MC01g1461.1 (mRNA) Bitter gourd (Dali-11) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: utr5polypeptideCDSutr3 Hold the cursor over a type above to highlight its positions in the sequence below.AAAATTTATACTTAAACCATTGAACTATAATATGGTTGCCTTGGATAGAATTATATTTATATTTTTAATGACGCAGCATGCTCCACGTCGCCCCCATTTACCACACATCAAAGCAACCTACCCCTCAACCCTCCACACGCCACACTGAGGAGTTGAGTTTGGTGGGAAAGAGACTACAAAATCAAAACGCAGCGCCAGCAGCGTCCGCACCAACAGCCCAGCCATGCGAGTCACCATATCCGCAACCACTCCCATTCTTCCTTCTCGCCCCGCCTTCCCCCAAGCCCATGCCCTCCCTCTATCTCACCTCGACACAGATCCCAATCTCCGTGTCAGTTTTCGCTACCTTCGGGCTTATGTCTCCACCAACGCCCCGCCATCTGCTTGTCCTCCTCCCGATCCCTTCCACGTCATAGCCACTGCCCTCTCCTCTGCCCTTCTCCTCTACTACCCCCTCGCCGCCACTCTCCGCCGCCGTCAACTCCACGACCACCGCCTCGAGCTATTCTGTGCTCCGGGCCAGGGCGTCCCCCTGATCCGCGCCACCGCGGACTGTAAACTTGCGTCGCTGGATTACCTCGACGATCCGGATGAAACTTTCGTCGAACAGCTTGTGCCCGATCCGGACGAGAGCGAGCGGCTGAAGCACCCTTGTATGCTACAAGTGACGGTATTCGAATGCGGCGGCTTCACTCTCGGCGCTTCCATTCACCATTCTGTGTGCGACGGACTTGGAGCGACTCAGTTTTTCAATGCCATGGCCGAGTTGGCCCGTGGGGCAAGTGCAGTGTCGATCGAGCCAGTCTGGGACAGGGCAAGTTTGTTGGGCCCGAGGAAGCCTCCCCGAATTGAGGCACCAATCGAGGAGTTTTTGAGTTTAGAACAAGGAAACTTACCATACAGTCACTCAATTGGGCCGGTGGTGAGAGAATGCTTCCCTGTTACGGACGATCGTCTGGAGAGATTCAAAAGAATGTTGTTCGAGCAGTCCGGATCTCGATTCACCACGTTTGAAGCATTGGGAGCATATATATGGCGGGCCAAGTGAGTCGAATTCTACTAATTCTGCTAAATGTTTGTGGCTGGTCTTTGTTGTCCTGACATTTGGGGCTTTTTCAGGGTGAATGCCTCAGAAATTGGAGGGCGTGAGAGAGTGAAATTCGTGTATTCAACCAACATCCGCAAAACCCTAAAGCCGCCATTGCCGGTGGGTTACTGGGGCAATGGTTGCGTCCCGATATACATTGAACTCACAGCCGAGGAGCTCAGAGAGCAACCCGTTTGGGAGACGGCGAAGCAGATCCAGAGGAGCAAAATGAACATAACGGAGGAGTATGTTCGATCGTTCATCGACTTTCAAGAGCTTCATTATGGAGATGGAATAACGGCGGGGAAGGAGGTGAGCGCGTTCACAGACTGGAGACATTTAGGGCATTCGACGGTGGATTTTGGGTGGGGAGGTCCTATTACGGTGCTGCCACTCTCTCGTTCGCTTCTTGGGAGTGTGGAGCCTTGCTTTTTCTTGCCGCATTCTTCTGCAAATTCGAGCGAGGCCGAGGCGCCGGCGGGGTTCAAGGTCTCCATCGCTTTGAGAAAGACTGCAATGCCCGCCTTCAGAGAGGAGATGAAGAAGTTCGTTGACGATGATTTTGACGGCCGCTGACATGACGTGGCTATACTTGGACTGCACGATGATTTCTAATACTATTTCTTTTTCACACTAAATTGGTTGCAGGAGTTGACCTCGGACTTCAAAAGGCTGCGTTAATGCGGCATTTCTAATACCATTCTTTTTCTTCTCTTTTTTTTTTAAAAAAGAATTAGGGCAGCCTTTGATTTTCAATATATTAGTGAAGGGAGTGAATTTTAATTTTAGACTTTTAATTTTATCACTATATATTAGAATAAGTTTTTTAATTACCTTACACTAAATAAATTAGGCCATTAATACCTTCTATTGGTTAAGTTTTTGTCTATATCAAGAAAAAAAAGTTTAGTCTTAGTTTTCATGGTAGATTCATGATTAGCTACCAGAATTCTTTGGGCGATATTAGAGTAAAATTGTTTTGTTCAAACTTCATGATAGACTATTTATTTAAAAATTAATTTTCTATGTGTTTTTTGGACAATAAATTTGCTGGATGATCCTGGTTGAGACAAAAAAAGTAGTGTTAAAATGTTTTTAATGAGTTGGATTTCATAAGATTTGAGTAACTTTATAGGGTTGACAATATTCATAATTGGGATGGGGGCATATGTTATGATTTTAAATCTCGGTATTTTCAGTGGGTATAAAAAAATATTTGTTATATTTATAAGTATAATAACAGTTTTTTTTTTTATTTTGCAAAAATGGTAACCTTTTTTAACTCAAATTTTTCCTTTTCTTTTTTTTTTTAATTTCCAACCTATAAGAGAGCAAGATATCCTGACCGTTAACTTCATGTTAAAATATTTACAATTAATTATTAATTCTTCCTCTGGATCACTGGATCATATTTGTGAGTATTCCTTTTTTAAGTTCACGGTTTGAGAAACTATAATTAGTCTATTAGAATAATCAATTCATCTACTAATTTATATTATTATCCATTTAACCAAAAATAAGTTTATAATTCCCCCCCACAATATCTCTTAAAAGAGAAAAAGAAAAAAGAAAAAAATGGAGAAGAAGTAGCTCCTCATCACTACTATAATATATATTTTACTCCAAAATAGTGGAAGATATTATTAACACACAGTGGCCATTATAGTCATTAAAAAAAATAACCTTATTCATTAGCAATGGAATATATTTTTAGAAAAATATTTTAAATATTAAAAACAATTTTAGAAACTAATAAAAAGGAAAAAAAGGTAGCGATATGACTAAGCCAGGCAGGGACAGAAGGAGAAGCAGCAGTACGCTCAGAAATTTGGAGTGAAATCTATCCTCTCTTATCCGCAACCTAACAAATCAATACAAACCATTTATTCAAGTTGGGAACGAACCACCGGCGAGTGGCAGCCATAGTTGGAGAACTCGATCATGGCATTCGCTCTCGGAGGATCTTCCTCAACTGCGATCTTAGCCTCTCGATCCCTCTCTTCTCCCACCCCCAAGCATTTCGTCCCTCTACTCTCTCTAACCCCAGGTACTCTTTTTCGCTTTTTTTGCTTATTGTCGTCTTTTAACGCGTTCATCTTTGGTTCTTTTTATTCGTCTTCTGAGGTCTAATGTTTGAAATTCCGGCGATGCGAATCTCGAGTTTCAGCAGTTTTCGTCGAATTTAGAGATGTAAGCAGTTGGTAATTTTGCAGGTCATGGTAACGGGAAGAAATCTGTTGGAAGTATTAGGATTCAGGGGAAGAAGGGAAGGCCTCAGGTCCAATGCAATGTTGCGACTGAAATAAACACTGTCGAGCAGGTTTGTCCCCCCGATTCTAGTAAGCTAGCATAAGCTAACTGTAAACTGCACTGTTAATATAAGGATCTGCTTGGATATGGAATGCTGTCCAGTTTTAGTAAAATAACCGTAAACTGGTTAGAATTGATAACATACCATTTTAAGCCTTTGCCAAACAATTTCTTGACTATTGCATTAAGTCGATGAAAATGTTTGGTAAGACCTGTACTGGTCAATGAACTTGAAGAATCTTGGTTTAGACAGTTCTTTTAGTATATCTATATGTTTCTTTAGAATAAAAAAGAAGGGAAAACTTTCTACCAGTGAAAAAATTAATGTAAAAAATGACTGGATTTGTTTTGAGATCGGATGAGTGAGAGTCATATTTGTAATATTTCAGGCCCCGAATATCTCAAAAGAAAGTCAGAGGCCTGTTTATCCATTTGCTGCTATAGTAGGGCAGGATGAGATGAAACTATGCCTTCTTCTGAACGTTATTGACCCAAAAATCGGAGGTGTCATGATCATGGGTGATAGAGGAACAGGAAAATCCACCACTGTTAGGTCCCTGGTTGATTTGCTCCCTGAAATCAAAGCTGTATTTGGGGATCCTTACAATTCTGACCCTGAGGACCCTGAATCAATGGGTATTGAAGTGAGGGAAAGCCTGGGAAAAGGAGAGAAACTTTCGGTGGTGATGACAAAGATCAATATGGTTGATCTGCCACTGGGTGCTACTGAAGATAGGGTTTGTGGGACTATTGACATTGAGAAAGCACTTACTGAAGGTGTGAAGGCATTTGAGCCAGGCCTTCTTGCTAAAGCTAACAGAGGTATTCTCTATGTGGATGAAGTAAATCTTTTGGATGATCATTTAGTTGATGTCCTACTGGATTCTGCTGCCTCTGGTTGGAACACAGTTGAGAGAGAAGGTATTTCCATTTCCCATCCTGCTCGATTCATTTTGATTGGTTCGGGAAATCCAGAAGAAGGGGAGCTTAGGCCACAGCTGCTTGATCGGTTTGGAATGCACGCTCAAGTTGGCACTGTAAGGGATGCAGAGTTGAGAGTGAAGATTGTAGAGGAGAGAGCCCGGTTTGACCAGAATCCGAAGGAGTTCCGTGAATCTTACAAGGCAGAGCAGGAGAAGTTGCAGCAACAAATTTCCTCAGCTAGAAGCTCGCTTTCTTCTGTGCAGATAGATCATGATCTGAAGGTGAAAATCTCCAAGGTTTGTGCCGAGTTGAACGTTGATGGATTGAGAGGAGACATAGTGACGAATAGAGCTGCAAAGGCTCTTGCAGCGCTAAAGGGAAGGGATAAAGTAGCTGCTGAGGACATAGCCACCGTCATTCCAAACTGCTTAAGACATCGTCTTAGGAAAGATCCATTAGAGTCCATTGATTCTGGTTTACTTGTCATTGAGAAATTTTATGAGGTATTTAGCTGAGAAAGGCAATACAAATGGCCTTATCATTGCAACTCCTTTTGTAAGTTGTAACAAATTGATACCGTCGTGCTTTTTGTAGTGTTTCCATTTTCTATTTATATGAGCAGAATTTTAAAGATTTTCAATGCACATGTAGTTCATACATTTGTGTATGGAGAGTACCATGATCACTGCTGTAATAAGGTCAGAAAAACGACCGTCATTGTCTATGCAATGCATACAAGAAATAGTCAAGGTGAAGAATATATTTACATTGAAAGAGTAGTACGTATGATACCGAAGTTTTAACAGCACAAGCAGTCGGTTTATTCATTATAATACTTTTGTTTAAAATTTTACTACTAATCAAATAAGCCTCTGTAGCCAACGTCAATACAGAACTTTGGAAATATACACAATGGTGAAGAAATATTATCATCTAAAAATGAGTTCTGAAACTGGGAAGACCTGCCTGCCCTGTTAACCGACGGCTGCTTAACCTCTCCATGCTGGGAATCATGTTCTGCAATTATAGATTACAGGGTCTTCAAGTTACAGAAAGAGTCAGCAAGTCACAAAGAGAAGGCAAGAGAGAGAGATACCAGGGAAAACGATATGCAGGCAACTGCAGCAAGTTTGTTCCGAGCGTTCACTCTCAACGATAACTTTCTCGACACATGATACCGCTGGCTTCCTCTATTCTGAATAAAAAAACCTTTTGGCTCCTAGTTTAAAAGCATCCAAATGAGTGCAAAATTATCCGGAATCTTCTACCTTTTTATTCATATCAAACATTTACATCATCTTATTTCAGTTAATGTCTGCCGTTAATACCACACTAACACAGGACTATAATTTAGTCTACAATCCAATAACAGTATCTCAAATCTAAGACATAGTGGTATCTTTAGCTACAACTTGTGGAACCTTGAAGATGGGATTTTGCTCCAGAAAAGGTGGTGATCTTTGGAATACAACTGATGCAGCCCTTATCAAGATCCCAGCAGTTAAGCCCCATATCACATACTTCTTGTTCTCAGTTTCATAGTCAAAGAAATGAACGAGGTAATTGCATCCCATCCACTCTCTCTCCTCCACTCTCCGATTTTCATCCTGCATCAAATGTTTTGAGAGAACTTATATCGACAATCAAATAAAGGGTTCAAGAACAGAGAACAGTTATATTTTTATTCTCCAACAAAAAGAGACCATAACCTTGATAAACATTTCAAGTGGAGCATCAAATACTGCTTCCACTTCAGCAGGATTCGGCCAGGGATTGAATGCACTTCTTTCATTCAGAATGCCGATAACAGGAACCACTCTTAGGAGGTGCTGCAAAGAAAACAGAAGTTTAACTTGTATTGAACTCATCATCACAAGCCCTAGTCATTAAATGCTTCTTGCTGCAGCTAAAATTGCATAATTTTTGTATGTCTAATAAGCTTAGAGACAGCCCAATCCTGGTGAATCCCTTATATAAACCATGTAAGTTGGACCATGATGTAAAAATATGACATTAGATTACATTGTCATGATTCATTTTAGAAGGATATGCAATACCACTGAAAGAGTGACTTCTTGACGAAAGTTTGAGTTCTCCAAGTTCCAAAGGAGCAAGAGACAAACTCATATAGATGTTGATACCTTATCAAAGTAAGCATTTGAAACTGAAAGCAACACAGTTCTAACACCAACCACTTCTTGTTTTTTCTGTAAAGAAAGAAAATATCTTGGATTTTCCAATACTCGATGTTAAGAAGACCATACTATGACAAAATCAATATCCTGATCATCAGAAACCCTAATTTACCAGTATTTCACTACGTTGAAATGCTTTTATAAATTCGTCATTTCCCTACATCCTCGTTTTCTTTGTACCCATAAAGTCCCCAAACTGTAGAAGAATTTATGAATAACATTCTTAGTCAGGATTAGCAGGAGTTTCCCTTGAAGTCTGCAATTTGGAAGAATAAATTTTCACAAGAACCTTCGCAGCAGGATCGTTTCATGCATTAAGGTACCAAAGTTTGCAACTGTGACACTGTATAATTTGTTTATTTTACCTTAAATGTTTATCAAATTGTCCCTAATATCAGAATTATGTCTTTTCTGCACCACAATGATGAATATTGAATCGATTGCTTATCAGTTATTGCACGTCCAAAAAAATTTAGGGGGAGAGAGAGTACAGACCTTGGACAAGAATGGCTCAAGAACTGCTACAACATTAACAAGCGAAGGATCCAAACCAATCTCCTCCTTTGCTTCTCTTGTCGCCGTCGCCCCATCATCCTCATCTCCTTCCTCTGCTTTTCCTCCAGGCAATGCAACTTCACCTGCAAACAAATTCGCCCCAAATTTGTTTAACAAAATTTCGAGCATCAATGCAAGGCAAATTCTCATGAAAAGGAGAAGGTAAACTGCAACAGACAGAGGTACGAATCTGTTTCCATTTTCGTAAAATCAAAAGTAGATTCAAAATTTTCCTTTATCTTCCTTCTCTTTACCAGATTCAGTTGGAATCAAAAGGGTAAACCATAACTGTACAGACCCGAGTGAGTAGACAATCTCGAAGATCGTTTGGTGAGAATGACCCGCAGATCGCCGTCACTCCCTTCAAAAAGACAAATCAACACAGCCGCTCTCTTGGGTCTGAATATCTCAGGGTCTCGAGAAATCGGGGCAGCCGATTCCGGAAAACCCACTTGAGAAACAACCTTTCCATTACTCTCCTCACTGCTTGGCTCCTCCACGTCGTCCAAACATGGCGGTGGTTTGTAAAGGCGGAGTTGCTGTGACAAGGCGATTAGCTTTCGTGAGCTCCCATTCCCAGGGGACTCTGAAGAATCCATGAGCTTTGAGACCCGTTTGGTGTACAGCGACGGTTTCAATAGCCTTCTGAATATTGAAATCATGAATTTAAAGCCCTCCCGATTTCCTCACCAATAAACCATCAATAAATGAGACCGCCGAGCGAAGTAGGACAATTGGTGCGCATTGGTTGCGACGATGATTTTGGTTCTGCCTCTGGGATTGGAAGCAGAAAACAAGAAAAATCACAAGCATTACTTATCGCTCCAAAGAAGATTATAAATAAGCATTAGAATGACTCTTGCCACTGTTTACTGACACGTTTAGATACCCACCATGGATATTCTAACTTCTAAGGCAACTGCATCACCCCATTATCCACTTATTGCATCTGCACGAACATGGGTTGCGAAGGAGGACGACAGGTGTAATATGATCACAGAACAGGCCATGACTTTTATACAAAGGGGTGTGAATCACGAAGGTTTCTTTTTTGTTCTTTATTTTGGTTGTTTAGGTATAGGAAAATAAAGTAGTATTTCGAAGTCGTTTATGCTATTTCAGCAAAATCATAGATCCACCCAGAAGTGGAGGTTACATAACAATATCAAGCTACCAAATAATTTCAAAATCATGAACACTGTTCGTATACATTATAATTTATGTAATACTGTCTTTCTTCTTCTTTCAAATATACAAAGCAGGAAAAAAGGGAAGGAAATGTAAGAAAATAATATGACATGGGGTCAGTCTGCATGCCAAAAATACATTACCTCACACCACTCCATGAATGAACATCTTCAGAAATGACATACAGAAAACAAATGGCTTCTTCATCTTTATGTTTTTTTCCTTGATAAAAATATGAACACAATTTGCAGTCTACAAATGGCTCGATTATGACACTGTTTCTTCTTTCTTCTTTGTGTTCCCTTCACCACCTTTATTGCCTTTTTCTTCTGTAGCTGATTTCTCGGTTTTCTCGGCAGCTGGATAAGACAACCTCCGAGCCTTTGGAGTTGATTTCCCATTCGGGGAAGGAGGTTTAACCAAAACTCGTGCTCTCGGAGATGGTGAGTTTATCTTCTTACCGACTTTGCTCGACTGCCTAATTGTCGACTTCTTTGGACTAACTAACTGAGACGGTACACGGCTTTCCCATGGACGAGCAGCTATCCATCGTTCTTTCCAGCTCCAACCCCAATCTGTTTTACCAAGTTCATCTTTGCCCAACCCATAGATCTCACTGGAAT AAAATTTATACTTAAACCATTGAACTATAATATGGTTGCCTTGGATAGAATTATATTTATATTTTTAATGACGCAGCATGCTCCACGTCGCCCCCATTTACCACACATCAAAGCAACCTACCCCTCAACCCTCCACACGCCACACTGAGGAGTTGAGTTTGGTGGGAAAGAGACTACAAAATCAAAACGCAGCGCCAGCAGCGTCCGCACCAACAGCCCAGCCATGCGAGTCACCATATCCGCAACCACTCCCATTCTTCCTTCTCGCCCCGCCTTCCCCCAAGCCCATGCCCTCCCTCTATCTCACCTCGACACAGATCCCAATCTCCGTGTCAGTTTTCGCTACCTTCGGGCTTATGTCTCCACCAACGCCCCGCCATCTGCTTGTCCTCCTCCCGATCCCTTCCACGTCATAGCCACTGCCCTCTCCTCTGCCCTTCTCCTCTACTACCCCCTCGCCGCCACTCTCCGCCGCCGTCAACTCCACGACCACCGCCTCGAGCTATTCTGTGCTCCGGGCCAGGGCGTCCCCCTGATCCGCGCCACCGCGGACTGTAAACTTGCGTCGCTGGATTACCTCGACGATCCGGATGAAACTTTCGTCGAACAGCTTGTGCCCGATCCGGACGAGAGCGAGCGGCTGAAGCACCCTTGTATGCTACAAGTGACGGTATTCGAATGCGGCGGCTTCACTCTCGGCGCTTCCATTCACCATTCTGTGTGCGACGGACTTGGAGCGACTCAGTTTTTCAATGCCATGGCCGAGTTGGCCCGTGGGGCAAGTGCAGTGTCGATCGAGCCAGTCTGGGACAGGGCAAGTTTGTTGGGCCCGAGGAAGCCTCCCCGAATTGAGGCACCAATCGAGGAGTTTTTGAGTTTAGAACAAGGAAACTTACCATACAGTCACTCAATTGGGCCGGTGGTGAGAGAATGCTTCCCTGTTACGGACGATCGTCTGGAGAGATTCAAAAGAATGTTGTTCGAGCAGTCCGGATCTCGATTCACCACGTTTGAAGCATTGGGAGCATATATATGGCGGGCCAAGGTGAATGCCTCAGAAATTGGAGGGCGTGAGAGAGTGAAATTCGTGTATTCAACCAACATCCGCAAAACCCTAAAGCCGCCATTGCCGGTGGGTTACTGGGGCAATGGTTGCGTCCCGATATACATTGAACTCACAGCCGAGGAGCTCAGAGAGCAACCCGTTTGGGAGACGGCGAAGCAGATCCAGAGGAGCAAAATGAACATAACGGAGGAGTATGTTCGATCGTTCATCGACTTTCAAGAGCTTCATTATGGAGATGGAATAACGGCGGGGAAGGAGGTGAGCGCGTTCACAGACTGGAGACATTTAGGGCATTCGACGGTGGATTTTGGGTGGGGAGGTCCTATTACGGTGCTGCCACTCTCTCGTTCGCTTCTTGGGAGTGTGGAGCCTTGCTTTTTCTTGCCGCATTCTTCTGCAAATTCGAGCGAGGCCGAGGCGCCGGCGGGGTTCAAGGTCTCCATCGCTTTGAGAAAGACTGCAATGCCCGCCTTCAGAGAGGAGATGAAGAAGTTCGTTGACGATGATTTTGACGGCCGCTGACATGACGTGGCTATACTTGGACTGCACGATGATTTCTAATACTATTTCTTTTTCACACTAAATTGGTTGCAGGAGTTGACCTCGGACTTCAAAAGGCTGCGTTAATGCGGCATTTCTAATACCATTCTTTTTCTTCTCTTTTTTTTTTAAAAAAGAATTAGGGCAGCCTTTGATTTTCAATATATTAGTGAAGGGAGTGAATTTTAATTTTAGACTTTTAATTTTATCACTATATATTAGAATAAGTTTTTTAATTACCTTACACTAAATAAATTAGGCCATTAATACCTTCTATTGGTTAAGTTTTTGTCTATATCAAGAAAAAAAAGTTTAGTCTTAGTTTTCATGGTAGATTCATGATTAGCTACCAGAATTCTTTGGGCGATATTAGAGTAAAATTGTTTTGTTCAAACTTCATGATAGACTATTTATTTAAAAATTAATTTTCTATGTGTTTTTTGGACAATAAATTTGCTGGATGATCCTGGTTGAGACAAAAAAAGTAGTGTTAAAATGTTTTTAATGAGTTGGATTTCATAAGATTTGAGTAACTTTATAGGGTTGACAATATTCATAATTGGGATGGGGGCATATGTTATGATTTTAAATCTCGGTATTTTCAGTGGGTATAAAAAAATATTTGTTATATTTATAAGTATAATAACAGTTTTTTTTTTTATTTTGCAAAAATGGTAACCTTTTTTAACTCAAATTTTTCCTTTTCTTTTTTTTTTTAATTTCCAACCTATAAGAGAGCAAGATATCCTGACCGTTAACTTCATGTTAAAATATTTACAATTAATTATTAATTCTTCCTCTGGATCACTGGATCATATTTGTGAGTATTCCTTTTTTAAGTTCACGGTTTGAGAAACTATAATTAGTCTATTAGAATAATCAATTCATCTACTAATTTATATTATTATCCATTTAACCAAAAATAAGTTTATAATTCCCCCCCACAATATCTCTTAAAAGAGAAAAAGAAAAAAGAAAAAAATGGAGAAGAAGTAGCTCCTCATCACTACTATAATATATATTTTACTCCAAAATAGTGGAAGATATTATTAACACACAGTGGCCATTATAGTCATTAAAAAAAATAACCTTATTCATTAGCAATGGAATATATTTTTAGAAAAATATTTTAAATATTAAAAACAATTTTAGAAACTAATAAAAAGGAAAAAAAGGTAGCGATATGACTAAGCCAGGCAGGGACAGAAGGAGAAGCAGCAGTACGCTCAGAAATTTGGAGTGAAATCTATCCTCTCTTATCCGCAACCTAACAAATCAATACAAACCATTTATTCAAGTTGGGAACGAACCACCGGCGAGTGGCAGCCATAGTTGGAGAACTCGATCATGGCATTCGCTCTCGGAGGATCTTCCTCAACTGCGATCTTAGCCTCTCGATCCCTCTCTTCTCCCACCCCCAAGCATTTCGTCCCTCTACTCTCTCTAACCCCAGGTCATGGTAACGGGAAGAAATCTGTTGGAAGTATTAGGATTCAGGGGAAGAAGGGAAGGCCTCAGGTCCAATGCAATGTTGCGACTGAAATAAACACTGTCGAGCAGGCCCCGAATATCTCAAAAGAAAGTCAGAGGCCTGTTTATCCATTTGCTGCTATAGTAGGGCAGGATGAGATGAAACTATGCCTTCTTCTGAACGTTATTGACCCAAAAATCGGAGGTGTCATGATCATGGGTGATAGAGGAACAGGAAAATCCACCACTGTTAGGTCCCTGGTTGATTTGCTCCCTGAAATCAAAGCTGTATTTGGGGATCCTTACAATTCTGACCCTGAGGACCCTGAATCAATGGGTATTGAAGTGAGGGAAAGCCTGGGAAAAGGAGAGAAACTTTCGGTGGTGATGACAAAGATCAATATGGTTGATCTGCCACTGGGTGCTACTGAAGATAGGGTTTGTGGGACTATTGACATTGAGAAAGCACTTACTGAAGGTGTGAAGGCATTTGAGCCAGGCCTTCTTGCTAAAGCTAACAGAGGTATTCTCTATGTGGATGAAGTAAATCTTTTGGATGATCATTTAGTTGATGTCCTACTGGATTCTGCTGCCTCTGGTTGGAACACAGTTGAGAGAGAAGGTATTTCCATTTCCCATCCTGCTCGATTCATTTTGATTGGTTCGGGAAATCCAGAAGAAGGGGAGCTTAGGCCACAGCTGCTTGATCGGTTTGGAATGCACGCTCAAGTTGGCACTGTAAGGGATGCAGAGTTGAGAGTGAAGATTGTAGAGGAGAGAGCCCGGTTTGACCAGAATCCGAAGGAGTTCCGTGAATCTTACAAGGCAGAGCAGGAGAAGTTGCAGCAACAAATTTCCTCAGCTAGAAGCTCGCTTTCTTCTGTGCAGATAGATCATGATCTGAAGGTGAAAATCTCCAAGGTTTGTGCCGAGTTGAACGTTGATGGATTGAGAGGAGACATAGTGACGAATAGAGCTGCAAAGGCTCTTGCAGCGCTAAAGGGAAGGGATAAAGTAGCTGCTGAGGACATAGCCACCGTCATTCCAAACTGCTTAAGACATCGTCTTAGGAAAGATCCATTAGAGTCCATTGATTCTGGTTTACTTGTCATTGAGAAATTTTATGAGGTATTTAGCTGAGAAAGGCAATACAAATGGCCTTATCATTGCAACTCCTTTTGTAAGTTGTAACAAATTGATACCGTCGTGCTTTTTGTAGTGTTTCCATTTTCTATTTATATGAGCAGAATTTTAAAGATTTTCAATGCACATGTAGTTCATACATTTGTGTATGGAGAGTACCATGATCACTGCTGTAATAAGGTCAGAAAAACGACCGTCATTGTCTATGCAATGCATACAAGAAATAGTCAAGGTGAAGAATATATTTACATTGAAAGAGTAGTACGTATGATACCGAAGTTTTAACAGCACAAGCAGTCGGTTTATTCATTATAATACTTTTGTTTAAAATTTTACTACTAATCAAATAAGCCTCTGTAGCCAACGTCAATACAGAACTTTGGAAATATACACAATGGTGAAGAAATATTATCATCTAAAAATGAGTTCTGAAACTGGGAAGACCTGCCTGCCCTGTTAACCGACGGCTGCTTAACCTCTCCATGCTGGGAATCATGTTCTGCAATTATAGATTACAGGGTCTTCAAGTTACAGAAAGAGTCAGCAAGTCACAAAGAGAAGGCAAGAGAGAGAGATACCAGGGAAAACGATATGCAGGCAACTGCAGCAAGTTTGTTCCGAGCGTTCACTCTCAACGATAACTTTCTCGACACATGATACCGCTGGCTTCCTCTATTCTGAATAAAAAAACCTTTTGGCTCCTAGTTTAAAAGCATCCAAATGAGTGCAAAATTATCCGGAATCTTCTACCTTTTTATTCATATCAAACATTTACATCATCTTATTTCAGTTAATGTCTGCCGTTAATACCACACTAACACAGGACTATAATTTAGTCTACAATCCAATAACAGTATCTCAAATCTAAGACATAGTGGTATCTTTAGCTACAACTTGTGGAACCTTGAAGATGGGATTTTGCTCCAGAAAAGGTGGTGATCTTTGGAATACAACTGATGCAGCCCTTATCAAGATCCCAGCAGTTAAGCCCCATATCACATACTTCTTGTTCTCAGTTTCATAGTCAAAGAAATGAACGAGGTAATTGCATCCCATCCACTCTCTCTCCTCCACTCTCCGATTTTCATCCTGCATCAAATGTTTTGAGAGAACTTATATCGACAATCAAATAAAGGGTTCAAGAACAGAGAACAGTTATATTTTTATTCTCCAACAAAAAGAGACCATAACCTTGATAAACATTTCAAGTGGAGCATCAAATACTGCTTCCACTTCAGCAGGATTCGGCCAGGGATTGAATGCACTTCTTTCATTCAGAATGCCGATAACAGGAACCACTCTTAGGAGGTGCTGCAAAGAAAACAGAAGTTTAACTTGTATTGAACTCATCATCACAAGCCCTAGTCATTAAATGCTTCTTGCTGCAGCTAAAATTGCATAATTTTTGTATGTCTAATAAGCTTAGAGACAGCCCAATCCTGGTGAATCCCTTATATAAACCATGTAAGTTGGACCATGATGTAAAAATATGACATTAGATTACATTGTCATGATTCATTTTAGAAGGATATGCAATACCACTGAAAGAGTGACTTCTTGACGAAAGTTTGAGTTCTCCAAGTTCCAAAGGAGCAAGAGACAAACTCATATAGATGTTGATACCTTATCAAAGTAAGCATTTGAAACTGAAAGCAACACAGTTCTAACACCAACCACTTCTTGTTTTTTCTGTAAAGAAAGAAAATATCTTGGATTTTCCAATACTCGATGTTAAGAAGACCATACTATGACAAAATCAATATCCTGATCATCAGAAACCCTAATTTACCAGTATTTCACTACGTTGAAATGCTTTTATAAATTCGTCATTTCCCTACATCCTCGTTTTCTTTGTACCCATAAAGTCCCCAAACTGTAGAAGAATTTATGAATAACATTCTTAGTCAGGATTAGCAGGAGTTTCCCTTGAAGTCTGCAATTTGGAAGAATAAATTTTCACAAGAACCTTCGCAGCAGGATCGTTTCATGCATTAAGGTACCAAAGTTTGCAACTGTGACACTGTATAATTTGTTTATTTTACCTTAAATGTTTATCAAATTGTCCCTAATATCAGAATTATGTCTTTTCTGCACCACAATGATGAATATTGAATCGATTGCTTATCAGTTATTGCACGTCCAAAAAAATTTAGGGGGAGAGAGAGTACAGACCTTGGACAAGAATGGCTCAAGAACTGCTACAACATTAACAAGCGAAGGATCCAAACCAATCTCCTCCTTTGCTTCTCTTGTCGCCGTCGCCCCATCATCCTCATCTCCTTCCTCTGCTTTTCCTCCAGGCAATGCAACTTCACCTGCAAACAAATTCGCCCCAAATTTGTTTAACAAAATTTCGAGCATCAATGCAAGGCAAATTCTCATGAAAAGGAGAAGGTAAACTGCAACAGACAGAGGTACGAATCTGTTTCCATTTTCGTAAAATCAAAAGTAGATTCAAAATTTTCCTTTATCTTCCTTCTCTTTACCAGATTCAGTTGGAATCAAAAGGGTAAACCATAACTGTACAGACCCGAGTGAGTAGACAATCTCGAAGATCGTTTGGTGAGAATGACCCGCAGATCGCCGTCACTCCCTTCAAAAAGACAAATCAACACAGCCGCTCTCTTGGGTCTGAATATCTCAGGGTCTCGAGAAATCGGGGCAGCCGATTCCGGAAAACCCACTTGAGAAACAACCTTTCCATTACTCTCCTCACTGCTTGGCTCCTCCACGTCGTCCAAACATGGCGGTGGTTTGTAAAGGCGGAGTTGCTGTGACAAGGCGATTAGCTTTCGTGAGCTCCCATTCCCAGGGGACTCTGAAGAATCCATGAGCTTTGAGACCCGTTTGGTGTACAGCGACGGTTTCAATAGCCTTCTGAATATTGAAATCATGAATTTAAAGCCCTCCCGATTTCCTCACCAATAAACCATCAATAAATGAGACCGCCGAGCGAAGTAGGACAATTGGTGCGCATTGGTTGCGACGATGATTTTGGTTCTGCCTCTGGGATTGGAAGCAGAAAACAAGAAAAATCACAAGCATTACTTATCGCTCCAAAGAAGATTATAAATAAGCATTAGAATGACTCTTGCCACTGTTTACTGACACGTTTAGATACCCACCATGGATATTCTAACTTCTAAGGCAACTGCATCACCCCATTATCCACTTATTGCATCTGCACGAACATGGGTTGCGAAGGAGGACGACAGGTGTAATATGATCACAGAACAGGCCATGACTTTTATACAAAGGGGTGTGAATCACGAAGGTTTCTTTTTTGTTCTTTATTTTGGTTGTTTAGGTATAGGAAAATAAAGTAGTATTTCGAAGTCGTTTATGCTATTTCAGCAAAATCATAGATCCACCCAGAAGTGGAGGTTACATAACAATATCAAGCTACCAAATAATTTCAAAATCATGAACACTGTTCGTATACATTATAATTTATGTAATACTGTCTTTCTTCTTCTTTCAAATATACAAAGCAGGAAAAAAGGGAAGGAAATGTAAGAAAATAATATGACATGGGGTCAGTCTGCATGCCAAAAATACATTACCTCACACCACTCCATGAATGAACATCTTCAGAAATGACATACAGAAAACAAATGGCTTCTTCATCTTTATGTTTTTTTCCTTGATAAAAATATGAACACAATTTGCAGTCTACAAATGGCTCGATTATGACACTGTTTCTTCTTTCTTCTTTGTGTTCCCTTCACCACCTTTATTGCCTTTTTCTTCTGTAGCTGATTTCTCGGTTTTCTCGGCAGCTGGATAAGACAACCTCCGAGCCTTTGGAGTTGATTTCCCATTCGGGGAAGGAGGTTTAACCAAAACTCGTGCTCTCGGAGATGGTGAGTTTATCTTCTTACCGACTTTGCTCGACTGCCTAATTGTCGACTTCTTTGGACTAACTAACTGAGACGGTACACGGCTTTCCCATGGACGAGCAGCTATCCATCGTTCTTTCCAGCTCCAACCCCAATCTGTTTTACCAAGTTCATCTTTGCCCAACCCATAGATCTCACTGGAAT ATGCGAGTCACCATATCCGCAACCACTCCCATTCTTCCTTCTCGCCCCGCCTTCCCCCAAGCCCATGCCCTCCCTCTATCTCACCTCGACACAGATCCCAATCTCCGTGTCAGTTTTCGCTACCTTCGGGCTTATGTCTCCACCAACGCCCCGCCATCTGCTTGTCCTCCTCCCGATCCCTTCCACGTCATAGCCACTGCCCTCTCCTCTGCCCTTCTCCTCTACTACCCCCTCGCCGCCACTCTCCGCCGCCGTCAACTCCACGACCACCGCCTCGAGCTATTCTGTGCTCCGGGCCAGGGCGTCCCCCTGATCCGCGCCACCGCGGACTGTAAACTTGCGTCGCTGGATTACCTCGACGATCCGGATGAAACTTTCGTCGAACAGCTTGTGCCCGATCCGGACGAGAGCGAGCGGCTGAAGCACCCTTGTATGCTACAAGTGACGGTATTCGAATGCGGCGGCTTCACTCTCGGCGCTTCCATTCACCATTCTGTGTGCGACGGACTTGGAGCGACTCAGTTTTTCAATGCCATGGCCGAGTTGGCCCGTGGGGCAAGTGCAGTGTCGATCGAGCCAGTCTGGGACAGGGCAAGTTTGTTGGGCCCGAGGAAGCCTCCCCGAATTGAGGCACCAATCGAGGAGTTTTTGAGTTTAGAACAAGGAAACTTACCATACAGTCACTCAATTGGGCCGGTGGTGAGAGAATGCTTCCCTGTTACGGACGATCGTCTGGAGAGATTCAAAAGAATGTTGTTCGAGCAGTCCGGATCTCGATTCACCACGTTTGAAGCATTGGGAGCATATATATGGCGGGCCAAGGTGAATGCCTCAGAAATTGGAGGGCGTGAGAGAGTGAAATTCGTGTATTCAACCAACATCCGCAAAACCCTAAAGCCGCCATTGCCGGTGGGTTACTGGGGCAATGGTTGCGTCCCGATATACATTGAACTCACAGCCGAGGAGCTCAGAGAGCAACCCGTTTGGGAGACGGCGAAGCAGATCCAGAGGAGCAAAATGAACATAACGGAGGAGTATGTTCGATCGTTCATCGACTTTCAAGAGCTTCATTATGGAGATGGAATAACGGCGGGGAAGGAGGTGAGCGCGTTCACAGACTGGAGACATTTAGGGCATTCGACGGTGGATTTTGGGTGGGGAGGTCCTATTACGGTGCTGCCACTCTCTCGTTCGCTTCTTGGGAGTGTGGAGCCTTGCTTTTTCTTGCCGCATTCTTCTGCAAATTCGAGCGAGGCCGAGGCGCCGGCGGGGTTCAAGGTCTCCATCGCTTTGAGAAAGACTGCAATGCCCGCCTTCAGAGAGGAGATGAAGAAGTTCGTTGACGATGATTTTGACGGCCGCTGA MRVTISATTPILPSRPAFPQAHALPLSHLDTDPNLRVSFRYLRAYVSTNAPPSACPPPDPFHVIATALSSALLLYYPLAATLRRRQLHDHRLELFCAPGQGVPLIRATADCKLASLDYLDDPDETFVEQLVPDPDESERLKHPCMLQVTVFECGGFTLGASIHHSVCDGLGATQFFNAMAELARGASAVSIEPVWDRASLLGPRKPPRIEAPIEEFLSLEQGNLPYSHSIGPVVRECFPVTDDRLERFKRMLFEQSGSRFTTFEALGAYIWRAKVNASEIGGRERVKFVYSTNIRKTLKPPLPVGYWGNGCVPIYIELTAEELREQPVWETAKQIQRSKMNITEEYVRSFIDFQELHYGDGITAGKEVSAFTDWRHLGHSTVDFGWGGPITVLPLSRSLLGSVEPCFFLPHSSANSSEAEAPAGFKVSIALRKTAMPAFREEMKKFVDDDFDGR Homology
BLAST of MC01g1461.1 vs. ExPASy Swiss-Prot
Match: Q8GYW8 (Spermidine coumaroyl-CoA acyltransferase OS=Arabidopsis thaliana OX=3702 GN=SCT PE=1 SV=1) HSP 1 Score: 207.6 bits (527), Expect = 3.0e-52 Identity = 142/434 (32.72%), Postives = 219/434 (50.46%), Query Frame = 0
BLAST of MC01g1461.1 vs. ExPASy Swiss-Prot
Match: O80467 (Spermidine sinapoyl-CoA acyltransferase OS=Arabidopsis thaliana OX=3702 GN=SDT PE=1 SV=1) HSP 1 Score: 199.1 bits (505), Expect = 1.0e-49 Identity = 141/446 (31.61%), Postives = 219/446 (49.10%), Query Frame = 0
BLAST of MC01g1461.1 vs. ExPASy Swiss-Prot
Match: Q8LL69 (3'-N-debenzoyl-2'-deoxytaxol N-benzoyltransferase OS=Taxus canadensis OX=88032 GN=TAX10 PE=1 SV=1) HSP 1 Score: 193.0 bits (489), Expect = 7.5e-48 Identity = 127/388 (32.73%), Postives = 200/388 (51.55%), Query Frame = 0
BLAST of MC01g1461.1 vs. ExPASy Swiss-Prot
Match: Q8S9G6 (Taxadien-5-alpha-ol O-acetyltransferase OS=Taxus wallichiana var. chinensis OX=29808 PE=2 SV=1) HSP 1 Score: 190.3 bits (482), Expect = 4.9e-47 Identity = 140/454 (30.84%), Postives = 219/454 (48.24%), Query Frame = 0
BLAST of MC01g1461.1 vs. ExPASy Swiss-Prot
Match: Q9M6F0 (Taxadien-5-alpha-ol O-acetyltransferase OS=Taxus cuspidata OX=99806 GN=TAT PE=1 SV=1) HSP 1 Score: 188.0 bits (476), Expect = 2.4e-46 Identity = 137/439 (31.21%), Postives = 211/439 (48.06%), Query Frame = 0
BLAST of MC01g1461.1 vs. NCBI nr
Match: XP_023543910.1 (spermidine coumaroyl-CoA acyltransferase [Cucurbita pepo subsp. pepo]) HSP 1 Score: 754 bits (1948), Expect = 2.29e-272 Identity = 373/451 (82.71%), Postives = 402/451 (89.14%), Query Frame = 0
BLAST of MC01g1461.1 vs. NCBI nr
Match: XP_022978699.1 (spermidine coumaroyl-CoA acyltransferase [Cucurbita maxima]) HSP 1 Score: 753 bits (1944), Expect = 9.32e-272 Identity = 374/451 (82.93%), Postives = 401/451 (88.91%), Query Frame = 0
BLAST of MC01g1461.1 vs. NCBI nr
Match: XP_022925827.1 (spermidine coumaroyl-CoA acyltransferase [Cucurbita moschata]) HSP 1 Score: 753 bits (1943), Expect = 1.32e-271 Identity = 372/451 (82.48%), Postives = 401/451 (88.91%), Query Frame = 0
BLAST of MC01g1461.1 vs. NCBI nr
Match: KAG6581346.1 (Spermidine coumaroyl-CoA acyltransferase, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 751 bits (1938), Expect = 4.90e-270 Identity = 372/451 (82.48%), Postives = 401/451 (88.91%), Query Frame = 0
BLAST of MC01g1461.1 vs. NCBI nr
Match: KAG7034631.1 (Spermidine coumaroyl-CoA acyltransferase, partial [Cucurbita argyrosperma subsp. argyrosperma]) HSP 1 Score: 750 bits (1937), Expect = 6.95e-270 Identity = 371/451 (82.26%), Postives = 400/451 (88.69%), Query Frame = 0
BLAST of MC01g1461.1 vs. ExPASy TrEMBL
Match: A0A6J1IUR9 (spermidine coumaroyl-CoA acyltransferase OS=Cucurbita maxima OX=3661 GN=LOC111478580 PE=3 SV=1) HSP 1 Score: 753 bits (1944), Expect = 4.51e-272 Identity = 374/451 (82.93%), Postives = 401/451 (88.91%), Query Frame = 0
BLAST of MC01g1461.1 vs. ExPASy TrEMBL
Match: A0A6J1ECP4 (spermidine coumaroyl-CoA acyltransferase OS=Cucurbita moschata OX=3662 GN=LOC111433118 PE=3 SV=1) HSP 1 Score: 753 bits (1943), Expect = 6.41e-272 Identity = 372/451 (82.48%), Postives = 401/451 (88.91%), Query Frame = 0
BLAST of MC01g1461.1 vs. ExPASy TrEMBL
Match: A0A1S3AZ43 (spermidine coumaroyl-CoA acyltransferase OS=Cucumis melo OX=3656 GN=LOC103484468 PE=3 SV=1) HSP 1 Score: 737 bits (1902), Expect = 1.12e-265 Identity = 363/451 (80.49%), Postives = 396/451 (87.80%), Query Frame = 0
BLAST of MC01g1461.1 vs. ExPASy TrEMBL
Match: A0A0A0KKB2 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_6G518390 PE=3 SV=1) HSP 1 Score: 734 bits (1895), Expect = 1.31e-264 Identity = 363/451 (80.49%), Postives = 394/451 (87.36%), Query Frame = 0
BLAST of MC01g1461.1 vs. ExPASy TrEMBL
Match: A0A5A7UBR6 (Spermidine coumaroyl-CoA acyltransferase OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold120G002480 PE=3 SV=1) HSP 1 Score: 733 bits (1891), Expect = 1.96e-262 Identity = 362/451 (80.27%), Postives = 395/451 (87.58%), Query Frame = 0
BLAST of MC01g1461.1 vs. TAIR 10
Match: AT1G28680.1 (HXXXD-type acyl-transferase family protein ) HSP 1 Score: 544.3 bits (1401), Expect = 9.5e-155 Identity = 259/441 (58.73%), Postives = 330/441 (74.83%), Query Frame = 0
BLAST of MC01g1461.1 vs. TAIR 10
Match: AT5G07080.1 (HXXXD-type acyl-transferase family protein ) HSP 1 Score: 233.0 bits (593), Expect = 4.7e-61 Identity = 160/436 (36.70%), Postives = 220/436 (50.46%), Query Frame = 0
BLAST of MC01g1461.1 vs. TAIR 10
Match: AT3G47170.1 (HXXXD-type acyl-transferase family protein ) HSP 1 Score: 212.6 bits (540), Expect = 6.5e-55 Identity = 149/454 (32.82%), Postives = 218/454 (48.02%), Query Frame = 0
BLAST of MC01g1461.1 vs. TAIR 10
Match: AT2G25150.1 (HXXXD-type acyl-transferase family protein ) HSP 1 Score: 207.6 bits (527), Expect = 2.1e-53 Identity = 142/434 (32.72%), Postives = 219/434 (50.46%), Query Frame = 0
BLAST of MC01g1461.1 vs. TAIR 10
Match: AT2G23510.1 (spermidine disinapoyl acyltransferase ) HSP 1 Score: 199.1 bits (505), Expect = 7.5e-51 Identity = 141/446 (31.61%), Postives = 219/446 (49.10%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Bitter gourd (Dali-11) v1
Date Performed: 2021-10-25
Relationships
This mRNA is a part of the following gene feature(s):
The following utr3 feature(s) are a part of this mRNA:
The following CDS feature(s) are a part of this mRNA:
The following utr5 feature(s) are a part of this mRNA:
The following polypeptide feature(s) derives from this mRNA:
GO Annotation
GO Assignments
This mRNA is annotated with the following GO terms.
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