MC09g0806 (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.TATCGCTCGCTGTGAGTTTGGAGCCGCATATTTCCGATTATTAGTTTAATCAAAGTGCTACCTCAATATTTTATGAACTCCAAAATTCATAAAAGATGAGCTTGAAACTGCCTTCAATCTATGCCAACGTGAAGAAGAGCAGAGAAGCTGGAAGAAAACAGAAAATAAACGGTAGATGAATCATGAAAGAGAGACCATTTCGGGGAAAGTCATTGCAGTTTCTTCCCAATCAGCTGTAATTGAAAGGCGCAACGAAAATGCTGGAATGGTTCTCTCTCTCTCTCTCACTCCCCATATCTGGATCATGTTTCCCCTTTCATGTCTCAAATTGCTCGCCATTTTATTTTTAGTTCCGCGGTCCTCCGGATTCTCAGCCTTCTTTGCCTCTTACTTGAAATCTCAAACAGTTTTCGTTCCACATTTCTTCCAAGAATTACCCCCTTTCGTAAGATTCCAGACTTTTCTTGACAACCCCTTTTCACTGTTGGTTCGATTCTGACGTGATTGTTTGTTGATTTTTGGAATTGGGTTTCAAATTGGCCGGAGGATGTTACGGTTCATTTCGGCGCTGGATTGAGGTGGCGACATTTTGGGAATAGAATAATTCGGTTGCTTTCTTTTGTAGTTTTGGTCAATTTTTTGTTCGAGGGATGTTTAATGGTTCTTGAGATTCCTATTTGATCCGAGTGAGAAATGGATTCGGCGAGGAGTTGGTTTAATAAGCTTCAACCAAGAGATAGGTTGAGGGGTTCTTCAAAGAAGAAGGATAGTATGGGAGGAAATGAGGATTCTACGGAACAGACAGATGAAGAGGCGCTCTCTAATATCACAAAGCAGAAGGTTGCTGCGGCGAAGCAGTATATCGAGAACCATTACAAGGAGCAAATGAAAAATCTGCAGGAGAGAAAGGAACGGTATGGTTGCTTCCTTTTTGTCTTTTGAAAATTAATTCATTATAGTGGGAGTGTAATCTGAAAACGTATATGAGAGACTTCACTGGAGAAATATTGTATTTAGCTAGATAGAAAGTATCAGCCCATCTCCAGTTTTCTCTCCTGAAAATTCTGGGTGCCATATGTGCCAAAGAGTAGCTTTAATTGGGTTGGACTGCAATATCTTGGCCCTCCATTTCAATTGATCCCCAACCAGTTGAGATTACGGTATAGGTTGAATGTCGTATGCAGATTGTACCAACATTTTGAACTATATTGGCGAGAGAAAAACAGATGCTCCTGCATTTCTTCCCAACACGATGTTACTTCAAAACTTTCCTAGGCAGTGGTCCTTTTTAATTTGTCCTTGTAACTTGAACAATTCGCACTAGAATCTACTAATGAATATCTTTTCAGATTTAACAACATTGACTAGGGAATCTCATACAAGCATACTACTTAACTAGCAATTGTGCAACTGAATGAGTTGTCTAGGAATGTTTCAGGGTGAGCAAGTGTAAGTCACCACTAAAACAGTATTCTTCCCATCAGATATTGGCAGCCCATCTATAAAATTCGTTGCAAGGGCAATTCAAAGATAGGGAGAAGTTGGAGCAAACTTACATGTGATATTGGCAAGTATTTGCAGCTTTGGTAGGCCTCACATTTGGCTACATAACCCTTTATAGTCGTCCATATCCCCTCTCAGTACAAATAGGTGTAACGTATACCATTGCTTAAGCTTTTAAGTTCCTTTGCATGGCTACTCATCAAGATACAGTGGTACTCTTTAAAAAGAGTTGGGATTGGTGGAGAACCTTTCTGACTCTCTTTATCAAGGAGAAAAAGAAGGAGATGCTCCATATACTTTAGGAAATCATGTTCTGTTGGAAAAATGAGAGCTATAGGAACTATTTCCTTCCAATATTGCAGCCTTAATTTTTAGATAGGAATGGATCTTCGCTTACTTGTTGATGTATTAGTGGTAGGAGCTCATATTGCACCACTAAGATTAATGCTAAGGTGACAGCCATGGGGAATCTTGATAAGCCATCAACGATTGTGTTTCCAACCTAGGTATGTAATGAATTTCAAAGTCATATCCTAATAATTTCGTGAGCCACATTTTATGCTCCAGTTACTCTAGAAGGTACCTTCAAGATTTTTATTAGTCATTGTTGTTCATAGATATACGGCCCGCCCAAGGGGTGTGGCCTTTACTTTTCCAATCAATTCTTTCACTTGGATTTTTGTCATACTCCTGATGATAACACTTGGCTAGAAATAAGCAATAGGTTGTGAATTTTGATTATGACCACCCTAAGACATATCTTGAAGTATCCATTTACTTATGATAATAGTTAGTTAGACCTAATTATCGTGGGTTGGTCTAATGGTCCAAGTGCTTGAAGAAATGGGTTCACACCATGATAGTCACCTATCTACGATTTAATATCTTATAGTTTTTGTGTAACTTGAGATTAGTTGAGATGTGCGCAAGCTAGCTTGGATACTCATGAATATTTATAAAACAGAATAGCAAGTCCTCAAGTTTTAGGGAACCATCATGGGTGGTTGATTGGTCCAAAGGGGCTAGGGTAAAGTGAGAGGGAATGGGTTTAAATTCTATGATGACCACTTTCCTTAGGAATTAATTCTTATGTGCTTCCAACACTAAATGTTAAAGGGTCAGGTGACTACCTCGTGAGATTAGTCAAGGTGTGCGTAAGCTGGTCCGGACACTCACAGATATCAACAACAAAAAAAAAAAAATCCTAAAGTTTTAGGGTGTTAGCCTAGTTAGCAAGGCTGAAATTTTGGTAGGATCAGCTGGTACCCCTCCCCTGGATTATGTGCCCAAGGTACTTCTACTTAGACTACCCAAAATAGAGCTTCTTTTTGTTGATATACTATCTTTCCAAATTCACGGGTTGTTTTCCCTTTTGTGGGTTCCCCTGTAATGCTGGTTGTGGTTGTCTCAATGTTCTCTCCGACTCCTATCTCTTGAAGAGTTGATTCACCCTTTCAACCAACAATGTGAAGCTTCTTTCCATAGATGGTGCGCCATTAGAACCTCTTCCGTCATTGCTCCATAGAACTATTCAACGGAGTCAATAATGTTAGTCCATCTTCTTTTTTCTTGGCATGTCCAAGTAAGTGCTTTCACAAAAATTGATAGAGCCTTTGAATATGCCAACTATATTTTGAATAGCCACCTCTTCTTGTTTTCTCTTTTTGTCAAGTACCTTGTTTGCCACTACTATTGAATCCACTATTTGTTTTCTCACAACAAATGCTTATCTATTTTCCTCCAAGAATCTTCATTTCAAACCCTTCCTTCATTGTTCCTGCTCAAAGAAGTATCCTTCTCTCAATTGATCTCCCTCCAAGACACACACTCACTCAAAAGCATCCTCTGTTTCACACCTTTTGATTCTTCTTTGAAGAAGTTTTCAGCTCATTCCTCCATTCACGTCTCATTCCTCTTGAGACGATAGGAACCAATTGTCGAGTCCTTTGACTTACATTGCTAAGTTTTATTCTTACTTCTTGAGATTAACTTGTCAATGTTAATGACTTTTGGGAGTGTGTTTAACAACTGTAGAGCATTGCAACTTAAGGTTTTCTGTTATTTACTTTTATTAAGAAACTATAGTTTCATGTAAATGCTTTATTAATCATTAAAGCCTGTATTATTTCTTCTAGACTTGACATCTTGTTATAAATCATAAAGCTTAAAAAGGTGTCAAGGTCTCCATGGTCTTGAAAGCAGAACTTGTAGCTTTTAAACCTAGATTTACAATATGATGCTTGCCTACAAAATATTTTTCACTTGTGAAATAGGGTGTTGACAGTTTGTTTTGCATAATAGTTTTCAAGAACTATTTTATAGACTTGTTGTCAGATAGCCACATCCACAAGCTTGTAATTTTTCAAGGAAAATTCATTTTTAGTTATTCTATAAAAAACAGGTCACTTTGAGAATGAACTAATGCGAAAACAACTTAAAAAGTAGTTACTTTAAACATTCGTTCACAAGTTTTTTGTTTTAAGAAATGAACAACTTTTGAGTTCAACTTTGAGAGAGTCTTATTTTTGTCATTTTTTCTTCATATTTAATTGAGTCATCCAGATATCTATGCTTACAAGTACCCATTTGGATTTTAATAGAGAAACTTTTTGCTAGCCTTGAAGAAAAGCTTGCCTATTCTGGAGTTCACTCATAATTTTCTCAAATTTTTAATTATCCATGTTCCTTAATGTGATAGAAATATTCTCAAAAGTCTTATTGAACAATTTTGTTCCTTTTCATTCCTTCACTGAAAAGTTCGTATCTTGTTAAAAAAAAAAAAAAAAATATTCTCAGGAGTCTGCATGAGTTTATTATGTTATTTTCCAAAGAAATTAGTAGTCGGGAGCCAAATCAAATGAAGACAAACAATTTGGAATAGTTAGTCAAGTTTTTTTTCTCTCATTATTTTATATTAATATAAAGTGTATAATTTGCACATAATTCATAAGAGTTGTTTTTGCACTTTCTACCCCTGATTTTTTAGAAACATGTAAAACAACCAAGTTGTAGCCTATAGGTTCTTATTTGAGTAAGTTCCTAATGGATTTAAGATTTTGTTTATAAATTTTATGGATGCAGACGAAATATATTGGAAAAGAAGTTGGCTGATGCTGATGTTTCTGAAGAAGATCAAACCAATTTACTTAAATTTTTAGAGAAGAAGGAAACTGAATACATGCGCCTCCAAAGGCACAAAATGGGTGTCGATGATTTTGATTTACTAACAATTATTGGGAAAGGTGCTTTTGGGGAGGTATATTTTACTTTTGTTACATATGATATGAATTTCCTTTCGCATCCCTCTTACCCCCCCCCNTTTTGCATAGTTTCTGGTTGACTTTATCTACCCTCCATGACCACTTTTGGGAACATATAAATAATCCTCGAGTTCAAGATTTTGAGTTAGATTTAACTAAATTCACCACTGGGTTTTGATTTCAAATGAAACAAGATCTAATGTTTGAATAACTAGAGAAACAAATGTGTCGTAAAAGTCAAGTTTTAAGGAACAACTTGAGCTTATTATGTTCATGAATCATGTGGAATGAACTAGAGGATTCTCTATCATGAAAATTTTATTTCTCAAAAAATTTCCTTTATTTTTTATTCTTTAAATTATCTTTAGGAAATAAAGATGAAATAAGAGATTCTAGGGGATAGGAAGTGTATGGGATGCGTGCATGCTTTTTTCACTCTCATAAATATACTCTTGTTGCCTCATAATAATTAAAAGGCAATAGCCAACCTCAAGGCCTTTAGATTCAAGTTTCAACCTAAAGGTTACCTGACAAGATCCTTCTAGGTGGGGACTCATTAGAGGTGCTATTTTGTTCATAATTCAAACAAGGGCCTTTCGTGTTTCTTTTTCATTTTTTAGAATGAATTCCAACAAGATTTTGAAAGTATTGAAAATGAGGAAATTAAAATTGTGCCATAAACGTTTGAAATCTTGAAGTGTATTTGATTTTACATTTTCTTTTTCAATTATGGTAATTTTTTTTCTATTTTATCTCCAAAAAAGTTTAATTATTTAAATATGGTTCTAGTCCTTGAATTTTTCCCCATTTTATTTTTTTAATCTGTGAACTTTTAAAATTTTTATTTTAGTCCCTAAACTTTTAAACATTTCATGTTTTTGCCTTTTTAATTTTTAAAATTTCATTATAATCTTCTAACGTTCGTTAAACTCATACAGTCGCTATGGTTATGACATATGGATAATAAATGACGTTTCGTCATATTTCCAGTAACTTAGAATAAAATTTTGGATTAAAATTGAGATTTTAGAAGTTAAAAGTACCACAGTAGGAGGTGGATAAAAATAAGGGACCAAAATAGAAGTTCTTAAAGTTTAAAGGACTAAAATGAACCACTAGGGGTTAGTCTAATAGTCATTGGGGTAAGAGAAAAATGTACAAGGATTTTGGGAGCATAAGTTCAAATCCCATCGTGGTGAGTGGCTACCCACACAGGTTATTAAATTTTTATGAGTTCCTGACAACCAAATATTGTAGAGTTAGATCAGTGATTTTGTGGGCTTAGTCAAGGCGTGCATAAACTGGCTAGGTGGTCATAAATTTAAAAATAGAAGAGAAATGAAAAATGAATTAAAGTTTAGAACCAAAACTGTTTTTAAACCAAGTTTGTTTGTGAAGTTGCTAGTTTGGGGTAACATCTTAAGTACACTATGATCCTGATCTTGTAGGTTCGTGTTTGTAGAGAGAAGACTTCAGGTCAGGTGTATGCCATGAAAAAGCTTAAAAAATCGGAGATGCTTCGGAGGGGCCAGGTAACTTGTGTGACCTGCCCTATTGATATCGTATTCCAGAACTCACTATTTGGCATGCTAAAGGGCACTTTTGAAATTCTCTCAGGTGGAGCATGTGAGAGCTGAAAGAAATCTGCTTGCTGAAGTTGATAGCAATTGCATCGTGAAACTCTATTGTTCTTTTCAAGATGATGAGTTTCTTTACCTTATTATGGAGTATCTACCTGGTGGAGATATGATGACTTTATTGATGAGAAAGGATACTTTGACTGAAGATGAAGCAAGGTTCTATGTTGGAGAGATAGTTTTGGCCATTGAATCTATTCATAAGCACAATTACATTCATAGGTCTGTGGATTTTTATGCACAGTGCACTAACTCTCTTAGACACTTATCATGAATTACCCTTTTCAGTTGTAGAATATAAGCTAATTCTGTTGTTCTGTATTACAGAGATATTAAGCCTGACAACTTGCTTCTTGATAAATTTGGGCACTTGAGACTCTCTGACTTTGGACTATGCAAGCCATTAGATTGCAGTACACTCCAAGAACAAGATTTTGATATGGCGAGTACCCGTAATGGGGCTGGACAGACTGATGAGCGCTCCGGAACTCCTGCACGCACTCAACAAGAGCAACTACAACATTGGCAGAAGAATCGGAGAATGCTTGTATGTTTTTTACTACCGAAGTTTGATTTCTCTTATCTGTCTTTTAGTTCACATATGTTGAAATGAACTTATGAAGGGATTTATTTCATGGGTTGACTGAATATTCAGTTGTTCACTTATTCTACTGCTGGTAGAAAATGTTTAGGAATTTTTTTTTGTTACAGAAGTTCAGTTTGAAAACGTAGCTGATTGTTTCGGTTCACAGGATTTATTCTTTTACCTTATGGTATGTTGGAATTTCAGGCTTATTCCACAGTTGGTACGCCAGATTATATTGCTCCAGAGGTTTTGTTGAAGAAAGGTTATGGAATGGAATGTGACTGGTAATTCTAAACTCTTATATGTCCATTTTGGGTGGATATAACAGTTTGATGATAATGACCTTTTAATGTCCCAACTGCAAAATAGATGAGGCTCTCTTGAGTGGCATCAATTTGTTTGCAACTGGATTTGCAGCATTGTACTTGCACAATGCTTTTTTACACTACCATAACCAAAACACTATGGAGCGAATTTTATAGATAGCCTTCTACGATTAATGATTTTTTCCAAATATTAGGTGGTCACTTGGAGCTATTATGTATGAAATGCTTGTCGGATACCCACCATTTTACTCCGATGATCCAATGTCAACGTGTCGGAAGGTAATTTTTCTCTCCAATTTTGAACTGTTACCAGCAATAATAATAACTTTAGAAGTTTATTCTTTTGAAGGAATGGGACAGAAGAGACTCTAAGGCTTCTTTCCTGTTACCTTTTTCTCCATCTCTAATTAAACCTAAACTTCCATTTATATCTTGTTAAACATTTTCTTATTTGTGCTTCTCGTTTCTAGTAATTTTGTTAGTAATATCTCTACTCTCTGAATTGGTACTTCCTAACTTATGACTGTTTTGATCTGCAATACACCTAAGTTTTTTTTTTTTTTGCAGTGCACCTAAGTTAATACACCAACCTTCCCTCAGAAATAAGACAAACTCTCCCTTATGCAATATTAGCCATCATATGCACTTTTTTGGATGTTTACAAGTGGGGGGACTGGCAAACGCCAAAATTTTTCTACATGAATGGACTGGGGGAGAGACACTTTTTTCCCATGCTGGTCTAGTCTATCAGCTTTCTTCCTGTAGGATGCCTTATTAAGATGACTTCACTTGGACCTGACTAGTGGGCAGCCGTATTTAAACTCTTTTTGCCTTATTTTATTTTATCTTTTATGCAATTGGAGGGCGATTGTGGTTGTTTAATGCTAAGAAAAAAAAACGAATTTTTATATACTCCTGTACGGTAGTCATAATGAATGTGTTGAAGGTGTCAGCATTTTAACAATTCAGTCGTAATCTCAACCAAAAAAAAAAAAGAATCAGTCGTGTCCCATAATATTGCTTGCTTGGTTGGCTTGTCAGTGTCGATGAAGTCCTATAAAACTCATCTGGTATCCTGATTCTTTTTGTCTTCCTTCTCCATGTTATAAATATATTGCAGTGTCATGTTTCTGAAAAAAAAGTTATGTTTGATAGACCTGAAGGTTGATATGACAGAGAAGAAATATAGGGTTTTTAAGTGTCTGTCTTTCCTGCCTCTGGGCTGTATAATAAAAGGCTTGGATATTAAAGGGTTTTTATTTTTACCCTTTATAGATAGTGAACTGGAGAACTCATTTGAAGTTTCCGGAGGAGGCAAAGCTATCTCCCATGGCAAAAGATGTCATCAGTAGACTACTATGCAATGTTAACCAAAGGCTAGGAACAAATGGCGCAGATGAAATTAAGGTGTTGTATGGTGTGTCCATTTCTTAGTTTCTTTTGGTTTAATTTTGAAATTTTAAAATAATCTAAAGGTTCCTGCCTGCCAATTCATCATCTAGGTTCATCCGTGGTTTGAAGGTATTGAATGGGAGAGGCTATACCAAATGGAAGCTGCATTTGTTCCCGAGGTTAAAGATGAGCTAGACACCCAAAATTTTGAGAAGTTTGAAGAGGTAGTAGCATGGTGTCCCTATATCTTTTGTTAATTTCTCAGAGCAACTTGCTTCGATCACGTGTCTCATTTACTTTTTCTTCGTGTTTCGAATCTTCAGTCTGACTCGCAAAGCTGTACTTCATCTAAATCTGGTCCATGGAGAAAGGTAACCCTCTAAGCTTGGGTTATTTGTATAGCATTTCTTATATTCACATTTGCCTTTAAGTTCACTATAGTTGAGATAATTAATGTTCATTCTGGTTAAACAACCATTGAACCCAAAAACTAATAGATTACTGAATATTTAATCATTTGTTCATATTTTGCAGGGTTGAAAGTTAACATAAGAATAGACAAGTCATTTTCTATATTAATTGGGGAGGAAATAACATTACAAGAGTTCGGACATAAGACATCTTGCTCTAGTAGTATGTCAAACCACCATTGACTCAAAAGTTTAAGCAGATAGATTACGGAACATCTATAGTGAACACTGAGCATTTTATGGTTTTGCCCTGCCCCCTCAGAACTTATGGTATTTAAAAAGTTGCGTGGGTGTAGAATTATCTTTTTCTCTATGCCCTGCATGTGTTCTGAATTCTCTTTATGCCATATTGATGCCCTTTGGAAGAGATTCTATAGCCCTTTATTGAGACGAAACATGTTTTATTGACCGTAATCAACTGTCAAAGCTCCCAAGTTTATGGAACTTGACAACATAACCATAAAACGAATTATGGTTGTCTTCCTAAGAAAACCGATACAAAGTAATCAGGGCTAGGGGTTTAAAGAACCTATTTATCTCTAAGAAAAATAGTTTTGAAGGACCCAAATAGATTGTTTTGCAGAAAGTGATGCAAAAAAAAAAAAAAAAAGGGGGAAGAAGAAGAAAAGGAAAAAAAAAAAAAAAAAAAAAAAAAAAAAGGTGGAAGAAGAAGAAAAGGAAAAAAAAAAAGAAAAGAAAAGAAAATGAGAGAGTCACAAAGAGGTGTTAGCTTCTAAATAAACACTAAATTAAAAAATCCAACAATAGCAAAATTGAGATCTTAGATATCTCAAAATACACTAGATTATATACAAGATCAACTATTTGTTTTTTTAATCATAATATAATATTGTGTTGTTGATATGATCTTTTAAATCTACAACATGTGTTCTTATTGTTCCATTACCATAATACCCTTTCTGATTTGTTTTGTATAAGATGCTCTCATCCAAGGACATCAACTTCGTCGGATACACTTACAAGAACTTCGAAATTGTCAATGATTATCAATTGCCTGGGATGGGTACGTCCTCTAACATAAAGTTCAAAATATTTACCTTTTGTACTGACCAGCAGATTTTGGCAACTTATCATTTATGTTGATATTTTTGGGAGTTTTAGTGATCTTTTGACTCTTGAATTCTGGGTCAACGCTCTTGTTACTACATATATTCTAATTCTACTTTTGTCGTTTTACCCTCATAACAGCATGTGAATGCAGTGCTGCACAGCGTTCGAAACTTTAGTGTATTATCGGGATAGTAGGAGGATATGTTGGTCAAATTCTATTTATTCTGTGAATATTAGTTAGTTAGTGCCACACAGTATCTATTAGGAATTAGGAGGGTATGTTTCTTGTTAGAATGGATAGCTGTGAAGAGTGGTTATAAATACAATGAGTTGAGGCCAACCTGAACATAGTTCAATGGATTAAGGTATATATCCTCGATCAAAAGATCAATCGAATCATCGCCCCCACATATTGTTCAACTAAAAAATGGAATGACTCGAGGGTTTAGAGTATGCAAAATTTGGATAGTAGTTTCTCAGGAGAGTCCATGCCTCTCGTAGTACCTGGGATAATTTTCCCTTTATCATTTTAATACTATTTTCTATTATTTTCTATTTGGATTTTTGATTCCTATGACACATATTTCACTTAGACATCTTTTCTGTCCAACATGAAATTGTTGAAAGAAATCTCTCCATCTTTCGCGAAAAGGACTTGGAAACATTTTATAAGCTGCATATTTTCAATGAATCTTGAGCTTCCAACTGCAAGTTTACATATTCTGAAAAGGGAGATCACTCATGGAAATCGATCTTTTTTCTCTCTTATAGCTGAATTGAAGAAAAAATGCAGCAAACCAAAAAGACCGTCAATCAAGTCACTCTTTGGTATGCACCAACACTTTTCTTTTCCATTCCACTCACTGTTCACACAACTTATTACCCGATAGTCCCGTCTCTATCTCTATTGCCATTCCAATGCTACCTTACTGATTTGAATAACTGTTTCGAACAGATGGCGAGTCGGAGGCATCAGATGCAGATGCATCTGATGCATCTACTTGTAGTCAGCCCACCGAAGGTAGTAGCTTTTCGCACTCAATGACTTCTCAACTGGATGGATTTGAAAAGAGGAAAGAGTCGATGTAATGTGTTGCTGCTCTGCGTATCATTGGATGAAACAGCGGGAGTTCTGATTCATTAGCTAAATCTCAGTTGGAATTTTTGAGTAACATAGGTCCAATGTAGGACGATGTGTTCTGCATCAAAATTCTTTGAGCGAGTTCGGTTTAACAGAAAAATTAAGTTCAAGCAATGGAGGAGGAGGCGGAATTTTGGTACCTAACATACCTTGGAGTTGACCTGAGCTTTCGTCCGTGGCAGCATTGTTCGTAGTGAGGAGAATAACAGATCTGAAGAAGGTGAATAACAGATCTCAATAGTTATCATATCATTCTTCACCATTGAAGTTTAATATTCTTTTACTTGTCTTATTTTTTCCCACATCTAATTTGGTGGGGTTATATCAACAATCTGTTGTACAAAAAGACACCAAATCGATAGCATATACACCAATATTTCAGTGTATATAATACAAGGCAAAAGCAATTTGTTCCATACCAATTGATTGTTTCTT TATCGCTCGCTGTGAGTTTGGAGCCGCATATTTCCGATTATTAGTTTAATCAAAGTGCTACCTCAATATTTTATGAACTCCAAAATTCATAAAAGATGAGCTTGAAACTGCCTTCAATCTATGCCAACGTGAAGAAGAGCAGAGAAGCTGGAAGAAAACAGAAAATAAACGGTAGATGAATCATGAAAGAGAGACCATTTCGGGGAAAGTCATTGCAGTTTCTTCCCAATCAGCTGTAATTGAAAGGCGCAACGAAAATGCTGGAATGTTCCGCGGTCCTCCGGATTCTCAGCCTTCTTTGCCTCTTACTTGAAATCTCAAACAGTTTTCGTTCCACATTTCTTCCAAGAATTACCCCCTTTCGTAAGATTCCAGACTTTTCTTGACAACCCCTTTTCACTGTTGGTTCGATTCTGACGTGATTGTTTGTTGATTTTTGGAATTGGGTTTCAAATTGGCCGGAGGATGTTACGGTTCATTTCGGCGCTGGATTGAGGTGGCGACATTTTGGGAATAGAATAATTCGGTTGCTTTCTTTTGTAGTTTTGGTCAATTTTTTGTTCGAGGGATGTTTAATGGTTCTTGAGATTCCTATTTGATCCGAGTGAGAAATGGATTCGGCGAGGAGTTGGTTTAATAAGCTTCAACCAAGAGATAGGTTGAGGGGTTCTTCAAAGAAGAAGGATAGTATGGGAGGAAATGAGGATTCTACGGAACAGACAGATGAAGAGGCGCTCTCTAATATCACAAAGCAGAAGGTTGCTGCGGCGAAGCAGTATATCGAGAACCATTACAAGGAGCAAATGAAAAATCTGCAGGAGAGAAAGGAACGACGAAATATATTGGAAAAGAAGTTGGCTGATGCTGATGTTTCTGAAGAAGATCAAACCAATTTACTTAAATTTTTAGAGAAGAAGGAAACTGAATACATGCGCCTCCAAAGGCACAAAATGGGTGTCGATGATTTTGATTTACTAACAATTATTGGGAAAGGTGCTTTTGGGGAGGTTCGTGTTTGTAGAGAGAAGACTTCAGGTCAGGTGTATGCCATGAAAAAGCTTAAAAAATCGGAGATGCTTCGGAGGGGCCAGGTGGAGCATGTGAGAGCTGAAAGAAATCTGCTTGCTGAAGTTGATAGCAATTGCATCGTGAAACTCTATTGTTCTTTTCAAGATGATGAGTTTCTTTACCTTATTATGGAGTATCTACCTGGTGGAGATATGATGACTTTATTGATGAGAAAGGATACTTTGACTGAAGATGAAGCAAGGTTCTATGTTGGAGAGATAGTTTTGGCCATTGAATCTATTCATAAGCACAATTACATTCATAGAGATATTAAGCCTGACAACTTGCTTCTTGATAAATTTGGGCACTTGAGACTCTCTGACTTTGGACTATGCAAGCCATTAGATTGCAGTACACTCCAAGAACAAGATTTTGATATGGCGAGTACCCGTAATGGGGCTGGACAGACTGATGAGCGCTCCGGAACTCCTGCACGCACTCAACAAGAGCAACTACAACATTGGCAGAAGAATCGGAGAATGCTTGCTTATTCCACAGTTGGTACGCCAGATTATATTGCTCCAGAGGTTTTGTTGAAGAAAGGTTATGGAATGGAATGTGACTGGTGGTCACTTGGAGCTATTATGTATGAAATGCTTGTCGGATACCCACCATTTTACTCCGATGATCCAATGTCAACGTGTCGGAAGATAGTGAACTGGAGAACTCATTTGAAGTTTCCGGAGGAGGCAAAGCTATCTCCCATGGCAAAAGATGTCATCAGTAGACTACTATGCAATGTTAACCAAAGGCTAGGAACAAATGGCGCAGATGAAATTAAGGTTCATCCGTGGTTTGAAGGTATTGAATGGGAGAGGCTATACCAAATGGAAGCTGCATTTGTTCCCGAGGTTAAAGATGAGCTAGACACCCAAAATTTTGAGAAGTTTGAAGAGTCTGACTCGCAAAGCTGTACTTCATCTAAATCTGGTCCATGGAGAAAGATGCTCTCATCCAAGGACATCAACTTCGTCGGATACACTTACAAGAACTTCGAAATTGTCAATGATTATCAATTGCCTGGGATGGCTGAATTGAAGAAAAAATGCAGCAAACCAAAAAGACCGTCAATCAAGTCACTCTTTGATGGCGAGTCGGAGGCATCAGATGCAGATGCATCTGATGCATCTACTTGTAGTCAGCCCACCGAAGGTAGTAGCTTTTCGCACTCAATGACTTCTCAACTGGATGGATTTGAAAAGAGGAAAGAGTCGATGTAATGTGTTGCTGCTCTGCGTATCATTGGATGAAACAGCGGGAGTTCTGATTCATTAGCTAAATCTCAGTTGGAATTTTTGAGTAACATAGGTCCAATGTAGGACGATGTGTTCTGCATCAAAATTCTTTGAGCGAGTTCGGTTTAACAGAAAAATTAAGTTCAAGCAATGGAGGAGGAGGCGGAATTTTGGTACCTAACATACCTTGGAGTTGACCTGAGCTTTCGTCCGTGGCAGCATTGTTCGTAGTGAGGAGAATAACAGATCTGAAGAAGGTGAATAACAGATCTCAATAGTTATCATATCATTCTTCACCATTGAAGTTTAATATTCTTTTACTTGTCTTATTTTTTCCCACATCTAATTTGGTGGGGTTATATCAACAATCTGTTGTACAAAAAGACACCAAATCGATAGCATATACACCAATATTTCAGTGTATATAATACAAGGCAAAAGCAATTTGTTCCATACCAATTGATTGTTTCTT ATGGATTCGGCGAGGAGTTGGTTTAATAAGCTTCAACCAAGAGATAGGTTGAGGGGTTCTTCAAAGAAGAAGGATAGTATGGGAGGAAATGAGGATTCTACGGAACAGACAGATGAAGAGGCGCTCTCTAATATCACAAAGCAGAAGGTTGCTGCGGCGAAGCAGTATATCGAGAACCATTACAAGGAGCAAATGAAAAATCTGCAGGAGAGAAAGGAACGACGAAATATATTGGAAAAGAAGTTGGCTGATGCTGATGTTTCTGAAGAAGATCAAACCAATTTACTTAAATTTTTAGAGAAGAAGGAAACTGAATACATGCGCCTCCAAAGGCACAAAATGGGTGTCGATGATTTTGATTTACTAACAATTATTGGGAAAGGTGCTTTTGGGGAGGTTCGTGTTTGTAGAGAGAAGACTTCAGGTCAGGTGTATGCCATGAAAAAGCTTAAAAAATCGGAGATGCTTCGGAGGGGCCAGGTGGAGCATGTGAGAGCTGAAAGAAATCTGCTTGCTGAAGTTGATAGCAATTGCATCGTGAAACTCTATTGTTCTTTTCAAGATGATGAGTTTCTTTACCTTATTATGGAGTATCTACCTGGTGGAGATATGATGACTTTATTGATGAGAAAGGATACTTTGACTGAAGATGAAGCAAGGTTCTATGTTGGAGAGATAGTTTTGGCCATTGAATCTATTCATAAGCACAATTACATTCATAGAGATATTAAGCCTGACAACTTGCTTCTTGATAAATTTGGGCACTTGAGACTCTCTGACTTTGGACTATGCAAGCCATTAGATTGCAGTACACTCCAAGAACAAGATTTTGATATGGCGAGTACCCGTAATGGGGCTGGACAGACTGATGAGCGCTCCGGAACTCCTGCACGCACTCAACAAGAGCAACTACAACATTGGCAGAAGAATCGGAGAATGCTTGCTTATTCCACAGTTGGTACGCCAGATTATATTGCTCCAGAGGTTTTGTTGAAGAAAGGTTATGGAATGGAATGTGACTGGTGGTCACTTGGAGCTATTATGTATGAAATGCTTGTCGGATACCCACCATTTTACTCCGATGATCCAATGTCAACGTGTCGGAAGATAGTGAACTGGAGAACTCATTTGAAGTTTCCGGAGGAGGCAAAGCTATCTCCCATGGCAAAAGATGTCATCAGTAGACTACTATGCAATGTTAACCAAAGGCTAGGAACAAATGGCGCAGATGAAATTAAGGTTCATCCGTGGTTTGAAGGTATTGAATGGGAGAGGCTATACCAAATGGAAGCTGCATTTGTTCCCGAGGTTAAAGATGAGCTAGACACCCAAAATTTTGAGAAGTTTGAAGAGTCTGACTCGCAAAGCTGTACTTCATCTAAATCTGGTCCATGGAGAAAGATGCTCTCATCCAAGGACATCAACTTCGTCGGATACACTTACAAGAACTTCGAAATTGTCAATGATTATCAATTGCCTGGGATGGCTGAATTGAAGAAAAAATGCAGCAAACCAAAAAGACCGTCAATCAAGTCACTCTTTGATGGCGAGTCGGAGGCATCAGATGCAGATGCATCTGATGCATCTACTTGTAGTCAGCCCACCGAAGGTAGTAGCTTTTCGCACTCAATGACTTCTCAACTGGATGGATTTGAAAAGAGGAAAGAGTCGATGTAA MDSARSWFNKLQPRDRLRGSSKKKDSMGGNEDSTEQTDEEALSNITKQKVAAAKQYIENHYKEQMKNLQERKERRNILEKKLADADVSEEDQTNLLKFLEKKETEYMRLQRHKMGVDDFDLLTIIGKGAFGEVRVCREKTSGQVYAMKKLKKSEMLRRGQVEHVRAERNLLAEVDSNCIVKLYCSFQDDEFLYLIMEYLPGGDMMTLLMRKDTLTEDEARFYVGEIVLAIESIHKHNYIHRDIKPDNLLLDKFGHLRLSDFGLCKPLDCSTLQEQDFDMASTRNGAGQTDERSGTPARTQQEQLQHWQKNRRMLAYSTVGTPDYIAPEVLLKKGYGMECDWWSLGAIMYEMLVGYPPFYSDDPMSTCRKIVNWRTHLKFPEEAKLSPMAKDVISRLLCNVNQRLGTNGADEIKVHPWFEGIEWERLYQMEAAFVPEVKDELDTQNFEKFEESDSQSCTSSKSGPWRKMLSSKDINFVGYTYKNFEIVNDYQLPGMAELKKKCSKPKRPSIKSLFDGESEASDADASDASTCSQPTEGSSFSHSMTSQLDGFEKRKESM Homology
BLAST of MC09g0806 vs. ExPASy Swiss-Prot
Match: Q9Y2H1 (Serine/threonine-protein kinase 38-like OS=Homo sapiens OX=9606 GN=STK38L PE=1 SV=3) HSP 1 Score: 424.5 bits (1090), Expect = 1.9e-117 Identity = 217/444 (48.87%), Postives = 298/444 (67.12%), Query Frame = 0
BLAST of MC09g0806 vs. ExPASy Swiss-Prot
Match: Q15208 (Serine/threonine-protein kinase 38 OS=Homo sapiens OX=9606 GN=STK38 PE=1 SV=1) HSP 1 Score: 417.5 bits (1072), Expect = 2.3e-115 Identity = 216/452 (47.79%), Postives = 297/452 (65.71%), Query Frame = 0
BLAST of MC09g0806 vs. ExPASy Swiss-Prot
Match: Q5R8M1 (Serine/threonine-protein kinase 38 OS=Pongo abelii OX=9601 GN=STK38 PE=2 SV=1) HSP 1 Score: 417.5 bits (1072), Expect = 2.3e-115 Identity = 216/452 (47.79%), Postives = 297/452 (65.71%), Query Frame = 0
BLAST of MC09g0806 vs. ExPASy Swiss-Prot
Match: Q7TSE6 (Serine/threonine-protein kinase 38-like OS=Mus musculus OX=10090 GN=Stk38l PE=1 SV=2) HSP 1 Score: 415.2 bits (1066), Expect = 1.1e-114 Identity = 211/444 (47.52%), Postives = 296/444 (66.67%), Query Frame = 0
BLAST of MC09g0806 vs. ExPASy Swiss-Prot
Match: Q9NBK5 (Serine/threonine-protein kinase tricornered OS=Drosophila melanogaster OX=7227 GN=trc PE=1 SV=1) HSP 1 Score: 414.8 bits (1065), Expect = 1.5e-114 Identity = 222/451 (49.22%), Postives = 298/451 (66.08%), Query Frame = 0
BLAST of MC09g0806 vs. NCBI nr
Match: XP_022156595.1 (serine/threonine-protein kinase 38-like isoform X1 [Momordica charantia]) HSP 1 Score: 1107 bits (2862), Expect = 0.0 Identity = 558/558 (100.00%), Postives = 558/558 (100.00%), Query Frame = 0
BLAST of MC09g0806 vs. NCBI nr
Match: XP_038896153.1 (serine/threonine-protein kinase 38-like isoform X1 [Benincasa hispida]) HSP 1 Score: 1001 bits (2587), Expect = 0.0 Identity = 517/562 (91.99%), Postives = 536/562 (95.37%), Query Frame = 0
BLAST of MC09g0806 vs. NCBI nr
Match: KAG6593059.1 (Serine/threonine-protein kinase CBK1, partial [Cucurbita argyrosperma subsp. sororia] >KAG7025469.1 Serine/threonine-protein kinase CBK1, partial [Cucurbita argyrosperma subsp. argyrosperma]) HSP 1 Score: 995 bits (2573), Expect = 0.0 Identity = 501/559 (89.62%), Postives = 529/559 (94.63%), Query Frame = 0
BLAST of MC09g0806 vs. NCBI nr
Match: XP_023514772.1 (serine/threonine-protein kinase 38-like [Cucurbita pepo subsp. pepo]) HSP 1 Score: 993 bits (2568), Expect = 0.0 Identity = 500/559 (89.45%), Postives = 529/559 (94.63%), Query Frame = 0
BLAST of MC09g0806 vs. NCBI nr
Match: XP_023004815.1 (serine/threonine-protein kinase 38-like [Cucurbita maxima]) HSP 1 Score: 993 bits (2567), Expect = 0.0 Identity = 499/559 (89.27%), Postives = 528/559 (94.45%), Query Frame = 0
BLAST of MC09g0806 vs. ExPASy TrEMBL
Match: A0A6J1DQR8 (serine/threonine-protein kinase 38-like isoform X1 OS=Momordica charantia OX=3673 GN=LOC111023469 PE=4 SV=1) HSP 1 Score: 1107 bits (2862), Expect = 0.0 Identity = 558/558 (100.00%), Postives = 558/558 (100.00%), Query Frame = 0
BLAST of MC09g0806 vs. ExPASy TrEMBL
Match: A0A6J1KVM7 (serine/threonine-protein kinase 38-like OS=Cucurbita maxima OX=3661 GN=LOC111498002 PE=4 SV=1) HSP 1 Score: 993 bits (2567), Expect = 0.0 Identity = 499/559 (89.27%), Postives = 528/559 (94.45%), Query Frame = 0
BLAST of MC09g0806 vs. ExPASy TrEMBL
Match: A0A6J1HA71 (serine/threonine-protein kinase 38-like OS=Cucurbita moschata OX=3662 GN=LOC111461001 PE=4 SV=1) HSP 1 Score: 993 bits (2566), Expect = 0.0 Identity = 499/559 (89.27%), Postives = 528/559 (94.45%), Query Frame = 0
BLAST of MC09g0806 vs. ExPASy TrEMBL
Match: A0A0A0K5D9 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_7G373510 PE=4 SV=1) HSP 1 Score: 982 bits (2539), Expect = 0.0 Identity = 509/562 (90.57%), Postives = 528/562 (93.95%), Query Frame = 0
BLAST of MC09g0806 vs. ExPASy TrEMBL
Match: A0A1S3BHN3 (serine/threonine-protein kinase 38-like isoform X2 OS=Cucumis melo OX=3656 GN=LOC103489741 PE=4 SV=1) HSP 1 Score: 982 bits (2539), Expect = 0.0 Identity = 508/562 (90.39%), Postives = 528/562 (93.95%), Query Frame = 0
BLAST of MC09g0806 vs. TAIR 10
Match: AT1G03920.1 (Protein kinase family protein ) HSP 1 Score: 830.9 bits (2145), Expect = 6.2e-241 Identity = 420/575 (73.04%), Postives = 480/575 (83.48%), Query Frame = 0
BLAST of MC09g0806 vs. TAIR 10
Match: AT2G20470.1 (AGC (cAMP-dependent, cGMP-dependent and protein kinase C) kinase family protein ) HSP 1 Score: 823.5 bits (2126), Expect = 9.9e-239 Identity = 416/541 (76.89%), Postives = 469/541 (86.69%), Query Frame = 0
BLAST of MC09g0806 vs. TAIR 10
Match: AT4G14350.1 (AGC (cAMP-dependent, cGMP-dependent and protein kinase C) kinase family protein ) HSP 1 Score: 818.9 bits (2114), Expect = 2.4e-237 Identity = 410/553 (74.14%), Postives = 466/553 (84.27%), Query Frame = 0
BLAST of MC09g0806 vs. TAIR 10
Match: AT4G14350.2 (AGC (cAMP-dependent, cGMP-dependent and protein kinase C) kinase family protein ) HSP 1 Score: 818.9 bits (2114), Expect = 2.4e-237 Identity = 410/553 (74.14%), Postives = 466/553 (84.27%), Query Frame = 0
BLAST of MC09g0806 vs. TAIR 10
Match: AT4G14350.3 (AGC (cAMP-dependent, cGMP-dependent and protein kinase C) kinase family protein ) HSP 1 Score: 818.9 bits (2114), Expect = 2.4e-237 Identity = 410/553 (74.14%), Postives = 466/553 (84.27%), 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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