MC11g1318 (gene) 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.GTCTAATGTATGCTCTTAACTATTGAGTTCGAATCTCCACTGTTTTCTCCAAAGTATTGGAGAAAATATAAAATCAGAAATGGCCATGGAATTTTCAACACAATAGGAAGTAGAAACCGTGGGATTGATGAGTTCAAAACAGTACAAACTAAGAATTACCCTTTATTACACACAGCATGAGCAGATGCGTCAAGAATCAAGCAACGAAATTCAGACAGAAATTCTCAAAAAATACACAATATCCATAATCCATTTGAGAACTGAAATCTCTGAGCAGTTGAAGCAAGAATAAGATGAGAGAGAAGGGGAAAAGAAAATGGTCTTCTCTCTCTCTCTCCATTTCTCCTCCTCCTCCGCTCGCTTCTCCTTGAAACGCTCCCAAATTTATCCTCTTTTTCCTTCACTCCTCTCCCTGTTTTCTTTCCCGCATTCCTTCCCATCCTCACAATCCTTGAATAAATTTACAATCCGGTTCCCAAGTTTGCGTCTCTCGTTTCTCGAGATTCGGAGCTTCAACTGAGTCGGATTCAATCTGGGTTCCCCAGGAAGTGTCTAATCTCCTCGTGTTTTTGAATTTTATACATGTCTGGAAGTGGTGGCAGTGCGATCTTCAAATGGAAGAAGACGTTGAAGGCAATAAGGCTGCTCTGCTTCTCAAATCCCAATCACCGATTGACCCAGATTTGCCCCATTTCGACCCATCTCAGTTATCTCCATGTTTCCAGTCATCGCCGGCGAGAATCGTTCATCGGCGTTCAGGAGCGCTACAAGTGGGACAACGGCGGGTCTGGTTCTGATGATTTCCGTTCGCAGTCCAACAACACGAGTACCCCAATCCGTAAGATTCGGGCGGAGGCCAATTGCCCACGTTGCTCCAAGCATATGGATATTCTCTTCTCTAACCGCCATTTCCCAACGCTTAATCCTCCTTCTTCCTCTATTCCTTTTTCTTGCGATGCTCCTCCCAAGGCTGCTGGAGGAGGAAGGGAAGCTTACGAGGCCGTTAATTTGTGCCCCAATTGCAAGACCGCTTACTACTTCCGCCCTTACAAGATCGCTCCTCTGCAGGGCAGCTTCATCGAGATCGGCAATCTTAACTCCAAACCCAAGAATTCATCAGAAAGAAGAATTACTACCAAAGATGGTAAAAGTAGTAGTCCCATGGCCGGTTCTACTGTTGATAATTATGTGAATAATAGGCTGAGAGTTGCGTTTTTTGAGACGGTGAGGTCGTATGGTGGGGAGCCGCCTGAGAATTGGCCTCCTGGATCGCCTCCCCCTAATGGGTTGCAGGTGCATTCTCCTCCAGGTCCGCCATTTGCGCCTGGAGCGAACTTCATTCGTGCTTCAGGTCCAGGGGGAAGTACCTCGGGTTCTGGTGGAAATGGCGCCGGTGATGGGAAGAAGATCGAATGGGGAGGATCGAATTTGGGGAAGGATCTACCCACTCCAAAAGAGATTTGCAGGGGTTTGGACAAATTTGTTATCGGCCAAGAAAGAGCCAAGAAGGTTTGTCAACTCTTTTTCAGCGACCTGATGAGATTATCATTAGTATGCATTTCATCGTGGCTTTTCTGCATAAACATGCACATATTTAGTTTAGAGCCTTTTAAGTGATATTGCTTAAATAAATTAGCTATCATGCAGTTAATTGCTTAAATAAGTTAACTTGGTCTTTTATTTTTGACCACCATCTAGCACGTTGTTAACAACGAGTGAATGAGTGTAAGCTATGATATGCAGTCTGAAGATGTGTTCTCGCAAAACTTAGGTGACTGGAACTAGCGGGAAGTTATATAATCGTGTGCGGATTTATTGCATTATTATTTTATGAACCCAACCATTGTAAAATTTCAAAGAAAGTTTTCTTTATCTTTCCCAGGTACTTTCTGTGGCTGTACATAACCATTACAAACGAATATATCATGCTTCCTTGCAAAAAGGGTTAGTTTTTTTTTTTTTTTTTCTATAACATTTGCATTAAAATTGTCATTTGATAAAAAAATTTCCCTTAACTCCATATCTATGAATAGCTGTTATTGTTGTTGTGGATTCATACAGCAGGTCAGGAACTGAATCAGGAAACCAAGATGTGATAGATGATGACGATAACGTGGAGTTAGAAAAGAGCAATGTTCTCTTGATGGGCCCAACAGGCTCTGGTATGGCCTTTTACACTTACCGAATTCCAATGTAACTGATGCTGTTTGTCATTGGCCTGATGTTGAGCATCCATGATGTATTGAAGCACTGTTCTAATTTGCAAATTGTAAAATAGGGAAGACGCTACTTGCAAAGACTTTGGCTCGATTTGTTAATGTGCCATTTGTCATTGCTGATGCTACAACTTTAACACAAGTGAGTTTCTTTTTTCTTCTCTTCCTCTCTGAATGATTTGTCGGAAACTGTAAGATGTGATGTTCATATGTTCACTATGAATTTCTGGCACATTCTAATTATCTTATTTTACCATTTTTTATTTGTGAAGAATTCCATGGTAAACTATTTATGACTTTCTAAGCTTGGTATTTTCTTAATGAAGTCATCTCTTTTGAGAATTGAACTTGAGCCTTGCCACAATGAGAAAAGTTAAGAGTTTCTTGGGACTAGGAATGTTCACAGCATTTTACAATTTTGCTGGTGCGGCTATTTTATTTTTTTTGAAAAGGGGCAGCTCAATTGCAGCACAATTCTTGGGCCTTAGGTTGAAATTCAATTAGGTAAGGGAGCAATTAAAGGGTAAATAATGGGAGAGAGCTTTCATGTCGGATGGATATTTTATAACTATTATGATATTTGAAGGTGGAAGATGTGATTTAAACACGTTAAGAAACTTTTCTTTTTTATCTCAAAAGTCCGACCCTTCCAGTACCTTTTCTTGATACAGACTACAGAGTATCAAGTTTTTCTTCCTTAGAGAAGTCCTTGAGAGCCAGGATTGAAAAGTTTTCCAATGTTTCTTTTATGAAAGATAAACTACTGGTTTATTCCCGTAGAATAATCAAAATTGGTAGCTAATGTGTGAAGGGTGTCTAACTAGAACTGAAAGGAAAGTTGTGGACAGTGGAAATACACCATTTATTATTTGTATTTTTTCTTTTGCAACCCCCATTTGGTGGACGATTATAAATGTCTATGGAATTATTTGGCCCTAACCCACAAACTGGGAGTAGATCATGCATGGAAATTTAAGGAGAAATCAAAGAGAACTTGTATGGTTAAAGTATTGGGTTGTGTGGCTCAAATGGCATCAAGAAACTTTTCAGTATTAAACACTTATCTTCATAATTTATGGGCTTCTAATTCAAATTAATGTGCTGGTCTTTTTGTGAGATATATCTTGATTGGTGCATGAGGTGCCTAAAAGGAGAAGATTGTTTTAGAATTGCGCAGTTTGTTTGGAGGAAGAGAAGGCACCAATAGATTCTCTGTTTATCCAGAAAAGAATTCCAATATATGCACTCTTTGTTAGAGAAGAAAAAAGAGACCTTTGATCATTTTTGTACCTGTTAACCCTTGCTTGGAGTAGGTTATGGGAACACTTCTGAGTTTAGTTGGGTTCCTTCCTTCCTATGGTAGAAGGTTTCCATACCTCTACTTTTTCCTATCCTTCATTGACGCAACCCTAAAATCCTATGGGAAATGCACGTGATGCTACTCTGTGGTAGATGCAACGTTTGGAGCTAGATGCATTCTGTAAGATGTTAGCATTATTGTAGAGACTTAATTTAAATCAAATAGCTGAATTATATAAAATGCCTTGTTCAAGAAGTTTCTTATCAAGTTTCTTTCTCCTTTTATCTGAAAGAGCCAACTTTGTGGTTTGGTAATGTGTTGGTTAATTGATTGAAAAGGAAGAAATGATTTTTGAAAAATGAAAAATGAGAATGAAGATGTGGAAGTTGCTTGAGATAGAGTTAAATGCTTTACTTATTGTTCCTAGGAGTGTTAAGTCCATATATTTTGGAATTTCTTGCCTTTTGTATTCTAGATGGTCATTGTAATGTAATCAAGCTTTTCATTCAAGGGTTTCTTGTTCTTTTGTTTGCTTCCTCTCTCAAAAGGGAGAGGGGACAATAAATGTAGAAGCAATCCTTTAACTTTCTTGTAGATAACCAGAAGCCACGTTGCTTTCATTTGCCTCATTTTTCATATGCCCCAAGCCACCAACGCTAATTATTTTAAATGATTAATAATACAATATCAGCTTCTTCTCAAAATAAAAAAAGAACATCTATGAAGGTTTGTGGTTGAATTAATAGATGACATTGTTACTTTTTGCAGGCCGGTTATGTTGGAGAAGACGTTGAATCAATTTTGTACAAGCTACTCACTGTAAGCTTCATGTTTAGCAATTTCCCTCCTAACTAGCTGATTTTATCGAGTTGTGTTTGGTTTTCTTTTATATGTCCTTCATTTCTGCCTTGTTTAGTAGTTTTATTTATTTCATAACTACAATGGTTGGTTTTCCTTCATTTTTTATTTTTTTTTTCTTGTTAATTTATATATGGTGGTCAACTTATAATAGACTGTAAAAAATAGGATGCTTGACAATTAACGGATGAAAGAGTGCTAGTTTTTAAGAATGGTGTTTTTCAACTCAGATAAACTTTGAGCTCAAGAAATTGTTCTGTTTCTGTAAAGATGAAGAAATTGAAAAATAGGCTCAATCCTCATTCATCAATCTGCTAGGTTAGAGCTGATACGGTTTATTAATTAAGATAATTTAGCTCAACAAATTGAGAAAATGTTATTATAGAGAAAAAGCTAATACCTCAAACATCACCTCTATTTTCAGTTAAATATGACACTAGCAATAATTTGGATCTTTTCACCAGCTAGCTGAAAAATCAGCAAATGTTGCTTGGCTTAAGTCAATCTCGTGCCATTATCAATGTTGCTCTACGAGTGATGAAGTGTTTCTGGGCTCTTGATTTCAACTATCAGTGTAATGTAGAATTATCCGGATATTGCCTTTTAAATCTATGAGCAGCTAATATTGATCCACATTTTTTATATGTATTTAGGCAGCAGAGTTCAATGTACAAGCAGCTCAACAAGGGATGATTTACATTGATGAAGTCGACAAGATAACAAAGAAGGTTTTGATGATTTTTAAATTAATCAATCTCTTTTCTTTATAGAGATCTACTATATTAACATAAACCTTGTTAATTCATATCCTTTTTCTCAGGCTGAGAGTCTAAATATTAGCAGAGATGTTTCTGGTGAGGGTGTTCAACAGGCATTATTAAAAATGCTAGAAGGAACCGTGAGTCAATTAAACTTTATCACTTGATTCATTTCCTATGCATTACTTGCCCAATTTAACGTGTCCAATGAGAAATTTGTATTGCCATATCGGTTGTGATTTCTTTATTCTTCTTACTTTAAACTTTTCTTATTGGCTTTAGTTAACTATTTTTTTTTTTTTTTTGAACAAGAAACAAACTTCTCATTGAATTAATGAAAATGAATGAAAATGTTCATCTCGAAGGAGTGAAATAAACAAAAGGAAAAGAAAATATAACAGATAACAGATAACAAAATAAACTCAAAGGTTAAGAGATAAACTAAAAGCTCCCCAATTAAAACAGATAAGTGAAGGAGAATAATTTTCAAACAAACATGATATGGAACACCACTGTGAAGCCTTAAACTTAGCCAAGCTGAACCGATCGGATTTAGTTAACTAATTTATGCATGCAATTTAACTGGAAATACCTATTGTATATGTCCATGGACATTCAATTTCTTATCGTATGGTTGGTAGGCATTTTCGTAAGGGTTTTGTATACCCGCTTACATGTAATATATTATATATTATTTTATTTCTTATCTTTTTGTTTTTAGGAAATTTTCTCTCAAGTATATTAAACTTGTTGCAGTTGTCTTATTGGAACTTAATTATCTGTCCAATTTTCTATAGAACACTTCAAATTGAGTATATCTTGTTTTTGTTTTTGTTTTTTTTTTTCAATTTTCGTTATCACTATTTTATGAATAATAATTTCACCATGTACTTCATGTTATGGTTATAATTTTGAACTTAAGTATATTTACTGCATGAAGTTTTGGAGCCCTAAGCTTTTGAAATTGGTAAACATTTGTCAACTTTTTTTTTTTTATACGAAATCATGCTTTCATTGAGAAAAATGAAAGGAAAAACAAGAGCATAAAAAAAAAGCAGCCCTACAAGAGGACACCCACTAAAGAAAAGGGCTCCAATACAGAAGAATAATACCTAACTGATAATTACAAAAAACCTTAGAAACCGAACTCCACAAAGAAGTATTGGTAAACCTTTGTCAACTTAATTAGTCAAATGATAGGGAAATGGTGAAACCCACATGGTCTTTGTCTAGAAATTGGAGTGATCACATGACATTTCCATTTGATTTGGATGAGTGAGTGGTCGTTAAACTAGTTCTGAAAATAAGGGGTATAAATCATAAATTAGAAATGCATGGTATCAAGTTATAATCATTCCATTGTGTATGAGAGTGGAATTTGCATTTTACCTTTTATGGAGATGGAATTATACTTGGAATTTGGAAATTTGAAGTCAGGACTAAAACATGCACCTTACTTTTGTATGCTTGTCGTAATTGTAGCAGACATGAGAGAAGCTTCATGTGTCGGTAAATGAAGAGTAGAGGAAGAGCATTGGATGATGGATTCTAGCAGCTCTCCTCTCTCCTCATCCTCTTTTCTCTTGCTCTCTTTGTTTTGCATACCTTACTTGGACAATATATGCCTTAATCGAAAGATGTTCCTAGATGCTGCTGTATTTGTGTTGTAAAGAGGAAGATTTTCAGTGCGAGTGTTGACGAAAAGCACAGAGGCAATAGGGTGTATCTTACTTAGTGGATATCAATTAATGTGCTTTTTGACTTTTACATTCCATTCATATGATTGGGCATTGAACTGGTTCAGAGTTATCCTTACCTCTCCAAAGTCAGATAGCTTCTTTAGACAAAGGCAATAGGGTGTATCTTACTTAGTGGAGGTTCTAGGCAAAGTTTTTAAAGTTAGATAGCAATGGGCAGAAGTCTTGTGTAATGGTTCTAGAAGATAGAAAGCATGACGGTTGGAAAGTGTTCATAAGGATGATAGAAGATTCAAATGCTCTGGGTCTTGAAAGGGCACCAAGCTGGAGAGTAGGAAGGAGTTGAAGTTTCTACCTCCAACATCCTTCGCCCATGTCTTGAAAATTGACAAGAAAGGGGTTGTGGATTTTATTGAATTAGGCTGGGAAGGGTTGTGAAAGTGGAAGGACGTTTGGTGAAGAAATTTGATAACAAAGCATTATTGTGGTGTGCTGATGAGGACTACCCACTTTCTATGCTACTGAAGATAATGGGTGGCAATGCAGGATTTGTAGCTTTAATTTGAATCTTGGGTTCCCTCATGTTATGAGAGGGCCAGTGTAGTTTCCTCCTAGGGGGCCCTTTTGTATTTGTTCTCCTTCATCGTTTCTCAATGAAAGCTTGGCTTACTATAAAACAAAAAAAAGTTTTGAGAGCTTGAAGATCTTATCAAGATGATAATTGAGATCTGGAGGGAGGCCTGTCAGCATCAATAGCTGACTTGGCTCAAACTGGTGGATTTGTGCATTATCTTTTTTAACAAGTTGATAAAGCTTCTTTTTTTGTAGTAGGATTGTTAGCTTTTAAATTCTCTAATTCCAACGTACCTACAATAGTTTTTATCTTTTCTTGATGGCTTCACATCTGTTGAAAGTTGTATTTATCTTTTCCAACATCTTTTATAATAGAAATTTTCAACAAATTAATAATAACTTCATGCTTAGTGATACTTGACAGGACTATGGGATTTGTTTATGATGCCATTTAACGATCTAATTTGTGAAATAAGAAAAATGAGATTGATGGACTAACTTTCACGTGTAGGTCCATTAACATTTTAGGTCCAGATTGTTTATATGCAATGGGGAAGATTATGAATATTTTAAGTGAGTAACAATATCTCTATTGATATCAGACCTTTTGAGTGAAATCAAAAGCAAAGTCAAGAGGACTTTTATAAGGGGAAGATTATAGGTATATAAATGAGGGATAATATCTCCATTAGTATGAGGTGTTTTTGGTCAGATCAAAAGCAAATCCACGAGCACTTATGTCCAAACTGGACAACCATTGTAGGATTGTCCCTAACATATAGATGATTCAATGATCGCTTCTACCTTCTTGTTCTTGTTCTTGTTGATTGGAACTTTCTGTTTCCTTATCAATGTGATTAATTGTAATTTAATTTCCACAGCATGGAATAGAAAAATATGAATCTTATAGTATTATTTTTAGCTTTACATTTTTGTGGAATCCTAAATTCTGGGTATGACTTGTTGTCTAGATAGTAAATGTTCCTGAGAAGGGGGCAAGGAAACATCCTCGGGGTGATAGCATTCAGGTAATATATACTAAAAAATTACTCTCAAATTTATTTTATTCACCTATGTGCAAGTTTTACAGTGTATTGCAACATCTACTTATCCTTGATAACCATCTTTAGATGCTATAAGTTCAGTATGGTAATGATGACATGTATGTGCGTATTTTTTTGGAAACTGTATCTGCTTTAACACTTTTGTTTTTCTTCAATAGATATTTTTCAGAAAAAAATCAGTTTCTGTGTCTTTGCATAGAGAGAGTCCTACACATATTATACACACACATAAACTGAGTAAACAGAGAAGAGTGGAGTTCTAGCTTCTTGGTTTAGAGTTTCTTTTGCTAGAGTCTTACACTCGGCTGTATTTATTACTGACAGACTGGATATATATATTTTCTTCTGGATGGGGATTACCACTTAAAAAATATATTTTAATTGAGTTGAAAAATTCTGCAGATAGATACAAAAGATATTTTGTTTATATGTGGTGGAGCGTTCGTAGATCTAGAAAAGACAATCTCTGATAGGTAGGTTATTCGATATTTTTCCATTAATTCTCATCATTTTTCAGTGTTCAATGGTTCTTTCTCAGTACTAAAATGGTTTATTACTGATCAGACGGCAAGATTCTTCTATTGGTTTTGGAGCACCTGTTCGTGCTAACATGAGAATGGGCGGGGTAACGAGTGCTGCGGTTACATCATCATTACTGGAAACCGTGAGAACTAAAGCCCTTTGGATTTTTTGGGATTTGGCGTTAAGCCTCTGCATTGATTTAATTTTTTCCACATGTTCTGAATTTATAATCGATGCATGGAGATGACGTGGCACCTCATTTCTGCTTAATAAAAGGGTCAAGAATCCATTTAGCGCTCTCTAAATTGTTCATTTTGGTGCTTTCCAGGTTGAGAGTTCTGATCTTATAGCATATGGCCTCATACCAGAGTTCATAGGGCGTTTTCCAATTCTTGTCAGTTTATTAGCCTTAACTGAGGACCAGCTTGTCCAGGTATCAATTCATTATTTGTTTTATTTCCACGCCTTTCTTTTCAACTTGTTTGTGAATTATCAAAGCAAATAGAAGAACCAAATTTCTTTCTTTTAAACTTGTTTTTCATTAAAAAATAAATAAAAAGAATAAAAAAAGACTATGGCCTTCTTTCTTTATCCATTGGACCTTCTCATATAAAACTTCCTTGTCCTTTTTCTCCCTCTCTCTCTCTATCAAATCTACAATCTGAAACCTTTTATTTCAGCTCCTTTAAGAAACTTATCTCCTTTTTATTTATTCGTAATGAAAATTATCCAGAGTACAATGTAAATTCTCTGTTTTCAGTAAAGCCTTTCTTTTATTCCTTAAAGAGTGGAAAATTTTCATTTTCAGCTTCTTGTGATCCACGAGGATTAAACATTCTCTTCGAAATCCAAACATACTTTGTTCTTTTGGTTCCCTTATGTATTTTTCTCTCTCTTCCAATAGTCACTCTGTCTTCCCCTGTAGCCCAACATGCATCATCTTCCTTGCTGAAGTTCGACGTTTCTAGACTGCCCTCTTAATGGTATATGTGGATTTTTTGTTATTTCACTTATATCATGCTTACAACTCATTTCATGAAACTATATTGGATCCCTCTGACTTATTTGGAACAAACTTGTAAAGTTCTGGTTTGCCTGATTGAGTTGAGACTTTCATCATACACAAATATGCCCATTTATAGTTCAAATTCCATCCAAGTGAGAAGTTCCATTATGAGTCCTGAGAACAGAGAATTTTCCTGCAAGAAGTTAAATACGAAGAAGAGATCAAGCCTTCCTCTAAAAGAAAGAACTAAAAAGTTATTTCTTGTTAGAGATTTAACTACTCAATATACAATAAACTTCATATTTCGTCCACAATTTCATTCATTTGAATTTTTTGTCTGAATAGTCGTCAGTGCACAGGGCTCAATATCTAAGCCTTGGTTGCATACCTCAATCCACGTTCTAGTAATTAGTACTGCATATTTTGCTTGTCATATATGAATGTAGAAAGGTGGCTCCATCTTATAATGAAATATGCACGTTACGCGTGCTGTTGATTTTCTTTGGCACTTTCTTTCTATAACCAAAATGAGTACAAAAGTTTCCTTGGACTTGCCGTTGTTAACAGGTCCTCACGGAACCAAAGAACGCTCTTGGCAAGCAGTACAAGAAGTTGTTTGGCATGAATAACGTGAGTATTTTCTCATGCTTACCGATTTCTACGATTTCCTACGTCAAATCAAACCCTCTCCATTTCCATCTCTAACAATCAATGTGAATCAGACCCTCTTAATAAAACCGCCATTCAATTTCCAGGTGAAGCTGCATTACACAGAGAAAGCACTGAGGCGGATTGCCCAGAAAGCAATGGCCAAGAACACTGGCGCCAGAGGCTTAAGAGCCATATTGGAAAGCACTCTTACCGAAGCCATGTATGAGGTAGATATTGAGGCTGAAACCATCTGAATATAGCAATGAGGTCTTTACTTGTATGCCCATTTTGATGTAATCTCACTTCAATTCCCAAATGTTTAGATTCCGGATGTTAAGACCGGAAACGATAGAGTAGATGCCGTCGTCGTTGATGAAGAGTCGATTGGTTCGCTAAATTCGAGCGGTTGCGGGGGGAAAATTCTTCGTGGGGATGGAGCATTCGAGCGGTATTTGGCAGAGACCAAGTTGAAGGAATCACAGGTACGATTTCTTTCAATATAGCTTTCATTTTTTGAATTTATGAAACTTTAGTTGATGGAACAATTTGTTTGTAGAATAATTTGGAGGTGGTGGAGTTGGCGGAAGGAGAGTCAGAGCTGTCAAGAGCCGTGAGTATATAGAAACAATATGATTAACCACGATAGTTCTTATGAAATACTCTTTCTTTTCTTTTTTCCCTTTTTTGGTTTTTGTTTCTTGGGGAAAAAATAAAATACATTCATAATATATGGTGTAATTAATTATCCCATTGTAACACCACATAGCTCAGGTTAAGTTCATTGTATTAGAGAAGATAGGAAGGAAAATGCATTGATCATTTAGCCTAACGTTATCTCTGTCTAAATAATATTTAAGAGAAAAAAAAAATAAATCGTTACCTTTCAAT GTCTAATGTATGCTCTTAACTATTGAGTTCGAATCTCCACTGTTTTCTCCAAAGTATTGGAGAAAATATAAAATCAGAAATGGCCATGGAATTTTCAACACAATAGGAAGTAGAAACCGTGGGATTGATGAGTTCAAAACAGTACAAACTAAGAATTACCCTTTATTACACACAGCATGAGCAGATGCGTCAAGAATCAAGCAACGAAATTCAGACAGAAATTCTCAAAAAATACACAATATCCATAATCCATTTGAGAACTGAAATCTCTGAGCAGTTGAAGCAAGAATAAGATGAGAGAGAAGGGGAAAAGAAAATGGTCTTCTCTCTCTCTCTCCATTTCTCCTCCTCCTCCGCTCGCTTCTCCTTGAAACGCTCCCAAATTTATCCTCTTTTTCCTTCACTCCTCTCCCTGTTTTCTTTCCCGCATTCCTTCCCATCCTCACAATCCTTGAATAAATTTACAATCCGGTTCCCAAGTTTGCGTCTCTCGTTTCTCGAGATTCGGAGCTTCAACTGAGTCGGATTCAATCTGGGTTCCCCAGGAAGTGTCTAATCTCCTCGTGTTTTTGAATTTTATACATGTCTGGAAGTGGTGGCAGTGCGATCTTCAAATGGAAGAAGACGTTGAAGGCAATAAGGCTGCTCTGCTTCTCAAATCCCAATCACCGATTGACCCAGATTTGCCCCATTTCGACCCATCTCAGTTATCTCCATGTTTCCAGTCATCGCCGGCGAGAATCGTTCATCGGCGTTCAGGAGCGCTACAAGTGGGACAACGGCGGGTCTGGTTCTGATGATTTCCGTTCGCAGTCCAACAACACGAGTACCCCAATCCGTAAGATTCGGGCGGAGGCCAATTGCCCACGTTGCTCCAAGCATATGGATATTCTCTTCTCTAACCGCCATTTCCCAACGCTTAATCCTCCTTCTTCCTCTATTCCTTTTTCTTGCGATGCTCCTCCCAAGGCTGCTGGAGGAGGAAGGGAAGCTTACGAGGCCGTTAATTTGTGCCCCAATTGCAAGACCGCTTACTACTTCCGCCCTTACAAGATCGCTCCTCTGCAGGGCAGCTTCATCGAGATCGGCAATCTTAACTCCAAACCCAAGAATTCATCAGAAAGAAGAATTACTACCAAAGATGGTAAAAGTAGTAGTCCCATGGCCGGTTCTACTGTTGATAATTATGTGAATAATAGGCTGAGAGTTGCGTTTTTTGAGACGGTGAGGTCGTATGGTGGGGAGCCGCCTGAGAATTGGCCTCCTGGATCGCCTCCCCCTAATGGGTTGCAGGTGCATTCTCCTCCAGGTCCGCCATTTGCGCCTGGAGCGAACTTCATTCGTGCTTCAGGTCCAGGGGGAAGTACCTCGGGTTCTGGTGGAAATGGCGCCGGTGATGGGAAGAAGATCGAATGGGGAGGATCGAATTTGGGGAAGGATCTACCCACTCCAAAAGAGATTTGCAGGGGTTTGGACAAATTTGTTATCGGCCAAGAAAGAGCCAAGAAGGTACTTTCTGTGGCTGTACATAACCATTACAAACGAATATATCATGCTTCCTTGCAAAAAGGGTCAGGAACTGAATCAGGAAACCAAGATGTGATAGATGATGACGATAACGTGGAGTTAGAAAAGAGCAATGTTCTCTTGATGGGCCCAACAGGCTCTGGGAAGACGCTACTTGCAAAGACTTTGGCTCGATTTGTTAATGTGCCATTTGTCATTGCTGATGCTACAACTTTAACACAAGCCGGTTATGTTGGAGAAGACGTTGAATCAATTTTGTACAAGCTACTCACTGCAGCAGAGTTCAATGTACAAGCAGCTCAACAAGGGATGATTTACATTGATGAAGTCGACAAGATAACAAAGAAGGCTGAGAGTCTAAATATTAGCAGAGATGTTTCTGGTGAGGGTGTTCAACAGGCATTATTAAAAATGCTAGAAGGAACCATAGATACAAAAGATATTTTGTTTATATGTGGTGGAGCGTTCGTAGATCTAGAAAAGACAATCTCTGATAGACGGCAAGATTCTTCTATTGGTTTTGGAGCACCTGTTCGTGCTAACATGAGAATGGGCGGGGTAACGAGTGCTGCGGTTACATCATCATTACTGGAAACCGTTGAGAGTTCTGATCTTATAGCATATGGCCTCATACCAGAGTTCATAGGGCGTTTTCCAATTCTTGTCAGTTTATTAGCCTTAACTGAGGACCAGCTTGTCCAGGTCCTCACGGAACCAAAGAACGCTCTTGGCAAGCAGTACAAGAAGTTGTTTGGCATGAATAACGTGAAGCTGCATTACACAGAGAAAGCACTGAGGCGGATTGCCCAGAAAGCAATGGCCAAGAACACTGGCGCCAGAGGCTTAAGAGCCATATTGGAAAGCACTCTTACCGAAGCCATGTATGAGATTCCGGATGTTAAGACCGGAAACGATAGAGTAGATGCCGTCGTCGTTGATGAAGAGTCGATTGGTTCGCTAAATTCGAGCGGTTGCGGGGGGAAAATTCTTCGTGGGGATGGAGCATTCGAGCGGTATTTGGCAGAGACCAAGTTGAAGGAATCACAGAATAATTTGGAGGTGGTGGAGTTGGCGGAAGGAGAGTCAGAGCTGTCAAGAGCCGTGAGTATATAGAAACAATATGATTAACCACGATAGTTCTTATGAAATACTCTTTCTTTTCTTTTTTCCCTTTTTTGGTTTTTGTTTCTTGGGGAAAAAATAAAATACATTCATAATATATGGTGTAATTAATTATCCCATTGTAACACCACATAGCTCAGGTTAAGTTCATTGTATTAGAGAAGATAGGAAGGAAAATGCATTGATCATTTAGCCTAACGTTATCTCTGTCTAAATAATATTTAAGAGAAAAAAAAAATAAATCGTTACCTTTCAAT ATGTCTGGAAGTGGTGGCAGTGCGATCTTCAAATGGAAGAAGACGTTGAAGGCAATAAGGCTGCTCTGCTTCTCAAATCCCAATCACCGATTGACCCAGATTTGCCCCATTTCGACCCATCTCAGTTATCTCCATGTTTCCAGTCATCGCCGGCGAGAATCGTTCATCGGCGTTCAGGAGCGCTACAAGTGGGACAACGGCGGGTCTGGTTCTGATGATTTCCGTTCGCAGTCCAACAACACGAGTACCCCAATCCGTAAGATTCGGGCGGAGGCCAATTGCCCACGTTGCTCCAAGCATATGGATATTCTCTTCTCTAACCGCCATTTCCCAACGCTTAATCCTCCTTCTTCCTCTATTCCTTTTTCTTGCGATGCTCCTCCCAAGGCTGCTGGAGGAGGAAGGGAAGCTTACGAGGCCGTTAATTTGTGCCCCAATTGCAAGACCGCTTACTACTTCCGCCCTTACAAGATCGCTCCTCTGCAGGGCAGCTTCATCGAGATCGGCAATCTTAACTCCAAACCCAAGAATTCATCAGAAAGAAGAATTACTACCAAAGATGGTAAAAGTAGTAGTCCCATGGCCGGTTCTACTGTTGATAATTATGTGAATAATAGGCTGAGAGTTGCGTTTTTTGAGACGGTGAGGTCGTATGGTGGGGAGCCGCCTGAGAATTGGCCTCCTGGATCGCCTCCCCCTAATGGGTTGCAGGTGCATTCTCCTCCAGGTCCGCCATTTGCGCCTGGAGCGAACTTCATTCGTGCTTCAGGTCCAGGGGGAAGTACCTCGGGTTCTGGTGGAAATGGCGCCGGTGATGGGAAGAAGATCGAATGGGGAGGATCGAATTTGGGGAAGGATCTACCCACTCCAAAAGAGATTTGCAGGGGTTTGGACAAATTTGTTATCGGCCAAGAAAGAGCCAAGAAGGTACTTTCTGTGGCTGTACATAACCATTACAAACGAATATATCATGCTTCCTTGCAAAAAGGGTCAGGAACTGAATCAGGAAACCAAGATGTGATAGATGATGACGATAACGTGGAGTTAGAAAAGAGCAATGTTCTCTTGATGGGCCCAACAGGCTCTGGGAAGACGCTACTTGCAAAGACTTTGGCTCGATTTGTTAATGTGCCATTTGTCATTGCTGATGCTACAACTTTAACACAAGCCGGTTATGTTGGAGAAGACGTTGAATCAATTTTGTACAAGCTACTCACTGCAGCAGAGTTCAATGTACAAGCAGCTCAACAAGGGATGATTTACATTGATGAAGTCGACAAGATAACAAAGAAGGCTGAGAGTCTAAATATTAGCAGAGATGTTTCTGGTGAGGGTGTTCAACAGGCATTATTAAAAATGCTAGAAGGAACCATAGATACAAAAGATATTTTGTTTATATGTGGTGGAGCGTTCGTAGATCTAGAAAAGACAATCTCTGATAGACGGCAAGATTCTTCTATTGGTTTTGGAGCACCTGTTCGTGCTAACATGAGAATGGGCGGGGTAACGAGTGCTGCGGTTACATCATCATTACTGGAAACCGTTGAGAGTTCTGATCTTATAGCATATGGCCTCATACCAGAGTTCATAGGGCGTTTTCCAATTCTTGTCAGTTTATTAGCCTTAACTGAGGACCAGCTTGTCCAGGTCCTCACGGAACCAAAGAACGCTCTTGGCAAGCAGTACAAGAAGTTGTTTGGCATGAATAACGTGAAGCTGCATTACACAGAGAAAGCACTGAGGCGGATTGCCCAGAAAGCAATGGCCAAGAACACTGGCGCCAGAGGCTTAAGAGCCATATTGGAAAGCACTCTTACCGAAGCCATGTATGAGATTCCGGATGTTAAGACCGGAAACGATAGAGTAGATGCCGTCGTCGTTGATGAAGAGTCGATTGGTTCGCTAAATTCGAGCGGTTGCGGGGGGAAAATTCTTCGTGGGGATGGAGCATTCGAGCGGTATTTGGCAGAGACCAAGTTGAAGGAATCACAGAATAATTTGGAGGTGGTGGAGTTGGCGGAAGGAGAGTCAGAGCTGTCAAGAGCCGTGAGTATATAG MSGSGGSAIFKWKKTLKAIRLLCFSNPNHRLTQICPISTHLSYLHVSSHRRRESFIGVQERYKWDNGGSGSDDFRSQSNNTSTPIRKIRAEANCPRCSKHMDILFSNRHFPTLNPPSSSIPFSCDAPPKAAGGGREAYEAVNLCPNCKTAYYFRPYKIAPLQGSFIEIGNLNSKPKNSSERRITTKDGKSSSPMAGSTVDNYVNNRLRVAFFETVRSYGGEPPENWPPGSPPPNGLQVHSPPGPPFAPGANFIRASGPGGSTSGSGGNGAGDGKKIEWGGSNLGKDLPTPKEICRGLDKFVIGQERAKKVLSVAVHNHYKRIYHASLQKGSGTESGNQDVIDDDDNVELEKSNVLLMGPTGSGKTLLAKTLARFVNVPFVIADATTLTQAGYVGEDVESILYKLLTAAEFNVQAAQQGMIYIDEVDKITKKAESLNISRDVSGEGVQQALLKMLEGTIDTKDILFICGGAFVDLEKTISDRRQDSSIGFGAPVRANMRMGGVTSAAVTSSLLETVESSDLIAYGLIPEFIGRFPILVSLLALTEDQLVQVLTEPKNALGKQYKKLFGMNNVKLHYTEKALRRIAQKAMAKNTGARGLRAILESTLTEAMYEIPDVKTGNDRVDAVVVDEESIGSLNSSGCGGKILRGDGAFERYLAETKLKESQNNLEVVELAEGESELSRAVSI Homology
BLAST of MC11g1318 vs. ExPASy Swiss-Prot
Match: Q66GN9 (CLP protease regulatory subunit CLPX3, mitochondrial OS=Arabidopsis thaliana OX=3702 GN=CLPX3 PE=2 SV=1) HSP 1 Score: 712.2 bits (1837), Expect = 5.6e-204 Identity = 414/660 (62.73%), Postives = 478/660 (72.42%), Query Frame = 0
BLAST of MC11g1318 vs. ExPASy Swiss-Prot
Match: Q9FK07 (CLP protease regulatory subunit CLPX1, mitochondrial OS=Arabidopsis thaliana OX=3702 GN=CLPX1 PE=2 SV=1) HSP 1 Score: 609.4 bits (1570), Expect = 5.1e-173 Identity = 348/550 (63.27%), Postives = 404/550 (73.45%), Query Frame = 0
BLAST of MC11g1318 vs. ExPASy Swiss-Prot
Match: F4K7F6 (CLP protease regulatory subunit CLPX2, mitochondrial OS=Arabidopsis thaliana OX=3702 GN=CLPX2 PE=3 SV=1) HSP 1 Score: 561.6 bits (1446), Expect = 1.2e-158 Identity = 334/636 (52.52%), Postives = 407/636 (63.99%), Query Frame = 0
BLAST of MC11g1318 vs. ExPASy Swiss-Prot
Match: B1Y6H2 (ATP-dependent Clp protease ATP-binding subunit ClpX OS=Leptothrix cholodnii (strain ATCC 51168 / LMG 8142 / SP-6) OX=395495 GN=clpX PE=3 SV=1) HSP 1 Score: 360.5 bits (924), Expect = 4.1e-98 Identity = 200/376 (53.19%), Postives = 257/376 (68.35%), Query Frame = 0
BLAST of MC11g1318 vs. ExPASy Swiss-Prot
Match: A1WUM6 (ATP-dependent Clp protease ATP-binding subunit ClpX OS=Halorhodospira halophila (strain DSM 244 / SL1) OX=349124 GN=clpX PE=3 SV=1) HSP 1 Score: 359.0 bits (920), Expect = 1.2e-97 Identity = 196/378 (51.85%), Postives = 256/378 (67.72%), Query Frame = 0
BLAST of MC11g1318 vs. NCBI nr
Match: XP_022156010.1 (CLP protease regulatory subunit CLPX3, mitochondrial isoform X2 [Momordica charantia]) HSP 1 Score: 1327 bits (3434), Expect = 0.0 Identity = 685/704 (97.30%), Postives = 685/704 (97.30%), Query Frame = 0
BLAST of MC11g1318 vs. NCBI nr
Match: XP_022156009.1 (CLP protease regulatory subunit CLPX3, mitochondrial isoform X1 [Momordica charantia]) HSP 1 Score: 1322 bits (3422), Expect = 0.0 Identity = 685/705 (97.16%), Postives = 685/705 (97.16%), Query Frame = 0
BLAST of MC11g1318 vs. NCBI nr
Match: XP_038890013.1 (CLP protease regulatory subunit CLPX3, mitochondrial isoform X1 [Benincasa hispida]) HSP 1 Score: 1188 bits (3074), Expect = 0.0 Identity = 625/706 (88.53%), Postives = 649/706 (91.93%), Query Frame = 0
BLAST of MC11g1318 vs. NCBI nr
Match: XP_004141515.1 (CLP protease regulatory subunit CLPX3, mitochondrial isoform X2 [Cucumis sativus]) HSP 1 Score: 1177 bits (3046), Expect = 0.0 Identity = 620/705 (87.94%), Postives = 645/705 (91.49%), Query Frame = 0
BLAST of MC11g1318 vs. NCBI nr
Match: KAA0039361.1 (ATP-dependent Clp protease ATP-binding subunit clpX-like [Cucumis melo var. makuwa]) HSP 1 Score: 1177 bits (3046), Expect = 0.0 Identity = 620/705 (87.94%), Postives = 644/705 (91.35%), Query Frame = 0
BLAST of MC11g1318 vs. ExPASy TrEMBL
Match: A0A6J1DP37 (CLP protease regulatory subunit CLPX3, mitochondrial isoform X2 OS=Momordica charantia OX=3673 GN=LOC111022984 PE=4 SV=1) HSP 1 Score: 1327 bits (3434), Expect = 0.0 Identity = 685/704 (97.30%), Postives = 685/704 (97.30%), Query Frame = 0
BLAST of MC11g1318 vs. ExPASy TrEMBL
Match: A0A6J1DS01 (CLP protease regulatory subunit CLPX3, mitochondrial isoform X1 OS=Momordica charantia OX=3673 GN=LOC111022984 PE=4 SV=1) HSP 1 Score: 1322 bits (3422), Expect = 0.0 Identity = 685/705 (97.16%), Postives = 685/705 (97.16%), Query Frame = 0
BLAST of MC11g1318 vs. ExPASy TrEMBL
Match: A0A5A7TCK2 (ATP-dependent Clp protease ATP-binding subunit clpX-like OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold64G001600 PE=4 SV=1) HSP 1 Score: 1177 bits (3046), Expect = 0.0 Identity = 620/705 (87.94%), Postives = 644/705 (91.35%), Query Frame = 0
BLAST of MC11g1318 vs. ExPASy TrEMBL
Match: A0A5D3BMP6 (ATP-dependent Clp protease ATP-binding subunit clpX-like OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold169G001550 PE=4 SV=1) HSP 1 Score: 1173 bits (3034), Expect = 0.0 Identity = 620/706 (87.82%), Postives = 644/706 (91.22%), Query Frame = 0
BLAST of MC11g1318 vs. ExPASy TrEMBL
Match: A0A6J1I8K8 (CLP protease regulatory subunit CLPX3, mitochondrial-like OS=Cucurbita maxima OX=3661 GN=LOC111471965 PE=4 SV=1) HSP 1 Score: 1168 bits (3022), Expect = 0.0 Identity = 614/706 (86.97%), Postives = 644/706 (91.22%), Query Frame = 0
BLAST of MC11g1318 vs. TAIR 10
Match: AT1G33360.1 (ATP-dependent Clp protease ) HSP 1 Score: 712.2 bits (1837), Expect = 4.0e-205 Identity = 414/660 (62.73%), Postives = 478/660 (72.42%), Query Frame = 0
BLAST of MC11g1318 vs. TAIR 10
Match: AT5G53350.1 (CLP protease regulatory subunit X ) HSP 1 Score: 609.4 bits (1570), Expect = 3.6e-174 Identity = 348/550 (63.27%), Postives = 404/550 (73.45%), Query Frame = 0
BLAST of MC11g1318 vs. TAIR 10
Match: AT5G49840.1 (ATP-dependent Clp protease ) HSP 1 Score: 561.6 bits (1446), Expect = 8.6e-160 Identity = 334/636 (52.52%), Postives = 407/636 (63.99%), Query Frame = 0
BLAST of MC11g1318 vs. TAIR 10
Match: AT1G03000.1 (peroxin 6 ) HSP 1 Score: 48.1 bits (113), Expect = 3.2e-05 Identity = 39/124 (31.45%), Postives = 61/124 (49.19%), Query Frame = 0
BLAST of MC11g1318 vs. TAIR 10
Match: AT5G19990.1 (regulatory particle triple-A ATPase 6A ) HSP 1 Score: 47.8 bits (112), Expect = 4.2e-05 Identity = 40/146 (27.40%), Postives = 66/146 (45.21%), 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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