HG10001913 (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.ATGGCCAATACCATCTTCCCTCTCTTCCTCTTCTTCTTCTTCTTCTTCCACTTTCCGTCGCTTTCTCCGGCCAAACTCCGGCCCGATTTCTACACCAACTCATGCCCTCAGGCCGAATCCATCGTCCGGTCTGTGATGCAGAAAGCTCTCATCAGAGAGCCTCGCAGTGTCGCCTCCGTTATGCGCTTCCAGTTTCACGATTGCTTCGTTAATGTAATTGATCTTCAACTCTCTTCTCTCTCTGTTCGTTTTTGTTTTGGATTTTGCCTTTTCCTTTTCCTGTTTGGCTTCTGAATCGGAGTTTCCTTTCTGCAATTCAGGGCTGTGATGCTTCTATGCTGCTGGATGATACGCCGACGATGCTCGGAGAGAAACTCGCTCTCTCTAACATAAATTCGCTTAGATCTTACGAAGTCGTCGATGAAGTGAAGGAGGCCTTGGAGAAGGTCTGTCCTGGAATCGTCTCTTGTGCAGATATCATAATTATGGCATCCAGAGACGCTGTTGCTCTGGTGAGTACTTTCATTTCTTCTAGCTCTGTTTTGGATGGATAGGAAATTCTCTTTGGAGCTGAGATTTGTTTTTCCTGATTTTTAACTTTTTTGCTTCATTTTCCACTGTCAATCGTTCTGCTAAAATCCCCCATAGAAATGCAGAAAACAGCACAAAGATCATAATAAAATAGGAGAAACGAACCAACACTGCCTTTCAATTAGAAATTTACTCCTGAAATTTACATTTCAATTCCTGCAGTCTTACACTTAATTCTTTGTAATCTTTGTTAACTTCGAGTAAACATTTGCTAATTTAGTTTGTTTGCCCAAACAAATAGCAGTTGAAATTAGAGTGGATTGGATTTTCAAAAACGATTTAATATGGAATTTGTTTTCAATCAAGTCGGTACAATATGACTACGATGGTGATTTTTATATAGCGCAAATGAGACGGCACAATGTGCCCAGCGATTTTTCAACCTAAAATATATGAGAGAGAGTATTATTAAAAAACATGCAGATTTTTTATTCTTCGAACGAGAAATCAAATCTGCATGTTTCTTAATCCAGTCAATCAAGATTAGGTAGAATTACTATTAAAACTACATATCTTGGTTTAAGCCTATAAGAATTGATTTTTTAAAGTTTCGGACCATTTTGTTTTTTGTTTTTTGTTTTTGAGTTTTGAAATCTGTGTTGGTTTTTTAACAATTTATTACTCATGATTTTCATATTTACTATATAAACATTTAAATTTTTAACCAATTTTTAAAAATAAAATCAAGTTTTTGAAAACTATTTTTTTTAGTTTTCAAACTTTACGTTTGATTTTGAAAATACTCCTAAAATCTAGACAACAAAATATATAAGGGATATATGAAAGTAGTGTCTATAAGCTAAATTTTCAAAAACCAAAATCTAAACCGTTGCTAGACAATTCAATTTTAATATTTGTATGGTTCATAAATTGTTTCCAGAGAGTTAATAGACTCCTTGGTCTGAATTAGTAACGTACCCAATAAACAGTAGCTTATTAGTAAAGCAGAGTTGGACAGTTAAGCCTTGCATAAGCAAGTAACTTCCATGGTTTAAAAGCTCCACCAACAATGCTGCCAAAAATTCATAACAAACTGGTCCCTCCCCATCCGCCCAGCCCAACTACTTCCCAAATGTCATCTTCTTATTCATTTTTCTCTTATAATGACATTTTTTCTTGTATCTATTCAGACGGGCGGCCCCAACTGGGCAGTACGATTGGGGCGGCTGGACAGCTTAACAGCAAGCCAAGAAGACTCAAACCAGATCATGCCAAGTCCAAGAGCCAATGCAACTTCTCTCATTGACCTTTTCAACAAATACAACCTCTCTGTTAAAGATTTGGTTTCTCTTTCGGGTTCGCATTCGATCGGCCAAGGCCGGTGTTTCTCCATTATGTTTCGACTCTACAACCAGTCTGGCACGGGACAGCCGGACCCGGCCATCGAGCCGAGATTCAGAGAAGAGCTATTCAAGCGATGCCCTCAAGGTGGGGATGAAAATGTCACAGTCAACCTTGACTCCACACCTTATGTTTTTGACAATCAGTACTTCAAGGATTTGGTTGGTGGGAGAGGATTCTTGAATTCTGATGAAACTCTTTACACATTTTCTGGAACTAGAAGGTATGTGAGATTCTTTAGCCAAAATCAAAGGGCATTTTTCAGGGCATTTGTGGAGGGTATGTTGAAGATGGGTGACTTGCAGTCTGGCCGCCCAGGGGAAGTAAGAAGGAACTGTCGGGTAGTCAATGGCCAGTCTGTGATCATATAAACGTAGGTCAAATTTCCCCCCCTCTCTCTCTCTCTCTCTTTTTTAGAAAATTATATGTGTGGTTCCTAAATTTTAAAAATGTACATTTTGTTGTCTATAAGAATAAGTTCATTTGGTACCTGAATTTTCAAAATATATCTTTTTAGTCCTTAACTTTTTTAAAATAGGTTTAAAATGTCCTTATCAAGTATTTTTTTCTTTGATTTTTAAAAAATAATCCTATAATATTTAAAATTAGAAAAAATAGTTTTAGAAAGAAAATAATTTTTAAAAATTACTCTTCTAATTTAAAATATTAAATAATTATTTAAAATAATAAAATAAAAAATTATTTGGAGGAACTTCTTATACATATTTTTAAAAATTTATAGACTAAAAATGTACATTTTAGAGACGTTTAGGAACCAAATTGATCTATTCTTATAAATTTAGAGACCAAAAAGGTATATTTTTTAAATTTAGGGACCAAATGCACATATTGTTCAAAACGTGGAGACTAAAAAGGTAATTTTCTCTGATATTTAAGTTGATGTATGTTAAATTTTTTTGTTTATCATCCTCACAGGTTTGATTTAAGTTGATCAGATGTTACTATTAGTAGGAGAAGTATATATGTAAAGTCAGTTATTTAGAGATGTGAAAGACAAATGAACTTAATGACAAGGAGGAAGGACATTTGGGTAGATCAATATATAATTAGTTGAATTATATATATGAATTTGTTGAAAATTTAAACCACAACTGTAATTATTGTGGCCTTTCAAATGGTTTCTTAGGCTGCCTTTGGTGGCACCATTTCACAAGTTTTTTATCTTTAAAAATTAAGCCTAAAAATACCTATTCCATTTTAAGTTTCTTTCTTTTTGTTATCTATTTTCTATGCATATTTTAAAATTTTAAGTCAAAGTTTTGAAAATTAAAAAAATTTGTTTTTGTTTTTATAATTTTGCTAAAAATATAACTCTTTTACTTAGTAAACATGGAAATCATTTTAAGAAATTTAATGGAAACAAACACAAATTTTAAAAACTAAATGGTTACTAAACATGGCTGTAACTTTCCTCTTGATTTCTTAATATATTTTTCATCTTTCTTGGGTAAAAGAGTTGAATTTTTAGTCAAATTTCAAAAACAAAAACAAGTCTTTAAAAATCTAAAATATTTATTTTAGAGTTTGTGGTTATTCAGTTAGTCAAATTTCAAAAACAAAAACAAGTCTTAATTTTCAAAAACTAAAAATTAAAACCAAACGATTACCCAACAAGACTTTAGTTAACAATTTAAGTGAGAGTCTTGATCAATGGTTATTCAATTAACCTATACTCACTTATGGACAAAAAAGCATTGGGAGAAATACCAAAGCCAACATCCAGGTAAATTTGTAGCTGAAAAAGCACCATTGCTATAGTTTTGTTGTGTTAAAAAGAGTTTTTTTTAGTTGCAATTATACCCTCAAATTTATAAAATGTTAAAATTGGACTTTCAAACTTACATAATTGTAGAAATTGTAATAATTGTATAAGTTTGAGGGTTACATTTTTATCATTTTAGGGTCCAATTTCTACCATTATTTTTAGTTTGAGGGTTCAATTTTAACACTTGTAGAAGTTTGAGGGCTTAATTTTTACCATTAAAAGTTTGAGGGTGTAATGACAACTACTACCATACTTCAAGAGTGGTTTTGCAATTTTTCCTTATTTTTGACATATAATTTGTGTTAGCACTTTGTAAATGTAAATATAAACCAATGTAAGTAAGATTCCAAAGAAATACCTTGAAAAACACGAGGACTAAAATCAACAAAAGTCGAAACCACAAACTCTAAAATAAATATTTTAGATTTTTTTCCCCTACAACGATATGTGGGGGTGAAATTTTGAGACTTCCATCTTTTGGTCAAAGACATATGCATAAACTAGGAAGTTGAACTATGCCCAAATTGATAATTGCTAAATAAATATTTTGAAATTACATGTACTAAAATGAACCAAAATTGAAACGGGAGGAATAAAATATGATTTTTTTTTGAAATTTTATCCATTAAAATTTTAAACTAATAATGGTATAAATCTATAAATCAATTAAGTACTTAGTAGTTTATAACTATTTCTTATTTTATTTCACTTAAAATAACTAAAATCACCTTAATAAAATTATTATTCTCCTAAAATTTTACCAAAATAGCATATAAATTATCACTAAATTATTCTTAAGTAAGTTGAGAAAATAGATAAATGTGAGAAAATGAAAGAATATCGCTACTATCCATTATATTCCAACATTTTTCTTTAAAGTCTTTTAACACACATATTTTAACATATATGATGTATACAAAACATGGTACTTTCAAAATAAAGAATCGGGTTGAATGCTTAATTAGAATACTTTCAAAATAAATTTAACGTGTGTAGACCCTTAAATTTGCATGCTACTTTATTTCATCATCTTTATTTAGTAATTTCCGTGTCTCTTTTCCATAATTTAGAATTTAGCTAGACTTTTTTTTTTTTTTAAAGAAAAATCAATTTGATATTTAATAGATCAATTATAAAAAAAAAAAAATCAAATTTGATATTTAATAAACCAATTATCAATTATTTCTTTTTTTTTAAAAAAAAATTAAATATATCAAAGCCTATAAGATACAAAATTGAAAGTTTAAAGCCTTATTAAATACAAAATTTAAAGTTCATCGACCTATTAGAAACTTTTGAAAGTTTGGTGAACAAATAAACAAAAACTTGAAAATTCAGATACTGAACTTGTAATTTAACCAAGAATCTATCTGACACTTTTTAAAATTTAGGGACTTATTTGACATAAATGAAAGTTTAGAAACTTATTAGACACTTTTAAAAATTTAGAACCTTATTGGATAATTTTGAAAATTTAAGAACTAAATAACTACGAATATGAAAAGTACACAGATTTTCAGATTAAATTTATAATTTAACATTTGTTTAATTTTAATTAACCCAATGCAAAAAATTGCTCAAAGTTTGGAGTAATTTGATAGACTAACCTAAAAAATTGGACCAAGGTTATTTGACCAAGTTTTTCAAAATAAGGTTTTATGGATGTTAAATTTGGTTTTTTTATTTTTAATATTTCTTTTTCTTCTTTCCTCTCTCAACTCTCGTTCCATTTCTCTCTCTAATATACTCATCCTCACTCTCCGTACTTTCACTCCTAAAATGCAACCGATAATACTAATTTGTTGTGATTTGGTGGAAGAAGTGTTTAAATGCAAGAAGAGAGTTTCGAGATGCTTGAAATTCACTATATTCACTGTTGAGAGAGAAGAAATAACGGTAATGGAAAAAAAGGTGAAGTTTAACTCCTAAAATTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTAACATCAGCTGATTTTACAAAACCTCGAAAAACGAATTTAAAAGACGAGCGAGCGAATTTGGCCGGCCTACTACTGATCTTTCAGGCTTCTGGGTGAGAAGGAAGTGAGACAGAGGGAAACCAATGGACGAACTAAGGAAACTAGAACAAGTACAGAAACTCATTACGTTAATGGAGTCGCGCGGAATCGCCATGACTTCTTCATCTTCCTCCAATCGATTCATTGCCAATTTCGTTCTCCTTTTGGTACTTTCTCCCTAAACATAATCTCTGCTTTACGATCTAAATTCCTCGTCGAATTTGAACATTTTCTATTCTTCCAGTTTCCCCACAAATTTGAGTAAACTCTTACGTTTCTTGAATGGAATATGGTGTTTCTTCACGCGATGTGCCATGTTGAGTTGCGACATTTGTCTATCTCAACATTCCCATTTTGAACTGTTGGTTTCCTGTCTGTTAGGTCGCATCCCACCATCGTTATTTTGGCTTTTCAATTTCTGTCTTTGGACCCTCCTCTTATCTCGTTAACTAGATTGATTTGAAGGTGTTTGATGAATCGCTGTATTGATGTGAGTTTGTTTGCTAATTGAATTGTATGTTAGGTGCAACCATGTGGAGAGCTTGATTTTGACGATAAATTCGATTTGGTTTCTGGATACATGCCGAAGGTGAGTGTAAGCTTAGCCACTGACGACTTTGATTAATATCATTCGTGTCCTGTTTACTAGGACTTTACATCACACTGGCCATCAACCTTTTCTTTTGTTATACAGTTTTCAGAAGAGTTTCTTGGCGATGTATCCTTGCTGCTTAGTAATGGAGGTACTCTATTCTTATTCTCTAATTGATCAGGAGATGTAGATGTGGTCATAATCTAAGAAAAGTTGTAGAATGATTTTGTTTATTGCTGTGTGTTAGGTATACGTTGATGTTCACTCGTGGAGAAAGATTTTATTTACTTATTGCGGAGGTAGTGGCCTTACTATTGATTTGCTTGTTATGGTTTAATTTGCTTCAGACTATAGGGGAAAGGAGATGGAAAACACTTTGCAGCCTTATTTTGACAATAACCTGGATCTTGGTTCCTCCCAGAACTATTGTGGGGAAATGGCTATGGTTGGCTTGGATGCAATGCAGCGTGCAAATTCTACACTTGAAGATTTTGTAAGTGCGTGGTATAAACTTTTTATTTTTTATTTTTTATTTTTTTATTTTTATCGAATATTAAGAATTTGGCATAGTGTGCTACATTGATACTATTAAGAAATAAAGAAAATCAAAATCCAATCTTTAAATTGTATTACTTTTCTATTGTTGATGTGTGGTAATTATGAAATACTACTTCCTTCTTTCTTTTTTTTTTTATTATTTTAATTGTGGAGTTCCCTTTTGACTGTCATGCTCTTTCGTGCTTGATTCACATGTTGCTCAAACATTTCTGAGCTCATAGTTTGTTGCAAATGTAGTTATAGAAGGGAAAAAGAATGCAGGAGATACGGGATGATAATATTAAGTGAGGTCAAGGAGCAGTTCTCTGCTCTCGAGTCCCTTTATCTCAATTGATTCTTTAAAAAGTATACCTGTACTTAACTCTTGTCCTTTAAATTATATTGGAGCATTGCAAATTCATGTTATCCAGTGTGGAAGTGTGTGGTTGACCGTTTTTAGCATTGAGGTTTATGTATTCAGGGAAAAGTGGAGTCAACATTTCGGAGGATGGTCACAGAAACTATTTTTACTTTTCGTAGGAACAGGCTTTTACTTGTTGATGGGAGTTGTGAACGAAGTGGTTTCTGCAGGAAAGTTTAAGTTATTTAGAAAGTTTCAGAACTCTGGTTGTGTATTTCAGGTTGAAAGGGCCTTTAATGAAAGAGGTTCCTCTTGTAAGTATTGAAGTTGGAAAGCAATAGCAGGAAAGGTGGAACCTTGATCCCAACTGGTGGAAGTCTTTCTTGTTCACGATTAACGATTATTCCAATAGGAAACTTCCTAAGAGGAAAGATTGAAGAAAGTTCCTTGGCTTTGATTTTTGACTTTCTCGATTAAGAGTCCAGAAGATAGCTCACTTCAGTGACGGCTTTCTTCCTTCAATTGGAGGGATTGGCTTGTGAGAGAGGTTGCCATTAGTGATGTGGGCTATGTTTTTCTTTATCTGTTCCTGCAATCTCGGAATTGGCAGCTTAAACCTGAAAAATCTTGCTTTCTTAGCTCAAGGTGTTTGGAGACTTCCATTGGAAAATACCTCTTGTGGCATATGGTCGTATCAACATATACAGTTTGGATAGGTTGGGTTGGTTCAGTTCTTCCTTGCTGCCCCTTCTTTATTCCAAAGCTAAGAGGTTTCAAATTAGCTGAGTGCTGGACTCTCTTATGTCAATACTTCTATATTAAATCAGTCAATGGAGAAAAGTTAAGGTTTTTGAAGGTTAACTGGTCCAATTGAGGAACTTGGAGGTGCTCACCCAAGAATTCACTCTTGCTGATTTTTGACGGACTGCTGGCATCCCCTCTCCAACATATTGGAATCTTAGGTTTAGAAGATGCACGGATAATTTGGTTTGGCTGGCGTGTACGTGTCGGAAACGTTTTAGACACTTGGACACTGACACTTGTTGGACATGTATTGGACACTTGTTAGTATAGTGGATGTGCTAGACACTAGTTGTACAAAGTCAATATAGGTCCAACATTGTTAGACATGTCTTGAACACTTGACTTTGCATAAATTTTGAGAGCAAACTGCATCAAGTTCATTTCTTAAGAATATAAATACTTCACCTTATTGACTTTGTATTTCTTTGTATAAAAATGATATATATTTTTAAAAAATGTATATTTTCATACTGTATCCTAGATTTAAAAAAAATGAAGTGTCACCATGTCTGTGTCGTGTCCTATGCGTATGTTGTATTCGTATCCATGCTTCTTAGTTTAGAAGGTGGTTACATGGAGTGGAAACTGAGAAGTGAGAGAATATGTGTCAAAATTGACGTCGGAATCGGTGAGATTTGAAAACATGGTTTTCAAAGAGGTTAAATTTGTCCAATTGAGGGACTTTCTTTTTAATGTTTTTTTCCTCCTTTTCATATGATCTAAACTGGGAAGGTTTTATTTATTTATCGTGATAAGTCATAATATGGGCTTAGTAGATGTCTAATTACCTCTCCCCATTTCGTAACCTTTGTTCTTGTTTTAATTCAGGTCTCAAGGCATACAATTACTAGCATGATTTTCTTTCTGGCATTTTAGGCCTTTTCCTCAAAAAAACCATTCTTTTATGTCTAGAATCTTTTGCATTAGCAAACCTATGCTATGAAAATTCTGCCGTGTAACAAGCTGACACTAGAATTCATTTTGCAGTTCAGATCATATTTCATGTTTCACGGAATGGATGTAAACAAACCTCAATCTGTATTCAAATATTTTCCCATTCTTTCATTTACAGAAAGTTACATATATCAGGTTTGTCCTACTCTTTTCTTTAATTGTTTTTGGTGGAAAATTAGATGTGCAGCTTCAAGGATAAAAATGTTGCAGTAAAAAAAAAAATTCATACTTTGTTTAGTTTCTTAAACTATGTTTTGTATGGAAATAGTATTATAAAGTGTTACAAAATAAAAACTTTCAGCTTTTGGAAGAATGAAAACCCTGAACGCTATATGCTTTAAACTTAAAGCTGAAATTAAAATCTCATAATCATACATATTGAATTGTTAGATAATTATAATGGTCTTCCTAAGGCGCAGCAGTGCAACGCAACACACTTTTATTTATATTTATTATTTTTAAAAATGATATATTTGGCTGGTTTTGCTAACCGACACCAAATGGAGATGTATCATTAAGTTGACCTACGGAAGTCGGTTTGTTTAGTTTCGATTGGTTGGCTCGATTTTTCTATTTCTGGTGCTCATCCCCACCTCTGTAACCCAATATTGTCTTTACTATGATCTCCGTGACCTTGGGTTCTGTTTTGTTTGTGCTTAGTGATTTTATCTACATGCTGCAGCTGGACACTTTGAATGAGAAGATAGTTTTGGGTGGATTCACTTCTGGAGAATCTCAGGTGTTAATAGAATACTGGATAATGTGAAACATGGCAATTAAGCACTTGTGCATTTAGCTGACAAACTTTCATATATGATACTTCCACTGAGATTTAGGAAGCAAATGAAAGGAGCACTAAGATTCTATGTGCTATTAAATCTGATCCACTTCAACCTCTTATTAATCTCCTTAAATCGCATGGCTTATTGACAGACAGGTATGATGATTTGTTCCAAGCCATGTTCTTTGCCCCGTGAGAAGACGGGGACTTACCTTGAATGATTCAATGATAATATTGACCTTTTTGTTTGTTCCAATGCCAAGATTGTTCCATGAACTAAGAAGTGGAGAGGAGTACTGGGCATTGGAAAGGGGCCTATGTGGTGCATTGGCGAGCAAAGGGAAGGTAGTTGTTGTAGTCTTAATTTATTTTTATTTCTTTCATGTAGGTACTCCTTGTGCACGTGTTGATCCCAACTATTTTGTTTAGGTCTCTATTGAAAATGTAATGCGGGCTATTCATCTGAAATCATTTGATTATAGAGTGTTAAACCTTCTTTTGTATCAGTTGAGAGGAGAGAAGGTAATGATCTTTCCAACTTGAATGTGGTTGTTATCTCCTTTAATACTTCATTTTGGAAGCTTAATATTCAAACTTTTCTTGAAGTACTTACTAGAGATAATATACTAAGCCTACAAACAACAGTGCAATTTGTGTTTAAGTTCATATTTAAATCTAATGTTCTACTGATGTAAAACTTCACTATCTGGGGACTTCCAGTGGTTGATTTACAGGTTTAATATGGACTGCATTCTCGTGTTCTTTAGTAGTGTTGTCAATATTCTGAATTAACTGGAGTTTCTTAATACTTTTTCTTTTGTTTTAATTGATGTGTTGGTGTTGCAATTTTTTTTTTTTTGGTCTGTTATCCTCCTTTGTTATCTGATTGTGTTGTGCTGAAGTTTTTGTGAAGGTTAATGACTTGCACTTGGAATTTCTATCAATCTCAGAATTGCTAGTTGAGATAGCTGATGATTTGTAAGTATTCTGCTTCTGCCGTCTCTCCTCCTGTTCATCAAACAAAATTTCTTCCAAGCACTCTGAACAACCGCCCATTTTGAATTCTGCTAATAGCTTTGCTTGTCTCCTGAATTGATGTCTACTAATAATTAATTTGAATATATCATTTGGCAAGCACAACACTGGTTTCCCTTGATGCTGGGTTGACTTACTGACCTTTTGTTAGGTTTGATTATGAGGTGAGTTTACCATTAAACATATTTCCATTTTCTTATACATGTTCTGACCCTTTTAGCTGCAATTAAAAGCTATGATCTTCATGTAGGATGACGTAGTAGAGAATAATTTCAATATTCTGCGGATGTTTGTCCGGATATATGGAGCTTCAGCTCCAACTGCGCTGGTGAGTGCTTGAGGCAGCCTTATTTTTCATTTCTTATAATTCATTTGATTTCTGAAGCAGCATGATCTATCAAGGATGTAATAAATGTCTTTCCTGCATGAGACATGGAATAAGCATCCAATTGTCGAATTAGCTTGTAGCATTTCATTTTTGAAGTTAAATTACAAATTTAGTCATTCAACTTTAATAGCAATACCTCTTTTAGCCCATATACTATAAAAACTTTGAACTTTAGGATTTTATTTTAGGTATTCTCAAACATATAATAACAAGATACAGTTATTGGAATATTGTAGGCTAATTTGATATTACAAGTAACTGGCTGTACTGCGTGTTTGATTCTTAGCCATTTTCAGGCAAAATATGTGAGCGAGGCCGAGGAAAAGTATGACAGACTATTAAAAGCTTTGGATCCTCATTTATCCTCACTTTACCAAAGGAGATGTGAAGAGGCCACTAAAGAAGGTAATTGGTCCAACATTTTAAAGAACTAGTTCCTGAAATATGAAGGCACATGAAATCATTTTGACATGTAATCAGGTGGTAAGGTGTCAGCACATCCATTCGGATCGTGGAGTATGCCACCTCTGATACGAGACGAGGAGTCGTTTCGAGCATCTGTTATGTCTAATATTCAAACATGA ATGGCCAATACCATCTTCCCTCTCTTCCTCTTCTTCTTCTTCTTCTTCCACTTTCCGTCGCTTTCTCCGGCCAAACTCCGGCCCGATTTCTACACCAACTCATGCCCTCAGGCCGAATCCATCGTCCGGTCTGTGATGCAGAAAGCTCTCATCAGAGAGCCTCGCAGTGTCGCCTCCGTTATGCGCTTCCAGTTTCACGATTGCTTCGTTAATGGCTGTGATGCTTCTATGCTGCTGGATGATACGCCGACGATGCTCGGAGAGAAACTCGCTCTCTCTAACATAAATTCGCTTAGATCTTACGAAGTCGTCGATGAAGTGAAGGAGGCCTTGGAGAAGGTCTGTCCTGGAATCGTCTCTTGTGCAGATATCATAATTATGGCATCCAGAGACGCTGTTGCTCTGACGGGCGGCCCCAACTGGGCAGTACGATTGGGGCGGCTGGACAGCTTAACAGCAAGCCAAGAAGACTCAAACCAGATCATGCCAAGTCCAAGAGCCAATGCAACTTCTCTCATTGACCTTTTCAACAAATACAACCTCTCTGTTAAAGATTTGGTTTCTCTTTCGGGTTCGCATTCGATCGGCCAAGGCCGGTGTTTCTCCATTATGTTTCGACTCTACAACCAGTCTGGCACGGGACAGCCGGACCCGGCCATCGAGCCGAGATTCAGAGAAGAGCTATTCAAGCGATGCCCTCAAGGTGGGGATGAAAATGTCACAGTCAACCTTGACTCCACACCTTATGTTTTTGACAATCAGTACTTCAAGGATTTGGTTGGTGGGAGAGGATTCTTGAATTCTGATGAAACTCTTTACACATTTTCTGGAACTAGAAGGTATGTGAGATTCTTTAGCCAAAATCAAAGGGCATTTTTCAGGGCATTTGTGGAGGGTATGTTGAAGATGGGTGACTTGCAGTCTGGCCGCCCAGGGGAAGTGCAACCATGTGGAGAGCTTGATTTTGACGATAAATTCGATTTGGTTTCTGGATACATGCCGAAGTTTTCAGAAGAGTTTCTTGGCGATGTATCCTTGCTGCTTAGTAATGGAGACTATAGGGGAAAGGAGATGGAAAACACTTTGCAGCCTTATTTTGACAATAACCTGGATCTTGGTTCCTCCCAGAACTATTGTGGGGAAATGGCTATGGTTGGCTTGGATGCAATGCAGCGTGCAAATTCTACACTTGAAGATTTTCTGGACACTTTGAATGAGAAGATAGTTTTGGGTGGATTCACTTCTGGAGAATCTCAGGAAGCAAATGAAAGGAGCACTAAGATTCTATGTGCTATTAAATCTGATCCACTTCAACCTCTTATTAATCTCCTTAAATCGCATGGCTTATTGACAGACAGATTGTTCCATGAACTAAGAAGTGGAGAGGAGTACTGGGCATTGGAAAGGGGCCTATGTGGTGCATTGGCGAGCAAAGGGAAGGTCTCTATTGAAAATGTAATGCGGGCTATTCATCTGAAATCATTTGATTATAGAGTGTTAAACCTTCTTTTGTATCAGTTGAGAGGAGAGAAGGTTAATGACTTGCACTTGGAATTTCTATCAATCTCAGAATTGCTAGTTGAGATAGCTGATGATTTGTTTGATTATGAGGATGACGTAGTAGAGAATAATTTCAATATTCTGCGGATGTTTGTCCGGATATATGGAGCTTCAGCTCCAACTGCGCTGGCAAAATATGTGAGCGAGGCCGAGGAAAAGTATGACAGACTATTAAAAGCTTTGGATCCTCATTTATCCTCACTTTACCAAAGGAGATGTGAAGAGGCCACTAAAGAAGGTGGTAAGGTGTCAGCACATCCATTCGGATCGTGGAGTATGCCACCTCTGATACGAGACGAGGAGTCGTTTCGAGCATCTGTTATGTCTAATATTCAAACATGA ATGGCCAATACCATCTTCCCTCTCTTCCTCTTCTTCTTCTTCTTCTTCCACTTTCCGTCGCTTTCTCCGGCCAAACTCCGGCCCGATTTCTACACCAACTCATGCCCTCAGGCCGAATCCATCGTCCGGTCTGTGATGCAGAAAGCTCTCATCAGAGAGCCTCGCAGTGTCGCCTCCGTTATGCGCTTCCAGTTTCACGATTGCTTCGTTAATGGCTGTGATGCTTCTATGCTGCTGGATGATACGCCGACGATGCTCGGAGAGAAACTCGCTCTCTCTAACATAAATTCGCTTAGATCTTACGAAGTCGTCGATGAAGTGAAGGAGGCCTTGGAGAAGGTCTGTCCTGGAATCGTCTCTTGTGCAGATATCATAATTATGGCATCCAGAGACGCTGTTGCTCTGACGGGCGGCCCCAACTGGGCAGTACGATTGGGGCGGCTGGACAGCTTAACAGCAAGCCAAGAAGACTCAAACCAGATCATGCCAAGTCCAAGAGCCAATGCAACTTCTCTCATTGACCTTTTCAACAAATACAACCTCTCTGTTAAAGATTTGGTTTCTCTTTCGGGTTCGCATTCGATCGGCCAAGGCCGGTGTTTCTCCATTATGTTTCGACTCTACAACCAGTCTGGCACGGGACAGCCGGACCCGGCCATCGAGCCGAGATTCAGAGAAGAGCTATTCAAGCGATGCCCTCAAGGTGGGGATGAAAATGTCACAGTCAACCTTGACTCCACACCTTATGTTTTTGACAATCAGTACTTCAAGGATTTGGTTGGTGGGAGAGGATTCTTGAATTCTGATGAAACTCTTTACACATTTTCTGGAACTAGAAGGTATGTGAGATTCTTTAGCCAAAATCAAAGGGCATTTTTCAGGGCATTTGTGGAGGGTATGTTGAAGATGGGTGACTTGCAGTCTGGCCGCCCAGGGGAAGTGCAACCATGTGGAGAGCTTGATTTTGACGATAAATTCGATTTGGTTTCTGGATACATGCCGAAGTTTTCAGAAGAGTTTCTTGGCGATGTATCCTTGCTGCTTAGTAATGGAGACTATAGGGGAAAGGAGATGGAAAACACTTTGCAGCCTTATTTTGACAATAACCTGGATCTTGGTTCCTCCCAGAACTATTGTGGGGAAATGGCTATGGTTGGCTTGGATGCAATGCAGCGTGCAAATTCTACACTTGAAGATTTTCTGGACACTTTGAATGAGAAGATAGTTTTGGGTGGATTCACTTCTGGAGAATCTCAGGAAGCAAATGAAAGGAGCACTAAGATTCTATGTGCTATTAAATCTGATCCACTTCAACCTCTTATTAATCTCCTTAAATCGCATGGCTTATTGACAGACAGATTGTTCCATGAACTAAGAAGTGGAGAGGAGTACTGGGCATTGGAAAGGGGCCTATGTGGTGCATTGGCGAGCAAAGGGAAGGTCTCTATTGAAAATGTAATGCGGGCTATTCATCTGAAATCATTTGATTATAGAGTGTTAAACCTTCTTTTGTATCAGTTGAGAGGAGAGAAGGTTAATGACTTGCACTTGGAATTTCTATCAATCTCAGAATTGCTAGTTGAGATAGCTGATGATTTGTTTGATTATGAGGATGACGTAGTAGAGAATAATTTCAATATTCTGCGGATGTTTGTCCGGATATATGGAGCTTCAGCTCCAACTGCGCTGGCAAAATATGTGAGCGAGGCCGAGGAAAAGTATGACAGACTATTAAAAGCTTTGGATCCTCATTTATCCTCACTTTACCAAAGGAGATGTGAAGAGGCCACTAAAGAAGGTGGTAAGGTGTCAGCACATCCATTCGGATCGTGGAGTATGCCACCTCTGATACGAGACGAGGAGTCGTTTCGAGCATCTGTTATGTCTAATATTCAAACATGA MANTIFPLFLFFFFFFHFPSLSPAKLRPDFYTNSCPQAESIVRSVMQKALIREPRSVASVMRFQFHDCFVNGCDASMLLDDTPTMLGEKLALSNINSLRSYEVVDEVKEALEKVCPGIVSCADIIIMASRDAVALTGGPNWAVRLGRLDSLTASQEDSNQIMPSPRANATSLIDLFNKYNLSVKDLVSLSGSHSIGQGRCFSIMFRLYNQSGTGQPDPAIEPRFREELFKRCPQGGDENVTVNLDSTPYVFDNQYFKDLVGGRGFLNSDETLYTFSGTRRYVRFFSQNQRAFFRAFVEGMLKMGDLQSGRPGEVQPCGELDFDDKFDLVSGYMPKFSEEFLGDVSLLLSNGDYRGKEMENTLQPYFDNNLDLGSSQNYCGEMAMVGLDAMQRANSTLEDFLDTLNEKIVLGGFTSGESQEANERSTKILCAIKSDPLQPLINLLKSHGLLTDRLFHELRSGEEYWALERGLCGALASKGKVSIENVMRAIHLKSFDYRVLNLLLYQLRGEKVNDLHLEFLSISELLVEIADDLFDYEDDVVENNFNILRMFVRIYGASAPTALAKYVSEAEEKYDRLLKALDPHLSSLYQRRCEEATKEGGKVSAHPFGSWSMPPLIRDEESFRASVMSNIQT Homology
BLAST of HG10001913 vs. NCBI nr
Match: XP_038877971.1 (peroxidase 17 [Benincasa hispida]) HSP 1 Score: 596.3 bits (1536), Expect = 3.1e-166 Identity = 297/315 (94.29%), Postives = 305/315 (96.83%), Query Frame = 0
BLAST of HG10001913 vs. NCBI nr
Match: XP_038878058.1 (uncharacterized protein LOC120070244 isoform X1 [Benincasa hispida]) HSP 1 Score: 581.3 bits (1497), Expect = 1.0e-161 Identity = 301/354 (85.03%), Postives = 308/354 (87.01%), Query Frame = 0
BLAST of HG10001913 vs. NCBI nr
Match: KAA0044710.1 (peroxidase 17 [Cucumis melo var. makuwa]) HSP 1 Score: 580.1 bits (1494), Expect = 2.3e-161 Identity = 288/315 (91.43%), Postives = 305/315 (96.83%), Query Frame = 0
BLAST of HG10001913 vs. NCBI nr
Match: XP_008453813.1 (PREDICTED: peroxidase 17 [Cucumis melo]) HSP 1 Score: 580.1 bits (1494), Expect = 2.3e-161 Identity = 288/315 (91.43%), Postives = 305/315 (96.83%), Query Frame = 0
BLAST of HG10001913 vs. NCBI nr
Match: TYK16877.1 (peroxidase 17 [Cucumis melo var. makuwa]) HSP 1 Score: 580.1 bits (1494), Expect = 2.3e-161 Identity = 288/315 (91.43%), Postives = 305/315 (96.83%), Query Frame = 0
BLAST of HG10001913 vs. ExPASy Swiss-Prot
Match: Q9SJZ2 (Peroxidase 17 OS=Arabidopsis thaliana OX=3702 GN=PER17 PE=2 SV=1) HSP 1 Score: 468.0 bits (1203), Expect = 1.7e-130 Identity = 223/290 (76.90%), Postives = 261/290 (90.00%), Query Frame = 0
BLAST of HG10001913 vs. ExPASy Swiss-Prot
Match: O23237 (Peroxidase 49 OS=Arabidopsis thaliana OX=3702 GN=PER49 PE=2 SV=2) HSP 1 Score: 276.2 bits (705), Expect = 9.4e-73 Identity = 137/295 (46.44%), Postives = 192/295 (65.08%), Query Frame = 0
BLAST of HG10001913 vs. ExPASy Swiss-Prot
Match: Q9SI16 (Peroxidase 15 OS=Arabidopsis thaliana OX=3702 GN=PER15 PE=2 SV=1) HSP 1 Score: 275.4 bits (703), Expect = 1.6e-72 Identity = 140/294 (47.62%), Postives = 194/294 (65.99%), Query Frame = 0
BLAST of HG10001913 vs. ExPASy Swiss-Prot
Match: Q9FJZ9 (Peroxidase 72 OS=Arabidopsis thaliana OX=3702 GN=PER72 PE=1 SV=1) HSP 1 Score: 275.0 bits (702), Expect = 2.1e-72 Identity = 135/294 (45.92%), Postives = 195/294 (66.33%), Query Frame = 0
BLAST of HG10001913 vs. ExPASy Swiss-Prot
Match: Q9FG34 (Peroxidase 54 OS=Arabidopsis thaliana OX=3702 GN=PER54 PE=2 SV=1) HSP 1 Score: 272.3 bits (695), Expect = 1.4e-71 Identity = 139/299 (46.49%), Postives = 186/299 (62.21%), Query Frame = 0
BLAST of HG10001913 vs. ExPASy TrEMBL
Match: A0A5D3CYR5 (Peroxidase OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold130G00080 PE=3 SV=1) HSP 1 Score: 580.1 bits (1494), Expect = 1.1e-161 Identity = 288/315 (91.43%), Postives = 305/315 (96.83%), Query Frame = 0
BLAST of HG10001913 vs. ExPASy TrEMBL
Match: A0A5A7TNE5 (Peroxidase OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold46G004670 PE=3 SV=1) HSP 1 Score: 580.1 bits (1494), Expect = 1.1e-161 Identity = 288/315 (91.43%), Postives = 305/315 (96.83%), Query Frame = 0
BLAST of HG10001913 vs. ExPASy TrEMBL
Match: A0A1S3BWM8 (Peroxidase OS=Cucumis melo OX=3656 GN=LOC103494427 PE=3 SV=1) HSP 1 Score: 580.1 bits (1494), Expect = 1.1e-161 Identity = 288/315 (91.43%), Postives = 305/315 (96.83%), Query Frame = 0
BLAST of HG10001913 vs. ExPASy TrEMBL
Match: A0A1S3BX98 (uncharacterized protein LOC103494428 OS=Cucumis melo OX=3656 GN=LOC103494428 PE=4 SV=1) HSP 1 Score: 572.0 bits (1473), Expect = 3.1e-159 Identity = 293/354 (82.77%), Postives = 305/354 (86.16%), Query Frame = 0
BLAST of HG10001913 vs. ExPASy TrEMBL
Match: A0A6J1J8A1 (uncharacterized protein LOC111482641 isoform X3 OS=Cucurbita maxima OX=3661 GN=LOC111482641 PE=4 SV=1) HSP 1 Score: 570.9 bits (1470), Expect = 6.8e-159 Identity = 286/322 (88.82%), Postives = 301/322 (93.48%), Query Frame = 0
BLAST of HG10001913 vs. TAIR 10
Match: AT2G22420.1 (Peroxidase superfamily protein ) HSP 1 Score: 468.0 bits (1203), Expect = 1.2e-131 Identity = 223/290 (76.90%), Postives = 261/290 (90.00%), Query Frame = 0
BLAST of HG10001913 vs. TAIR 10
Match: AT5G10320.1 (unknown protein; Has 54 Blast hits to 53 proteins in 19 species: Archae - 0; Bacteria - 4; Metazoa - 0; Fungi - 0; Plants - 50; Viruses - 0; Other Eukaryotes - 0 (source: NCBI BLink). ) HSP 1 Score: 337.0 bits (863), Expect = 3.2e-92 Identity = 187/360 (51.94%), Postives = 240/360 (66.67%), Query Frame = 0
BLAST of HG10001913 vs. TAIR 10
Match: AT5G10320.2 (unknown protein; Has 54 Blast hits to 53 proteins in 19 species: Archae - 0; Bacteria - 4; Metazoa - 0; Fungi - 0; Plants - 50; Viruses - 0; Other Eukaryotes - 0 (source: NCBI BLink). ) HSP 1 Score: 335.9 bits (860), Expect = 7.1e-92 Identity = 186/358 (51.96%), Postives = 242/358 (67.60%), Query Frame = 0
BLAST of HG10001913 vs. TAIR 10
Match: AT4G36430.1 (Peroxidase superfamily protein ) HSP 1 Score: 276.2 bits (705), Expect = 6.7e-74 Identity = 137/295 (46.44%), Postives = 192/295 (65.08%), Query Frame = 0
BLAST of HG10001913 vs. TAIR 10
Match: AT2G18150.1 (Peroxidase superfamily protein ) HSP 1 Score: 275.4 bits (703), Expect = 1.1e-73 Identity = 140/294 (47.62%), Postives = 194/294 (65.99%), 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.
|