobroma cacao GN=TCM_038567 PE=3 SV=1) HSP 1 Score: 767.7 bits (1981), Expect = 9.5e-219 Identity = 362/512 (70.70%), Postives = 424/512 (82.81%), Query Frame = 1
BLAST of MELO3C005285 vs. TrEMBL
Match: A5C1A2_VITVI (Mannosyltransferase OS=Vitis vinifera GN=VITISV_008053 PE=3 SV=1) HSP 1 Score: 766.1 bits (1977), Expect = 2.8e-218 Identity = 357/497 (71.83%), Postives = 423/497 (85.11%), Query Frame = 1
BLAST of MELO3C005285 vs. TAIR10
Match: AT5G14850.1 (AT5G14850.1 Alg9-like mannosyltransferase family) HSP 1 Score: 719.2 bits (1855), Expect = 2.0e-207 Identity = 344/509 (67.58%), Postives = 408/509 (80.16%), Query Frame = 1
BLAST of MELO3C005285 vs. TAIR10
Match: AT1G16900.1 (AT1G16900.1 Alg9-like mannosyltransferase family) HSP 1 Score: 79.0 bits (193), Expect = 1.0e-14 Identity = 83/300 (27.67%), Postives = 121/300 (40.33%), Query Frame = 1
BLAST of MELO3C005285 vs. NCBI nr
Match: gi|659072816|ref|XP_008467109.1| (PREDICTED: GPI mannosyltransferase 3 isoform X2 [Cucumis melo]) HSP 1 Score: 1098.6 bits (2840), Expect = 0.0e+00 Identity = 543/543 (100.00%), Postives = 543/543 (100.00%), Query Frame = 1
BLAST of MELO3C005285 vs. NCBI nr
Match: gi|659072814|ref|XP_008467108.1| (PREDICTED: GPI mannosyltransferase 3 isoform X1 [Cucumis melo]) HSP 1 Score: 1094.0 bits (2828), Expect = 0.0e+00 Identity = 543/544 (99.82%), Postives = 543/544 (99.82%), Query Frame = 1
BLAST of MELO3C005285 vs. NCBI nr
Match: gi|778660294|ref|XP_004146686.2| (PREDICTED: GPI mannosyltransferase 3 [Cucumis sativus]) HSP 1 Score: 1028.1 bits (2657), Expect = 5.6e-297 Identity = 505/543 (93.00%), Postives = 521/543 (95.95%), Query Frame = 1
BLAST of MELO3C005285 vs. NCBI nr
Match: gi|470148806|ref|XP_004309941.1| (PREDICTED: GPI mannosyltransferase 3 isoform X1 [Fragaria vesca subsp. vesca]) HSP 1 Score: 788.9 bits (2036), Expect = 5.7e-225 Identity = 372/542 (68.63%), Postives = 448/542 (82.66%), Query Frame = 1
BLAST of MELO3C005285 vs. NCBI nr
Match: gi|297743719|emb|CBI36602.3| (unnamed protein product [Vitis vinifera]) HSP 1 Score: 781.2 bits (2016), Expect = 1.2e-222 Identity = 365/523 (69.79%), Postives = 435/523 (83.17%), Query Frame = 1
The following BLAST results are available for this feature:
The following terms have been associated with this gene:
GO Assignments
This gene is annotated with the following GO terms.
This gene is associated with the following unigenes:
The following mRNA feature(s) are a part of this gene:
The following transcribed_cluster feature(s) are associated with this gene:
Analysis Name: InterPro Annotations of melon
Date Performed: 2016-09-28
The following gene(s) are orthologous to this gene: None The following gene(s) are paralogous to this gene: None The following block(s) are covering this gene: |