HG10018596.1 (mRNA) 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.ATGGCTTCAACAGTTCTTAATGCGCCTAATAGCGTTCGAAGAATTAATGGTTTGGATTGCGGCTCCTATGTTGGGCTAATACGATCGCCAAATTCAAATTTCCTTTGCGTCAGAACCTCGGCCAATGTGCGTTCTCCGCGTCTTTTCGTTGTGAGAGCCTCAGATGAGCGCGATGCACATATGAAGAAACTTGGACGGAGTGATGCAGAGTGCGAAGCTGCTGTTGTGGCTGGCAACGTTCCAGAAGCGCCTCCTGTGCCGCCGAAACCAGCATCGCCAGCTGGAACTCCTGTGGTTCCTTTGCTGGTTAGTGTTGTAGATATTACTGGGTTTTCACATTAACTAAAATTACAAGCAGACGTCGTAGAGAAATTAGTTTTAGAGATGACTACAATAGAAACTCGGTTGGTTGAATTTGCAGATCATAGTTGTTTTAGAAATGACATTCCAATCATGTTTTACCTTAACGGCATGCGTTTTAATTTCATTAAGAACTTATGGCTCTAGTTAATTGATTTGCATATTTTGCAAATAATAGAAAGGCTTAAAGCTAGTTTTGAAAAGGGAAGTGAATGATTGGCAAAATACGCAAATGAAAGTTTTAAGAATTTTGATGCTGCCTCCAGTTTTTCTAGAATCAATAATAAATATGTTTGAAGTTTTGGAATTAGTTTTAGAATTTTGTGTTATCTGTGCTCCTAAGTATGCATTCAAAAGTCCTAAAGATAAATTACATCGAAAGATTTATCAAACATTTTTTTCTGTACTTCTAGTTTTATACACACTTGGAACTATATATTAAAGTTGAGTGCCGTCTACTTCTAATGAATTTTCCATCAGCCTCTCAGCCGTCGTCCACGTCGTAATCGGAGGTCTCCAGCATTGAGAGCATCATTTCAGGAGACCAACTTATCACCTTCCAATTTTGTATATCCACTATTCATTCATGAAGGTACCTTTATTAATTTCTTATTTCATACTCTTTTTGGTGTGGCGCTGTTTGCATGGACCTTTGTTAGTTTGTAGGCAATGTAAGTCCAAAGATTAGGAAATTTGCAGGTGAGGAGGACACACCAATTGGAGCTATGCCTGGATGTTATAGACTTGGATGGAGACATGGACTTTTGGAAGAGGTAACTTAGCCATATGGACTCTACTTTCTTCTGATCATAAAGGACTAAGGAGGTTGTTGCCTCGTTGAAAATTTCACTTTTGCACTTTTCTTAGTGGTCTGCTGTTATTTGGATAGTCTCGATGTTTAGATTTAGCAACAGTATATGCTTTTCGTTTGGGCATTTAGGTTTTGTTTCAATCTTCTGGAAACCTTCTTAGAAGGAATTGACTATGTCTAAGCAGTACTTGAGAGAAAAGGGGAAATTTGCCTTTTGGTTCTCAAGGGTAAAAAGATTTGGATGAATCTTTCTTTTAGAAAGTTTGTTAGGCAAAGTGCATTGCTTTCAATGATGAGAGGAGATGGTGCAACTTAGAGATGCCCGTGCATTACTACTAATTAATAAAGATAATCTTGTTGGAGGCAGGTTTCAAAAGCTCGGGATGTTGGTGTCAATTCTGTTGTGTTATTCCCTAAAGTTCCGGATGCATTGAAGGTATTTACTCCTCATTCTTATACTATTTGTGATTTTTTACTAGCATAAGATGATCAATTTTTGCTTCAGACTCCAACAGGGGACGAAGCTTATAATGATAATGGTTTAGTGCCTCGAACAATTCGATTGCTTAAGGACAAATACCCTGATCTTGTAAGTTAACTACACTATGTTTGAATTTTTATTGAAGTTATGGAATTATCATTGTTTCATGTGTGGAAAGATCACAGTCGTATATTGTACCAATCTATTTTTTCAGGTTATTTACACTGATGTTGCTTTGGATCCGTACTCTTCTGATGGCCATGATGGTATAGTTAGAGAGGATGGTAAGAGTAAATACCTTTATTTAAATGACATTACACTAGTAGAAGTGTTATATAAAATAATATTTACATTAATAATTGAGATAACTTAGGCCAGAGCATAAGTTTACTATCGCCTTTCCATTCACAAACTATGTGTCTGTGCTGATGCATCTATCGGTATAAGTTTTGCTTCAAATCTGATCTTGATACAAAAGAAGCTTGAAAGTGAAAATAATCACGTGTGCAGAAAAATGTGCCTATGTGCACATGAGAGAGTATTTATGTCTGAATTGCTTTGTAATGATATCAGATATGTTAGTGGATTTCTGCTGAACTTTCCTCAGAATAAGTTCCATTTTCTGATCATCTGATGTGTAAACTGTAATGACGATGGCTGTAATTTTTAAAGGGAAACTATCTGCTTGGCAGTAGGCAGCAGAGACTGTTATTAAGGCTCTTCATCGAAATTCGATTTGTTAGAATTTCATAGCCATCAGCCCTTATTCCAATTTTGAACAATGATCCCAATTATCATTCATCAGCGTCAATTCAGTATTGACCTTACAGTGTAGAGATAGGTGTACATGGTTACAGTTTTATTTTTTTTATTTTTGCAGGAGTTATAATGAATGATGAGACTGTACATCAATTATGCAAACAAGCTGTCTCCCAGGTAATTTTCCGAGATCATTGTCTAGGTAAATTCAACCCGGGAAGACTATAGATCCAATTCCCATCTATGAATTAGAGTAGTGAAATTATGCAAATATGCACAACTATGTTTCAACATTTATTGTTGTCAAACTGTCATGAGTTCCAATATTAGTATGTCGTGTTGCTTATAAATATTTTATGGAGTTGAGTGGATTTTTCCTTTGTTGAATGGGATATTACACATGTATTCATTATTTACCTTACAAGCTTCTCCCAACCCAGACACAGCATCTTTCCGTATGTCCTATTACCAGAAATTTACTGGTTTATTTTGTGGCTTAATAGCTCACTTACTTTGATCACTAGGCCCGTGCTGGAGCAGATGTTGTCAGTCCAAGTGACATGATGGATGGTAGGGTAGGAGCAATTAGAAGGGCTCTTGATGCTGAAGGCTTTTATCATGTCTCCATCATGTCTTACACAGCGAAGTAATTTTCATCTTCTATTTCACATGTGTTCTCCCTTTTTGTTTTCTTTTCTTAGACTTGAGTATGTAAATCTAGTTTTAGCTATGTGCTACTTAATTTTCTTAGAATATGTATGCTTGAACCGCTGCCTGTTGTAATAAAAGTGAAATGATATTTAATCCTATATGCTTTACAAAACTATGACTTACAGTGGTTGCAGTGTTATGAGTTTCGATCTCGTAGATAGCATGGAAAAACGAATTATTAGATGTTTCAATCATCCTTCGCCTCTAATATGTTAAAAAAATTGGAAGTTTGTTGTAATGAGCTATTTTTTGCCTATATGATTTGATTACATACAGAACGATGCAGGTAAGTTAGTGTTTGAATAAGATACCTGATGCTGTATTTTCTTTCCATGTGAATCAAATTCTTATTGAATATTGATGAATTTACTTTCAGTCCCTTATCACTTAGAGGGTGAACAATACATTGAATAATATGCGGCATGTCTTTCAACCACTGTAAACCAGTTTTTGTATGTGCAGCCAATTGGCATGAATATGGCTTTTAATTCTGCTGCTGCTGCTCTCTCCTCTCCTTTTCTTTTTTTTTTTTCCCCCAATTCATGAATGGTCCAATTACTCCATGTTCGATACCAGCAATGATTTTCTTGCTTCTTTTAAACAGGTATGCAAGCTCATTTTATGGTCCATTTCGTGAAGCACTAGATTCAAATCCTCGTTTTGGAGACAAAAAGACGTATGCAATTTGTCATATTATCAAGAATTGAGATTTTACTTGCTTTAGGTTCTCACTTAGCAAACTAATCTTGCTTGCTTAACAAAAGTTACCAGATGAATCCAGCAAATTATAGAGAGGCTTTGATCGAAACCCGTGAAGATGAATCTGAAGGAGCTGATATTCTTCTGGTTAGTTGTCTTTTTCTGGATATGTTGTAAAAGAGTTTATATGGTGGTAGAGTCTATCTGGCTAAACCTACTTCTCGATGTACAGGTGAAGCCTGGTCTACCCTATTTGGATATCATAAGACTTCTTAGGGACAATTCTCCCTTACCTATTGCAGCATATCAGGTAATATTAACTAATATTCTTTTTGTCAAATATTATTTTATGTTTCACCTATTTTCTTATACATCCTCACGTATTGCCATTAAATATCAAATTCTTGCATGACTCAAGTCTTACTTTGGAGAATGAGAACAGTTTAGAATGCTTGCTAGGAAGTATAAAAGGATGTCTTTACCACGTGTCAATAAGCGTCTTGTGCCTGATATTGGTGACTAAATACTGCCATGATTTAATAGAAATAGTAATTCAAAATCTTTGACTGATGACTTCTCCATCTTATTTGTCAAGATTGTTTGGTATGATTCCAGTTTTAGGATTTCTAGATTCTTGTATTGTATCATTGTTGCATGCTTGATATCTGATAATTAACAAGGGTGGTGCTTAGAGAAAATGGAGGTTAATAAAACTTTAGTGAATGCAAATTGCAAAAGATGTTGATATATGTATTAATAGATATTGAGGGCCTGCTTGAGAACGAGGTTTGAAAATGTAGTTTTTGACTCCAAAAAAAACTCCCCTCCCCTCATGTGTGTGGATAAGAAACGATTTCAAGTAACTAGAAATTCACATTCAAATGCATTGTTTCTTAAGCTTACCATTATGAGTTCTTCCGGTAATATTTCAATAGGATAATTATGTCTACATAAAGTTTAGGGCTCTTTTCAAATATAGAAAAATGAGCCAAACTATTTACAAATATAGAAAAATTTTGTCGCGATAGAATTCTATCGCTTTCTATCACTCAGATGATAGAATTTATTTACTTGAGCGATAGAAAGCGATAGAATTCTATCGCGGTCTATCACTGATAGACAGTTAAATTTTTCTATATTTGTAAATAGTTTGATATTTTTTCTGTTTATAGTAATTTTCCTAAAGTTTAGATTTACAACTCATTTGAATTGCCATGAAAGTAAGTAATAACAAGTGATTGGAATACATTTACATATGATCTATATGCAGATATGTAATGTTTTAAAATAATTTGACATTTTTGGTTAGGTATCGGGCGAATACTCGATGATCAAGGCCAGTGGGGTTCTCAAAATGATTGATGAAGAAAAGGTGATGATGGAGTCCCTGATGTGTCTCCGACGGGCAGGAGCAGATATAATCCTCACATATTTTGCTCTTCAGGCAGCTAGATGTTTGTGTGGTGAGAGGAGGTGAGAGTTATGTTAATGTGCAGTTGTAGAGAATTTTCGGTCGTCAAAACTTCTAATGGAGAGGCTCTTTTCGCAGTAAATTCTGTAATATTATTTGAATCTGTTTCGTTATTTAATTCAATGCTCAATTTGCCAATATATTAGTTTCATAGGCCACAATCACAATTGATGATATGGACACTTGATTAAACCAAGTGGGTGGTCCATTTATTCATAGTTCGATTATGACTTATAGTTCAAAAAGTAAAAACTATCATATGTTTGAGAATGATTCTAAAATAGATAAAATTATTTTTGTCATTTTTAAAATTATTTAGAAAATGCTTTTAATCATTTAAAATTAAATTTAATGGTTTGAAAAGTGCATTTAGAAGTATAAGATTAGATGTTGAATTGATTTTGAGTGATTAAAATGTATATTTCGGGGTGATTCTAAATATGGCAAAAGTGATTTTAATCATATACATTCAGGTAGGGTGTGATCGACTTTCCTTCACAACATTTTGACCTATGTTTTTTTTGAAAATTTAAATATGACCCTTGAAATATAGTAATTTGAATATGTACAATATAAACATACCGTATGATAAGTAATCTCAAGTTGGATCTAACAACCTCGTTGATGAATAAGACTTTTGGATCTCATACTAAAAAATCCCAAATCAAGATAATCTCAGACTCCTAAGAATAGCTATGACGAATTATTAAACAATTAGCAAAACCATGATCGGAGAAAACTTGTGGCTCTCATCAATTCTTGATCATTGAATCACTCCACAAGCAAGATCAATCAAGTCAAACTTAAATGATTATGAACATACAACCTAAACGTCATAAAATTGCAAAGGAAACATAGCTCAAGGCTAAAAGAAAGCTTAAATGCTCTTTTTACTACATTTTCCAAGTCTTCCTTTTTCAATACAAGTTACATGACATTATACAGTCCTCAAAATAAAACTCTAGATATTCTATGAGGCATTTCATGAGTTGTAACTCTCATAATTTATGATCATTATCAGCCACGATCTAAATATAACATAAAAACACATAAAATGACTTTGGTTGGCTACTGGAGGACGTCGAATTCTCCGATGGATCAAATAAATTTTTGTTCCTTCCTTAACTGTAGTAGTGGAAGTACGGGGTGATTCCACAGAGAACCTTCGTGATTCTAAAATAAAATGTTTACAATCCTAAGGTAACCGCAGGGGGGAGGGGTTTGGTTGAATTTCACTTGCAATTAAAAAGTGCGGGAAGTAAATTGCATGAAAGTAAATGATTGCGAGAAATTATGGTAAAAAAGGCCTAGCTCAGGTTTATTTCAAAGTTTTTCCAAGTAACTTAACCAATCATCGAATTCAAGATTATACTTCTGGCCTGAGCCTAGCCAAATTGATTACAAATGCTAATCAACCGTCCTAATTAACTAATTAGCCAGCATGAGTAGATGAATCTATACTAATCACTTGAACTAATTGCATTAATTTTTAAGGATTACACTAGGATGGACCTCAAACTGGAAATGCGGTCATAAAAGAATCCAATGTGATTTTCCTCTAGGTTGATTAAAGTAATGATCATTAGTGGTTGACTCACAATAAACAAGTTAATCTAACCTATTGCTACTTGGGGATTTAAGGACTCAATCAAGTTTAAATCAATAGCGACCGATCATGCAATCTATAATAGTTCATCAGACAATTCATAGATAAAGTGATCAATAAACAATTCAATCAAGAGAGAAAATCCATAGACAAGAGTATGAAATAATTTGGGATGAAGAACAAATCTCACAAATTAATCTAAAGGGAAAAATCTCTAAATCCAAGCTAGAACTACTTACCTTAGCCAAGAATCATCCTCCTAATCAATAGGGAGAAGTTCCTAAGCATTAGTACAGATCAAAGAGAAAAATAAGATAAGAAATGTGTAGATAAAATCATGTGGCAACTGGATCCTCCAACCTAAAATGACAAACTGATATTTATAAAAATCGTCGGAGCGCCGCAACACTGTAGACCTCTAGTGCAACGTAAATTTCAGCACTACTCAACCTCTTTGAAGCAAGAGATTGAAGCCTCCTCTTCAAGTATTTAGCTTCTTCCACCCGAAAATCAGTCTATTCCAAGAAGATTTCTCACTCAACATTCCAGCACACCTTCAAGAGCGAGAGTTCCTTTGGAGTTATTAGGTTTAGGACCTCCCTACTCCATAAGAGCGTGTGTAGAGAGAGTGGATTGATCCTTGAGAGAGGACAATCCATCCGTAGAGAGCAAAGAAAGTGAGGAACTCATTTGAGAAGGGGTGACACTGTATTTTCTAGCTTTTCTTTCCATTTCTATTTCCATTTTCTTGCTAGTTATTCTTTGCAAATTCATCTTGTACTTATGATTATGAAAGTAATGAAAATGATTCATTCATTCTTTATCATGACCTAAATCCATTAAGGGGTTCAACTATGTGGATGCCCTAAAGATTCATGACTTGAGCAACTGTTAAAGTATCATTCCTCACATTACTTGCACTTTTTCCTTGTTGACTATATGGATAACATTGTTAATTTAAATTGGTCACTTAAGTTAGCAATATAGTGGAGTCCTAATACTGAAAAAGTTAGGTAGTACATGGATTTCACAAGGGAATATGGGTTTAATGCCTAGAAATAGGATCACCATGCAATCTTAGAGATAAGGGGCATCATAGGGTAAAGAATATGTATGTAATTAATCTAAAGTCTTAGCTAACCATAGAAATATAGGATTAGCTTCTTAGGCTCCTAAAGAATCTTAAAATAATATTGGCCCATATGTAAGGCAATGCACCGGTTTGATGTGGCCGCATCACTCAGGTTTTGACGAACTTGGCTTAAACATAGTTGTAACCCTACTTTACCATTATTTGTTTTTAATCTTTTTAAACATCACTCAACTCAACTTATTTTACTACACTTTGGTTACTTTGGGTCACTTGATTATATTGCTTAAGACAAATCTAACTTGATAACTAGTTTCATGGGTTCGACTCTTGGAATCCTCTAAGATTATTACTTTACTGATAGCGTATGCTTGCACTAAGACCACCTTTATCTATAATTCTAGCACTCGTACACTTTTGGTCAATTAGGTGTCATGTTGACTTCTATACTATGTGATGATAATTTATTGTTAAAATATTAGTTTGGTCCAAAACTTTGAGGCCCATTTCATTTTAGACCTTGTACTTTCAAAATTTTAAATTTAGTTCCTACATGTTTAGTAAATCTTAAAATTTGTCTATATTTTTAGTTCAAAGTTGATTTTACCAAACTTGGTAAAGTGAAATATTTATTTTCATTCCAGAAAAGATAATGTGAAATGCTTTAAAAATTTTATACAGAAGGGTATCAATAAACTTATAGTAGGTACCAATTTATATTTTATTAAAATTACAGAGACTAAACAGAACAAGTTCGAAAGTATGAGGACTAAAATGTAATTTATTAATGTACGAGTTGAGTCTTCAAACTTTATGTTTATGTCTAATAAGTCTTTGAACTTTAAAAGATATATATTAAGTCCCTAAATTTTTAATTTTGCATCAAGTAAATTTTTGAGCTTTTAATTTAGTCCTTAATTGGTCTCACATATTCAATATTTTTTAAAATTTACGAATATAGTGGATACATTGTTGAAAGTTTAATTTCTTGCCAATAAAATTTAATTTTATGTCTAATAGATTAGTTAATTTTTTTTAAAAAAAGTTGAACAAGTATGCGATCTATTAGATACAACATTGAAAGATTAGGATTTATTTGATATTTTTAAACTTCAAGGATCTATTAACTATTTTTTAAAAGTTCAGAAATCTATTAGATACAAACATAAAAATCGAGAGACTAAATTTATAATTTAACCATTTTTTTATTGGATAATTAATCTTGGATAGCATAAAGATATGCATTGCTTTTTTTTTTTTTTCTTTTAGAAGAAAATGTATGAATTAATTAATATACAGAATTACAATTCAACTCTTTTTTTTTTTAATAAAAAAGAAAATTTTCTCTCTTAATTTAGGGGAGTTGTTTTGATATCCTTAAAGTGAAGGCCTTATAAAGGATGTTTCTTCTATAATCTATATTTAAAACATTATGGAAAGGTACCATATAATTTCTAAAAGTCTTAAAGAGAAATTAACTAAAATATTAATGGTCAATGATTTTTATTTTTCTCTTAAGAGAGTAAATTAGGGTATGTTATCTGACCTTTTTGTGTACATATACTATAAAACAAACGTTTTACATTGTAATTAGTAAAATTATTTTCGAACCATTTTTTATTAAAAAAAAATACGAATTGTAATTTATTTTGTTTGCTAAAACTTGGTATTAAAAATAAAGGGTTGTTAAAAACCGCAAAGTTTTCTGTCTTTCATAAATAGAAATTCAATAAAAACGGAATTGTATTTTATATTTATATGTTTTATAACAGATTTAGAATTTGAATCTTAATTTAAAGCATATTTATAAACTATAAAACTATTATTAATTAATTTATGAACTTTTTTATGTTAATATTTTTGCATAATTATTATTTTGTTATATTATATAATTATAATACATTACTTAATACATACTTTAATTAAAAAAACAAATTAAATTAATAAACACAAAATATTATATTTTTAAATATTTTTATCCTTATTTAATAAATTCTACATTTTAAAATTTAAAATTTAAAATAAAACAACATTCGAATTACCAACCAAAATAACAACATTAGAATCACTAACTCATAAGTCAATAATCATTTGTTTCCACCCTCCTCCACTTTTCTCCCAGCTATATTATATATGTTCTCAAAAGAAATTTTTTTTTTTTAAAAAAAGAAAAATATCAAACTATTTACAAATATAGAAAATTTTCACTGTCTATTTCCAAATATGAAACTATTTATAAATATAGAAAAACAACAAAATTTCCTATCTTTCACGATAGAAGCCTATTGCGATCTATTGCTAAGTAATAGAAGTCTATCGCGATTTATGGCAGATAGACAATGAAATTATTTTATATTTGTAAATAATTTGATATTTTTTTGATTTATTATAATTTCTCAAAAAAAAAAAAAAAAAACTATGTAGATTTGTCTGATTGTATCAATTTGAACTATAAAATTTTAATTTTATTAATTTTAATTCTAAACTAAAATAAGTGTTATATTTTTAATCTTAGACTTCTAATAAATTTTCACTCCTAAGTATCAAGAAAAAAAATGTGATACATTTAACAAATTAAATAGAACATTAGGGTGTAAAAACATAGGTAAGATATGAAATTGATAAAAAAAAAATTTAGAGAAAAACAATATTAGAGCTAATTTCTTTGTTAGAATTTATGAATTTTGAAAGTATTATTCAATAGTTAAATTATACCTTAGTCAAACTTATTTTTGTGTAAAACTTCAATCTATCGACAAAAATTAGTTTAGGAAGAATTTTACACTGTTTTTTTAAAATAAAAGAATTAGTAGGTGATTGATTGGAATTGAACCAAGAATTGAAATAGATGAAATTGATACAACGGAACAAGTTTAGAATAAAAATTGATTTTTTTTTCTTTACGAGTATAACAATGAATATCGAGACATAAGCTTTTCTAGCCTTTGACATAATTTAATTTGAAAGTTAGAGATTAAACTTGAATACATCACAATTTTTTATTTTAATTTACTTAAGACCTTATACATCATATTAATATAGGAAATAACTTACCATTTTTCCTTTCGAAATTTGGAAAAATATTGAGGAATTAAATTTTGTTCCTAATCACATGTAGTTGTTCTAAATCCATTGAAATGTCTCATCTCAAAAAACTCAAACATCTTACTTTAAAGAAACTAATTATAACATAATTAGAAAAGACTTTGATTACTTCTTGTCTTACAAGCTAAATTTAACATTAATTTATTTTATTATCTTTTAATTTAAAATTTAATCAATAAATTACTTTTTTTTTTATAAAAGAATAATAATAATGAAAAAAGGATTGAAATTGTTATGATTATGGAGAAGTTGGAGGATTCGTATTTCCAAAAGCTGCCCAAAATCTTCGCAACGACTTCGTTAGAAGCAATAAACAAAGTAAAAATGCCGCTTCCAAGATTGACGAATCTCAACCGTTGAAACAAGATCGCCGGTTCTCCGTCGCCGTCGTCGGTAACCATCTTAAGCGGCAACTACTTCCCCGTCTTCCTCTCGGATCTCTGATTATTACGCTTTCTCTTGCTCTGGTTTTGTTTCTCTGTTTCTCTCTCTCTAGAAATGGTTTTGGAGCGGCCATGAAAGCAGAGTTCGAGCTGGAGGTAGAGACGGCGATGGGCGATTGCAAGCGCGTTGTGGTGATGACGGCGGCGAATAATGCCGGTTGCATGTCTAAGAGAAGGAGAATTGCCGGTTCGTCTGAGAGTTTGCGGCCGTCCGTGTCTCGGTCTGACCTCGGCGACCGTTGTTTGTGGTTGGAGAATGCGACGACGTCTCTGTCGCGTTTGGAGAAGAAGAATTCCCTTGGCATTGTTGCTGGAGGTGAGATGAGTGATGGTTTTTCAGAGGATCAGTTTCTGGTTTCTTGTAGCTTCAGTAACGACTGCGGGAAGGTCACTGCCGTGAAGGACACCGTGAAATTCGAAGATCTGGAGGTGAATTTTGAATTCTTGGTTAGGAGTGTACTTTCTTCTTCGCTTGCGACTGGTTTTTTTCTTCTGTTTGTTTAGAATTTGGAATTTAATTTTGAGTTTCTCTGTTTTTGGTTAGCGAAAAAACGGAGAAGAATAAGAGAGTATTATTAAATTTAACCGGTTCATAAATCATGTATTCTAATTTTTTCCGTTGAAATTTAATTTTTAGGTGAATTGTTCTTCATATTACCCGTGACTTTTTCCTGCAAAAATTTTCAGTGATGAACAGTTGATGATTCGTTCGGTCCTTCGTCGTTTTATTGAATTCGATTCTACTCCTTATTACGAATGTTTCTACAAAATGTTTGTTTAGAATTTGCATATATATGTATTTTCGATCGTATTTATTGAGATTTATCTTCAATGCGCCATAGCTGCAGACCAAGAGCTTCGAAACCGTAGAGTCGATTCGTGTTAACGGCATTCAAAGGTTCATTGCACTTTACTATCTTCCTTTAATTTCCCCTAAACGAAACGGATTACGAAACGCTTCGTCTTCTCTTTCGCCATTTCTCACTCTGTTTAATGTTTAATTTCTGTTTCTTGCTTTTCCCCTAAATTTAGTTTTGATACTAATAATTTGAGAAATCTCTTCAGAGAAAGCACTCCAACGAGCAATCTCTTGGGAGATTCCGACAAAATGGACTCTCCGGCGACGATCTTCTTGACTGAAAAACATAAGCCAACGGATCGTCCGATGAAGACGCCACCGATCTCTGAGATTGAAGACTTCTTCGCCGAGGCTGAGAAGTACGAGCAGAAGCGTTTCTCGGAGAAGTGAGTACAGTTTTTCCACGCGCATGATAACCATCTCTGATTCGGCGCACTTTAGCGGAACCTGAACCTAACTAACTTTCAACTTCTTCTTCTTCCTGCTTTGAATAATTGAATGATTTGTTTTCCTCTTTCGTCTTGTACAGGTACAACTTCGATATAGTGATGGATGTACCGTTAGAAGGCCGATACCAATGGATTCGTCTGAAGCCATGA ATGGCTTCAACAGTTCTTAATGCGCCTAATAGCGTTCGAAGAATTAATGGTTTGGATTGCGGCTCCTATGTTGGGCTAATACGATCGCCAAATTCAAATTTCCTTTGCGTCAGAACCTCGGCCAATGTGCGTTCTCCGCGTCTTTTCGTTGTGAGAGCCTCAGATGAGCGCGATGCACATATGAAGAAACTTGGACGGAGTGATGCAGAGTGCGAAGCTGCTGTTGTGGCTGGCAACGTTCCAGAAGCGCCTCCTGTGCCGCCGAAACCAGCATCGCCAGCTGGAACTCCTGTGGTTCCTTTGCTGCCTCTCAGCCGTCGTCCACGTCGTAATCGGAGGTCTCCAGCATTGAGAGCATCATTTCAGGAGACCAACTTATCACCTTCCAATTTTGTATATCCACTATTCATTCATGAAGGTGAGGAGGACACACCAATTGGAGCTATGCCTGGATGTTATAGACTTGGATGGAGACATGGACTTTTGGAAGAGGTTTCAAAAGCTCGGGATGTTGGTGTCAATTCTGTTGTGTTATTCCCTAAAGTTCCGGATGCATTGAAGACTCCAACAGGGGACGAAGCTTATAATGATAATGGTTTAGTGCCTCGAACAATTCGATTGCTTAAGGACAAATACCCTGATCTTGTTATTTACACTGATGTTGCTTTGGATCCGTACTCTTCTGATGGCCATGATGGTATAGTTAGAGAGGATGGAGTTATAATGAATGATGAGACTGTACATCAATTATGCAAACAAGCTGTCTCCCAGGCCCGTGCTGGAGCAGATGTTGTCAGTCCAAGTGACATGATGGATGGTAGGGTAGGAGCAATTAGAAGGGCTCTTGATGCTGAAGGCTTTTATCATGTCTCCATCATGTCTTACACAGCGAAGTATGCAAGCTCATTTTATGGTCCATTTCGTGAAGCACTAGATTCAAATCCTCGTTTTGGAGACAAAAAGACTTACCAGATGAATCCAGCAAATTATAGAGAGGCTTTGATCGAAACCCGTGAAGATGAATCTGAAGGAGCTGATATTCTTCTGGTGAAGCCTGGTCTACCCTATTTGGATATCATAAGACTTCTTAGGGACAATTCTCCCTTACCTATTGCAGCATATCAGGTATCGGGCGAATACTCGATGATCAAGGCCAGTGGGGTTCTCAAAATGATTGATGAAGAAAAGGTGATGATGGAGTCCCTGATGTGTCTCCGACGGGCAGGAGCAGATATAATCCTCACATATTTTGCTCTTCAGGCAGCTAGATGTTTGTGTGGTGAGAGGAGAAGCAATAAACAAAGTAAAAATGCCGCTTCCAAGATTGACGAATCTCAACCGTTGAAACAAGATCGCCGGTTCTCCGTCGCCGTCGTCGGTAACCATCTTAAGCGGCAACTACTTCCCCGTCTTCCTCTCGGATCTCTGATTATTACGCTTTCTCTTGCTCTGGTTTTGTTTCTCTGTTTCTCTCTCTCTAGAAATGGTTTTGGAGCGGCCATGAAAGCAGAGTTCGAGCTGGAGGTAGAGACGGCGATGGGCGATTGCAAGCGCGTTGTGGTGATGACGGCGGCGAATAATGCCGGTTGCATGTCTAAGAGAAGGAGAATTGCCGGTTCGTCTGAGAGTTTGCGGCCGTCCGTGTCTCGGTCTGACCTCGGCGACCGTTGTTTGTGGTTGGAGAATGCGACGACGTCTCTGTCGCGTTTGGAGAAGAAGAATTCCCTTGGCATTGTTGCTGGAGGTGAGATGAGTGATGGTTTTTCAGAGGATCAGTTTCTGGTTTCTTGTAGCTTCAGTAACGACTGCGGGAAGGTCACTGCCGTGAAGGACACCGTGAAATTCGAAGATCTGGAGCTGCAGACCAAGAGCTTCGAAACCGTAGAGTCGATTCGTGTTAACGGCATTCAAAGAGAAAGCACTCCAACGAGCAATCTCTTGGGAGATTCCGACAAAATGGACTCTCCGGCGACGATCTTCTTGACTGAAAAACATAAGCCAACGGATCGTCCGATGAAGACGCCACCGATCTCTGAGATTGAAGACTTCTTCGCCGAGGCTGAGAAGTACGAGCAGAAGCGTTTCTCGGAGAAGTACAACTTCGATATAGTGATGGATGTACCGTTAGAAGGCCGATACCAATGGATTCGTCTGAAGCCATGA ATGGCTTCAACAGTTCTTAATGCGCCTAATAGCGTTCGAAGAATTAATGGTTTGGATTGCGGCTCCTATGTTGGGCTAATACGATCGCCAAATTCAAATTTCCTTTGCGTCAGAACCTCGGCCAATGTGCGTTCTCCGCGTCTTTTCGTTGTGAGAGCCTCAGATGAGCGCGATGCACATATGAAGAAACTTGGACGGAGTGATGCAGAGTGCGAAGCTGCTGTTGTGGCTGGCAACGTTCCAGAAGCGCCTCCTGTGCCGCCGAAACCAGCATCGCCAGCTGGAACTCCTGTGGTTCCTTTGCTGCCTCTCAGCCGTCGTCCACGTCGTAATCGGAGGTCTCCAGCATTGAGAGCATCATTTCAGGAGACCAACTTATCACCTTCCAATTTTGTATATCCACTATTCATTCATGAAGGTGAGGAGGACACACCAATTGGAGCTATGCCTGGATGTTATAGACTTGGATGGAGACATGGACTTTTGGAAGAGGTTTCAAAAGCTCGGGATGTTGGTGTCAATTCTGTTGTGTTATTCCCTAAAGTTCCGGATGCATTGAAGACTCCAACAGGGGACGAAGCTTATAATGATAATGGTTTAGTGCCTCGAACAATTCGATTGCTTAAGGACAAATACCCTGATCTTGTTATTTACACTGATGTTGCTTTGGATCCGTACTCTTCTGATGGCCATGATGGTATAGTTAGAGAGGATGGAGTTATAATGAATGATGAGACTGTACATCAATTATGCAAACAAGCTGTCTCCCAGGCCCGTGCTGGAGCAGATGTTGTCAGTCCAAGTGACATGATGGATGGTAGGGTAGGAGCAATTAGAAGGGCTCTTGATGCTGAAGGCTTTTATCATGTCTCCATCATGTCTTACACAGCGAAGTATGCAAGCTCATTTTATGGTCCATTTCGTGAAGCACTAGATTCAAATCCTCGTTTTGGAGACAAAAAGACTTACCAGATGAATCCAGCAAATTATAGAGAGGCTTTGATCGAAACCCGTGAAGATGAATCTGAAGGAGCTGATATTCTTCTGGTGAAGCCTGGTCTACCCTATTTGGATATCATAAGACTTCTTAGGGACAATTCTCCCTTACCTATTGCAGCATATCAGGTATCGGGCGAATACTCGATGATCAAGGCCAGTGGGGTTCTCAAAATGATTGATGAAGAAAAGGTGATGATGGAGTCCCTGATGTGTCTCCGACGGGCAGGAGCAGATATAATCCTCACATATTTTGCTCTTCAGGCAGCTAGATGTTTGTGTGGTGAGAGGAGAAGCAATAAACAAAGTAAAAATGCCGCTTCCAAGATTGACGAATCTCAACCGTTGAAACAAGATCGCCGGTTCTCCGTCGCCGTCGTCGGTAACCATCTTAAGCGGCAACTACTTCCCCGTCTTCCTCTCGGATCTCTGATTATTACGCTTTCTCTTGCTCTGGTTTTGTTTCTCTGTTTCTCTCTCTCTAGAAATGGTTTTGGAGCGGCCATGAAAGCAGAGTTCGAGCTGGAGGTAGAGACGGCGATGGGCGATTGCAAGCGCGTTGTGGTGATGACGGCGGCGAATAATGCCGGTTGCATGTCTAAGAGAAGGAGAATTGCCGGTTCGTCTGAGAGTTTGCGGCCGTCCGTGTCTCGGTCTGACCTCGGCGACCGTTGTTTGTGGTTGGAGAATGCGACGACGTCTCTGTCGCGTTTGGAGAAGAAGAATTCCCTTGGCATTGTTGCTGGAGGTGAGATGAGTGATGGTTTTTCAGAGGATCAGTTTCTGGTTTCTTGTAGCTTCAGTAACGACTGCGGGAAGGTCACTGCCGTGAAGGACACCGTGAAATTCGAAGATCTGGAGCTGCAGACCAAGAGCTTCGAAACCGTAGAGTCGATTCGTGTTAACGGCATTCAAAGAGAAAGCACTCCAACGAGCAATCTCTTGGGAGATTCCGACAAAATGGACTCTCCGGCGACGATCTTCTTGACTGAAAAACATAAGCCAACGGATCGTCCGATGAAGACGCCACCGATCTCTGAGATTGAAGACTTCTTCGCCGAGGCTGAGAAGTACGAGCAGAAGCGTTTCTCGGAGAAGTACAACTTCGATATAGTGATGGATGTACCGTTAGAAGGCCGATACCAATGGATTCGTCTGAAGCCATGA MASTVLNAPNSVRRINGLDCGSYVGLIRSPNSNFLCVRTSANVRSPRLFVVRASDERDAHMKKLGRSDAECEAAVVAGNVPEAPPVPPKPASPAGTPVVPLLPLSRRPRRNRRSPALRASFQETNLSPSNFVYPLFIHEGEEDTPIGAMPGCYRLGWRHGLLEEVSKARDVGVNSVVLFPKVPDALKTPTGDEAYNDNGLVPRTIRLLKDKYPDLVIYTDVALDPYSSDGHDGIVREDGVIMNDETVHQLCKQAVSQARAGADVVSPSDMMDGRVGAIRRALDAEGFYHVSIMSYTAKYASSFYGPFREALDSNPRFGDKKTYQMNPANYREALIETREDESEGADILLVKPGLPYLDIIRLLRDNSPLPIAAYQVSGEYSMIKASGVLKMIDEEKVMMESLMCLRRAGADIILTYFALQAARCLCGERRSNKQSKNAASKIDESQPLKQDRRFSVAVVGNHLKRQLLPRLPLGSLIITLSLALVLFLCFSLSRNGFGAAMKAEFELEVETAMGDCKRVVVMTAANNAGCMSKRRRIAGSSESLRPSVSRSDLGDRCLWLENATTSLSRLEKKNSLGIVAGGEMSDGFSEDQFLVSCSFSNDCGKVTAVKDTVKFEDLELQTKSFETVESIRVNGIQRESTPTSNLLGDSDKMDSPATIFLTEKHKPTDRPMKTPPISEIEDFFAEAEKYEQKRFSEKYNFDIVMDVPLEGRYQWIRLKP Homology
BLAST of HG10018596.1 vs. NCBI nr
Match: XP_038886111.1 (delta-aminolevulinic acid dehydratase, chloroplastic [Benincasa hispida]) HSP 1 Score: 850.5 bits (2196), Expect = 1.0e-242 Identity = 423/430 (98.37%), Postives = 428/430 (99.53%), Query Frame = 0
BLAST of HG10018596.1 vs. NCBI nr
Match: XP_008441165.1 (PREDICTED: delta-aminolevulinic acid dehydratase, chloroplastic [Cucumis melo] >XP_008441166.1 PREDICTED: delta-aminolevulinic acid dehydratase, chloroplastic [Cucumis melo] >XP_008441167.1 PREDICTED: delta-aminolevulinic acid dehydratase, chloroplastic [Cucumis melo] >KAA0037059.1 delta-aminolevulinic acid dehydratase [Cucumis melo var. makuwa] >TYK06590.1 delta-aminolevulinic acid dehydratase [Cucumis melo var. makuwa]) HSP 1 Score: 848.2 bits (2190), Expect = 5.2e-242 Identity = 423/430 (98.37%), Postives = 427/430 (99.30%), Query Frame = 0
BLAST of HG10018596.1 vs. NCBI nr
Match: XP_004138665.1 (delta-aminolevulinic acid dehydratase, chloroplastic [Cucumis sativus] >XP_031737088.1 delta-aminolevulinic acid dehydratase, chloroplastic [Cucumis sativus] >KGN63283.2 hypothetical protein Csa_022606 [Cucumis sativus]) HSP 1 Score: 842.0 bits (2174), Expect = 3.7e-240 Identity = 422/430 (98.14%), Postives = 426/430 (99.07%), Query Frame = 0
BLAST of HG10018596.1 vs. NCBI nr
Match: XP_022141587.1 (delta-aminolevulinic acid dehydratase, chloroplastic [Momordica charantia] >XP_022141588.1 delta-aminolevulinic acid dehydratase, chloroplastic [Momordica charantia]) HSP 1 Score: 832.8 bits (2150), Expect = 2.3e-237 Identity = 416/430 (96.74%), Postives = 422/430 (98.14%), Query Frame = 0
BLAST of HG10018596.1 vs. NCBI nr
Match: XP_022955846.1 (delta-aminolevulinic acid dehydratase, chloroplastic [Cucurbita moschata] >KAG7032806.1 Delta-aminolevulinic acid dehydratase 1, chloroplastic [Cucurbita argyrosperma subsp. argyrosperma]) HSP 1 Score: 830.5 bits (2144), Expect = 1.1e-236 Identity = 416/430 (96.74%), Postives = 421/430 (97.91%), Query Frame = 0
BLAST of HG10018596.1 vs. ExPASy Swiss-Prot
Match: Q9SFH9 (Delta-aminolevulinic acid dehydratase 1, chloroplastic OS=Arabidopsis thaliana OX=3702 GN=HEMB1 PE=2 SV=1) HSP 1 Score: 706.4 bits (1822), Expect = 3.2e-202 Identity = 358/431 (83.06%), Postives = 381/431 (88.40%), Query Frame = 0
BLAST of HG10018596.1 vs. ExPASy Swiss-Prot
Match: P43210 (Delta-aminolevulinic acid dehydratase, chloroplastic OS=Glycine max OX=3847 GN=HEMB PE=2 SV=1) HSP 1 Score: 689.9 bits (1779), Expect = 3.1e-197 Identity = 355/432 (82.18%), Postives = 383/432 (88.66%), Query Frame = 0
BLAST of HG10018596.1 vs. ExPASy Swiss-Prot
Match: P30124 (Delta-aminolevulinic acid dehydratase, chloroplastic (Fragment) OS=Pisum sativum OX=3888 GN=HEMB PE=1 SV=1) HSP 1 Score: 685.6 bits (1768), Expect = 5.9e-196 Identity = 345/399 (86.47%), Postives = 364/399 (91.23%), Query Frame = 0
BLAST of HG10018596.1 vs. ExPASy Swiss-Prot
Match: P24493 (Delta-aminolevulinic acid dehydratase, chloroplastic OS=Spinacia oleracea OX=3562 GN=HEMB PE=1 SV=2) HSP 1 Score: 652.9 bits (1683), Expect = 4.2e-186 Identity = 337/430 (78.37%), Postives = 366/430 (85.12%), Query Frame = 0
BLAST of HG10018596.1 vs. ExPASy Swiss-Prot
Match: Q5Z8V9 (Delta-aminolevulinic acid dehydratase, chloroplastic OS=Oryza sativa subsp. japonica OX=39947 GN=HEMB PE=2 SV=1) HSP 1 Score: 625.5 bits (1612), Expect = 7.2e-178 Identity = 323/429 (75.29%), Postives = 353/429 (82.28%), Query Frame = 0
BLAST of HG10018596.1 vs. ExPASy TrEMBL
Match: A0A1S3B2C1 (Delta-aminolevulinic acid dehydratase OS=Cucumis melo OX=3656 GN=LOC103485385 PE=3 SV=1) HSP 1 Score: 848.2 bits (2190), Expect = 2.5e-242 Identity = 423/430 (98.37%), Postives = 427/430 (99.30%), Query Frame = 0
BLAST of HG10018596.1 vs. ExPASy TrEMBL
Match: A0A5D3C5H5 (Delta-aminolevulinic acid dehydratase OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold453G00580 PE=3 SV=1) HSP 1 Score: 848.2 bits (2190), Expect = 2.5e-242 Identity = 423/430 (98.37%), Postives = 427/430 (99.30%), Query Frame = 0
BLAST of HG10018596.1 vs. ExPASy TrEMBL
Match: A0A6J1CKY2 (Delta-aminolevulinic acid dehydratase OS=Momordica charantia OX=3673 GN=LOC111011917 PE=3 SV=1) HSP 1 Score: 832.8 bits (2150), Expect = 1.1e-237 Identity = 416/430 (96.74%), Postives = 422/430 (98.14%), Query Frame = 0
BLAST of HG10018596.1 vs. ExPASy TrEMBL
Match: A0A6J1GUZ1 (Delta-aminolevulinic acid dehydratase OS=Cucurbita moschata OX=3662 GN=LOC111457708 PE=3 SV=1) HSP 1 Score: 830.5 bits (2144), Expect = 5.4e-237 Identity = 416/430 (96.74%), Postives = 421/430 (97.91%), Query Frame = 0
BLAST of HG10018596.1 vs. ExPASy TrEMBL
Match: A0A6J1JQZ9 (Delta-aminolevulinic acid dehydratase OS=Cucurbita maxima OX=3661 GN=LOC111487051 PE=3 SV=1) HSP 1 Score: 825.1 bits (2130), Expect = 2.3e-235 Identity = 414/430 (96.28%), Postives = 420/430 (97.67%), Query Frame = 0
BLAST of HG10018596.1 vs. TAIR 10
Match: AT1G69740.1 (Aldolase superfamily protein ) HSP 1 Score: 706.4 bits (1822), Expect = 2.3e-203 Identity = 358/431 (83.06%), Postives = 381/431 (88.40%), Query Frame = 0
BLAST of HG10018596.1 vs. TAIR 10
Match: AT1G69740.2 (Aldolase superfamily protein ) HSP 1 Score: 706.4 bits (1822), Expect = 2.3e-203 Identity = 358/431 (83.06%), Postives = 381/431 (88.40%), Query Frame = 0
BLAST of HG10018596.1 vs. TAIR 10
Match: AT1G44318.1 (Aldolase superfamily protein ) HSP 1 Score: 502.3 bits (1292), Expect = 6.5e-142 Identity = 269/430 (62.56%), Postives = 321/430 (74.65%), Query Frame = 0
BLAST of HG10018596.1 vs. TAIR 10
Match: AT1G49620.1 (Cyclin-dependent kinase inhibitor family protein ) HSP 1 Score: 100.1 bits (248), Expect = 7.5e-21 Identity = 66/186 (35.48%), Postives = 101/186 (54.30%), Query Frame = 0
BLAST of HG10018596.1 vs. TAIR 10
Match: AT3G19150.1 (KIP-related protein 6 ) HSP 1 Score: 72.0 bits (175), Expect = 2.2e-12 Identity = 66/212 (31.13%), Postives = 115/212 (54.25%), 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
This mRNA is a part of the following gene feature(s):
The following CDS feature(s) are a part of this mRNA:
The following polypeptide feature(s) derives from this mRNA:
GO Annotation
GO Assignments
This mRNA is annotated with the following GO terms.
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