
Spg001916 (gene) Sponge gourd (cylindrica) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: five_prime_UTRpolypeptideCDSthree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.ATGCTCAGGTAGAGGTTGAAGGTAGTGTTGGATTATCTGTTTTGATTAAGCTATGCTTTGTCTAATGTTTTAAATTCTCAAGAGAAGGTTGGTTAGTATTGCTCGGGACGCGCAATAGTTCAAGTTTGGGGGTATGATAACTCTCCAAAAGGAAGTTATTTAGACCTTATTTCTATATTGATTTGTGTGTCTTTTGTGCTAAATAGGGTTGCTTTTAGATAGATATTATATGTTTTAACCCATTTGGAAGAATGGATGCTTTGGAAGTTATTTTGTGTAGAATATATTGTTGAGCGACTTGAGAGAGCAAAATCTGTGCTGGAGCAAAGCTGGGAGCAAAACTGTCACGTCACAGTTCGTTAGCCAATTTAATGAAATGAATTATGTTAAGCTATTCTCGGGATAAAGGAGCAATGAGAGCCATCCACGTGTCTAGGTCAACCTAATTCAAGCGTTCCTCAACTCTATAAAAGGAGTTAGCCGCCCAAGTCAAATGCATTCCTTTTTGGGGAAGGAAATTCCATCCTTGGGAGGAACATTCCACTTTTGGAAGGATAATTTCTCATTTCCATTTTGGGAGCCGAATAGAGGAGAGAGATTGGAGACCAACAAGAAGACCATCAATTGCAAGCTGATCAAGGGAATTAATATTTTCTTGTATTACTTTGTAGTTATGGATGCATTTACTTATATTGTAATGTGTGTCTCTATGCACTTTATGAACTAAGTAATTTTAGGCGTTGGTTAGGGAACATGTAATTGTTGTGCTTAATATCTATGCAATAAATGTTGATTGATGCATCTTGATTATTTGTTTTGCTCATTTATATTTTGTGTCCGCCTGGCCAGCCGGTATGAATACCATTCTCTAATTTCAGGGATGATTTAGGGAGTGTGACATTTAATCACACTAGATCATTGTGTATTGGTGAACGCCAGTGACTGAGCTAGGGATAGCCAGTTGCCTAGTGCTTGATCGGTAGTACGTCATTGGAGTTGAAACATATTCTAAAAAATCCGGAGTTCTGGGAGGAATCCGCTAATAAGACTGCGAGAGTTTTGCATGATCAATAATATTGCTAGAGCATCTTTTAAAACAATTACTAAATCCTGACCAGCGTCTGTTTCTAATCTGTCTGCTTATTTGTTTACTTTCTGTTCTGTCATTTCTTTTGCTTCAGCATTATATCAAAACCAATCATTTTAACCGTTCTTGAAACCATTAATGAGTTGCACAAAATAGATAAAGTGAAAGCTAATTCAGACCCTGGATTCGATAAATACTTATTACTTGCTGCGGATTGTGTATACTTGCACAGAGTTCTAGAGTCTATTTCTTACTACATTTTTACTCACTTCGGAAACCCAACATCCCACAACTACGTTCCTAATCTCAGAGTCATAGGGGGAAGATCAATTGGTGGTGTCCCAACTGTTGACCCTTGGTCCCTATGAAATCAAGAAAGGCGTTCTTGATATTTCAGAGACGACAACGACGATATGTTTGCTTCTCCCCTTTAGAATTAGTTCTAAGGTTGTATGCTTAGCCTTAATAATATAAATCTAGAATAGTTCTAAGTTTTTTTGCCAATGTATTGGTATTTTGGTAGAAACAAAATTAACTACGAATCGGTCCCAATTACGCTTCCGCTTTATCGGAATTGGGGAATTCCAAATCCTTCAAGTTTCACGTTCATACCCAAGTCACTATCTAATTTAATTCAAAAAAAGTAAATAAATAAAACAATTTATCTCATGAATCAAGGAATTACACAATATCTATCTTTTCTCTCTTATCTTTCAAAATTCAAATTCAAATTTTATCTTTAAAAAAAACTGAAATATTACATAGAAATTAGTTTTTAATTTTCAATTTTTTGTTATTGTTAGTTTTTAATTTTCAATTTTTCGTTATTGTTAGTTTTTAATTATCTAATCAACATCTTCATCGTTTTTCCTAACTTTTTGTCATCCATCAATTTTTTGCTCTACCATTCTTGTCACCATTAAAAGTATTATTGATCTCTAAACATAGGTATGCTATACACTACTTAATTTACATTTATTTTCAATTCTAAATTCATTCTCTTATTTTCATTGTTGTTTTCAAAACTAGATATCTAGTCTTCTCGTTTCTATATGGTATGATGGGAGGTGGAATAATAAGAATCATTACTGTCAATAGTGCATTATAATCAGATTCTACACTCCAACTTCTCAACGATTGTATAAAAAGTAAGCTTAAAATTGAGAATAATCAAACAATTATTCGACTCTCTATGTATAACAATAGTCATGAAAAACCAGTATTTAGGCTTTCTGAGGGTATAGATGTTTCATGACATTATTTTTCATCTCCAATAGTAGGGGCGAACGATATCTGGAATGCAGTAGATTATGACCACTCTGACATGGTAAATAATTCAAATACAATGTGTATGCAAAATAATCCTGACAATTTTCTCCAACTTTCATAAATAAAAAACAAAAAATTTGATTATATTGACCTCGATTCTACTCCAGTAACCATGTCCGAAAGGTTAATGAAATGTTGTATATCTATTTGTAGTAGTTTTCGATATATTGTATTTGTGTAATTCATTCCTATTTTTCCTCTTAAAATTCTTTTAGTATTATATTTCCTAATTTAAATTTTTATTATTAAATCATGCTAGTAAGATAATTTAAATTTGTTTGATTAAAGTTTATCATTAATTTAAATTGTAATTCCTACATTTCATTTTAGTTTGTTTCATGGTTATAAAATCCTATTGATTTTCATAATATCTTTGTAAACTTAAATTTTTTTTAATTAATTTTTTGTTGTTAAGATAAACTATATTTCCTAGATTTTCTCCATATATTTGAATTTAAATTTTCATTAAACTGCAAATTTTCTCTCCTTGTATTTGAATTTAATTGTTTACTATATTTATCTCCTTGTATTTGAATTTAATTGTTTACTATATTTATATTTTGATTAGGGGCATTTTCATACGATTCGTTGTTAAAAAAACCTACTATAGCAATTGACCAATTTTCAAAAGAAAAATTCAGATGATCATTTTTCATTTCATTAAAATTAGTCATTTATCTAGTTGTCCCAATAGTTTATTGTTTTTAAATCATCATTTCATTAACATGTTTTTTATTGTTAGTAAATCATCATTTTATTAACATATTTGAGTAAAAACCCATATCATTCAAAAGAAATTATTTTTATTGTAGATAGTAGAATTATACCAGTAATCAAATTGGATTTCAACAGATAAATAGCAAATCCACCTAATTAAATAAATATGTTAACAAAACAATAATGAAATGATATATTAACTTTTTATTACCAAATTTTAACAATTGGTTTGCCCAACGTAGCAAGGAAGGAGATGATAGTCTGTTTTTTTTTCAAGGCCAGGTTTGATGAAGGTTCTGTGGTTCGAAGTGTTCTTCTCCAGTATGAAGAGGCATCATGGCAAACAATTAATTTTGAAAAATCAATTATTTCATTAAGCTCGAACATGCATGGGCCAGTCCATGCCACTATACAGACCATTTTTGGGGTTCAAAGTGTCTCATGCCACCAGCATTACTTTGGGTTGCCTTCTTTTATGCCCCAAAATCGTCCGAAAACTCTTGGTTTCATTAAGGATAGGGTTCGACGTCATTTGCAGGGGTGGAAAAGGGAAGCTTTTTCTCGGTAGGAGAGAGGGAGATCTTGTTGAAAACAGTGATTCAGGCGGTTCCCTGTTACACTATGAATTGTTTTCGGCTTCCTTTGGCTTTGATTAGAGAACTTCATCAACTTATGGCTAGATTCTGGTGGAACGGAGCCTCAAAGGATAGGCGGATTCATTGGGTCAGTTGGGAGCGGATGTGCTTACCGAAATGCTTGGGAGGTTTGGGTTTTCGTAATCTGGAATCTTTTAACCTGTTTTTGTTGGCCAAGTAGGGTTGGCACCTTTTGCATAACCCGTCTTGTATCCTGCAATTTCGGTACTTCAGGAGTGGTTCTTTTCTGAATGCCACTTAGGGTGGGCGTCCTTCTTTCATCTGGCGCAGTTTGCTTCGGCAAGGTCTCCGATGGAGAATTGAGTCTGGTTCTACTATTGATATTTATGGATCTAATTGGTTACCTCGAGTATCCTCCTTTCAGGTTCGGTCTTTTCCTTCATTACCGTTGGATAGCAAGGTGAATTCTCTGTTTTCCTCTGATGGCTCTTGGGATGTGGAGCGGATTCATTCACATTTTGATCCAGATGAGGCTAGATTGATTTTGTCGTTACCTATCGGCAAAGATGGTTCCCCTGATCAGCTAATCTGACATTACGAGAAGACAGGTTGTTTCATTGTAAAGAGCGATTATGTAACGCCCCAGGCCCAGGATTCGGAATCTGGATTCGGCCCTTAACGGCCCCGGCATTCCCCTGCGACCTGGCCACGCCACCATACTTGTCTGATACTACTTCTAAGATTGAAGACTGCCCCCACAAACCAACACGGGGTCCTTTTAGCATGCTTTGTCCTCACTCACATGCTTCCTAGGAAAATTCCCAGGAGGTCACCCAACATAGAACTTCTCCAAGCTAAGCACGCATAACTTCAAAGTTCCTATGATTGAGCCACCGAAAAGGAAGGTGCACCTTGTTGGTATAGGTAGTATCTATCAATTCTTTTAAGCTTATCTTGACCATACTTTCATGTCCTCAGGACCTTCTCATTTGGAAGTGGTATCGGTTTATTCATGTACCCCTCCTAACCTCGGGCGTCACATGCCCACCAGCTTCCGCTTGGTTCGTCCCCGAACCACATCCTACTGGGAGAGGTTCTACTCTGATACCATCTGTAACGTCCCAGGCCCAGGATTCGGAATCCGGATTCGGCAGCTGACGGCCCCGGCATTCCCCTACGACCTGGCCACGTTACCATACTCGTCTTACACTGCTTCTAAGAGTGAAGACTATCCCCACAAACCAACACGGGGTCCTTTTAGCATGCTTTGTCCTCACTCACATGCTTCCTAGGAAAATTCCCAGGAGGTCACCCAACATAGAACTTCTCCAAGCCAAGCACGCTTAACTTCAAAGTTCCTATGATTGAGCCACCGAAAAGGAAGGTGCACCTTGTTGGTATAGGTAGTATCTATCAATTCTTTTAAGCTTATCTTGACCATACTTTCATGTCCTCAGGACCCTCTCATTCGGAAGTGGTATCGATTTATTCATGTACCCCTCCTAACCTCGGGCGTCACATGCCCACCAGCTTCCACTTGGTTCGTCCCCGAACCACATCCTACTGGGAGAGGTTCTGCTCTGATACCATCTGTAACGTCCCAGGCCCAGGATTCGGAATCCGGATTCGGCAGCTGACGGCCCCGGCATTCCCCTACGACCTGGCCACGTTACCATACTCGTCTTACACTGCTTCTAAGAGTGAAGACTATCCCCACAAACCAACACGGGGTCCTTTTAGCATGCTTTGTCCTCACTCACATGCTTCCTAGGAAAATTCCCAGGAAGTCACCCAACATAGAACTTCTCCAAGCCAAGCACGCTTAACTTCAAAGTTCCTATGATTGAGCCACCGAAAAGGAAGGTGCACCTTGTTGGTATAGGTAGTACCTATCAATTCTTTTAAGCTTATCTTGACCATACTTTCATGTCCTCAGGACCCTCTCATTCGGATGTGGTATCGGTTCATTCATGTACCCCTCCTAACCTCGGGCGTCACAGATTATCGTCTGGCCCAGCTTTTGGTTAGGCAATCTCTCCCGTGTTCTTCAGGCTCTTTGACACAGTCTTGGTGGAAAGGGGTCTGGAATATGAGGATCCCTAGCAAAATTAAGATATTCTTCTGGCGTCTTTACTTTGAACGATTACCTTCTGGAGTGGGTCTCTCTCAACGAGGGATTGATTGCCCAACGATCTGTTTCGGGTGTGGTCGTTCTGGTGAAGATGTTTTTCATATTTTCTGGTTTTGCAAGATTGCTCGCTCCCAGTGGAAAAGCTCTCAATTCTGGCACATTTGGTCACCCAGACCTGCTGCTAATTTTTCTCTACTTCTCATGGACTGTCAAGAGCCTTTGTGTGGTCGGATTTCGCTGTTCTTGTCGCGTTTTTGTATGGTCTCTATGGAATGCTCGAAATGGTTTGAAATTTCAAGATCTCTCTCCGTTGCATGATCTTGGTGAGTGGGCGAATAAGTACATTCATACCTTTCAGGTTGCTGACTTGTCTGTCTGTTTCAGTCGGTCCCCACCGCTCAGGCGTTCTCCGGTTCGCTGGCAGCCCCCTCCAGGCGATTATTTCAAGGTCAATGTAGATGCTGGTTTCCTCCAGGATCTTGGTGAGGTTGGTGTCGAAATTATCATTCATGATTCCTTGGGTCGGGTTCTACTGTCGATCATGTGTTTCTTGGGGTTGGTCTAGAATATTGATTTGGCTGAGGCTCATGTCGTTATAGAAGGTGTTTGTCTATCTCATCATATGGGTTTTCGACCAATTATGATCGAATCAGACTCCCAACATGTGATTAATCTTCTCTCCGATCCGTCGGATGACTTGTCTGACGTTGGCGTTCTTATCTCTCACTTTCGACGGAGTCTGTAAGATTCTCTTTGCTCTTTCTTGTTCGTGCCTCGGTCGGTAACGTGGCGACTCATCGATTTGCTTCATTAGCTCTGGCTCAACGGTCTTATCAAACTTGGATTAAGGATTGGCCTTCTAAAATTGTGGATGTTATTGTTTCTGAATGTTTAGTTCCCTTTTCAGTTTCTATTTCCATGTAATCGTGGTTTATGAATTCAAAAAAAAAAAAAAAAAAAAAAAACAAACAAACAAACGAACAACTGGTTTGCGGAAAAAAAAAAAAAAAAAAAAAAAACCTATTCCAAAAATTTTAATACACTGAGGATAATATATATAATTAGGGCTCAATTGTAAGTCTAATTCCTAATACCTAAATTTGGTATTGTGTCAATTTGACCCTTAAACTTTAAAAGTTTCAAATAGGTTTTCAAACTTTCAATTTTGTGTTCAACAAGTGATTCGACTTTCTATCTTGTATGAGTCTTGACCTATTTAACATTTTTAAAATTCACAAGTCTACTAGATCTAAAATTGAAAGTTTAGGGTCTCAATAGACATAAAATTTAAATTTATATCTAGTAGTTTGGTTAAAAAAACATGGAACATATTAGGGACCTATTAGGCACAAAATTGAAAGTTCAAGGACTTATTCGACATTTTTAAAATTTAGAGACCTATTAAAAACAAAATTGAAAGTTCAGTGACTTATTAGATACTTTTTAAAGTTCAGTGACCAAATTCACACAACACTAAGGAGGTGTTTGGCTTGACCCAAGGAGTTGGAGCTATAAAATCTGGAGTTTTTTTATTCTAGAAGTTGGAGTAGAAGTTGTTTGTGGAACCCACAACCGAGTGTTATAATTGATTAATAAGTTTGTGGGAATCACAATTAAGTGTTGTATGTTATCAGACCAAACAATAAGTTGGATGAGTTATTAACCCCACCCAACTCGTTGGACCAAATATCTCTTGAAAGTTCATGAACTAAACTTGTAATTTAACCTAAAGTTGATAGGGAGCCAATCAATTTTATAAATTTTGTCAAATTACTATTATCACATGATGACAACGGGTAGGAAAGCCGGGTTGTAGGAGATTAAAATAGGCGGGGCCGCAGCAGATAAAGAAAGAACCAAGATATTTATTGGCAAGGGTCCAATGAAATTAGGAGGTCCGTCTGGAGGTTGTGGCCAATTGCGAATTCTAGGGTTTAAGTTTGAAGGGCGCCATTTTTTCAACAACACATGTCCTCTAGGGCTTAGCCATTTCCCTCGTTCACTTGTCTTCTCCCCCCTCCTCTCTTCAAGCTCCTCTGTTCCCTTTAATGTCGGAAAACTCCATGGATTCCAAGCCGAATGATGCTGCCACTAATGGTGAACACGACGACGCCAAGCCCTTGAACCACAAAGACGACGGGAGTAGACACGACCCTCCCTCCCATGCCGACGGAGCCAGTGCTGGGTAAGATGTCCTTGCTCTCCATACTGGGTCGCCCTTTTCTTGTTTTCTTTTGGGTGTATTTTCGAGTTTCTCATGTTCTGATGTGTTCGGACGAGTTTGTTTGGTTTCATGTCTCTTGATCCGTTTTCTTGGTTGTTTGGATGCTGTTGTAGGAAAATCTTCGTTGGGGGTTTACCGCGGGAAACGACTTCCGGTTGGTTTTTTTTTTTACGGTTGTACGTTTCCTATGCAGTTGTTGTTGTTTTTGTAATGGTCGGGATTTCAATTGATTGTATGCAGCACAATTTGTTAAACATTTCGGTCAATATGGAGAAATTACGGACTCTGTTATAATGAAGGACCGCAAGACTGGACATCCCCGCGGATTCGGGTTTGTGACTTATGCTGATCACTCTGTGGTAGATAAAGTCATTGAGGACACACATATTATTAATGGGAAACAAGTAGGCCTGTACTTAGTGTTGATTTTGAGTTAGACATTAGGTTTCAAATGATTTCAAGCTCAAACTTTGACTTAACTTTTAGGTGGAAATCAAGCGAACAATACCCAAAGGTTCTTCCAGCTCTCGCGATTTCAAGACTAAGAAGATTTTTGTTGGTGGAATTCCTACATCTGTAGATGAAGGTAACTCGTAGGTTTCACTAATGCTTATTTAGATGGTACTGTGAGGTATGGCGTACTCACTTTTTAAGTGTCAAGCAGATGAGTTCAGGGATTTCTTTATGCAATATGGTGAGGTTAAGGAGCACCAGATCATGCGTGACCACTCCACTAGTCGGTCTCGTGGGTTTGGTTTTATTACATTTGAGACAGAGCAAGCAGTTGATGATCTCTTGGCAAATGGAAACAGGCTTGAGTTGGCAGGCAGTCAGGTCAGCAGAGTTCTATCTCGGCTGAACTAATCTAACATGTCCATTTTCTATCTTTGGTTGAAAATGATTTACCTACGCAGAATTTTAGTTTCTATTTACCAATGTGCTAGGTTCCAATGATGGGGTTTTTTTTTTAATGAATTGTCATTTTTTTCAATTGCGCTTGAGCAATAGATGAAAATCTTTTCTCCTCTTGCAGTTGCATGAATTTAGTATTTATTTATTTGACCAATTTCTTGGATTTGGATTATGAATTTTTATACAAATATGATACTAAAGATAGGCTTGATTGAGAAGTTCAAATTTCCATAGTCTGCCTGTCCAAGTAGTTAGTTTGTGTTATTAGTTCCACTTCGAACCTGTCATTTACTTAAGTTTTGATTTTCTTAAATAAGCTATATTTACATGAATACATTTTACTGAACTAAGGCTATGTTATGCGATTCCAAAATCTCCATGGCCACGATGTTTTTCTTACCTGGATTATTCTAGTAGTTACCCAAGGCTCAAGCATCTTCCATTGAGAAGTCTATACAGAGCATTGGATTCATTTCTTGTGAGAGTTTCTTAGCGTTCACCTGGAGTGAAGTTTGAAGAAGTTTTAAATCTTGAAATTTATGTTACAAAATGTTTTTGGAAACATTATTAAGAGAGGAAAAGTAAATTAGTAGAAAGTGAAAAATGATATTTTGTTTTTTGGGAAGCATTGCTTCATATTGTTTGATTATTTTTTTTCTAGTTTATTAACTCAAAATCATTTTAAACTTATAGGATAGGATAAAAGTGATTGGAATCAATTTTTGAAAATTTTCAAAATCAAAGTACATCCAAATAATTCTGTTGTCTCTTACAGAAAGCCATCTTTTATCGCAAGCTTATTCAAATTCAGATGCATGTAGTTCATTGCAATAAATGTTTTTTATTGGTTCCTCTATGGGGTCTTTTAATTTTATTGGTCATATGTACAAGTAAAACATAAAGAATGGAGATTTATGTACTAAATTTATTCACCTGTTGAAGTCATTCTAACAATTTAAGGTTGATGCTTTGTTTTAAAGGTGGAGATCAAGAAGGCAGAGCCGAAAAAGGCAAATCCTCCTCCAGCTCCTTCAAAGAGATACCATGATTCAAGGCCAAGTTACAGTGGTGGCTATGGGGATTCATATGGGGAGTTTGGAGGTGGCGGGTATGGTGGTGGTTTTAGGGCAGGCGGACCATACAGTGCTAGAGGTGGTAGCTATGGTGGATATGGTGGAAATGATTTTAGTGGCTATGGAATGTATGGTGCTGGTGGCATTGGAGCTTACAGGGAAGACCCCTCCATGGGATATTCTGCTCGTTATGGAGCAGGCTTCAGCAGAGGTTATGATTTTAGAGGTGGTTATGGTGGACCTGATGAGAGTTATGGTGCGTATAACAGCGGTGGTGCTCCTAATGCTGGTGGGTATGCAGGTAGCTATGACATGGGCATGGGCACTGGATACCCTGCTGGTGGTAGAGGCTCCTTCTATGGAAGTAGAGGAGCAGGAGGATATGATGGTGCGGGGAGTGCTCCAAGTGGTCGATATCATCCTTATGGACGGTAATAAGTAGCGGTGGGAGCTTTTGTTAATTGATGTGCTACAAGGACGGCAATGCTGATCAGTTCCCGGTTGTCAAAATAATGATAAATATGTGTGCCTCTTACCGTCACAAGATTCCTGCCATGTTCACCAGGATCACAATTTTCAGAGACTTAGAATTTGACTGTACAATTGATTGACTAACTTGCTGGAGATTGTGCTAAGATTATGTATCACCTATATACGCCATTAATTTCTCCATTTTGCTGTCAACATTTACGTTGTTTTAATTGACATGGCTATTTTAAAGAATGTTTAATGAATT ATGTTTTTCATATTTTCTGGTTTTGCAAGATTGCTCGCTCCCAGTGGAAAAGCTCTCAATTCTGGCACATTTGGTCACCCAGACCTGCTGCTAATTTTTCTCTACTTCTCATGGACTGTCAAGAGCCTTTGTGTGGTCGGATTTCGCTGTTCTTGTCGCGTTTTTGTATGGTCTCTATGGAATGCTCGAAATGGTTTGAAATTTCAAGATCTCTCTCCGTTGCATGATCTTGGTGAGTGGGCGAATAAGTACATTCATACCTTTCAGGTTGCTGACTTGTCTGTCTGTTTCAGTCGGTCCCCACCGCTCAGGCGTTCTCCGGTTCGCTGGCAGCCCCCTCCAGGCGATTATTTCAAGGTCAATGTAGATGCTGGTTTCCTCCAGGATCTTGGTGAGAATATTGATTTGGCTGAGGCTCATGTCGTTATAGAAGGTGTTTGTCTATCTCATCATATGGGTTTTCGACCAATTATGATCGAATCAGACTCCCAACATGTGATTAATCTTCTCTCCGATCCGTCGGATGACTTGTCTGACGTTGGCGGCTTAGCCATTTCCCTCGTTCACTTGTCTTCTCCCCCCTCCTCTCTTCAAGCTCCTCTGTTCCCTTTAATGTCGGAAAACTCCATGGATTCCAAGCCGAATGATGCTGCCACTAATGGTGAACACGACGACGCCAAGCCCTTGAACCACAAAGACGACGGGAGTAGACACGACCCTCCCTCCCATGCCGACGGAGCCAGTGCTGGGAAAATCTTCGTTGGGGGTTTACCGCGGGAAACGACTTCCGGTTGGTTTTTTTTTTTACGGTTGTACGTTTCCTATGCAGTTGACCGCAAGACTGGACATCCCCGCGGATTCGGGTTTGTGACTTATGCTGATCACTCTGTGGTAGATAAAGTCATTGAGGACACACATATTATTAATGGGAAACAAGTGGAAATCAAGCGAACAATACCCAAAGGTTCTTCCAGCTCTCGCGATTTCAAGACTAAGAAGATTTTTGTTGGTGGAATTCCTACATCTGTAGATGAAGATGAGTTCAGGGATTTCTTTATGCAATATGGTGAGGTTAAGGAGCACCAGATCATGCGTGACCACTCCACTAGTCGGTCTCGTGGGTTTGGTTTTATTACATTTGAGACAGAGCAAGCAGTTGATGATCTCTTGGCAAATGGAAACAGGCTTGAGTTGGCAGGCAGTCAGGTGGAGATCAAGAAGGCAGAGCCGAAAAAGGCAAATCCTCCTCCAGCTCCTTCAAAGAGATACCATGATTCAAGGCCAAGTTACAGTGGTGGCTATGGGGATTCATATGGGGAGTTTGGAGGTGGCGGGTATGGTGGTGGTTTTAGGGCAGGCGGACCATACAGTGCTAGAGGTGGTAGCTATGGTGGATATGGTGGAAATGATTTTAGTGGCTATGGAATGTATGGTGCTGGTGGCATTGGAGCTTACAGGGAAGACCCCTCCATGGGATATTCTGCTCGTTATGGAGCAGGCTTCAGCAGAGGTTATGATTTTAGAGGTGGTTATGGTGGACCTGATGAGAGTTATGGTGCGTATAACAGCGGTGGTGCTCCTAATGCTGGTGGGTATGCAGGTAGCTATGACATGGGCATGGGCACTGGATACCCTGCTGGTGGTAGAGGCTCCTTCTATGGAAGTAGAGGAGCAGGAGGATATGATGGTGCGGGGAGTGCTCCAAGTGGTCGATATCATCCTTATGGACGGTAA ATGTTTTTCATATTTTCTGGTTTTGCAAGATTGCTCGCTCCCAGTGGAAAAGCTCTCAATTCTGGCACATTTGGTCACCCAGACCTGCTGCTAATTTTTCTCTACTTCTCATGGACTGTCAAGAGCCTTTGTGTGGTCGGATTTCGCTGTTCTTGTCGCGTTTTTGTATGGTCTCTATGGAATGCTCGAAATGGTTTGAAATTTCAAGATCTCTCTCCGTTGCATGATCTTGGTGAGTGGGCGAATAAGTACATTCATACCTTTCAGGTTGCTGACTTGTCTGTCTGTTTCAGTCGGTCCCCACCGCTCAGGCGTTCTCCGGTTCGCTGGCAGCCCCCTCCAGGCGATTATTTCAAGGTCAATGTAGATGCTGGTTTCCTCCAGGATCTTGGTGAGAATATTGATTTGGCTGAGGCTCATGTCGTTATAGAAGGTGTTTGTCTATCTCATCATATGGGTTTTCGACCAATTATGATCGAATCAGACTCCCAACATGTGATTAATCTTCTCTCCGATCCGTCGGATGACTTGTCTGACGTTGGCGGCTTAGCCATTTCCCTCGTTCACTTGTCTTCTCCCCCCTCCTCTCTTCAAGCTCCTCTGTTCCCTTTAATGTCGGAAAACTCCATGGATTCCAAGCCGAATGATGCTGCCACTAATGGTGAACACGACGACGCCAAGCCCTTGAACCACAAAGACGACGGGAGTAGACACGACCCTCCCTCCCATGCCGACGGAGCCAGTGCTGGGAAAATCTTCGTTGGGGGTTTACCGCGGGAAACGACTTCCGGTTGGTTTTTTTTTTTACGGTTGTACGTTTCCTATGCAGTTGACCGCAAGACTGGACATCCCCGCGGATTCGGGTTTGTGACTTATGCTGATCACTCTGTGGTAGATAAAGTCATTGAGGACACACATATTATTAATGGGAAACAAGTGGAAATCAAGCGAACAATACCCAAAGGTTCTTCCAGCTCTCGCGATTTCAAGACTAAGAAGATTTTTGTTGGTGGAATTCCTACATCTGTAGATGAAGATGAGTTCAGGGATTTCTTTATGCAATATGGTGAGGTTAAGGAGCACCAGATCATGCGTGACCACTCCACTAGTCGGTCTCGTGGGTTTGGTTTTATTACATTTGAGACAGAGCAAGCAGTTGATGATCTCTTGGCAAATGGAAACAGGCTTGAGTTGGCAGGCAGTCAGGTGGAGATCAAGAAGGCAGAGCCGAAAAAGGCAAATCCTCCTCCAGCTCCTTCAAAGAGATACCATGATTCAAGGCCAAGTTACAGTGGTGGCTATGGGGATTCATATGGGGAGTTTGGAGGTGGCGGGTATGGTGGTGGTTTTAGGGCAGGCGGACCATACAGTGCTAGAGGTGGTAGCTATGGTGGATATGGTGGAAATGATTTTAGTGGCTATGGAATGTATGGTGCTGGTGGCATTGGAGCTTACAGGGAAGACCCCTCCATGGGATATTCTGCTCGTTATGGAGCAGGCTTCAGCAGAGGTTATGATTTTAGAGGTGGTTATGGTGGACCTGATGAGAGTTATGGTGCGTATAACAGCGGTGGTGCTCCTAATGCTGGTGGGTATGCAGGTAGCTATGACATGGGCATGGGCACTGGATACCCTGCTGGTGGTAGAGGCTCCTTCTATGGAAGTAGAGGAGCAGGAGGATATGATGGTGCGGGGAGTGCTCCAAGTGGTCGATATCATCCTTATGGACGGTAA MFFIFSGFARLLAPSGKALNSGTFGHPDLLLIFLYFSWTVKSLCVVGFRCSCRVFVWSLWNARNGLKFQDLSPLHDLGEWANKYIHTFQVADLSVCFSRSPPLRRSPVRWQPPPGDYFKVNVDAGFLQDLGENIDLAEAHVVIEGVCLSHHMGFRPIMIESDSQHVINLLSDPSDDLSDVGGLAISLVHLSSPPSSLQAPLFPLMSENSMDSKPNDAATNGEHDDAKPLNHKDDGSRHDPPSHADGASAGKIFVGGLPRETTSGWFFFLRLYVSYAVDRKTGHPRGFGFVTYADHSVVDKVIEDTHIINGKQVEIKRTIPKGSSSSRDFKTKKIFVGGIPTSVDEDEFRDFFMQYGEVKEHQIMRDHSTSRSRGFGFITFETEQAVDDLLANGNRLELAGSQVEIKKAEPKKANPPPAPSKRYHDSRPSYSGGYGDSYGEFGGGGYGGGFRAGGPYSARGGSYGGYGGNDFSGYGMYGAGGIGAYREDPSMGYSARYGAGFSRGYDFRGGYGGPDESYGAYNSGGAPNAGGYAGSYDMGMGTGYPAGGRGSFYGSRGAGGYDGAGSAPSGRYHPYGR Homology
BLAST of Spg001916 vs. NCBI nr
Match: KAG7017783.1 (Nuclear pore complex protein, partial [Cucurbita argyrosperma subsp. argyrosperma]) HSP 1 Score: 660.6 bits (1703), Expect = 1.2e-185 Identity = 356/414 (85.99%), Postives = 365/414 (88.16%), Query Frame = 0
BLAST of Spg001916 vs. NCBI nr
Match: XP_023528997.1 (LOW QUALITY PROTEIN: nuclear pore complex protein GP210 [Cucurbita pepo subsp. pepo]) HSP 1 Score: 656.8 bits (1693), Expect = 1.8e-184 Identity = 347/392 (88.52%), Postives = 354/392 (90.31%), Query Frame = 0
BLAST of Spg001916 vs. NCBI nr
Match: KAG6581052.1 (Heterogeneous nuclear ribonucleoprotein 1, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 652.5 bits (1682), Expect = 3.4e-183 Identity = 345/391 (88.24%), Postives = 352/391 (90.03%), Query Frame = 0
BLAST of Spg001916 vs. NCBI nr
Match: XP_022934343.1 (heterogeneous nuclear ribonucleoprotein 1 [Cucurbita moschata]) HSP 1 Score: 652.1 bits (1681), Expect = 4.4e-183 Identity = 345/392 (88.01%), Postives = 352/392 (89.80%), Query Frame = 0
BLAST of Spg001916 vs. NCBI nr
Match: XP_022982535.1 (heterogeneous nuclear ribonucleoprotein 1 [Cucurbita maxima]) HSP 1 Score: 651.7 bits (1680), Expect = 5.7e-183 Identity = 344/390 (88.21%), Postives = 352/390 (90.26%), Query Frame = 0
BLAST of Spg001916 vs. ExPASy Swiss-Prot
Match: Q8W034 (Heterogeneous nuclear ribonucleoprotein 1 OS=Arabidopsis thaliana OX=3702 GN=RNP1 PE=1 SV=1) HSP 1 Score: 134.8 bits (338), Expect = 3.1e-30 Identity = 140/384 (36.46%), Postives = 189/384 (49.22%), Query Frame = 0
BLAST of Spg001916 vs. ExPASy Swiss-Prot
Match: Q08473 (RNA-binding protein squid OS=Drosophila melanogaster OX=7227 GN=sqd PE=1 SV=3) HSP 1 Score: 115.5 bits (288), Expect = 1.9e-24 Identity = 125/366 (34.15%), Postives = 171/366 (46.72%), Query Frame = 0
BLAST of Spg001916 vs. ExPASy Swiss-Prot
Match: P09651 (Heterogeneous nuclear ribonucleoprotein A1 OS=Homo sapiens OX=9606 GN=HNRNPA1 PE=1 SV=5) HSP 1 Score: 110.2 bits (274), Expect = 8.1e-23 Identity = 120/340 (35.29%), Postives = 161/340 (47.35%), Query Frame = 0
BLAST of Spg001916 vs. ExPASy Swiss-Prot
Match: Q8BG05 (Heterogeneous nuclear ribonucleoprotein A3 OS=Mus musculus OX=10090 GN=Hnrnpa3 PE=1 SV=1) HSP 1 Score: 108.6 bits (270), Expect = 2.4e-22 Identity = 127/352 (36.08%), Postives = 162/352 (46.02%), Query Frame = 0
BLAST of Spg001916 vs. ExPASy Swiss-Prot
Match: Q6URK4 (Heterogeneous nuclear ribonucleoprotein A3 OS=Rattus norvegicus OX=10116 GN=Hnrnpa3 PE=1 SV=1) HSP 1 Score: 108.6 bits (270), Expect = 2.4e-22 Identity = 127/352 (36.08%), Postives = 162/352 (46.02%), Query Frame = 0
BLAST of Spg001916 vs. ExPASy TrEMBL
Match: A0A6J1F7E2 (heterogeneous nuclear ribonucleoprotein 1 OS=Cucurbita moschata OX=3662 GN=LOC111441536 PE=4 SV=1) HSP 1 Score: 652.1 bits (1681), Expect = 2.1e-183 Identity = 345/392 (88.01%), Postives = 352/392 (89.80%), Query Frame = 0
BLAST of Spg001916 vs. ExPASy TrEMBL
Match: A0A6J1J2Y6 (heterogeneous nuclear ribonucleoprotein 1 OS=Cucurbita maxima OX=3661 GN=LOC111481383 PE=4 SV=1) HSP 1 Score: 651.7 bits (1680), Expect = 2.8e-183 Identity = 344/390 (88.21%), Postives = 352/390 (90.26%), Query Frame = 0
BLAST of Spg001916 vs. ExPASy TrEMBL
Match: A0A0A0LG75 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_3G839850 PE=4 SV=1) HSP 1 Score: 651.0 bits (1678), Expect = 4.7e-183 Identity = 342/385 (88.83%), Postives = 351/385 (91.17%), Query Frame = 0
BLAST of Spg001916 vs. ExPASy TrEMBL
Match: A0A5D3D587 (Heterogeneous nuclear ribonucleoprotein 1 OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold257G00140 PE=4 SV=1) HSP 1 Score: 642.9 bits (1657), Expect = 1.3e-180 Identity = 342/383 (89.30%), Postives = 349/383 (91.12%), Query Frame = 0
BLAST of Spg001916 vs. ExPASy TrEMBL
Match: A0A1S4E4Y8 (heterogeneous nuclear ribonucleoprotein 1 OS=Cucumis melo OX=3656 GN=LOC107992116 PE=4 SV=1) HSP 1 Score: 642.9 bits (1657), Expect = 1.3e-180 Identity = 342/383 (89.30%), Postives = 349/383 (91.12%), Query Frame = 0
BLAST of Spg001916 vs. TAIR 10
Match: AT5G40490.1 (RNA-binding (RRM/RBD/RNP motifs) family protein ) HSP 1 Score: 343.6 bits (880), Expect = 3.1e-94 Identity = 233/428 (54.44%), Postives = 265/428 (61.92%), Query Frame = 0
BLAST of Spg001916 vs. TAIR 10
Match: AT3G13224.2 (RNA-binding (RRM/RBD/RNP motifs) family protein ) HSP 1 Score: 271.6 bits (693), Expect = 1.5e-72 Identity = 190/364 (52.20%), Postives = 234/364 (64.29%), Query Frame = 0
BLAST of Spg001916 vs. TAIR 10
Match: AT3G13224.1 (RNA-binding (RRM/RBD/RNP motifs) family protein ) HSP 1 Score: 210.7 bits (535), Expect = 3.1e-54 Identity = 107/180 (59.44%), Postives = 139/180 (77.22%), Query Frame = 0
BLAST of Spg001916 vs. TAIR 10
Match: AT1G17640.1 (RNA-binding (RRM/RBD/RNP motifs) family protein ) HSP 1 Score: 173.7 bits (439), Expect = 4.3e-43 Identity = 139/350 (39.71%), Postives = 187/350 (53.43%), Query Frame = 0
BLAST of Spg001916 vs. TAIR 10
Match: AT2G33410.1 (RNA-binding (RRM/RBD/RNP motifs) family protein ) HSP 1 Score: 142.9 bits (359), Expect = 8.1e-34 Identity = 144/396 (36.36%), Postives = 193/396 (48.74%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Sponge gourd (cylindrica) v1
Date Performed: 2022-08-01 Position : 0 Zoom : x 1
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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