MS015050 (gene) Bitter gourd (TR) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: polypeptideCDS Hold the cursor over a type above to highlight its positions in the sequence below.ATGGCGCGCAAGAAGATCAGAGAGTACGATTCCAAGAGATTGTTGAAGGAGCATTTTAAAAGAATTTCTGGCCGTGATTTACCGATCAAATCAGCGCAGGTAAGTTCATTTTTCTTCTTCCGACTATTGTCGAGTGTCGATATCTCCGCTGATGGAGATTCAGGATCGTTTGATTTATTATTTTTGTTTTTCCATGTTCGGTAGATGCCTCTTCACAAACACTATCCATTGTTAATTGGCGCCATTACTTTACTTAATAGTGTCAACGAGACAAAACCATAAATTTCGGACAGTTTTTAGGGTTACTTTCGGATGCGTGAAAAGTGCTTCTAGCCTTATTTTGAAACTTCTGGAAAAAAAATATCCACAAATGATTTTAGGAGAAAGAAAAGAAGTGTTTTAATTTTGAAGTACTTTTGCTTACTCTTAATTCTTAATCATATAAAATCACACTGTATATTGAATCTTATTTTGTTAATCTTTCAATATTTGCAATAATGCTTTATTTCCGACATGCTATAGGTTAGTGAATCGACCGATTTCAATGAGCTAGCTGAGAAGGAACCCTGGCTGTCATCGTCAAAATTGGTTGTGAAGCCTGACATGTTGTTTGGAAAGCGTGGTAAAAGCGGTTTAGTTGCACTAAATCTAGACTTGGCTGAAGTAACTAATTTTGTGAAGGAACGTCTGGGGAAAGTGGTACTATATATCAACTTCTTCTCCTCCATCTCTTCATCAGCAAGCATTTCAGTTAATTTTACATTTTATTCTTTTTTAGTGATTACATATTTACTTGTTTCTCTTTTGGTTTTCTTTCAAATACTAGGTGGAGATGAGCGGATGCAAGGGACCCATTACAACATTTATAGTGGAGCCTTTTATCCCACACGACGAAGAATTTTATCTGAATATTGTCTCAGAAAGGCTTGGCTGTAGTCTAAGCTTTTCAGAATGTGGAGGAATTGATATTGAAGAGAACTGGGATAAGGTCTGGTTGAATGCTTTTATTAGCAGTTTGTCTCAGAAGATACAAAAGTTCTTTTTTTTTTTCTTTTTTCTTTTTGTCATCACATGGTCTTTTTATACCACTTTCATGATGATATATGATCTCTTTAGGTCAAGACCATCTTTGTTCCAACAGGAGCATCCCTTACATCGGAAATATGTGCTCCACTTGTTGCCACCCTTCCTTTGGAGGTACTTTCATCACAAATAGTTCCTGGTTCATATTCCTACTTCTAGCGTTCTGTTGCGGTTTTCCTGATGAAATAAGTCAACAGTATTCTAGCATAGGATTCAGCAATTCAGAATGAACTTTATCCTGCCATATTTTTTCTGTGAAATTTTCAGCATGTTTTGTGCCCACTCTAGCTATAGAGAACTGACACGAATTTTGCTTTTTAATCCAGATCAAGGGGGAAATTGAGGACTTTCTCAAGTCTGTTTTTTCTCTATTTCAAGGTGCTCTACTTTTATTTTTTCCTGATAATGGATATTATAGCAGAAATAGCTTCAGTGGCTTGTAGAACTCCATCTCAACTTCTTGGATTCATGTTTGCCAGATTTGGACTTCACTTTTCTGGAAATGAATCCCTTCACATTGGTTGATGGAAAGCCTTATCCACTGGACATGAGAGGCGAACTGGATGATACTGCTAGTTTTAAGAATTTCAAAAAGTATGACCTTTTTTTTCCCATACATTTCCCTTTTTGAACAAATTAGATGATCACAATTTTATTGGTGCTGTTAATTCTATTTATGCTTTAGTTGCTATATTTATTGTTATCTTATACTGCGACTATGTAGGTGGGGTGATGTTGAGTTCCCATTGCCGTTTGGAAGAGTTATGAGTGCAACAGAGAGCTTTATTCATGGCCTAGATGAAAAGGTGAAAAAAAAAACTCCCATACATCTTTCAGCAAGCCTCTTTATCTCTTTCATTACTTTTTGACTCTGCTAGTGCCGTTTTTATGTCAAAAGAGAGATTTATCGGCATTAGTAGTTCTTCAGCCTCCAAATTTTCATATGCACTTCTATGTCTGGTAATCCAATAGAGAACTCTTAGGATTCTGATCTGAATTAAACTCTTAGGATTCTGATCTGAATTAAGGATATCAAATACTTAAAGCTGAAGGGAAATCATGTAGTGCAATGCAATATTGATTCCAGAAGAACCAGTTCTTTAGGGATTGTATTGAACTCGATAATATGTATTCACATTTGCTTTACCTGCAGACAAGTGCATCATTGAAATTCACTGTCTTGAACCCAAAAGGAAGAATATGGACCATGGTTGCTGGAGGAGGTGCAAGTGTCATTTATGCAGACACGGTACACCTTCCATATTGAGTCCCTCTAACTCAGTGTCCTGTTGCTATTATGTACTAATGAAACCTTCCTGTTACTGTTAGGTTGGAGATCTTGGTTACGCCTCCGAGCTTGGGAATTATGCAGAATACAGTGGAGCACCAAACGAAGAGGAGGTGTTACAGTATGCCCGAGTTGTTATTGATGTAAGTGCTCTTCCTCCACCATAAGATCTGATGATCAACAGTTACTCTTTCCTTGTTTTTTCCTACTGGATTTGATAATTGTTCTGAGGTTGGTTGTGATGCCAATGATAAGGAAAATATCAAAATATCTGAATTCCGGGACAATGGTTTTCATTTTCCATTAACATTAACGTGGTTCTGTTTTCATTCTACTTTTCTTTTTTCTTTTTTTGGTAGTGTGCAACTGCAGATCCTGATGGCCGTAGTAGAGCGCTTGTGATTGGTGGAGGAATAGCTAACTTTACGGATGTAGCTGCTACATTTAATGGCATAATTAGGGCCTTGAAGGAGAAGGTAAGATCTAGCAATGAAGTTCCCAGACAAACTGTAGAACCTTTTTCCCAATTAGCAGCTAAACATCTGAACTCGTTTCCCCCTCTCATTCAGGAAGCAAAGCTTAAGGCAGCAAGAATGAATATTTATGTAAGGAGAGGAGGTCCTAACTACCAGAGGGGCTTGGCAAAAATGCGGGCACTTGGAGAAGAACTCGGCATTCCAATTGAGGTACATCGAATCATTTCACAGTCATGCCTATAATTTTAACACTCAGCAGTAGCGATCAAATTAGTGAGAGGCTCAGAAATTTCTTCCATGTTCTGTTGTAGGTCTATGGCCCTGAAGCAACAATGACTGGTATATGCAAGCAAGCCATTGAATGCATCACCGCAGCCGCGTAAGTCTCCGTTGGAGTATTCTGACTTTTTCCTCTAACAACTATCATCTATACCAAAGTTGGAGAATCTGATAGACTTCTTTTTTATTTCCCTCTATCCCATCCCTTGGCTTCTTAACGATAGTTTCATTCAAAAATTTGCCATGGGTCTTTTATGACAAGGGTAGGAAAAGATACTGCTAATGGCAATGTATGGATATTAAATAAAGAACCTTTTAATGTTTAGTCTGAATTGAGGCTAATTTTCATGGGTCATGAAAGTTCTGTTATGTGTTATCTGTACTAGCTTAACTCTTTAAAAGTGGTTTTCTCTGAGATTATAGGCACGATATGATAATTGACTTTAAAACAAAGATAAAAACTTGTCAAGGACCTTCAGATCTTCGGATAATTGTAAATGTTCTTCCTAGTGCACCTTTTCTCCTGGGAGAATTTTGATTCTTGAAACATAGCTGTAAAAGAAAATGTGCAACTTGCACCTTCATTGGTGTCAGTTCTCTACCAACAACCATGCGTTTTTCTAAAGAACTGCATGAGATCTTCTCTACTTCTACCCAGTGTCAAACTTTAATCACAATCTTAAGATCTTTTATACCAGAACTTTTTTATTCCTATCATTCTTGTCGTGCGTGCTGGTTTCTTACGAGCACCCTGATGGTAACATCGGGCCTGGATGAGCTGAGCTTATATACTTGTTTATAAAGTTTGAAGAACTTTGAAAATGTCCACCCACATCCAATACCATTCAATTTCTCAAGAACAAAATTTAGAAAAATTAACCACGGACGACATATTGATAAGGAAGAACTCTAGGCTAGAGCTTGTAGACTATGGCAAGGGGAATGTAATTTTCTAACACTTGGATACTCATGGTACCAGAACCCATGGTGATCACCTATTTTTGGATAAAACATCTTTGTATTTCTTGACAGTTGTATGTTGTAGAATCATGCTGCACCCCATGAGAATAGTTCCCTAGCGTGGTGCATGTAATCTAGTTCGAATACTCATAATATTAAAGAAAAATCAGAAAAAAGGAAGTCTGTTAAAGCTAGCAACATTTGAAATGCAAACCCACCAAGGAAACCGAGAGCAACTACCACCCTCCAGTCTTAAAAGCTCTCCCTAATCATCACTAAAAAAAATAATTCCCTATTATTATTATTTATTTTTTTTTTGGAAAGTTGGGAGTCGTAACTTTGCCCTATACGGATACCCATGCCTACCCCAAGGCTTAGACCGAAAAGATATGAAGGGATTTGGTATTAAACTCATCGGAAGGTTCGAACTTGAGACTTTGGATAACCAAGAGATCATCCCAAATCCTTGCCAATCAAGTTGCCTTTGGATAATCATTTGGAGAAACATCTTCCAAGTGGTTGATTGGGAATCACTTAAGTGATAGATTTTTTCCAAAATCGCTTATGATGTTGGGTTTTATGTCCTAAAACTCATAGTTTGAAAATGACAGATATACTTTTATCATTCAATAAAGTTGTTATTGAAGGTTTTAATCAATAAGTAGTTATTGATCCAATAAAATGTTCTTACTATATCTAAATCCAATAAAATAAAGGATCCTAGACTGTTACCTGAGACTCAAACTCTATGTAAGAGACATAAATATGGATCAAGTTTGAGTTAACAGTCTAAATGGTCTATAGTATAGGAATAAGGTTGGGCGCCTTATTCTGGGGACACTATGGATGCGGCCCACTTTGTAGCTAGTACAAACGATGTGATCCTAATTCGTTCATGTGAAGACATGCGAGTGGGGGTGTCCCGTGCAAAGAGTTTGCATAAGACCGGACCATGAGATAGTCACTTTTACTTTATAACACCGTTTACTGTTTGAAACTGACTATCTCAACTTTGATGGCCTAGGTAACTCGATCTTAATCCTGAGCTAACTATGAACTTCTGTTTACTCGGGATTATCCTTAGATCTGCATGGGTGAGAGCAGCTCAACAGCGCTGGCTCAATAAGCCTCCCATTTCAGGGGTAAGACCCGGTAGATAGCTAGGGACATAGGGTGCAAGAAGGAATTCACTTCTACCCAATTTTGGGATAGTAGAGAGGTTGTTCTCTTAAGGGCTGAATCCAGGTCTTGAACAATTGGCGCCACCCTCATCAAAAGGTTTGAGAGGATTTTTTGATTTGATAGTTGGACTACAAATCATTGTTCATCAGAGGATTAGTGGGACTTAAGGAACAAGAGGTAATTACAGGGGTAAAGCGGTATTTTGACCCAGCTGTAATTACGAACAACCTGTGAAGGGTCGACTTACCGATCATGGTTATATCAAATGGACATAATATATCTACAGTGAGGAGAGTGCAGCTACGGGCTTTAGTGGAGTGACCGCGTAGTTAACGATTGTTGGTTAACTAGGTTAAAGAGTTTAACCGGTTAATCTCGGATCGTTGGAGCTCATGATCTGTAGGTCCATAAGGTCCCCTGGCTAGCTCATATAGGAATAAACTTGGAATAATTTGAAGGAATAATTCAAATCGTACGAATTAGGTTAATCATATGAGATATGATTAAGTAATTGATATATGATATCAATTTGAGAAATTTGGACAAAATATTTAAATAGGATTTAAATATTAAAATTATGAATGCGGATTCATAATCGGAGGCATGGATTTCATCAAACATCGGATTTTGGAAAAAGTCAAATAGTTGACTTTGACCAGAGAAAGTCAAAGGTTGACTAAAGTAGATTAAAATAATGTTTTTAACCAAGTTGGTGGAAAATTCCACTAACTTGTTGAGTGGAACATTTAAATAATCTCAAAAATCCACTTTTTGACACTTAGCCATGCATGCATAAGTGGAATGTGTGTTGTAAGTTTTTTGTGAACTTAAACATGCATTTTGACACTTAGCCATGCCATGCATGAGTGGAATGTGTGTTGTAAGCTTTTGGTGAACTTAGACATGCATTTTGACACTTAGCCATGCCATGCATGAGTGGAATGTGTGTTGTAAGCTTTTGGTGAACTTAGACATGCATTTTGACACTTAGTCATGCCATGCATGAGTGGAATATGTGTTGTAAGCTTTTGGTGAACTTTGACATGCAAGAATTGCATGTAATTTGCCTATTTAAGAAGGCTTTTGTTCAAACATCTAAATCTCTTGGAACCTTTGGCCATTTGATGTGTTTTCAAAAAGCTTACATAACTCCTTTTAGCTCCACTTTTCTCTAATTTTTTCCTTCTCTAAAAAGAGTCCCACCACTCTATTCCAAGTCTTGAGAATAGTTAGGAAGATCTCTTGGTGGTCTTTCATTGGAGCTATTTGAAGATTTTTGAAAAGCTACAAAGGTTTGTATTTTTCTCTACTTATCTCTAAGCATCATAATGTATGATCATGCATGTTTAATTCTAGGTTGTATTATGCATCTTGATTGTTATTTCGATTCTTGCTCACTTCCGCTGCGCATGTATGTATTTTTTCCATCATATGAATCATTATTAGACATGTATATTTTAAAATGGAAGTGATTTGGCATTAGTGAAAGTGATTCTAGACTTCTATTCATACTAAAATCGTTCCCAAGCACGCCTTTAAAGTGACAAAAAATGTTGTCACTTAAAATTAAATAACCTAAACTCTTAGATATAATAATTTAAAATTTTCAGTCTGTAGCTGAATTAGTTAAGACATATATTATCAACTAAAAAATTAGAGATTCAAATGCCCGCCAAAAAAACCATATTTTGAAGTGATATGTTCATTGTTTACAATCCTTTTGAGTTATTGTCACACCTTTCACTTCATATTGATGGCATGGGTTAGTTTAACTCTTTTGTGGCCCTTCCATTATCTCCTCTTCTTATCTAATGGGGATACCAAAAGTCTATTAAATAAGTCCTCTTAGCTCTTATTAATGAAAAGATATGCCAATATGATGATACAATTAGAGATTTCCAAAAAGAACAAGGCTTTTTTCGAATAAGCCAATTCATTTGGGATCCTGTCTATTTTTCATGCAGAACCTATTTAAACGGGGTGGAGAATTCTTGTTTAAATTTCATATGGGTGAGGATGGGGAAAGTTTTTTCTTCGTCGCCTAAATGGGGACGAGGACGGAGAACGTGTTCCCTATTCCCCATTCTTCGTGCACCGCATATATATATATATACACACACACACGATAAAACAATTTTATTGCTTTCTCTATGTATAATATGTATAATAAAAAAATCATATTCTTTTCTGCCACCCATCCAATATATGTATATATATAGAGACGGGTTAGACCATGTAAATGTGGTTTTATGATTAGAAATAAAAAATTAATTAGAAATTTCTTTAGAAAAAATTATTTAATTGTGAAATAATTTTTAAAAATAAAAATAAACAAAAAAAATCCCCTATAGGGAACCTAATCCCCGCGAATTCTCGGCACTAAATCCCTGCCTCAATCCCCGCTAAATTTCATGCAAAATATCACAAGAATGGAGAATTAAATAGGAGGCGGGGAAGCCTTCCACGTCCCCACCCTATCCCATGAACATTCTTAGATATGAGTCTAAACTCTAAAGAAAATTGATGAAATTTATATAAGTATATCATTTTTTTTATCTTATTAAAAAAAACAATTTAACATTTGAACCGAGTTTTTTTAATGCATCAATTATAATACCATGTTTTTCAAATATCTAAAAAAATGTTAAAAAGTATGATTAAATTGTGGCCCTCCTTGTTTAGTCTGTAAAGTCTAATCGTCAAATAAGCTTGTTTGAAGTATAATTGAGAAAAAAAAAAAACTCAAGAAAGTTAGGTAAAAAGTTGAGGGTAGAAAAGATCAACATTCCAAATATTCAAACATATTTGAATTGAGATAAAGCCTAAAGATATAAATAAGAACATCTCAATCAACATTATGACTCTTAGATACAACCATGTGGTAGATAACATGTAGTACAATGATAATATGAAGAGTCCCTCAATATTGTTCCAACAAGTGGTGGTTTTTTATTACTCAATAAATTCATGACAGTTGTAGATTGTAGAATCCTACTATCCGTCCCATGAGAATAATTCCTTAGTGTGGTGCATCTAATCTGATTCAAATACTCACGTTAGTAAAATTAAAGGGGAAAAAAACAAAACAAAAGAAACAAAAACGGCTATGAAAACTAGCAACATTTGAAATAAACCTACCACCCTTTACAATTCTTTGTAGTTATTGTCTTACCTTTCCTTCATATTGAAGGCATTGGTTAACTCTTTTGTGGTCCTTTCATTTTGTCCCTCTTCTTATCCATGGGATATTAAAAAGTCTATTAAAGAAGTTCTCCAACTCTTATTAATGAAATGATATACCCTTTTCTCAAAAAAAAGATATACCCATTTGGGATGAATCTAAACCCTAAACAAAATTGATCTAATTATAAAGTATATCATTTTGTTATCTTATTTGAAGAAAGACAAGTCAATCTATGGAAGAAGTTTTTTCAATGCATCAATTATAATACAATATTTTTCAAATATCTAAAAAAAATGTTAGAAAGTATGATTAATTTGTTAAACTCAAAAAGAATCTCTTGTGGTTCTATAGGGTTAAATTTGGGGCAGAAAAAAACCAACATTCCAAATATTCAGACACTTCAAATCTTATGGTGGAAATTGTCCCAAATTGTCCCAAAGTGGAAATTTTCTAAAAAAAAAATCTCTTGTGGTTCTATTGGAAAGTGTCCCTTATTGGAGATGCAAGCATATTGTTGCAAATTTGAATTGACAAAAAAGTTGAAACATATCAATGAGAACATCTCAATCAACATAATGACTTTTAGACAGAACCATATGATGGATAAAATGTACTTATGACAGCAAAGAAAATTTAATCGTTCCAATAAGTGATGACTTTTTGTAAATCGTAGGTCCCATGAAAATAGTTTCGTAATATGGTGTTTGCTAGTTCGAACACTAACAATTAGAAGAAAAAAGATAGAAACTTTTTGTTTCTAAAAAAAGCTAGCAACATTTCAAAAACAAACCTTCTATAAGAAACGCCAGATTTTTTTTTAACCACTCTGAACTATATTCATGTATCTATATTTTATTTTATTTTATTATTATTGTTTTTAAATTTTGGGATCTCTTAGTTTTGTACTAACATAATTAACTTTTTCTTTAATGCAAGATACCAAAAATTTTTAACTATCTATCTTTCAATAAATTGTGGACCTCACAAGTTTTAAATACAGTTTACTGTAAAGTTGTGGACCCATAAAATCAATCTCTTCAAAACAATTAAAATTTTACAAAACATTTCAAAAAAATTAATAAATTTTAAAATAAATCTTATCATTATAACAACCATTTAAAAAATGTATTTTCTTTTTCTAATTTTTTTTTTTTTTTTAAAAAAACACTACTACCTCAAAAGATCTCCAAATTAGAGTGTGTTTACGAGTGACGGTAGAAACAGTGATTTTGAAAAAAGAGATTTAGGACGTGTTTTAGAGTGATTTTGTCATTTTGGAAAAAGAGATTTATGGTGTGTTCGGAAATGATTTTATCATGACAAAATAACATTTGTTATTGTCAAAATCACTCTTGTTTTCATGGATATGTTTGACAAATTAAAATTTTATTTTAGGAAAATCTAAAATCACTTAAAATTGATTTGTAAGTTATCGTGGCGATTTTGGAAAATCAATTATTCTTAAATCATTTTTTTTAAATCACTTATTCTACTGTCACTCTCAAATACACCATTAAAAGTAATTAAAATCAGAACATGAACATTCATCGATAGGATGTTTTGTTCAGCACCGAGTTAAAATAACAGTAGTTGGTCCAAGGAATTTCAATGTTGGCCTTCTGGGAGGGAGGAAATTACTTCACCATCATTTAATTGGTTGTTTACAAAAATTCAGACAAATCCGAATTCAGTGTACGATAGATAGAAGGTAAGGTTGTAAAGGTTGGAAATATCGAACACTTAATTTTATGAAAATATTATCTATAGATTTTTTTTTTCAATTAAGTATTTTACCATTTATAAATAAGTTTAAAATTATCAATATTAATAATACATGTCAATATTAGAAGTATTTTATTGATATTTGATGAATTTTTTGTGATACTATAAAAATGTTGATTTACCAATAATATTATGTCAAATTCATTAATATATAGAAATAGTTATGGAAATATTGATATATAGATGAAAATTTTATAACTTAGTGAAAAAGACAGCTAAATTAATGGAAATTTAATACATAGAAAATAAAGTTACAATACGGAAACTATATAAATGTATTTAATGTAAAGAGAGTACTATTGCAGAGGTCTTTCATTATTGTTTTCTAAGTAGGAAACAAATGTATTTATTTATCATATAAACTTTATTGTTTGTACCAAATTTCTACATGACAACTACTCAACTGATCGAAACATATATCAAATTTGACATTGATAGATTGAAAGATAAATGGTTTAGAATTTGTCTTTATGATACGATTTATGATATGATATATGAATGTAAGATTTAAACTCACGATTTTTAATTAAAATAAGTATTTTAACTGGTTGAGGTTGATTGGGCGTTCAAATTTTTTTTCTGTCAAATTTCCATACTTATCTAAAAGACATGTCTAATTCAATTAAAGCCACTTAAAAGGTTAACATCATGGATATTTTGAAAAATTCAATTACTTGAAAACTCAGCCCAAACAATATAAATTGAGTTTGAAAAAAAAAAGTTTTTAAAATTAAGACTTTATTAATTTAATTAGTTTAAGAATTCACTAGTTGAATTATGCAGGCTTGACATTTCAATATATTTTAAGATAGGACTATGATATTAATATTCGTTCGATATGTCGATATTTTTATGGATTTAAGTTCGACATCGACATGAAAAGTAAATCAACATTTCAATAATACTACAAAAAGAAATTGACAAAATATAAAAAATATCAATAAAATATTACAGACATATACCTAATATTAATATAATTTATTTAGAAAAAAAATATTTATTTATTAATTAAAATATTTTTTATAACTCTTTTTACCATCATTTTCTATCTATATTTCATATAATTGTGACACGACGTTTGATATTCATCTCACCACACATTTTTATATTAAAAGCCATTGAAAAGCAGCCTCAACAAACTCAACTGACAATATTTATTAATTTTCTTTTTCTAAGATTAATTTATCCCTTCTGCATCCACAGACTCCAATCGCGGCCGCCATGTCTGCAGAGGAGTCGGCGGACGAACAAGACGGCACCGCCGTCCACGGCGACATTCTGGAGGCTATTCTCTCTCGCGTCCCTCTAATCGATCTCGCGTCCTCCTCCCGCGTTTCTCAAGGCTGGGAACGCGCCGTTTCCTCCTCTCTCTCCCATTCCAACACCCTCAAGCCATGGCTCCTCCTCCACGCTCAGGCCAGAACCCCTCCCTACGCCGCCGCCTCCTCCGCCGCCTACGACCCCCGGTCCGATCTCTGGATGGAGATCAACCACCCCCCCATCCGCTACGCCGCCGCCCTCCGGTCCTCCCACTCCACTCTCCTCTACACGCTCTCTCCCTCCAAATTCTCTTTCTCCGTCGACCCACTCCACGTCACGTGGCATCACGTGCCCACGCCGCTGATGTGGCGAGTGGACCCGATAGTTGCGCTGGTGAGCCACAGAGCCATCATCGCTGCCGGCACGTGCGACTTCATCGACCAACCACCCGCCGTACACATTTATGACTTGAACTCCAAAACCTGGGACACGTGCGACGAGTTGCCCTCAATCTTCACCGAATACGCGACTGCCACGTGGTTCTCGACTGCCGTTGACGAGGAAAAGCTGTACGTCATGCATAAAAATTCCGCGGCGACATTTTCTTTCGACCCGGTGAACAAATCATGGGCTGGGCCGTATGACCTGAAACCCGACCCGGAGGTCTTTTCGTCGGCCATCGGCCTCGCCGCCGGCCGGTTGGTGGTTGCAGGCCTAATGGGGACGTCGGAGGATGTTAAAAGCGTGAAGATATGGGAGGTGGTGGTCCCCACATCGGAACGTCGGGAAATTGGAGAAATGCCGAAATCGTTTTTGGAGAAACTTCAGGGAGAGAGCCCAGAAATGGCGTCGATCGGGATGACGTCGGCGGGAGATTTCATATTCCTTCACCACGGTTCTGACCCGGTGGAGGTGGTTAAGTGCGAGGTCGTCGGAGGCGGAGACGGCGGTTGCCGGTGGGGTATATTACCGAATGCGGTGGTGGACGACCGAGCCCGGCTTAGGCGGTTGGTTTTCACCAGCTCCAACGTCGGCATCGGAGACTTGCAGAGGGCGCTCAGATCGGAAAGT ATGGCGCGCAAGAAGATCAGAGAGTACGATTCCAAGAGATTGTTGAAGGAGCATTTTAAAAGAATTTCTGGCCGTGATTTACCGATCAAATCAGCGCAGGTTAGTGAATCGACCGATTTCAATGAGCTAGCTGAGAAGGAACCCTGGCTGTCATCGTCAAAATTGGTTGTGAAGCCTGACATGTTGTTTGGAAAGCGTGGTAAAAGCGGTTTAGTTGCACTAAATCTAGACTTGGCTGAAGTAACTAATTTTGTGAAGGAACGTCTGGGGAAAGTGGTGGAGATGAGCGGATGCAAGGGACCCATTACAACATTTATAGTGGAGCCTTTTATCCCACACGACGAAGAATTTTATCTGAATATTGTCTCAGAAAGGCTTGGCTGTAGTCTAAGCTTTTCAGAATGTGGAGGAATTGATATTGAAGAGAACTGGGATAAGGTCAAGACCATCTTTGTTCCAACAGGAGCATCCCTTACATCGGAAATATGTGCTCCACTTGTTGCCACCCTTCCTTTGGAGATCAAGGGGGAAATTGAGGACTTTCTCAAGTCTGTTTTTTCTCTATTTCAAGATTTGGACTTCACTTTTCTGGAAATGAATCCCTTCACATTGGTTGATGGAAAGCCTTATCCACTGGACATGAGAGGCGAACTGGATGATACTGCTAGTTTTAAGAATTTCAAAAAGTGGGGTGATGTTGAGTTCCCATTGCCGTTTGGAAGAGTTATGAGTGCAACAGAGAGCTTTATTCATGGCCTAGATGAAAAGACAAGTGCATCATTGAAATTCACTGTCTTGAACCCAAAAGGAAGAATATGGACCATGGTTGCTGGAGGAGGTGCAAGTGTCATTTATGCAGACACGGTTGGAGATCTTGGTTACGCCTCCGAGCTTGGGAATTATGCAGAATACAGTGGAGCACCAAACGAAGAGGAGGTGTTACAGTATGCCCGAGTTGTTATTGATTGTGCAACTGCAGATCCTGATGGCCGTAGTAGAGCGCTTGTGATTGGTGGAGGAATAGCTAACTTTACGGATGTAGCTGCTACATTTAATGGCATAATTAGGGCCTTGAAGGAGAAGGAAGCAAAGCTTAAGGCAGCAAGAATGAATATTTATGTAAGGAGAGGAGGTCCTAACTACCAGAGGGGCTTGGCAAAAATGCGGGCACTTGGAGAAGAACTCGGCATTCCAATTGAGATTAATTTATCCCTTCTGCATCCACAGACTCCAATCGCGGCCGCCATGTCTGCAGAGGAGTCGGCGGACGAACAAGACGGCACCGCCGTCCACGGCGACATTCTGGAGGCTATTCTCTCTCGCGTCCCTCTAATCGATCTCGCGTCCTCCTCCCGCGTTTCTCAAGGCTGGGAACGCGCCGTTTCCTCCTCTCTCTCCCATTCCAACACCCTCAAGCCATGGCTCCTCCTCCACGCTCAGGCCAGAACCCCTCCCTACGCCGCCGCCTCCTCCGCCGCCTACGACCCCCGGTCCGATCTCTGGATGGAGATCAACCACCCCCCCATCCGCTACGCCGCCGCCCTCCGGTCCTCCCACTCCACTCTCCTCTACACGCTCTCTCCCTCCAAATTCTCTTTCTCCGTCGACCCACTCCACGTCACGTGGCATCACGTGCCCACGCCGCTGATGTGGCGAGTGGACCCGATAGTTGCGCTGGTGAGCCACAGAGCCATCATCGCTGCCGGCACGTGCGACTTCATCGACCAACCACCCGCCGTACACATTTATGACTTGAACTCCAAAACCTGGGACACGTGCGACGAGTTGCCCTCAATCTTCACCGAATACGCGACTGCCACGTGGTTCTCGACTGCCGTTGACGAGGAAAAGCTGTACGTCATGCATAAAAATTCCGCGGCGACATTTTCTTTCGACCCGGTGAACAAATCATGGGCTGGGCCGTATGACCTGAAACCCGACCCGGAGGTCTTTTCGTCGGCCATCGGCCTCGCCGCCGGCCGGTTGGTGGTTGCAGGCCTAATGGGGACGTCGGAGGATGTTAAAAGCGTGAAGATATGGGAGGTGGTGGTCCCCACATCGGAACGTCGGGAAATTGGAGAAATGCCGAAATCGTTTTTGGAGAAACTTCAGGGAGAGAGCCCAGAAATGGCGTCGATCGGGATGACGTCGGCGGGAGATTTCATATTCCTTCACCACGGTTCTGACCCGGTGGAGGTGGTTAAGTGCGAGGTCGTCGGAGGCGGAGACGGCGGTTGCCGGTGGGGTATATTACCGAATGCGGTGGTGGACGACCGAGCCCGGCTTAGGCGGTTGGTTTTCACCAGCTCCAACGTCGGCATCGGAGACTTGCAGAGGGCGCTCAGATCGGAAAGT ATGGCGCGCAAGAAGATCAGAGAGTACGATTCCAAGAGATTGTTGAAGGAGCATTTTAAAAGAATTTCTGGCCGTGATTTACCGATCAAATCAGCGCAGGTTAGTGAATCGACCGATTTCAATGAGCTAGCTGAGAAGGAACCCTGGCTGTCATCGTCAAAATTGGTTGTGAAGCCTGACATGTTGTTTGGAAAGCGTGGTAAAAGCGGTTTAGTTGCACTAAATCTAGACTTGGCTGAAGTAACTAATTTTGTGAAGGAACGTCTGGGGAAAGTGGTGGAGATGAGCGGATGCAAGGGACCCATTACAACATTTATAGTGGAGCCTTTTATCCCACACGACGAAGAATTTTATCTGAATATTGTCTCAGAAAGGCTTGGCTGTAGTCTAAGCTTTTCAGAATGTGGAGGAATTGATATTGAAGAGAACTGGGATAAGGTCAAGACCATCTTTGTTCCAACAGGAGCATCCCTTACATCGGAAATATGTGCTCCACTTGTTGCCACCCTTCCTTTGGAGATCAAGGGGGAAATTGAGGACTTTCTCAAGTCTGTTTTTTCTCTATTTCAAGATTTGGACTTCACTTTTCTGGAAATGAATCCCTTCACATTGGTTGATGGAAAGCCTTATCCACTGGACATGAGAGGCGAACTGGATGATACTGCTAGTTTTAAGAATTTCAAAAAGTGGGGTGATGTTGAGTTCCCATTGCCGTTTGGAAGAGTTATGAGTGCAACAGAGAGCTTTATTCATGGCCTAGATGAAAAGACAAGTGCATCATTGAAATTCACTGTCTTGAACCCAAAAGGAAGAATATGGACCATGGTTGCTGGAGGAGGTGCAAGTGTCATTTATGCAGACACGGTTGGAGATCTTGGTTACGCCTCCGAGCTTGGGAATTATGCAGAATACAGTGGAGCACCAAACGAAGAGGAGGTGTTACAGTATGCCCGAGTTGTTATTGATTGTGCAACTGCAGATCCTGATGGCCGTAGTAGAGCGCTTGTGATTGGTGGAGGAATAGCTAACTTTACGGATGTAGCTGCTACATTTAATGGCATAATTAGGGCCTTGAAGGAGAAGGAAGCAAAGCTTAAGGCAGCAAGAATGAATATTTATGTAAGGAGAGGAGGTCCTAACTACCAGAGGGGCTTGGCAAAAATGCGGGCACTTGGAGAAGAACTCGGCATTCCAATTGAGATTAATTTATCCCTTCTGCATCCACAGACTCCAATCGCGGCCGCCATGTCTGCAGAGGAGTCGGCGGACGAACAAGACGGCACCGCCGTCCACGGCGACATTCTGGAGGCTATTCTCTCTCGCGTCCCTCTAATCGATCTCGCGTCCTCCTCCCGCGTTTCTCAAGGCTGGGAACGCGCCGTTTCCTCCTCTCTCTCCCATTCCAACACCCTCAAGCCATGGCTCCTCCTCCACGCTCAGGCCAGAACCCCTCCCTACGCCGCCGCCTCCTCCGCCGCCTACGACCCCCGGTCCGATCTCTGGATGGAGATCAACCACCCCCCCATCCGCTACGCCGCCGCCCTCCGGTCCTCCCACTCCACTCTCCTCTACACGCTCTCTCCCTCCAAATTCTCTTTCTCCGTCGACCCACTCCACGTCACGTGGCATCACGTGCCCACGCCGCTGATGTGGCGAGTGGACCCGATAGTTGCGCTGGTGAGCCACAGAGCCATCATCGCTGCCGGCACGTGCGACTTCATCGACCAACCACCCGCCGTACACATTTATGACTTGAACTCCAAAACCTGGGACACGTGCGACGAGTTGCCCTCAATCTTCACCGAATACGCGACTGCCACGTGGTTCTCGACTGCCGTTGACGAGGAAAAGCTGTACGTCATGCATAAAAATTCCGCGGCGACATTTTCTTTCGACCCGGTGAACAAATCATGGGCTGGGCCGTATGACCTGAAACCCGACCCGGAGGTCTTTTCGTCGGCCATCGGCCTCGCCGCCGGCCGGTTGGTGGTTGCAGGCCTAATGGGGACGTCGGAGGATGTTAAAAGCGTGAAGATATGGGAGGTGGTGGTCCCCACATCGGAACGTCGGGAAATTGGAGAAATGCCGAAATCGTTTTTGGAGAAACTTCAGGGAGAGAGCCCAGAAATGGCGTCGATCGGGATGACGTCGGCGGGAGATTTCATATTCCTTCACCACGGTTCTGACCCGGTGGAGGTGGTTAAGTGCGAGGTCGTCGGAGGCGGAGACGGCGGTTGCCGGTGGGGTATATTACCGAATGCGGTGGTGGACGACCGAGCCCGGCTTAGGCGGTTGGTTTTCACCAGCTCCAACGTCGGCATCGGAGACTTGCAGAGGGCGCTCAGATCGGAAAGT MARKKIREYDSKRLLKEHFKRISGRDLPIKSAQVSESTDFNELAEKEPWLSSSKLVVKPDMLFGKRGKSGLVALNLDLAEVTNFVKERLGKVVEMSGCKGPITTFIVEPFIPHDEEFYLNIVSERLGCSLSFSECGGIDIEENWDKVKTIFVPTGASLTSEICAPLVATLPLEIKGEIEDFLKSVFSLFQDLDFTFLEMNPFTLVDGKPYPLDMRGELDDTASFKNFKKWGDVEFPLPFGRVMSATESFIHGLDEKTSASLKFTVLNPKGRIWTMVAGGGASVIYADTVGDLGYASELGNYAEYSGAPNEEEVLQYARVVIDCATADPDGRSRALVIGGGIANFTDVAATFNGIIRALKEKEAKLKAARMNIYVRRGGPNYQRGLAKMRALGEELGIPIEINLSLLHPQTPIAAAMSAEESADEQDGTAVHGDILEAILSRVPLIDLASSSRVSQGWERAVSSSLSHSNTLKPWLLLHAQARTPPYAAASSAAYDPRSDLWMEINHPPIRYAAALRSSHSTLLYTLSPSKFSFSVDPLHVTWHHVPTPLMWRVDPIVALVSHRAIIAAGTCDFIDQPPAVHIYDLNSKTWDTCDELPSIFTEYATATWFSTAVDEEKLYVMHKNSAATFSFDPVNKSWAGPYDLKPDPEVFSSAIGLAAGRLVVAGLMGTSEDVKSVKIWEVVVPTSERREIGEMPKSFLEKLQGESPEMASIGMTSAGDFIFLHHGSDPVEVVKCEVVGGGDGGCRWGILPNAVVDDRARLRRLVFTSSNVGIGDLQRALRSES Homology
BLAST of MS015050 vs. NCBI nr
Match: KAE9449935.1 (hypothetical protein C3L33_18170, partial [Rhododendron williamsianum]) HSP 1 Score: 996.9 bits (2576), Expect = 9.9e-287 Identity = 512/788 (64.97%), Postives = 600/788 (76.14%), Query Frame = 0
BLAST of MS015050 vs. NCBI nr
Match: XP_022151204.1 (ATP-citrate synthase alpha chain protein 2 [Momordica charantia]) HSP 1 Score: 793.9 bits (2049), Expect = 1.3e-225 Identity = 397/401 (99.00%), Postives = 399/401 (99.50%), Query Frame = 0
BLAST of MS015050 vs. NCBI nr
Match: XP_022966930.1 (ATP-citrate synthase alpha chain protein 2 [Cucurbita maxima]) HSP 1 Score: 780.8 bits (2015), Expect = 1.1e-221 Identity = 384/401 (95.76%), Postives = 395/401 (98.50%), Query Frame = 0
BLAST of MS015050 vs. NCBI nr
Match: XP_023542487.1 (ATP-citrate synthase alpha chain protein 2 [Cucurbita pepo subsp. pepo]) HSP 1 Score: 780.4 bits (2014), Expect = 1.5e-221 Identity = 383/401 (95.51%), Postives = 395/401 (98.50%), Query Frame = 0
BLAST of MS015050 vs. NCBI nr
Match: XP_022944924.1 (ATP-citrate synthase alpha chain protein 2 [Cucurbita moschata]) HSP 1 Score: 780.4 bits (2014), Expect = 1.5e-221 Identity = 385/401 (96.01%), Postives = 394/401 (98.25%), Query Frame = 0
BLAST of MS015050 vs. ExPASy Swiss-Prot
Match: O22718 (ATP-citrate synthase alpha chain protein 2 OS=Arabidopsis thaliana OX=3702 GN=ACLA-2 PE=2 SV=1) HSP 1 Score: 737.6 bits (1903), Expect = 1.4e-211 Identity = 352/401 (87.78%), Postives = 388/401 (96.76%), Query Frame = 0
BLAST of MS015050 vs. ExPASy Swiss-Prot
Match: Q9SGY2 (ATP-citrate synthase alpha chain protein 1 OS=Arabidopsis thaliana OX=3702 GN=ACLA-1 PE=1 SV=1) HSP 1 Score: 735.7 bits (1898), Expect = 5.4e-211 Identity = 352/401 (87.78%), Postives = 386/401 (96.26%), Query Frame = 0
BLAST of MS015050 vs. ExPASy Swiss-Prot
Match: O80526 (ATP-citrate synthase alpha chain protein 3 OS=Arabidopsis thaliana OX=3702 GN=ACLA-3 PE=2 SV=1) HSP 1 Score: 690.3 bits (1780), Expect = 2.6e-197 Identity = 328/401 (81.80%), Postives = 372/401 (92.77%), Query Frame = 0
BLAST of MS015050 vs. ExPASy Swiss-Prot
Match: Q2QZ86 (ATP-citrate synthase alpha chain protein 2 OS=Oryza sativa subsp. japonica OX=39947 GN=ACLA-2 PE=2 SV=2) HSP 1 Score: 687.2 bits (1772), Expect = 2.2e-196 Identity = 329/401 (82.04%), Postives = 371/401 (92.52%), Query Frame = 0
BLAST of MS015050 vs. ExPASy Swiss-Prot
Match: Q2QNG7 (ATP-citrate synthase alpha chain protein 3 OS=Oryza sativa subsp. japonica OX=39947 GN=ACLA-3 PE=2 SV=1) HSP 1 Score: 685.6 bits (1768), Expect = 6.4e-196 Identity = 328/401 (81.80%), Postives = 372/401 (92.77%), Query Frame = 0
BLAST of MS015050 vs. ExPASy TrEMBL
Match: A0A6A4KWE8 (ATP citrate synthase (Fragment) OS=Rhododendron williamsianum OX=262921 GN=C3L33_18170 PE=3 SV=1) HSP 1 Score: 996.9 bits (2576), Expect = 4.8e-287 Identity = 512/788 (64.97%), Postives = 600/788 (76.14%), Query Frame = 0
BLAST of MS015050 vs. ExPASy TrEMBL
Match: A0A6J1DCB5 (ATP citrate synthase OS=Momordica charantia OX=3673 GN=LOC111019183 PE=3 SV=1) HSP 1 Score: 793.9 bits (2049), Expect = 6.2e-226 Identity = 397/401 (99.00%), Postives = 399/401 (99.50%), Query Frame = 0
BLAST of MS015050 vs. ExPASy TrEMBL
Match: A0A6J1HSY8 (ATP citrate synthase OS=Cucurbita maxima OX=3661 GN=LOC111466495 PE=3 SV=1) HSP 1 Score: 780.8 bits (2015), Expect = 5.4e-222 Identity = 384/401 (95.76%), Postives = 395/401 (98.50%), Query Frame = 0
BLAST of MS015050 vs. ExPASy TrEMBL
Match: A0A6J1FZI1 (ATP citrate synthase OS=Cucurbita moschata OX=3662 GN=LOC111449313 PE=3 SV=1) HSP 1 Score: 780.4 bits (2014), Expect = 7.0e-222 Identity = 385/401 (96.01%), Postives = 394/401 (98.25%), Query Frame = 0
BLAST of MS015050 vs. ExPASy TrEMBL
Match: A0A4U5N7J9 (ATP citrate synthase OS=Populus alba OX=43335 GN=D5086_0000279030 PE=3 SV=1) HSP 1 Score: 757.7 bits (1955), Expect = 4.9e-215 Identity = 366/401 (91.27%), Postives = 394/401 (98.25%), Query Frame = 0
BLAST of MS015050 vs. TAIR 10
Match: AT1G60810.1 (ATP-citrate lyase A-2 ) HSP 1 Score: 737.6 bits (1903), Expect = 1.0e-212 Identity = 352/401 (87.78%), Postives = 388/401 (96.76%), Query Frame = 0
BLAST of MS015050 vs. TAIR 10
Match: AT1G10670.1 (ATP-citrate lyase A-1 ) HSP 1 Score: 735.7 bits (1898), Expect = 3.8e-212 Identity = 352/401 (87.78%), Postives = 386/401 (96.26%), Query Frame = 0
BLAST of MS015050 vs. TAIR 10
Match: AT1G10670.2 (ATP-citrate lyase A-1 ) HSP 1 Score: 735.7 bits (1898), Expect = 3.8e-212 Identity = 352/401 (87.78%), Postives = 386/401 (96.26%), Query Frame = 0
BLAST of MS015050 vs. TAIR 10
Match: AT1G10670.4 (ATP-citrate lyase A-1 ) HSP 1 Score: 735.7 bits (1898), Expect = 3.8e-212 Identity = 352/401 (87.78%), Postives = 386/401 (96.26%), Query Frame = 0
BLAST of MS015050 vs. TAIR 10
Match: AT1G10670.3 (ATP-citrate lyase A-1 ) HSP 1 Score: 723.8 bits (1867), Expect = 1.5e-208 Identity = 352/421 (83.61%), Postives = 386/421 (91.69%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Bitter gourd (TR) 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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