HG10006233 (gene) Bottle gourd (Hangzhou Gourd) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: CDSpolypeptide Hold the cursor over a type above to highlight its positions in the sequence below.ATGGAAACAGAGGAAGAAGAAACCCTAAAATGGGACAATATCATAGTCCTAACGCGCAGATGCTTTCACGATGATTGGGTCCGAATCATGGAAGCCTTACGTGAGTCAAATGAGGCAATAGATGCATTCAATCCCTTCCATGCTGACAAAGCTATTATCACGGTTCGTGATATAGATCAAGCACGTCTCCTCTGTTGCAATAGAGGATGGGTGACAGTGGACAATTCATGCTCAAATTCGAGCGATGGGAACAAACTCTGCATTCCAGGCCAAAATTCATCCCAAGTTATGAAGATTGGCTCCGATTCAGGGGAATTCCTTTTGAATGCCTAGAATTATCAAACATTAAAAAAAATCGGGGATGCTTGTAGAGGTTTCGTGGATGTTGGCGCAAATACTTGGAAGAAATTAGATTTGATGGAAGCACATATAAAAATCAAAGACAACTATTGCGGGTTTATACCTTCTGCCATTCGAATTGAAAATGAAGATGGAAGCTTCTTCCTTGTTCACATGGTAGCTCCGGCGAACGGAAAATGGTTTACAGGAAAACACCCAAAAATTCATGGCACGTTTACCAGAGAAGCTGCAATGAACAGTGACATTTCTAATCCTATGTCAGAAGCTTTCTCTTTCCAAGAAAACGCTGCTATACCTACTGAAAAGGAGAATGAAACAGATCCTAATGCCATCGATAAAACAGAGCTCGAGGAAATACAAAGAGAGAGGAAAGGAAAAGCAAAGATCTATGAGGGAGAATTGGAATCCCATGAAGCGGCAGACCTGCTGACAAAGACACACAGAGCAAAGAAAAAGGTGAGTTTTCCTTCCCCAAAAAATAGAACTGTTTATTATAACACGACTTCTGCACCAGCTCGTATACAAACAGGAAAGCCCAATTCTGTCAAAGCAAAAGAAGCCCACACAGATAAAAGCCCAAAAAAAGATGAAAGTCATAAAGGAAAAGAAAGATCAGCAAGCCCAGATAGAAATAATTACGCAGCCCAACATAAAAAGGCCATTATGCACGGTGAGAAAGAGATAAAAAAAAAAAAAGAGCAATAGTGGGGAAACAGAAGTCATGGCATTAAAAAAGGGGGAAATCCAAGTAACAAACTCCTCATGTAACTTTGAAGCAACAAATGAAATTGAAATAGAGGAGTTATATGTGGATTTAGGCGATATCCCTCTAAGACCGGAAGAAATTGTGTCCAGCCCAGAGCTACCTCCGATTCACAGTGAGCAAAATGATGAATCTGAGATTTTGAAATCGAAAGGGACGGGAGGATTGCAGGAGTTGAACTTAAATCAACTCTTTACAGAAACTACCTAAGAACAGAGGGAACAGAGAACAGATGAAAAAAGAAATGAAATAACAACGGGGACTTTCCAAGACCAACTTCACAAATGGCTTGGTGCCAACAATTTTTGTATCATTTTCATGCCTATAAATAATAGAAACATAGAAGAAGTTAGAGGAGAAAAACAGGGGGAAGAAAATTATCAATGAAGATTATTACTTGGAATGTCAGAGGTTTGAGCTCGGCCCCAAAGCGTGCTCTCATGAAAGGATTGATCACATCCTGTAATCCGGATTTTGTTATTTTGACTGAAACAAAATTAGAAATTGTCAATCGGTTCATCATTAAATCGTTATGGAGCTCCATTAGTATTGCGTGGGCGTTTTGCAAAGCTAATGGATCCTCAGGGGGCATTATAATAATGTGGGACTCCGTGGTTCATGAGGCTGTGGAGGCAGTTGAAGGATTTTTTTCTCTTTCCATAAATTTGAAATGCTCGGATGGTTTCATATGGTGGTTAACCGGCATCTATGGACCTGCCAGTCGACGTAGAAGAGGAGACTTCTGGATGGAATTAAACACTCTGAAGACTATATGTGGGAATAACTGGCTTCTTGGGGGAGATTTTAATGTCTATAGATGGGCAAATGAAACAACTTCCCAAAATCCATCTAACAGTTCAATGAGAAAGTTTAACGCCTTCATTGATAATGCCTCCTTAATGGAGCATAGCCAATCAAATGGCCTTTATACATGGACCAATCTTTGCAGCCAACCAACGATGTCGAAAATTGATAGATTCTTATATGCTGATAGTTGGGAGCAAAAATTCAATTGTCATTATGTAAAAAGGCTTAATCGCAGTACTTCGGATCATTATCCTCTGCTCTTAGACTCAGGCTCGATGCAATAGGGGCCATGTCCCTTCAAATTTGACAATAGATGGCTCTCTCACAAAATGTTCCAGCAAGAAATTGTTGCTGAGTGGCCTGACATTCACCAAGATGGACACCTTGGTTTCGCTCTCATGAGGAAATTAAAGCAACTATCATTTCATATTAAAGCCTGGAACCAGAAAATATTTCGAAAGGAGCAAAATATGGCAGATGACATATCAAAGGAGATAGCTGAAATTGACTCCAAAGAGGAGCATCTTCTCATAACAGAGGTGGATATTCAACGCATAATATCTCTTAAAAGTGACCTATTAGCGATCAATCTTTCAGAAGCAAGAAAATGGAGTCAGCTATGCAAACTGAAGTGGCTATTGGAAGGAGATGAAAACACCACATACTTCCATAAAGTATGTACTGCAAGAAGGCGATTCAACTTCATTTCTGAGATTCAGAATGCACAAGGGGTTAGTCAATTTACTGATAGAACTATTGAGCATGCTTTTGTGTCACATTTTAATGATATATACAGGTGTCCAATATCCTCATCTTGGCTGATTGACAATCTTAACTAGCGTCCAATAACTGAAATACAAGCCAGCGATTTGATAAAGCCATTTACTGAAGCCGAAGTGTATGCTTGTCTCAATCTTATGGGAAATAATAAAACTCCGGGACCAGATGGATTTACTATGGAATTCTTCAAAAAGTTCTGGAACAACTTCAAATCTGATATTATGAACCTGTTCCACGATTTTTTCTTGAATGAGTTTGTGAACAAGTCTGTCAATGCCACATGTATTACTCTCATACCAAAAAAGTTGCAGTGCACAAAGGTATCCGATTATAGACCTATAAGTTTGACTACCAACATATATAAGATCTTGGCTAAAGTTTTTGCAGAGAGGCTCAAGCTTGTCCTTCTCAACACTATAGCTAAGAATCAAGCGGCCTTTGTTAATGGTCGCCAAATCACTAATCCCATATTGATCGCAAATGTGCTCATTGACTATTGGAGATGCAGAAAATTGAAGGGTATTGTGATCAAGCTGGACATTGAAAAACCCTTTGATAAGGTCAATTGGTCATTCATCCTTTCCATTTTGAAACTTAAAGGTTTCCACAGCAAATGGTCCGCTGGATTTATGCGTGCATATCCTCTGTCAATTATTCGGTGATTCTTAATGGAAAGCCTCGAGGGTTTATTCAAGCCACCAGAGGCATTCGTCAAGGAGACCCCCTATCACCTTTCTTATTCATTATTGCCATGGATTACCTTTCAATGCTTATGGAAGAAGCGCATCAAAAAGACCTGATATCTGGGTTTCGCATTAGAGGGGGTTAAACCATTGTGAACCATCTCCTTTTTGCTGATGATATATTGCTATTCTCTGAGACTGATTTGGAAAAAGTCAGTAATTTGAAATGTATCATCAATGCCTTTGAATCTGCATCTAGCCTCAAAATCAACCTACAGAAGTCAACAATCTCTGGTAATTGATGAATCCACCTTGCACCAGACTAAAGCCATATGGGGTTGCAACATCACAGCCTTTCCTATATCTTACTTAGGCATGCCCCTTGGTGGTAACCCGAGAACTCATAGATTCTGGCAACCCATTATTGAAAACATTGAGAGAAAGCTTGTTTCGTGGAAGTTCTCTTACATTTCCAAGGGTGGAAGACTCACTCTATTACAATGTGTTCTTAGCAATCTCCCTACATATTTCATGTCTACGTTCAAAGCTCCTAGCTCTTTTTGCAAAAAAGTTGAAAAATTGATGAGAGACTTTCTGTGGGAAGGTTCTGATAAAGATGGCAGCTCGCATTTAGTGAGATGGGATGTGGTTGTCTCTCCTAAAAACAAAGGAGGCCTTGGCATTGACAAAATCAAAACTGCTAACACTGCCCTCCTTTGCAAATGGATTTGGAGATTCTACACGGAAAAACACAGCCTCTGGAAATCCATCATTATCGACAAGTATATCACTGAGAGACCGGGGACTATACCTGCAAAATGTAAATACCACAGCGCCAGATCCCCCTGGTTCCACATTGTTAAGCATCACAATCAAATTATTGATCATATTGGGTGGAAAATCAATAATGGTGATACTGCTCTCTTCTGGCACTATAACTGGAGCTCTGAAAACATTCTTTCATCCACTGCCCCCCGTTTCTTCGCCATGACAACTTCTCCAAATATGACTGTTAGCGAAGCCTGGGACAATAGAGCTGGTTATTGGAATTGTAAGCCCAGGAGACCCCTTAGAGACTACGAAACCAGTGCTTGGAATGCTATCACTAGTTCGTGGACTCCTCCTAGAACCAATTCGGGTCATGATCAGTTGCAATGGAAATTAAATGGGAATGGAAATTTTTCCGTCAAATCATTGAAGGAGCATATCTTTGAATCAAACAACAATCTCCCCAGAAAAGATCCAAAAGATCTTTGGTCTGCCATCATGCCAAAACAAATCAAGTTCTTTCTTTAGACTATCATGCATCATGGGCTCAATACTGCGAACAAATGCCAAGCTAAATTTCCTACCTTGAACATTTGCCCAAATTGGTGTATTCTTTGCAAAGAGGAATCGGAATTGATTGACCATCTCTTCCTTAAGTGCTCATACTCAAAATATATATGGTCTATGCTTGGAAGAGGTAATCATACACAACACCTTAACTCCATAGCAGCTCTTCTGGACTATTTATTGAATTTCAAGATGACATCCAAAGCAAAAATATTAGGGAGCAATATTATAGCAGCCATTTTATGGTGTCTATGGCTTGAGAGAAATCAAAGAACTTTTCAAGATAAACAATTCCACAGAGGATGCTTATGGGAGGATATTCTATCTTTGGCTGCTTTATGCAGTACAAAATCCTCCCTTTTTTGTAATTATGATAGTGCTACTATTGCTCTGAACTGGAAAGAATTTACTTAATCCCGCCTGTGGGATAATCTGATGCTTTATCTGTCCTTTTGTATATCCCGAGCTTTTCTCTAGCTCGTTCTTGTACCTCTTCATCTTTGATTAATAAAGCATCACTTTTGGTCTTGGGGCGTGATGAGGGTGCTAGGGGGTGTCAACCTAGTTGAGATGTCCTGGTGCCTTGTGTATATTGTTAAAAAAAAAGAAATTGATGAAAAAATACTTGAATAGGAAATTTTGTTTAACCCAAGCTAGATTTTTTTGGATATTGAATTTCAACCATTTAATTGTTTTATTTACTTTAATGCAATTTTATAATTCTTGTATTAAACAATTTCCAAAACTCCACTCTTCGGTTACCCTAAGACCTTAAATTGTTTGATTGAGAAATTTTAGAGCTCCCTGTGTTCGATCTGGTCTTGCTCCTAAGACTAACCGTTTGTAGTGGTAGATAGGGTTAAATTATTTGGAACAAATTTGGGCGACAAAATCCGCTTGACCAAAGATAAGGCTGGAAGGAAGAGGATTCTTACCCACATGTTACAATCTTGTCTACGTGGCCTAATTTTGTTCACATACGCCAACCTTTGTTGTTTGATCACATCAATTTGATTTTGGGCCTCAAGTTGCAATTGAAGTTAAAATAAAAGCCCATTAACAAAGTGAACAACTTATCATAATCTGCCATCAGTCTAATAAGCATATCATCCTTTGTAGCTACATATAGCTAGTTATTAAGGTCTTGATAAGAGAGTGTTTTTGTTGCATTGTATATACAGTGTTTGTAAATGAAGTTAAGTTTTAAGTTAAAGAGAGACTTGACAATACATTTCGTGGCATAGTTTTGTTGTCACAACCCATCCCAATAAATTTACCAGCAATCTTTGATAAATTTACCAGCAATCTTTGACAGAGTAGAGATAGGTATCATCAATCAAATTTTATAAAACTAAAATAACAATGAACGATCTTATCCATAATAACAATAATAATAATGAATGAATGAATGAAAATTGACCTGTACATTTATGGATAGTATTTTTGGTTTAAATACTCCTCATATTATTTAGGGCTTTCAACACATATAGCCTAAAATAAATAAGTTTAATTACACGAATTTTCATAAAAGCTTGTACTAATCGAACTTAAAGTTAAAAGGTTCGATTCTAAAGATGTCCAAAAAAACTCATGGGGCCCGGCCCCGCGGGGACCCACCCCGAACGGGATGAGAAATCCTGAAACACACGGGAAGTGGGGGAGGGAGTGGGGATTTTTTTGCTCATTTCCAATAATCCCCATCCCCGACCCTGTATCCCTCCTCACCCCCGATTATATATATATATATATATATATATTAATTTTAATTTTAATTTAATGGATGTTTTAATTATGTAAGTTTAAGAGTTTATTTACTTTAATTCTTTTGATGTTGTAATATTTAAGATAAAATGTTCTAATGGTTGAATTCTAATTTTTATAAATTATTTTAGCATTTTAATTATATTTTATCAAATTTCATATATATTATTGTTTTTATTATTAAAATTGATAATTTTTATTTAAATAAAAATTGTAATGGAAATGTTTCAAATAAGAAATTGTTAAAAAAATATATTTAATTGAGAAAAATTATTAAATTTCTCAATTACAAAAATGTTAAAAAAATAGAGGTGGGGAATCTTTGCGGGCAATTCCCGCCCCATTCCCCTGTAGGAAAATTCCCAAGGACGAGGAATGGAATGGGGGGCGGGGACCGGGATGGGGAAGTTTTCTCCGTCTCTGCCTCGTGGACATCTCTATTTGATTCTCCTATCTCATATAATTGTTGTTAAAAAAATATATATATTAAAAAATCATAAAAATTCAAAGAGAAACCATAGAGAAAAATGGATTTTTCATTTCGAAAATATCAATATACAAAGAAAAGGTTTAATCGGCATGGACTCCTAATTTCCTTGAGATTTGAAGTTCAAATCTCACCGTCAATAATTATTGTGCTCGTGAAATATTAGTTTAATTAAAAAAATAATGATTAAATTTGACTAACCATAGCTTGCAACTAAATTTAAGAGTCCAACTTTATATCTATATAAATACCAACCGTTTGCAAACTGGAAGGAACAAACAAGTATTCCCCACATACAGCTTCGGGAAACCATGGAGCATTCAATGGCAACTTTTCTCCTACTCATCCTTATCTCTATTGCAATCCTCTCCTCGTATGCCATCCCTAATCAAGGCAAAAACCCTCTTTCCATTTTTCTTTTTCTTTCTTTATTTTTCTAAACTTGTTTCTTTTATTGATTCTCACTATTCTAACCTTTTCCTTTTGTAGATGTTAGCTATATGAAATTTGTACACAATGCCAATGATGTACCAGTAGAAGAAGAATACGACTACATAGTAATAGGAGGAGGAACAGCAGGCTGTCCATTAGCTGCAACATTGTCATCAAAGTTTTCAGTTCTCCTTCTTGAAAGAGGCAGTGATCCCAACACATATCCCCCCTTGTGTTGAGTGAACAAAGTCTATCATATGTTTTTGTTGTAGAAGATGATGGCCAAAATCCCATCCAACGCTTTATATCTGATTATGGGGTAGAAAACATAAGAGGAAGAGTCCTTGGCGGCAGTAGCATGGTCAATGCTGGCTTTTACTCGAGGGGCCATCAAGAGTTCTTTGAAAGAGCAGGTGTTGATTGGGACATGGAAATGGTGGAGAAGGCTTATGAATGGGTTGAAGAAACTGTGGTATCTAGGCCAAGTTTGAGTGGTTGGCAATTTGCTTTTAGGAGTGCGTTGTTGGAAGGTGGGGTTGGTCCTGATAATGGGTTTGATTTGAGGCATATTGTGGGAACTAAAACTGGAGGTTCCATCTTTGATGACAAAGGAAACAGACATGGAGCTGTGGAGTTTCTTAATAAGGCTAATCCCAGAAATCTTAAAGTTGTCATTCAAGCCACAGTTCAAAGGATGCATCTACTGTCTTTGGGAGCATGATGAGGGTGTTAAGGATGTGTCAACCTAGTTGAGATATCCTGGTGCACCTACTGATCCCTCTCTAGTACCTTTGTTAAAAAAAAAAAGCCACAGTTCAAAGGATCATCTTCACTGGCTAGTGTTTTATAAGGAAAATTTGGTTTAAAGTTTTTGTTGGTCAATGAATTTTTTGAAAATGGTTCCTCAACTTATGCACCATTTACCTAATCTTCAACTTTTAAAAAGAGAAGAAAAAGTACAATTTTGATATTGATATTAGAGAAAGAATAATACTTCTAGTGCATTCTAAGATGTTGTTTATGTGTATTCTGTAATTGTAATGAATTGTGGGGCACACTTCCAAATCTGTAATCAAAACATGTAATCTGATTGAAGAATTGAGGGTGCTTAATCTGATTGTGGTTGAAAGTTATAACTAGGACCCATTACCTTTATCGTTATAGATATTGTTAGTGTAACAATATGAAATTAATATATCGCTATTGACATCGGGGCATGATGAGGGTGCTACGGAGGTGTCAACCTAGTTGAGATGTCCTGGTGCACCCCCTGATCCAATTTTCCATTGGTTACTTGTTCAAAAAAAAAAAGTATGAAAATTATGAATATATTAAATTTATTGTTACTTTTACCTTTACCATTATCGTTAGGGTCAAGCAGTAATGGGAATGGTAACGATGACAGTAAAACGTGACAGATTTATTATTCTAAGTAAACGCGATCAAAAGCAATCAAATACATTTGCGATTTAAGCCCAATACAATTGATCTATCAATGAAATCTCATTATGATTACATCAATTTTCATTACAGATTGATAAACGTAACCTAAACTTAATCCACAAAAATAAGTTTCTTGAAATAATTTTTTTTTTTTTTTGGTTTTTAAGAGTAAACTTAAGATGCGTTTGGATTGACTTTTTAAGTGTTTAAACACTTAGAAAGTTAATCCAAACAAGTTATTGCATCGACAAAAACACCCAAATTTCAAACTTTTTTCTATTTGGAATTTTATAGGTTTATCTGCAAGTGGAGTATCATATTCAGATTCAAAAGGAAAGTTGCATAGAGCATTCATTCGTAAGAAAGGGGAGATTATTTTAAGTGCTGGAGCCATTAGAAGTCCTCAACTTCTCATTCTAAGTGGGGTTGCCTCAAAATCTCATCTTTCATCTTTAAAACTACCTGTCGTTCTCCACCAACCACATGTCGGTCAATTCATGACTGAATCCTCGTTTCAGTCCCACCATCGTTCTTCCATTCCAATTAGTTGCTTCATCTGCACAAGTCGTTGGAACATTAGACAACAATATCCATTTACAATTATTCGCCAGCCCTTTACCATTCTTCCCTCTACCATCTTATAGCCTTCTTCCTTCTCAATCCACTTCCATCACTCCTAGCTTAGCCATTTTTGTTGGAAAATTCTCTAATGTTCATTCTAAGGGGTGGCTCCACTTGAATTCTTCCACTGATGTGAAGGAGAGTCCCATTGTTCGATTCAATTATTATTCTCATCATCATGATCTTACTCGATGTGTTAGAGGAGTAAGAAAAGTGGGAGATTTGCTTAAAACTCAAACCATGGAAAAGATTAAGACAGAAGATTTGGAGGGTAATAAAGGATTTGAATTTATGGAGCTTCCAATGCCGGAAAATTTGTGGAATGATAGTCTGGTTGAAGAATATTGTCGAAACACGGTGGCTACTTATTGGCATTACCATGGAGGATGTTTGGTCGGAAAAGTGGTCGATGATAATTATAAAGTTATTGGAATTAAAAATTTGCGTGTTGTGGATGGCTCCACCTTCTCCGACTCACCGGGAACTAATCCTATGGCCACCCTTATGATGCTGGGCCGGTGGGTTTTTTTTTTCTTTTATATAAAAAAAAAATGTTAAAGATTTATAAGATATAACTTTTTGAAAATTGCGAGATCACCAAACATGTAATTCAACTTAACTTTTTCGTTTTTCTAATATTATAGAAATATTGTCTTTTAAATTGTTTGAACCTTGATACACCTTTTTAAGAACGAAGTATTTTTGTTGGAAAACTTTTTTTTTAATGATTAATAATAGCATAATGTTTTCTTAGAGGAAAATAATACTACATTTCATGTATTGATTGTACTTGGAATTATGTATATGGGTAGTACGTACTCGGTCTTGGAAAAATCAAAGGATCTCACACTTTTAATAAGAAAGTTGGGTTACTCCTCTTATTGCCAATTGGTTTTGAGATGGAACACTATCCGATAGTACTATTGTATTCTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTAATTATGTATTGGTTGCACTAGAGATTTTTTTTTATTATTATTATATATCTTTTATTTCCATTAACTTACCATTTCAAAATTGTTTTGCAGCTATGTTGGCCTTAAGTAAACTAGGATAGATCAATATTCCACACTTCTTTCAGTATAATATAAGGAATTGAGAGATTTGAATCAAATACTTCATGATCACAGTATGTAAGTTGAGCTATCTCTCTTTCTTAGTTATTGGGTGTATGTATCTTGTTTTTATTATTTTTCCACTATACGTGTTTAATAATTGTTGTTTACTTTCACATCTTATTTTTAGAATTAATATTGTTTTCTAGTTTTCATATTTCATATTTTAAGTTTCTAAAAATTATATACAAATTTAAGATTCAAACCAACTCCAATCCCCAAGTTCGACCCAAAGTCAACTTTTAAATGGATCAGCCAACCCCATTTATTCATTGGATTGAAGGCCTGTATGGGTCATATTTGGAACAGTATGTCGGGCCAGCTTAATCGGCATATCATTGGACCAACCCAAATATATATGCATATGTATATAATTCGTCATATATTATATTTTAAATATTAAAAAGCTAATTTTTTAATTTTTTAAAAATATATTTAGATTTATAGTAGTTTTCAGTTAACATAATTTTTTTAAGGGTTAAAAACTAATAAAACTTCTTAAGATAATTAAATACTAAATAAAACTTTATAATATCAATAACTTTAGAGAAATTTTTATATTTAGAAAAAATGTCAAACTATTTATAGAAAATATAAAAAAAAATAATGATAGATATTCATAAACTTCTATCAGCATCTATTAATGATAGACTTTTATCATTTCTATCACTGATAGACCCTGATAGACTTTTATCTGCGTCTATCACAACTATCTAAAAATTTTGCTATTTTGTATAAATAATTTTCCTTAATTTTTCTATTTTTAAATTTTTTTCATAATTTTATATAGAAAAATAATAAAAATATAAAATAAATTTAATAAAAATACAATTATAATAAATTTTAATAACATTTTGTCAAGAAAATCTAAAATATACACATATTTTTTTAAATAATTATATAATTAATATTTAATGGGCCGACCAAGGCCCAATTACCCAAATTTTGATTCAAATAGTCAAGTCCAAGAATTGAACCATAGACTTACTATTGAAGGTTAGGTCGATTCAATCTATGCCCAAACAACGACCTAAACCATTGAGCTTGAACCTTTACTTTATTGGGCCGAGCTGGCTAACGATAAAGGTGATATTATAATTATTTTGTCAAAAACTAGAACTAGACCTCATTGATAGCTACTGCAATGGAAATGAATGGCTTGAACTACCATCGGTTAAATTCATTAATTGACTAAAAGGCTAAAACGTACGTCCCCACTTCAATGCTGAGCAATAATTGATAATTATGACAAAATGAGCACAATTAAGAATAAATGGTATAGGAATTGGCATGTACTTTTTTCATGGAAGTCGAAAGTTTAAATTCCTACTCAAAAAATTAATTAATGATATGCTACACCTTGCTTTAGATTATCCTACTAAACTTAGATCGAGATGTGACAATAATAAATTTCAAGTGTGCAATAGAATCTACTGTCAAAATGTTTCTTAAATTTTAAACTCAACTTCTGTTATACTATCATGAAGTTAACATTCTTATGTATTACGATGTAGAACACGTTTTTAAGATACACTCTAACGTCTACTAGATGTACATACAAAAGACTTTATGCGACACGTAGTGCGACCGGTGATGCAAATACTGATAAGCCAACTCTTTCTTAAATTCAAGAGCAACCTGGTGGGAAAAAATAAGCATAAAGAATGAGCTAAAAAGCCTAATCAGTAGTGAGTTCAATAATAAAATAACTTTAGTAAAACTTTCTTCGAATCATATAAAAGTTAAACTTTTTCGGAACAAACCAATTAATCATTTAAGAAGAATAAATATTATAAACTTCATATAAATAACAATCCTTAATAACCTTAATACATAAGCTTATAAAAACTCATCACTAAACCTGTACCCCAACTTACCGTCGTACGACATAAAGTGATATCACTATGCACGATAAATTAATCATTTCCATATGTGCATGTAGGACTATATTTACACACCACAAAAATATATTCTTGTGGTCTATTAGGAAATATAACTATAACATTTACACCTAAAAAACACAGTCTAAGGGCGTTTGATCATAACATTTACACCTTAAAAACACATTCGCAAAGTGTTGGAAAACATAATCATAACATTTACACTTCAGAAACACACTCTTAGGTGTACCGGATAACATAACCATAACATTTACACTTTAGAAACATATTTTCAAGGTGTATCGGGAAATCACCATATTGTTTACACCACGAAAATACATTCACACAGTGTATTGAGTAATCACATGGGCACAAGACCTAGTATATTTAAAATCACTTTGTCATAAATTAACCTTTCATCATACATAAAACATATACTTTAACGTTCTTAAACACATAACTTAAACATACTTTAACGTTATTAAACATATAACTTCAACTATTTTACAAAATGTTATTTTCTGATCATCAGTGAGGAGTGCGAGAGGACTGAGGAGTGAGAGAGGTTTGTCGTTCTACTGGACTACTACCATCGGCCAACTGGCCGATGGCATATTCGATACAACTGCCGTGGTCGATAACAATAGAAAAAAAAATACTTCTCCGTTGATTGGGACAGAAAACTTTTCTATATACGGCCGATTGGGAGAAAGTTTTTTGCTCTCACCAAGTTCAAAGACTCTCCCGCACAATCTCTGATCACTATCCGTTGCTGTTAGAATCAAAATCCCTCCGATGGGGTCCTTGTCCATTTAAATTCGACAATCGCTGGATATCACATAAAGAATTTGCTCCTATGATACTGAACAAGTGGTCATTGATCTATAAAACCGGTCACCCTGGATTTGCTTTAATGAGGGCACTCAAGGAGATGGCTCAACACTGTAAAAATTGGAATAAGCAGATTTTAAAAAAAGAGATTAGCATGGCTGAAGAGATTACTAAACAGATTGATGAGATTGATAAAATTGAAGAACAAAGAAGCATCCATGAGACTGATATTCATCGAAGGGCTGCTTTAAAGGCCGACTTAAACAATATTCAGATGCTCGAAGCTAGAAAATGGAGGCAATTATACAAATCTAGATGGTTACTAGATGGGGATGAGAACTTTGCTTTCTTTCACAAGATGTGTCTTGCCCGCAGAAGATATAATTTCATCTCCGAAATTCAAAATGAATTTGGTATCAGTCAGCATACGGATCACAGTATTGAAGGGGCCTTCACAGATTTCTTCACTAAAATATATACCAAGACAGAAGGTAACTCATGGATGATTGGAAACTTGCAATGGAGGAAGATTGATGCAACCAGCGCCATCGACCTTACTAAACCTTTTGATGAGACTGAAGTAATTGAATGTATCAAAGCCTTGGGTTATAACAAAACACCGGGACCGAATGGTTTCACTATCAAATTCATTAAAAAGTTCTGGAACAATTTCAAGTATGACATTATGACTTTGTTCCACGATTTTTTTCAGAAGGGTATTGTTAATAAGGCCATCAATGCCACCTACATTGCTCTAATTCCCAAGAAGCCATCACTTATTAAAGTCTCAGACTATAGACCTATCAGTCTCACTACTAGCATTTACAAGATCCTCGCTAAAGTTTTAGTTGAACGTCTCAAACAGGTTCTTCCACACACCATAGCACTAAACCAATATGCTTTTGTTAAGGGTCGTCAGATCACCGATCCTATTCTCATAGCTAATGAGATTGTTGATATGTGGAAGTGTAGTAAACGTAGAGGATTTATTCTTAAGCTCGACATTGAAAAAGTTTTTGATAAGCTTAATTGGAACTTCCTGTTATCGATGCTGAGACTGAAAGGCTTCAATGTAAAATGGATAAATTGGATTAGCGCGTGCATCTCTTCTGTGGGCTACTCTGCACTTATCAATGGGAAGCCAAGAGGTTATATACAGGCCAAGAGAGGTATTCGACAGGGAGATCCTCTCTCACCTTTCCTATTTATTATTGCTATGGACTACCTATCCAGCCTTATTGAAGATGCTCAAGCGAAAGGTATCATTAAAGGTTTTTAATCTGATTGCAATTCTGTACACATATCACACCTTTTGTTTGCAGATGATATCCTCTTATTCTCTGTTGACGAGGAATCCTCTCTCAAGAATCTTAGACTCATTCTTATGGTGTTTGAGATAGCCTCTGGTTTGAAGATTAATCTTCAAAAATCGATATTAACTGGTATCAACATCGAGCTAGACTTGGTTGAGGATGCTGCTTCTATTTGGGGTTCCACTTCTCAATTGCCTTTCGACTACTTGGGAATGCCTCTTGGAGTTAATCCTAGATCCACATCTTTCTGGAATCCTATCATCGATCGCATTGATATGAAATTCGATTCCTGGAAGTACTCATATTTATCAAAAGGGGGAAGACTTACTCTCTTACAGGCTGTGCTCAGTAACCTCCCAATATATTTTCTTTCTTTATTCAAAGCCCCCATTGCTATTTGCAAATTGATTGAAAAAAAGATGAGAACTTTGTTATGGGAAGGCATTGAAAAAGAAGGGGGCTCTCACCTTGTTCGATGGGACTTGATTACTCGGCCTAAAGAGATCGGTGGTCTTGGTATCGATAAAATTCGTCATACCAACGATGCTCTCCTTGGTAAATGGATCTGGAGATACCACAATGAACCTACTCAACTATGGAGATTGCTAATAGATAGCAAATATACGAAGGTACCTCCATTATCAGTTCCAAATTGTTGCAAATTCACTAGTACTAGATCCCCTTGGTTTCAGATTACTAAAATGGAATCGATTGTCTTCATGAATATGAATTGGTCTGTGTGCAATGGTAAAAACACATTATTCTGGTTGCATCGGTGGAATAGAAGTGATATTTTATATAACACTATTCCCCGATTTCATGCATTAGTTGAAGATGAGTATATAACTGTTTCTGATGTTTGGAAGGAGAACTTGGCAGATTGGAACCCTGAGTTTAGAAGACCTCTACTGGAAAGAGAACAAGCTTCGTGGCATCAACTGTCGAGCTCCTAG ATGGAAACAGAGGAAGAAGAAACCCTAAAATGGGACAATATCATAGTCCTAACGCGCAGATGCTTTCACGATGATTGGGTCCGAATCATGGAAGCCTTACAAGCTTTCTCTTTCCAAGAAAACGCTGCTATACCTACTGAAAAGGAGAATGAAACAGATCCTAATGCCATCGATAAAACAGAGCTCGAGGAAATACAAAGAGAGAGGAAAGGAAAAGCAAAGATCTATGAGGGAGAATTGGAATCCCATGAAGCGGCAGACCTGCTGACAAAGACACACAGAGCAAAGAAAAAGGTGAGTTTTCCTTCCCCAAAAAATAGAACTGTTTATTATAACACGACTTCTGCACCAGCTCGTATACAAACAGGAAAGCCCAATTCTGTCAAAGCAAAAGAAGCCCACACAGATAAAAGCCCAAAAAAAGATGAAAGTCATAAAGGAAAAGAAAGATCAGCAAGCCCAGATAGAAATAATTACGCAGCCCAACATAAAAAGGCCATTATGCACGAAGATGATGGCCAAAATCCCATCCAACGCTTTATATCTGATTATGGGGTAGAAAACATAAGAGGAAGAGTCCTTGGCGGCAGTAGCATGGTCAATGCTGGCTTTTACTCGAGGGGCCATCAAGAGTTCTTTGAAAGAGCAGGTGTTGATTGGGACATGGAAATGGTGGAGAAGGCTTATGAATGGGTTGAAGAAACTGTGGTATCTAGGCCAAGTTTGAGTGGTTGGCAATTTGCTTTTAGGAGTGCGTTGTTGGAAGGTGGGGTTGGTCCTGATAATGGGTTTGATTTGAGGCATATTGTGGGAACTAAAACTGGAGGTTTATCTGCAAGTGGAGTATCATATTCAGATTCAAAAGGAAAGTTGCATAGAGCATTCATTCTTGCTTCATCTGCACAAGTCGTTGGAACATTAGACAACAATATCCATTTACAATTATTCGCCAGCCCTTTACCATTCTTCCCTCTACCATCTTATAGCCTTCTTCCTTCTCAATCCACTTCCATCACTCCTAGCTTAGCCATTTTTGTTGGAAAATTCTCTAATGTTCATTCTAAGGGGTGGCTCCACTTGAATTCTTCCACTGATGTGAAGGAGAGTCCCATTGTTCGATTCAATTATTATTCTCATCATCATGATCTTACTCGATGTGTTAGAGGAGTAAGAAAAGTGGGAGATTTGCTTAAAACTCAAACCATGGAAAAGATTAAGACAGAAGATTTGGAGGGTAATAAAGGATTTGAATTTATGGAGCTTCCAATGCCGGAAAATTTGTGGAATGATAGTCTGGTTGAAGAATATTGTCGAAACACGGTGGCTACTTATTGGCATTACCATGGAGGATGTTTGGTCGGAAAAGTGGTCGATGATAATTATAAAGTTATTGGAATTAAAAATTTGCGTGTTGTGGATGGCTCCACCTTCTCCGACTCACCGGGAACTAATCCTATGGCCACCCTTATGATGCTGGGCCGACTCATTCTTATGGTGTTTGAGATAGCCTCTGGTTTGAAGATTAATCTTCAAAAATCGATATTAACTGGTATCAACATCGAGCTAGACTTGGTTGAGGATGCTGCTTCTATTTGGGGTTCCACTTCTCAATTGCCTTTCGACTACTTGGGAATGCCTCTTGGAGTTAATCCTAGATCCACATCTTTCTGGAATCCTATCATCGATCGCATTGATATGAAATTCGATTCCTGGAAGTACTCATATTTATCAAAAGGGGGAAGACTTACTCTCTTACAGGCTGTGCTCAGTAACCTCCCAATATATTTTCTTTCTTTATTCAAAGCCCCCATTGCTATTTGCAAATTGATTGAAAAAAAGATGAGAACTTTGTTATGGGAAGGCATTGAAAAAGAAGGGGGCTCTCACCTTGTTCGATGGGACTTGATTACTCGGCCTAAAGAGATCGGTGGTCTTGGTATCGATAAAATTCGTCATACCAACGATGCTCTCCTTGGTAAATGGATCTGGAGATACCACAATGAACCTACTCAACTATGGAGATTGCTAATAGATAGCAAATATACGAAGGTACCTCCATTATCAGTTCCAAATTGTTGCAAATTCACTAGTACTAGATCCCCTTGGTTTCAGATTACTAAAATGGAATCGATTGTCTTCATGAATATGAATTGGTCTGTGTGCAATGGTAAAAACACATTATTCTGGTTGCATCGGTGGAATAGAAGTGATATTTTATATAACACTATTCCCCGATTTCATGCATTAGTTGAAGATGAGTATATAACTGTTTCTGATGTTTGGAAGGAGAACTTGGCAGATTGGAACCCTGAGTTTAGAAGACCTCTACTGGAAAGAGAACAAGCTTCGTGGCATCAACTGTCGAGCTCCTAG ATGGAAACAGAGGAAGAAGAAACCCTAAAATGGGACAATATCATAGTCCTAACGCGCAGATGCTTTCACGATGATTGGGTCCGAATCATGGAAGCCTTACAAGCTTTCTCTTTCCAAGAAAACGCTGCTATACCTACTGAAAAGGAGAATGAAACAGATCCTAATGCCATCGATAAAACAGAGCTCGAGGAAATACAAAGAGAGAGGAAAGGAAAAGCAAAGATCTATGAGGGAGAATTGGAATCCCATGAAGCGGCAGACCTGCTGACAAAGACACACAGAGCAAAGAAAAAGGTGAGTTTTCCTTCCCCAAAAAATAGAACTGTTTATTATAACACGACTTCTGCACCAGCTCGTATACAAACAGGAAAGCCCAATTCTGTCAAAGCAAAAGAAGCCCACACAGATAAAAGCCCAAAAAAAGATGAAAGTCATAAAGGAAAAGAAAGATCAGCAAGCCCAGATAGAAATAATTACGCAGCCCAACATAAAAAGGCCATTATGCACGAAGATGATGGCCAAAATCCCATCCAACGCTTTATATCTGATTATGGGGTAGAAAACATAAGAGGAAGAGTCCTTGGCGGCAGTAGCATGGTCAATGCTGGCTTTTACTCGAGGGGCCATCAAGAGTTCTTTGAAAGAGCAGGTGTTGATTGGGACATGGAAATGGTGGAGAAGGCTTATGAATGGGTTGAAGAAACTGTGGTATCTAGGCCAAGTTTGAGTGGTTGGCAATTTGCTTTTAGGAGTGCGTTGTTGGAAGGTGGGGTTGGTCCTGATAATGGGTTTGATTTGAGGCATATTGTGGGAACTAAAACTGGAGGTTTATCTGCAAGTGGAGTATCATATTCAGATTCAAAAGGAAAGTTGCATAGAGCATTCATTCTTGCTTCATCTGCACAAGTCGTTGGAACATTAGACAACAATATCCATTTACAATTATTCGCCAGCCCTTTACCATTCTTCCCTCTACCATCTTATAGCCTTCTTCCTTCTCAATCCACTTCCATCACTCCTAGCTTAGCCATTTTTGTTGGAAAATTCTCTAATGTTCATTCTAAGGGGTGGCTCCACTTGAATTCTTCCACTGATGTGAAGGAGAGTCCCATTGTTCGATTCAATTATTATTCTCATCATCATGATCTTACTCGATGTGTTAGAGGAGTAAGAAAAGTGGGAGATTTGCTTAAAACTCAAACCATGGAAAAGATTAAGACAGAAGATTTGGAGGGTAATAAAGGATTTGAATTTATGGAGCTTCCAATGCCGGAAAATTTGTGGAATGATAGTCTGGTTGAAGAATATTGTCGAAACACGGTGGCTACTTATTGGCATTACCATGGAGGATGTTTGGTCGGAAAAGTGGTCGATGATAATTATAAAGTTATTGGAATTAAAAATTTGCGTGTTGTGGATGGCTCCACCTTCTCCGACTCACCGGGAACTAATCCTATGGCCACCCTTATGATGCTGGGCCGACTCATTCTTATGGTGTTTGAGATAGCCTCTGGTTTGAAGATTAATCTTCAAAAATCGATATTAACTGGTATCAACATCGAGCTAGACTTGGTTGAGGATGCTGCTTCTATTTGGGGTTCCACTTCTCAATTGCCTTTCGACTACTTGGGAATGCCTCTTGGAGTTAATCCTAGATCCACATCTTTCTGGAATCCTATCATCGATCGCATTGATATGAAATTCGATTCCTGGAAGTACTCATATTTATCAAAAGGGGGAAGACTTACTCTCTTACAGGCTGTGCTCAGTAACCTCCCAATATATTTTCTTTCTTTATTCAAAGCCCCCATTGCTATTTGCAAATTGATTGAAAAAAAGATGAGAACTTTGTTATGGGAAGGCATTGAAAAAGAAGGGGGCTCTCACCTTGTTCGATGGGACTTGATTACTCGGCCTAAAGAGATCGGTGGTCTTGGTATCGATAAAATTCGTCATACCAACGATGCTCTCCTTGGTAAATGGATCTGGAGATACCACAATGAACCTACTCAACTATGGAGATTGCTAATAGATAGCAAATATACGAAGGTACCTCCATTATCAGTTCCAAATTGTTGCAAATTCACTAGTACTAGATCCCCTTGGTTTCAGATTACTAAAATGGAATCGATTGTCTTCATGAATATGAATTGGTCTGTGTGCAATGGTAAAAACACATTATTCTGGTTGCATCGGTGGAATAGAAGTGATATTTTATATAACACTATTCCCCGATTTCATGCATTAGTTGAAGATGAGTATATAACTGTTTCTGATGTTTGGAAGGAGAACTTGGCAGATTGGAACCCTGAGTTTAGAAGACCTCTACTGGAAAGAGAACAAGCTTCGTGGCATCAACTGTCGAGCTCCTAG METEEEETLKWDNIIVLTRRCFHDDWVRIMEALQAFSFQENAAIPTEKENETDPNAIDKTELEEIQRERKGKAKIYEGELESHEAADLLTKTHRAKKKVSFPSPKNRTVYYNTTSAPARIQTGKPNSVKAKEAHTDKSPKKDESHKGKERSASPDRNNYAAQHKKAIMHEDDGQNPIQRFISDYGVENIRGRVLGGSSMVNAGFYSRGHQEFFERAGVDWDMEMVEKAYEWVEETVVSRPSLSGWQFAFRSALLEGGVGPDNGFDLRHIVGTKTGGLSASGVSYSDSKGKLHRAFILASSAQVVGTLDNNIHLQLFASPLPFFPLPSYSLLPSQSTSITPSLAIFVGKFSNVHSKGWLHLNSSTDVKESPIVRFNYYSHHHDLTRCVRGVRKVGDLLKTQTMEKIKTEDLEGNKGFEFMELPMPENLWNDSLVEEYCRNTVATYWHYHGGCLVGKVVDDNYKVIGIKNLRVVDGSTFSDSPGTNPMATLMMLGRLILMVFEIASGLKINLQKSILTGINIELDLVEDAASIWGSTSQLPFDYLGMPLGVNPRSTSFWNPIIDRIDMKFDSWKYSYLSKGGRLTLLQAVLSNLPIYFLSLFKAPIAICKLIEKKMRTLLWEGIEKEGGSHLVRWDLITRPKEIGGLGIDKIRHTNDALLGKWIWRYHNEPTQLWRLLIDSKYTKVPPLSVPNCCKFTSTRSPWFQITKMESIVFMNMNWSVCNGKNTLFWLHRWNRSDILYNTIPRFHALVEDEYITVSDVWKENLADWNPEFRRPLLEREQASWHQLSSS Homology
BLAST of HG10006233 vs. NCBI nr
Match: XP_008451913.1 (PREDICTED: (R)-mandelonitrile lyase 3-like [Cucumis melo]) HSP 1 Score: 537.0 bits (1382), Expect = 2.8e-148 Identity = 287/448 (64.06%), Postives = 308/448 (68.75%), Query Frame = 0
BLAST of HG10006233 vs. NCBI nr
Match: KAA0067297.1 ((R)-mandelonitrile lyase 3-like [Cucumis melo var. makuwa] >TYK10908.1 (R)-mandelonitrile lyase 3-like [Cucumis melo var. makuwa]) HSP 1 Score: 534.6 bits (1376), Expect = 1.4e-147 Identity = 282/429 (65.73%), Postives = 300/429 (69.93%), Query Frame = 0
BLAST of HG10006233 vs. NCBI nr
Match: XP_011648923.1 ((R)-mandelonitrile lyase 3 [Cucumis sativus] >KGN61116.1 hypothetical protein Csa_021230 [Cucumis sativus]) HSP 1 Score: 531.6 bits (1368), Expect = 1.2e-146 Identity = 285/448 (63.62%), Postives = 306/448 (68.30%), Query Frame = 0
BLAST of HG10006233 vs. NCBI nr
Match: XP_038889699.1 ((R)-mandelonitrile lyase 1-like [Benincasa hispida]) HSP 1 Score: 518.1 bits (1333), Expect = 1.4e-142 Identity = 284/471 (60.30%), Postives = 312/471 (66.24%), Query Frame = 0
BLAST of HG10006233 vs. NCBI nr
Match: XP_008451922.1 (PREDICTED: (R)-mandelonitrile lyase 1-like [Cucumis melo] >KAA0067298.1 (R)-mandelonitrile lyase 1-like [Cucumis melo var. makuwa] >TYK10909.1 (R)-mandelonitrile lyase 1-like [Cucumis melo var. makuwa]) HSP 1 Score: 516.9 bits (1330), Expect = 3.0e-142 Identity = 281/451 (62.31%), Postives = 306/451 (67.85%), Query Frame = 0
BLAST of HG10006233 vs. ExPASy Swiss-Prot
Match: P52706 ((R)-mandelonitrile lyase 1 OS=Prunus serotina OX=23207 GN=MDL1 PE=1 SV=1) HSP 1 Score: 280.8 bits (717), Expect = 4.8e-74 Identity = 171/470 (36.38%), Postives = 244/470 (51.91%), Query Frame = 0
BLAST of HG10006233 vs. ExPASy Swiss-Prot
Match: P52707 ((R)-mandelonitrile lyase 3 OS=Prunus serotina OX=23207 GN=MDL3 PE=2 SV=1) HSP 1 Score: 277.7 bits (709), Expect = 4.0e-73 Identity = 156/436 (35.78%), Postives = 220/436 (50.46%), Query Frame = 0
BLAST of HG10006233 vs. ExPASy Swiss-Prot
Match: Q945K2 ((R)-mandelonitrile lyase 2 OS=Prunus dulcis OX=3755 GN=MDL2 PE=1 SV=1) HSP 1 Score: 275.4 bits (703), Expect = 2.0e-72 Identity = 167/470 (35.53%), Postives = 244/470 (51.91%), Query Frame = 0
BLAST of HG10006233 vs. ExPASy Swiss-Prot
Match: O50048 ((R)-mandelonitrile lyase 2 OS=Prunus serotina OX=23207 GN=MDL2 PE=2 SV=1) HSP 1 Score: 270.0 bits (689), Expect = 8.4e-71 Identity = 152/440 (34.55%), Postives = 217/440 (49.32%), Query Frame = 0
BLAST of HG10006233 vs. ExPASy Swiss-Prot
Match: O24243 ((R)-mandelonitrile lyase 1 OS=Prunus dulcis OX=3755 GN=MDL1 PE=1 SV=1) HSP 1 Score: 268.5 bits (685), Expect = 2.5e-70 Identity = 156/454 (34.36%), Postives = 232/454 (51.10%), Query Frame = 0
BLAST of HG10006233 vs. ExPASy TrEMBL
Match: A0A1S3BTE4 ((R)-mandelonitrile lyase 3-like OS=Cucumis melo OX=3656 GN=LOC103493064 PE=3 SV=1) HSP 1 Score: 537.0 bits (1382), Expect = 1.4e-148 Identity = 287/448 (64.06%), Postives = 308/448 (68.75%), Query Frame = 0
BLAST of HG10006233 vs. ExPASy TrEMBL
Match: A0A5D3CI61 ((R)-mandelonitrile lyase 3-like OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold231G00870 PE=3 SV=1) HSP 1 Score: 534.6 bits (1376), Expect = 6.8e-148 Identity = 282/429 (65.73%), Postives = 300/429 (69.93%), Query Frame = 0
BLAST of HG10006233 vs. ExPASy TrEMBL
Match: A0A0A0LMB8 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_2G055040 PE=3 SV=1) HSP 1 Score: 531.6 bits (1368), Expect = 5.7e-147 Identity = 285/448 (63.62%), Postives = 306/448 (68.30%), Query Frame = 0
BLAST of HG10006233 vs. ExPASy TrEMBL
Match: A0A5D3CL00 ((R)-mandelonitrile lyase 1-like OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold231G00890 PE=3 SV=1) HSP 1 Score: 516.9 bits (1330), Expect = 1.5e-142 Identity = 281/451 (62.31%), Postives = 306/451 (67.85%), Query Frame = 0
BLAST of HG10006233 vs. ExPASy TrEMBL
Match: A0A1S3BSP4 ((R)-mandelonitrile lyase 1-like OS=Cucumis melo OX=3656 GN=LOC103493073 PE=3 SV=1) HSP 1 Score: 516.9 bits (1330), Expect = 1.5e-142 Identity = 281/451 (62.31%), Postives = 306/451 (67.85%), Query Frame = 0
BLAST of HG10006233 vs. TAIR 10
Match: AT1G73050.1 (Glucose-methanol-choline (GMC) oxidoreductase family protein ) HSP 1 Score: 266.9 bits (681), Expect = 5.1e-71 Identity = 165/432 (38.19%), Postives = 216/432 (50.00%), Query Frame = 0
BLAST of HG10006233 vs. TAIR 10
Match: AT3G56060.1 (Glucose-methanol-choline (GMC) oxidoreductase family protein ) HSP 1 Score: 196.1 bits (497), Expect = 1.1e-49 Identity = 147/457 (32.17%), Postives = 201/457 (43.98%), Query Frame = 0
BLAST of HG10006233 vs. TAIR 10
Match: AT5G51930.1 (Glucose-methanol-choline (GMC) oxidoreductase family protein ) HSP 1 Score: 195.7 bits (496), Expect = 1.4e-49 Identity = 150/485 (30.93%), Postives = 215/485 (44.33%), Query Frame = 0
BLAST of HG10006233 vs. TAIR 10
Match: AT1G12570.1 (Glucose-methanol-choline (GMC) oxidoreductase family protein ) HSP 1 Score: 192.2 bits (487), Expect = 1.6e-48 Identity = 152/491 (30.96%), Postives = 209/491 (42.57%), Query Frame = 0
BLAST of HG10006233 vs. TAIR 10
Match: AT1G14190.1 (Glucose-methanol-choline (GMC) oxidoreductase family protein ) HSP 1 Score: 190.3 bits (482), Expect = 6.0e-48 Identity = 143/445 (32.13%), Postives = 201/445 (45.17%), 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
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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