HG10006342 (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.ATGATTATAACGTTGAATTGGTATGTACAGGCAGTTATTGAGGCAAATATTATCCTTCCTCTTGTTCATCTCCTCCAACATGCAGAATTTGACATCAAGAAGGAGGCTGGGTGGGCTATTTCCAATGCCACCTCGGGAGGATCTCATCAGCAGATTCAGTAAGAAATAGTTTACTAGTTCTTGGCGCTTTATGATTTGCACTCCTGTATAAGCTATATGTGCCTGCTCTGAAAAACACAGCTTCCATTTAGAAGAATGAAAGAATACAATCAACTTAGAAACTTTGAAAAAACCTAGACTATGACACGAAAAGAAATAATTGGTCTAAGGCATTAGTAACTTCTCTTAAAAGTTGTGAGCTCAAATCTCCACCATTTGTTTTATTAGGTTTTTTGTTTGGTCTGGTTTTACGCGCCTTGGGCTTTCTTGGTATTGTTGGGGGTGTAGTGTACATAGCTGTGGTTGTTTTTTACTAAGAGTGTTCCAACATAGCCCCAATTCCTCTGAATACAGTCAACAGTGTCAATCATTCCATATAAGAAGTGCCAAGGAAGAAATTTGACTTTCTTGAAAGTCTTAACCTTCCACAGCAAGGAGAATAAAGTGTACCTGGAATGAGGATTAGCGGCCTTATGCCAGTTACTAATGTTAAATTGTTGATGTGCGCACCATAGAGTATATATTCTTTGGATCAAAAAATCATTTGAACTACTACAATGACTAAATTTCTTTTTGGCTTGCTCTTTTTTAAATATTTAGCAAGATATATTGAATTTCAGCGGTTCGTGGCCTAGTATATTAGGTTACACATTTCAAAAATAACATGCTAGGCTTATTTTTTTAGCTGTATTTTTGCTGGACAAAGCTGTGGATTTAGCACAATCATTATTTGATGCAGATTTCTAGTAACTCAAGGTTGCATCAAACCGCTCTGTGACCTTCTAACCTGTCCGGATCCGAGGATCGTGACAGTGTGTCTGGAGGGGCTTGATAACATACTCAAGGTTGGGGAGGCCGACAAGGACATGGGAATGAATGGAGGAATCAACATCTATGCACAAGCCATCGATGAGTGTGAAGGACTCGATAAGATTGAAAACTTGCAGAGTCACGACAACAACGAAATCTACGAGAAGGCGGTGAAGATGTTGGAGAGATACTGGGCAGAAGAAGACGAAGAGCAAGAGCAGAACCCACAGCAGAATGGAGATGTGAATCAACATGGGTTTGCATTTGGTGCAAACCAGCCAAATGTTCCTCCTGGTGGGTTCAAGTTTGGGTGAAATGGGTAGGTTTGGAAAGTGTTATATCAAAAGAATTGTAGGTCCCTTGGTCTTGTTTCTTTCTTGATTGGTTGGTGTAGTGAAGGGTTCAACTTTTATGCTGGTTTAGCTTGTTTGGTTCACAAGGGTCAGGGTTTTTGATCTGGTCCATGGTTGTTACTTCTCTGGAGTTTTGCCCTTATTTTTTTGGTCAGCCAAGCCTTATCTATGTCAAGCCTTTTTCTTTCTTTTTAGTACTATATATATATATATATATATTGCTTTTTTCAGAATCCAAAACTTAACTTTGTATTTACATAGAACATATATACATATTGGTCTGCTCTGCCTTTGGTTTCTACTTTATGCCAAATCAAAATCCTCATTTGGCTATAAAACAACACTATATTGCCACAGGTTCGATTAACATGTGTTCTTAGCTGCACCCATATCTGAGAAAATTGACAAAATGATTGTTATTTTTGAAGGGAGGCCTTCTCATAAAGATATTAAAATGATTTGGGTGATAATATAGGTAATAATTTAGGTTCCGTTTTGTAACCATTTCGTTTTTTGTTTTTGTTTTTGAAAATTAAGCTTATAGACACTATTTTTACCCTCAAATTTATTCCTTTGTTATCAATTTTTTACTAATGGTTTAAAAAACCAAACTAAAAAAAGTAGCTTTTAAAAACTTATTTTTGTTTTTGGAATTTGGTAAAAAATTCAATTATTGTACTTAAGAGATGCAAATCAATGTAAGAAATGAGGAGACAATATGCTTAATTTTCAAACACAAAAACAAAAAACGAAATTGTTACCAAATAGAGTTTTAGTCTTTGAATTTTAGTTGATAACAATTTAGTCTCCGTGTACATGAAATATCTCTACAAAAATAAGTGTTAACTTTTATTATGTAATGACTTTTGGCTATTATAGTTTATAAAAAAAATGATTATTTATTAGTTTATCCATTCACAATAAAGATTAAATCGTTATAAACTGTGTAAAGTACATGAATTAAATTGTTACTTATTAAAGTTCAAACATCGAATTGTTGTATTATTTAAAGTATGGAGACTAAATTGTTACCAACTAACGTTTATAGATTAAATTGTTACTTTTGTAATTGTAAAAGTTTAGGAACCAAAAGTCTTTTTTAACGAAAAAAATATTGATACTTTTACTTATAAAGTTGAAGATTCAATTATCTACCTTCAATGATTATTGAACTAAAAAAAGTTATGCAAATATTTCATGTTTTTTTTGTAAATATATAAATAAAAAACTACATGAAAAAAGAAGATGAGTTCTTGCACTAATTTTTATTTATTTATTATTATTTACATTCAATCGTTGATGAGAGGACTAATTCATGCTATGAAATGCATGAAATTAGGCCTTGATTTTAGTATTTTAATGTGAAAAATGAACTATTGCATGAATGTTATCCCAACTTTGGTCTTAATATGTTTAAATAAGCTTAATGAGGGTTAGTTATGCGTAAAAGATGATTTTTGCGGATTTGGTGCAGATCTGGTACGTTTTTTACATGTTTCTGGCTGTTTTTGTTGATTTTCTATTTGATGTGTCTAGAGTAGTAAGTGATGTACCAGTCCTCTCCGCCACATAAGATGTGCTATAACCGCATCAGAAGTGATGCGCCCACATTACTGAGCCTAGTTTTTCCAGATTCGCGTCCAGTCAATTATGGTTGCTATTTTCTCGGTCAAATTTGTTATTCTAACGCCTAAAAAGCTGGGAAATCGTTCAGCACATGATTTTAGGTCATATCTCAACCACCTTGGCCTATAAAGGAGGAGAACCCTTCTAATTGAGGAGAACTCACCGATGCCGCAACCATCACTTCTATTCTCAATCTCATTGTCAATGTTCCAGCACCTTGGGGATTCTCTTTGAAGTTCAAGCCAGTAGTCTTAAGAACAAAAGTTCCTATGAGGCGTAGCGGCTCTAGGATTACTCTTCCACATAAGTGTGCGTTGAGGCAAGATTCTTTCTTGAAAAAGAAGGAATCGTCCTAGGGAAAGACTTGTACTTGAGGATTTTCCCAAGTTCACTTGAGTTGTATCTATTTTCCAGCTTTACTGTTTTTCTTGTTATTTTCCATTTTACATTCTACCAATCAACGTTATATTGTAGCTATGGTTTATGATCTAATAAAAATGATTATTTTATCAAAACCCATGAGCTAAATATTTTTAGGGATTTAACAATGTGAAAGCCTTAGGGTTGTTATGACTTAGGTTATGTAATGCTCACACCACTTTGTGTAATCACATTCTCTTTGTTGATTTTAAAAGAAAAAAATCGGTAAGTTAAACTAGCCATTTGATTTAACGATCTAGCGGAGCTTTAATGCTGAGAAGGTTAGGGTTTAAGCGGATTTCACAAAGCGATATGAGGCTAAGAGCCTAGACATAGGATGATCATGTTGCCTTAGAAATAAGGGACACCATAGAATAAAGGAAATGAACTTGATTTAATCTAAGATCCAGCTAATCATGGAAACATTAGGCATTAGCTGCTTAGAACTCCTAAAGGAACTTGATACAAGATCGAATAGGTGTAATTTCCTGTCCATGTGTAAATTATTGTTTGGTGTGATGCGGTCACATCACTTAAGGCATAACACCCGAATGGTCATAGAATTGTTACCCCTGTTTGATTCTCACTGATAGTTGTTTTTATGTTTCTTTTCACCAAAATTCTAAAACTTTCTCTTTGGTTACCTCAGTTACATTGGTTTACAGTCATAAGAATTTTAACTCAATCTAGTCATGTGGGATTCGATACTTGGAATACTCCAAGTTATTACTTCATCGATCGTGTATGCTTGCACGTAGACCTACTTATTCTATATTTTCTATTATCTTTATCATTCATACACGTTTGGTCGATCAAAGACCAACCGTAGCATTGATTTTTGAGAAGACAATAGGTGTATTCTTCTCTAAAATAAATTAAAATAAATACTGTTATATATCACTATTTTTTTTAATTATATAGTAGATATTATTATTTTTTTAGCAAGACATTCAAATTTAAATTATACTAAAAAATTTATATATATATGATTTTTTTAAAAAAATAGGAAAATAAGGGAAATTATTTACACAAAATAGCAAAATTTTTAGATAGTTGTGATAGAAACTGATAGAAGTCTATCAGGGTCTATGATAGAAGTCTATCAGGGTCTATGATAGAAGTCTATCAGGGTCTATGATAGAAGTCTATTAGGGTCTATCAGTGATAAAAATGATAGAAATTTATCATCGATAGATGTTGATAGAAGTCTATCAATGTCTGTCAATGTCTATCAGTATTTGTTTTTGCTATTTTCTGTAAATAGTTTGACATTTTTTCTATATATGAAAATTTTCCTATATTAAATGACAAAACTGTTGGAAATATTTTCAAATTAGCAAAATGTTACTGTCTATCACTAATAGATTGTGATAAATGATAATAGTCTATTAGAGTCTATCACTGTCTATCACTGATAGACATTGATATTTTGCTATATTTATAAATATTTTGGTTCATTTTGCTATATTTTAAAACAATCCTTTTTGTAGTACTTTGGAAATAAAATTTTCATAATATAAATTGAAATCAAGTTATTAATCTTAATTTAATATATGAAAATAATTAAATGAAAATTTTACATATTAATATCTTACTTATTTTTAGAATAAAAATTTAAATAAATGATCTGATTAACCTAAAACAAACTCAAAACTTACTACTCAAACAATTGAGTTAAGACTAGAAAGAGTTTCAACCCAACTCGACCCAACTTACGAACACCCATAATTACAGTATCAAAACATTCTAAAATATTTGCTACAATTATCTAAAGACATCATTTGTAATTTTGGGCATTTAAAGATTTCTACTTGTAAAAAAAATAAATGGTAAGAATAGTTGAAGAGTTGTTTTCAAATATAGAAAAATGAGTAAAACTCTTTATAATTCTACATTCATTAATAATTTGATATTTTTTCTATTTATACTAATCTGTGGTAATTTTTAATCCTTTACGAGAGACTTTCGTTACAAGGTGGAGGCCGGGGCCGCGACTTGTGCTCTGAGGAAACGCTCACTCAAAAGGCGCCGTGTTCTCAGTGTTCGTGTTGTAAGCGAACAATTGGAAGTGGGTCTGAGACCTAGAAATTAGCTCCCAAAGATCAATAACTCAAAAGGGTAGCTTCAGTTTCCATTTCCCAAATTGCAGGGAGCAGAAAGATGCAATCTTGTTCATAATCTGAAGCTAAGTTGTTAGAATAAGACAGCCAGCAATGCAGACTCTAGTTCAGAAACTACTTCCAAGAACAACGTTCAAGCAGGTGCGGTTTTGTGAATCTTTTTTGTACACCAATTGCAATGAGTTATCTATTGTTGCTTTGTTGAATTGAGTTCTTCTGTATATGTATGTAATAAACTAGTTTGCATTCATTTCTTGAGTTGAAGTGCTTGTGATTCTTGAAGTTGTCTTCTTCTTTCCAGCAATGAGCTTCTTTCCAATATGATTGTAGATGTTCTTTCATATAACCGTGTTGGTTTGGTTGGAATTGAAATCTTTTAGTTGCAGAATTTGTTGCAAAGATTTAGGCTGAACTCTCTCCCCGATCAAAGATTGTGGTGGGTCTCTTTTCAAGAACCTATCAAGAACATCTCAAGAGCCTCTTCCAGGCTTAACAATCAGTTGTTCAAGTGGAAGCAAAGCTTCAAAGAGGATCAAATCCTTCCTTCTGTTAGACTTTAGCCTTCTTTGGATTCAATACTTTGAACCTTTCTCCCACCTGGTGCATATTTTTAGTAATTCTCTGGAGGATTAGTGGGATCTCTTCTTTTATTGATCCAAGGTATATAACTAGTTTAAGTTGTTTGATAGCTTCAATACGATTACGAGCTGCTCTCTTTTTCAAATTAGTAGAGACTAGAGCCTCCTTTCAAATTCCTTTTTGGTTAGATTCTTAGAGACAAGCTTGAAATTGTTCTTTGATGTGGTGAAGGCTCTTTTTTGGGAGATTTGGTGGAATGAAGTCTTAGAATTTTGAAAGATAAGTTAAAAGAAGATGGTGGCCAATTGGGAAATCTTCTCCCTTTATTATTATTATTATTATTATTATTTTGTATGAGTTGTGTTTTCTTCAGCTTTTTATGATGAAAATTCCTCCCCATTTGAACACATCCCTTTTCAAGTGCTGAAAGAAAAGAAACTGCACCTTCTTGTTTACTTCAGAATGTGTTGAATCATTGATGTCGTTGTATTTTGGTTTGTAGGTTGTTGCTTTGCGGGGATATTGTACTGATAAGATACTTGACATTGGACAGCCTACTGCTGCTTCTCATCCAGAGGTCTGATTCGACATGAAGTACTGAGGCGATGCACTAGGCATGCCTGTATTATGGTTTTGTTTAATACTTAAATGGTAACATTTGCTAAAGTTCTAGAAACATATTCATTTAGCTGCTGAACCTTGTAGTTGATGAAAGAAGAGGAAATTACCCCTGGAATAACTGCTGAGGAATACATTACGAGAAGAAAAAGGTTGCTGGAGCTTCTACCAGAGAATAGTTTGGCCATTATTGCAGCTGCGCCAGTGAAAATGATGAGTGATGTGGTGCCTTACGAATTTCGACAAGATTCTAATTACTTATATGTCACTGGATGCGTACAACCCGGTGGTTTGGCAGTTCTGAGTCATGACTTTGGATTGTGCATGTTCATGCCTGAAACAAAGCCTTATGTATGTCTATTCTTATTCATTTGATAAAATTTTACTCTTTGCCCTAACAATTGAGGTTCTTAGGCAGCAATCACTTTTGAAGTGGTTGAATATTAAATTAAGGAACACAATTAAGTTTATAACCAAATATTATTTCTTTCATCTCTCTTTTAATATTTCATGTAACCATATTCTTGTAGATGGAAATGAATTGTCAAAAATTACCAAACCAAATATCCTCTTGAAATTAGGTTTGCTCCAATATGTAAAACAAACTTGACAGATGGAAGGAAAAAACTGAGACCATTGAGAAAACGTATTTCCATGGACTGTGATTAAGAACTCTTTGAACCAAGATGGGAACCATCCACTATGAAGCAAAACACATATATTTTTACTAGCTGACACGCAGAATAAAGCTATCTTTAGGAATTCACTAGAGTGACCAAACAAGCTCTTTTTTTTTTTAAAGAAACAACAAACTTGCCAATCGTTCCAATTTTATCAGATGTCCCGAAGGGATTGACAACAAATTTTTCAATGAACCAGAGCTTGTTGGATCAACAAGTATTGCAGTGAAACAGAGCTTATTGTATCCAACAACCTCTGTTTCACTGCAATAAATTGTCAATTCCTGACCCCTTTCTTTTTTGGAATCGGTAGTCACTTTTCAATTTTTGATTGGAGAAGCGAGTACAAAAGAGAGAGTAGGGAGATAAGACAACTTCCTCTCAAAACCTAAGCAAGGTGATTACAGAAAGGACCCCCAATCAAGACTATCGAGAAAAGTGGAGAAATCACAAAATCATTGAGCATTTGCATTGCTATCCAAGAGGAAGCAATGTACTGTACAATATCTCAACAATAACCAAAAGCTCTACACTGACCTTTAAGAATCCTGTTGTTCCAAAGGGTCGAGAAGTCAGGCAGCATTTTTTGAGATAGTTTTTGTCTTTCCCTGTAAATGTAATGACCAACGGATAAGATCTCTGGGAGCAAATTAATGATATCTGTAGGACAATACTATCCAAACCTAAACTGGCAGAAGAAAATATATCTGCTTTCAATTTTTGTAAATGAATTTAGTATCATTTAGATAAATTGTAAGGTGATATTCAAGGTCTTCTACCCATGGTGCATTATGCTGGCTGATTTTACGAGAATGAGACAATTTGGTTATGAGATTGGAGTGAACAGTATTTTCAACGATTTTGTGGATAGTTGGTCTGAAGATCTTTCATAAATTTTTTTTTGCTCTGATGGTTAACTTAAGGAATCATGCATCATGGTTTGTCTATTTTCTTGACTTTTTCTTTGTTCATTTTTTTTCTCTAAGGTAAGTAAGACCTGAGTATGATTTAAGTGTGCCCTCATAGTGAAGCAATTTAATCATATTTATATCAGGATGTTCTTTGGCAAGGGAAAACTGCAGGAGTTGATGCAGCATTGGAATATTTCAAGGCTGATGAAGCGTATCCAATGAGAAAGCTGCGCGAGGTGAGTTAATTACAAAGAAATATGATGGAACCAATACTGATATCTGTTTGTTTGTCACGGCTGAGCATCATTCACGGATTTACTTTTAAGATTCTGTGGAACTGAATGAAGCATTGTTGCTGTTCATGAAGTTCTCTTTAATCTTTTTCTCTGTGCCAATACCACCAGTGCTTTGCTTTTCACCCTCTGTATTTGACCACAGATCCTTCCAGATATTATTAGGAGGTCCTCCAAGTTGTTTCATAATTCGAATACTGCCAGTCCGGCTTATGTGGATTTAGAAGCCTTTCAAAAAGCGGCAGAGAATGACTGTGTGAAAGATATTTCACTTTTTACTCATGAATTGCGGTTAATAAAATCAACAGCAGAGATAAAGTTAATGAGAGAATCTGCTTCAATTGCTTGCCAGGTACCTCCAAGCTTTTAGTTGATTAATCCTGCTGGCTTCATGTTCATGTCATGAATGTATTTTCCTTTTGAACTCAGTTATTTGTTAAGAAATAATGAAACAGGTGGGAGTAATTATAGCTTAGCCTCTTCAAGGTTGGACGGCTGTTACTTAATAAAGATATTTTGGCTGCTAGTTATTCCAAAAATGACTATTTATTCTGCAACAAAACTTCTCATACCTTGCAATTCAAGGGAAGCCATAAATAAAGTACTTGTCATGAATATTTTTGGAATTGGGATAGCCATTCTGCCTATTTCATTGAGATAAACAAGGTGTATTCTATCACAACTTGTTCCTACCAAGGAAAAAAGAGCATAACACAAAGGAAACTTCGAGCTCATATTGTTCATGGTTTGAGAACTGAAATCGAATTATTTGAGGTCTAATTTACCATTGTTCTTTAGTAGCTCGTGATAGAGTGTACTCCTTAAAAGAGATTAAGGCTGAGTTAACATGGTCTGATTTATTTATTTTACAACATAGCAAGACCACAATGGTAAAAATGGAGTATTCTTCATTTTTCAGAATAAACCTATCAACTTCATTTTAAATCTCCTCTTTTGTACTATGTATTTAGACTTGAGTCAGTAGTCTGAGGAAAACTGCCTTTTCCTCAGACTCCCAAAGTTTTCCATAAATAGAAGTTTTTTCTTTCTTTCTTATTTATATCTAATTAATGAAACATTAATCTTCTTCTCGAAGTTATGAAAAAAGAACCCCTTCAGATTGAGAGAGGATTGATAATGTAGCATGATAATGCAATAGTTTACTTTTGCAAAAATGATGCTTCCTGAGGTTTTATTTTATTTTATTTGATTTTTTAATTTTTTAATTTTTTTTTTGTTCCTGGGTTTAGGCTCTTTTGCAGACAATGATGCATTCAAAGACGTATCCTCATGAGAGTATGTTATCAGCAAAGGTAGAATATGAGTGCAGAATGAGAGGTGCTCAAAGGATGGCGTGAGTATTCTTCATATTTGGATTTAAAGAAGTACCCCTATATAGATGTTTGGATTTTATTCTTTATTGTATGCTGAATCGTTCAAATCGTGAACAGGGTCTAGTTTTAATAAGAGACTTTAAACCATGCAAGATTTTACAACTGATTCTCAATTTACCTTCTCTGTAACAGATATAATCCTGTGGTGGGTGGTGGGTGTAATGGCAGTGTTATACATTATTCTCGAAATGATCAGAAAGTAAGTGAATTTATCCAGTGGTGCTTGGGTTTCACTATTATTAAAGATTGAAAGAATATGACCATTCATAGGTGGTATGTACATGATAAATGATTGCAGGTCAAAGATGGGGATCTTGTTCTAATGGATATTGGATGTGAATTGCATGGTTATGCTAGTGATCTTACTCGTACCTGGCCCCCTTGTGGAAAGTTTTCTGCTGCTCAGGTCTTTTACCTTTGTCCCGAAGTCTTATTTATCCATTTCAAATGATATTGAGGATTTTCAGCCAACTTCTTGTTTCGCCGAGTTCTAATGGCAATCTTTTCCATGCTTACCTTTGTGAACACGAAAATCTTTCATTTGGATTAACTGTCATTGTCACTACTCTTTAAGCAATGATCATGTGACCTCCGTTCTTTTGAATGTCTGATCTTGTCAATGTTGTTTTCGGGATTAGATCTTACCCTCTTTATTGGGTACTTCTTTTGTGCCTCAACTTTCTTAGTTGATTGTATCTCAGGAAGAGCTTTATGAGCTTCTACTGCTAACAAACAAGGAATGCATAAAGCTTTGCAAACCTGGAGCTAGTATACAGGACATTCACAACTACTCGGTAAGTTTTGTGTATTAATTCATTCAAAGTCTCAATATATAGATCCTAGGAACAAATCTGGTGCAGAACGACCTCATGAAGAAGTTACTCTGTGGTTTAGTCTTTCTAAGGTTTTCTTTGCACTATATTTGATTTCTTCCATTTTGGCCAGTTCCTCACTTAATTAAGCATGTCACTTTTTCATATATTAATAATGCCACATAATCACTGAAAAATATCTTGACCCTTCTCATATTCTATATGTTCGCAGACGAAAATGCTCCGAGAAGGCTTCAAAGAGCTTGGAATTTTGACAAATTTGAAAAGTGATTTCTACCACCATCTAAATCCCACTTCTATAGGTTCTCTCTTACCTCCTTGGGAAAAAAATTAG ATGATTATAACGTTGAATTGGTATGTACAGGCAGTTATTGAGGCAAATATTATCCTTCCTCTTGTTCATCTCCTCCAACATGCAGAATTTGACATCAAGAAGGAGGCTGGGTGGGCTATTTCCAATGCCACCTCGGGAGGATCTCATCAGCAGATTCAATTTCTAGTAACTCAAGGTTGCATCAAACCGCTCTGTGACCTTCTAACCTGTCCGGATCCGAGGATCGTGACAGTGTGTCTGGAGGGGCTTGATAACATACTCAAGGTTGGGGAGGCCGACAAGGACATGGGAATGAATGGAGGAATCAACATCTATGCACAAGCCATCGATGAGTGTGAAGGACTCGATAAGATTGAAAACTTGCAGAGTCACGACAACAACGAAATCTACGAGAAGGCGGTGAAGATGTTGGAGAGATACTGGGCAGAAGAAGACGAAGAGCAAGAGCAGAACCCACAGCAGAATGGAGATGTGAATCAACATGGGTTTGCATTTGGTGCAAACCAGCCAAATGTTCCTCCTGTGAAGGGTTCAACTTTTATGCTGGTTGTTGCTTTGCGGGGATATTGTACTGATAAGATACTTGACATTGGACAGCCTACTGCTGCTTCTCATCCAGAGTTGATGAAAGAAGAGGAAATTACCCCTGGAATAACTGCTGAGGAATACATTACGAGAAGAAAAAGGTTGCTGGAGCTTCTACCAGAGAATAGTTTGGCCATTATTGCAGCTGCGCCAGTGAAAATGATGAGTGATGTGGTGCCTTACGAATTTCGACAAGATTCTAATTACTTATATGTCACTGGATGCGTACAACCCGGTGGTTTGGCAGTTCTGAGTCATGACTTTGGATTGTGCATGTTCATGCCTGAAACAAAGCCTTATGATGTTCTTTGGCAAGGGAAAACTGCAGGAGTTGATGCAGCATTGGAATATTTCAAGGCTGATGAAGCGTATCCAATGAGAAAGCTGCGCGAGATCCTTCCAGATATTATTAGGAGGTCCTCCAAGTTGTTTCATAATTCGAATACTGCCAGTCCGGCTTATGTGGATTTAGAAGCCTTTCAAAAAGCGGCAGAGAATGACTGTGTGAAAGATATTTCACTTTTTACTCATGAATTGCGGTTAATAAAATCAACAGCAGAGATAAAGTTAATGAGAGAATCTGCTTCAATTGCTTGCCAGGCTCTTTTGCAGACAATGATGCATTCAAAGACGTATCCTCATGAGAGTATGTTATCAGCAAAGGTAGAATATGAGTGCAGAATGAGAGGTGCTCAAAGGATGGCATATAATCCTGTGGTGGGTGGTGGGTGTAATGGCAGTGTTATACATTATTCTCGAAATGATCAGAAAGTCAAAGATGGGGATCTTGTTCTAATGGATATTGGATGTGAATTGCATGGTTATGCTAGTGATCTTACTCGTACCTGGCCCCCTTGTGGAAAGTTTTCTGCTGCTCAGGAAGAGCTTTATGAGCTTCTACTGCTAACAAACAAGGAATGCATAAAGCTTTGCAAACCTGGAGCTAGTATACAGGACATTCACAACTACTCGACGAAAATGCTCCGAGAAGGCTTCAAAGAGCTTGGAATTTTGACAAATTTGAAAAGTGATTTCTACCACCATCTAAATCCCACTTCTATAGGTTCTCTCTTACCTCCTTGGGAAAAAAATTAG ATGATTATAACGTTGAATTGGTATGTACAGGCAGTTATTGAGGCAAATATTATCCTTCCTCTTGTTCATCTCCTCCAACATGCAGAATTTGACATCAAGAAGGAGGCTGGGTGGGCTATTTCCAATGCCACCTCGGGAGGATCTCATCAGCAGATTCAATTTCTAGTAACTCAAGGTTGCATCAAACCGCTCTGTGACCTTCTAACCTGTCCGGATCCGAGGATCGTGACAGTGTGTCTGGAGGGGCTTGATAACATACTCAAGGTTGGGGAGGCCGACAAGGACATGGGAATGAATGGAGGAATCAACATCTATGCACAAGCCATCGATGAGTGTGAAGGACTCGATAAGATTGAAAACTTGCAGAGTCACGACAACAACGAAATCTACGAGAAGGCGGTGAAGATGTTGGAGAGATACTGGGCAGAAGAAGACGAAGAGCAAGAGCAGAACCCACAGCAGAATGGAGATGTGAATCAACATGGGTTTGCATTTGGTGCAAACCAGCCAAATGTTCCTCCTGTGAAGGGTTCAACTTTTATGCTGGTTGTTGCTTTGCGGGGATATTGTACTGATAAGATACTTGACATTGGACAGCCTACTGCTGCTTCTCATCCAGAGTTGATGAAAGAAGAGGAAATTACCCCTGGAATAACTGCTGAGGAATACATTACGAGAAGAAAAAGGTTGCTGGAGCTTCTACCAGAGAATAGTTTGGCCATTATTGCAGCTGCGCCAGTGAAAATGATGAGTGATGTGGTGCCTTACGAATTTCGACAAGATTCTAATTACTTATATGTCACTGGATGCGTACAACCCGGTGGTTTGGCAGTTCTGAGTCATGACTTTGGATTGTGCATGTTCATGCCTGAAACAAAGCCTTATGATGTTCTTTGGCAAGGGAAAACTGCAGGAGTTGATGCAGCATTGGAATATTTCAAGGCTGATGAAGCGTATCCAATGAGAAAGCTGCGCGAGATCCTTCCAGATATTATTAGGAGGTCCTCCAAGTTGTTTCATAATTCGAATACTGCCAGTCCGGCTTATGTGGATTTAGAAGCCTTTCAAAAAGCGGCAGAGAATGACTGTGTGAAAGATATTTCACTTTTTACTCATGAATTGCGGTTAATAAAATCAACAGCAGAGATAAAGTTAATGAGAGAATCTGCTTCAATTGCTTGCCAGGCTCTTTTGCAGACAATGATGCATTCAAAGACGTATCCTCATGAGAGTATGTTATCAGCAAAGGTAGAATATGAGTGCAGAATGAGAGGTGCTCAAAGGATGGCATATAATCCTGTGGTGGGTGGTGGGTGTAATGGCAGTGTTATACATTATTCTCGAAATGATCAGAAAGTCAAAGATGGGGATCTTGTTCTAATGGATATTGGATGTGAATTGCATGGTTATGCTAGTGATCTTACTCGTACCTGGCCCCCTTGTGGAAAGTTTTCTGCTGCTCAGGAAGAGCTTTATGAGCTTCTACTGCTAACAAACAAGGAATGCATAAAGCTTTGCAAACCTGGAGCTAGTATACAGGACATTCACAACTACTCGACGAAAATGCTCCGAGAAGGCTTCAAAGAGCTTGGAATTTTGACAAATTTGAAAAGTGATTTCTACCACCATCTAAATCCCACTTCTATAGGTTCTCTCTTACCTCCTTGGGAAAAAAATTAG MIITLNWYVQAVIEANIILPLVHLLQHAEFDIKKEAGWAISNATSGGSHQQIQFLVTQGCIKPLCDLLTCPDPRIVTVCLEGLDNILKVGEADKDMGMNGGINIYAQAIDECEGLDKIENLQSHDNNEIYEKAVKMLERYWAEEDEEQEQNPQQNGDVNQHGFAFGANQPNVPPVKGSTFMLVVALRGYCTDKILDIGQPTAASHPELMKEEEITPGITAEEYITRRKRLLELLPENSLAIIAAAPVKMMSDVVPYEFRQDSNYLYVTGCVQPGGLAVLSHDFGLCMFMPETKPYDVLWQGKTAGVDAALEYFKADEAYPMRKLREILPDIIRRSSKLFHNSNTASPAYVDLEAFQKAAENDCVKDISLFTHELRLIKSTAEIKLMRESASIACQALLQTMMHSKTYPHESMLSAKVEYECRMRGAQRMAYNPVVGGGCNGSVIHYSRNDQKVKDGDLVLMDIGCELHGYASDLTRTWPPCGKFSAAQEELYELLLLTNKECIKLCKPGASIQDIHNYSTKMLREGFKELGILTNLKSDFYHHLNPTSIGSLLPPWEKN Homology
BLAST of HG10006342 vs. NCBI nr
Match: KAF2307316.1 (hypothetical protein GH714_026312 [Hevea brasiliensis]) HSP 1 Score: 833.9 bits (2153), Expect = 7.9e-238 Identity = 411/574 (71.60%), Postives = 472/574 (82.23%), Query Frame = 0
BLAST of HG10006342 vs. NCBI nr
Match: KAF2307328.1 (hypothetical protein GH714_026383 [Hevea brasiliensis]) HSP 1 Score: 784.3 bits (2024), Expect = 7.2e-223 Identity = 393/575 (68.35%), Postives = 455/575 (79.13%), Query Frame = 0
BLAST of HG10006342 vs. NCBI nr
Match: XP_038890359.1 (intermediate cleaving peptidase 55, mitochondrial [Benincasa hispida] >XP_038890360.1 intermediate cleaving peptidase 55, mitochondrial [Benincasa hispida]) HSP 1 Score: 709.1 bits (1829), Expect = 2.9e-200 Identity = 346/376 (92.02%), Postives = 356/376 (94.68%), Query Frame = 0
BLAST of HG10006342 vs. NCBI nr
Match: XP_004144742.1 (intermediate cleaving peptidase 55, mitochondrial [Cucumis sativus] >XP_031737121.1 intermediate cleaving peptidase 55, mitochondrial [Cucumis sativus] >KGN61012.1 hypothetical protein Csa_021318 [Cucumis sativus]) HSP 1 Score: 703.0 bits (1813), Expect = 2.1e-198 Identity = 339/376 (90.16%), Postives = 358/376 (95.21%), Query Frame = 0
BLAST of HG10006342 vs. NCBI nr
Match: KAA0048081.1 (putative Xaa-Pro aminopeptidase 3 [Cucumis melo var. makuwa]) HSP 1 Score: 702.6 bits (1812), Expect = 2.7e-198 Identity = 340/376 (90.43%), Postives = 356/376 (94.68%), Query Frame = 0
BLAST of HG10006342 vs. ExPASy Swiss-Prot
Match: F4HZG9 (Intermediate cleaving peptidase 55, mitochondrial OS=Arabidopsis thaliana OX=3702 GN=ICP55 PE=1 SV=1) HSP 1 Score: 530.4 bits (1365), Expect = 2.4e-149 Identity = 253/371 (68.19%), Postives = 304/371 (81.94%), Query Frame = 0
BLAST of HG10006342 vs. ExPASy Swiss-Prot
Match: Q9NQH7 (Xaa-Pro aminopeptidase 3 OS=Homo sapiens OX=9606 GN=XPNPEP3 PE=1 SV=1) HSP 1 Score: 261.2 bits (666), Expect = 2.8e-68 Identity = 136/397 (34.26%), Postives = 222/397 (55.92%), Query Frame = 0
BLAST of HG10006342 vs. ExPASy Swiss-Prot
Match: Q5R9W8 (Xaa-Pro aminopeptidase 3 OS=Pongo abelii OX=9601 GN=XPNPEP3 PE=2 SV=1) HSP 1 Score: 261.2 bits (666), Expect = 2.8e-68 Identity = 136/397 (34.26%), Postives = 221/397 (55.67%), Query Frame = 0
BLAST of HG10006342 vs. ExPASy Swiss-Prot
Match: B5DEQ3 (Xaa-Pro aminopeptidase 3 OS=Rattus norvegicus OX=10116 GN=Xpnpep3 PE=1 SV=1) HSP 1 Score: 258.1 bits (658), Expect = 2.3e-67 Identity = 129/365 (35.34%), Postives = 208/365 (56.99%), Query Frame = 0
BLAST of HG10006342 vs. ExPASy Swiss-Prot
Match: B7ZMP1 (Xaa-Pro aminopeptidase 3 OS=Mus musculus OX=10090 GN=Xpnpep3 PE=1 SV=1) HSP 1 Score: 255.4 bits (651), Expect = 1.5e-66 Identity = 128/365 (35.07%), Postives = 206/365 (56.44%), Query Frame = 0
BLAST of HG10006342 vs. ExPASy TrEMBL
Match: A0A6A6M4W4 (IBB domain-containing protein OS=Hevea brasiliensis OX=3981 GN=GH714_026312 PE=3 SV=1) HSP 1 Score: 833.9 bits (2153), Expect = 3.8e-238 Identity = 411/574 (71.60%), Postives = 472/574 (82.23%), Query Frame = 0
BLAST of HG10006342 vs. ExPASy TrEMBL
Match: A0A6A6M498 (IBB domain-containing protein OS=Hevea brasiliensis OX=3981 GN=GH714_026383 PE=3 SV=1) HSP 1 Score: 784.3 bits (2024), Expect = 3.5e-223 Identity = 393/575 (68.35%), Postives = 455/575 (79.13%), Query Frame = 0
BLAST of HG10006342 vs. ExPASy TrEMBL
Match: A0A0A0LK09 (AMP_N domain-containing protein OS=Cucumis sativus OX=3659 GN=Csa_2G034650 PE=4 SV=1) HSP 1 Score: 703.0 bits (1813), Expect = 1.0e-198 Identity = 339/376 (90.16%), Postives = 358/376 (95.21%), Query Frame = 0
BLAST of HG10006342 vs. ExPASy TrEMBL
Match: A0A5A7U3F1 (Putative Xaa-Pro aminopeptidase 3 OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold385G001530 PE=4 SV=1) HSP 1 Score: 702.6 bits (1812), Expect = 1.3e-198 Identity = 340/376 (90.43%), Postives = 356/376 (94.68%), Query Frame = 0
BLAST of HG10006342 vs. ExPASy TrEMBL
Match: A0A5D3BC20 (Putative Xaa-Pro aminopeptidase 3 OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold546G00970 PE=4 SV=1) HSP 1 Score: 701.0 bits (1808), Expect = 3.9e-198 Identity = 339/376 (90.16%), Postives = 355/376 (94.41%), Query Frame = 0
BLAST of HG10006342 vs. TAIR 10
Match: AT1G09300.1 (Metallopeptidase M24 family protein ) HSP 1 Score: 530.4 bits (1365), Expect = 1.7e-150 Identity = 253/371 (68.19%), Postives = 304/371 (81.94%), Query Frame = 0
BLAST of HG10006342 vs. TAIR 10
Match: AT1G09300.2 (Metallopeptidase M24 family protein ) HSP 1 Score: 502.3 bits (1292), Expect = 5.1e-142 Identity = 239/347 (68.88%), Postives = 289/347 (83.29%), Query Frame = 0
BLAST of HG10006342 vs. TAIR 10
Match: AT1G09270.1 (importin alpha isoform 4 ) HSP 1 Score: 254.6 bits (649), Expect = 1.8e-67 Identity = 128/172 (74.42%), Postives = 145/172 (84.30%), Query Frame = 0
BLAST of HG10006342 vs. TAIR 10
Match: AT1G09270.2 (importin alpha isoform 4 ) HSP 1 Score: 254.6 bits (649), Expect = 1.8e-67 Identity = 128/172 (74.42%), Postives = 145/172 (84.30%), Query Frame = 0
BLAST of HG10006342 vs. TAIR 10
Match: AT1G09270.3 (importin alpha isoform 4 ) HSP 1 Score: 254.6 bits (649), Expect = 1.8e-67 Identity = 128/172 (74.42%), Postives = 145/172 (84.30%), 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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