MELO3C020675.jh1 (gene) Melon (Harukei-3) v1.41
Overview
Sequences
The following sequences are available for this feature:
Legend: exonstart_codonCDSpolypeptidestop_codon Hold the cursor over a type above to highlight its positions in the sequence below.CAACTTTAAAAGCACTCAGAAGTTTTGAAAAAGTCTAATCAATTATCTCCTCAGTTTCTTTTTATTTTCAATGGCTAACTTTCCTTCTCTAAAATTAATTGACGTCTGCAAAGTCTCTCCTCCTCCGACAGCGGCGGCACCGTCATCTCTTCCCCTTACTTTCTTTGATTTGATATGGCTAAGGTTTCATCCAATCCAACGTCTTTTTTTCTACGAATTTTCATCGAATGAGATCTCGTTTCACGACGTCATTGTTCCAAAACTCAAGAGCACTCTATCTCTTACTCTTCGTCATTATTTTCCTTTGGCTGGCAACCTCGTTTGGCCATCTCAATCCGATATACCCGTCGTTGAATTTGTCGAAGGCGATGGGGTTTCAATGACGGTGGCGGAATTCGACGGTGATTTCTATCATCTTTCTGGTAACGGATTTCGGGAAGTTTTGGAATTTCATCCTCTTGTTCCTGAATTGCCAGTCTCTCATGATCGTGCTGCAGTCATTGCTATCCAGGTTCTTAACCACTAGTTCTTAAGTAGATATAATAACAAGATTTGCTTATGCACGTAGATGCTTTCAATGGGTGAATAACAAAATATAAGCATAAAAAATATCAATCACCAAAACAAAATTTATATTTGTATTTAATTTATGATATTAAGTATAGAAATCTTAGAAAAATCATCGTAAATCACATAATTGATGAAAATATCTCCAAAAAAGTGTAATGCAAATTCTATCCATTATTAAATTTAGAATTTTATTATATTTTATTAATATTTTGGTTCATTTTTTAATATTTTAAAACAACTCTAAATAATGTACGGTGTAAATATATAATTGTCAAATAAAAAAAGTTTCAGCAATTATAATTATGTTTTTTTCATTTTAATTGATAATAATAGAATAAATTTTTATATTAGCATTATTACTAATAAAAATTAATTATACATGTCATTTATAAATGGCTTAGGGTAAACATAGTGATTTTTTAAAAAATAGAAAAATTAGACAAATATTTACGTTTTATATAATAAAATCACTTGAAGAAAAAAAATTACACCTAATTTTTTATAAATTTTTATAAAGTATAAATATTTTATCAAATATTTTATTTTTGACAATTTTTCTTGATAAGATTTATAAAAAATTTTGAATTAAATAATAAGAAGAAACAAGAAAAAATAAATAAAATAAAAATAAAAAATAAAAAAATAAAAAGTAAGAGAGAACTCACCTATTTGGAGGGTTATGAAAAACGACCTCCATGGAAAGAGAATATGAAATGCCTTCGGAATAAATATTATCATTCACAAGATTGAAAACTTATACCCAAATATGTTGAAAGTATATCATTCCTCCTTCCCACAAAATAAAGGGTCACCCAAAGCAAAATAGTATAAAATTTGTATGTTACTATTCAATTTTGCATAGTTTTTACTATCTGAACCTTCCTCGTTTTTTATATTATTTACTGTTTTATGTTTAAATTAAAATAGTTTATGATTCAAATACATTTATTTCAAACCAAGCTAACTAAAATTATAATCTAAATCTCAAACACAAGTTATTATAATCCAACTATAATAAACTAAAATTAAAATAACAAATCCCCTTATTCAAACCTCTTCTAAAACTTATATTTCATTCTTTTGAGTTTAACATATTTCAATTTTAGAAGATAAATATTGTAGAAATTACATATAAATGAATAATGAAGAGGTGCAATTAACCAAATATTCTCTGAAAAAAGTTTTAAAAAATATCATTTACCACATTTGTATTGGATGCTTGTCAGATTGCATAATAGATGAATGCAGTACTCAAAATTTAAAAATATCAAAATCAATAGAAGTATTGAGATTTTAATTTTATGAAAATTTCTATAGAAATGTTGGTAAAACGTCAATTTTAATAAATATTTGTGGAGAAATTATAGAAACAGACAATTCAAAGAAAGTTAAATTAGCAAACGTTATTTTCAAACAAGTTAACGAATTTATTATTTAAACTATATTTATATCATTGACATTTTAATATTTTAATCCTTATCTTTGTAATTTGAAAGAAACAAAAAAGTCATTAAAGAGGGAAAGTTTCTAATTTCTTCTCCCTATTTGTTTCTAGGAAATTAGTTGAAATTTCTACTTTTTGTTTGGTTAGATAGCCTTTTTCTTTTTCTTTCTAAATATTTTCTTGACATTATTCACTATCATTTACTAAATTGAGAAACATAAACAAACAAAAATAAAATAAAATACGAAACTGAAACTATTTAAAGGACTAAATCAAAAGGAAAAAAGATATGTTCTGCATAAAATATTGTATGGTTAAGTACTAACCCATTAAGGTATTACTTAACTAGTACTTAACCAGGAGTAATTATAAGAATTATTACAATGAATGTAACTTTTAAATAGGTGTATAATAACAATATAGTTAAAGAATTACAAGTATAGTAATATATTCTTTGGTGATAGACATTATCGTAATAGATTTTTTATTAGTGATATATTTTTTTTATACAGAGATAAAATATTGCCAATGATAGACATCTATTAGTAATAATAATATTGTCCTATGTATCATTGGTCGACTTTGAAAGCCAAATATAAATCTTGGAATACTTGCAATTATATCAATTACTTAATCATTTATATTCTCAATATTAGTGATAGACTATTATTAGTGATCGGTTATTCCAATGTTTTACTATATATATATAACTTATCTTGTATTGTATCATATTTGTGAATATATTAAACCAAATTGTTATATTCGCACGAGGACAATTAATCAATTATTTATATTTTCAATATAGGTAACTAAATTTCAAAACAAAGGATTCTCCATTGGAATAACCAATCACCATGCAATCATAGATGGAAGAAGCTCAACTTCATTTATCAAATCATGGGCTCAAATTTGCATGGACGATTCCTCTATACCAACCCCCAAGGAAATGCCATTATATGATAGGTCAGTTATAAATGATCCAAAAGATCTTGCAAAACTCTATGCAAAAGCATGGCAAGACCTAGAAGGACCCAACAACAAAAGCTTAAACCTTAAAATCCCCAAAACAAAACATGGTTTAATTAGAAGCACTTTAGAATTCACACACCAAAACATTCAAAAGCTAAAAGAATGGATCTTGAACGAGAAGATCAAAAATGAAAAATTTGATTCTTCTTCTTGTCGCATATCTTCTTTTGCAATAGCAACAGCTTATCTTTGTATTTGTACAGCCAAATTAGAAGGTTTAAAAGAAGGAAAATTATGGTTTGGGTTTGCAGTTGATGGAAGAACTCGTTTAAAGCCACAAGTGCCATTGAATTACTTTGGGAATTGTTTGGTTGGTGCTGTTGTTTGTCTTGAAAGGTTTGAACTTTTGAGTGAAAATGGAATAATTTTAGCTTGTGATGAGATTTCAAAAGCTATTAGAAATTTGGATGATGGAGCTTTAAATGGGTGTGAGAATTGGGGGTCACAGATGAGCCAATTGACAACTAATTATTCAAAAGTACAAGCCATTTCTTTATCTGGTTCACCAAGATTTGGAGTTTATAATGCTGATTTTGGATTTGGAAAGCCAAAGAAAGTGGAGATTGTGTCGGCTGAATCACCATATGTTTTTTCTTTGACTGATAGTAGAAATAGTGATGTGGTAATGGAGATTGGTGTTGTTAAGGAAAGAGATGAAATAGAAGCTTTTGTTGATATATTTAATCAAGGCTTTGAATTTATTTGAAACTATCATCATTGGGAACGTTTCTAAAGATTTTGTTGGTCTTTTGAGTTTTGCAACATTTTTAATAATAATTTTCAATTTAATTGGTTAAAATACTCTTCTATTTTTGTCGACATGTGTAGTTTATAAGACTTGTTTCATTTTGATGACGGTACTTATATGTATGTCCGATTTAATAAATTTTAACATTAGTTGCTTTATTGTTAATTTCTTTGTAGTTAATGACTAAATTAAAGTTTGTAAATATTAGAAGATATTTCAAGATCCACAATCTTCTTCCAGCCATTTATTGTAAATTGATTCATTGTAAATTTTTACCATATTCATACATTTGTAATGTGTATAAATGTTTACCTTTATCAACGAGAACATAAATAAGCAATACAAAATACATTCAAAATTTTTATGGTATCAATAAAACTATTTTTTTAGAAGATTCCTTTATCTTATTATTCATTTTCTACCAAATGTTTTAAACAATCCAGCTAAAAAAATAGTTTAAATAATATAGAATTTAATTAACTGAAAATTTAAATGTTTCTAATAAGAGAAAGATGAGAATCATAGTAAGAAAAAAATAAAGTAAAAAATGTAACCTAATTAAAGGACATGTTAACCTTCAAGGGAAAACAATAAGTTAATGGCAATAATATCTAAAAAGTCGGGCCCCTTTTGACATCAAAGTTTGTTGTCTGCGTTGTCTATGTTTTATAGTCGTACTAAATCACTTCCACATTTTTTTCTAAATAATTTTTTTCTATACATTATGTAGGTAGTGAAACGATAGATATGGTACAAAACACACATAATACGATGAAAAAACCCCCTAATAACGTCAACAATCTTGAAACAATACTGTCATGATTCACCACAGGAGTGAGTTTGAGCGGTACTTTAACAAGGGACTATATATATATATATATATATATATATATATATATATATATATATATATATATATCATTTCACTTTCTTGAGTTAGTTCGATTATATGACCATCAAAGCCATTAAGGGAAAGAAAACCTAATAAGTTGCAACAATAAATGCTTCAATGTGAATGGCGTGGCTTACAATAATTTTGAAAGAATCAGTGCGAAGAATTGCTAGAATCTTAAAAGCTTTCTTTATTTTTTACACATTTCATTTGTTTTTTCTTCTCTCTAGCGTTGTTCTTCATCATTTCCATTAGTACTTAATACATCTTTTATCTCGTTTTTACTTTTATAACGTTTTCCATTATCTATTTCTTTGTTTTTATTTTCTTTTATCAAGAGCTAAATCCTTCGCTATGGGTTTCAAATGCGTAAATATTCTTAGAAAGGATGGTTTCGATTAACTCTAAGAAATGTTTTTTCTTTAAAAAACCTCATTTAATAAAAATTGAGTTATTTTGAATGATTGTCGATCACTTCAATTTTTTTTCAAAGCTAACTTATTTCTTAAACAGAGTCTGAGATTGTTGTATTAAAATTGGGTTTTGTATATGTAATTCTCACTATATGTCAATTTGAAATTGATTAGTTCTATGTCTCTCATTTTTTTAAAAATCAATCGCTAACTAATTCATGGTCTATTCGTGATTAAATTTGACAACGGTCGTTAAGACTTATTACTTAGTATAATTATATTCAATACCCTACTATCCTTTTAAGCGTAGATTAACCAATTATCTTAACAATTTTTTTTTTAATTTATTGTTTTTTTTTATGAATTGAAGGATAAATTACAAATTTAAACCTATGAGTTGAAAATGAAAAATGATTTAATAAAACACGAAAATTTTATTAAACTATAAGACTTTAAATTCTAATTTTTTTCTAAACAAGATAAACTAAACTTAAAATTTATACTAAATTAAAATTGATTTTTGTGTATGTAACACGTTTCTTCCCCATGTGAATATCATTAATAATCCAACGTATTTCTCTTAGATAAGTGTATGGTTATTTATGATATATAAAGACAACTGAATATGAATTACAGTTGAAAGGATAGGTATAATATTACATTTTGAAATAAATATCTAAAAATATAATTTATGAAGTTGGTAAAATATTTATATTTTATGACAAAAATGAGATGTAGTAACACATTTATATTAGGAAAATTATTGTAAATGAAAAAATATTGAAAATATTTCCAAAATATAGTAAAATTTCATATCTTATCAATGATATGTCTTCTTTTTTATGTTGATATTATTGGTAATAAATCTAAACTTTTATCATATTTTTATTTATTTTAGTGTATTGGCAAATCATGAATGTTTTCAAAATTCTAAAAGATGTTCCTTTTCCTAGGAGTAAAAAGCAAAGACGAAAGCCAATTCGTCATCATTTGTACGATCTTTGAGATGTTTTTGGACAATTGAAGCACCCAAAGTTTTGAAAAATCTAATCCATCATCTTCTCACTTTCTTTTTATTTTCGATGGCTAACTTTCCTTCTCTAAACTTGATTGACGTCTGCAAAGTCTCTCCTCCACCGACAGCAGCAGCGCCCTCTTCTCTTCCCCTCACTTTCTTTGATTTGGCGTGGCTAAGGTTTCATCCAACCCAACGTCTTTTCTTCTACGAATTTCCATTGGATGAGATCTCGTTTCACGACGTCATTGTTCCAAAACTCAAGAGTTCTCTGTCTCTTACTCTTCGCCACTATCTTCCTCTTGTTGGTAACCTCGTTTGGCCATCTCAATCTGATGTACCCATCATTGAATTTGTCGAAGGTGATGGGGTTTTTGTGACGATAGCGGAGTGCGACGGGGACTTTTATCATCTTTCTGGTAACGGATTTCGGGAAGTTTCGAAATTTCATCCTCTTGTTCCTGAATTGACAGTCTCTAATGACCGTGCTGCAGCCACTGCTATTCAGGTTCTTAATTAACCACTAAATTCTTAAAGTAGACATCATATGGTATTAGATTAGCATCTACATGTAGATGTTTTCAACAGGTGAATCAATATCTCTATTATATAAGCTTCAAAATATGATCATTAATATACGATTAATAATTTGAAAATAATAAATTACTTATTTACAAATAATAAAATATTTAATTACTAATTTATTATTATTATTTTGTTTTTATAAGTTTTTAAAAAATGTCGGTAGAAATTTGTATCTGCTTTGGGAATAAAGTTATGTCTAAAGAATAAGATGGATGGCAATAAAATGTTTGGAAATAGAAAATTTGTTTGATTGTGTTAGAATTTTATGAACAAAAATTATATTTGTATTTAACTTATAAAATTAAGCATAGAAAAATCTTAGGAAAATGATTGTAAATAATAAAAATTGCTGAAAATATCTATAAATAATATAAATTGCTGACAATATTTATAAATAATATAAATTTTCAAATTCTATTAATGGTAGATACTGATACTGTCATGATAAACATTGATGAAAAAACTCCTAAATTTTACTACATTTTATAAATATTTTGGTTCATTTTTTCATATTTGAAAACAACTCTAAAAAATAATAGTAAATTGTCAAAAATAGAAGATTTGATAAAATAGAAGATTTGATAAAGTATTTAGACTTCGTAGAAATAGAGGGTAAATGGTTTACTGATCTTTTCTATTTTTAAAAAAACCTAAATAATCAATGGTGTCAATATATATAGTCAAAAAAAATTAAACCATTATAATTATGATTAATTGTTCATTTTAATTTATAATAATAGAATAACTTATTATATTAGCATCATTATTAACAAAAGTTAATTATACATGTCATTTATATATGACTTATTTTAAACATATTTATAAAATTGTTTGAATTAAATAATAAGAAGGAAGAAGAAAAAATAAATAAAACCAAAAAAAGAAAAAGTAAGAGAGAGAGAGAGAGAGAGAGAGAACTCACCTATTTGGAAGGTTATGAAAAACTCCATGGAAAGAGAATGTGAAATGCTTTTAGAATAAATATTATCATTCCCAACATCAAAAACTTAACACCAAATATGGTGAAAATATATCATTCCTCCTTCCCATGAAATAATATAAAATTTGTATTTGAATCCCATTTTCAATATTTAATTTTAAAAAATAAATTATTTTAAAAGACTATAATGTTTAAAAGTAACTCAAAATAAGATTTTAAATTTATTTTAAATAATGTTTTATAAAAATAAGTTTAAACAAAAATAATTTTTTTGAAAAACATTTTTCTTTTAAGTCAATACGAACGGAACTTTAATTTGTTATAGTTTAAATTCTTTTATATTCTATTATCCTTTTGATCTTTGCTACAATGTTCACTATTTCTTCTCAAGTTAAATCAGTTTATAACTCAAACATATGTTATTTTAAACCTAACTGAAATTATAATCTAAATATCAAACAGAAACTATTGTAATCCAACTATAATAACTTAAGATTATAATAACAAACTCTTTAATTTAATAGTTTTCTAAAAAAATCTTGATTTCGTTCTTTGTATTTAACATATTTCAATTTTAGAAGATAAACTTTTCAGAAATTTATTATCAGGTGCAATTAAATGAATATTCTCTCTTTCATACTAAAAGAAAAGATAAAAAAAGATTGTTTGAAAAAATTAAAATGCCACGTGTCATATTTCTATTGGGTGGTAATGAGATGGCTCCCTAAAGTTAAATATCAAAATTAATCGAAATATTGAGATTTTAATTTTATAAAAATTTAGATAAAAATATGAATAAAACATCGATTTAAATGGATATTAGCAGAAAAATGAGAAAAACCAAAAGTTAAAAAAAAAAAAAAAAAAGTTAAATTAGTAAACATTATTTTCAAATATGTTAAATAATTTATTATTTAAACTCTATCTATATTATTGAGATTATTGATTAGTACATTAAGTAGAAAACGTTTAAAAGAAAAGAAAAGTCATTGAAAAAGGGAAGTTTCTACTTTTTGTTTGCTTAGATAGCCTTTTTCCTTTTTTTTTTTCTAAAGAATCTTCTTGGCATTATTCACCAACCATCATAGACTAAATTGAGAAAACAAACAAAAAAGGAAATACTAAATGCAAACTTTTTGAAGGACTAAATTGAAAGGAAAAATGATATGTACCACATTAAATGCATGGTTAATTAGTACTAACCCATTAAAAGGTATTATTTAATTAATAATTATAAGAATTATTGTAATGAATATAACTTTTATGGTCAAATTATAAGTAGTGTATAATAACCGTATCGTTAAAGAATTAAAGATATAGTAAAATATTCTTTGGTGATAGATGTTATCGTAATTGATTTCTCTATTAGCGATCATATATTCATTTTACTGATAGAATATTATTAGTGATGCACTTTTATTAGTGATATCATCTATAAATCACTGGTAGACTCTGAAAGCCAAATATAAAACTTGGAATACTTGCAATTGTGTATCAATTACTTAATCATTTATATTCTTAATATTAACAATAGACTATTATTAGTAATTGACTTATTTTTCATTGTATTGCATATGTAAATACTTCAAACATGATTGCTATATTTGCACTGTGACAATTAATTAATTATTTATATCCTCAATATATAGGTAACTAAATTTCAAAATAAAGGTTTTTCCATTGGAATAACCAATCACCATGCAATCATAGATGGAAGAAGCTCAACTTCATTTATCAAATCATGGGCTCAAATTTGTATGGAAGAATCCTCTATACCAACCCCCAAACAAATGTCATTATATGATAGGTCAGTTATAACTGATCCAAAAGATTTTGCAAAAATCTATGCAAAAGCATGGAAAGACCTGGAAGGACCCAACAACAAAAGCTTAAACCTCAAATTCCCCAAAACAAAACATGGTTTAATTAGAAGCACTTTGGAATTCACACACCAAAGCATGCAAAAGCTAAAGGAATGGATCTTGAAAGAGAAGAGCAAGAATGAAAATTTTGATTCTTCTTCTTCTCACATATCTTCATTTGTAATAGCAACAGCTTATCTTTGTGTATGTACAGCCAAATTAGAAGGTTTAAAAGAAGGGAAACTATGTTTTGCTTTTGCAGCTGATGCAAGAACTCGTTTAAAGCCACAAGTGCCATTGAATTACTTTGGGAATTGTTTGGTTGGTGTGTTTCTTCGACTTGAACGGTTTGAACTTTTGAGTGAAAATGGAATAATTTTGGCTTGTGATGAGATTTCAAAGGCTATTAGAAATTTGGATGATGGAGTTTTAAATGGGTGTGAGAATTGGGGGTTAAGGATGAGCCAAGTGACAATTGATTATTCAAAATCACAAGCCATTTCTTTATCTGGTTCACCAAGATTTGGAGTTTATAATGTTGACTTTGGATTTGGAAAGCCAAAGAAAGTGGAGATTGTGTCAAGTGAATTACCAAATGTTTTTTCTTTGATTGATAGTAGAAATAGTGATGTGGTAATGGAGATTGGTGTTGTTAAGGAAAAAGATGAAATGGAAGCTTTTATTGCTATATTTAATCATGGCTTTGAATCTATTTGAAATCATCATGATTGGGAGTTTCCAAAGATTAATTTGTTCGCTTTTTGAGTTTTGCTACATTTTTAATAATGATGTTTAATTTAATAGAGGTTAAAAGTACTATGCTATTTTTGTATTTTGTAAGACTTGTTTCATTTTAGTAATGGTACTTTTATGTATGAGTGATTTAATAAATTTTACCATTATTTGCTTATTGC CAACTTTAAAAGCACTCAGAAGTTTTGAAAAAGTCTAATCAATTATCTCCTCAGTTTCTTTTTATTTTCAATGGCTAACTTTCCTTCTCTAAAATTAATTGACGTCTGCAAAGTCTCTCCTCCTCCGACAGCGGCGGCACCGTCATCTCTTCCCCTTACTTTCTTTGATTTGATATGGCTAAGGTTTCATCCAATCCAACGTCTTTTTTTCTACGAATTTTCATCGAATGAGATCTCGTTTCACGACGTCATTGTTCCAAAACTCAAGAGCACTCTATCTCTTACTCTTCGTCATTATTTTCCTTTGGCTGGCAACCTCGTTTGGCCATCTCAATCCGATATACCCGTCGTTGAATTTGTCGAAGGCGATGGGGTTTCAATGACGGTGGCGGAATTCGACGGTGATTTCTATCATCTTTCTGGTAACGGATTTCGGGAAGTTTTGGAATTTCATCCTCTTGTTCCTGAATTGCCAGTCTCTCATGATCGTGCTGCAGTCATTGCTATCCAGGTAACTAAATTTCAAAATAAAGGTTTTTCCATTGGAATAACCAATCACCATGCAATCATAGATGGAAGAAGCTCAACTTCATTTATCAAATCATGGGCTCAAATTTGTATGGAAGAATCCTCTATACCAACCCCCAAACAAATGTCATTATATGATAGGTCAGTTATAACTGATCCAAAAGATTTTGCAAAAATCTATGCAAAAGCATGGAAAGACCTGGAAGGACCCAACAACAAAAGCTTAAACCTCAAATTCCCCAAAACAAAACATGGTTTAATTAGAAGCACTTTGGAATTCACACACCAAAGCATGCAAAAGCTAAAGGAATGGATCTTGAAAGAGAAGAGCAAGAATGAAAATTTTGATTCTTCTTCTTCTCACATATCTTCATTTGTAATAGCAACAGCTTATCTTTGTGTATGTACAGCCAAATTAGAAGGTTTAAAAGAAGGGAAACTATGTTTTGCTTTTGCAGCTGATGCAAGAACTCGTTTAAAGCCACAAGTGCCATTGAATTACTTTGGGAATTGTTTGGTTGGTGTGTTTCTTCGACTTGAACGGTTTGAACTTTTGAGTGAAAATGGAATAATTTTGGCTTGTGATGAGATTTCAAAGGCTATTAGAAATTTGGATGATGGAGTTTTAAATGGGTGTGAGAATTGGGGGTTAAGGATGAGCCAAGTGACAATTGATTATTCAAAATCACAAGCCATTTCTTTATCTGGTTCACCAAGATTTGGAGTTTATAATGTTGACTTTGGATTTGGAAAGCCAAAGAAAGTGGAGATTGTGTCAAGTGAATTACCAAATGTTTTTTCTTTGATTGATAGTAGAAATAGTGATGTGGTAATGGAGATTGGTGTTGTTAAGGAAAAAGATGAAATGGAAGCTTTTATTGCTATATTTAATCATGGCTTTGAATCTATTTGAAATCATCATGATTGGGAGTTTCCAAAGATTAATTTGTTCGCTTTTTGAGTTTTGCTACATTTTTAATAATGATGTTTAATTTAATAGAGGTTAAAAGTACTATGCTATTTTTGTATTTTGTAAGACTTGTTTCATTTTAGTAATGGTACTTTTATGTATGAGTGATTTAATAAATTTTACCATTATTTGCTTATTGC ATGGCTAACTTTCCTTCTCTAAAATTAATTGACGTCTGCAAAGTCTCTCCTCCTCCGACAGCGGCGGCACCGTCATCTCTTCCCCTTACTTTCTTTGATTTGATATGGCTAAGGTTTCATCCAATCCAACGTCTTTTTTTCTACGAATTTTCATCGAATGAGATCTCGTTTCACGACGTCATTGTTCCAAAACTCAAGAGCACTCTATCTCTTACTCTTCGTCATTATTTTCCTTTGGCTGGCAACCTCGTTTGGCCATCTCAATCCGATATACCCGTCGTTGAATTTGTCGAAGGCGATGGGGTTTCAATGACGGTGGCGGAATTCGACGGTGATTTCTATCATCTTTCTGGTAACGGATTTCGGGAAGTTTTGGAATTTCATCCTCTTGTTCCTGAATTGCCAGTCTCTCATGATCGTGCTGCAGTCATTGCTATCCAGGTAACTAAATTTCAAAATAAAGGTTTTTCCATTGGAATAACCAATCACCATGCAATCATAGATGGAAGAAGCTCAACTTCATTTATCAAATCATGGGCTCAAATTTGTATGGAAGAATCCTCTATACCAACCCCCAAACAAATGTCATTATATGATAGGTCAGTTATAACTGATCCAAAAGATTTTGCAAAAATCTATGCAAAAGCATGGAAAGACCTGGAAGGACCCAACAACAAAAGCTTAAACCTCAAATTCCCCAAAACAAAACATGGTTTAATTAGAAGCACTTTGGAATTCACACACCAAAGCATGCAAAAGCTAAAGGAATGGATCTTGAAAGAGAAGAGCAAGAATGAAAATTTTGATTCTTCTTCTTCTCACATATCTTCATTTGTAATAGCAACAGCTTATCTTTGTGTATGTACAGCCAAATTAGAAGGTTTAAAAGAAGGGAAACTATGTTTTGCTTTTGCAGCTGATGCAAGAACTCGTTTAAAGCCACAAGTGCCATTGAATTACTTTGGGAATTGTTTGGTTGGTGTGTTTCTTCGACTTGAACGGTTTGAACTTTTGAGTGAAAATGGAATAATTTTGGCTTGTGATGAGATTTCAAAGGCTATTAGAAATTTGGATGATGGAGTTTTAAATGGGTGTGAGAATTGGGGGTTAAGGATGAGCCAAGTGACAATTGATTATTCAAAATCACAAGCCATTTCTTTATCTGGTTCACCAAGATTTGGAGTTTATAATGTTGACTTTGGATTTGGAAAGCCAAAGAAAGTGGAGATTGTGTCAAGTGAATTACCAAATGTTTTTTCTTTGATTGATAGTAGAAATAGTGATGTGGTAATGGAGATTGGTGTTGTTAAGGAAAAAGATGAAATGGAAGCTTTTATTGCTATATTTAATCATGGCTTTGAATCTATTTGA MANFPSLKLIDVCKVSPPPTAAAPSSLPLTFFDLIWLRFHPIQRLFFYEFSSNEISFHDVIVPKLKSTLSLTLRHYFPLAGNLVWPSQSDIPVVEFVEGDGVSMTVAEFDGDFYHLSGNGFREVLEFHPLVPELPVSHDRAAVIAIQVTKFQNKGFSIGITNHHAIIDGRSSTSFIKSWAQICMEESSIPTPKQMSLYDRSVITDPKDFAKIYAKAWKDLEGPNNKSLNLKFPKTKHGLIRSTLEFTHQSMQKLKEWILKEKSKNENFDSSSSHISSFVIATAYLCVCTAKLEGLKEGKLCFAFAADARTRLKPQVPLNYFGNCLVGVFLRLERFELLSENGIILACDEISKAIRNLDDGVLNGCENWGLRMSQVTIDYSKSQAISLSGSPRFGVYNVDFGFGKPKKVEIVSSELPNVFSLIDSRNSDVVMEIGVVKEKDEMEAFIAIFNHGFESI Homology
BLAST of MELO3C020675.jh1 vs. NCBI nr
Match: XP_008457511.1 (PREDICTED: phenolic glucoside malonyltransferase 1-like isoform X1 [Cucumis melo]) HSP 1 Score: 912 bits (2358), Expect = 0.0 Identity = 448/456 (98.25%), Postives = 451/456 (98.90%), Query Frame = 0
BLAST of MELO3C020675.jh1 vs. NCBI nr
Match: XP_008457512.1 (PREDICTED: phenolic glucoside malonyltransferase 1-like [Cucumis melo]) HSP 1 Score: 856 bits (2212), Expect = 1.82e-312 Identity = 423/456 (92.76%), Postives = 433/456 (94.96%), Query Frame = 0
BLAST of MELO3C020675.jh1 vs. NCBI nr
Match: XP_016902114.1 (PREDICTED: phenolic glucoside malonyltransferase 1-like isoform X3 [Cucumis melo]) HSP 1 Score: 834 bits (2154), Expect = 1.25e-303 Identity = 409/456 (89.69%), Postives = 426/456 (93.42%), Query Frame = 0
BLAST of MELO3C020675.jh1 vs. NCBI nr
Match: XP_031741446.1 (phenolic glucoside malonyltransferase 2 isoform X1 [Cucumis sativus]) HSP 1 Score: 826 bits (2133), Expect = 2.68e-300 Identity = 398/454 (87.67%), Postives = 428/454 (94.27%), Query Frame = 0
BLAST of MELO3C020675.jh1 vs. NCBI nr
Match: KAE8653234.1 (hypothetical protein Csa_019805 [Cucumis sativus]) HSP 1 Score: 810 bits (2093), Expect = 2.28e-294 Identity = 394/455 (86.59%), Postives = 426/455 (93.63%), Query Frame = 0
BLAST of MELO3C020675.jh1 vs. ExPASy Swiss-Prot
Match: Q940Z5 (Phenolic glucoside malonyltransferase 1 OS=Arabidopsis thaliana OX=3702 GN=PMAT1 PE=1 SV=1) HSP 1 Score: 305.8 bits (782), Expect = 8.0e-82 Identity = 177/463 (38.23%), Postives = 261/463 (56.37%), Query Frame = 0
BLAST of MELO3C020675.jh1 vs. ExPASy Swiss-Prot
Match: Q9LRQ8 (Phenolic glucoside malonyltransferase 2 OS=Arabidopsis thaliana OX=3702 GN=PMAT2 PE=1 SV=1) HSP 1 Score: 287.3 bits (734), Expect = 2.9e-76 Identity = 172/461 (37.31%), Postives = 256/461 (55.53%), Query Frame = 0
BLAST of MELO3C020675.jh1 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: 283.5 bits (724), Expect = 4.3e-75 Identity = 177/471 (37.58%), Postives = 267/471 (56.69%), Query Frame = 0
BLAST of MELO3C020675.jh1 vs. ExPASy Swiss-Prot
Match: Q9LRQ7 (BAHD acyltransferase At3g29680 OS=Arabidopsis thaliana OX=3702 GN=At3g29680 PE=2 SV=1) HSP 1 Score: 268.5 bits (685), Expect = 1.4e-70 Identity = 159/456 (34.87%), Postives = 256/456 (56.14%), Query Frame = 0
BLAST of MELO3C020675.jh1 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: 258.8 bits (660), Expect = 1.1e-67 Identity = 157/460 (34.13%), Postives = 251/460 (54.57%), Query Frame = 0
BLAST of MELO3C020675.jh1 vs. ExPASy TrEMBL
Match: A0A1S3C6Z8 (phenolic glucoside malonyltransferase 1-like isoform X1 OS=Cucumis melo OX=3656 GN=LOC103497183 PE=3 SV=1) HSP 1 Score: 912 bits (2358), Expect = 0.0 Identity = 448/456 (98.25%), Postives = 451/456 (98.90%), Query Frame = 0
BLAST of MELO3C020675.jh1 vs. ExPASy TrEMBL
Match: A0A1S3C598 (phenolic glucoside malonyltransferase 1-like OS=Cucumis melo OX=3656 GN=LOC103497184 PE=3 SV=1) HSP 1 Score: 856 bits (2212), Expect = 8.79e-313 Identity = 423/456 (92.76%), Postives = 433/456 (94.96%), Query Frame = 0
BLAST of MELO3C020675.jh1 vs. ExPASy TrEMBL
Match: A0A1S4E1L1 (phenolic glucoside malonyltransferase 1-like isoform X3 OS=Cucumis melo OX=3656 GN=LOC103497183 PE=3 SV=1) HSP 1 Score: 834 bits (2154), Expect = 6.05e-304 Identity = 409/456 (89.69%), Postives = 426/456 (93.42%), Query Frame = 0
BLAST of MELO3C020675.jh1 vs. ExPASy TrEMBL
Match: A0A1S3C6C7 (phenolic glucoside malonyltransferase 1-like isoform X2 OS=Cucumis melo OX=3656 GN=LOC103497183 PE=3 SV=1) HSP 1 Score: 803 bits (2073), Expect = 1.33e-291 Identity = 391/456 (85.75%), Postives = 416/456 (91.23%), Query Frame = 0
BLAST of MELO3C020675.jh1 vs. ExPASy TrEMBL
Match: A0A0A0LXY8 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_1G499330 PE=3 SV=1) HSP 1 Score: 794 bits (2050), Expect = 5.29e-288 Identity = 380/454 (83.70%), Postives = 414/454 (91.19%), Query Frame = 0
BLAST of MELO3C020675.jh1 vs. TAIR 10
Match: AT5G39090.1 (HXXXD-type acyl-transferase family protein ) HSP 1 Score: 307.4 bits (786), Expect = 2.0e-83 Identity = 178/460 (38.70%), Postives = 265/460 (57.61%), Query Frame = 0
BLAST of MELO3C020675.jh1 vs. TAIR 10
Match: AT5G39050.1 (HXXXD-type acyl-transferase family protein ) HSP 1 Score: 305.8 bits (782), Expect = 5.7e-83 Identity = 177/463 (38.23%), Postives = 261/463 (56.37%), Query Frame = 0
BLAST of MELO3C020675.jh1 vs. TAIR 10
Match: AT3G29670.1 (HXXXD-type acyl-transferase family protein ) HSP 1 Score: 287.3 bits (734), Expect = 2.1e-77 Identity = 172/461 (37.31%), Postives = 256/461 (55.53%), Query Frame = 0
BLAST of MELO3C020675.jh1 vs. TAIR 10
Match: AT3G29590.1 (HXXXD-type acyl-transferase family protein ) HSP 1 Score: 283.5 bits (724), Expect = 3.0e-76 Identity = 177/471 (37.58%), Postives = 267/471 (56.69%), Query Frame = 0
BLAST of MELO3C020675.jh1 vs. TAIR 10
Match: AT3G29635.1 (HXXXD-type acyl-transferase family protein ) HSP 1 Score: 283.1 bits (723), Expect = 3.9e-76 Identity = 179/465 (38.49%), Postives = 267/465 (57.42%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Melon (Harukei-3) v1.41
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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