IVF0021910 (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.CAATAAGCCAACGTTCTCAAAATCATCGAACTGAAAAAAAATAAAATAAAAAACCCATCAGGTAAGAAACGACAAATTCAAACTTATCCAATTAAATGTAAAATTTAAAATAAAATTACGTTGAGAAATCATTTTATATATCTATATATATATAAACAGCCTCGATGTTGAGAATATTGCCCAAATTTGACGGCTTTATCGCTAGATCGATCCCACCCTCCGCTGTGATCGGCTCCGTGTCGTACCAACCAAGGTTCTTCCGATTCAACTCCACTACTCAGATTCCTTCTAGGGTTTCTTTTTTTCTTCCATTTCTTCCGATTATGGCTGCGGTTCGTTTGACGCCAGAAGATGCCGAGTTGTTGCAGCAGGCTCGGGCTGCTCCGTCCGCCGCTGATCTAGTCTCTGACGATGACCGCTCAGTGGCCGCTGACTCATGGTCCATCAAGAGCGAGTATGGTAGCACCCTCGACGATGACCAACGTAATGCTGATGCTGCTGAGGCTCTATCTGCTGGGAATTTGCGTCCTGCTTCTGATTACAGGTTTAGTTTGTTTCTTCTTTTGAATTGTTTGAATCTAGCTGGAAATAGTTGAAACCGAGTTGTTTTGACGCTCTGCTTATATTTGGCAGTTGGGAACTTAGGCGTCCTTTTCTTCTTCTTCTTCTTCTTCTTCTTCTTCTTCTTCTAGTTTTGATTGATTCCTAAAACATTCAACGATCATGTTATTCTCATTCATTTCTGGAATTAATGAATATGGTTATGCGGCGTAGTTCATGTAGTTTACAATTCTCTTACTGTTGTATTGAATTCTTGAATGTGTGAGTATAACCTCATTATCACTTGCTATTTTTTTCCCTTATTCCCTTGGACTTCGTGTGGATTTCCTAATACTATTTTCCCTTTTGCTCTTCATTCTGGACGGATGGGAGAACTGTGTTGTGTCCTTGTTTACTTTGCTTAGAGAATCGATATATTTTTCACTTTCTTTTAGCTTTAACTAGTATCACTATAATAATTGATTGGAAACCATCCTGGATTGACCCGGGCAATGAAAAAGTAGATTTATAGGTAGTGGGTTCAAAGTATGATAACCACTTGCGTAGGATCTAACATCCTACGGGTGTCTTTAGAGTTTGGTGGGATCGATCAATACACTCATAGTTATTGAAGAAAATTTTGCTTAGGATCTCGGTAAAGCACAGGCAAGTTGAATGCTCCATTTTTATCCACATGAACAGATTGTAAATGTAATAATACTATTAATTTGGTATAATGATATTTGTTTAATGGGCATATTTTCATTCTTAACAAAACTTGTTAAATATTCAGTTCTGACAAGGATGAGATGGAGCCAGATGCTGAAGCTGTGACATCAATGCTAGGTCTCCAAAGTTATTGGGATTCTCAATATGCTGATGAATTGACAAATTTTCGTGAACATGGTCATGTTGGTGAAGTCTGGTACGTAAGAATTTCTAAGGTATCTTGTAATATCATTATGATGTTGCCAGTCTGGCTAAATATGTAGCTAGTAGTTAGCTGCACTTGAATTTTGCTACGTTTTTTTTGCCTTCTATATTATTCTACGAGATCATGTTCTGATATCATGAACTATATGTTAGTTTGAAACTCACTGTGCCCAAGTTCAATTGAGAAATTGAAGAACTATTCATCAACTCTTTAACTATTTGAACATGATATTAGGTATTAGTTGTTCGAAGGATTAATGTAGCTGTTGATTATTGTCAATAATTCATCTTGAGCACTAGGGTTATTTTGAATGCAATTTCTGTTGTTAGACTTGATCCACTAGTTAACTTTAGTGATTAAAAAATAAAGTGGAGTTTTAGATTGATCGAGTAGAATCAAAGAGACTTGATTTGTATTTGTTTATCTAGCTTTCTATTTTTGTACTTTCTTCATTCTTCAGGTTCGGATCTGGAGTTATGGAAACTGTTGCTTCTTGGACAAAGAGCTTGTGTTATGATGTTTCTCAAGGTCGGTTTCCGAATCAAGCTGGCAATGTTAAGACACTGAATGTTGATCAGGGATCCATATTCTTGTCTAGTTGGAGGGTACTTGATATTGGGACGGGAAATGGTTTGCTACTTCAAGAACTTGCTAAGGAAGGGTATGTTTTGAAATTTTTCCTTTTGATTCTTGCTAACATTTGAGAAGGGTTTTCTTTTGACTTATATCTTATTTCAAGTGGATAAACTTTGTCATAATAGATGCACCAATTAAAGGCGTACACATTGCAAAACAAATTGAGTAGGGGAAAGGATATTGTGAGCTGGGAATGCTTTATAATTAATTTTTAAATATTAAATATATTTTGGATGCTAGATCCTTTTCTCTTTTATTAACTTTTCTGTTGAAGGAAACAAGTTGGAGGCAAAAATTTGAAGTGAAGCGAGGAAAAGGAAAGGGCACTTCTTTTTTTCTTTTGCCCCTCTTTTTTCTCTATTGAGGATGACTCAAAGAGATGCAAACATTGATTGGTACTCTAGTCTATAATGATAGGGGGTTATCTTAGGTTGTAGATATCTAAACAGTGGTGCTCTTCTTTTTTTCTTCCCTCTCCTTTATTTATGTTTCATAATCCCTTTATTATTAGTGTATCCAGCCCGGTCTTCAATTAAAGGTAAAGGGACATGATCATTTGGAATCTTCTTTTTCTTATGAAAGAGGAAAGTGGTCTAATATAACTCTCTCCCATCCATTCATCTTATGAATTAGGGAACACAACCGATTAGCTAAGACTAGAAAATGGACAATAAGGGAAGAAACTGATCTTTTTTTCACGGTCAAAGTCCCCTTTAGGAATATCCACATGGCTAAGGTTGTCCAAAGCATTTCTTTTTGTTGATAAGAAATTGAGCTTTAATTGAGAAATATTAAGAATATGCAGGATCATTTAAAAAAATAACCTATACAAATGGCAAATGCCCAAAAGGGCGGTGTTAAACCCAATGTTTTTCTAGAGAACATCCAACTAATGCTCAAGCCCTTTGAGAATCCTGTTTTTTCTTTGAAGCCAAATACACTATATCACCAAAAAAAAAAAAGAAGGGTACACGGGCTTTTGGGAAAGGAGAGGGAAGACACAGAGACTGAAATAAGAGCTAGAAGAAAAGCCCCTCAACAGGCCCACAGCAAAATTTATTTTTAAATTTATTGTTATTATTATTATTATTTTGGATAGGAAACAGATCTTTAAAAAACAAAAGAGATAATCTAAGCAAGAATCCCTTCTCCCTTGGTTGATCTGAGCATCCCTAATCAACCTGAGTAGGGTTATAACCTCGGATGCTCTTTTTATATGTTAGAGGACAGGTGAAAGGTAAGTAACTGGAGAACAAATTAGCAACATAGACAAATAGGATAGAGGTTTAAACAACCCTCTCAAAAGTAGGTAGCATAATCTTCACCTCCACTTGAGCAATACAAGGGCTTCTAGCAGAACCCTTAATCCCACATGCTGAGCGCAATCAAGGGGGTGTGTAAGCTTTATTTATGACTGATTGTGCTTCCACAGGGTGTTAGATTCTGAGAAAAGCACCCCGACCACATCTCAGCATATCGATGCCTAACTCCTTCCTCCCACCTAGCATCTAACCAAAGGTCCGAAACAGAAACCCCCTTCTTCCTCCCTCCCACAAGAAATCCCTCAGAAGAAAATTTCTAAAGAAAGGCAGAAAGAGCCTTCAACTACATCATCCACAATGAAATTAGAAATTCCTCAAAAGAATTTCTAAAGAAAAGGTAAAAGCACTATCACTAGTTGTTTCTTTAAAGTCAAAATTTTCATCGACTTCTTCATTGGATTCTTTTTACAATACTTCAATAGTAGTTGGCATTTGTTGCAGGGTTTGCCCACTGTCTCCGAAGAAAAGATTTGTAACATCATTGCCAATGGACTACTATAATTCACTTCTTGGCCCTAGAAAGCTTTCATATATTTAAATATATATTATATGATCAGTTTTTTTAGGATACTCAATGCAAGCAGTTTCTTCTATTCTCTAAAGGAAGGTTTTGTTGGTTTGTCGACTTTCTTCCCAAATAACTTCCCGCCTTTCTGCATGATTTTCATGGAAGGTTTCTTCTTGAAGAAAAAGTGTTAGGATACTTCCTAATAGGAATTAATATATTTCATATATTGAAAGTTAACTAAGAACTACAATATGATCCAAGTTTATGGTACTTCGGACCCCCTCTCTTGAGAATACTACTCAAGACCTATCTACTCAACAACTCCCCCTTCTTCACTCACCAACTTCTTATTTATAACCACAATGGCTAGTAACCGCCTAAATATCTAATTATCCTTATACCCCTAACCCTTTACTAATCTAGGCATCTAACATTACCCCGCCCATCGAAACACCTTATCCCCAAGGTGTGCTTACAAACATGATCACAAGTTGGGCCGTTTTATTTTTTATTTTTTTTTATTTACCAACAATCCCCACTTTACTAATCTAGGCATCTAACATTACCCCGCCCATCGAAACACCTTATCCCCAAGGTGTGCTTACAAACATGATCACAAGTTGGGCCGTTTTATTTTTTTTTTTTTTTTATTTACCAACAATCCCCAGCAGTCTGCTCTTCAATGTTGAAAAAGAAATTCTCCCCTTAAGCTTTGAAAAACTCTTGGCTCCAATAAGGTCCATTGACTTCAGCCCATAGCTCAGAATCATCTTCCTTAGCCCGGAAAGCAGCCCAATGTTCTTGAATTTTCCTTTTCCCAAACACATTGTCATAGTTAACCCTTTGCATATCAACAACACCAAGTGTTTAATTTTCAACCTCTTCTTCTCTAGTAGGCTAGGCCCATAATCAAATTGTTGTGCCAAACGCCAATTATCTTGGGCCAGCACACCTTTACCCTCCTTAAAGCCATGAGCTTCCGACGGTTCAAACCCATAACAAAGCCCAAAATCAAACTGCTGTCGGTTTCATTCCAGACACGTTTTTCTTCCTCCCATTTTGGAACTCACCACCCACTTCACCTACAGAGTGATGGGCCTCCAATGTTTTATTTAGAATAAGCTGAAGCCCATTTGAACTAGTAAAACCCAAAATTTTATGGTTTGTTTCTTTTGCCCAAATCTTATTTCCCATCAATTTTTGCCACATCATTGGCACCATTTCCTGACATTTCACGTGGGCAGCAACTTCTTCTCCCACCTCTTCACCCATTTCACCCCTATTCCAGACCACCTTTGCCAGCCACCGTATATCGGTTTCAGAGCCTTTATCAATGCTGCCAACCGCAGTAACTCGGCCTTGATTGCCATAATTATCGCTTCCATTCTCGTTGACTTCCTTAACTCCTTCCGGCGCAGTTAGCAGCAATTCGATTTGCCATACTCTTCGCCATCCCAACCATTGAACGGCGACATCTTCTTTCTTCATCACAACCAAGCATTTTTTGCTTCTTTGAGCAACAACTTTTTCTTCACTCGAGTCTTCGTTTCAAGCCACACGAACAATTGCTGCCAACCTTCCTCTATAGTTTCTTCTCGGTCACTCTTTGCAAACCTTTCACCTTTTTTGTACATTCATTGCAACCACATTTTCCACGAGATTTATCTTTGACCATGCTAGTTTTTGCAGTTCTCGCTTCCTCTTGTTTTGACATATCTTTGCTAGTATTAGCTATTTCTTTATAACTTTCTTCCTCCACCTATGCCTGGTTTTCTTTTTCATCATGTGAACATGCTCGTCTCAATAGCCTGAAATTTTAGCACATTCGTATGAATTCCAGCAAGTTCTTGATCAATCACATTTAGTCTTTTTTCCTTCTCTTTTTACACCATTTTTTGGATTCTCACCCAGGTTGTTGCTTTGATACCAACTTGTTAGGATACTTCCTACAAGAATTAATCTATTTCATATATTGAAAATTAATTAAGAACTACAATATGATCCAAGTTTACGGTACTTGGGACCCCCTCTCTTGAGAATACTACTCAAGACCTATCTACTCAACAACTCTCCCTTCTTCACTCATCAACTTCTTATTTATAACCACTACTGTCAGTAACTGCCAAAATATCTAATTGCCCTCATACCCTTAGCTCTATACTAATCTAGTATCTAACAAAAAAGCCTTCTCCGACGCGTGCCTAGGTGCACCTATGCTCAAGGCACAGGTCTGGCACCTTGCCTTGGAAAGGCGAGGCTCACAAAATAAGAGGCATCTTTTTAATGTAATATTTTTGTATTCAGTGTGCCTCACAAGAAAAAGTCCATACCTTATTGTGCGACTTGTGCCTAGGCCTTCATAGGGCCAATTCTTCTTAGTGTGCCTTGGGCATTTAAAAATGTTAGAAATAGTGGGCTTGGGTCTTGTTGAAAGCCCAAGTGTAGTTGAGATTTACTTTGCCCTAATTTTTTATTATTTTGATTAGGCTCATGTTGTCTATAAATATTTCTCCCTTTGTACCTTTATTATCATAAAGAAAATAATATGAAATACCAGCATCGTGGTTTTTTTCCTTGTACTAGGGTTTTCATGTAAATTTGTGTTTGTTCTACGTACTTTCAATAAAAATAAACATTGGGAAAAACCAAGTTACTTTGATTAGTACTCATATTTGGATCTTCTGAAATGAAGAACTAGGAAAAGAGGACTCGAGGATGAGGAGAAAGAAACCCCTCCCCTGCACCTACATCTTAGCTTCTATGTCCCTCAATAAGGATGGAGAAGTCAGGCATGCCTTCATTTTTTTAAAGGAAACGAGACCACTAATATAATGAAAGGAGTCTAATACAAAATATAGAAACTGAAAATAAAAGTTCAAATAAAAGATACAATCTCAATTAAACAGAGCAAATGAAAACGTTCCGATTCAAGCAAATGTTTTGAATTGAATAATTATAGAAAGCCTTCGTAGCGAGAACACCGTGTGGAGGCAAGAAGATGAGGAGATCCAAAATGAAACAACCAAGAAAGGTTTTTATCATGAAAAAACCCTCTAATTTATTTCAAACCATACTTTAGACTGTTGAGCATTCACTGAATTGGATTATAAATTTTATGAAGTATGTGCCAAAAGAGGGCCCACCAAAATCTGAAGTATATTATTCTGAAACGGCTTGACAAAGTTCCAAGAGAAAAGTATCTTCCTTCATTGTAGTTGAGTTTTTTCTTCTAGAAAAAAGGCTATGGTTTAGACTCTTCTTTTCTACCTCTGGTTATGTTTTTCTTTCAATGATGTAGATTTTTACCGAGTGTGTGCAGCATTTGCAGGGAACTAAGTAGCAGTTAATCTAGGGGATTAAGACTTTTGTACTCTGGAAGTTGTTGGGCCTTAATCGTTCAGTATTGTTAAGTGATAGGCTCTAGTTTTGAACCCAATTATCATAAAGGCTGAAAACTTTTAGTTACTAAATAGAAGTTTGCAATTAGCATCGGTAGTTACTGATTGTCATCTTGCACTTGCTTGCAGCAGATTCTCTAATTTGACAGGAACTGATTATAGTGAAGGGGCAATAGATCTTGCTAGAAGCCTTGCAGAGCGAGATGGTTTTTCCAATATAAATTTTTTGGTATGACTTGGCTCGAGGGTATTTCGATTACCGTACTTATTTTCTTTCAAAATCTTTGTAAATCTCTCTCTCTATCTCTGTCTATTTTTTTCCATAAAAAGAAACGGAACTTTCTATTGCTGAAATGAAAAGAGACTATTGCACAAACATTCTCGTTGTCTCTTTATTGGATGTGTTGTGGAACATAGTTACCTTCTACAAAATTGATAGAGATTTATTTTTGGCTTTGTAAGAACACACACACACACACATATATTGGCTTATATGTTCCTATATTTTGTTTAGAAAAAGAATTAAAATGTTTTCTAAACGACAATGTCACATTTGTAATGGGCTATAATATGACTTATAGCTGGTAATTGTCATTGGGTCAAGTTAGATTTGAGAACTATTTTAAGGGTAAATTAGATTTTGTACCATAAATCTTTGTTTTCAGAATTAGATCTAAATAGACTAGATTACTGTTAGTTTTTCATTTTTTCATTTTTTTTTCTTTTGGCTTGAGCAAGGGACAGTAGATGACAAATTATATTCAGGAGACAGATTGGTTATGAAATTGAAGTGGGGGATTACCCGTTTAGTTTAGTCAATTTCATAAATCCGGCCAATTTTTTGTTGCATTTAAGTTTCAATAAATAATTCACATCTTTATATTGTCTATCATTGATACCAAGCATGATTTGAAGTATAGAGATGATTGGTGAAACTTTTAGAAGTTGAGTAAATAAAATTAACAAAATACTTAAAATGGGAATAGTTGTTAAATGCCTGTTAGACCACCAATAATCCACACTTATGTTAGGAGAGGCAGTTAGGGTAACTTTTCTTTCTCTTCTTTTTGGAGTTTTATCTTTTGATCTTTTATTCCTTTTCTTGTTTCAAAAGAGAGGTAGTCAGGAAATAGTAGGCCATTTATTAGATATTTAGAAACGTTTTATTTCTTAGTTTCTGCCATGTATCGTGGGATCATCGTAATTGTATTGTTTTACTTTTACATGACTTAGGTTGATGATGTTCTTGAGACAAAGTTAGAAGGGCAATTTCAGCTCGTTGTGGATAAAGGGACTTTAGATGCAATAGGATTGCATCCAGATGGTCCTATTAAAAGGTAACGATAGGCAAACACATGCATTCTCTAATATAGTTGTATGTGGACTGTTTCACATTGGACTGGTGCTTGCTCGTGCTCCCACTGAACATGGGCGTTATAATAAATAGATAATTGCAGATTTGCAAGTTTCACTTTGATAGATATTACTGGATGGAAGTTCGAAGTAATTGGTGTTTCTTCATTTCTTTTCATTATTTCCAGGATCATGTATTGGGTGTCCGTATCGAAACTGGTGGCTCCGGGTGGGCTTTTGGTAAGGCCTTTCTTTACCCCCCATCTAGCAAGAAAAAATAATAACAATAACAATACAATAAGAAGGGATATTTTCAAATATATCAAAGTAAACTAAAATATTTACAAACTATAGCAAAATTTGAAACTATCACTTTTCCTACTCAAACTATAGCAAAATTTGAAAGCATTTATAATAGGTCATGTGTAATATTGCAATACCTTTTGAATTGGATCTCTCCTCCCCCACCCTCCTCCCATTGTAAATATAATACATCCATTTCAATGATTTCATATATCAGATGAATTGAAACAAAGGACGAAGTTCAAGAATACTTCTCGTAAACTTAGGCATTCTTATGAGGTTCTTGAAATGCTTGTGAGCTCCCTGTTTTTTTCCCCATTTACATTTTATATTCTTTGGCAAATTCGATGTTTTATTCTCTTGGGTGCATAGACATAGCGTCCTTTTCTCAGTGAAACTGCAATGCAATTGGGACCGACTTTTTTAATTACATGAGACGTAGAAAAATATGAAAAAAGAGGTCAGCAACTGGGACTGACTTGTTACTGGTAATTGCTGTGTAGGTGATCACTTCTTGTAACAGCACAAAAGATGAACTTGTGCAAGAAGTTGAAAACTTCAATCAAAGAAGGGTTAATTCCTTTGTGGAACCAGAGTCATCCGATGAAACACAACCAGGAGAATTATTGCCTACATTTCAGTACCTTAGCCATGTTCGTACGTACCCAACATTCACCTTTGGAGGATCTGTTGGATCCCGTGTTGCCACGGTGGCATTTCTTAGAAACTAATTGTATTAGTGTTAGCTTGTTATCTTGAAGTCAAAGTTATTTCTGTATGTTATACACATTTATGGATTTGAAACGTTCAAGCCTACCACTGTTTGCCCCTAAAGAATCAATGTTGTAATGTTTTTACCTTTTCTTTTCTTTTTCTTTTTAACCTCATTGTGTAAAACTTTGAACCATTTTCCAGGTTTTTTAGCTTGTGCTTAGGGAACTGATGCAATTAGGGTGGGGAGCAAAGTGGGAAGATACTAAATTGGCTGCTTCAATCTAAATGCCTTTCTCAGGATTTCAATAGGCATCTAATAAACCATGTTCAACACTATATGAATCACTCAACCCTTTGTAACTTAGCATTGAGTATTTATATCACCCCACCCTTTGTAACTTGGCATTGAGTCTTTATATCACCCCTTATTTATATACAAGG CAATAAGCCAACGTTCTCAAAATCATCGAACTGAAAAAAAATAAAATAAAAAACCCATCAGCCTCGATGTTGAGAATATTGCCCAAATTTGACGGCTTTATCGCTAGATCGATCCCACCCTCCGCTGTGATCGGCTCCGTGTCGTACCAACCAAGGTTCTTCCGATTCAACTCCACTACTCAGATTCCTTCTAGGGTTTCTTTTTTTCTTCCATTTCTTCCGATTATGGCTGCGGTTCGTTTGACGCCAGAAGATGCCGAGTTGTTGCAGCAGGCTCGGGCTGCTCCGTCCGCCGCTGATCTAGTCTCTGACGATGACCGCTCAGTGGCCGCTGACTCATGGTCCATCAAGAGCGAGTATGGTAGCACCCTCGACGATGACCAACGTAATGCTGATGCTGCTGAGGCTCTATCTGCTGGGAATTTGCGTCCTGCTTCTGATTACAGTTCTGACAAGGATGAGATGGAGCCAGATGCTGAAGCTGTGACATCAATGCTAGGTCTCCAAAGTTATTGGGATTCTCAATATGCTGATGAATTGACAAATTTTCGTGAACATGGTCATGTTGGTGAAGTCTGGTTCGGATCTGGAGTTATGGAAACTGTTGCTTCTTGGACAAAGAGCTTGTGTTATGATGTTTCTCAAGGTCGGTTTCCGAATCAAGCTGGCAATGTTAAGACACTGAATGTTGATCAGGGATCCATATTCTTGTCTAGTTGGAGGGTACTTGATATTGGGACGGGAAATGGTTTGCTACTTCAAGAACTTGCTAAGGAAGGATTCTCTAATTTGACAGGAACTGATTATAGTGAAGGGGCAATAGATCTTGCTAGAAGCCTTGCAGAGCGAGATGGTTTTTCCAATATAAATTTTTTGGTTGATGATGTTCTTGAGACAAAGTTAGAAGGGCAATTTCAGCTCGTTGTGGATAAAGGGACTTTAGATGCAATAGGATTGCATCCAGATGGTCCTATTAAAAGGATCATGTATTGGGTGTCCGTATCGAAACTGGTGGCTCCGGGTGGGCTTTTGGTGATCACTTCTTGTAACAGCACAAAAGATGAACTTGTGCAAGAAGTTGAAAACTTCAATCAAAGAAGGGTTAATTCCTTTGTGGAACCAGAGTCATCCGATGAAACACAACCAGGAGAATTATTGCCTACATTTCAGTACCTTAGCCATGTTCGTACGTACCCAACATTCACCTTTGGAGGATCTGTTGGATCCCGTGTTGCCACGGTGGCATTTCTTAGAAACTAATTGTATTAGTGTTAGCTTGTTATCTTGAAGTCAAAGTTATTTCTGTATGTTATACACATTTATGGATTTGAAACGTTCAAGCCTACCACTGTTTGCCCCTAAAGAATCAATGTTGTAATGTTTTTACCTTTTCTTTTCTTTTTCTTTTTAACCTCATTGTGTAAAACTTTGAACCATTTTCCAGGTTTTTTAGCTTGTGCTTAGGGAACTGATGCAATTAGGGTGGGGAGCAAAGTGGGAAGATACTAAATTGGCTGCTTCAATCTAAATGCCTTTCTCAGGATTTCAATAGGCATCTAATAAACCATGTTCAACACTATATGAATCACTCAACCCTTTGTAACTTAGCATTGAGTATTTATATCACCCCACCCTTTGTAACTTGGCATTGAGTCTTTATATCACCCCTTATTTATATACAAGG ATGTTGAGAATATTGCCCAAATTTGACGGCTTTATCGCTAGATCGATCCCACCCTCCGCTGTGATCGGCTCCGTGTCGTACCAACCAAGGTTCTTCCGATTCAACTCCACTACTCAGATTCCTTCTAGGGTTTCTTTTTTTCTTCCATTTCTTCCGATTATGGCTGCGGTTCGTTTGACGCCAGAAGATGCCGAGTTGTTGCAGCAGGCTCGGGCTGCTCCGTCCGCCGCTGATCTAGTCTCTGACGATGACCGCTCAGTGGCCGCTGACTCATGGTCCATCAAGAGCGAGTATGGTAGCACCCTCGACGATGACCAACGTAATGCTGATGCTGCTGAGGCTCTATCTGCTGGGAATTTGCGTCCTGCTTCTGATTACAGTTCTGACAAGGATGAGATGGAGCCAGATGCTGAAGCTGTGACATCAATGCTAGGTCTCCAAAGTTATTGGGATTCTCAATATGCTGATGAATTGACAAATTTTCGTGAACATGGTCATGTTGGTGAAGTCTGGTTCGGATCTGGAGTTATGGAAACTGTTGCTTCTTGGACAAAGAGCTTGTGTTATGATGTTTCTCAAGGTCGGTTTCCGAATCAAGCTGGCAATGTTAAGACACTGAATGTTGATCAGGGATCCATATTCTTGTCTAGTTGGAGGGTACTTGATATTGGGACGGGAAATGGTTTGCTACTTCAAGAACTTGCTAAGGAAGGATTCTCTAATTTGACAGGAACTGATTATAGTGAAGGGGCAATAGATCTTGCTAGAAGCCTTGCAGAGCGAGATGGTTTTTCCAATATAAATTTTTTGGTTGATGATGTTCTTGAGACAAAGTTAGAAGGGCAATTTCAGCTCGTTGTGGATAAAGGGACTTTAGATGCAATAGGATTGCATCCAGATGGTCCTATTAAAAGGATCATGTATTGGGTGTCCGTATCGAAACTGGTGGCTCCGGGTGGGCTTTTGGTGATCACTTCTTGTAACAGCACAAAAGATGAACTTGTGCAAGAAGTTGAAAACTTCAATCAAAGAAGGGTTAATTCCTTTGTGGAACCAGAGTCATCCGATGAAACACAACCAGGAGAATTATTGCCTACATTTCAGTACCTTAGCCATGTTCGTACGTACCCAACATTCACCTTTGGAGGATCTGTTGGATCCCGTGTTGCCACGGTGGCATTTCTTAGAAACTAA MLRILPKFDGFIARSIPPSAVIGSVSYQPRFFRFNSTTQIPSRVSFFLPFLPIMAAVRLTPEDAELLQQARAAPSAADLVSDDDRSVAADSWSIKSEYGSTLDDDQRNADAAEALSAGNLRPASDYSSDKDEMEPDAEAVTSMLGLQSYWDSQYADELTNFREHGHVGEVWFGSGVMETVASWTKSLCYDVSQGRFPNQAGNVKTLNVDQGSIFLSSWRVLDIGTGNGLLLQELAKEGFSNLTGTDYSEGAIDLARSLAERDGFSNINFLVDDVLETKLEGQFQLVVDKGTLDAIGLHPDGPIKRIMYWVSVSKLVAPGGLLVITSCNSTKDELVQEVENFNQRRVNSFVEPESSDETQPGELLPTFQYLSHVRTYPTFTFGGSVGSRVATVAFLRN Homology
BLAST of IVF0021910 vs. ExPASy Swiss-Prot
Match: Q9D853 (EEF1A lysine methyltransferase 2 OS=Mus musculus OX=10090 GN=Eef1akmt2 PE=1 SV=1) HSP 1 Score: 155.2 bits (391), Expect = 1.5e-36 Identity = 110/290 (37.93%), Postives = 144/290 (49.66%), Query Frame = 0
BLAST of IVF0021910 vs. ExPASy Swiss-Prot
Match: Q5JPI9 (EEF1A lysine methyltransferase 2 OS=Homo sapiens OX=9606 GN=EEF1AKMT2 PE=1 SV=2) HSP 1 Score: 151.0 bits (380), Expect = 2.9e-35 Identity = 92/213 (43.19%), Postives = 119/213 (55.87%), Query Frame = 0
BLAST of IVF0021910 vs. ExPASy Swiss-Prot
Match: Q5D013 (EEF1A lysine methyltransferase 2 OS=Danio rerio OX=7955 GN=eef1akmt2 PE=2 SV=1) HSP 1 Score: 143.7 bits (361), Expect = 4.6e-33 Identity = 88/256 (34.38%), Postives = 128/256 (50.00%), Query Frame = 0
BLAST of IVF0021910 vs. ExPASy Swiss-Prot
Match: P40516 (Protein-lysine N-methyltransferase EFM4 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) OX=559292 GN=EFM4 PE=1 SV=1) HSP 1 Score: 116.7 bits (291), Expect = 6.0e-25 Identity = 85/273 (31.14%), Postives = 130/273 (47.62%), Query Frame = 0
BLAST of IVF0021910 vs. ExPASy Swiss-Prot
Match: Q9P7Z3 (Protein-lysine N-methyltransferase efm4 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) OX=284812 GN=see1 PE=2 SV=1) HSP 1 Score: 108.6 bits (270), Expect = 1.6e-22 Identity = 87/265 (32.83%), Postives = 123/265 (46.42%), Query Frame = 0
BLAST of IVF0021910 vs. ExPASy TrEMBL
Match: A0A5D3BTP8 (Protein-lysine N-methyltransferase E5676_scaffold451G00020 OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold451G00020 PE=3 SV=1) HSP 1 Score: 785.8 bits (2028), Expect = 8.5e-224 Identity = 397/397 (100.00%), Postives = 397/397 (100.00%), Query Frame = 0
BLAST of IVF0021910 vs. ExPASy TrEMBL
Match: A0A1S3C4B8 (Protein-lysine N-methyltransferase LOC103496859 OS=Cucumis melo OX=3656 GN=LOC103496859 PE=3 SV=1) HSP 1 Score: 780.4 bits (2014), Expect = 3.6e-222 Identity = 397/400 (99.25%), Postives = 397/400 (99.25%), Query Frame = 0
BLAST of IVF0021910 vs. ExPASy TrEMBL
Match: A0A6J1CQQ0 (Protein-lysine N-methyltransferase LOC111013281 OS=Momordica charantia OX=3673 GN=LOC111013281 PE=3 SV=1) HSP 1 Score: 606.3 bits (1562), Expect = 9.2e-170 Identity = 310/344 (90.12%), Postives = 321/344 (93.31%), Query Frame = 0
BLAST of IVF0021910 vs. ExPASy TrEMBL
Match: A0A6J1KBC4 (Protein-lysine N-methyltransferase LOC111492750 OS=Cucurbita maxima OX=3661 GN=LOC111492750 PE=3 SV=1) HSP 1 Score: 594.0 bits (1530), Expect = 4.7e-166 Identity = 304/343 (88.63%), Postives = 314/343 (91.55%), Query Frame = 0
BLAST of IVF0021910 vs. ExPASy TrEMBL
Match: A0A6J1GB80 (Protein-lysine N-methyltransferase LOC111452405 OS=Cucurbita moschata OX=3662 GN=LOC111452405 PE=3 SV=1) HSP 1 Score: 591.7 bits (1524), Expect = 2.3e-165 Identity = 303/343 (88.34%), Postives = 314/343 (91.55%), Query Frame = 0
BLAST of IVF0021910 vs. NCBI nr
Match: KAA0060716.1 (protein-lysine N-methyltransferase Mettl10 [Cucumis melo var. makuwa] >TYK01459.1 protein-lysine N-methyltransferase Mettl10 [Cucumis melo var. makuwa]) HSP 1 Score: 781 bits (2016), Expect = 1.34e-284 Identity = 397/397 (100.00%), Postives = 397/397 (100.00%), Query Frame = 0
BLAST of IVF0021910 vs. NCBI nr
Match: XP_008457104.1 (PREDICTED: protein-lysine N-methyltransferase Mettl10 [Cucumis melo]) HSP 1 Score: 775 bits (2002), Expect = 2.05e-282 Identity = 397/400 (99.25%), Postives = 397/400 (99.25%), Query Frame = 0
BLAST of IVF0021910 vs. NCBI nr
Match: XP_004140734.1 (EEF1A lysine methyltransferase 2 [Cucumis sativus]) HSP 1 Score: 654 bits (1686), Expect = 3.56e-235 Identity = 334/344 (97.09%), Postives = 336/344 (97.67%), Query Frame = 0
BLAST of IVF0021910 vs. NCBI nr
Match: XP_038896924.1 (EEF1A lysine methyltransferase 2 [Benincasa hispida]) HSP 1 Score: 630 bits (1624), Expect = 9.20e-226 Identity = 325/344 (94.48%), Postives = 328/344 (95.35%), Query Frame = 0
BLAST of IVF0021910 vs. NCBI nr
Match: XP_022143402.1 (EEF1A lysine methyltransferase 2 [Momordica charantia]) HSP 1 Score: 601 bits (1549), Expect = 2.43e-214 Identity = 310/344 (90.12%), Postives = 321/344 (93.31%), Query Frame = 0
BLAST of IVF0021910 vs. TAIR 10
Match: AT1G66680.1 (S-adenosyl-L-methionine-dependent methyltransferases superfamily protein ) HSP 1 Score: 452.2 bits (1162), Expect = 4.3e-127 Identity = 239/359 (66.57%), Postives = 275/359 (76.60%), Query Frame = 0
BLAST of IVF0021910 vs. TAIR 10
Match: AT3G60910.1 (S-adenosyl-L-methionine-dependent methyltransferases superfamily protein ) HSP 1 Score: 56.6 bits (135), Expect = 5.2e-08 Identity = 33/143 (23.08%), Postives = 69/143 (48.25%), Query Frame = 0
BLAST of IVF0021910 vs. TAIR 10
Match: AT4G34360.1 (S-adenosyl-L-methionine-dependent methyltransferases superfamily protein ) HSP 1 Score: 52.4 bits (124), Expect = 9.9e-07 Identity = 30/113 (26.55%), Postives = 60/113 (53.10%), 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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