MC10g1447 (gene) Bitter gourd (Dali-11) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: utr5CDSpolypeptideutr3 Hold the cursor over a type above to highlight its positions in the sequence below.GCAAGGAAGGCGACAAATTTAAAAAGTTCAGATTTGAAAAGTGAAAATGGATGAAAAACACGTGTATGACAAAATCTTCTTGCTGTGAAATATGAGGAGAGGATGAAAAGTGAAAATTGTGAAAAGTTGAAATATGAGGAGAGGAAGGCATCATCCGGGGATGGGAAGATGCCATGGAATATTCGAGTATGACAAAATCTCAGCCCCCACATCCGCGCCATCCGTCGGCCCAATCATCTCGCTTTCTTTCTTTTTAATTTCATTATCATTTTTATTCTTTCTTAAATCTTAATTTCCTTTTTTCTTTTTCTTTCTCAAATCTCGTCGTCGGATTCGTTCTCATCCAAATCCCTTCGATCCATCGATATCCAAAATTTGCCCTACTATGCTTTCAACTCCTCCCCCTTTCTCCTCCTGATTCTCGTCGGAGTTCTTCAATTATGGCCGCTCAGGTTCCGCCGGAGCAAAACCAACTCGAACGCCTCGATGTCTTCAAGATCAAAGGCAGAGACAAACAAGGCCGCCGGATTCTTCGCATCACCGGAAAATTCTTTCCAGGTTCCCATCTCTCTCTCTCTCTCTCTCTCTCTCTCTCCGATTCTATTTTCTTCCTCTTTTGATCATCGACCGCGTACTGTCAGACTCTGATTCCATCTTCTTGCTCTGCTCTGCTCTGCTCTGATTCTATTTTCTTTCTGTTTTCATCGATGAAATTGAAATTGAAATTGGAATGTCCTTAATCATGAAGTATCTGCAAATACTTGCCCTAGTATCCTCTGATTCTACTTTCTTGCTGTTTTTTTACTGATGAAATTAAATTTGAGTTTGGAATGAGCTTAATTATGAAGTATCTCCATACTTGCCCTAGTATGCTCCGATTCTGTTTTCTTGCTGTTTTAATCGATGAAGTTGAATTTTGTTTGTATATTTTTTTGATAATCAGCGCGGAGTGTGAGTTTGGATGTGCTTAAGAAGAATCTGCAGGAGAAGATCTTGCCTAGGCTGAAGAATAAGCCTTTCGCGATCTTATACTTCCACACCGGCGTTCAAAGAAGCCAGAATTTCCCCGGAATCGCCGCCCTCCGATCGATCTACGAGGCGATCCCGGCCGCCGTGAAGGCTAATCTGGAAGCCGTGTACTTCGTTCACCCGGACCTCCAGGCCAGGCTCTTCCTCGCCACCCTCGGCCGCATTTTCTTCACCAACGAGTACCATTTTCCTCAACCCTTCTCTCAATCAATTTCAGTTTTCCCTCCCAATATTCTTAGATATCTTAATATTATTATAATATTGCAACAAATCAAATACTCCAATTTTTTAAAAAAAGATGTAATATATATTGTCTTTTTTTGGTTTAATATATATATATNATATATATATTTCTGTTTCTTAATTTATCAATCTTGGTTCATTAATTAGTATTTTGATTTAAATGGCTTGGAGATTCATTTTAATTCTTATATTTTCAAATACATTCGCAACAGACTAATTTTAATTCTTATACTTTCTCAACTATTTTCTTAATGTCTATTGTGTTCTATTTTAGTACACTTTCACACCTTTTTTTTTAAATGATTATTTTAATTCAATTTCAAATTTTTTAAAGGTAGATATTCACGTCCCATTAAAATTTTTAAGATGATACTTTATCTACTATAATAAATAAATATTTTAAAAATAAAGTATTAAAATAATATTTAAATTAATATTTTCTTTAGGTCTAATTCGACCTCTCGTATTTTTCAAGTTTCTGGTTAATCTTTGAATTTTAGAAAATTTTGTCTCTCATTTTCATTGATTTGATTCATTTGGTGTATATATATATATTTTTAATTCAAAGCTTTATTGGACAAAAAGTAAAATTTGAAAAACGAGACTAAATTTGTAATTTAAGTTAAATTAAATTTATTGTTATTTTTTAAAATTAAAGGAATGGCATTGACGTAAAGCAAAAAGTAAGAATAATGCAACAATTTAAAATCAATTTTTTTGTGAGTGAGAGGGAATATTCGGATGTGGCAGGTTGTACGGGAAGGTGAGGTACGTGAGCAGAATTGATCTGCTGTGGGAGCAGGTGAGAAGGAGCGAGATCGAGATCCCGGAATTCATATACGATCATGATGAAGATTTGGAGTACCGTCCGATGATGGACTATGGGCTGGAGAGCGACCACCCTAGGGTCTACGGTGCACCCTCAATGGAGTCGCACGTGTACTCCATGAGGTGCATCTCCTAGAACAAAACTTTGCTGGTGCTGGAGTGGGCTTTGTTGGGCCTTGTTTAATGGGTTTGTATTTGGACCTTGTTCGGCCCATTAGTTTGCTTTCTCTCTCTTTTGGACCCCAATTCTGTTTTTCTTGTAAAAAAGCTATGCAATATGTATATATATGCCTTTTAATTATAGATAGTTTTAATTTTTAGCAGTGCTGAATAGTGAATGGCGTTCTTTTACATGTTTACTGAAGAAATTGTATAAAAATTTTGTATTGTAACTTGTTCTTTAAAAGGAAAAAAAGAAAGGGATTGTAACTTTGTAAGTTGTAACACGTATCCTACGCATACTATCAAAGATAGATCTTCAGTTTGACTCAGGATGATTTTAAGTTGGGTTGAATTTTGAACTTCAATTTTATTGTCCGGTAGATAAAACTAAACTAATGAAGTTATGTTGTACTAAAAAAATTGTCAATGACACCAAAAATTGAAAGATATTATAAATCTATGAGATTTTTTAAGTGTATTTTTATTTTGTCATTTTGTCATATTTATTTATTGCTTTTTATTTTGTATACAACATGGAGATTGGAATTGTCCAATTACTTTTTAAGTAAACTCATATTTTATTTTACTATGTTAAAGTTTATGTATTCCCGTCTTGAAAGAGTAGGAAAGTGGGAGAAATATTTGTATGCAGTACTAAGCTCCCTCCTAAAGACAGCTAGTTTGAAGCAAAGTCTTTTAGAGCCAGGGACAAGCAGCTTGGATTGGGGTATTTATTGTTGTTAATGTTCTCATGACAGAGATTTTGCAAAGGAGCACAATTTGTTTTATTATTTACTGGTAATTTTGTACACATTACAAAATTTGGATGCATTTCCAAGATTTTGGAAGACTAGTGAGAAATCAAATTCAAGAGACAAGCTCTGGCTCTAATCATCTCCCTGAATATCCCTTTCAATCCATTCTCAAATCCTTCCATGGCGATTTCCAAACCCTCTAAGCTTCCACGCGCAGATTGCAGCTTCTCCGCCTCCACGCCATCGCCGACAGCTCCCAATGCCGCATCCACATCGCCAAATTCATTCCCCATCTCCTCGTTTTCTTCGCTCGCTACCGCTCCCCTTCGCATCACCACTTTCGAAACTAATTGCCACCGACTCGGCTTCGATTTGGGCGATTCAATCGCCATTAACGACAGCACGGAGCCGAATATCGAAACGGTTGCGAAACTAGATTCCTTTAGGGCTCGAACCACAGCGTAGAGATGGAGATCTCCATGAATCGATCCGATTCTGTCGTCCGTTTGTTTGGCGGATGACATCAATTTCAGTGCCTCCTTCTTCGTCTTCTTTCTCAGGTGAGTGTAATTAGCAATGGCGTTTCTGATGCTCGAATCTCCCTTTCTTCTTCGAAGGGCGGATTGCAGAGCTTGAGCTTGTTCCTGGATTTGCAGTATCATGTCTCTTGTCTTGCTGCAGATGTCCAGAAGCTTCATGAATCCGTCAACCAATCCGTCCACCCATTTCCGATTCTGGTGGCTCGATAGGAGCTGTTTGGTTGAAGCCATGTGGAGAAGCGCATCCATGGAAGCGTACAAGTCGTCCAGGCCCAATAAGCCATCGCGGATTGACTTGGAGGTTGAAGGAGATGAATTCTCCCATGCCTTCAGCTTGCTCAATTGCTCTTCGATTCTCACAGTAGTGGGATGGGATCTGGAAGGTAAGCTGATTGATCGTAAATGGTAGCGAGCAGCCATTGTTGGATGCTTTAGAATGCTTAAATTTGAGAAATCTGCTGAGTTTGATGATCTCTAACTCCATGAATCTGCTTATATATGGGCACATTGCAGATTTGGGGAGGATAAGAGGGAGGAGACAGAGAGTGTGGATTTCAATGAATGGCAGCTTGGCAGCTGAGAAATGGCCGGCGGGAGTGTCCTTTTTTGCCAAAAAACTGAGAAAGGTCAGCTTAAATCTTGCTTTGAATTGTCTCCTTGTTTGGAATATAAAATTGAGGCTGCACACATCCCTCGTTTGGGGAGCAAATGCAATGCATATGCAGATGCTTTTTTCAATCAGAAATTTAATGTTAAATTTTGTTTGCTTTCTCTGCAATCTTGTCGCAATTTGAGAAGTGGACAAAGGGTTGACACCCTTGTTTCATATAGCCATGACAAGTTCTTATAGATTCTGCTTAGAAATGGCATGTGGTTTAGTGGAGTTGAAGGGGCATAATGTTTGGGGGCGTTTTTGAAAGTTTTTGGGGCAAAAATATTCTTGGAGAAAATTTTGATCAAGTGTTTTTCTATCCCCTTGCAACATTGCAAGGGAGTTACGGGATTCGAAATTGTAAGGAGTAGTTTCATAACTATTTCGTTTCGTTCTTATTCTTCTGTTCTTTATAAATATGTTTGTTTTCTACAATTTCATTAGTAAGCTTTTCACTGCTCTTGAAAACACATATTTGAGTTCTTATCCAAATTTGGTCTCAATTTCCAAATGTATATAAAAACTATATAACAAAATAGAGAAAGCTTAACTTTTAAAAACGAAATAGTTATCAAAGAGTCTAAATGATTTTTATACTCATTGAGGTGTTCAACATTGAGCGAAAAAAATATTTTAGTCATTATTAATCTTTTATAAATTATTTAGTAAAAATCAAACATGGTATGTGATGGGTATGTTTTGTTAGACAAGTATCTAGTATAGACTAAAAAAATATTTTAAAACAAAATTAGTATGAAAGTGGTAAATATGATTTAGGGTGTGTTTGGGAGTGTTGGTAGGATGAGTGATTTTGAAAAAAGAAATTCAAGTATAATTGATTTTTCAAAATGATCATCCAAGTGATACCTTACAAATCAATTTAAAGTAATTTTTAACTTTCCTAAAATCAATTTTTTAATTTGCCAAACATGATCAATGGCTAGGGAAGTGATTTTGATAATGGCCAAAATCACTCCCAAACACACCCTTAGACTATAGTCCTTAAATGATAGTTAAAAGCACTTTATAAGTTTTGTTAAAGAGTTATAGAAATATGTCTTGATTGAAATTAAAAGAAGATGCAAATTTTGAACAAAAAATACCCCAATAATATTTTGGATTCATTTAAAACACTCCTCTAAACATCTCCTACTTTCATTTCCCACGTTTTTTTAGAGGAACAGCCAAAGGACTGGGTAGAGTCAACCCCACCCAGAGAAGCTATACAAAAGCTTTCCAATTGTGTAAGGAAGTGGAAAGATTGTAATTACAAAGAAAATTTGCTATAGCTAAGGCACCACCAAGAAGTAGTGTGCCGAATACATCTACAAAAAAAAAATTCAAAAGTAGACCTCTTGTTTTCAAAAATACAACGATTTCGTTTTCTCCATAAATGCCAAAGAAGAACCCTGGTAACGCAATTCCATATAACTCTTGCTTTTTTAGGATCATTTCCCACATTTTGGATAACCAGAGGCAATGGTGCTTAATTTTTATGGATCAAACGGCACAAAAAAAGATGGAAGGGAAGAATCTTGGGGGCAGAAAAGAGACAGAGAAACAGAATATTTAAAAGGTCACCTAAATTGCAGAACACTGAACATGTTCACTGGAAACAGATGGGGTGGAGGAAGAAGACAAGGCTTTCAAGGATCTAGCATGTGACCGTACAGTTCGAAAGGTACGCATTATTATTTATTATATTGCACAAACAAGATTTCTTTTAACAGAATTTATATTTAAATCTTCATAATACCCATTATTTGTAATTTTGAACCTGACTCTTATCTTTTTTATATTGAATATGAGAAAGTAGATACGGAAAATAAAATTTTCTTTGAAACTTAATAATACATAGAGTTTGAGTCTTGTCATTGTAAATCTTTTCAAGTTACTACGGATGTGTTAGGATATTAAATCTCAAGTAGGTGGTTACCACGTTTTCTTTAGGCTCTATACTATTTACCTTGGCCCTTAATAGACCGCTCGGCCAAACTATGATAATTTTTAGGCTCTAAATTAGTTATGACGGGTATTTGGAAAAAAATGTCCATGCTAATTACTAACCATTTTTTTTGGATGTGTTGGGAGTCCTCTCGAACTTTTAGGAATGGTTTGACATGTTCAAGTATCTACCTCACGTGCTATGTTTGCATGTATGTTATTAGTTCATGGGTAGAGGATTGAACATTAAACCTTAGCAGCTCAGTTGAAAAAATTCATTTAATCTTGATTCTCCTTATTGTTCCATAGATCGCATCTGACATCTCAATAATTCAGTTTTTCTTTTTCCGATGAAGAGGAGTTTATTCAACCTATAGTGTCAAGGGACCTCATTTCTTGCCATGGTGCGCTAAGAATTAGCAAACAATTATTGAAAACTACGGACTTAGACAATAATTGTAAAACTTCAAAACTATTCATATCCTTCAAAATTAGTTCATAAAAACTATACAAAATAAACTATAATTGAATAAAATAGTTATAACCTTTTCTTACAAGTTTTTAACTTGTAAAATAAAATGGCATCCTTGTTCATAAGGAAAATGGCTTTTGATCGTCACAATTCAAGTTGTTTCCATATCCAATACCCAATATGTCACAATACCTTTGGTAGAAACCAAGTCTATCAGCTGCTCGAGCGTCGGTGTCTTTATTACATTCTTTAAAACCGCTTATTAAGTTGATGGTTAGACCATAACCAGGTAATCTTTTAGCAGATATATCTTGATCAGATGGTATCCATTTACCTGTCATAATATCATGACATGACGGTTTGTTTCCTTGTGGAGTCATCCAAAACCATAAGGCAGTCTTGAATGATATGGTTGCATCGGTCGCCACAAGATCGGGATTGTTTAGCAAATCCACCCCAATTGCTCTACCAGCAGCCCCATAGTTGAAGTTACTAGTCACCCAAGAGTCATCCAAAAGATAAGCATTTCAATAATGTGAACGAGTGTCAAGTTAAAAGATAGTTAAGGCATGGGTGCTCTTGAATATAGAGGAGCAAAGTTCGGACTCCTAATAATGTGAATAGGTGTCAACTTTAAAGTGAGTTGAGAAGAAAATTATTCTCCCCACACCCTTTTGCACTATTCCATTACAAAAGTCACTACTTACATTACGGTTTAACTACTATTTTGATCTCTGTAGTTCGATTTTGATTCATTTTAGGTTATGTACTTTCAAAATGTCAATCTTTGTTCTTGTATTTTTAATTCATTTTAATTTATATATTTTCAAAACGTTTATTTTGGTCAATATATTTTTTAAAGGTAATCATTTTGGTTCCTATTTCCAAAATTTTAATATAAATTTTATACACAATGGAAATCTTCTAGTACAATTTTACAACTACATCTCAAGAAATTTTGTAAGTTAAGTGTCATGCTAAATTTATGATGAAATAAATGAGATAAAAATGATGGTGAAGGACCAAATAGGTTTTTTTTTTAAGTATATGAATTAAAAGTGCCTTTTGAAATTATAGAGAGTAAAATAGTATTTAAACATGTAAATGGTTTCATATTTACCATTTTTTAGAACTAATATCAAATTAAACAAATTTTTATAATTTACATTTATTCTCTTACATTAATAAGTATGCTATAAGGAGCTTTATACAGGGCAACAAGCTTTTAGTTGGGTAAGAATTATTATATTATGATTAGTATAGTAGATAATGATTAGCATTGTTATCATGTTTTTTTAATAGAATAAGTAAGGGTGAGAGATTCGAATTCATGCCCTCTTTATCGGAGAGATGTGTCAATTATCGTTAATCATATTGGTACATTATTATCACGTTTTCAATCATTTAGAATAAAATCCTAAAGTAAGAAGTGAGAACTTACAAGGTGATTTGGAAGGGACCTCGGCCATAATATTTCTTGCCAGATGCACAAGGCCAATTTTGGGAAGGACTACATGAGGAATCTTTATTGGTCGAATTAACATAGCAATACCCCCAAGCATATGGTCCATCTGGTGCACTTGCCCATCCTCCTAAAAATAAAAAATGAAAAATATTTCATTTACTAAATTTAATATTGACGCTAATGAATTTAAAGAGAAGTTTCTGTTTAGTTGTTAAATTTCAAAAATTGACAGTTTGACGTTAATCAAACTTAATAAAAGAAAGGTCAAGATCAGAGATCACTTATACTCAAATTCAAAAATTAAAAGTGTATTTTACCATATGTAGAAATTCAATAATGTATTATTAGATACAAAGTTAGAAAATGAGTAGGCATACAATTTAAATTCCACTTAGCAAATATTTTATAAAGTTGACATTCTTATTAGACCATTTTAAATTTCACGATTAAATTTGTAATTTAACTCCAGGTAAAAAAAAAGAGAGACAATTACATCAGTAATTTTGAAACGGAGCGAATAATTGACGTTGACCTGTGGTCTCGTGAGAAGTTTGAGCGAGGAAAGCGGCGAGCTCCCTCTTCCTGGCGATGAGATTTCCGGTGGTGCCGAAGCCGTCGAACGACGCCGCAGCAGCCACAAATGCTCTGTAGCTATAAAATCCATGGCTCTCGCACCTCAAATCGTTTCGATATTTCAGCATCTGCTCGAAAACCGAGGCGCTGATTACGCTCCCGATCTCGGCGCTAGGGCTCGCAAATGTCAGATCTGAACCACATCGCCTCGCAAATCCAGATCCGCACAGCCCCGATCCGCCGCCGCAAATGCCTCTCGGACACATCGCATCCGCCGTCTCTCCTCCGCCGCACTCCGACGCCGACGACGACGGCGCCAAAAGAACCAAGGTTAGAACTATGAAACTGTACATATTCTTCTCTGACGATGCTGTGAGGGTGAGACTCGTTCCGTTTGAAAATTTTTCCAAGTGGAACTCTCTAATTGACTGGTCCTTTTCATTTCTATCGTTTTTTCATTGGCTAACTCAGTTTTATTCCGATTAACATTTGAATTCAATTTACCCTAGAAAAAGATTTGTGAGAATCAAATTTCAAAGTTTGAGTTAACCATTTTTTTAATATAAACATCAAACTTGAGCCAGGTTTTTATTTCTTCTTTTGATTTCAAAATCTTATACTTTCATCCTAGCTAAATATAGATTTCATCACACCTAAATATATCGTTCAGTCTCTCATGTTTTTTCAGTAATTTTTTTTTCAATTTAGTTGGTTTAAAAAGTTACTTGATACTTGCTTAATTAGCGAAAATTGAGAGGGTTGATGCGTGGATTTTTGGTCCTCCGATTCTCCTCCTCGCTTGATTCGGGACTAATACCTGAAAAACCAAATCGAGCTAAACCCGTGTGCGGCACCACCTCTAAGGCTGACGTAAATGTAGTCAACTTTTAGATGCCCCTACCTCTAAGGCTAGATCGCTACTTATAGCGTGAAGTTGTTCCAGAACTTTTCGTAGCTACAGGGCCGGGGCGAAACCGTCGATCGAAGATGGGGGATCATTGGCTGGGCCGCGGGCCGAGGGGACCGAGCCCCGGGTTCGGACCGAGCCCCTCGTGGCCCAGTGGGCTTCCCTCCGATCGTAACCTGTAGCTCGACTATCGATTCCCGTTGCATAACAGATAGGAGAAAAAAAGTTAAGAGGAGAAAGTTTATAATTTCTCCAAATTTCGAAACTTTGCATTTTCTGCTATATATCAAATTAAAAAATTTTGATACGCGGAGAATGAGATTGAATTTTTTTAGTTCAATAACATGTGAGAGTGGATGCTCTTTATCCAATAATACTACATGATTTTTGTCTGTGATATAATCATATTTTTTTTAGTACAACGATATAATCATATTTTTGCTATATCAACATATAAAATTAATTTTAATGAACCCAATTAGCATTCAAGAAAAATGAAGTATTATTTAAATTTTAAAGATAAAAGTATAAAATTTTGAAACTTATTGCACCAAATGAAAATCTATAGTAAAACTTTTATGGATTAAGGAATGTCTTAAGATAAGAGATACTTAGAGTCAGGATTGTCATATGAAACTTTTCCGATCAAACTTTCCTGACATAATATCACATTATTTAGTACAATAAATATAGGAATCGGAGAATGATGGAAAACTTTCTAGTTGTACTATATTCTTTTTGTTCACACTATAATTTTATCTTTATAAATATTTCTCTTAACGTTGGTTGACCTTACATCATTTTCAGTACGACGATGACGAGACAAATATTTAATGAATGATAACAAGACACGTTGTCGGTTCAAATATAGTTAAGTGGACGGTCCATGAACATAATTGAAGCTCTCTAAAATTTCCATGAACTTTAACTTCAAGGCAAAATTTAAAAGTTTGAATTTTGATGAAAAAAAAAATCTCATAATGTTCTGATGCTTTCTTTTCCTGGTTTCACATTTGTCTCAATCAAGTCGTCGTAGGATGTTACATCAGATGCCACTTAATTCTTGCCCTTTTCTTGGGAAATGCAACTATACAAAGCTGGAATTTTTTCATTTGATGCTACTTTTTAGTGGCACATTTTTTTTTAACCAAAAAAAAAATTAGGTTCGCTTGATCATTCCTATTGACTACTATTAAATGTTTGACTCCCGAACCTACACCGAGGTATTAATTTTTTATCTTTTTTTGTTTTTCAGGAAAAAAAGCTATTTTGACGCGTACAGATTGGTCCAATTTATATATATACTTCCATTGAAACGAATAGTGATAGAGATATATTTCGGTCGGTAGAAAATGAATACTTATTATGTAGTACACTTCGTAGTTTTCATATCACCTAATTGAGTTTACACTATTTTTTTCCTTTTGAATAAATTTGTATTTACACTCGAGCACCAAATAATAAGTTGTCTTCTTGCCAACCTAAGCATAGCTAAACTGGTTAAAACATCTGTTCCTGAC GCAAGGAAGGCGACAAATTTAAAAAGTTCAGATTTGAAAAGTGAAAATGGATGAAAAACACGTGTATGACAAAATCTTCTTGCTGTGAAATATGAGGAGAGGATGAAAAGTGAAAATTGTGAAAAGTTGAAATATGAGGAGAGGAAGGCATCATCCGGGGATGGGAAGATGCCATGGAATATTCGAGTATGACAAAATCTCAGCCCCCACATCCGCGCCATCCGTCGGCCCAATCATCTCGCTTTCTTTCTTTTTAATTTCATTATCATTTTTATTCTTTCTTAAATCTTAATTTCCTTTTTTCTTTTTCTTTCTCAAATCTCGTCGTCGGATTCGTTCTCATCCAAATCCCTTCGATCCATCGATATCCAAAATTTGCCCTACTATGCTTTCAACTCCTCCCCCTTTCTCCTCCTGATTCTCGTCGGAGTTCTTCAATTATGGCCGCTCAGGTTCCGCCGGAGCAAAACCAACTCGAACGCCTCGATGTCTTCAAGATCAAAGGCAGAGACAAACAAGGCCGCCGGATTCTTCGCATCACCGGAAAATTCTTTCCAGCGCGGAGTGTGAGTTTGGATGTGCTTAAGAAGAATCTGCAGGAGAAGATCTTGCCTAGGCTGAAGAATAAGCCTTTCGCGATCTTATACTTCCACACCGGCGTTCAAAGAAGCCAGAATTTCCCCGGAATCGCCGCCCTCCGATCGATCTACGAGGCGATCCCGGCCGCCGTGAAGGCTAATCTGGAAGCCGTGTACTTCGTTCACCCGGACCTCCAGGCCAGGCTCTTCCTCGCCACCCTCGGCCGCATTTTCTTCACCAACGAGTTGTACGGGAAGGTGAGGTACGTGAGCAGAATTGATCTGCTGTGGGAGCAGGTGAGAAGGAGCGAGATCGAGATCCCGGAATTCATATACGATCATGATGAAGATTTGGAGTACCGTCCGATGATGGACTATGGGCTGGAGAGCGACCACCCTAGGGTCTACGGTGCACCCTCAATGGAGTCGCACGTGTACTCCATGAGGTGCATCTCCTAGAACAAAACTTTGCTGGTGCTGGAGTGGGCTTTGTTGGGCCTTGTTTAATGGGTTTGTATTTGGACCTTGTTCGGCCCATTAGTTTGCTTTCTCTCTCTTTTGGACCCCAATTCTGTTTTTCTTGTAAAAAAGCTATGCAATATGTATATATATGCCTTTTAATTATAGATAGTTTTAATTTTTAGCAGTGCTGAATAGTGAATGGCGTTCTTTTACATGTTTACTGAAGAAATTGTATAAAAATTTTGTATTGTAACTTGTTCTTTAAAAGGAAAAAAAGAAAGGGATTGTAACTTTGTAAGTTGTAACACGTATCCTACGCATACTATCAAAGATAGATCTTCAGTTTGACTCAGGATGATTTTAAGTTGGGTTGAATTTTGAACTTCAATTTTATTGTCCGGTAGATAAAACTAAACTAATGAAGTTATGTTGTACTAAAAAAATTGTCAATGACACCAAAAATTGAAAGATATTATAAATCTATGAGATTTTTTAAGTGTATTTTTATTTTGTCATTTTGTCATATTTATTTATTGCTTTTTATTTTGTATACAACATGGAGATTGGAATTGTCCAATTACTTTTTAAGTAAACTCATATTTTATTTTACTATGTTAAAGTTTATGTATTCCCGTCTTGAAAGAGTAGGAAAGTGGGAGAAATATTTGTATGCAGTACTAAGCTCCCTCCTAAAGACAGCTAGTTTGAAGCAAAGTCTTTTAGAGCCAGGGACAAGCAGCTTGGATTGGGGTATTTATTGTTGTTAATGTTCTCATGACAGAGATTTTGCAAAGGAGCACAATTTGTTTTATTATTTACTGGTAATTTTGTACACATTACAAAATTTGGATGCATTTCCAAGATTTTGGAAGACTAGTGAGAAATCAAATTCAAGAGACAAGCTCTGGCTCTAATCATCTCCCTGAATATCCCTTTCAATCCATTCTCAAATCCTTCCATGGCGATTTCCAAACCCTCTAAGCTTCCACGCGCAGATTGCAGCTTCTCCGCCTCCACGCCATCGCCGACAGCTCCCAATGCCGCATCCACATCGCCAAATTCATTCCCCATCTCCTCGTTTTCTTCGCTCGCTACCGCTCCCCTTCGCATCACCACTTTCGAAACTAATTGCCACCGACTCGGCTTCGATTTGGGCGATTCAATCGCCATTAACGACAGCACGGAGCCGAATATCGAAACGGTTGCGAAACTAGATTCCTTTAGGGCTCGAACCACAGCGTAGAGATGGAGATCTCCATGAATCGATCCGATTCTGTCGTCCGTTTGTTTGGCGGATGACATCAATTTCAGTGCCTCCTTCTTCGTCTTCTTTCTCAGATGTCCAGAAGCTTCATGAATCCGTCAACCAATCCGTCCACCCATTTCCGATTCTGGTGGCTCGATAGGAGCTGTTTGGTTGAAGCCATGTGGAGAAGCGCATCCATGGAAGCGTACAAGTCGTCCAGGCCCAATAAGCCATCGCGGATTGACTTGGAGGTTGAAGGAGATGAATTCTCCCATGCCTTCAGCTTGCTCAATTGCTCTTCGATTCTCACAGTAGTGGGATGGGATCTGGAAGATTTGGGGAGGATAAGAGGGAGGAGACAGAGAGTGTGGATTTCAATGAATGGCAGCTTGGCAGCTGAGAAATGGCCGGCGGGAGTGTCCTTTTTTGCCAAAAAACTGAGAAAGGATCATTTCCCACATTTTGGATAACCAGAGGCAATGGTGCTTAATTTTTATGGATCAAACGGCACAAAAAAAGATGGAAGGGAAGAATCTTGGGGGCAGAAAAGAGACAGAGAAACAGAATATTTAAAAGGTCACCTAAATTGCAGAACACTGAACATGTTCACTGGAAACAGATGGGGTGGAGGAAGAAGACAAGGCTTTCAAGGATCTAGCATGTGACCGTACAGTTCGAAAGGTAAAAAAAAAGAGAGACAATTACATCAGTAATTTTGAAACGGAGCGAATAATTGACGTTGACCTGTGGTCTCGTGAGAAGTTTGAGCGAGGAAAGCGGCGAGCTCCCTCTTCCTGGCGATGAGATTTCCGGTGGTGCCGAAGCCGTCGAACGACGCCGCAGCAGCCACAAATGCTCTGTAGCTATAAAATCCATGGCTCTCGCACCTCAAATCGTTTCGATATTTCAGCATCTGCTCGAAAACCGAGGCGCTGATTACGCTCCCGATCTCGGCGCTAGGGCTCGCAAATGTCAGATCTGAACCACATCGCCTCGCAAATCCAGATCCGCACAGCCCCGATCCGCCGCCGCAAATGCCTCTCGGACACATCGCATCCGCCGTCTCTCCTCCGCCGCACTCCGACGCCGACGACGACGGCGCCAAAAGAACCAAGGAAAAAAAGCTATTTTGACGCGTACAGATTGGTCCAATTTATATATATACTTCCATTGAAACGAATAGTGATAGAGATATATTTCGGTCGGTAGAAAATGAATACTTATTATGTAGTACACTTCGTAGTTTTCATATCACCTAATTGAGTTTACACTATTTTTTTCCTTTTGAATAAATTTGTATTTACACTCGAGCACCAAATAATAAGTTGTCTTCTTGCCAACCTAAGCATAGCTAAACTGGTTAAAACATCTGTTCCTGAC ATGGCCGCTCAGGTTCCGCCGGAGCAAAACCAACTCGAACGCCTCGATGTCTTCAAGATCAAAGGCAGAGACAAACAAGGCCGCCGGATTCTTCGCATCACCGGAAAATTCTTTCCAGCGCGGAGTGTGAGTTTGGATGTGCTTAAGAAGAATCTGCAGGAGAAGATCTTGCCTAGGCTGAAGAATAAGCCTTTCGCGATCTTATACTTCCACACCGGCGTTCAAAGAAGCCAGAATTTCCCCGGAATCGCCGCCCTCCGATCGATCTACGAGGCGATCCCGGCCGCCGTGAAGGCTAATCTGGAAGCCGTGTACTTCGTTCACCCGGACCTCCAGGCCAGGCTCTTCCTCGCCACCCTCGGCCGCATTTTCTTCACCAACGAGTTGTACGGGAAGGTGAGGTACGTGAGCAGAATTGATCTGCTGTGGGAGCAGGTGAGAAGGAGCGAGATCGAGATCCCGGAATTCATATACGATCATGATGAAGATTTGGAGTACCGTCCGATGATGGACTATGGGCTGGAGAGCGACCACCCTAGGGTCTACGGTGCACCCTCAATGGAGTCGCACGTGTACTCCATGAGGTGCATCTCCTAG MAAQVPPEQNQLERLDVFKIKGRDKQGRRILRITGKFFPARSVSLDVLKKNLQEKILPRLKNKPFAILYFHTGVQRSQNFPGIAALRSIYEAIPAAVKANLEAVYFVHPDLQARLFLATLGRIFFTNELYGKVRYVSRIDLLWEQVRRSEIEIPEFIYDHDEDLEYRPMMDYGLESDHPRVYGAPSMESHVYSMRCIS Homology
BLAST of MC10g1447 vs. ExPASy Swiss-Prot
Match: Q7JUR6 (Protein GDAP2 homolog OS=Drosophila melanogaster OX=7227 GN=Gdap2 PE=2 SV=1) HSP 1 Score: 73.6 bits (179), Expect = 2.9e-12 Identity = 41/140 (29.29%), Postives = 75/140 (53.57%), Query Frame = 0
BLAST of MC10g1447 vs. ExPASy Swiss-Prot
Match: Q292F9 (Protein GDAP2 homolog OS=Drosophila pseudoobscura pseudoobscura OX=46245 GN=GA15091 PE=3 SV=1) HSP 1 Score: 73.6 bits (179), Expect = 2.9e-12 Identity = 41/140 (29.29%), Postives = 75/140 (53.57%), Query Frame = 0
BLAST of MC10g1447 vs. ExPASy Swiss-Prot
Match: A7T167 (Protein GDAP2 homolog OS=Nematostella vectensis OX=45351 GN=gdap2 PE=3 SV=1) HSP 1 Score: 63.2 bits (152), Expect = 3.9e-09 Identity = 35/140 (25.00%), Postives = 72/140 (51.43%), Query Frame = 0
BLAST of MC10g1447 vs. ExPASy Swiss-Prot
Match: Q0IHU9 (Protein prune homolog 2 OS=Xenopus tropicalis OX=8364 GN=Prune2 PE=2 SV=1) HSP 1 Score: 50.8 bits (120), Expect = 2.0e-05 Identity = 30/100 (30.00%), Postives = 52/100 (52.00%), Query Frame = 0
BLAST of MC10g1447 vs. NCBI nr
Match: XP_022145479.1 (ganglioside-induced differentiation-associated protein 2-like [Momordica charantia]) HSP 1 Score: 396 bits (1017), Expect = 5.28e-139 Identity = 198/198 (100.00%), Postives = 198/198 (100.00%), Query Frame = 0
BLAST of MC10g1447 vs. NCBI nr
Match: XP_004146166.1 (ganglioside-induced differentiation-associated protein 2 [Cucumis sativus] >KGN55625.1 hypothetical protein Csa_010698 [Cucumis sativus]) HSP 1 Score: 363 bits (932), Expect = 5.35e-126 Identity = 178/193 (92.23%), Postives = 187/193 (96.89%), Query Frame = 0
BLAST of MC10g1447 vs. NCBI nr
Match: XP_023553442.1 (ganglioside-induced differentiation-associated protein 2-like [Cucurbita pepo subsp. pepo]) HSP 1 Score: 362 bits (930), Expect = 1.08e-125 Identity = 180/201 (89.55%), Postives = 191/201 (95.02%), Query Frame = 0
BLAST of MC10g1447 vs. NCBI nr
Match: XP_038905989.1 (ganglioside-induced differentiation-associated protein 2 [Benincasa hispida]) HSP 1 Score: 362 bits (930), Expect = 1.20e-125 Identity = 177/193 (91.71%), Postives = 187/193 (96.89%), Query Frame = 0
BLAST of MC10g1447 vs. NCBI nr
Match: XP_008448498.1 (PREDICTED: ganglioside-induced differentiation-associated protein 2 [Cucumis melo]) HSP 1 Score: 362 bits (928), Expect = 2.18e-125 Identity = 177/193 (91.71%), Postives = 187/193 (96.89%), Query Frame = 0
BLAST of MC10g1447 vs. ExPASy TrEMBL
Match: A0A6J1CVD3 (ganglioside-induced differentiation-associated protein 2-like OS=Momordica charantia OX=3673 GN=LOC111014918 PE=4 SV=1) HSP 1 Score: 396 bits (1017), Expect = 2.55e-139 Identity = 198/198 (100.00%), Postives = 198/198 (100.00%), Query Frame = 0
BLAST of MC10g1447 vs. ExPASy TrEMBL
Match: A0A0A0L0Z7 (CRAL-TRIO domain-containing protein OS=Cucumis sativus OX=3659 GN=Csa_3G002450 PE=4 SV=1) HSP 1 Score: 363 bits (932), Expect = 2.59e-126 Identity = 178/193 (92.23%), Postives = 187/193 (96.89%), Query Frame = 0
BLAST of MC10g1447 vs. ExPASy TrEMBL
Match: A0A1S3BJ81 (ganglioside-induced differentiation-associated protein 2 OS=Cucumis melo OX=3656 GN=LOC103490659 PE=4 SV=1) HSP 1 Score: 362 bits (928), Expect = 1.05e-125 Identity = 177/193 (91.71%), Postives = 187/193 (96.89%), Query Frame = 0
BLAST of MC10g1447 vs. ExPASy TrEMBL
Match: A0A6J1L134 (ganglioside-induced differentiation-associated protein 2-like OS=Cucurbita maxima OX=3661 GN=LOC111500201 PE=4 SV=1) HSP 1 Score: 361 bits (926), Expect = 2.13e-125 Identity = 179/201 (89.05%), Postives = 190/201 (94.53%), Query Frame = 0
BLAST of MC10g1447 vs. ExPASy TrEMBL
Match: A0A6J1E710 (ganglioside-induced differentiation-associated protein 2-like OS=Cucurbita moschata OX=3662 GN=LOC111431194 PE=4 SV=1) HSP 1 Score: 361 bits (926), Expect = 2.13e-125 Identity = 179/201 (89.05%), Postives = 190/201 (94.53%), Query Frame = 0
BLAST of MC10g1447 vs. TAIR 10
Match: AT4G35750.1 (SEC14 cytosolic factor family protein / phosphoglyceride transfer family protein ) HSP 1 Score: 279.6 bits (714), Expect = 1.9e-75 Identity = 137/202 (67.82%), Postives = 169/202 (83.66%), Query Frame = 0
BLAST of MC10g1447 vs. TAIR 10
Match: AT3G10210.1 (SEC14 cytosolic factor family protein / phosphoglyceride transfer family protein ) HSP 1 Score: 175.3 bits (443), Expect = 5.0e-44 Identity = 79/168 (47.02%), Postives = 116/168 (69.05%), Query Frame = 0
BLAST of MC10g1447 vs. TAIR 10
Match: AT1G69340.1 (appr-1-p processing enzyme family protein ) HSP 1 Score: 66.6 bits (161), Expect = 2.5e-11 Identity = 37/140 (26.43%), Postives = 76/140 (54.29%), 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
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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