HG10010113 (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.ATGCATGCTCTCAAGGACAAAGTTTCCGAGAGGTTATCCAGCCTCTTCTCTAATTCCACTACCTCCGAATCCCCTAAACCACCGGCGCCTGATCCTCATACTCAGGTTCTTGTTTTAGTCTTCTGTTTTATTTGTACGATTGTATGTATATGATGTTTTTGGCTTTGAATGATATGCTGGAAGGATTTGTGTGCTTTTTAGAGATTATGTGATTCGGCATTGTGCGTTTTTGTGGGTAGTTGGAGATGGAATTATTAATTTCATCTAGGGCTTTGAAGAAGGGCTGCCACAGACCACAATGTTTGGGTATTCTTCAGCAAGTACTGATAGAAAACGAGATATATGACTCAGGAGGGATTACGTTTGAGATATTTAGGGCCTGAATTAGGTTTCATACCAGTGTTCTTGGTATTTGATTCACATTTGCTTACATCTTTTAGTACTTGTAGTTTTTTGGTTTTCATTATTTTTTTTTCCTACCCTTAAAAATTGCAATGGCTTGGGTGCTTGAAAAGGTAATAGGCCTGAGGCTGAGATTAACAGAAGCAGAAGTTTTGTGTTGTAATTGTAACTTGCAAGTATATGGCGTAGGCTTAGTTACTTCAGTTCATCCACCCCCTAATATTGGGATTTAGAACTGCTTGATAGGCAAAACTAGTATATGAGTAAAGTTTTCAATCTTTATGCTTTATCTCTTTTCTCTGACGGACTCATTTGTGAATTTCATTACATGTTGGCTTGTGACATGGTTTCAATTATGTAGGCCAGGCCAAAATCGAAAGGAAGAAAATCATTGTCTTCATATTTATCCTTAGTAATCCCTTCAATACATGGATCTAAACCTTCTGGTTCTCGTCAAGACACCAATGCAGTTCAATCTCCCTCAGTTCGATATTGTGATGCAAACAATGATTTCCAAGAGGAAGGCTCAGATACTCGTTTAGAATGTAGTATACTATGCAAGGCAGAAGAAATACCTAGTAATCAGGGTGAAAATAAGGATTGTGGTTCAGCATATGAGGAGGTAAAACTGGATAAACTAGGAGTTGATTATGACTCGCCATCCGGAAAGAGCACTTCTAGTTCAGATGGATTTGAAGAAGCTATGGAGCGGTCCACTCCAAGAAACCCTTTATCAGACCTCATGGACGAGTCAGCTTTTATCACTTCAGACTTGTATGAATTCCTTGGATGTTGTCTACCCAACATTGTGAAAGGGTGCAAATGGATCTTACTGTACAGGTAGTTCAGCTGAAATATTATAGGTTTGACTCGTAGTGAATTAACTTTTTTAGTTTTATATTTGATCTGTGATCCAATTCATTACATTTCAAATGAAGGGCAGTACGATGAAGCATGGTATATCTCTTCAAACTCTTATTCGCAAGAGCCACAATCTTCCTGGCCCTTGTTTACTGGTATGCTGTCCGATGACTGTGTGTTTCACTGATGATGGAGCTTTTAAATGCTAAAACTGTAGTTCTTTGGTCTAGATTGTTGGAGATACTCGAGGTGCTATATTTGGTGGTCTTCTAGAATGCCCGTTGAAGCCTACAGCCAAAAGAAAATATCAAGTTGGTGCTTTTTCTTGTAACTCCCTTCCCTTCTAAATGGTAGCACATTGATAGCATTTTTTATCCTGGGGGAAGGGAAGGCAAATTGCCTTTTAGAAGTTATTTTAGCTGCTTCATTTTAAATTAGAAAGTTCACCCCAGTTTCAAGTTCACTTTCGATAGGTTAATATTAACTATTAAACTTATGTTGTCTTTGGCCATAAAAAAAAAAGAAATACAAAGTTTTATTCATAAGGAGTCTGTGGTGAATATGGCTTCTTTTCACAGTAGTTTATTGCTCCGAAGTAAATGTAAGCTAATCTGTACTTTAAACTTATTATGAACTACATAGGCCTATATTTCTTTGTCCTTCATATTGCAACTACAATCTAATTTTTATGCTTGTGTATTTGATAGGGAACACACCAGACATTTGTTTTTACAACGAAATATGGTGACCCAAGGCTTTTCCGAGCAACTGGTGAATATTCTGTTTTCGCTTGCCACACATGTGTTTGTTATTGGAGGATTCACAGTCGTTAAATATATCAGTCATGTTTTATGTGTTACTCATGTCTTCAATTCTTGACAGTTCTCTTTAGTCGATACTTGATTTTGATATATTAGTTAGCTTATAATCTATTTTTCTCGTTTATACCCGTATTCCTTTGTCTGTGGGTATATATGAATATCTCAATGGAATTTCTTGAGAGGAAATTCATGTTCTACATTTTTGTTTTTCCTTATTTTTTTTTTTAAATTACATTTCTTCCACAAAAGTGGCGTACATTTCTTATTTTCTTCTATTTTTCCTTCATTAGAGGGCTTCTTCCATGTATTTTTATCTGAGGAGAGACTTTTGAGGCTGTTGGATATGTCCTTGCTTATCCTTGACAAGGAGTTTGTCTTCACTTTGGATATAGTGGTAGTCGTATTTGTCTCTTTTGAAGTCCTGAGGATTTTTCTCTTGTAGATTTGAAGTCTCTCGTCGGTCTCCTCATGAGAGGATTAACATCAACTTTGTCCAAAGGACCTTCTTCTATGGTAGAGGGCCTCAATGGTGGATTCTCTAAGAACAAGTGTCAAACAATTTGAATCATATTCTATGGAAATGTTACTTTTGCTTGAAAATGTAGGACAAATGTTTGGAGATTTCTAGAGTTAGTTTCCAAGTGGACATTGCCATGCTCTGATGAGTAGTTGATTTTGCTTTGCCGTTCTGTGATAGAGGAAGAGTTTCTTTTATGAACATTTAGTTGGAGAGAAACAGAACGGTTTTTATGAGGTAGATGTGGAGGGTTTGGAGTTTGACACATTGCATGCTCCCCTTTGGGCCCTCCAGCAATGAGTTTTGTAATTACTGTCCTCCAATTTTCTTTGTGTAACTTTTTCTTGGCTTTTTATTATACATTCATTATTTGTTTTTCATTGAAAAAAAAAAGAAAACAAGACTCTCATATCTCTTCCCAGCTAATCTCCTCCCGAAAGAGGCTATAACTCTGTTCTTTTTGTCTGTGGCACTGATGCAGGAGCCAACCACTACTATTATATTTGCTTAAACGATTTACTTGCACTTGGAGGTGGTGGTAGTTTTGCCTTGTGTTTGGATGGTGACTTGTGAGTTAGTTTCTTCTTGGAACTTTTTCTCACCACTCTTGTAAATACGGGTGAGTTCACTAAATTGTTTTCTTTCATGCAACAAGATTAAGTGGAACTAGCGGACCGTGCGACACATTTGGTAGCTTATGCTTGGCACATGACCCAGAGTTCGAGCTAAAAAATGTCGAGGTAAAATTAAATTACCAAAACATGCATAGCTTGAATGTCCACCAATTGAATGCATGGTAGATTCATCATTTTAAAATATTGTAAAATTCAATGGGAGGTACTGGTCCTCAATAAGTCACCTTTCATTACATCATGTGCTTTATGTGACGTAGTACAGTATTCTATTGGCCACTGCTATGCACGTGCCTTATTCCTCTATACCTTTAGTAATATAAAGTGAAAGTGCTGGCTTTTACATTAGCTTTTGTGGTTCTTGCAGTTGTGGGGTTTCGCACATGCGTCAAGATACTTCTCCTGAAGACTTGTTATAATTCTTTTCAGAGTTTGTGCTTTTATTTAAGTATTTGTGATTATATTGTTCATTCTTCTTTTTGTTCTTTTAACTATTTTATTGATTATTCAATTAAAACTATCATCTAAAAGAAGCCTTTACCCTTTTTTTCTTTTGGGCGTAATATAATTCATCGATGTATCAGATTAACAATTCTTTCTTATTGCACTTTTGACCACACTTAACCGCCAATCAGTTGTCAGTTCCAAGCGTAGACCACGACGTCAAGAATTAATGAATTTGACTGATGAAATTTCATGCTTCTTATTGAGTATTGATCGGAACATAGTACTGACATTTATAGTTTCCCCTTAATGAACATCGATAGGCACCCATTTCACTCAGTTCTCATTAACAATACAGCGAATAATGAAAAAGAAAAAATTTGAAAGCTCAGGAATTAACTTCACGTGATCAAATGATATAAATTAGTTTTTAAATCAAACTGTGATGAAGGCATCTCTTTATAAGACCACTCATAGGTTTAGTGAGTCCATAATCCTCAGTTTTAGATGGCGGGTTGCTTTGTTTACCTTAGACCTTAGATTGAGCCTTTTATTTTAATGAAATTTTTTGTTACCTGACTGGCTTTGATGTCAAACTACAAAATTATCATCTCTTGGTGATAAGCTGCTGCACCTATGAAGAAAGAAAATACTCTCGATGAGTTTTCTTCCCGGGAGGAAACTCCATCTTGCTTCTTGGAGGAGAGAATGGGAATGATCTCTTCTTGTAAGAATTGAAGTTCTTTTTTCTCCTTTTAGGAGGAAAAAGACCTAGGAGGATGACCCCTCCTGTGAAGTTGGATCCCTCTAATTTGAGGATTCCCTCCATATGAATGAGTGAGAGAGCTTTGAGTATTTTCATTTATCGTAGCAAGTTTTCTGGATTCTTAGAATGATGTGTGTTAATTTAAGGCTTTGGTTGTTTTACCTAGATGCTTAGACATGGAATTGGTTCTTTCTCGTGAGGTTTTGGTTTAGTTACACTCATGGATCAATATGTTTTTGGGGTTTTGATGCCCTGGATTGTTGATGATAGATTCTCAGTATGCTTGAAAGACCCTCTGTTACGAATTCTATCTCATTATCAAGCTACATTTCATAAATGAAATTGTCTATGTGCAGTTTATTACTTACACCACTTGCCAATAGCAGATGGACAGGTAAGAGCTCTCTCCTCTCTTGATCATATTGAACTAATATCTGCTGTCTTTTATTTAGTGATCCTCTTGTATGCATGCTAATAGAAATCCTGGACTTTAGAAGGTGTTTGGCCCATCAACTTCACAAGTTGGTGTTAATTAACTCAACTTCAATAATAAACACTATTTAAGTTTGGACATTTATCGAGGAACTTCATCTTTTCCCTTCTTTATTTTGCACATTTATCAAGAAAACTCTGTATTACAACTATGTATCTCAAACACTAACTCCAGATTTCCAAACTTAACCCAACGCTCCCTAAGCAGAATGACCCCCCCCCCCCCCCCCCAACCAAAAAAAAAACAGGAAAAAGAGAGAAACAGGGAAGACAGTTGGATATGACAAGCTTGCAGTTATGGAAAAAGTAAGCTGAGAGTATATCAGTGAAGAGAGCCAAGAACAAAAAAAGGGCCAAGGGCCATAAACTTAAAAGAGTTGAATATGAATATATTCACTTCACAATGATTCACAAGTATACTTGATAAGGAGCCCTTTCAAAATGGGATTCTCTCGTTAGTTTGAAAGCCTTATCCTCCAATTAAGGTCATTTGATATGATTTTTGGATGCCTTGAATTATCTTTTGCCAAAGTACCCATGTCGTTATTTGGAAGGAGAACGACGGAGGGGGGCAATTGGACAAGAATATGTAGAACTTGCTAAACCGAACCCTGACATGATAGGGGCATTTAAAAAGTAAAACAGCCTTTGTAGGGGTTCTGTAATTTGGTTGTAAACCTTTGTTTCAATCAAACATTTTACTGACAAAGTTACATTGCATATTTGCATTATAGTTTTTTTATTTATTCCCTTCAGCCCAGGGCCTCCCTCTTTTTTCCCTTAAAAATGACACATTTCATGTGCTTTTTCTGCATTGGCATTCGTAAGCATCATCTTTCTTTAAGAATTTGTTTCTCCTGAAAACAAAACCAGTAAAATGAACAGAGGATCCATGAATTTTGGTTTGATAAATCTATGAAGCAAAAGGATGAACTCTGAATAGGTACACAAAATTATGCAGAAATTGCATCCCTACATCCCCTCAATGCTTGGAATATGTTTCATCTTTAGTAAAGGCAAAAAGTGTCCTTAAGATCTACGGATTGGAACAATATCTCTGAACTGCAAAACAGCATATGGTTCAAAACATGGAGGAATTTGAGTTAGGCAACTGAACCACTTCCAAACATCACCTTCTCTCTCTCTCTCTTTATTATTTGTTTTTGTTTTTCTTAAATCAGAAAAATTTGGCTGCTCTTTTAGAAGGGAATTTTGTTGCCAAATGTGGCAAATGCTTGAACATCTACCCAATAATAACATTCTCGGTTGTCTGCATTATCTTGGATATTTATGAAATAAATTGGTTTTGCTTGGTTTTGAGTTTAATTAGAACCTTGGTTCATTTATGTCTATTTAGTTTCAGAACGGTAGAATGGTAGAATGTTTCAATTACGTCGTTGAATTTTGAATTAAGAAACAAATAGAAAAGCATAATCTATTGCACATACAATTTGTAATTAATGAATGATGTTTCGGTTATGCAGGTAATTAAAATTATTTGAAATTTGTGGACTTTGGCTTAAATTAATTAAAGCATCGTTTACTAACCATTTGATTTTTGGTTTTTAAAAATTAAGGCTATAAACGTCACTTCCATATATTGATTTATATATTTTACTTTAATCTAAGATTTGTTTCGAGTTTGATCAAAGTATACTTCCTCAAATTACTTATGAGTTTGACAATTTATAATGAAGTTTAAGGAAAATAAAATGTAATATGGTTTTGAAAATTGAAGGGAAATTATTATAAACAGAAAAAGGTAAATTTTTTTTCTATATTTATAAATAGTTTGGCTCATTTTTTTAATCTAACTTTTTTTTTTTATTATTATTTTAAATTTTGTTGCAAGTGGTTTCCAAAGTATATTGGGTGCGAGTATAGTAAGCTACTATGGCTTGATTCTCTCTCATGAGAAATATCTCATTACTATAATTTCGATTAATTCTTCCACTTTCGTGGTAACATATCAATTATAGATGTTTTTAAATTATAGTATAAGAGGTATGGTTTATTTGTTTATTTATTTTAAAAAAGAGTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTGTAAGAATGGAAATGTTGTGGTATTGTATGTTTTTTTTTTCTGCAAGTACAATAATGTGAGGTGAAATATTCAAACATCCTACCAAAGATCAATAATAATAATTTTGTTTACTATAAACAGAAAAAAATATCAAATTACTTATGAATATAGAAAAATTTTGTTGTCTATCATTCAAGCAGTAGAATTCTATAGTAAAATTTTTCTATATTTGTAAACAATTTGGCTCATTTTTTTATATTTGAAAACAATCATAAGATTCTTAATATAGTGAGATGAAAAATCAAGCTTACTATATCTCTCAATGTAATAAGATTAATTTATTATTATTATTATTATTATTATTATTGATCTTTGGTGGAACATGATTTATATACGTATTTATAACGATGAATAAATAAATAAATATGTATGAACTTCTATCTTATATGGGATAAAGAATTCTTTTTCTTCCAAAAGAAGGTAATAGAGACAAATCAAATTATCTCTCAATCATATATCCAGATGTATTTTTCCTTTTTAACTAACATCAATTTCCATTAGAAAAGGGAGTATTTATATTTCACATATTATAGTTAATAAAATGTTATATATTACTTTTTTTTTAAAAAAAAAAAAAGTTCGGGTTCCATTAAATTATAGTTTTAAATACATAATTTCTACCAAAATGAGCATAGCCCAGCATACATCAAGTATGTATTATTAACTTTGAGGTCAAAATTTTGATACATCTATTCTACATATTGTCTAAAAAATAAATAAATGAGATTCACAGTGTTACAAACCATTGGTTTTCAAATTTATGAAAATAATGTATCCATTGATTTTCAAATTTATGAAAATAATGTATACAAAATTCAAGTGATGTTGAAAATCACCCTATTTTTATATAAAATAAAAATATACTAGTTCAACTATTTACTCATTCACTTGAGGTCCAAAGTTTATATTATCCTACCTACTTTTTAAACTTAGGTAGAGACTTGAAAAATATAATTTATTTTAGTTGTTTTTAAGAGTTGTTTTCAAATATAAGAAAACGAACAAAAATATTTACAAATATAGCAAAATTTCACTGTCTTATCTGTAATAGACTGCGATAAATAACTATTTGTGCCTATCTGTAGATAGACTACATATAGACAGTGAAATTTTCATGATATCTTGTTCAATTGTCCCCCCTGCGATAGACTACAGATAGCCACATATAATAGTCCATTGTGACATACATAGTAGTCTATCGCAGATAGACAGTGGAATTTCGTTATATTTGTAAATATTTTCAACAATTTTGTTATTTAAAATAATTTTTCTATTTAAAATGTAATATTCTTTCTATATATATATATATATATATATATCCATAGACAGATAATGTAAGATTTGTGTGAAATGCAATTTGAAAATTTACCAAGATATCTTAAAGTTGAGTAAATATAAAAAGTTTAGGATTACAACTTTTTTATATTCTCAATCAAATCATATCTTGCAAAGGATGGTAAAATTATATAACACATGTTGGTCAAATCAAGTCAAGGTTCTCTTTTTCACTCAAACCAAAAAATAATGATATTTCTTTTTCTTTTTTTTTTTTTCCAAATAAAAATAGCATATAAATACATCAATAAATAAAATTGAGATGACAAGTGATCAAGATTGCTTAGGTATCTAACGAAAACCTTTTTTCATTTATTGGCTAATCATCCTTTGTTCTCTCAACTCAATTCTATAAATCAAATCTTATCTCATTCTTCTTCTTCTTTCTTTTTTAAAATAATAATAATAATATTTGGCTAGGTGTCCTCTTCTCATTGGGTGATTTGAGATTATTTCATATTTTCCTAAGGTTTTAAAATCATATCATATAATCATAGATTTTAGTCACAAAATATTTCTTTTTTTTTCTTTTACTTTTAAGCTAAAATAATAGTTTCATGAGAAATTTTCACAAATAGAAAAAATGTCAAACTATTTACAGAAAATAACAAAAAAAAAAAAAAAACTGATAAACTTTGATAGATTTCTATTAGCATCTATTAGTGATAGACTTCTATCATTTTTATCACTGATAGACCATGATAGACTTCTATCAGCATCTATCACAACTATCTAACAAATTTGCTATTTTGTGTAAATAGTTTTCTTTATTTTTCTATTTTTAAAAATTAGAAATGATAGAAGTCTATCATTGATAGATGCTGATAGAAGTCTATCAATGTCTATCATTGTTTTTTTTTTTTATTTTCTGTAAATAGTTTGACATTTTTTCTATCTGTGAAATTTTTTTTCATATCAAAGGTGAGATATTTTCTAATGAAATTTTGTTTATTTAACATGAATGAAAATGAAAATAATTTTAAGAAAAATTTTTACATATAGAAAAAATGGACATTGATAGATCTCTATCAGCATCTATCAGTGATAGACTTCTATCATTTCTATCACTGATAGACTTCTATCACATCTATTTTGCTATTTTTTTTAATTAGTTTCTCTTATTTTTCTATTTTTAAAAATCTGGAATTAAAATATTTTACAATGTAACTTATTTTACATCAAGAATATGAATAAAAAGAAATGGCAAACCAAATCCTTAGAATATGAACAAATTATTATAAGCCAAATGTCAAGTTGATGGATTATAGAATGAAAAACCAACCACATCTCATCATCTTTCTTCTCTATTGTGCTAATTTACTTACCACATTGCCTATAATCACTTAAAAACAGTCAAATTATATCAAATCAAGATCAACCAATCGTTAATATTTCCTAAACTAATTCTAACACAACTTCAACAACTAGACAGGCATTTACAACGTTGTTTATTTTGAAAATGCTTTAAACCTTCCAAACGTGATTGGTTCTAAATATGTAAATTGGATAACCAACACTTGAATTTCTTTAATTTAAACCATTTAATTATTATATTTTCTAAGACACATAACTTGTCCACGTGTCATAACGAGATCAAAATACAACGTTAAAACTAAGATATAGAATGGCCCACCGTGACCATCGGGTTGACCATTCGTGGAATGCCAGGCTGACTGTTCCGTACGGACTAGCTCCTAAATTAATAAAAAAAAAAAAATGTGTTCAATAAATTAACCAACTAACTTTGTACACCCCATTTTCTTCTTACCCAAAAATAACAATTTTTTCCCTCTCTCTCTAGAAAAATAATTATATTTTTTTTTAAAAAAAAATTCATACACAGAAACAGGACGAACAAATTTCCCTTTCTCCTCCTTTTCTATAAAAGCGTTGCTCTGTTATTTCTGTTTAGCCTCATGGAGTTTTATTGTCATTGCTTCTTCCATTTCACTCAAACTTCTTCTTTGCTTCACCAAAATCCATTCTTCTTCCATTCTCTTTCATTTTAAAACAACCCCTTTTGATTTTTCTTCTTAATCTTTAGAGTTATGTTGCAAGACGTCGTCCACTCCGCGTCGGAGCAAATGCTTTTCATTGTAATTCTTTTTTAACCCTTTTGTATCTGTTTTACGATATTCGTGAATGTTTGAGTCAACTTCGTGTTTTCGTTTTGATATTGGGTTTTTTTTTTTTTTTCATTTTCATGAATGCACATAAGGTTTATGACAAAATTCCTAGCTGCCATTTTGAGTTCTTTGTGCTTGGGAAATGGGTTTGAATTTTCTTCTTCTTCTTTTTTCTCTCTTTTGATTATTGTGGAAACATGTGGCTTATAAATCTTGTTGTTACAACATTTCTGGGTTGGATTCTTATTCAAAATATCTAAGATAAATGAGAGAGAATCCATGCTTGACAAGCATCTCACATGGATGTGTTGTTGGAGTTGATTTTTAAATTCTATTTGTTTGTCCAAACTGGGAAATTTTTACCACTAATCCAACCAAATTTAGTACTCCATTAGCTTCTTACTTTATTTTTCTCTTTTGCACTCCCACATATCACATGAGCATAAATGCACATCTTTTTCAACTTTGCACAACAAACATGCAGCATTAGAGACCATTCCTTCCTTTTTCATAAAGTTTGGTGCATTACATATTGTTTTACCCAAATCCTCTGAAAATTCTGGTTGCTTTAGATTTTCTTTTAAACATTGTTATGCTAAATACCTTATCTTCATCTCCTACTATATATATTTTATCCTGTTTCTTTTACTGAGTTGTATATTTGAGAAGAGAGACTTTATGTGTTTGTGTGTGTTTATTTATAATTTTCATCTTTTGGTTGTGAATATGAAGAATGGTACTTCTTGCTTGTTTGAAACAATGGTCGGTTTCTGTTCGGCCGTGCCTAAAGGCATATCGGTAGAAGTAGATTTCTTCTTGTTAATATATCAATACCTTCTTTTGTTTTTGTTTAGTCCCCTTTTGTTTTTGGTTTTTGTATGCATTGGTGTAGAAGTTGATGTTGGCTTTTGATATTGTTTTTTCAGGATGAAATCTCGAGTCCGATCAATGCGCAAATCTTTGATTTCTGTGATCCCGAGCTGTTCGCGGAGACGCTTCAGAATTCCGAGTTCAATTCTTGCTCGAATTGTTGTTATGACAACAATTCGCCATATGCTACAAATCTGTCTAATTCCCCGGATCAAACAGATAACAATGGCAATGGGAATGGCCATACCGTCGCTGCTGCTGCATCGTTTATACCTGCTAACGACGCATCCGCTGCAACTAACTTAACGACCAACAGTACTAGTAATCTGACTGCTATCTTTGATTCCCAAGAAGAACTTGACAATGATATCTCTGCTTCCATAGACTTCTCTCCATCGGCTTCGTTTTCGATCCCTCAATATCTCACCATCCAGTCAGGGCAGTTCGACGTTTCTCAAGTGCAGTCTCAAATGCCATTAGTAGATCCCATGATTGAGGGGCTTGTCCAGTGTCCTATGGCTCCAGTTGGAACTCTCATCGACGAAGAACTACCATCAATTTACGTCGACGATTGCTTGTCTTCCTTGACTTCCTACATGCCACTCAACCCTTCTTCCCCCTCGTGCTCGTTTGTCGGAGCAACCATGGCAAGTTACCTGCCTACTACATCAATGAATCCTGCTACATCGACTGTCGAAAGTTGCGGAATGTTTTCTCTCCTTGGCGCAGAATTGCAACCGCAAGACCTTGACTATCAAGGAGACAACTGTGGACTCTACAGCCAAGACTGTATGCAGGGGACTTTCAATCCAGCAGACCTTCAGGTACTAAACTAAACTCTATTCAACTATAATCCGTCTTCGACAACGACGAAATAAACAAACCGATATCACGGTCACATATGATTGTCACTCAAACATTTTTTGTTGTATATAAAAAGGTGCTTAACAATGATAATCTACAACTGGCTGCTGGGGCAATGAACTGCACTTCTTTAGCATCAGATCTCTCAAGCTTAAAGGACAGTACTTTCAAAGTAGGAAAACTCTCCATGGAAGAGAGAAAGGAGAAGATTCATAGGTACATGAAGAAAAGAAATGAGAGAAACTTCAGCAAGAAAATCAAGGTCGTCACTCTTTCTTTCTTTTTTTCTTTCTTTCTTTTCCCCCTCCCCTCTTTATAATCTTGCTGATGGCGGAAGCAAATCGACAGTATGCTTGCCGAAAAACGCTAGCGGATAGCCGGCCACGTGTTCGGGGACGGTTCGCAAAGAACGACGAATTAGCAGAGAATCACAGAGCTGCTTGTAGCAACCATGAAGGAGAAGAAGAAGAAGAAGTAAAGCTCCTCTTTGAGCCAACTTTTGAAAGCTTCTCCAATTGGGAAAACAGAGTTTTTTAAAAAAAGAAGAAAACTATATGAATATATATATTATGTACATATATATATATATCAATGGTTTTTGTGTTTGCAGGTAGTTGTGAAGAAAGAAGATAGCATGGTTGATTCCTCAGATATCTTTGCGCATATCAGTGGAGTGAACTCTTTCAAGTGCAACTATCCAATCCAGTCTTGGATTTGA ATGCATGCTCTCAAGGACAAAGTTTCCGAGAGGTTATCCAGCCTCTTCTCTAATTCCACTACCTCCGAATCCCCTAAACCACCGGCGCCTGATCCTCATACTCAGGCCAGGCCAAAATCGAAAGGAAGAAAATCATTGTCTTCATATTTATCCTTAGTAATCCCTTCAATACATGGATCTAAACCTTCTGGTTCTCGTCAAGACACCAATGCAGTTCAATCTCCCTCAGTTCGATATTGTGATGCAAACAATGATTTCCAAGAGGAAGGCTCAGATACTCGTTTAGAATGTAGTATACTATGCAAGGCAGAAGAAATACCTAGTAATCAGGGTGAAAATAAGGATTGTGGTTCAGCATATGAGGAGGTAAAACTGGATAAACTAGGAGTTGATTATGACTCGCCATCCGGAAAGAGCACTTCTAGTTCAGATGGATTTGAAGAAGCTATGGAGCGGTCCACTCCAAGAAACCCTTTATCAGACCTCATGGACGAGTCAGCTTTTATCACTTCAGACTTGTATGAATTCCTTGGATGTTGTCTACCCAACATTGTGAAAGGGTGCAAATGGATCTTACTGTACAGTACGATGAAGCATGGTATATCTCTTCAAACTCTTATTCGCAAGAGCCACAATCTTCCTGGCCCTTGTTTACTGATTGTTGGAGATACTCGAGGTGCTATATTTGGTGGTCTTCTAGAATGCCCGTTGAAGCCTACAGCCAAAAGAAAATATCAAGTTGGAGCCAACCACTACTATTATATTTGCTTAAACGATTTACTTGCACTTGGAGGTGGTGGTAGTTTTGCCTTGTGTTTGGATGGTGACTTATTAAGTGGAACTAGCGGACCGTGCGACACATTTGGTAGCTTATGCTTGGCACATGACCCAGAGTTCGAGCTAAAAAATGTCGAGGATGAAATCTCGAGTCCGATCAATGCGCAAATCTTTGATTTCTGTGATCCCGAGCTGTTCGCGGAGACGCTTCAGAATTCCGAGTTCAATTCTTGCTCGAATTGTTGTTATGACAACAATTCGCCATATGCTACAAATCTGTCTAATTCCCCGGATCAAACAGATAACAATGGCAATGGGAATGGCCATACCGTCGCTGCTGCTGCATCGTTTATACCTGCTAACGACGCATCCGCTGCAACTAACTTAACGACCAACAGTACTAGTAATCTGACTGCTATCTTTGATTCCCAAGAAGAACTTGACAATGATATCTCTGCTTCCATAGACTTCTCTCCATCGGCTTCGTTTTCGATCCCTCAATATCTCACCATCCAGTCAGGGCAGTTCGACGTTTCTCAAGTGCAGTCTCAAATGCCATTAGTAGATCCCATGATTGAGGGGCTTGTCCAGTGTCCTATGGCTCCAGTTGGAACTCTCATCGACGAAGAACTACCATCAATTTACGTCGACGATTGCTTGTCTTCCTTGACTTCCTACATGCCACTCAACCCTTCTTCCCCCTCGTGCTCGTTTGTCGGAGCAACCATGGCAAGTTACCTGCCTACTACATCAATGAATCCTGCTACATCGACTGTCGAAAGTTGCGGAATGTTTTCTCTCCTTGGCGCAGAATTGCAACCGCAAGACCTTGACTATCAAGGAGACAACTGTGGACTCTACAGCCAAGACTGTATGCAGGGGACTTTCAATCCAGCAGACCTTCAGGTGCTTAACAATGATAATCTACAACTGGCTGCTGGGGCAATGAACTGCACTTCTTTAGCATCAGATCTCTCAAGCTTAAAGGACAGTACTTTCAAAGTAGGAAAACTCTCCATGGAAGAGAGAAAGGAGAAGATTCATAGGTACATGAAGAAAAGAAATGAGAGAAACTTCAGCAAGAAAATCAAGTATGCTTGCCGAAAAACGCTAGCGGATAGCCGGCCACGTGTTCGGGGACGGTTCGCAAAGAACGACGAATTAGCAGAGAATCACAGAGCTGCTTGTAGCAACCATGAAGGAGAAGAAGAAGAAGAAGTAGTTGTGAAGAAAGAAGATAGCATGGTTGATTCCTCAGATATCTTTGCGCATATCAGTGGAGTGAACTCTTTCAAGTGCAACTATCCAATCCAGTCTTGGATTTGA ATGCATGCTCTCAAGGACAAAGTTTCCGAGAGGTTATCCAGCCTCTTCTCTAATTCCACTACCTCCGAATCCCCTAAACCACCGGCGCCTGATCCTCATACTCAGGCCAGGCCAAAATCGAAAGGAAGAAAATCATTGTCTTCATATTTATCCTTAGTAATCCCTTCAATACATGGATCTAAACCTTCTGGTTCTCGTCAAGACACCAATGCAGTTCAATCTCCCTCAGTTCGATATTGTGATGCAAACAATGATTTCCAAGAGGAAGGCTCAGATACTCGTTTAGAATGTAGTATACTATGCAAGGCAGAAGAAATACCTAGTAATCAGGGTGAAAATAAGGATTGTGGTTCAGCATATGAGGAGGTAAAACTGGATAAACTAGGAGTTGATTATGACTCGCCATCCGGAAAGAGCACTTCTAGTTCAGATGGATTTGAAGAAGCTATGGAGCGGTCCACTCCAAGAAACCCTTTATCAGACCTCATGGACGAGTCAGCTTTTATCACTTCAGACTTGTATGAATTCCTTGGATGTTGTCTACCCAACATTGTGAAAGGGTGCAAATGGATCTTACTGTACAGTACGATGAAGCATGGTATATCTCTTCAAACTCTTATTCGCAAGAGCCACAATCTTCCTGGCCCTTGTTTACTGATTGTTGGAGATACTCGAGGTGCTATATTTGGTGGTCTTCTAGAATGCCCGTTGAAGCCTACAGCCAAAAGAAAATATCAAGTTGGAGCCAACCACTACTATTATATTTGCTTAAACGATTTACTTGCACTTGGAGGTGGTGGTAGTTTTGCCTTGTGTTTGGATGGTGACTTATTAAGTGGAACTAGCGGACCGTGCGACACATTTGGTAGCTTATGCTTGGCACATGACCCAGAGTTCGAGCTAAAAAATGTCGAGGATGAAATCTCGAGTCCGATCAATGCGCAAATCTTTGATTTCTGTGATCCCGAGCTGTTCGCGGAGACGCTTCAGAATTCCGAGTTCAATTCTTGCTCGAATTGTTGTTATGACAACAATTCGCCATATGCTACAAATCTGTCTAATTCCCCGGATCAAACAGATAACAATGGCAATGGGAATGGCCATACCGTCGCTGCTGCTGCATCGTTTATACCTGCTAACGACGCATCCGCTGCAACTAACTTAACGACCAACAGTACTAGTAATCTGACTGCTATCTTTGATTCCCAAGAAGAACTTGACAATGATATCTCTGCTTCCATAGACTTCTCTCCATCGGCTTCGTTTTCGATCCCTCAATATCTCACCATCCAGTCAGGGCAGTTCGACGTTTCTCAAGTGCAGTCTCAAATGCCATTAGTAGATCCCATGATTGAGGGGCTTGTCCAGTGTCCTATGGCTCCAGTTGGAACTCTCATCGACGAAGAACTACCATCAATTTACGTCGACGATTGCTTGTCTTCCTTGACTTCCTACATGCCACTCAACCCTTCTTCCCCCTCGTGCTCGTTTGTCGGAGCAACCATGGCAAGTTACCTGCCTACTACATCAATGAATCCTGCTACATCGACTGTCGAAAGTTGCGGAATGTTTTCTCTCCTTGGCGCAGAATTGCAACCGCAAGACCTTGACTATCAAGGAGACAACTGTGGACTCTACAGCCAAGACTGTATGCAGGGGACTTTCAATCCAGCAGACCTTCAGGTGCTTAACAATGATAATCTACAACTGGCTGCTGGGGCAATGAACTGCACTTCTTTAGCATCAGATCTCTCAAGCTTAAAGGACAGTACTTTCAAAGTAGGAAAACTCTCCATGGAAGAGAGAAAGGAGAAGATTCATAGGTACATGAAGAAAAGAAATGAGAGAAACTTCAGCAAGAAAATCAAGTATGCTTGCCGAAAAACGCTAGCGGATAGCCGGCCACGTGTTCGGGGACGGTTCGCAAAGAACGACGAATTAGCAGAGAATCACAGAGCTGCTTGTAGCAACCATGAAGGAGAAGAAGAAGAAGAAGTAGTTGTGAAGAAAGAAGATAGCATGGTTGATTCCTCAGATATCTTTGCGCATATCAGTGGAGTGAACTCTTTCAAGTGCAACTATCCAATCCAGTCTTGGATTTGA MHALKDKVSERLSSLFSNSTTSESPKPPAPDPHTQARPKSKGRKSLSSYLSLVIPSIHGSKPSGSRQDTNAVQSPSVRYCDANNDFQEEGSDTRLECSILCKAEEIPSNQGENKDCGSAYEEVKLDKLGVDYDSPSGKSTSSSDGFEEAMERSTPRNPLSDLMDESAFITSDLYEFLGCCLPNIVKGCKWILLYSTMKHGISLQTLIRKSHNLPGPCLLIVGDTRGAIFGGLLECPLKPTAKRKYQVGANHYYYICLNDLLALGGGGSFALCLDGDLLSGTSGPCDTFGSLCLAHDPEFELKNVEDEISSPINAQIFDFCDPELFAETLQNSEFNSCSNCCYDNNSPYATNLSNSPDQTDNNGNGNGHTVAAAASFIPANDASAATNLTTNSTSNLTAIFDSQEELDNDISASIDFSPSASFSIPQYLTIQSGQFDVSQVQSQMPLVDPMIEGLVQCPMAPVGTLIDEELPSIYVDDCLSSLTSYMPLNPSSPSCSFVGATMASYLPTTSMNPATSTVESCGMFSLLGAELQPQDLDYQGDNCGLYSQDCMQGTFNPADLQVLNNDNLQLAAGAMNCTSLASDLSSLKDSTFKVGKLSMEERKEKIHRYMKKRNERNFSKKIKYACRKTLADSRPRVRGRFAKNDELAENHRAACSNHEGEEEEEVVVKKEDSMVDSSDIFAHISGVNSFKCNYPIQSWI Homology
BLAST of HG10010113 vs. NCBI nr
Match: XP_038875443.1 (uncharacterized protein LOC120067896 isoform X1 [Benincasa hispida]) HSP 1 Score: 745.3 bits (1923), Expect = 4.6e-211 Identity = 381/399 (95.49%), Postives = 392/399 (98.25%), Query Frame = 0
BLAST of HG10010113 vs. NCBI nr
Match: XP_038875446.1 (uncharacterized protein LOC120067896 isoform X4 [Benincasa hispida]) HSP 1 Score: 745.0 bits (1922), Expect = 6.0e-211 Identity = 386/412 (93.69%), Postives = 397/412 (96.36%), Query Frame = 0
BLAST of HG10010113 vs. NCBI nr
Match: XP_038875444.1 (uncharacterized protein LOC120067896 isoform X2 [Benincasa hispida]) HSP 1 Score: 744.2 bits (1920), Expect = 1.0e-210 Identity = 380/397 (95.72%), Postives = 392/397 (98.74%), Query Frame = 0
BLAST of HG10010113 vs. NCBI nr
Match: XP_038875445.1 (uncharacterized protein LOC120067896 isoform X3 [Benincasa hispida]) HSP 1 Score: 743.0 bits (1917), Expect = 2.3e-210 Identity = 380/395 (96.20%), Postives = 390/395 (98.73%), Query Frame = 0
BLAST of HG10010113 vs. NCBI nr
Match: XP_008460686.1 (PREDICTED: uncharacterized protein LOC103499454 [Cucumis melo]) HSP 1 Score: 742.3 bits (1915), Expect = 3.9e-210 Identity = 378/397 (95.21%), Postives = 392/397 (98.74%), Query Frame = 0
BLAST of HG10010113 vs. ExPASy Swiss-Prot
Match: A8KBE0 (Oxidation resistance protein 1 OS=Xenopus tropicalis OX=8364 GN=oxr1 PE=2 SV=2) HSP 1 Score: 91.7 bits (226), Expect = 3.6e-17 Identity = 59/170 (34.71%), Postives = 81/170 (47.65%), Query Frame = 0
BLAST of HG10010113 vs. ExPASy Swiss-Prot
Match: Q8N573 (Oxidation resistance protein 1 OS=Homo sapiens OX=9606 GN=OXR1 PE=1 SV=2) HSP 1 Score: 90.5 bits (223), Expect = 8.1e-17 Identity = 57/164 (34.76%), Postives = 77/164 (46.95%), Query Frame = 0
BLAST of HG10010113 vs. ExPASy Swiss-Prot
Match: Q4KMM3 (Oxidation resistance protein 1 OS=Mus musculus OX=10090 GN=Oxr1 PE=1 SV=3) HSP 1 Score: 89.0 bits (219), Expect = 2.4e-16 Identity = 57/170 (33.53%), Postives = 78/170 (45.88%), Query Frame = 0
BLAST of HG10010113 vs. ExPASy Swiss-Prot
Match: Q4V8B0 (Oxidation resistance protein 1 OS=Rattus norvegicus OX=10116 GN=Oxr1 PE=1 SV=3) HSP 1 Score: 89.0 bits (219), Expect = 2.4e-16 Identity = 57/170 (33.53%), Postives = 78/170 (45.88%), Query Frame = 0
BLAST of HG10010113 vs. ExPASy Swiss-Prot
Match: B4F6Q9 (Oxidation resistance protein 1 OS=Xenopus laevis OX=8355 GN=oxr1 PE=2 SV=2) HSP 1 Score: 87.4 bits (215), Expect = 6.9e-16 Identity = 57/170 (33.53%), Postives = 80/170 (47.06%), Query Frame = 0
BLAST of HG10010113 vs. ExPASy TrEMBL
Match: A0A1S3CCK1 (uncharacterized protein LOC103499454 OS=Cucumis melo OX=3656 GN=LOC103499454 PE=4 SV=1) HSP 1 Score: 742.3 bits (1915), Expect = 1.9e-210 Identity = 378/397 (95.21%), Postives = 392/397 (98.74%), Query Frame = 0
BLAST of HG10010113 vs. ExPASy TrEMBL
Match: A0A5A7SLG3 (CCT domain-containing protein OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold96G00060 PE=4 SV=1) HSP 1 Score: 732.6 bits (1890), Expect = 1.5e-207 Identity = 378/416 (90.87%), Postives = 392/416 (94.23%), Query Frame = 0
BLAST of HG10010113 vs. ExPASy TrEMBL
Match: B0F827 (Zinc finger-like protein OS=Cucumis sativus OX=3659 PE=4 SV=1) HSP 1 Score: 728.4 bits (1879), Expect = 2.8e-206 Identity = 377/400 (94.25%), Postives = 387/400 (96.75%), Query Frame = 0
BLAST of HG10010113 vs. ExPASy TrEMBL
Match: A0A0A0LKJ8 (CCT domain-containing protein OS=Cucumis sativus OX=3659 GN=Csa_2G171860 PE=4 SV=1) HSP 1 Score: 724.5 bits (1869), Expect = 4.1e-205 Identity = 376/396 (94.95%), Postives = 384/396 (96.97%), Query Frame = 0
BLAST of HG10010113 vs. ExPASy TrEMBL
Match: A0A371FYW0 (Oxidation resistance protein 1 (Fragment) OS=Mucuna pruriens OX=157652 GN=OXR1 PE=4 SV=1) HSP 1 Score: 652.9 bits (1683), Expect = 1.5e-183 Identity = 385/729 (52.81%), Postives = 487/729 (66.80%), Query Frame = 0
BLAST of HG10010113 vs. TAIR 10
Match: AT1G04500.1 (CCT motif family protein ) HSP 1 Score: 280.8 bits (717), Expect = 3.0e-75 Identity = 194/414 (46.86%), Postives = 251/414 (60.63%), Query Frame = 0
BLAST of HG10010113 vs. TAIR 10
Match: AT2G33350.2 (CCT motif family protein ) HSP 1 Score: 263.8 bits (673), Expect = 3.8e-70 Identity = 189/419 (45.11%), Postives = 256/419 (61.10%), Query Frame = 0
BLAST of HG10010113 vs. TAIR 10
Match: AT2G33350.1 (CCT motif family protein ) HSP 1 Score: 263.1 bits (671), Expect = 6.5e-70 Identity = 189/419 (45.11%), Postives = 256/419 (61.10%), Query Frame = 0
BLAST of HG10010113 vs. TAIR 10
Match: AT2G05590.2 (TLD-domain containing nucleolar protein ) HSP 1 Score: 242.7 bits (618), Expect = 9.1e-64 Identity = 145/331 (43.81%), Postives = 188/331 (56.80%), Query Frame = 0
BLAST of HG10010113 vs. TAIR 10
Match: AT2G05590.1 (TLD-domain containing nucleolar protein ) HSP 1 Score: 204.9 bits (520), Expect = 2.1e-52 Identity = 126/303 (41.58%), Postives = 167/303 (55.12%), 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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