
HG10021134 (gene) Bottle gourd (Hangzhou Gourd) 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.ATGGACGAAGAGGGACATTTCAAGCAGAATCTTGAGCAAGATATCAAAGGGTTAATGAGTTTGTATGAAGCTTCACAATTATGCTTACCAGAAGAAGAAATGCTCGACGAAGCTAAAAATTTTAGCTCCCAAATCTTAAGAGAATACATAACAAAAAATATTGATAACAAAGAGGCTAATGATGTTGCAAGAACTTTGGCAAATCCATATCATATAAGCTTATCAAAATTCATGGTAAAAGATTATTTTGGAACAGAAGATTATTTACAAGTCACAAATAATAAATGGGCCCATGCTTTACAACAAGTGGCCAAATTAGATTTCAACATCGCCCAAATATGCACCAACAAGAACTATACCAATTCACACGGTAGGTTTTGACAAAATTTAAAGGATTTAAAATATGTAGATATCAACATTAATGTTCCCAACAGTACTGACGTTAAATTTTTGTCAATGTTCATATTAGATGGTGGAAAGAGACAGGTTTGGGCAAAGGATTGCCATTTGCAAGGGACCAACCGCTTAAATGGTACATTTGTTCTTTGGTCTGCCTCATAGATCCATGTTTTTCTGAGGAAAGAGTTGAACTTTCAAAACCTGTCTCCTTCATCTATCTTATCGATGACATGTTCGATGTTTACGGGTCGCTCGACCAACTTACGTTGTTCACAGAAGCAGTTAGAAGGTATGAACTTGTTAAAGTGTTTATATATATAAATTTATTTTCACCCATCAACTTGATTTTGGATCAATCGATGATGATTTCATAGGATAAAGTAGATCTAGGAGGTCCTGTGTTCAAATCTTACAATGCTATTTTCTTCCAAAAGCGACGAGTAGTGTTAAAATGTTATATAATATTAAATTTACATTCACCTGTTACTACATACGTATTATAGCTACCATTTAGACTAAACTTTGGTAATTTTCCTTATTTGTTACGTTCACTTGTTTTCACCTGTTACCATATAGTAACATCGCCCATCAATTTAAACTTTTAGGTGATTTAACAAAACTAAAACTCAAATTAATATTATTCCACCAATATTGAGAACTTATTTACTGACAAGCTTTTACTTAATGCAGATGGGATGTTACAATGGCCGAAGCACTACCAGAGTGTATGAAGATCTGTTTCAAATCACTTTACGAAATGACTAATGAAATTAGTAGTAAAATCTATAAGAAGCACGGTTGGAATCCTATCAACTCATTACAAAAATCGGTAATTTATTTATTCTAGAAGCCCGGTTGGAATTCCTATCAACTTCATTACAAAATCGTTAATTTATGTTTTTGTTTTTATATTCATATATTTTGTGTGTTTTTTTTTGTTCATTAGATCATAGACTGAGTATATATGTTTTATTAATTGATTTTAGTGGGAAAAACTTTGCGATGCATTCCTTGTGGAAGGGAGATTTGATTCAGGTGATTCGCCAAGTGCAGAAGATTATTTAAGGAATGGAGTTGGGCAGTGGAGTTCATGTTGTGTTGGTTCATGTCTTCTTTTGTTAGGACATTCAATTAACAATCAAACTGTTCATCTTTTAGACAATGACCCACTCATTATTCTTCTCCTGCAACCATTTTGCGTCTTCAAGATGACTTGGGAACTGCCAAGGTTCTCTTTCAACACTAAATTAATTAACATTTTTCTTAAATTTATTTACATCTATATTTTTTATATACTCAGGACGAGAATCAAGAAGGATATGATGGATCATATGTGAATTACTACATGATAGACAATCAAGAGGTTTCTATTGAGACCGCACGAAACCACATTGCCAATTTGATTTCAAATGCATGGAAGAATCTCAACAAGGAATGTTGTCGTCCAATAATCCATTTCCTCCTGCTTCATTGAAGCTTCTCTGAATATTGCAAGATTTGTACCAATTTATATGGTTATGACCAAAATCAAAAAACTTCCAACGCTTGAGAAGCTTGTCAAATCGATGTTGTATGAAAAAGTGCAGATGTAATATTAATTAATTTATGTTACATAAAACATAGTAAATTCGTGATATTGTGGGTTGTTTGAGTTCAAAAGGAGATGTTAGTGTATATCAAATTACCTTTTTAGTACAAAGTATATCTTATATGATGAAAAATTAATAATTTTTGTTTTCTTTGGCATATTTAATAGTCATGGTGTGGCTTCAACACACGTCTACATTAATGTCAAATACATGTATTCGTAAAGATGTTAACTCCCTAATTTTTTTAGGCAATGATTTTTTATTTTATTTTTTTTGGTTAAATAACCACTTACTCAAAAGCTTAAATGGTAAGGATAACAAGTAAAAATCAATATTATTGGGGGAGAAAGATAAGTTCACACATAAGACTCCTACCCTGGTATATATGGTTGGGAATGAGACCAAAGTCCCACTGTTTAGATAAGGGGCTGATCATGGGTTATATTGGAGAACAACTATCTCCATTGGTATAAGACCTTTTGGGGTGAAACCAAAAGTAAAGTCATGAGAGTTTATGCTCAAAATCGACAATATCATATCATTGTGGAGATAATTGGAGGGTCGTTGTCCCTATCAAGTGGTATCAAAGTCATGCTAGTAGAATGGTCTTCTATCTCACGACACATAAAATACAGCGTCGGGAGATCCCCTTTTTTCTTTCAGCGCTTATTGGCTCCTTCCTCTCATGTTAAGCATTGAGTTTTTTTCTTTCCATTTCCTCTCTCCTTTTCCTTAAGCACACGCCAAATTAGCATACTTAAAACCCATAAATTTTCTTGAATTCTATCAAGTAACCCATAAGAAATATTTAACCAACTTTACTTTTCCAAGCCTTTACTCGAAACAAAAAGCTTACATAGTTGAATCCTTGGATAAAAGTTTATTCAAACTACTTCAAAATTATTCAGAACCTTCAAATGCCCGACGTACGTCTAAAACCATGTTCGATCAGGCCGCAGCCATATACACAAAAAGCATTCCTAAGATTAGAGCTAATCTAAAAACACTTTGGTCGAATTTAAAAGGGTCTATACAAACTCTACTACTAAATACATACTAAAATGTGCTAGCATCTTTGTTGATTTGTATTTGAAAGTTAAGAACTCGCAGATCTGAAGCCGCTGAGCCGTGAGTGTTTAGATTTGAGGTCAAGTTTTTGGTCGGAGAAGGAGGACCATACGTGGAAGAGAGGGTGTCGGTTGAAAAAACTATCAGAGAGAGTGACAAGAGACAAAGAGAGAGAGAAAAAGACAAGGAGAGGGTGAGAGAAGAAAGTGACGTGTGTTCTTTTCTTTCTTTCTTTCGTTTTTATTTTTTTTAACGTGGGTTGTAGTTCCATGTCCATGTTTTCTCTCCTTTTTTTCGTATTTTTTGTATTTTTTTTAAACTAAATCACATTGGGTGTGGTTTCATAGATGCGTGGCCACACTTTTTTTCCCTTTTCATTTATCTATTTTTATTTCATTTAGAATATCTTAAAAATGGCACCTCACCTCTTTGATTTTCCAATTTCCTTTAGTTTCACTTATTTTGTTGTTTTATGCATTTTATTGAATAATCAATATGATCTAGAATAATTTCCCAATCGTGAATGGAGAAATAAATAGACACTAAGAATAAATAAAAGAAAAATATCAATTAGGAATAAACTATAAACAAATGGGTAATTATTTTAAATGACAAAACTGCTAGAAATATTTTCAAATAAAAAAATGTTAATGTCTATCGGCGATAGACAATTATAGACACCGATAGACAGTGATATTTGCTATATTTATAAATATTTTGGCTCATTTTGATATATTGAAAACAACCCTAAACAAATTAGGAATAAACCATAAATTACGCTAACACCATCCCTCAAACTCAAGGTGATCGAGTGGCAACCAACTGAGTTATGAAGCGAGTAGATGAAACTCAATGTGGTAGATGACAGAAACTGAAGAAATTTTTGTATCAAACTCGACAGATCTGGGCTCGAAACAAAAAACGAACTTCTGGACTGGAAACAGAGACCTACATAGAAAAATCTGAAAACAGAATCCATGAACAATTGATTTGAAAGTATAACAGAGACCTGAAAGATCTAAAAAATGGAACAGAGAACCACAAACAAAAAATAGAGGCTGAAACAACTCATAAACGAAAAGCAACAACAGAAACTATTAAGTAGGAGAACCAAATCAAACCAAACTCGTCTAACTGAACTGAACCAAACCAAACCAGTCTAACTGAACCGAAACTAGCTAATCAAATCGGTATGACTACTGAACTGGTATTGAAATTGGAACCCACGAGCGTGAAGTGAGTAGAGCATCAATTGGGTTTTCGTTTTCCGTTTGAGCAGAGAACCCCATAGACATGAGATATGAGCGAAGGTGTGAAGGCTGAATGAATATAGAAACAGCAGATCTGGGGTGCACGAGTTATGAACGGAGACATAGATATGGGTGACCAATGCGGAGGCAGTAGAATATTTCTTCTTTGGCATATTGGGTCGACGACAAGATCTGGATGGTTGGCCAAATGAGAGAGACACGGAGATTAGCGGCGTGACGTGGATCTGGCACTGTGGCAGTCAAAGTGTGGCGACAAATCTAGAGATGCAGAGATAGAGTTCCCAATGTATCTGACGAACGAAAAGCAATAATAGGGCTGGTCGTGGCGGATTTGAGACCTACGAATCGGATCTGAATAAACTCATGGAGCAGTATCGTGGTGTGTTGTGTGCGAACAAAGAAAAATGGTTGTGGACGGAATGGAGCGGAGCAAAGCAGCGCGAGGTAGCAGGAACTAGGCAGATTTGAACTCGACACGCTTGAAATCTGCAGAACCATGTTAGATTTTGGAGAGTAGGAGGTTGGAGGCAGTAGTTGGGTGGCCAGTGGCAGAGGCGCTGGTTGGGCAGGGCACTTGAACGTCTGCGCGGATTTGGTCTGTCCTCAGACAGATTTAGCGGCAATGGCTAGAGTTGAACAAGATAAAACCCTAGGAACCAAGATTTTGATACCATGTCATTTTGTGTATTTTATTGAATAATCAATATAATCAGAATAATCTTATTATAATAGACACTAAGAATACAAAAAAGTAAAATACTAGAAAAGAAAATACAAATTAGAAAAAAATCATAAACAAATTAAGAATAAACCATAGATTACCCTAACATATTTTAAGTTTTCTCTTCCTCCAAAACACTCGCAAAACTATTATTCTCTAATTCTAAGACATTGAAAGTGAATTTTACGAAACACCATTAGTTTCCGGGGGAATTTTAAAAATAAAAAATCAAGGGAAACTATCTACACAAAATAGCAAAATTTCTAGATAGTTGTGATAGACACTGATAGCAGTCTATCAGGGTCTATCAGTAATAGAAATGATAGAAGTCTATCGCTGATAGATGCTGATAGAAGTCTATCAATATCTATCAGTGTTTTTTTGCTATTTTTTGTAAATAATTTAACATTTTTTCTATCTGTAAAAATTTCTCATAGTTTCTATGTTTACTTATATACATTTTAATTAGTGTTTTCAAAATCAAAATTTGATTTTGAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAATCCAGTTTGATAATTTAATTTTAGTTTTTTTAGTTTTTTTTACTTTAGTTTTTAATTTTTAAAAAGCAAAAATCATGGTTACTGTTTTTGGTTTTCTATTTAAAAAAATCAAAATAAATTTTGATGACTTTTTTAATATTATTTTTTAGAAAAATAAAATCAAACTACTTTTACAATAATTTTTCATATAATATACATTATTATGAAATTATATAAACACATCAACAAAATATAGAAAATAGTTTAATTTTGAAAGAGAAAATTATAGGAGAACAAAGAAATAATTAAAACAATTGCTATGAAACCTTACGTATTCATATTCCTTTCATAAGACAATTTTGTCTACTCTATATGGCGCTCAAGGTGTCATGAATAATTGTCTCCCACGATGGGCCAGATTAATAATATGCGAATCCAACACTTCAACCACATGACTCAACGGACACTACAATGTGTGAGATAGTGAAAAATTGAAATTGATTAATTTTTAAAGATATTATTGTTAAAATGACAAATGATGTGGAACTGAAGTGTAAAAATAAAAATTATTTTCAATATTTATTTACCATTCAATTTCATATGTAAAGAGAAAATAGTTATTATAAAATAGAAAAAAAAATTATTGAAGATATAGGATCAAACTTTAACCTAGAGAATGGCAACCTAGCACGCTGACCAACTTCATTAACCTTAACGACCATCTTATAGTTAGTAAATTACATATGTGAGTTTCAAAAACGAAAATTGTTTTTTAGAACCTTCTTCTTTTTTTTTTTTTCGTTTTTGAAATATTCTAATATTTTTTAAAATTTTTAAAATAAAAAAAATGGAAAACTCAATTGTATATCAAACATATCTATTTTTATAGATAAGCCTACAATGTCGGTTTAAAACCGACATTAAAGATCCACCTTTTTTTTTTTTAAAGAATTGACATTGTACATCCGTTTTTAGTTTTTCAACCAACACCAAAGCCCAGATTTCTTGTAGTGAACCACGCAATACTAATGAAGCATTGCAGTTCTCTGTTTGAAAACAGGATGTAACGACCTGAGTTCAGGAGGGGGACATGATCACATCCGAATGAGAGGGATCCTAAGGACATGAAAGTATAGTTAAGAAAGGCTTAAAAGAATTGAAAGTTACTACCTATACCAACAAGGTGCACCTTCCTTTTCGGTGACTCAATCATAAGAACTTCACAGTTAAGCGTGCTTAGCTTGGAGCAATCCTATGTTATGTGACCTCCTCTATATTTAGTCGATTAGTAATCCACGTTTGAGATTGGCTATATATTTTATAAGTGTCCTTTAATTTAAAAATTTTTAATAAAGGCTTTTGTGTCTAAAAGTCTAACATATCCCTAAACTTTTAATTTTGTATCCAATAAATTTTAGATAATATTCAATTTAAAAAAAAAAATTATTTTATTGGACAAAAAAGTTAATTTTATATCTAATTGAGCCTTAAAATTCGAATTTAGTTAATAATAGATTGTAAATTGATATTTTTTTCTCCTAAAAAAAATATCCAATAAGAACTATTGGATATTAGACACAAAGCTAAATTTTATATATGATATAACATAACAATTAACTTTTAACATTTTTGAAATATATGCAAGAAACCTCTATTGTATAGAAACTTGAAACCATAGCGACCTATTCTACATATTTTAAATTTAGGGAGCATATATATAGCATATATAGTTAGAGACTTAGAGTTTAATTGGCTAATGAAGCTTCTAATCTTGTATGAAATAGTGCTCCCTAGCCTGAAGTTTTGAGTACACCAATATTGTATAGAAGTAAAAATACAACTTATTAGCAGATGGTTTAGTAAAATAGAAAATCTAGTTAGGAGAGACTACTTGGAAAGTGAACGATCTGAAATATTGATATTGTATGTAACATATTCTTAAGTGAAGAGAAAACTCATAATAAGAATGCATCTAATTAGTGGATAGGATTCATAGACGACAACATATGGTACCACTGCATGTGAAGAATATGGAACTAAAGTCGGTGGAAGTTCAATTTTGAGAAATAGATGACAGTTTGCTAATGATAATGAATGATTTGGTAATTGATTGGGATTGGTACTAATTTCCCAGTTTGGCTCTCTCCACACATCCTCTTCTCACAAAAATCAATTGATACCTAAAACCACCCAAACTTGTGTTTTTAATATCAATTATATTTGATTTTGGTCCAACTGTAGGATGTCAAACTTTTTTAATTACTCACACCTAATTTCATTTACAAAAATAACAATTGATGAAGAAATGGTTACAAAGCGAATAAAATTTGATTAGAAACTTCGAGACAAGAAAAATAGATAAGCATGTTTTATACGTTTGGGTTGTTTGATTAGCAAATGTTTTTGGTTTTTGAAAAACGCATTTATTTGATATCCAATTGAGTTTTATGCATGTTTTTTCAATTATAAAAGCGTTTTTTAAAATTGTTAAGAAAAGTTTCAAAAACGTAAAAAACGGTTTTCAAAAATAAGTTTTCGTTTTTATTTATTGTAAATGATGCCTATAATCTCTAAAGACTCTCTGCGATTTGAAAATTTTGCCTATCAAAAGCGCACTTTTATAAATTGTTTGATGATACAAAAGATCATTGATATATGGATATCCTGATATCTACCTAACTTCTATCACCAATATTACTGATACACGAATATCACTGATATCTACCTAAGTTCGATCTAACTGACATAATTGATGCACGAATATTAGTAAGTAGATTTCGTCGCCCAAATCTATTCCAAATAGTTTAACCATATCTACCATAACAAACTGCTAGTCTTAGTAGCAAGACCAGGTCGAACACAGGGAGCTCTAGGATTTCTCAATCAAACGGTTTAAAGCCTGAGGATAACCGAGGAGGGTTTGAAGGTTTGGTTTGATTGCAAGAATATTTAAATTGCATAAAAGAAAAGCACAAGGGGTTGAAAATTTATATGAGAGATCCTAGCTTAGGTTAAAATGAAATTTTCTATTCAATGCATTTGATCATAGAATTCTCATTACAGGAATTAGGTAATTGCTTTAACCTAACTAAATTAGTTGGAAATAAAAGCCAATTGATTTGTCCTAATCAACTCATTAATAAAAATTGAACCGATGAAAAGCATGCAAACTCAATTTAGTACTAATTGCATTAAGATGTAGCGCAAATTAAAGTTAGGTTGAATATCTAATTTTCAAGCGCCTAATTAAATACCCAATTGATTCAATTCTAAGTCGGTTAGAACAATGCTCATTCAAATTCATTCGCAAGCTAACCTAACCTATTGCTTTTTGGAATCGATTAATATACAACCTAGTGTCAATTTATATATATATTACGCTTATCTCATAAATAGTCCTTAGAAAAGTTTTAATATTTAGAAAAGTTTTATCCAATCATCAAGACTAAATTCTAATTTAATCTTTTTTTAGATAGGAAAAACAAGAAAAAAGAGATTAAAATCTATAGAGATAAAGGATGGATAGAGGCCCTAGAAAGAGAAATTAATTTTCTCTCTCATCTATTGTACATTTATAATTTTTCCGATCATAAGATATTTAAACTTCTAAGTTTTTTTTATCAAATATCAAATATGTATACTTTAACCAATTGAGTCATGCTCAAAGTTGAATCGTTTGACATAAAATTAACCAAGTGTAATTAGGGCTTAGTTTGGTAATAATTTCATTTTTTTTTAACAAAATACGGAGATATGGGAATAAGTAGGTGCACCGAGATATCTCAACTAGGTTGACACCTCCTTAGCACCCTCATCATATTTCAAGCCCAGTATGAAATATCATTAAAAAGGATTGTTCAAAATATAAAATGAGAGCTAGAGATAAGCGAAAATATGAACCCTTAAACTTATACAATTATTTCAATTTCTACAATTATATAAGTTTGAGAGTCTAATTTTTACACTTGTATAAGTTTGAAGACTCAAATTTTACTATTCAAATTTAAAGGTATAATTGCAACTACCATCATACTTTAGCGATAGTTTTTGCATTTTGTATTTTTTTTAAGAAATGCTACCACCACCGTTGATATAAAATCATTATTTATTCTAATAGTAATAGTACTATCATATAATAGTAATAATAAGGAAAACTATTAAAAATTGAAAAATGAGGGAAACTATTTAAACAAAATAGTAAAATTTTTAGATAGTTGTGATAGACATTGATAGAAGTCTATCAGGGTGTATCAGTGATAGAAATGATAGAAGTTTATCAATGTCTATCCGTATTTTTTTTTCTTTTTTTCTATTTTTTTTTGTAAATAGTTTGACATTTTTTTTATGAGTGAAAATTTCCTTAATATTAAATATTAAAGTGTCTTTCTAAAAAAAAAAGTACTAATGGCTCTCTTGTTTTCACTATATATAAGGGGAAAGGGATGAAGCTCCATCTCATAGCGAATCAAAGCAAATTTAAACTTTGCAAATTTTCTTCTTGTTGGAACCCAAATTCTTTGCTTCAATTCTTCTCTCCATCCAATATTAATGGCCGAAACAAAGTTCCAAAACTTCACAGCAATAATGATCAGTGCTTTGTACAACTGAATCCTCCTGAAAACTCAATTCTTTGCTTCAATTCTACTTCCTTCCAATTACTCTCCGATAATTTCCATGTAATAATAATTCACTTGTTCACTTTTTTTTTTTTTTTTTTTTTGAAAATTTATTCTTCTCGTTGAGCTTGGTATTAATTAAAGTCATCAAAACGTGGCTTTTTTGTTGGTTTTTGCAGAATGATATAATGAGCTGCACTCTGGATGATCCTTTGGAAACTTTGAATTTGATTGATGCTGTCCAACGTTTAGGTGTCGACTACCGTTTCCAAACCGAGATTGACGTCATTTTAAAACGCCAATATGCAATCTTGGTCAATCTCGATGGTGATAGTATGAATGACGACGGCGACCTTCATGAAGTTGCTCTTTGCTTTCGACTTCTCAGACAATGGGGTTATTGTGCCTTCAGGTAAATTAAGACTTTGTTCGATAACCATTTACCGTGCTTTTTTAAAATTAAGCTTATAAATCCTATTTTTACTTAAAAGTTTCTATATTTCATTATCTACTGCTGATGTTTTCAAAATTAACCTAACTATGTTGTTTGGAACAGATGTATTCAATGTTTTCATGGACGAAGAGGGACATTTCAAGCAGAATCTTGAGCAAAATATCAAAGGGTTAATGAGTTTGTATGAAGCTTCACAATTATGCTTACCAGAAGAAGAAATACTCGACGAAGCTAAAAATTTTAGCTCCCAAATCTTAAGAGAATACATAACAAAAATATTGATAACAAAGAGGCTAATGATGTTGCAAGAACTTTGGCAAATCCATATCATACAAGCTTCTCAAAATTCATGGTAAAAGATTATTTTGGAACAGAAGATTATTTACATGCCACAAATAATAAATGGGCCCATGCTTTACAACAAGTGGCAAAATGGATTTCAACATCGCCCAAAATATGCACCAACAAGAACTATTTCAATTCACACAGTAAGTTTTTGACAAAATTTAAGGGATGAAAAATGTGTTGTGATCAACATTAATTTCCCAACAGTACTAACGTTAAATTTTTGTTAATGTTCACATTAGATGGTGGAAAGAGACAGGTTTAGGCAAAGCATTGCCATTTGCAAGGGACCAACCTCTTAAATGGTACATTTGTTCGTTGGTTTGTCTCATAGATCCATGTTTTTCAGAGGAAAGAATTGAACTTTCAAAACCTGTCTCCTTTATCTATCTTATTGATGACATGTTCGATGTTTATGGCTCGCTCGACCAACTTACATTGTTCACAGAAGCAGTTAGAAGGTATGAACTTGTTAAAGTGTTTATTAATATTAAATTATCTTCACCACTCAACGTATTAGTTTGGGTCAATCAATGATTTAAAATGGTATCAGATACAAGTCTAAGAGATATTTTGTTGAAATTAATATTATTCCACCAATATTGAGAACTTATATTTACTGACAAGCTTTTACTTAATGCAGATGGGATGTTACAATGGCCGAAGCACTACCAGAGTGTATGAAGATCTGTTTCAACTCACTTTACGAAATGACTAATGAAATTAGTAGTAAAATCTATAAGAAGCACGGTTGGAATCCTATCAACTCATTACAAAAATCGGTAATTTTTTTTATTATTATTCATATATTCTTGTGTGTTTTTTTTTTGTTTCATTAGATCATAGACTGAGTATATATGTTTTATTAATTTGATTTTAGTGGGAAAAACTTTGCGATGCATTCCTTGTGGAAGGGAGATGGTTTGATTCAGGTGATTCGCCAAGTGCAGAAGATTATTTAAGGAATGGAGTTGTGAGCAGTGGAGTTCATGTTGTGTTGGTTCATGTCTTCTTTTTGTTAGGACATTCAATTAACAATCAAACTGTTCATCTTTTAGACAATGACCCACTCATTATTTCTTCTCCTGCAACCATTTTGCGTCTTCAAGATGACTTGGGAACTGCCAAGGTTTCTCTTTCAACACTAAATTAATTTAACATTTTTTTTTAAATTTATTTACATCTATAGTTTTTATATACTCAGGACGAGAATCAAGAAGGATATGATGGATCATATGTGAATTACTACATGATAGACAATCAAGATGTTTCTATTGAGACCACACGAAACCACATTGCCAATTTGATTTCAAATGCATGGAAGAATCTCAACAAGGAATGTTTGTCGTCCAATAATCCATTTCCTCCTGCCTTCATTGAAGCTTCTCTGAATCTTGCAAGATTTGTACCCATTTTATATGGTTATGATCAAAATCAAAACCTTCCAACGCTTGAGAAGCTTGTCAAATCGATGTTGTATGAAAAAGTGCAAATGTAA ATGGACGAAGAGGGACATTTCAAGCAGAATCTTGAGCAAGATATCAAAGGGTTAATGAGTTTGTATGAAGCTTCACAATTATGCTTACCAGAAGAAGAAATGCTCGACGAAGCTAAAAATTTTAGCTCCCAAATCTTAAGAGAATACATAACAAAAAATATTGATAACAAAGAGGCTAATGATGTTGCAAGAACTTTGGCAAATCCATATCATATAAGCTTATCAAAATTCATGGTAAAAGATTATTTTGGAACAGAAGATTATTTACAAGTCACAAATAATAAATGGGCCCATGCTTTACAACAAGTGGCCAAATTAGATTTCAACATCGCCCAAATATGCACCAACAAGAACTATACCAATTCACACGATCCATGTTTTTCTGAGGAAAGAGTTGAACTTTCAAAACCTGTCTCCTTCATCTATCTTATCGATGACATGTTCGATGTTTACGGGTCGCTCGACCAACTTACGTTGTTCACAGAAGCAGTTAGAAGATGGGATGTTACAATGGCCGAAGCACTACCAGAGTGTATGAAGATCTGTTTCAAATCACTTTACGAAATGACTAATGAAATTAGTAGTAAAATCTATAAGAAGCACGGTTGGAATCCTATCAACTCATTACAAAAATCGTGGGAAAAACTTTGCGATGCATTCCTTGTGGAAGGGAGATTTGATTCAGGTGATTCGCCAAGTGCAGAAGATTATTTAAGGAATGGAGTTGACGAGAATCAAGAAGGATATGATGGATCATATGTGAATTACTACATGATAGACAATCAAGAGGTTTCTATTGAGACCGCACGAAACCACATTGCCAATTTGATTTCAAATGCATGGAAGAATCTCAACAAGGAATGTAATGATATAATGAGCTGCACTCTGGATGATCCTTTGGAAACTTTGAATTTGATTGATGCTGTCCAACGTTTAGGTGTCGACTACCGTTTCCAAACCGAGATTGACGTCATTTTAAAACGCCAATATGCAATCTTGGTCAATCTCGATGGTGATAGTATGAATGACGACGGCGACCTTCATGAAGTTGCTCTTTGCTTTCGACTTCTCAGACAATGGGGTTATTGTGCCTTCAGATGGTGGAAAGAGACAGGTTTAGGCAAAGCATTGCCATTTGCAAGGGACCAACCTCTTAAATGGTACATTTGTTCGTTGGTTTGTCTCATAGATCCATGTTTTTCAGAGGAAAGAATTGAACTTTCAAAACCTGTCTCCTTTATCTATCTTATTGATGACATGTTCGATGTTTATGGCTCGCTCGACCAACTTACATTGTTCACAGAAGCAGTTAGAAGATGGGATGTTACAATGGCCGAAGCACTACCAGAGTGTATGAAGATCTGTTTCAACTCACTTTACGAAATGACTAATGAAATTAGTAGTAAAATCTATAAGAAGCACGGTTGGAATCCTATCAACTCATTACAAAAATCGTGGGAAAAACTTTGCGATGCATTCCTTGTGGAAGGGAGATGGTTTGATTCAGGTGATTCGCCAAGTGCAGAAGATTATTTAAGGAATGGAGTTGTGAGCAGTGGAGTTCATGTTGTGTTGGTTCATGTCTTCTTTTTGTTAGGACATTCAATTAACAATCAAACTGTTCATCTTTTAGACAATGACCCACTCATTATTTCTTCTCCTGCAACCATTTTGCGTCTTCAAGATGACTTGGGAACTGCCAAGGACGAGAATCAAGAAGGATATGATGGATCATATGTGAATTACTACATGATAGACAATCAAGATGTTTCTATTGAGACCACACGAAACCACATTGCCAATTTGATTTCAAATGCATGGAAGAATCTCAACAAGGAATGTTTGTCGTCCAATAATCCATTTCCTCCTGCCTTCATTGAAGCTTCTCTGAATCTTGCAAGATTTGTACCCATTTTATATGGTTATGATCAAAATCAAAACCTTCCAACGCTTGAGAAGCTTGTCAAATCGATGTTGTATGAAAAAGTGCAAATGTAA ATGGACGAAGAGGGACATTTCAAGCAGAATCTTGAGCAAGATATCAAAGGGTTAATGAGTTTGTATGAAGCTTCACAATTATGCTTACCAGAAGAAGAAATGCTCGACGAAGCTAAAAATTTTAGCTCCCAAATCTTAAGAGAATACATAACAAAAAATATTGATAACAAAGAGGCTAATGATGTTGCAAGAACTTTGGCAAATCCATATCATATAAGCTTATCAAAATTCATGGTAAAAGATTATTTTGGAACAGAAGATTATTTACAAGTCACAAATAATAAATGGGCCCATGCTTTACAACAAGTGGCCAAATTAGATTTCAACATCGCCCAAATATGCACCAACAAGAACTATACCAATTCACACGATCCATGTTTTTCTGAGGAAAGAGTTGAACTTTCAAAACCTGTCTCCTTCATCTATCTTATCGATGACATGTTCGATGTTTACGGGTCGCTCGACCAACTTACGTTGTTCACAGAAGCAGTTAGAAGATGGGATGTTACAATGGCCGAAGCACTACCAGAGTGTATGAAGATCTGTTTCAAATCACTTTACGAAATGACTAATGAAATTAGTAGTAAAATCTATAAGAAGCACGGTTGGAATCCTATCAACTCATTACAAAAATCGTGGGAAAAACTTTGCGATGCATTCCTTGTGGAAGGGAGATTTGATTCAGGTGATTCGCCAAGTGCAGAAGATTATTTAAGGAATGGAGTTGACGAGAATCAAGAAGGATATGATGGATCATATGTGAATTACTACATGATAGACAATCAAGAGGTTTCTATTGAGACCGCACGAAACCACATTGCCAATTTGATTTCAAATGCATGGAAGAATCTCAACAAGGAATGTAATGATATAATGAGCTGCACTCTGGATGATCCTTTGGAAACTTTGAATTTGATTGATGCTGTCCAACGTTTAGGTGTCGACTACCGTTTCCAAACCGAGATTGACGTCATTTTAAAACGCCAATATGCAATCTTGGTCAATCTCGATGGTGATAGTATGAATGACGACGGCGACCTTCATGAAGTTGCTCTTTGCTTTCGACTTCTCAGACAATGGGGTTATTGTGCCTTCAGATGGTGGAAAGAGACAGGTTTAGGCAAAGCATTGCCATTTGCAAGGGACCAACCTCTTAAATGGTACATTTGTTCGTTGGTTTGTCTCATAGATCCATGTTTTTCAGAGGAAAGAATTGAACTTTCAAAACCTGTCTCCTTTATCTATCTTATTGATGACATGTTCGATGTTTATGGCTCGCTCGACCAACTTACATTGTTCACAGAAGCAGTTAGAAGATGGGATGTTACAATGGCCGAAGCACTACCAGAGTGTATGAAGATCTGTTTCAACTCACTTTACGAAATGACTAATGAAATTAGTAGTAAAATCTATAAGAAGCACGGTTGGAATCCTATCAACTCATTACAAAAATCGTGGGAAAAACTTTGCGATGCATTCCTTGTGGAAGGGAGATGGTTTGATTCAGGTGATTCGCCAAGTGCAGAAGATTATTTAAGGAATGGAGTTGTGAGCAGTGGAGTTCATGTTGTGTTGGTTCATGTCTTCTTTTTGTTAGGACATTCAATTAACAATCAAACTGTTCATCTTTTAGACAATGACCCACTCATTATTTCTTCTCCTGCAACCATTTTGCGTCTTCAAGATGACTTGGGAACTGCCAAGGACGAGAATCAAGAAGGATATGATGGATCATATGTGAATTACTACATGATAGACAATCAAGATGTTTCTATTGAGACCACACGAAACCACATTGCCAATTTGATTTCAAATGCATGGAAGAATCTCAACAAGGAATGTTTGTCGTCCAATAATCCATTTCCTCCTGCCTTCATTGAAGCTTCTCTGAATCTTGCAAGATTTGTACCCATTTTATATGGTTATGATCAAAATCAAAACCTTCCAACGCTTGAGAAGCTTGTCAAATCGATGTTGTATGAAAAAGTGCAAATGTAA MDEEGHFKQNLEQDIKGLMSLYEASQLCLPEEEMLDEAKNFSSQILREYITKNIDNKEANDVARTLANPYHISLSKFMVKDYFGTEDYLQVTNNKWAHALQQVAKLDFNIAQICTNKNYTNSHDPCFSEERVELSKPVSFIYLIDDMFDVYGSLDQLTLFTEAVRRWDVTMAEALPECMKICFKSLYEMTNEISSKIYKKHGWNPINSLQKSWEKLCDAFLVEGRFDSGDSPSAEDYLRNGVDENQEGYDGSYVNYYMIDNQEVSIETARNHIANLISNAWKNLNKECNDIMSCTLDDPLETLNLIDAVQRLGVDYRFQTEIDVILKRQYAILVNLDGDSMNDDGDLHEVALCFRLLRQWGYCAFRWWKETGLGKALPFARDQPLKWYICSLVCLIDPCFSEERIELSKPVSFIYLIDDMFDVYGSLDQLTLFTEAVRRWDVTMAEALPECMKICFNSLYEMTNEISSKIYKKHGWNPINSLQKSWEKLCDAFLVEGRWFDSGDSPSAEDYLRNGVVSSGVHVVLVHVFFLLGHSINNQTVHLLDNDPLIISSPATILRLQDDLGTAKDENQEGYDGSYVNYYMIDNQDVSIETTRNHIANLISNAWKNLNKECLSSNNPFPPAFIEASLNLARFVPILYGYDQNQNLPTLEKLVKSMLYEKVQM Homology
BLAST of HG10021134 vs. NCBI nr
Match: XP_008441674.1 (PREDICTED: (3S,6E)-nerolidol synthase 1-like [Cucumis melo] >KAA0056909.1 (3S,6E)-nerolidol synthase 1-like [Cucumis melo var. makuwa]) HSP 1 Score: 640.2 bits (1650), Expect = 2.0e-179 Identity = 358/668 (53.59%), Postives = 387/668 (57.93%), Query Frame = 0
BLAST of HG10021134 vs. NCBI nr
Match: XP_004153857.1 ((3S,6E)-nerolidol synthase 1 isoform X1 [Cucumis sativus] >KAE8652685.1 hypothetical protein Csa_013479 [Cucumis sativus]) HSP 1 Score: 634.4 bits (1635), Expect = 1.1e-177 Identity = 358/668 (53.59%), Postives = 383/668 (57.34%), Query Frame = 0
BLAST of HG10021134 vs. NCBI nr
Match: XP_031738548.1 ((3S,6E)-nerolidol synthase 1 isoform X2 [Cucumis sativus]) HSP 1 Score: 634.4 bits (1635), Expect = 1.1e-177 Identity = 358/668 (53.59%), Postives = 383/668 (57.34%), Query Frame = 0
BLAST of HG10021134 vs. NCBI nr
Match: XP_038893757.1 ((3S,6E)-nerolidol synthase 1 isoform X2 [Benincasa hispida] >XP_038893758.1 (3S,6E)-nerolidol synthase 1 isoform X2 [Benincasa hispida]) HSP 1 Score: 633.3 bits (1632), Expect = 2.4e-177 Identity = 362/665 (54.44%), Postives = 389/665 (58.50%), Query Frame = 0
BLAST of HG10021134 vs. NCBI nr
Match: XP_038893756.1 ((3S,6E)-nerolidol synthase 1 isoform X1 [Benincasa hispida]) HSP 1 Score: 633.3 bits (1632), Expect = 2.4e-177 Identity = 362/665 (54.44%), Postives = 389/665 (58.50%), Query Frame = 0
BLAST of HG10021134 vs. ExPASy Swiss-Prot
Match: P0CV94 ((3S,6E)-nerolidol synthase 1 OS=Fragaria ananassa OX=3747 PE=1 SV=1) HSP 1 Score: 413.3 bits (1061), Expect = 5.2e-114 Identity = 228/493 (46.25%), Postives = 279/493 (56.59%), Query Frame = 0
BLAST of HG10021134 vs. ExPASy Swiss-Prot
Match: P0CV95 ((3S,6E)-nerolidol synthase 2, chloroplastic/mitochondrial OS=Fragaria ananassa OX=3747 PE=1 SV=1) HSP 1 Score: 403.3 bits (1035), Expect = 5.4e-111 Identity = 220/493 (44.62%), Postives = 277/493 (56.19%), Query Frame = 0
BLAST of HG10021134 vs. ExPASy Swiss-Prot
Match: P0CV96 ((3S,6E)-nerolidol synthase 1, chloroplastic OS=Fragaria vesca OX=57918 PE=1 SV=1) HSP 1 Score: 401.4 bits (1030), Expect = 2.0e-110 Identity = 222/493 (45.03%), Postives = 275/493 (55.78%), Query Frame = 0
BLAST of HG10021134 vs. ExPASy Swiss-Prot
Match: B9RXW4 (Probable terpene synthase 13 OS=Ricinus communis OX=3988 GN=TPS13 PE=3 SV=1) HSP 1 Score: 382.9 bits (982), Expect = 7.5e-105 Identity = 209/493 (42.39%), Postives = 268/493 (54.36%), Query Frame = 0
BLAST of HG10021134 vs. ExPASy Swiss-Prot
Match: B9RHX7 (Probable terpene synthase 4 OS=Ricinus communis OX=3988 GN=TPS4 PE=3 SV=1) HSP 1 Score: 361.3 bits (926), Expect = 2.3e-98 Identity = 171/298 (57.38%), Postives = 225/298 (75.50%), Query Frame = 0
HSP 2 Score: 78.6 bits (192), Expect = 3.0e-13 Identity = 45/111 (40.54%), Postives = 68/111 (61.26%), Query Frame = 0
BLAST of HG10021134 vs. ExPASy TrEMBL
Match: A0A5A7UTP7 ((3S,6E)-nerolidol synthase 1-like OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold96G00790 PE=4 SV=1) HSP 1 Score: 640.2 bits (1650), Expect = 9.6e-180 Identity = 358/668 (53.59%), Postives = 387/668 (57.93%), Query Frame = 0
BLAST of HG10021134 vs. ExPASy TrEMBL
Match: A0A1S3B401 ((3S,6E)-nerolidol synthase 1-like OS=Cucumis melo OX=3656 GN=LOC103485753 PE=4 SV=1) HSP 1 Score: 640.2 bits (1650), Expect = 9.6e-180 Identity = 358/668 (53.59%), Postives = 387/668 (57.93%), Query Frame = 0
BLAST of HG10021134 vs. ExPASy TrEMBL
Match: A0A0A0LUX7 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_1G066560 PE=4 SV=1) HSP 1 Score: 634.4 bits (1635), Expect = 5.3e-178 Identity = 358/668 (53.59%), Postives = 383/668 (57.34%), Query Frame = 0
BLAST of HG10021134 vs. ExPASy TrEMBL
Match: A0A6J1EH51 (uncharacterized protein LOC111434068 OS=Cucurbita moschata OX=3662 GN=LOC111434068 PE=4 SV=1) HSP 1 Score: 608.6 bits (1568), Expect = 3.1e-170 Identity = 376/1022 (36.79%), Postives = 496/1022 (48.53%), Query Frame = 0
BLAST of HG10021134 vs. ExPASy TrEMBL
Match: A0A5D3BHX5 ((3S,6E)-nerolidol synthase 1-like OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold248G006280 PE=4 SV=1) HSP 1 Score: 607.8 bits (1566), Expect = 5.3e-170 Identity = 338/668 (50.60%), Postives = 378/668 (56.59%), Query Frame = 0
BLAST of HG10021134 vs. TAIR 10
Match: AT1G61680.2 (terpene synthase 14 ) HSP 1 Score: 338.2 bits (866), Expect = 1.5e-92 Identity = 185/496 (37.30%), Postives = 264/496 (53.23%), Query Frame = 0
BLAST of HG10021134 vs. TAIR 10
Match: AT1G61680.1 (terpene synthase 14 ) HSP 1 Score: 335.5 bits (859), Expect = 9.8e-92 Identity = 185/503 (36.78%), Postives = 264/503 (52.49%), Query Frame = 0
BLAST of HG10021134 vs. TAIR 10
Match: AT4G16730.1 (terpene synthase 02 ) HSP 1 Score: 195.3 bits (495), Expect = 1.6e-49 Identity = 106/303 (34.98%), Postives = 169/303 (55.78%), Query Frame = 0
HSP 2 Score: 55.5 bits (132), Expect = 2.0e-07 Identity = 36/119 (30.25%), Postives = 57/119 (47.90%), Query Frame = 0
BLAST of HG10021134 vs. TAIR 10
Match: AT4G16740.1 (terpene synthase 03 ) HSP 1 Score: 188.7 bits (478), Expect = 1.5e-47 Identity = 107/290 (36.90%), Postives = 160/290 (55.17%), Query Frame = 0
BLAST of HG10021134 vs. TAIR 10
Match: AT3G25810.1 (Terpenoid cyclases/Protein prenyltransferases superfamily protein ) HSP 1 Score: 182.2 bits (461), Expect = 1.4e-45 Identity = 98/293 (33.45%), Postives = 157/293 (53.58%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Bottle gourd (Hangzhou Gourd) v1
Date Performed: 2022-08-01 Position : 0 Zoom : x 1
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.
|