Spg001962 (gene) Sponge gourd (cylindrica) 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.ATGGAGTGGCAGAGAAGAAACCCTCGTGAAGAAGTTCGTCAGATTCCAGAACTTGAAGAAGATGAAGAGAGAGAGAGAGTGAAAGGTTGTGGGTTGCGTTGGGTTTTGTTTGATTGAAGAAGATGAAGGAGACTAGGAGAGGGAGAGTGAAAGGCTGGAGCTAGGCGTCTTTTGAATATTCAAGAAGACGAAGAGACAAGAGAAGAGATTGAGAGAATTAAAGAAATTAGGAAAAACATGAAAGTAAATTTATTTGGAGGAAAGAGATTAAATAAAAAATAGAGTGCCCTCCCATTTTTTTTGTCTCTTTTTCCGATGGCTATTCTTAACTCTCCTTTCAAGAAATTAAATAAACTCAGCTAAGTGTCATGCAAAATGCCATCTGTACTCAATACCAATATTCACTCTCATACTTGTGTCATTTCATTTTCATTCTTTTTTTCAAATGGCTATTTTCCCTCCATAAGTGAAGCTCCTATTTTATTTATATTTAAATATTATTTCTCAAATTGAAACTTACGATACCCGATACACTAAAATTTGATTTCGATACATGTTCCGTTTCATGAGTTAACAACCTTGTGGGTGGTAATGATTAATTCTTATCCAAAAACGGTGACCCAAACTACAAATCTTAGATCTCATTTGAAAGACGATACTAATGGTTGTAGGAAAAATCTTGGTGCCCTAGACCATATAGTCAATAGAGGTTTAGGAGAAAAATACCATACGAATCTCCATTTACTAGTCCTCTAAATCTAAAATAAATAATGTAAAATAAAAAACAATATAACTACAGGACTTACAACTAAGCAAGCTATTTACAATATCATATCTAATTTATATGCTATAACAGGTATCAATATTGGGCACCGATTCTATTCAAGGGCTGAAATGGTAGCTGTTGGGTTTCACAGCCACTGGCTGAATGGAATTGATTACATGGGATTGTCATACAGCAAAATGGTAAAAGGATTCTCCAATTTGTTTCATTCAACAATTTATTTACATTATGAATATCATTCAGTCTTGGTACCATTATTGTCATTACTCCATCATTGATTTTACAAACTTTCTTCTAGACCAGAATCCTAGTTGTTATCATCGTTTTTTTCTTGGGTAAAAGTCCACAAAGAAACACTAGGTTTCTTATACGGGTTTAAGCTATGGAAATGTAAGGGGCATGAGATTCTACAGCGCATCACTTTGCCTTCTCAAAATTCATTGCTCTCTGCAAAAGAAATGTACATTGTATGGTGTTTAGTCATTCAAGCATTTGAAACCATTTGTGTGCACGTTTAAACAAAGTCATTCTAATTTTAGGCTTCCAACATACACATAATAAATGTCTAACATTCCCACATTGCCTTGAGCTATATTCATTTAGAGGATGTCTCTTTAAAATGTTGTGAAATCATGTATTTACATTAAAAAGAAAGCACGAGTAATTTGGATAAGAATCTAACTAAAAAATAAAGATCCTAAGAAGCACGGACACGCTACATGCTAGCGACACGACATTGACACAACAAGACGACAATTTCTAAAAATATAGGACACGACACGTGACTCGTTATATATATATTATATGTATATATTGTCATAGTAATACTTCTAAGTAAATCAACCATACAAATTTAACATAACAAAACAATATGTACTTCATTAATAATTTAATAGTTCCGAAGAATAAAAATTAAAACCATTAATAATAATAGTTCCAAAGAAAAAAATGAAATGAACTAAAAAAAAAAATGAAGTGTGATCTGACATTAATAAGAGGTGAAAAAACAAATAAAAGTGTATGAGAGAAGGAAACATTGTTTTAAATAATATTTTGTTTATTATATTCTCAAGATTTGGTTTCTCAAGGATGTCCTTGGGTCAGACATGTCTTTTCATTTTCCTTCTTTATTTTATTTATCATAATCTCAAGATTTGGTTTTTCAAGAATGTACTTGTGTCAGACATGTCTTTTCATTTTCCTTCTTTTTTACTTTATTTTCTATTTTTATTTTTAATGCTTTCTTCTCCAACCAACTAAGTTTTTTACGTCCACCACTGCTATTTTTCATTTGAGGGCGTGTCTTGAACGTGTCCTTCACGTGTTTGGATGTGTTCGAAATTAGAAAAAAAAGGACACACAAAATAGCGTGTCCAATACGTGTTAGGCACATGTTGGAGCGTATCCGTATCTGACACGGACACTTCATACAAAATGAAGTGTTCATGCTTCCTAGTAAAGATGAGTAACATAAATATGAGCAACTAAGATTTGGCAGTAATATAAGGGAACTAATATTTATAACTATGGCTTGCTGGGGTGTGTTATGTTTTTTGGGGTTTATGGGGAGAGAGAAATAATAGGGTTTTTAGAGGAGTGGAGAGGCCCCTGTCGGATGTTTGGGCCCTCATTAGATTTCATGTTTCTCTCGGAGCTTCGGTTTCGAAGGCTATTTGTAACTACTCGATAGGTCTTATTAATCTTGATTGGAGTCCCTTTCTTTAGTTGAGTTCCCTTTTGTGGGCTGGTTTTTTTGGATGCCCTTATATTCTTTCATTTTTTCTCAATGAAAGCCGGTCTTTTTCTCAAAAACTAATATTTATAACTAATATAAAGGAAATTGAATATTCATTTGAAGTCAGTATAAAGTTGTCTTTCATAGCCAACTCGTCCCCTTTGGAAATCATTTAGTGAATTGGTACATTATTGGGAATTGAAGGATATATATTACCTTGCATCGATCTTTTCATTTATGGAATTTTTTCCAACTTTAATATGCTTTGCCCTATCATGTAGGATTGGATTTTGAGCTATAGAGATGGTAGCCTTGGTGTCACACTAAATTCGTATAGGTGTTCTCTGCATTCTTATCATTTAGTGCATTAGTAGTTTGTTCTATTGTTGGAAAATGATGGATATATATTACCTGCATCAATATTTTTTGTTTATGAAATGTTTGCCAACTTCAATGTGCTTTGTCATATCTTGTAGGATTTGATTTTGAATTATAAAGATGGTAGCTTCAAGTATCCTTAGTTTGTATAGGTGCCTTCCAAGAGAACTTCAATTCTTCAAGTATTCTTTTGATCCATATATCAATTTTCTCACAAATTATATGGGCTAAAGCCTCAAAATTTTGCTTCGGCACTGCTCCTTGCTATGACTAGGTTCATTCCAATCTAAAAAATAGTAATAAAAGTAAATCTTATCAATCTCATGACTTTGATTTGCCCTCTTTGTCGTGAGAATGGGGATTTTTCGTTTCATATTTTCTTCAGTTGTTCATACTCGATGAAATGATGTTCAAGCTTCTCTCTCTTTTTGGATCACTTCTTCAGCTCCTAGTTGGTCCTCTGGTTCACAAACCAATTTGTTTTGGATAAATGCGTTTAAAGCTCTCCTGTTAGAATTGAGGCTGGAAAGTATTCAAAGATTTTTCGAGATCAAGTATCTCTCTTAGGTTGATCATTTTTATTCTGCAGTTTCAAAGCTTCTTTATGATGTTTTCTTTCCAAGTCTTTTGTTGCCTTTTCATTACAAGATTTTTGTTTAGTGTGTGATGTTTTTTTTCCCCTTTGTAATTGTCTTTTTTTGCTTTTCTTCTCTCACTCTCTTGTGGAGTTTGTATCTTTTGAGCATTAGTCTCTTTGTATTATTTCAATGAAAAGTTTTTTTTTTTTCTTGTTTTTTGTTTTAATTTAAAAGTAAATCTTATCTTTAGAATTCAAGGACACAAATGTACGACCTATAGAACAGATCCTCTTCAAGTAAGGTCGTAAAGATTTTATAAGCTTGGAATTCTTCTATCCTTGGTGCAATAAAAGTAAATCTTATCTTTGAGCAAGAAATCTTTTATCTTTGGTGCTTCTTGCTCAATCTACATCAATGTAAGCTTGGAAGGTGGTTGTGCTTCTAGAATCATTTACCTTTTCCAAAGGTTTCTTTTAGGTGTCTAAAAATTTTATAGGTAGCTTCAAAATGAGTTGGTCATGCTGAGTTGATAAATTGGCTTATTATACTTATTTTAAACGTGATAGTTGGGCATGTGTCAATTAACAAATTAGTCTTCCTACATGATTTTGGTATTGTTCCTTCTTTCTTATTTTTGTTTTCTTTTTTGCTGGTAATTTAAAAATAGGTTCATTAGGAGTTTTTAGTATTTAGCATCCAAGTAAATAGTATCTTCAAGTAATTTAATAACATATTTCTTTTCATTAATGAATATACCTTTCTTTGATCTTGCAAAATCCATTCCTAGAAATTATTTTAAGGTTTTAGGTCCATGATTTGAAATTTGTTTGCAAGATTTCACTTATAATTAGCTAAACTTCATCATCACTCACGAGAATAGTCCATCTACATAAACAATTAAAATTGTAATTTATATCATTCTCGAAGAGTTTATGGAAAATGGTATGGCGCACTTGACTTGACTATGAAGAAATCTATAAAGAGCCTTCAGTGCGAGAAATCTTAACTGTAGTCTGTAGGAATGTGGGACTTCAAAAGATGGAGGTAGCAATTTGGTTAGATGGGAGATACTCATACTCCCTTGCCTATATGTAAAGGGGCTTTAGTGGGGGAAACCCTTTTTTGATAGGAAACAAGAAAATATATTGAAAAAGAGAGGCTCTTCACCTATGAAGCACGAACACGTGAAAATAGGGGAGGAATCTGTGTCAGGCACGTGCATGTCCGTTTTTTTTACCTCCTTAACTTAAACTTAAAGCCTAGCCATTGTCATTCGATTTATTTTCTTTCCAGTGGCTGAAAGGATTTATATATATACTAAAAGAACAACGTATCCTCAACGTATCTATATCTTAGTTTTTTAAAAATTGACGTATCGTCGTGTCCTGTCGTGTCTGTGTCCGTGTCCGTGCTTCTTAGCTCCTCACAGAAGAAAAGAATGAGCTTTCCCCACTAAGCCTTTGGATTACAAAAAAAGAGCCCCTAGCCCATCTTGGGGGTTTTCTTGCCGCTCTTACGGTCTTTAGTGTGCCCCTCTCCCCCCTCAATACCCCTTTGTTTTCTTTGCTTTGAAAGGTTAAAATTCCAAAGAAAATCAAGTTCCTTATTTGGCAAGTCTTGGACCAGAAAAGTGACACCCTATATTGTGTGTAGAGGAATTCCTCTTTCTGTTTGGGGCCTTAGTGGTGTTTCTTGTTTAGAGGAGCGTCAAAGGTACTTGACCATTTTTTTTGGAGTTGCTAGTTTAGCTAGTTGATTTGGGCTCATTTTCTGGAGTTATTTGATATTTCCATGGCACACAACAAAGATCTTAAGGTGTGTTGGAGGAGGTTTTGATGCACCCTCGAGGAAAAGGGAGATTTCTTTGGCATACTTGCTTTTTTGCTAATTTGTAGGAGTCATTTGGTATTTTCATGGCATGCAACAAAGATTTTAGGGCGATGTTGGAGGAGGTTTTGATGCACCCTTAAAGGAAAAGGGAAATTTCTTTGGCAGACTTGTTTTTTTGCTATTTTGTGGGGTATTTGGGTAGGGAGGAATAATAGAATATTTAAGGGGTGAGAGAGATCTTGGGGAAAGGTTTGGAAGATTCATAGATTTAATACCCCTGCATGGGGCCTGTGGGCTTTTGTTCCAAATTTGTTTTGTAATTAACAGCTAGGCCTGATACTTGATAGCAATAGCCTTACATTTTTTCTTGGTAAACACCCATTTACATCCGAGGTTTTCTTATTTTTTTGATAGATATTCTATTTTAAGGTAAACACAAGTAAATAGTTATTACTAATTCAAAAAAAAAAAAAAAAAAGAAATTGTATATACTTTTTTTAATAATTAAAATCTGACTAACTTCTCAATGCCAGATACTATTGAATCATGCAATTATTTTTGAGATTATGATGAGGCAAGGAAAATTAGGGCTATCAAGCGTAAGACTAACTAAAACAAATAATTATAATTACAAAATTAGCCCTATATCAGATTGGTTGGGATGACTGTAGCTAGTTTGCAGCATATTTTAGACATCCATCGCTCTTTATTTTTAGACCTCTACCCCTTTTCTTACCTTGAACAGCAAAAACATACACCTTTTTTTTTTTTTTTTTTTAAAAAAAATTAATTTCTTTAATGAGAAGCTTTACTTAATTAAATAAAACACACTAGGGCAACCCAAAGTGGGGGTAGAGAGAAAGCTTAAACACACACTTCTATTATATTTTCTTCTTTTCTTCCGAATAAGTTGTATAGGTTTGAATGTGCTATATAGTTTATGTGTGGTATCTAAAGGAGCAACTTCATTGATGAACGAAAGAAATACAAATGAAGATAGGTGTTGATCGAAGAGGGAGAAAAATTATGATAAGCCTTGTTGAAGGTGTGTATCTACGGGGAGGCAATGAAAGAAACTAAATCCAGACAAAAAAATTACTTCAACTTTTTTCTAACCAAATTTGTGACTTCTGACTTTTTCCTTAAAGGAATGGTCACGAAAGAGATGTAAGATAATGTCTTTTATGTGAAAAGAAGCCAGACACCAATGGGCCCAAAAAGATTTAGAACAGTCATATAAATTTGCAAGGAGAGAACCTTCGGAGGTTTTGCATGGGAAGTTAACACTTTGAACCGCATTTTGAGTCGTTCTTCTTTGTTTTTGGGTCCTTAGTGGTGCGTCTTGTGCAGAGAAGCTTCAGAAGATATTGACAATTTGTTTTTGGGTTGCCAGTTTGTGCCATCGATTCGGGACTGCCTTTTGGATTCCTTTGGGGTTTATTTTGCTTAGAATAGGGATTGCAGGTCAATGTTGGAGCCTTGGAGGAGGTGGTGTTCAAAAAATATTAGGTTTAATACCTCATTACCTCCTCGTGGGTAGTGACCTGGAAGACCTTTTGTAATTATCAATGAAGTGATATTCTTTTGGATTGGAGATCCTTTTTATAGGATTGGGCTCCTCTAATTGGGCTTCGTTTTTCAATTTTTAATTTTTTTAATTTTATTTATATTTTTATGCCATTGTATCTTCTTTCATTTTTCTTAATGAAAGTTTAGTTTCTTATACAAAACAAGTGCTAGGAGAAAGGACAAATGATATGGCTTCTTGGTGGATTGCTTTTTGTATAAAGTAATCCACCAAAATATGGCTTCTTGGTGGATTACTTTATACAAAAACTTCTTTTGTAACTACAACTTGCTTATGATTATTAGCAATTGACAGGCCCTTTTGAGATAGCTTTTGGGAGGGGTGATCTCCACCCTGGCTCCTAGGTTGTCTTTGCCTTTTTTGTGTTAATATATATTCCTTTTGATGTTTCTTATAAAGAAAAAAAAAAGAAAAAGAAAAAAAGAGAAAGGGCAAATGATACAGATGAAAATAGATGCAAGATAGTGATACAAAAGCAATCACTTGATTCTTTTTTTTGTCTCCATACGTTCTAAGTATCTAATACATTAATTGTGTGACTTCAGTGTATGATAAAGAATATCCATTAGGATTAGGATCTTTTATTTGGATGATTATCCAACGCAATTTCTTAGGTTCTTTTTGGAAATAATTGCAGTATAGCAATTACTCCTTCCCACTTGCGGTGGCCATTGTTTTATCGGGCATGTACGAGGATGACTTGGATAATGCTGAGGATGTCGTTTACACTGGTCAAGGTGGGCAAAATTTAACTGGCAATAAACGTCAGATACGGGATCAAGTAATGGAACGTGGTAATTTGGCTCTCAAGGTATGTATGTACCTCACGATTTTTTGAAAATAGAACTCCCTTATCTTTTGATCTTATGTAACCTGATTAGGTTCAGGTAGTATATGAAATTTAAGGAATGAGTATATATATGTATATGTATGTATATATTATGATAAGAAAGGGTGGAAGGCGAAAAGTATATTTGATTAAATGGTAAATTGTTACAAGTTAGAACATGAAGGTTTGCAGAACTATGGATTGGTTTGTTTGGAAAGATACTTCCAGGCAATTGCTATTAGAGTTTTCTTTGAGTTTTTATTTTTGTAAGAAGTTTGGAATTCAAAACAATAGGTTGAATTAAAAGATCATCATTAAACGGTTTATATACTTTTCTTGGGAATGTATGTATACCTAAAGGCGTCAAGTCTGTGTGTGAATATGATCTTGGGAATGGGATGAAAATTTTACTTTTTGAAAATATTTTGGCTGAAACTTCTTCTCTCAAATCTCTTTTTCCTTGAATTTATATTTTACATATCTTTGAATGGTGATGATCTTTTTCTCTTTAGCTTCTCTGCTGAGTTGAAAATTTTCTTCTGGAAGTGTTATTTTTTTATGAAGAAAACTATTGACTTTACTTCCGTGTTGGATATTCTAAAAGATGTGCGCACTTTTATTCTGTAAAGATATGAGGGCGAGGACTTTTGTTTCTGGTGCATTGTTTTCTTTTGACTCTTGCTTTTCATTGTCATAAATTATTATAGTGGAATTTAATCCTCTGGAAGTTTTGGGGTCCTTTTTGCTGCTTAAGTTAGTCTAGAGTGTGACTGCAATTAGGAAATCCTCAGATTTTTTATTTTTTATATTATGTTTTTGTTTTTGATGTCCTCCATGAAGGCTACTTTTCAAACTTTGTTCCTCAATCTACACATCTTGATTATAGCATGGAAAATTTCTGTTGCATTTTTCAAATGTTTCGTGCTTAATTTGGTAGTTCAAAGTATAGTTCTTTGTCTGACCGATTCTCCACTAAATCCAGAATTGTATTGAGCAAGCTGTCCCAGTTAGAGTGGTCCGGGGGCATGAATCTGCAAGTAGTTACTGTGGGAAACTTTACACATACGATGGCTTGTATAAGGTACTTTTTTTTTAAGAATTTTCTTTATTCGTTGGATTTAAATTTAGTCCTATGACAAAGAGGTAGTGTGTTTTTGAATTAAACATAATAAACCACCACTTCCATCCTACCATATAGCGTATCCTAGCAGTATTGAGTCCTATGACATAGAGGTAGTGTGCTTTGTACCCATATCTTTACCATCTGTCAGAGAAAAGGTCGCATTCGATAGCCTTAGTCTTGTCTTCTTCTGACTTTTCTTCGCCTTGGTTTTTTTGTGCCCTCCCACTGATTGGAGAGGCAGTTGAGGTCGTGAATCTCCTTTCCCTTATTGCTAACCAGGCAATTCGTCATGGGAGAAAGGACTCTAAGTTATGGACCCTAAAGCCTAGTGAGGGTTTCTCTTGTGCCTCTTTTTTCCACTCCATTTCCTCCCCTTCTCCTCCCTTGGGTGCCTCTGCTTTCCCCTCTCTGTGGAAGGTTAAAATTCGCTAGAAAATTAAATTCTTCGCCTGAGAAGTTTTGCGTAGCTCGTGAACACTCGATTAGATTCAAAGGTTTTGTGTTGTGACCACAGTAGTGTGTCCTTTGCAAGAGTAAGGAGGAGGACCTTCATTGTTTGCTATGAGATTGTCCTTTTGTCTGTTTTATTTGAAATCAATTCTTAAGGGGTTTTGGGGTATTGTTGACTCGTTATATATTGATTGTTGCTCCATGTTTGAGGAAGTTCTTATGTATCCCTCTTTTCATGACAAAGGAAGAGTCTTGCGGTTGGTGTGTATTTTTGTTGCCTTATGAGGTATTTGACTTGAGAGGAATAGTATAATTTTTAGAGGGGTTGAGAAATCCATGAGTGAGCTTTGGGAGACAAGAAGGTTTAATTTGTCTTTGTGGACGTCTGTGACTAGGCCGTTTTGTAATCATCAACTTAGTTTTACATGATAGATATTTATTTACATTGAGATGATTTTATTTATTCATTATAATTTTTGTTTTTCTTTTATTTTTGTCTCCTATGCAGAGTTCGTATTTTTGAGCATTAGTCTTTGTTCATTTCCTTAATGAAAACTTGTCTCTTGTATCAAAAAATCATTAGCTTAGTTTCATTATTTTCGATTGGCACCCGTTTCTATAGTTTGTAAGACTGTTTTTGACGGGCTTATTTTTTGTATGCCCTCGTGTATTCTTTCATTTTTTCTCAATGCATGAGTTTCTTATAATGAAAATGTTATTGGTTGTGCTATACTAGCATGCTTTCTTGAATACTAAAACTTTACAGTGCAATGCTTAACTTATTTAACATTTTAATGTTTGCTATCGAACTTATTTAAAAAAAAAACTATTTACTATCAAGTTTAAATGTTTATTCTCTGGAAGGAAAGAAATGCAAGAAAATTGTAATTCCTTTTATTTTGGGAGGGACTCCTTTTCCCTTTTCCGTTAGGTTGTATGGACTTTTTTTTTTGGATTGAATTGGTTTTCATTTCTTATAAAAAAAAGTTGTAATATTGTTTATTTCAGAATCACCTGCCATTAGATGTTTAAGCATTTTTCTTCTGCTGTTATATTAAATGACATTTAATTTTCTCACAATGATTCAGGAAAGGTCTTGCATGTCTAGTTGTAGTATCTTAGTTTTCACTTTTCAGTTAGCAAATTTATACAAGGACGGTCTAATTATCTGATGACTCCTGCATTGGGATGCTAGTTATATATATTGCTCTGCTGTGCTCATTAAACCTTTTCAAGAATTGAGCATGCATTCTATGTCGGTTGGGCCTTTTTGTTGTATTCTATGTCGGAGGTCGGAGGGCGAAGGAAGATCTTGATCACATTTTGTGGAGTTGACTTTGCTCATTCTATTTGGAGTTTGTTTTATGAGGCTTTCGGGTTATAGGGCAGGAGCTTCAGAGATCTCAGGAAGATGATCGAGGAGTTCCTCCTCAATTCACCATTCAGAGATAAAGGGAGAGTGTTATGGCTTGTTGGGGTGTGCGCAGTTCTTTGGAGTTTGTGGGGAGAGAGAAATAATAGGGTTTTTAGAGGAGTGGAGAGGTCCCCATCTGATGTGTGGGCCCTCATTAGATTCAATGTTTCTCTCTGGACTTTGGTTTTTGTAATAATTTGAGCCAGTAGAACATATCAAGATATGTTGCAATAATATATATCAAACTTTACAAAAGCTGTAATTTTATGTAATGTTTTGATTTTGTACAGTGGATTTACTAGAGATTATGGAATTCTGTTGATACTTAAAGTTATTTTTAATGCTTCTTATCTCTACCCACCCCCCCTAGGTTGTTGACCTTTTCTTTTGTGTTTATAGTACATTATCTTGTTTCTTATTAAAAAAGTTATTTTAATGCTTATTATGACACGTTGTTATGTTTATTATTCAATTGATACTGTACTTTATATTTCACAGGTTATACAGTATTGGGCAGAAAAAGGTATTTCTGGATTCACGGTGTTTAAATTTCGTCTTAGGCGGATTGAAGGACAGTCATTGTTGACTACGAACCAGGTCTATACTTCTCTGATTTAATAGCTATCTTGTTTTGAAGAATTTTTATGACTTAGTATGTTACGATTCTACTTCCATATGGTGCACTCTTTATCAAGCTTCTGCAATTAGCTCCATTATGATTTATGTCAAGCGGATTTCATTTGTAAACTCTTTTGGTTTGGACCTTGTTGTCTCTTCAGGATAGTTTGTATCCTTCCGTTTTCCTCCAATGAAAAGTCCCCCTGTTGCTATTAGAAAAACAATAATTGCTATCATATTTTACTAGTCACCTATTTGTCAATCCCAAAGCAAATTTTATTTGGTAAAGAATGTTTGAAACTTCATTACACTTGACAGCTTTTATTCTAACTAATCACTATCTTTATTCTTTATAGTCTCTCCCTCCCTTCTATTTCTGCCCATGCTAGTTATGGTTTCTTATTTAGCTGTTTTTCTTACTTTTTTTCCCTTTCCTTGGCCTATTTGTTTTGTTTTCTCTTCTGTTGTCACTGCCTACATTCCTTTTTCCCTAGTTCTAATTGTCTACGTTAATACAAGTTTGAGATTTTTTGAAGCATTTTATTAAACATATGTTTAATGAATAGAGGTGAGATATTCTTTATCTATGCTTTGATCAATATAAACGTTTGCTCTTGTAACAGGTTCAATTTATTTATGGTCGTGTTCCCAAGTCAGTTTCAGAAATACGTGGGTATGGAATTACATAAGCTGATAAAGTTGCAAGGACAATACACTTCAGGGTTATTTTAAAATTAAAGTGCCTTTTTATGTTTATTTTTTGTTTAATTTAAATGGTCCAAGGTTGGTGTGCGAGGATATCACTGGGGGTCAGGAGGATATTCCAATTCCAGCTACTAATTTGGTTGACGATCCACCTGTTGCTCCCACAGGCAAGTGA ATGGAGTGGCAGAGAAGAAACCCTCGTGAAGAAGTTCGTCAGATTCCAGAACTTGAAGAAGATGAAGAGAGAGAGAGAGTGAAAGGTATCAATATTGGGCACCGATTCTATTCAAGGGCTGAAATGGTAGCTGTTGGGTTTCACAGCCACTGGCTGAATGGAATTGATTACATGGGATTGTCATACAGCAAAATGTTGTTCATACTCGATGAAATGATGTTCAAGCTTCTCTCTCTTTTTGGATCACTTCTTCAGCTCCTAGTTGGTCCTCTGTATAGCAATTACTCCTTCCCACTTGCGGTGGCCATTGTTTTATCGGGCATGTACGAGGATGACTTGGATAATGCTGAGGATGTCGTTTACACTGGTCAAGGTGGGCAAAATTTAACTGGCAATAAACGTCAGATACGGGATCAAGTAATGGAACGTGGTAATTTGGCTCTCAAGAATTGTATTGAGCAAGCTGTCCCAGTTAGAGTGGTCCGGGGGCATGAATCTGCAAGTAGTTACTGTGGGAAACTTTACACATACGATGGCTTGTATAAGGGCAGGAGCTTCAGAGATCTCAGGAAGATGATCGAGGAGTTCCTCCTCAATTCACCATTCAGAGATAAAGGGAGAGTGTTATGGCTTGTTGGGGTTATACAGTATTGGGCAGAAAAAGGTATTTCTGGATTCACGGTGTTTAAATTTCGTCTTAGGCGGATTGAAGGACAGTCATTGTTGACTACGAACCAGGATAGTTTGTTCAATTTATTTATGGTCGTGTTCCCAAGTCAGTTTCAGAAATACGTGGGTATGGAATTACATAAGCTGATAAAGTTGGTGTGCGAGGATATCACTGGGGGTCAGGAGGATATTCCAATTCCAGCTACTAATTTGGTTGACGATCCACCTGTTGCTCCCACAGGCAAGTGA ATGGAGTGGCAGAGAAGAAACCCTCGTGAAGAAGTTCGTCAGATTCCAGAACTTGAAGAAGATGAAGAGAGAGAGAGAGTGAAAGGTATCAATATTGGGCACCGATTCTATTCAAGGGCTGAAATGGTAGCTGTTGGGTTTCACAGCCACTGGCTGAATGGAATTGATTACATGGGATTGTCATACAGCAAAATGTTGTTCATACTCGATGAAATGATGTTCAAGCTTCTCTCTCTTTTTGGATCACTTCTTCAGCTCCTAGTTGGTCCTCTGTATAGCAATTACTCCTTCCCACTTGCGGTGGCCATTGTTTTATCGGGCATGTACGAGGATGACTTGGATAATGCTGAGGATGTCGTTTACACTGGTCAAGGTGGGCAAAATTTAACTGGCAATAAACGTCAGATACGGGATCAAGTAATGGAACGTGGTAATTTGGCTCTCAAGAATTGTATTGAGCAAGCTGTCCCAGTTAGAGTGGTCCGGGGGCATGAATCTGCAAGTAGTTACTGTGGGAAACTTTACACATACGATGGCTTGTATAAGGGCAGGAGCTTCAGAGATCTCAGGAAGATGATCGAGGAGTTCCTCCTCAATTCACCATTCAGAGATAAAGGGAGAGTGTTATGGCTTGTTGGGGTTATACAGTATTGGGCAGAAAAAGGTATTTCTGGATTCACGGTGTTTAAATTTCGTCTTAGGCGGATTGAAGGACAGTCATTGTTGACTACGAACCAGGATAGTTTGTTCAATTTATTTATGGTCGTGTTCCCAAGTCAGTTTCAGAAATACGTGGGTATGGAATTACATAAGCTGATAAAGTTGGTGTGCGAGGATATCACTGGGGGTCAGGAGGATATTCCAATTCCAGCTACTAATTTGGTTGACGATCCACCTGTTGCTCCCACAGGCAAGTGA MEWQRRNPREEVRQIPELEEDEERERVKGINIGHRFYSRAEMVAVGFHSHWLNGIDYMGLSYSKMLFILDEMMFKLLSLFGSLLQLLVGPLYSNYSFPLAVAIVLSGMYEDDLDNAEDVVYTGQGGQNLTGNKRQIRDQVMERGNLALKNCIEQAVPVRVVRGHESASSYCGKLYTYDGLYKGRSFRDLRKMIEEFLLNSPFRDKGRVLWLVGVIQYWAEKGISGFTVFKFRLRRIEGQSLLTTNQDSLFNLFMVVFPSQFQKYVGMELHKLIKLVCEDITGGQEDIPIPATNLVDDPPVAPTGK Homology
BLAST of Spg001962 vs. NCBI nr
Match: XP_022934519.1 (histone-lysine N-methyltransferase, H3 lysine-9 specific SUVH4 isoform X1 [Cucurbita moschata] >XP_022934520.1 histone-lysine N-methyltransferase, H3 lysine-9 specific SUVH4 isoform X1 [Cucurbita moschata] >XP_022934521.1 histone-lysine N-methyltransferase, H3 lysine-9 specific SUVH4 isoform X1 [Cucurbita moschata]) HSP 1 Score: 345.1 bits (884), Expect = 6.1e-91 Identity = 193/287 (67.25%), Postives = 199/287 (69.34%), Query Frame = 0
BLAST of Spg001962 vs. NCBI nr
Match: XP_023527230.1 (histone-lysine N-methyltransferase, H3 lysine-9 specific SUVH4 isoform X2 [Cucurbita pepo subsp. pepo]) HSP 1 Score: 345.1 bits (884), Expect = 6.1e-91 Identity = 193/287 (67.25%), Postives = 199/287 (69.34%), Query Frame = 0
BLAST of Spg001962 vs. NCBI nr
Match: KAG6581138.1 (Histone-lysine N-methyltransferase, H3 lysine-9 specific SUVH4, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 345.1 bits (884), Expect = 6.1e-91 Identity = 193/287 (67.25%), Postives = 199/287 (69.34%), Query Frame = 0
BLAST of Spg001962 vs. NCBI nr
Match: XP_022982665.1 (histone-lysine N-methyltransferase, H3 lysine-9 specific SUVH4 isoform X1 [Cucurbita maxima] >XP_022982666.1 histone-lysine N-methyltransferase, H3 lysine-9 specific SUVH4 isoform X1 [Cucurbita maxima] >XP_022982667.1 histone-lysine N-methyltransferase, H3 lysine-9 specific SUVH4 isoform X1 [Cucurbita maxima]) HSP 1 Score: 345.1 bits (884), Expect = 6.1e-91 Identity = 193/287 (67.25%), Postives = 199/287 (69.34%), Query Frame = 0
BLAST of Spg001962 vs. NCBI nr
Match: XP_023527226.1 (histone-lysine N-methyltransferase, H3 lysine-9 specific SUVH4 isoform X1 [Cucurbita pepo subsp. pepo] >XP_023527227.1 histone-lysine N-methyltransferase, H3 lysine-9 specific SUVH4 isoform X1 [Cucurbita pepo subsp. pepo] >XP_023527228.1 histone-lysine N-methyltransferase, H3 lysine-9 specific SUVH4 isoform X1 [Cucurbita pepo subsp. pepo]) HSP 1 Score: 345.1 bits (884), Expect = 6.1e-91 Identity = 193/287 (67.25%), Postives = 199/287 (69.34%), Query Frame = 0
BLAST of Spg001962 vs. ExPASy Swiss-Prot
Match: Q8GZB6 (Histone-lysine N-methyltransferase, H3 lysine-9 specific SUVH4 OS=Arabidopsis thaliana OX=3702 GN=SUVH4 PE=1 SV=2) HSP 1 Score: 252.3 bits (643), Expect = 7.0e-66 Identity = 139/275 (50.55%), Postives = 166/275 (60.36%), Query Frame = 0
BLAST of Spg001962 vs. ExPASy Swiss-Prot
Match: Q93YF5 (Histone-lysine N-methyltransferase, H3 lysine-9 specific SUVH1 OS=Nicotiana tabacum OX=4097 GN=SUVH1 PE=1 SV=1) HSP 1 Score: 109.4 bits (272), Expect = 7.3e-23 Identity = 82/274 (29.93%), Postives = 120/274 (43.80%), Query Frame = 0
BLAST of Spg001962 vs. ExPASy Swiss-Prot
Match: Q9C5P4 (Histone-lysine N-methyltransferase, H3 lysine-9 specific SUVH3 OS=Arabidopsis thaliana OX=3702 GN=SUVH3 PE=2 SV=2) HSP 1 Score: 107.5 bits (267), Expect = 2.8e-22 Identity = 88/271 (32.47%), Postives = 116/271 (42.80%), Query Frame = 0
BLAST of Spg001962 vs. ExPASy Swiss-Prot
Match: Q9T0G7 (Histone-lysine N-methyltransferase family member SUVH9 OS=Arabidopsis thaliana OX=3702 GN=SUVH9 PE=1 SV=1) HSP 1 Score: 105.5 bits (262), Expect = 1.1e-21 Identity = 76/274 (27.74%), Postives = 123/274 (44.89%), Query Frame = 0
BLAST of Spg001962 vs. ExPASy Swiss-Prot
Match: O82175 (Histone-lysine N-methyltransferase, H3 lysine-9 specific SUVH5 OS=Arabidopsis thaliana OX=3702 GN=SUVH5 PE=1 SV=1) HSP 1 Score: 102.8 bits (255), Expect = 6.9e-21 Identity = 91/286 (31.82%), Postives = 120/286 (41.96%), Query Frame = 0
BLAST of Spg001962 vs. ExPASy TrEMBL
Match: A0A6J1IZZ3 (histone-lysine N-methyltransferase, H3 lysine-9 specific SUVH4 isoform X1 OS=Cucurbita maxima OX=3661 GN=LOC111481473 PE=4 SV=1) HSP 1 Score: 345.1 bits (884), Expect = 2.9e-91 Identity = 193/287 (67.25%), Postives = 199/287 (69.34%), Query Frame = 0
BLAST of Spg001962 vs. ExPASy TrEMBL
Match: A0A6J1F7X9 (histone-lysine N-methyltransferase, H3 lysine-9 specific SUVH4 isoform X1 OS=Cucurbita moschata OX=3662 GN=LOC111441673 PE=4 SV=1) HSP 1 Score: 345.1 bits (884), Expect = 2.9e-91 Identity = 193/287 (67.25%), Postives = 199/287 (69.34%), Query Frame = 0
BLAST of Spg001962 vs. ExPASy TrEMBL
Match: A0A6J1J5F3 (histone-lysine N-methyltransferase, H3 lysine-9 specific SUVH4 isoform X2 OS=Cucurbita maxima OX=3661 GN=LOC111481473 PE=4 SV=1) HSP 1 Score: 345.1 bits (884), Expect = 2.9e-91 Identity = 193/287 (67.25%), Postives = 199/287 (69.34%), Query Frame = 0
BLAST of Spg001962 vs. ExPASy TrEMBL
Match: A0A6J1F303 (histone-lysine N-methyltransferase, H3 lysine-9 specific SUVH4 isoform X2 OS=Cucurbita moschata OX=3662 GN=LOC111441673 PE=4 SV=1) HSP 1 Score: 345.1 bits (884), Expect = 2.9e-91 Identity = 193/287 (67.25%), Postives = 199/287 (69.34%), Query Frame = 0
BLAST of Spg001962 vs. ExPASy TrEMBL
Match: A0A6J1D214 (histone-lysine N-methyltransferase, H3 lysine-9 specific SUVH4 isoform X1 OS=Momordica charantia OX=3673 GN=LOC111016869 PE=4 SV=1) HSP 1 Score: 342.4 bits (877), Expect = 1.9e-90 Identity = 189/287 (65.85%), Postives = 199/287 (69.34%), Query Frame = 0
BLAST of Spg001962 vs. TAIR 10
Match: AT5G13960.1 (SU(VAR)3-9 homolog 4 ) HSP 1 Score: 252.3 bits (643), Expect = 5.0e-67 Identity = 139/275 (50.55%), Postives = 166/275 (60.36%), Query Frame = 0
BLAST of Spg001962 vs. TAIR 10
Match: AT1G73100.1 (SU(VAR)3-9 homolog 3 ) HSP 1 Score: 107.5 bits (267), Expect = 2.0e-23 Identity = 88/271 (32.47%), Postives = 116/271 (42.80%), Query Frame = 0
BLAST of Spg001962 vs. TAIR 10
Match: AT4G13460.1 (SU(VAR)3-9 homolog 9 ) HSP 1 Score: 105.5 bits (262), Expect = 7.5e-23 Identity = 76/274 (27.74%), Postives = 123/274 (44.89%), Query Frame = 0
BLAST of Spg001962 vs. TAIR 10
Match: AT4G13460.2 (SU(VAR)3-9 homolog 9 ) HSP 1 Score: 105.5 bits (262), Expect = 7.5e-23 Identity = 76/274 (27.74%), Postives = 123/274 (44.89%), Query Frame = 0
BLAST of Spg001962 vs. TAIR 10
Match: AT2G35160.1 (SU(VAR)3-9 homolog 5 ) HSP 1 Score: 102.8 bits (255), Expect = 4.9e-22 Identity = 91/286 (31.82%), Postives = 120/286 (41.96%), 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
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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