Sgr016989 (gene) Monk fruit (Qingpiguo) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: exonCDSpolypeptide Hold the cursor over a type above to highlight its positions in the sequence below.GAATTAGGAGGAGGATGGCTGGAATGAAAAAAGAGATGAAAAGGGCTTGGCAGTTTTTAAGGTCAACACAGTTTTGGAAGATGGCAGTGCTGTGGAATCTCTCTGTCCTCTACTCTTACTTGCAGCTATTTTATCGAAGCTTCCTCTCTTTCCCCATTAATCACAGATCTGAAACCTACTACTCCATTAAAAGCCCTTCACCTTGCACCTCAACCTCACAAGCTGTCGTGCCTCTTTGCATTATCACCGGTGTAAAGTTGTTTGTCACTTTCATGCTTTGATTGAAATTCAGTATGAATCTCTCTCTCTCTCTCTCTTTGTGTGCTTTTAATTCATTTAGCATCTTTGTTTTGAAAGTTGTAGGCTACTTCTGGATTGGGTGCAGCCGCTGCTCTTGCTCTTTCCAAACGTGGTTTCTATGTAGTTCTTGGTTGGTTACTCATGCCATTTCATTCATTTTCTCAACTTCTATTGCAATCTTGGTTTTGATATACCATTCAAGTCTAGTAGTAATAAATTAATGCTCAATTTGTAAATAAACATGCAAACATTATTGGGCCTTGTCTTCATTTCCACAACACTACGTGGCTTATAATGCTTTCAATTCTCGTTGTGTACCTTAAAACTATTACTGCCTTGAATCTTCCTTTTTGGGTTGGACAAGAGATTCTTTTATGAAATTTAGATGTGGTGAGTGAAGGTAGAAAATTTGTGGAACCAACTCTCTACTAGTCCAGAAAAAAGCTTGAACAAAGTCCAGTTCTTAACTTGTCCCTCCACTGAAGAGTCAAATTATCTTTTCTTATACTGTTTTTCATTGTCCATCTTCACTCTTCCTTTAGTTTGCCTGAGAATTGTCAATAGGCCTTTTTTATTTTTTGAGCGTTTGTCTTCAACTTGGCATTAGTTGACAGTCAAGAATGTTCCCAAAATCTTATGGGTAAATGCACCCTTGGGTGCCTTTAGAGAAATTTGGAACGGAAGAATCTTTAGGGACAAGGAGAAAACTTTGTTTGTGATCGGATTAATTGCTTCGATTTGGGTTTTTGTCCCTGGAAATTTTTGTAACTACCAAATCCATCCCTCATGGGAACTTTTTTGGTCTCTCTCTCGTATTGTTTGTGATCCTTCCTGTGCAGGTCATCAATCTCGTATTTATGGTATCCTTTGAATATCAAATCTATGGGGGTGGGAAACTGGTTCAGGCTGATAACAAGTAATCCAAAATATTTCTTATAACAATGATAGCCCCACAACCTTATATAAGTAAGCTAACAAGGTAATGGTAAAGAATTAATGGTTTTCTTGGAAGTCACCCTTATAACTGTAGAAGAAATGTTTAAGCCAGTTGCTGAGTCCACTTGAGATGCGTCAGGATCAATCTTTGAGTCCACAACACAACATTCTACTTTAACTACTTTAACAATTTCATAGATGATATAAAATTACAAAAGGGGAGGAAAGTCAAGCCCCAGGCCATGAAGATTACAGACAGCTCTTCCAATTGGCTATAAGACAATTAATACTATATTTGTCGAAAGGAGAAACATTTTGACACCAAGAAAATGCCAAAAAGGAAAGCGATTCTGTGAAACATTTGAAGGGCTTTGCCTTGTCGTTGAAGATCCTATTGTTCCTTTCTAATTAAAGAAACCATATGAAACCTCTTATAAATTGGAGCCAAAGGATCTTTCTTTTCCTTCTCGAAAGGGTGACCCACCATAGTTGTATTTAGAGATTGTTGATGTCAATGGGAAGAGCCACATTTTGATCGAAGGAGGAGAGAATGAAATTCCAGAAATTTCCAGCATAGGTGCAATTGAGGATTACGTTTCTTTGTGATTCTGAATCTTTCTTGCAAAGAGGACACCATCTTGGGGAAATAACGCACTGAGGGAGCCATTTTTGAGCCCTATCATGAGTGTTTATGCTTGAGTGGCTTACCTCCCATAACAAGATAGATGTCCAAATAAGAACTTTACAACCTTTTTTTAAGAAGGTCATTGGAATCAAGTTGGAAAATCCAATTGTCGTGAATTTGGAGAGGTGAAAAGTAGCTAGTGGAGTAAGGAAGCCCATTCTTGTGTTTCAAATCCTGAAAGTGTCTTTTGAATTTGAGATCCCAATTACTGGATGCCTCATTTCATGAGTCCTTTATGGAGGAGCTTTTTCGATTGGATAAAGCAAACAACCTCAAGTAGGCTAAAGATAAAGGGGAATTGCCAATACAAAAGTCTTTCGGAGGTAGAAAGATTATTGCCTATTGGATCTTAATTCTGTTATGGTCGTATAGATAAGGTCTCTACGTTGGTGAATGGACTTCCAAGGGCCTTTTGAAGAATGTGGAGAAAACATACTCAACCTTTGGTCAAAACAATTAGTCCTAAACTTTGCCTCAATGATTTACCTCCAAAGAGCATTATTCTCAATGTGGAACCTCAAATCCATTTAGCAAGGAGAGATTGGTTCATTTGCTTCCTATGCCGAGACCTCCTTCCCCCAAAGGGAGTTGAATCTTTTTTCACTTTGCCAATTGATAGCCACCTTTATCCTTGTTTCCTTCCTGGACAAAGTCTCTAAAAAGCTTTCCAGCTCATTAACTACTTTGTTAGGCATGGAGAATTAAAATTTATAGGGATATTTGTGGAAGTGGCCTTTATAAGAGTGAGCCTACCACCCTATGCCACGTACAAGGTCAATTTGATGTTCAATTTCCCTCGGTGGGGGAAGGCCAGCAAGTAATACATAAGGTGTAAGGTCAGAAAATTCCTTTGACAAATTTTGTATTTGATGGATGTATGACAAGTAAGAATAAGGCATCTGTAGGTGGGAGGAGTTGGAGAAATTTCTTCGCTGGGGAAAAACATAGGGGCATGGGGGGAGGGGTCACTGCTGGCCTTTCATTTCTGGACAATGGATTTTATGGCATTTAAGCTATCTTTACTTCCTTTGCATTCAAAAACATAGGAATTATGAATGGATATCAAACTACCAAGGTCTACCTAAAGTGAGGCGGCATGCATCTCCACAACATGCACCAAATTTCATTTGGATAGAACTTTCCAAAAGAAAATGGTACTAGGCAACACTTATGGACTTTTATATCAAACCTTTCGTAACCTAATCAATATTATATGGAGGGGTGAGTTTTGGTTTTAAAGCCAAAGGTTTTAACGATGGATCTGGCAATCACATTCTTGTTGCTGCTATCAATAATAATGTCACAAATTTTTTTATTGATTATATACCTTGTCTGAAAAATAGAATTACGTTGAGTATGAGTAGGTTGCCTAAGTGCAAGAAGGAGCTTGTGTAAACTATAGCTCAATCTATCACTCACATCTTCATAAGCATGTTTGACATCCTCCAATTCATTCTCCTCACAATTAGGAGGATCTTCCTTGACTGCACTATCATTTTTTAGCTGAAGTTGCTTATGCTATGGACATTCATTGGAACGATATCCTAGTTGATTGCAGGTGAGTGGTTTAATGTAGCTGTGTAGGGATTTTGTTTTGTAGTTTGGATTGAAGGGGTTTCTAATAGATATTGAACCAAGGAGAGATGATAGAAGCATTCTGAAAATAATTTTAGTTGCCTCCAAAGCCTCCAAGAATTCAAGTTTTCATTCTTGAGAGACAAAGCTTGAGAGATCAAAAGATTTTCTACTTCTGTCCTTCAAGGAGGTACCTTTACCATTCTTCCAAGGTGATTTTCTATGTTCTAAGGTGAAGATTGGTTGATATTATCACATAGTTAGAGGGTGTCTATTTGTGTTTACTGTAATCTACATATCTAGATAGTGTCTATTTGTATTTACTTCTTTTCTACCAGTGGAAAGTACCTTGATTGTGTTGAAAAAACTTGTATTTACTCTTCTGTGCATAGTAAGAAGGTCTCTAGAGTATATAGCTAAAATGTGTCTAGAGTGTGTTAAGAAAGTTTGTATGCTAGAATGGAAGAGTAATGTCCATGTGTGGTTATAGGAAGCTTAGATCTAGAAAGATTTAGAACGCAGAATGAGTTACTAATAATTCATGATTCTGGGCTTTTTCCTAGTGTGTGAGTTTACACTTTAGAATCATTCCGTGCATTCTCTCTACTCTCATTTTTCTTTACTCGTTTGGTAAAGAGCATAAAATGACTAAACGAACAAATCATATTAGAGGGCTATGCCCCCATTTCTCATGCTTAGGCTGCTTTCGCTGCATAACTTTGAGCCCCACATAAAGAACTTTTATTTTTTATTTTTATTTTTTAAATATAAATCAATATCAACTGTAGAGCCTTCATAATCTCTCTTGTTTTAGGAAGATATCATATTCAATTTTGTGTGTATGTGTATATATGTGTGTGTGTGTGTATATATATATATATATATATATATATATTTCTTTTCACTTCAATATAATATGCTTTGATTTTTCTAAAAGGAAAGAAATTAAAAAAGGGCTGAGGAAATAGGAGAGCTGACAATATTTTGCTGAGTGCCAATAATTTTTTTCCCTTTCTTTAGGAAACAAACTTGCATTATAAGCAGAGGTAATACAAAAAAATGGAGATGAGATATCCCCACCAAGCTAAAGGGGATTAAAATAAGACTCCCAATTAGCAAAGATTTGCAACATGTCATGATTACAGAAATCTTTTGAAAGAGTGCCAACAATATTTTCTCTTACCCTGTACATGAATTTATTTAAGGTATGTATCAATAATAACACTATATTTAATTTTAAAGTCTTATTATTCTAATGATGGAGAAACATCTTAATTAAACCCTTCTTCATATCATTTCCTTTGCATTAAATGCTATGCAAGCAAACCAAATTTTTCTCTGCAAAATTACAGAATTAAAAACGAATGCTTGTATTTTTAAAATCATATTTTGTTTATAAATTTTACTTCGACCATTTATATGGTGAATTTTATCCTCTACATGCAGCTGGACGGTCAAGGCATTTGTTATTGAAGGTTTGCCTCATGAACTGTCATTTATTTGGTGTTATCCCTATCGCATTTCATGGTTTTTCCTCATTTTGGTTACTGCTTACATTATCGCAGACAATATCAGAGATAAAAAGGCAGAATGAAGATGCCCTTCTTAAAGCTTTTCAAGTTGATCTCTTATCTGTTCAGTCAATCCTGAATTTCAAAAATTCCCTTCAGCTTTGGCTCCAGGACTCTAAAATGCATCCTTCAGTGCAACTTTTGATTAACAATGCCGGGATATTGGCAATGTCATCTAGATTCACATCTGAAGGCTATGACCAGTTACATCTTTATTCCCTGTTTTTGTTCAAGTGTGTTAGCCTTGCAATAATACAGTGATTGGAGCGTTATTGTACTTCTAAACTTAAATATAGACATTGCTTAAAATTAACTGGATCTCAGTTAGGTTTATAGTTAATGGTAAAACTGTTCTTGTTGAAACTTGAAACTTATAACTCGCACGTGCCTCAATGAACTCTTGTTCATTATAAGATAGTAAACTGTTACAGTGATCCATTTGGTCCAGCTGTTCCATTACCCTAAAACGTACTATTGCATCATAGGCTGAAATTGGGTTCTTCTCTCTGAAGTTTTTGGTTCTATATTGTCATTGTGATTTTCTAATTTATTTTTCTATGTTGTTTTACACCTTATTTTTCTTCAAGATATTTTCAATGCCTCTTACATTTATAACTTCTTATATTCTCAGGATGATGGCAACAAATTATGTTGGCCCGTTCTTTTTGACTCAAATGTTATTACCACTCCTGAAGAACAGCCCTTTTCCATCTAGGATAGTGAATGTCACATCCTTTACACATAGATGTGGTAAGAATTTTCTGTATTTGAATAATAACTGGAACAACAGTTCCATACCCTATAATTTATTTATTATGTTCTTTTTGGCAATAAAATGCTGGTGGAGAAACTATATAGACATGAATTTCAACATCTCTTGCATATAGGGGGCAGTGCTTGTATAATTTCTTCAAATGCTTAATTTTTTCATGAATCATAGGTCTTTTATCAACTCAATGAGATTTTTTTTCCATTGTGAGATTATCAACCTTGGTTGCGAGGTTATCTACATTTTTCCACTTTGTACCAAATGTGTCATGTAAAAAAAAAAAAACAATTATAGCTTTATTGTGTTCTTCAGTTTTTGATATACAGGTCGACGAGGATACTGTATGTGGGAAGTGCTTCAGGGGATTGGATCAGTATCCATGTGCTAGCATCTATGAGTATTCTAAATGTGAGCATTTAAGGTTTTTAGAGGCACTTTATGATACTGTTCTTGACTCTGACGAGCACTATCCATTTTCTGTTGCAGTATGCTTACTGCTGTTCTCCTACGAGCTTCACCGAAAACTTTTCTTAGAGAATGAATCTAATAAAGTAACTGTCATGTACGCGAACTTTGTCTTTGTTGCCTTTTATTCTCCCTTTTCCCTACTATCACTAGCCTTCAAGGCTTCTGATACGATTATGCTGATTGATTCTTGTTTTTCTTTTTTTGAATACTTGATATTCTGAAGTGTAGCGGATCCTGGAGTAGTCAAAACAAACATCATGAGAGAAGTTCCTGCATATATTTCTTGGGTAGCATTTACAATATTGAGGCTTTTGAGACTTCTACAACTCCCTGAAGAGGGGGTGGGCTCCATTTTGGATGCAGCCCTTGCATCACCTGTGAGTAAATCTTTTGTGCTTGTGAGAGTGTATGTGTATTTGATAGTCCTATTGAAATCTTCAATTGGGTAAACTAAACTTTCTTATGTCAGGAAACATCTGGGGTGTACTTTTTCGGTGGAAAGGGTAGGATGGTAAAATCCTCCGCGCGATCGTACAATGTGAAACTTGCCAAGGACCTTTGGGAAGCGTCGTTTAATCTGTTCTTGAAATCTCAACTTGCTACTGAGGGAGGAACTAGTGCTTACTTTTCACCATGGGAGTATGTCAGGTAACTTCATTTAGCACATTGTTAAAAATTATGAACTTATGATATAACTTCTTACTCAAAATCAAAATATGTTGTAATCCACAGCTAGTTGATGATCGATCACATATACATATTATTGTAGTGGTATTGCCTTTAGTATAAAATGTAGTCTTTTTTTTTTTTTTGAAGGGTACAAAATGTAGTCTCAAAAAAGAATAAAAAGATTAGAAACGAAGCAATAAACTAGCAAGATGCTGTTCAGCTGGTAAATTTTATTTCGTTCTACTTTTTATTTTTGTTAATATTATGTGCAATAAAAAAATATCGTTACAGATGGTCAAAAAGAGTTTCTTCCGACAATGAAGAGCTAAATTTATTCTATTGGATATTTGGGCTGGTTTCGTAATATATAGCGTCATTTTCTATTATAAATGTTTTTTTTAATATTACGTCATATTACATCATAAATGAAATATGGAGATTTTTCAAATTTGTGACCCTAATCAATAATAAAGAGATATAGATCTCTAATCACTTAATTTATGTGTTATTATTTATTATAAATGCGGACTAGGAATGTGTGTGGCCTTTTTTCATAAATATGTTAGAAATTCAAAAGTCTTACAAATATAGTCTACAGTTGTTGGATATGTAGACATTTTAAAAATAAAACCCTCTAATCGTATTTTTTTTCTTTCCGAATTTCTCAGTTTTGGCATCGTATTTTCAAATCTAATTTGATTCTTTCTTATTTTGTTTAATTTAATTCTTTCTAAATGCTGGCTTGTTTTTGTTATTTTTATTTTAAAAAAGAAATGTCTATTAATCTATCCAATTGTCTACTATATCATGTTAACTCAACTAAAATTAATCCAATCCAATAAATTGATCCATTCCATAGAGATGAAAAAAAAAAGGGTACAATATCTCCAAAATCAGTGAACCAGCATGATTCTTTTTATACTCGATAAATTAAATAATGAAATAAGCGTGTGGAAGACAGGAGGAATACCTTTACATACGAAAATTTTAAAAATCAAATAAGTGACAATATTTGAAATAATGATAATTAACTTAAATATTGATTAACTATAATTGATTACTCAAAAAAGGGAAATTGCGAGTAAACAAGTCTAATATTTAAAAAAAAACAAACAAAATAACTATGATGAGATGTGTGAATCTAAATTATGATTAGCACAATTATATGTACACATAATCTTAGATATATGCAAAGTTCATAACTGATGAAATGAAAGTATATGAAGAATACATATATTTGCCATCTGACTACACTTTGGGATCATGAATCGAACCAATCGTTATCGCAATTTTCAACTAAAAAATTACACGCACAATTGGACTGGCTCCTGAGGTAAGAGTAAAAGCGTTCTATTCGAACTTGCAGTGACAAAATACTTAACATTTGATGATGCCTCTCAAGAATTTTTGGTCGTGTTACAAAAGGTGCAAAAGAAAGTTTGTTTTTGGAGGAGAAAATATATAAACGCAAAATGTGTAGTTCATTCATTCAAATCAAAAGTGATATTCCAATCGCTTGGAATTTTCTCAACAAAGTAGCGGTTGGTGATTCTTTCTAATAAACAAAGGAATACTGAGTTTTTTCTCCCTCTTTTTGCCCCCTCATTTTGGCACACGTTTTTTTTGAATTAATTGTATGAATCATTCTTGAATTATAGTGATTATTATAATTATGCTTACAAACTTTTAATTATAAAAATTTAAACCTCGAACTTGCATCATTGTAAAAATTGGATTCTTCTATTAAATGAGAGAAAAAAGTCTTATTTTCTCTTCTAGAAAATGTCTTTTTCTTCTCCACACTCTTTTCTCTTAAACATCTTTGGAGAACCACCGATCGAGCAAGGAGGGTGAGATTTTTTTTTGGTGAGAGGAGTGTCTTAGATTGAGAAAGAGAAAATTTTTTTATAGAGAAAAGCGGGGTAAAAAGAGACAGATATTTTTCAGGAAAAAATGCGCGATAGAGAGAAAAAAAAGTATTTCTTCTCTCATGAATTTTTAATAGAGGGCAATAAAAGGACACAATTTTTACATTCATACAAGTTTGAGAGTTACTATTAAAAATTGAAACGGCAACGGCAGTTATAACAATCACAATAGCTCAAGGGTAGTTTATACAATTTACCCTTATTTCTATATTTAAAAATATGGGGTCAAAACAGGTTAGTGTGCAGTATTCAGTTGATTTCGTTGATAAATAGAAGTTGTTCTGTTTTGTGAGTGTGAGAGCGTGTGCAGGTGAGAGAGAGAGAGAGAATGGAAAGACTTTGCTTATGCTCTGTTTTATGGATTTTGGGACTATTCACCATTCAACTCAACGCAGCACCCACTCTCAAGTTGCCAGCACACGCAACGTTCTAGGGCGAAAGCGATGCTTTAAGAACAATGGGTAAGTTAGTAAGTCTTAGCGTCGAAAATTTATATATAAAAAAAGTTAGAATATCAAATCTTGCCTGTTCCTTCTTGTAAATTTTTTTTTGACTCCGCTCCTGATTTTGTGTCGTGCGGTCTACGATTAGAGAGGGAGCGTGTGGGTACGGGAATTTGTATAGTGATGGTTATGGGGACAAAACTGCAGCATTAAGCACAGTTTTGTTGAAGGATGGCAAAGCCTGTGGTGGCTGCTACAGGATAGAGTGTAATTCAGCCAAGGTTCCACAGTGGTGTGTGAGTGTGAAGGATGCCTCTATTACCATCACTGCCAAAAACCTTTTTTGCCCTCCAAATTACAATCTTCCAAATGACAATGGAGGGTGGTGCAATCCTCCAAGACCCCATTTTGACTTGTCCCAGCCTGCCTTTGAGACCATTGCTAAAAACAAAGCTGGCATAGTGCCTATTCACTATGCCAGGTACAAAAGGATTCTTCGTGATCTTTTGGTTAAATTATGGATCTTGTTATTTTGGTTTGGGTTGGTTTAGTTTTAATTTGATTTTTATAATTTTTATAATTTTAATTTAATCTCAATAGTTTGGGTTTAGTTTCCATTTGGCCTTTATAGTTTTAAAAGTTTTAATTTAATTTTTATAGTTTTGGTTTAGTTTTAATTTGGTTAACATGGTTTAGTTTTAATTTTTATAGTTAGAGTAAAAAACCTACGATTAGTGATGTTTTATATTTGATTGCCTATTCACTACCAATTTCTCTTATTTTTTACTCAGCTCTAAACCTTACTACAATTAGTTAACATAGTCAATCAAATATAAAACATCATCTCATTGCCACGTAAATAGAAAACATGCTACACATTCAATACGATAATGACTTGTAACTGTAGAGGCAATTTGTGAGGTTTGATCAAATGATAAAGATCAAATTGAAATGTTTAAGACCATAGCCATAGGGACCAAATTAATAAATTTAACCATTTTTTTTCATTATTCATGTTTTGACTTGAAAGGCTGTGCAATGTTACTTGAATTACATGTATGAAGAGTTGAATGCAATAGAGGAGGGGGCATTAGAGTTGCAATCAATGGAAGAGCTACTTCGAGCTGGTTTTGATAACCAACGTTGGAGGAGTAGGAGAGACATCCAATGTTTGGATAAAAGGATCAAAATCTAAGGATTGGGCAACCATGTTCAGAAACTGGGGCAACGGTCAGAGTTTGTCGTTCCGAATGCAGGAGAGCGATGGCAAAACCCTCACTGCTATTAACGTCGTCCCCTCCGACTGGAAGTTCGGCCAATCTTTCACCACCAACATTCAGTTCTAA GAATTAGGAGGAGGATGGCTGGAATGAAAAAAGAGATGAAAAGGGCTTGGCAGTTTTTAAGGTCAACACAGTTTTGGAAGATGGCAGTGCTGTGGAATCTCTCTGTCCTCTACTCTTACTTGCAGCTATTTTATCGAAGCTTCCTCTCTTTCCCCATTAATCACAGATCTGAAACCTACTACTCCATTAAAAGCCCTTCACCTTGCACCTCAACCTCACAAGCTGTCGTGCCTCTTTGCATTATCACCGGTGCTACTTCTGGATTGGGTGCAGCCGCTGCTCTTGCTCTTTCCAAACGTGGTTTCTATGTAGTTCTTGCTGGACGGTCAAGGCATTTGTTATTGAAGACAATATCAGAGATAAAAAGGCAGAATGAAGATGCCCTTCTTAAAGCTTTTCAAGTTGATCTCTTATCTGTTCAGTCAATCCTGAATTTCAAAAATTCCCTTCAGCTTTGGCTCCAGGACTCTAAAATGCATCCTTCAGTGCAACTTTTGATTAACAATGCCGGGATATTGGCAATGTCATCTAGATTCACATCTGAAGGCTATGACCAGATGATGGCAACAAATTATGTTGGCCCGTTCTTTTTGACTCAAATGTTATTACCACTCCTGAAGAACAGCCCTTTTCCATCTAGGATAGTGAATGTCACATCCTTTACACATAGATGTGTTTTTGATATACAGGTCGACGAGGATACTGTATGTGGGAAGTGCTTCAGGGGATTGGATCAGTATCCATGTGCTAGCATCTATGAGTATTCTAAATTATGCTTACTGCTGTTCTCCTACGAGCTTCACCGAAAACTTTTCTTAGAGAATGAATCTAATAAAGTAACTGTCATTGTAGCGGATCCTGGAGTAGTCAAAACAAACATCATGAGAGAAGTTCCTGCATATATTTCTTGGGTAGCATTTACAATATTGAGGCTTTTGAGACTTCTACAACTCCCTGAAGAGGGGGTGGGCTCCATTTTGGATGCAGCCCTTGCATCACCTGAAACATCTGGGGTGTACTTTTTCGGTGGAAAGGGTAGGATGGTAAAATCCTCCGCGCGATCGTACAATGTGAAACTTGCCAAGGACCTTTGGGAAGCGTCGTTTAATCTGTTCTTGAAATCTCAACTTGCTACTGAGGGAGGAACTAGTGCTTACTTTTCACCATGGGAGTATGTCAGCACCCACTCTCAAGTTGCCAGCACACGCAACGTTCTAGGGCGAAAGCGATGCTTTAAGAACAATGGAGAGGGAGCGTGTGGGTACGGGAATTTGTATAGTGATGGTTATGGGGACAAAACTGCAGCATTAAGCACAGTTTTGTTGAAGGATGGCAAAGCCTGTGGTGGCTGCTACAGGATAGAGTGTAATTCAGCCAAGGTTCCACAGTGGTGTGTGAGTGTGAAGGATGCCTCTATTACCATCACTGCCAAAAACCTTTTTTGCCCTCCAAATTACAATCTTCCAAATGACAATGGAGGGTGGTGCAATCCTCCAAGACCCCATTTTGACTTGTCCCAGCCTGCCTTTGAGACCATTGCTAAAAACAAAGCTGGCATAGTGCCTATTCACTATGCCAGAAACTGGGGCAACGGTCAGAGTTTGTCGTTCCGAATGCAGGAGAGCGATGGCAAAACCCTCACTGCTATTAACGTCGTCCCCTCCGACTGGAAGTTCGGCCAATCTTTCACCACCAACATTCAGTTCTAA GAATTAGGAGGAGGATGGCTGGAATGAAAAAAGAGATGAAAAGGGCTTGGCAGTTTTTAAGGTCAACACAGTTTTGGAAGATGGCAGTGCTGTGGAATCTCTCTGTCCTCTACTCTTACTTGCAGCTATTTTATCGAAGCTTCCTCTCTTTCCCCATTAATCACAGATCTGAAACCTACTACTCCATTAAAAGCCCTTCACCTTGCACCTCAACCTCACAAGCTGTCGTGCCTCTTTGCATTATCACCGGTGCTACTTCTGGATTGGGTGCAGCCGCTGCTCTTGCTCTTTCCAAACGTGGTTTCTATGTAGTTCTTGCTGGACGGTCAAGGCATTTGTTATTGAAGACAATATCAGAGATAAAAAGGCAGAATGAAGATGCCCTTCTTAAAGCTTTTCAAGTTGATCTCTTATCTGTTCAGTCAATCCTGAATTTCAAAAATTCCCTTCAGCTTTGGCTCCAGGACTCTAAAATGCATCCTTCAGTGCAACTTTTGATTAACAATGCCGGGATATTGGCAATGTCATCTAGATTCACATCTGAAGGCTATGACCAGATGATGGCAACAAATTATGTTGGCCCGTTCTTTTTGACTCAAATGTTATTACCACTCCTGAAGAACAGCCCTTTTCCATCTAGGATAGTGAATGTCACATCCTTTACACATAGATGTGTTTTTGATATACAGGTCGACGAGGATACTGTATGTGGGAAGTGCTTCAGGGGATTGGATCAGTATCCATGTGCTAGCATCTATGAGTATTCTAAATTATGCTTACTGCTGTTCTCCTACGAGCTTCACCGAAAACTTTTCTTAGAGAATGAATCTAATAAAGTAACTGTCATTGTAGCGGATCCTGGAGTAGTCAAAACAAACATCATGAGAGAAGTTCCTGCATATATTTCTTGGGTAGCATTTACAATATTGAGGCTTTTGAGACTTCTACAACTCCCTGAAGAGGGGGTGGGCTCCATTTTGGATGCAGCCCTTGCATCACCTGAAACATCTGGGGTGTACTTTTTCGGTGGAAAGGGTAGGATGGTAAAATCCTCCGCGCGATCGTACAATGTGAAACTTGCCAAGGACCTTTGGGAAGCGTCGTTTAATCTGTTCTTGAAATCTCAACTTGCTACTGAGGGAGGAACTAGTGCTTACTTTTCACCATGGGAGTATGTCAGCACCCACTCTCAAGTTGCCAGCACACGCAACGTTCTAGGGCGAAAGCGATGCTTTAAGAACAATGGAGAGGGAGCGTGTGGGTACGGGAATTTGTATAGTGATGGTTATGGGGACAAAACTGCAGCATTAAGCACAGTTTTGTTGAAGGATGGCAAAGCCTGTGGTGGCTGCTACAGGATAGAGTGTAATTCAGCCAAGGTTCCACAGTGGTGTGTGAGTGTGAAGGATGCCTCTATTACCATCACTGCCAAAAACCTTTTTTGCCCTCCAAATTACAATCTTCCAAATGACAATGGAGGGTGGTGCAATCCTCCAAGACCCCATTTTGACTTGTCCCAGCCTGCCTTTGAGACCATTGCTAAAAACAAAGCTGGCATAGTGCCTATTCACTATGCCAGAAACTGGGGCAACGGTCAGAGTTTGTCGTTCCGAATGCAGGAGAGCGATGGCAAAACCCTCACTGCTATTAACGTCGTCCCCTCCGACTGGAAGTTCGGCCAATCTTTCACCACCAACATTCAGTTCTAA IRRRMAGMKKEMKRAWQFLRSTQFWKMAVLWNLSVLYSYLQLFYRSFLSFPINHRSETYYSIKSPSPCTSTSQAVVPLCIITGATSGLGAAAALALSKRGFYVVLAGRSRHLLLKTISEIKRQNEDALLKAFQVDLLSVQSILNFKNSLQLWLQDSKMHPSVQLLINNAGILAMSSRFTSEGYDQMMATNYVGPFFLTQMLLPLLKNSPFPSRIVNVTSFTHRCVFDIQVDEDTVCGKCFRGLDQYPCASIYEYSKLCLLLFSYELHRKLFLENESNKVTVIVADPGVVKTNIMREVPAYISWVAFTILRLLRLLQLPEEGVGSILDAALASPETSGVYFFGGKGRMVKSSARSYNVKLAKDLWEASFNLFLKSQLATEGGTSAYFSPWEYVSTHSQVASTRNVLGRKRCFKNNGEGACGYGNLYSDGYGDKTAALSTVLLKDGKACGGCYRIECNSAKVPQWCVSVKDASITITAKNLFCPPNYNLPNDNGGWCNPPRPHFDLSQPAFETIAKNKAGIVPIHYARNWGNGQSLSFRMQESDGKTLTAINVVPSDWKFGQSFTTNIQF Homology
BLAST of Sgr016989 vs. NCBI nr
Match: XP_022146356.1 (dehydrogenase/reductase SDR family member on chromosome X-like [Momordica charantia] >XP_022146357.1 dehydrogenase/reductase SDR family member on chromosome X-like [Momordica charantia]) HSP 1 Score: 651.0 bits (1678), Expect = 9.6e-183 Identity = 334/381 (87.66%), Postives = 356/381 (93.44%), Query Frame = 0
BLAST of Sgr016989 vs. NCBI nr
Match: XP_038877899.1 (dehydrogenase/reductase SDR family member on chromosome X-like isoform X1 [Benincasa hispida]) HSP 1 Score: 637.1 bits (1642), Expect = 1.4e-178 Identity = 329/382 (86.13%), Postives = 353/382 (92.41%), Query Frame = 0
BLAST of Sgr016989 vs. NCBI nr
Match: XP_038877900.1 (dehydrogenase/reductase SDR family member on chromosome X-like isoform X2 [Benincasa hispida]) HSP 1 Score: 634.4 bits (1635), Expect = 9.3e-178 Identity = 327/380 (86.05%), Postives = 351/380 (92.37%), Query Frame = 0
BLAST of Sgr016989 vs. NCBI nr
Match: XP_008466147.1 (PREDICTED: dehydrogenase/reductase SDR family member on chromosome X-like isoform X1 [Cucumis melo] >XP_016898875.1 PREDICTED: dehydrogenase/reductase SDR family member on chromosome X-like isoform X1 [Cucumis melo]) HSP 1 Score: 630.9 bits (1626), Expect = 1.0e-176 Identity = 320/380 (84.21%), Postives = 352/380 (92.63%), Query Frame = 0
BLAST of Sgr016989 vs. NCBI nr
Match: KAE8648311.1 (hypothetical protein Csa_004656 [Cucumis sativus]) HSP 1 Score: 615.9 bits (1587), Expect = 3.4e-172 Identity = 317/382 (82.98%), Postives = 348/382 (91.10%), Query Frame = 0
BLAST of Sgr016989 vs. ExPASy Swiss-Prot
Match: Q9ZSI1 (Putative expansin-A17 OS=Arabidopsis thaliana OX=3702 GN=EXPA17 PE=2 SV=1) HSP 1 Score: 205.3 bits (521), Expect = 1.8e-51 Identity = 107/212 (50.47%), Postives = 125/212 (58.96%), Query Frame = 0
BLAST of Sgr016989 vs. ExPASy Swiss-Prot
Match: Q4PR43 (Expansin-A23 OS=Oryza sativa subsp. japonica OX=39947 GN=EXPA23.1 PE=2 SV=2) HSP 1 Score: 185.3 bits (469), Expect = 2.0e-45 Identity = 94/212 (44.34%), Postives = 114/212 (53.77%), Query Frame = 0
BLAST of Sgr016989 vs. ExPASy Swiss-Prot
Match: Q4PR51 (Expansin-A14 OS=Oryza sativa subsp. japonica OX=39947 GN=EXPA14 PE=2 SV=2) HSP 1 Score: 183.0 bits (463), Expect = 9.7e-45 Identity = 92/212 (43.40%), Postives = 115/212 (54.25%), Query Frame = 0
BLAST of Sgr016989 vs. ExPASy Swiss-Prot
Match: Q4PR44 (Expansin-A22 OS=Oryza sativa subsp. japonica OX=39947 GN=EXPA22 PE=2 SV=2) HSP 1 Score: 182.2 bits (461), Expect = 1.7e-44 Identity = 92/212 (43.40%), Postives = 115/212 (54.25%), Query Frame = 0
BLAST of Sgr016989 vs. ExPASy Swiss-Prot
Match: Q4PR42 (Expansin-A24 OS=Oryza sativa subsp. japonica OX=39947 GN=EXPA24 PE=2 SV=2) HSP 1 Score: 181.0 bits (458), Expect = 3.7e-44 Identity = 91/212 (42.92%), Postives = 114/212 (53.77%), Query Frame = 0
BLAST of Sgr016989 vs. ExPASy TrEMBL
Match: A0A6J1CZD5 (dehydrogenase/reductase SDR family member on chromosome X-like OS=Momordica charantia OX=3673 GN=LOC111015588 PE=4 SV=1) HSP 1 Score: 651.0 bits (1678), Expect = 4.7e-183 Identity = 334/381 (87.66%), Postives = 356/381 (93.44%), Query Frame = 0
BLAST of Sgr016989 vs. ExPASy TrEMBL
Match: A0A1S4DT43 (dehydrogenase/reductase SDR family member on chromosome X-like isoform X1 OS=Cucumis melo OX=3656 GN=LOC103503643 PE=4 SV=1) HSP 1 Score: 630.9 bits (1626), Expect = 5.0e-177 Identity = 320/380 (84.21%), Postives = 352/380 (92.63%), Query Frame = 0
BLAST of Sgr016989 vs. ExPASy TrEMBL
Match: A0A6J1FGW7 (dehydrogenase/reductase SDR family member on chromosome X-like OS=Cucurbita moschata OX=3662 GN=LOC111445574 PE=4 SV=1) HSP 1 Score: 608.2 bits (1567), Expect = 3.5e-170 Identity = 317/380 (83.42%), Postives = 341/380 (89.74%), Query Frame = 0
BLAST of Sgr016989 vs. ExPASy TrEMBL
Match: A0A6J1JYL2 (dehydrogenase/reductase SDR family member on chromosome X-like OS=Cucurbita maxima OX=3661 GN=LOC111489467 PE=4 SV=1) HSP 1 Score: 606.3 bits (1562), Expect = 1.3e-169 Identity = 315/378 (83.33%), Postives = 338/378 (89.42%), Query Frame = 0
BLAST of Sgr016989 vs. ExPASy TrEMBL
Match: A0A5A7U2W8 (Dehydrogenase/reductase SDR family member on chromosome X-like isoform X2 OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold180G00330 PE=4 SV=1) HSP 1 Score: 562.4 bits (1448), Expect = 2.2e-156 Identity = 295/382 (77.23%), Postives = 323/382 (84.55%), Query Frame = 0
BLAST of Sgr016989 vs. TAIR 10
Match: AT5G15940.1 (NAD(P)-binding Rossmann-fold superfamily protein ) HSP 1 Score: 396.7 bits (1018), Expect = 3.0e-110 Identity = 208/367 (56.68%), Postives = 272/367 (74.11%), Query Frame = 0
BLAST of Sgr016989 vs. TAIR 10
Match: AT5G04070.1 (NAD(P)-binding Rossmann-fold superfamily protein ) HSP 1 Score: 388.7 bits (997), Expect = 8.3e-108 Identity = 203/366 (55.46%), Postives = 267/366 (72.95%), Query Frame = 0
BLAST of Sgr016989 vs. TAIR 10
Match: AT4G01630.1 (expansin A17 ) HSP 1 Score: 205.3 bits (521), Expect = 1.3e-52 Identity = 107/212 (50.47%), Postives = 125/212 (58.96%), Query Frame = 0
BLAST of Sgr016989 vs. TAIR 10
Match: AT1G20190.1 (expansin 11 ) HSP 1 Score: 172.2 bits (435), Expect = 1.2e-42 Identity = 90/211 (42.65%), Postives = 114/211 (54.03%), Query Frame = 0
BLAST of Sgr016989 vs. TAIR 10
Match: AT5G02260.1 (expansin A9 ) HSP 1 Score: 165.2 bits (417), Expect = 1.5e-40 Identity = 88/206 (42.72%), Postives = 112/206 (54.37%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Monk fruit (Qingpiguo) 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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