PI0016066 (gene) Melon (PI 482460) 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.ATGCTCTCAATGGCTCTTCTCCACCTCCCTCTTTCTTCTACATTCTCTTTTCATGGAGCTGCCCTACCATCTACAAACTATCAACCTTCTTCTACTATGGTAATATATATAATTTATGACTACTTTCTAATTTAAGTTTTTTTTATTTCTTTTTAACAACTTTCAAAATAATTGTAAATCATAATAATTTTCTTTTGAGTTTCGTTATGAGCAACCACGGGAGTATTGAATGTCTTTGATCTTTTGTTTGATGGCATATATCGTTATTCATTAAGTTATGGTCATGTTGACATAAGCATTACAAAAAGTTTACATGATGTCATTTAGTCGTATGACTAATGCAAGCAAATTCGGAAAACTAAAGTTTGATAAAATTTATGCTTCTTTTATCTTTTAATATTTTCTATACCAATATTGTCTTCATGTTTTTTTTATTAATCATTTAATTTTATTTTTTTGTCATACTTAAAATTTGTTTTTTTTCTTTTAAAGAAATTTCAAACACATGGTTTAGAAGAGAAAAAAAAAGTGAGGATATGACTTGTTAAAATTCTAATGGTTTGGATCACATTCTCATTTGATTCTCTTCTATCTTACATTTGGAACATCTAAATATCTTCATCAGACAAGACCTTTCATGACTTTACTTGAATTAGTTTCACCAAAAGAGACTTGCAACAGAGATAATCATCATCAATTATATACCCACGATTATCTTCTCTTATATAACAAATATTAGACTTTATTTGTATTTTCAGTATTTTACATACAAATTTTCACATCCTCACTATTTTCACTTCTTTCTTTTACCTGCAAACTGTCTTTAATCACTTCAATCTTTAATTTTATATTTAAATTTATACTTTTAAATACATATTTCACAGCATCAAAGTTAGTTTTAAATGATTATGAATAATACGTTTGAGAGTGATTTTGAATTAACAAAAGTGATTCAATTTGCCAACAAACAAGTGGTCGGATTTCTTTCCATTAAAACATGTATAAAGTGGTTGGTGTGATTTATCAACCTCTATTATAATGGGGGACCTTGGTTGAATTGAGTCATATATGTGGTTAGAAGTAGAGATACATTTTCTTTCCCAAATTTCAACAATTATTGTTATGAATATGATAGGCATTACAATAATTTCAATATATAAACAATTATAGAGATATAGCAATAAAATTCAAATTATTTACACATATATAACGGTACAATACAAAAGAATTTGGAAACATATATCAAAATTTTAGATCCATCTCTAGAAGCGTATCAACGTTAAACTATATCACTAATAAGAGTTTATCCAACAACATAGACTAATAGATTTAACTATATTTACAATTCTTTAAATCCGTTGCTATATACTTAATTATTAGTTTTAAAAATGTTATCAAATTGCAATTACGTAAATGTAATTTTTTTTCGAGAAATTGCGAGAGTTACATACTTTTTCTTTATTTTTTTTCTCTAACATATTTACAATTGGTGGCATAAAAAATTTGCAGTTAAAATGTGTTGTGATTGAACGTGGAATGTGCATAAAAGCATCGATACAAAGTGGTGATGTTATTGTGAGGCAATGTGCAAATTACAATCCTCCTTTGTGGAAAGATGATTTTATTCAATCATTACATAATGAATTCAGGGTATGTTTTTTTTTTTCTAATCATAAATTATAAAAGCTAAACTCTAACCTTTTTTTTTTTTTTTGGTTTCTTTAAACAACTACACATGTCTGGGACTATCGATCTTCTATTTAATGCAATTTAATGCAAACACATAGTAGTTAAGGATGGACAGTGACATTTTGCTATGTTTGTAAATAAGTTGTTTCATTTTGCTATATTTAAAAACACTCCTAAGATTTATGCTATCTCTTCATGTTAATTAATGTTCAGGGAGAAACATATCGAAGACGATTTAGTCAATTAAAAGGACAAGTTCAAACATTGCTTAAAGAAGAAAGAGACTCTTTGGAGCAACTCGAACTCATTGATGCCTTACAAAAGCTTGGAATATCATACCACTTTGAGAGTGAAATTAAAGATGTACTAGAAAGAATAGGCAACAAGTTTTATAAAGAGGGGAATAAGAAGAATAGTCTCTATGCAACATCTCTTGAATTTCGACTTCTAAGACAACGTCAACTTGATATTTCTGAAGGTTAGTTATTTTTTTTAGCAAAAGATACGACGTGAATCAGTAGGTGCATCGTCTATCGAAATATTTCAACTAAGTTGGCACATTCTTAACACTTTTATCATACTTTACTATCCATACATTAACAAAAAAAAAAAAAAATAGTTGGATTATATATATTATCTAAATATGTAGGTATTTTGAAATAATTTTTAACAAATAATATTATATGCTTTTTTTTGTTGAAATTATGGACAGATGTTTTCAATGCCTTCAAAGATGAGATGGGGAATTTCAAAACATGCTTTTATGAAGATATAAATGGAATGCTATCTTTATATGAAGCTTCATTCTTATCAACTAAAGGGGAGACTATTTTAGAGGAAGCAAAATACTTTGCAATAAAATATCTAAATGAATACATCAAATCAAGCAAAGATGAACTCAAAGTAGAGATTGTAAAGAATGCCTTGAAGCTTCCTTTACATTGGAGAATAGAAAAATTGGAGGCAAGATGGAGTATTGATATATATGAGAGAATAGGAACCCTAAATCCTATTCTTCTTGAATTTGCTAAGCTTGATTTCAACATGGTGCAATCTATTTACCAAGAAGATCTTAAATATGCATCAAGGTAAGAGTGACAAAATTCATTTTTTCCAATTGGTTTATAGAGATTTTTTTATTCAATTACAAATTTGGTCCATATATAGTTTGAAGAAAATTAGATTCCTTATAGTTCAATAAAACCTCACGAATAGTTCCTATGTTTTGATTATAGAACTCTGTTTTATGTTTTTATCGAACTATAGCTAGGGATTAAATTTTAATTATAAACCATATGGTTTAAATTCTAACTTTTTTTTTCAAATTATAGGGAACAAATTTATAATTTTAACTTTATTTTTATTAATTCTATGCATTAGAATAATGAACTTTTTTTTATGTATGAAGTTGGTGGAGAGACACAGAGCTCGGAGAAAAGATGAGCTTTGCAAGAGACCAACTGATGGAAAACTTCTATTGGACAGTAGGCATTGGATTTCATTCTGAGCTTTCATATTTTAGAAGAATGGGCACAAAGATTGTGGCATTGATTACAATGATTGATGATGTTTATGATGTCTATGGCACATTGAATGAACTCAAACTCTTTACAAATGCAATAGAGAGGTAAGTTTAATCAATGATTAAAAGAAAAAGTTATATTAAAAGATTGTAATTAAACTCAAACTTATTCTTATCAATATGCATCGTAGTTTTTTTGCCACCCTCAAACATTTGTTATATATGTTGAAATTGTTTGAAAATAGAATTGATATCTAATTCTCTCTTTTTAATTAATGGTAATTTTAGGTGGGATATTGGAGCAATGGACCAACTTCCTGAGTACTTGAAACAATGTTTTCTTACTCTCTACAATTCAATAAATGAGATAGCTTATGAAGCACTAATCAACCATGGAGTTGATGTCATGCAATACCTTAAGAAAGTGGTATGGACTTGTAATAAAAATTTCAAATTTTCGAATAAACTAAACTTTTTTTATATTGATTATTCCCCAACTTCATAAACATGTAAATTTTATATATGTGGTGCAGTGGACAGATTTGTGCAGATCTTATTTAATAGAGTCAAATTGGTATCACAGTGGCTATAAACCAACATTGGAAGAATATATAAACAATGCATGGATATCAGTAGCAGGACCAATTATGTTAGTTCATTCATATATTTTTGTATCATCTCAAATATCAAAGCCAGAATTGGAGAGATTGACAAAATATGAAGATACAATTCGTTGGTCATCGACAATTATGCGACTTGCAAATGACCTATTAACACCATTGGTAAGTGAAGAACAACATTTCATTTTGACAAATATATAATATAAAGTTGACTAACTTTATGTTATGATATTTCATGATTTAGGATGAACAAAACATTGGCGATGTTCCAAAATCAATTCAATGCTACATGAATGAAACAGGCACTTCAGAGAAAAATGCTCGTGTTTATATAAAACATATGGTGGATGAGTTATGGAAGAAGTTAAATGAATGTGATGATGAGAAACTTGTGTCCTCACAACACTTCGTCAAGATGTCTAAGAATCTGGCACGAATATCTCAATGTATGTATCAATATGGAGATGAAGATACGTTAGATCACAACAAGACAAAAGAAAGTGTGGTGTCTCTTCTTGTAACGCCTATTATCATTCATTAATATAACTAACCATTTAATTTATTGGATTAATTGTAATGCTTAGAGTTAAGGTGTGGGGGACATGAATGAACTAATATCACATCAAAATGAGATGAATCCTAAGGACATGAAAGTATAGTTAAGAAAGACTTTAAAAAAAAGAAAAAATTTACTACCTATACCAGCAAGATGTACCTTCATTTTCGGTGACTCAATCATAAGAACCCCAAAAGTTAAGAGTATTTTTTGGAACAATTTTCACTATTGAAGCCTTCAAAAATAGGCAAGAATGATGTAGTCAGGTCACAGGAGAATGTTGAGGCTGTTAAGATGATCATGATTAGAATATTGAATTTGAACCAAGAAAGAAGGAAAGAAAAGCTAATAAAACTAATTATTTTTTAAGATTTCATAACTAATATGATAGAAGGTGGGCCATAAACTTTTTAAGTAGATGCATCACTTCCTCCTGCATACTTAGCTTATATTGAATGAAATTATCAATAATGAGTCAGAATTCATTTTACAAAACAATACCTGAGAATCAGTTGATTTTCTTCATGGAAGTAAACCAATCTAAGGTAAATGGTTTTTTAAAAGAAAACTAAAGATTGATGGCGCAATTGATGAAAATAAAGGTCGCTAAGTTGCTAAAGGCTTTGATACTCAATCTCCAGTGACAAGGATTATCTATTCATAAGGATGTTAATTGCAATAGCTTTGCAAATCTTGCAAATACACCAAAAAAATGTGAAGAAAAAATACATATTTAAATATATAGATTTACAATCGAATGGATTTCATCACCCAAATTCAGATAAAATAATTTAAACTGAATCACACACCAAGAACTAGTTTAGTAGTACATCTGGATCGAACATAGGGAACACGTAAATTTATCAAGCAAATGGTTTCCAACTTGAGGTAACTGATGAGGGAAAATGGAAGAAATAGTAAATTTAAGTGAATTCAATACTAAAAGAACCTAACTTGGGTTAAATGGAATTCCCTATTCAATGTATTCAATCATGCGTTTCTCATTACTAAATTCCAAAGGTTGCTTTCATCTAATCAAATCAATTGGAGAAACCAATAACTTTGTCATAAGTAACTAATTGATATCAATCGAATCGATGAGAAACATACAAAATCCAAATTTATATCAATGTACATTAAGGTCTAAGGCTAGTTAGGTAGAATATTTAGTTTTCAAATGCCTAACTAAATTATATTAATGCAAATTCAATTCTAGATTTTAGATACATCAATACCTATTCAATTAATTAGCAAGAAACTTTAACCTAATGCTTCAACAAAGTTGTAATCAAGCAATTCCCAAGCATCCGAAAGCAAGAAATGAATCCATTCAAAACAAAATTGAATTAACAACCAAGACAAAATCTAGTTCAAAAATCACAAATACATCGAAATAGGAGAAATCCTAAACAACCCAAGGTAGAAACGTGTATCTTAGCCTCTCATCCACATGTCAAATAATGAGGTAGAGTTAGAAAACTTAAACTGATTGAAAGAGCATAGAAAATAGAGAGAAAATTTATTAGAAACAACTGTGCCTAGAAAATAGAAAGAAAATTTATTAGAAACAGTTGAAATCGGTGGTCTTTTAAACCTAGCGGTGGACAACATTATTTAAAAGAAACGTAACAATGTCGCAAACCCCAGGATTCGAATACTTCTTTCTTAGAAAAATTCTTAGGAGGTCACCCAACATAGAATTATTCCAAGCTAAGTACATTTAATTTTTGAGTTCTTATGATTGAGCCACAAAAAAGGAAAGTGTACCTTGTTGGTATAAGTAGTAACTTTCAATTATTTTAAGTCTTTTAACCTTACTGTCATGTTCTTAGAATCCCTCTCATTCAGATGTGATATTGTTAATTCATGTTCCCCTCCTAAACTCAGGGCGTTATATTAAGGCAGCGTTGCAATGTTGTGCGCTTTTCGTGAGTAAGGCAACTATTCCTTTACAGGGTCGCACGTAGTGTCATGAGGCGCCATGACGCTGCAAGGTAGAACCTATTTGGGCTTTTTCTTCATGTTTTACCTCGGTTGATGCCTCTTGACTTCATTTTTGCTCATTTTAGCTCCAAATTAAAATAACATCAACACCAAATTGATCCTTGAATTGCTTGAAATCTACAAAATAACCAAATAGAAACATAAAATCATGAAACGTTCCCGAATTAAGAGGGATTAGATAACACATTTTCGATACTATCAATTTAAATGAGAAAATTTATATGGAAGTGGAATAACCTAAAAGAGTTTGTTGTTAAAAAACTTGAAGATACAATTTATTAACTTATCAAGCCTCTTTATGTGTTGCCATATATTTTTACCTTATTTTACCTTATTTACAATATTAATAATTAATAATAAAATTTTAAATTAAATAGTTAAGGTAACATAATATACTATTTCTAAATGTACTAGTAAAAAATTTTCAAATATAACAATAAAACTTATTTCAATGGTTGAGCAAACTTTTTGTCATTTTTTTATATTTGTAAATAAGCTAGAGTCTGTTTGATTCACCACTAGATTTTTTTAATGTTTTCAGATTCACTGATTTGTGTGATTGTTTGTTTGGTAGCCAACTTGAATTTTGTTTCTTTGAGGTTTGTTTTTGGATTATGTGATTCAAACAATGTAGGATCTGTTTGATAGATAATCCATATTTTGTTTTATGTTTCTAGATTCATTAAGTTCAACAAAATATGTGCTTGACAGACAACTTTAATTCTGTTTTCAAAAACTGTTTTTGGACTCTATGATACAAACAATGCAAATTTTGAAAAAAACTTTTTTATGTTTCATTGTAGGTAGAATTTGAATCTTACATTTTAAAAAGCATAATTGTATTAAATACATATAAAAACATTTAGAAATACAATATTCCATGTTATAAACTAAATTCATTTTTTTAATATAATATGTATTATGTAATGTATTACAAAATAATAACTTTATAAATTTGTAGGTTAAATTACGAATTTGGTCACCATAGTTTTAAAAAAGATAGAATTTAGTCTCAATGGTTTACCATTAGAATTTAGTCTCTTTAGTTTAAAAAAAATGATAGAAAATAGTCACGTTCATAGGGACTATTTAATTACGAAGGTTTTTCAAATTATCAAACTATAAACTAAAGTCTAACTTTTTCAAGAACTAAATTTGCAATTAACCAATTTTTTAAACATAAATTATATTCATAAATAAATTAATAATACTTTATTATCAACTAAATTTTAGTGAATAGATAAGACTAATTTTATGATTTATAAATATATAGTATAAACACATTTAAACAATTTTTTAAATTGGAATCTAATTTTTTAATCTACTACCAAACACATATCTGAAAACACAAAATAATACGACTATGTTTTTATTGAATCATCTTTTTCAAATTCTATTTTAGATTGTTTACCAACCGGACCTATGAATTTTAAAAACAACATTTTTATGTTTTCAGTACCTAAAATTTGAATTTTAAAATTAAAAATGCAGAATTATATTACATAAAATAAAAACATTTAGAAATATAGAATTTCATGTTATAAACTAAACTCAATTTTTAAGGAATTAAAATATTCATTATGTAATGTATTATAAAGGGGCATTTTCAAAATAAGAAAATATTGAAACTATTAACAAAATATAGCAAAATTCATTAAATCCCTAAAACTCATTTAAATTTTTTTTTTTGCTATATTTTGTATATATATATATATATATTTTGCTATCTATAATAATCCCACTATTATTAAAAATTATGTTAAATTTTTACAAATTTGGTCTCTATGGTTCCGATAAAATTAAAAGTTAATCCATATATTTTAAATTTAGATTTTAGTTTCTATGGTTTAATATAGCGTCATATATAGTCCCTATGGTTGTTAAATAGACAATTGCAAATATAATAATTAGAATAAAAATATTAGCATATATTGCATTTTAAAATTTTGCAAACATAACAAAGTCTATCAACGATACACTTCTATCATCTATCGCGCTAATAGACCCTTATGGTCTATAAGTAATAAACCATATCATCGATAAACTTTGCTATATTTATAATTATCACACACTTAATTATTATTCCTAAAATTGTTATCAATTACAATTACCTGTTGTTAAATTATCCTAAATTGTTCGGGCCTATTTATGAAGCTTTTATCAACCCACAGGGGTAAATTCCAATTAGCCATAATACCTAAATTTTAACTTCTTTCAAAACTATAGAAACAAAAGATTCATATAAATTATATAATACTACAAAATAATAAATTTACAATTTTTTTAATAATACAAGGCAGATATCTAAAAACACGAAATACAATTTTTAGCTATTTTGCTAAATATGAAAACAATGAATTGGGGAAAAAACTTAATATCAAACATGACACGAGAATAAATTAGGTTTGATTAGAAAAGAATAAGAAATAAATTGGAATTCGAGTGTAGAGAATCCATCTTTTCTTTTTTTTTTTTTTTTTAATTTAGAAAATTATTGTATAAAAGGAAACAATATTTTTAAGGAAAATTACATTAGATAACGAAATTTTCTAGAAAAAAACCATTCACAACATCTCTTTTTTGCATATTATAATATGAACAAGTAATTAGATATATCAGACGACTATCAGAGAGATATACACATTTAAATTGTTACTTTTGTAATTTATAAATGCAGTAAGATGAATCCTATTATCGCTATTTTTGCGTCCCTATTTTTAAATATAATAAAACAAATCAAAATTTATAAATATACTAAAATATCACTATTTATTATTGATAGACAACGAGAGAATTGTTTGTTTAGTATTGATAAGATTTTATTATATTTATAAATACTTTTCACGATTTTGGTAATTTAAATAATTATGTGTTTTTGTTTTCTAGAAATGTGAGTAAAAAGGAAAACTAATTTAATGGAAAAGAAAAAGTTAAAGCCCTAACTAATCTCATCCATTTCTTTCTCTTCTTCTCTCCTACGGTTCCTGGTAAACTCCACCCGTAGTCCTCTGTTGGCCGGACGAGCTTTAACCACGAACGGCGCCGGCAACAGCAGCGACGGCTACAAGCAGCTTCCGGCGGCGGATGCACAGCAGCCTCCTCGGCGATTGCCACCTTCGAGGTACCCACGCCACTGGTTTCCAGAGAAGCCACGGCGTTTGACGATTTCAGCGACTTGGTATCAGCAACCCAAGGTTTGACATTTACCCACTCTTTGTAGGCATAGATTTGAGTTACCCACTTCTTAACAGGTCCAAATATGTAGGATTAAGCGTAGTTGGACATGTTCTAGTAAGGATTCAAGTGCATTTGGATAAGATTTAGTGTGTAAAACACTGAATTTCATTGAAGACCCAAGCCTTTTTTTTTTTTTTTTGGTAAGATTTAGGTGGTAAAAACTAATTGGACCTTTTTGAACGGAAAATCTCTATTTGCAGTACGAAATTGTTTCAAAATGTATCACAAAGGCTTCTGGTTGTTTTGGGTTAGAACATCTCTTCCGAACATCCTTTAGAACTCTAAATAAGGTTTTGGTCTGAGTTTTGACCTTAGAGCCTTGGTCCTATTGTTTAGGGGCCTTCCGGATTGCTTTAGGAGCACTTTATTTAAGTGAAATTCTATTCGATGGTTCTGTTTTCTCATTGATAGATGAGTGCTTTACTTGTGTTATATCTGTTTTCTATGTTGTAAATGCTTTATGTTCTTGAATTATGTGTTTTTGGCATTTAAGCATGTTCTAATTTCGCATTAACATTCATGTTGATGTGCTATTATCTGACGCTGTTAATGATTGAGTATAACCTGTTGCTATGCATATGATTTATGGTAAGAGCATTTTATGATATATAATTAAATTACCTTCACTCATCAGCCTAAGCTTTTGGGTTGAATTGGTGATTTAAGATGATATCAGAGCAAGGGTCTAGGGAGTTCCTGTGTTCAAGTCCATGCGTTGTTTTCTCCCCATTTAATGTTCATTTTCTCTTGTTGGGCCTTCTTCATATTTCGAGCTCACAAGTGAGGGAGAGTTTTATGATATATAATTAAATTTACCTTCACCCATCATCAGCTTTATATGATTTTGACTTGGTGTATTGCTTAGAAAAGCATCCATTCTGATGAGTTTGCATGAGAAAAATGTTAGTTCCTTGTGTATTTATGAAGGAAAGGTGGGTGAACATAATTTTTCTTGAATAAAAATGATTGAGGGGTTGCATGTTCAATTTTACTGTTGGATTTAGAGGAGCATCAATGCTTTGGATAAAAGTGGCCAAGGATTGGTGTGATGAGTCTAGAATGAGTATGTAGGCTAGTCATCAAATGTCTTAAATAAAAATGATCTAGAGGTGATGCAGAGTTTAAGGACTTGGATAAAAATGGTCAAGGGTAAAACATTGAGCTTTGTAGAGAACTTTGAAGTCCGGAATAAAAAGGGTGAAGGGCAAACATATCTTGAAGGAATCAGTCTCAAGTAGTCTTAGTGCGTACTAATATGAATGTTGAGTGAGCTCTTCAAGCTTAAATAGAGAGTGTGCATTACATGATATGCTGATTTGTGTGTTAGCATGTTATAGCTGTTGTTTATTTTTCATATAAACGAGCATGTATAAGTGTTGTGGATAACATGATGTGTAGATAAGTTACCAATTATCTTGTTGATGGTTGATTCTCACACCTGCAATTGTTGAACTCAAAAAGGCATTGTTGAGTTTAGAAAGAAAAATAGAAATTGACAACATAAAGGGCATCTTTGTAAGTTGTTCGTTTAAAGGCCCCTCTTGCAAATGTTGCATGTCAATAATTTGTGCATGGTAGCTTTCAACTTGCGATGAAATTGGGATGTTTTTGGACCCAAACGGAAACTACTCTCCTTGTCAAATTGGTGGGCCCATTGAATTTTAGATTTTCATTCATTTCCCTTTGTATCGATTTGTAGTTTAGTCACTGTACTTCCATTTTTTTGACAGAGTTAATTCCTGGTTTAAGACCATAGAATTCTAGATTTTGATGTCGTTTCCCCTCGTTATTGGCTATATTTTGTAGTTTAGTCACTGTAATTCCATTTTTCCAGCCATGCCAATTGGTGAGCTCGATTTTCATCTCAGTCTCCGACCGCAGTGGTGGATTCTACTACGAATAACGATGAGACATGGCTCTGGGGGCAGATCAAAGCGGAGGCACGGCAAGATGCCGAGTCAGAGCCAGCACTGGCTAGCTATCTTTACTCGACGATTTTGTCGCATTCATCGCTCGAGAGATCACTTTCGTTTCATTTGGGAAACAAACTTTGCTCTTCCACGCTTCTTTCCACTCTCCTTTACGATCTTTTCCTCAACGCTTTCTCCACTGATTATGGTCTACGATCAGCCGCTGTCGCTGATTTGCGAGCGGCTCGTGAACGGGACCCAGCCTGTGTTTCATTTTCACATTGCCTCCTCAATTACAAAGGATTCTTAGCCTGCCAGGTGAGAAATAGCACATTTCAATTTCCTTTTGAATTTGGTGAAATGACTTTTCTGTAAGTTGAATTATTGGGATTTAACCTATTTTGCCTTGAAACAGAGGTTCTTAGGGTTCATTTTGATGATTTGAAAATTGAGGTGTTCTTAGATTTGATCAGTCTGTTCATTGTTCTATTTATTCTTCAAAGATTGTGATTTATGAGTTGACTGGGGACTACTTTTCCACATTTAAAGCAGAAGGCAGAAATAAAATGACGATATATGAAATAAAGAACAAGGGCTTCCTTTTCACATGATGATTCTTTATTAGATATATATTCATATCTTAGGAAAAGTTACTAAATTTCAAAAAGATCTTTTATGTTTAATTGCTTTATGAAGTTCAAAGACAGCTTTGTGTTTCTTTTGTTTTGAATATTTTATGCACTATCCTTATACAGCAAGTCATTTCTCTTTTAGGCTCATCGTGTGGCTCACAAGCTGTGGAATCAATCACGTAGGCCGCTAGCACTAGCACTTCAATCACGCATTGCTGATGTCTTCGCCGTTGACATTCATCCTGCAGCACGAATTGGGAAAGGTATTCTGTTTGATCATGCTACTGGTGTAGTGGTTGGTGAGACGGCAGTGATAGGCAACAATGTCTCAATTCTTCATCATGTCACTCTTGGAGGGACAGGAAAGATGTGTGGAGACAGGCATCCAAAGATTGGGGATGGTGTCTTAATTGGCGCTGGAGCAACCATTCTCGGCAATGTGAAGATTGGAGAAGGAGCTAAAATTGGGGCAGGATCTGTGGTGCTCATTGATGTGCCACCACGAACAACTGCCGTGGGAAATCCCGCAAGGCTGGTGGGGGGGAAGGAGAAACCATCGCAGCTCGAGGATATTCCTGGAGAATCCATGGATCATACTTCTTTCATATCCGAATGGTCAGATTACATAATTTGA ATGCTCTCAATGGCTCTTCTCCACCTCCCTCTTTCTTCTACATTCTCTTTTCATGGAGCTGCCCTACCATCTACAAACTATCAACCTTCTTCTACTATGTTAAAATGTGTTGTGATTGAACGTGGAATGTGCATAAAAGCATCGATACAAAGTGGTGATGTTATTGTGAGGCAATGTGCAAATTACAATCCTCCTTTGTGGAAAGATGATTTTATTCAATCATTACATAATGAATTCAGGGGAGAAACATATCGAAGACGATTTAGTCAATTAAAAGGACAAGTTCAAACATTGCTTAAAGAAGAAAGAGACTCTTTGGAGCAACTCGAACTCATTGATGCCTTACAAAAGCTTGGAATATCATACCACTTTGAGAGTGAAATTAAAGATGTACTAGAAAGAATAGGCAACAAGTTTTATAAAGAGGGGAATAAGAAGAATAGTCTCTATGCAACATCTCTTGAATTTCGACTTCTAAGACAACGTCAACTTGATATTTCTGAAGATGTTTTCAATGCCTTCAAAGATGAGATGGGGAATTTCAAAACATGCTTTTATGAAGATATAAATGGAATGCTATCTTTATATGAAGCTTCATTCTTATCAACTAAAGGGGAGACTATTTTAGAGGAAGCAAAATACTTTGCAATAAAATATCTAAATGAATACATCAAATCAAGCAAAGATGAACTCAAAGTAGAGATTGTAAAGAATGCCTTGAAGCTTCCTTTACATTGGAGAATAGAAAAATTGGAGGCAAGATGGAGTATTGATATATATGAGAGAATAGGAACCCTAAATCCTATTCTTCTTGAATTTGCTAAGCTTGATTTCAACATGGTGCAATCTATTTACCAAGAAGATCTTAAATATGCATCAAGTTGGTGGAGAGACACAGAGCTCGGAGAAAAGATGAGCTTTGCAAGAGACCAACTGATGGAAAACTTCTATTGGACAGTAGGCATTGGATTTCATTCTGAGCTTTCATATTTTAGAAGAATGGGCACAAAGATTGTGGCATTGATTACAATGATTGATGATGTTTATGATGTCTATGGCACATTGAATGAACTCAAACTCTTTACAAATGCAATAGAGAGCTTTAACCACGAACGGCGCCGGCAACAGCAGCGACGGCTACAAGCAGCTTCCGGCGGCGGATGCACAGCAGCCTCCTCGGCGATTGCCACCTTCGAGGTACCCACGCCACTGGTTTCCAGAGAAGCCACGGCGTTTGACGATTTCAGCGACTTGGTATCAGCAACCCAAGCTCGATTTTCATCTCAGTCTCCGACCGCAGTGGTGGATTCTACTACGAATAACGATGAGACATGGCTCTGGGGGCAGATCAAAGCGGAGGCACGGCAAGATGCCGAGTCAGAGCCAGCACTGGCTAGCTATCTTTACTCGACGATTTTGTCGCATTCATCGCTCGAGAGATCACTTTCGTTTCATTTGGGAAACAAACTTTGCTCTTCCACGCTTCTTTCCACTCTCCTTTACGATCTTTTCCTCAACGCTTTCTCCACTGATTATGGTCTACGATCAGCCGCTGTCGCTGATTTGCGAGCGGCTCGTGAACGGGACCCAGCCTGTGTTTCATTTTCACATTGCCTCCTCAATTACAAAGGATTCTTAGCCTGCCAGGCTCATCGTGTGGCTCACAAGCTGTGGAATCAATCACGTAGGCCGCTAGCACTAGCACTTCAATCACGCATTGCTGATGTCTTCGCCGTTGACATTCATCCTGCAGCACGAATTGGGAAAGGTATTCTGTTTGATCATGCTACTGGTGTAGTGGTTGGTGAGACGGCAGTGATAGGCAACAATGTCTCAATTCTTCATCATGTCACTCTTGGAGGGACAGGAAAGATGTGTGGAGACAGGCATCCAAAGATTGGGGATGGTGTCTTAATTGGCGCTGGAGCAACCATTCTCGGCAATGTGAAGATTGGAGAAGGAGCTAAAATTGGGGCAGGATCTGTGGTGCTCATTGATGTGCCACCACGAACAACTGCCGTGGGAAATCCCGCAAGGCTGGTGGGGGGGAAGGAGAAACCATCGCAGCTCGAGGATATTCCTGGAGAATCCATGGATCATACTTCTTTCATATCCGAATGGTCAGATTACATAATTTGA ATGCTCTCAATGGCTCTTCTCCACCTCCCTCTTTCTTCTACATTCTCTTTTCATGGAGCTGCCCTACCATCTACAAACTATCAACCTTCTTCTACTATGTTAAAATGTGTTGTGATTGAACGTGGAATGTGCATAAAAGCATCGATACAAAGTGGTGATGTTATTGTGAGGCAATGTGCAAATTACAATCCTCCTTTGTGGAAAGATGATTTTATTCAATCATTACATAATGAATTCAGGGGAGAAACATATCGAAGACGATTTAGTCAATTAAAAGGACAAGTTCAAACATTGCTTAAAGAAGAAAGAGACTCTTTGGAGCAACTCGAACTCATTGATGCCTTACAAAAGCTTGGAATATCATACCACTTTGAGAGTGAAATTAAAGATGTACTAGAAAGAATAGGCAACAAGTTTTATAAAGAGGGGAATAAGAAGAATAGTCTCTATGCAACATCTCTTGAATTTCGACTTCTAAGACAACGTCAACTTGATATTTCTGAAGATGTTTTCAATGCCTTCAAAGATGAGATGGGGAATTTCAAAACATGCTTTTATGAAGATATAAATGGAATGCTATCTTTATATGAAGCTTCATTCTTATCAACTAAAGGGGAGACTATTTTAGAGGAAGCAAAATACTTTGCAATAAAATATCTAAATGAATACATCAAATCAAGCAAAGATGAACTCAAAGTAGAGATTGTAAAGAATGCCTTGAAGCTTCCTTTACATTGGAGAATAGAAAAATTGGAGGCAAGATGGAGTATTGATATATATGAGAGAATAGGAACCCTAAATCCTATTCTTCTTGAATTTGCTAAGCTTGATTTCAACATGGTGCAATCTATTTACCAAGAAGATCTTAAATATGCATCAAGTTGGTGGAGAGACACAGAGCTCGGAGAAAAGATGAGCTTTGCAAGAGACCAACTGATGGAAAACTTCTATTGGACAGTAGGCATTGGATTTCATTCTGAGCTTTCATATTTTAGAAGAATGGGCACAAAGATTGTGGCATTGATTACAATGATTGATGATGTTTATGATGTCTATGGCACATTGAATGAACTCAAACTCTTTACAAATGCAATAGAGAGCTTTAACCACGAACGGCGCCGGCAACAGCAGCGACGGCTACAAGCAGCTTCCGGCGGCGGATGCACAGCAGCCTCCTCGGCGATTGCCACCTTCGAGGTACCCACGCCACTGGTTTCCAGAGAAGCCACGGCGTTTGACGATTTCAGCGACTTGGTATCAGCAACCCAAGCTCGATTTTCATCTCAGTCTCCGACCGCAGTGGTGGATTCTACTACGAATAACGATGAGACATGGCTCTGGGGGCAGATCAAAGCGGAGGCACGGCAAGATGCCGAGTCAGAGCCAGCACTGGCTAGCTATCTTTACTCGACGATTTTGTCGCATTCATCGCTCGAGAGATCACTTTCGTTTCATTTGGGAAACAAACTTTGCTCTTCCACGCTTCTTTCCACTCTCCTTTACGATCTTTTCCTCAACGCTTTCTCCACTGATTATGGTCTACGATCAGCCGCTGTCGCTGATTTGCGAGCGGCTCGTGAACGGGACCCAGCCTGTGTTTCATTTTCACATTGCCTCCTCAATTACAAAGGATTCTTAGCCTGCCAGGCTCATCGTGTGGCTCACAAGCTGTGGAATCAATCACGTAGGCCGCTAGCACTAGCACTTCAATCACGCATTGCTGATGTCTTCGCCGTTGACATTCATCCTGCAGCACGAATTGGGAAAGGTATTCTGTTTGATCATGCTACTGGTGTAGTGGTTGGTGAGACGGCAGTGATAGGCAACAATGTCTCAATTCTTCATCATGTCACTCTTGGAGGGACAGGAAAGATGTGTGGAGACAGGCATCCAAAGATTGGGGATGGTGTCTTAATTGGCGCTGGAGCAACCATTCTCGGCAATGTGAAGATTGGAGAAGGAGCTAAAATTGGGGCAGGATCTGTGGTGCTCATTGATGTGCCACCACGAACAACTGCCGTGGGAAATCCCGCAAGGCTGGTGGGGGGGAAGGAGAAACCATCGCAGCTCGAGGATATTCCTGGAGAATCCATGGATCATACTTCTTTCATATCCGAATGGTCAGATTACATAATTTGA MLSMALLHLPLSSTFSFHGAALPSTNYQPSSTMLKCVVIERGMCIKASIQSGDVIVRQCANYNPPLWKDDFIQSLHNEFRGETYRRRFSQLKGQVQTLLKEERDSLEQLELIDALQKLGISYHFESEIKDVLERIGNKFYKEGNKKNSLYATSLEFRLLRQRQLDISEDVFNAFKDEMGNFKTCFYEDINGMLSLYEASFLSTKGETILEEAKYFAIKYLNEYIKSSKDELKVEIVKNALKLPLHWRIEKLEARWSIDIYERIGTLNPILLEFAKLDFNMVQSIYQEDLKYASSWWRDTELGEKMSFARDQLMENFYWTVGIGFHSELSYFRRMGTKIVALITMIDDVYDVYGTLNELKLFTNAIESFNHERRRQQQRRLQAASGGGCTAASSAIATFEVPTPLVSREATAFDDFSDLVSATQARFSSQSPTAVVDSTTNNDETWLWGQIKAEARQDAESEPALASYLYSTILSHSSLERSLSFHLGNKLCSSTLLSTLLYDLFLNAFSTDYGLRSAAVADLRAARERDPACVSFSHCLLNYKGFLACQAHRVAHKLWNQSRRPLALALQSRIADVFAVDIHPAARIGKGILFDHATGVVVGETAVIGNNVSILHHVTLGGTGKMCGDRHPKIGDGVLIGAGATILGNVKIGEGAKIGAGSVVLIDVPPRTTAVGNPARLVGGKEKPSQLEDIPGESMDHTSFISEWSDYII Homology
BLAST of PI0016066 vs. ExPASy Swiss-Prot
Match: Q42538 (Serine acetyltransferase 5 OS=Arabidopsis thaliana OX=3702 GN=SAT5 PE=1 SV=1) HSP 1 Score: 464.9 bits (1195), Expect = 1.6e-129 Identity = 241/296 (81.42%), Postives = 261/296 (88.18%), Query Frame = 0
BLAST of PI0016066 vs. ExPASy Swiss-Prot
Match: Q8W0E4 (Probable serine acetyltransferase 1 OS=Oryza sativa subsp. japonica OX=39947 GN=SAT1 PE=2 SV=1) HSP 1 Score: 424.9 bits (1091), Expect = 1.8e-117 Identity = 214/271 (78.97%), Postives = 240/271 (88.56%), Query Frame = 0
BLAST of PI0016066 vs. ExPASy Swiss-Prot
Match: Q0DGG8 (Probable serine acetyltransferase 5 OS=Oryza sativa subsp. japonica OX=39947 GN=SAT5 PE=2 SV=2) HSP 1 Score: 424.1 bits (1089), Expect = 3.1e-117 Identity = 214/275 (77.82%), Postives = 241/275 (87.64%), Query Frame = 0
BLAST of PI0016066 vs. ExPASy Swiss-Prot
Match: B9T536 (Terpene synthase 10 OS=Ricinus communis OX=3988 GN=TPS10 PE=2 SV=1) HSP 1 Score: 364.0 bits (933), Expect = 3.9e-99 Identity = 175/322 (54.35%), Postives = 238/322 (73.91%), Query Frame = 0
BLAST of PI0016066 vs. ExPASy Swiss-Prot
Match: Q6PWU2 ((-)-alpha-terpineol synthase OS=Vitis vinifera OX=29760 PE=1 SV=1) HSP 1 Score: 362.8 bits (930), Expect = 8.6e-99 Identity = 177/336 (52.68%), Postives = 250/336 (74.40%), Query Frame = 0
BLAST of PI0016066 vs. ExPASy TrEMBL
Match: A0A0A0LM54 (Serine O-acetyltransferase OS=Cucumis sativus OX=3659 GN=Csa_2G298310 PE=3 SV=1) HSP 1 Score: 1264.2 bits (3270), Expect = 0.0e+00 Identity = 651/718 (90.67%), Postives = 671/718 (93.45%), Query Frame = 0
BLAST of PI0016066 vs. ExPASy TrEMBL
Match: A0A5D3BVK8 (Terpene synthase 10-like OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold680G001090 PE=4 SV=1) HSP 1 Score: 580.9 bits (1496), Expect = 7.4e-162 Identity = 293/329 (89.06%), Postives = 306/329 (93.01%), Query Frame = 0
BLAST of PI0016066 vs. ExPASy TrEMBL
Match: A0A1S3CQN4 (Serine O-acetyltransferase OS=Cucumis melo OX=3656 GN=LOC103503685 PE=3 SV=1) HSP 1 Score: 562.0 bits (1447), Expect = 3.6e-156 Identity = 285/290 (98.28%), Postives = 287/290 (98.97%), Query Frame = 0
BLAST of PI0016066 vs. ExPASy TrEMBL
Match: A0A5D3E6Q4 (Serine O-acetyltransferase OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold455G005980 PE=3 SV=1) HSP 1 Score: 562.0 bits (1447), Expect = 3.6e-156 Identity = 285/290 (98.28%), Postives = 287/290 (98.97%), Query Frame = 0
BLAST of PI0016066 vs. ExPASy TrEMBL
Match: Q39533 (Serine O-acetyltransferase OS=Citrullus lanatus OX=3654 GN=Sat PE=2 SV=1) HSP 1 Score: 553.5 bits (1425), Expect = 1.3e-153 Identity = 281/290 (96.90%), Postives = 285/290 (98.28%), Query Frame = 0
BLAST of PI0016066 vs. NCBI nr
Match: XP_004148472.3 (terpene synthase 10 isoform X1 [Cucumis sativus] >KAE8651964.1 hypothetical protein Csa_006262 [Cucumis sativus]) HSP 1 Score: 652.1 bits (1681), Expect = 5.4e-183 Identity = 326/368 (88.59%), Postives = 346/368 (94.02%), Query Frame = 0
BLAST of PI0016066 vs. NCBI nr
Match: XP_038901091.1 (terpene synthase 10-like isoform X1 [Benincasa hispida]) HSP 1 Score: 593.2 bits (1528), Expect = 3.0e-165 Identity = 297/371 (80.05%), Postives = 326/371 (87.87%), Query Frame = 0
BLAST of PI0016066 vs. NCBI nr
Match: XP_031736437.1 (terpene synthase 10 isoform X2 [Cucumis sativus]) HSP 1 Score: 581.6 bits (1498), Expect = 9.0e-162 Identity = 299/368 (81.25%), Postives = 319/368 (86.68%), Query Frame = 0
BLAST of PI0016066 vs. NCBI nr
Match: KAA0045530.1 (terpene synthase 10-like [Cucumis melo var. makuwa] >TYK02119.1 terpene synthase 10-like [Cucumis melo var. makuwa]) HSP 1 Score: 580.9 bits (1496), Expect = 1.5e-161 Identity = 293/329 (89.06%), Postives = 306/329 (93.01%), Query Frame = 0
BLAST of PI0016066 vs. NCBI nr
Match: XP_011649387.1 (serine acetyltransferase 5 isoform X1 [Cucumis sativus] >XP_011649388.1 serine acetyltransferase 5 isoform X1 [Cucumis sativus]) HSP 1 Score: 564.3 bits (1453), Expect = 1.5e-156 Identity = 286/290 (98.62%), Postives = 288/290 (99.31%), Query Frame = 0
BLAST of PI0016066 vs. TAIR 10
Match: AT5G56760.1 (serine acetyltransferase 1;1 ) HSP 1 Score: 464.9 bits (1195), Expect = 1.1e-130 Identity = 241/296 (81.42%), Postives = 261/296 (88.18%), Query Frame = 0
BLAST of PI0016066 vs. TAIR 10
Match: AT3G13110.1 (serine acetyltransferase 2;2 ) HSP 1 Score: 337.8 bits (865), Expect = 2.1e-92 Identity = 164/267 (61.42%), Postives = 206/267 (77.15%), Query Frame = 0
BLAST of PI0016066 vs. TAIR 10
Match: AT1G55920.1 (serine acetyltransferase 2;1 ) HSP 1 Score: 331.3 bits (848), Expect = 2.0e-90 Identity = 163/278 (58.63%), Postives = 212/278 (76.26%), Query Frame = 0
BLAST of PI0016066 vs. TAIR 10
Match: AT4G35640.1 (serine acetyltransferase 3;2 ) HSP 1 Score: 294.3 bits (752), Expect = 2.7e-79 Identity = 151/262 (57.63%), Postives = 196/262 (74.81%), Query Frame = 0
BLAST of PI0016066 vs. TAIR 10
Match: AT2G17640.1 (Trimeric LpxA-like enzymes superfamily protein ) HSP 1 Score: 282.7 bits (722), Expect = 8.0e-76 Identity = 146/255 (57.25%), Postives = 188/255 (73.73%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Melon (PI 482460) 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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